relay.c 111 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) 2007-2019, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file relay.c
  8. * \brief Handle relay cell encryption/decryption, plus packaging and
  9. * receiving from circuits, plus queuing on circuits.
  10. *
  11. * This is a core modules that makes Tor work. It's responsible for
  12. * dealing with RELAY cells (the ones that travel more than one hop along a
  13. * circuit), by:
  14. * <ul>
  15. * <li>constructing relays cells,
  16. * <li>encrypting relay cells,
  17. * <li>decrypting relay cells,
  18. * <li>demultiplexing relay cells as they arrive on a connection,
  19. * <li>queueing relay cells for retransmission,
  20. * <li>or handling relay cells that are for us to receive (as an exit or a
  21. * client).
  22. * </ul>
  23. *
  24. * RELAY cells are generated throughout the code at the client or relay side,
  25. * using relay_send_command_from_edge() or one of the functions like
  26. * connection_edge_send_command() that calls it. Of particular interest is
  27. * connection_edge_package_raw_inbuf(), which takes information that has
  28. * arrived on an edge connection socket, and packages it as a RELAY_DATA cell
  29. * -- this is how information is actually sent across the Tor network. The
  30. * cryptography for these functions is handled deep in
  31. * circuit_package_relay_cell(), which either adds a single layer of
  32. * encryption (if we're an exit), or multiple layers (if we're the origin of
  33. * the circuit). After construction and encryption, the RELAY cells are
  34. * passed to append_cell_to_circuit_queue(), which queues them for
  35. * transmission and tells the circuitmux (see circuitmux.c) that the circuit
  36. * is waiting to send something.
  37. *
  38. * Incoming RELAY cells arrive at circuit_receive_relay_cell(), called from
  39. * command.c. There they are decrypted and, if they are for us, are passed to
  40. * connection_edge_process_relay_cell(). If they're not for us, they're
  41. * re-queued for retransmission again with append_cell_to_circuit_queue().
  42. *
  43. * The connection_edge_process_relay_cell() function handles all the different
  44. * types of relay cells, launching requests or transmitting data as needed.
  45. **/
  46. #define RELAY_PRIVATE
  47. #include "core/or/or.h"
  48. #include "feature/client/addressmap.h"
  49. #include "lib/err/backtrace.h"
  50. #include "lib/buf/buffers.h"
  51. #include "core/or/channel.h"
  52. #include "feature/client/circpathbias.h"
  53. #include "core/or/circuitbuild.h"
  54. #include "core/or/circuitlist.h"
  55. #include "core/or/circuituse.h"
  56. #include "core/or/circuitpadding.h"
  57. #include "lib/compress/compress.h"
  58. #include "app/config/config.h"
  59. #include "core/mainloop/connection.h"
  60. #include "core/or/connection_edge.h"
  61. #include "core/or/connection_or.h"
  62. #include "feature/control/control_events.h"
  63. #include "lib/crypt_ops/crypto_rand.h"
  64. #include "lib/crypt_ops/crypto_util.h"
  65. #include "feature/dircommon/directory.h"
  66. #include "feature/relay/dns.h"
  67. #include "feature/stats/geoip_stats.h"
  68. #include "feature/hs/hs_cache.h"
  69. #include "core/mainloop/mainloop.h"
  70. #include "feature/nodelist/networkstatus.h"
  71. #include "feature/nodelist/nodelist.h"
  72. #include "core/or/onion.h"
  73. #include "core/or/policies.h"
  74. #include "core/or/reasons.h"
  75. #include "core/or/relay.h"
  76. #include "core/crypto/relay_crypto.h"
  77. #include "feature/rend/rendcache.h"
  78. #include "feature/rend/rendcommon.h"
  79. #include "feature/nodelist/describe.h"
  80. #include "feature/nodelist/routerlist.h"
  81. #include "core/or/scheduler.h"
  82. #include "core/or/cell_st.h"
  83. #include "core/or/cell_queue_st.h"
  84. #include "core/or/cpath_build_state_st.h"
  85. #include "feature/dircommon/dir_connection_st.h"
  86. #include "core/or/destroy_cell_queue_st.h"
  87. #include "core/or/entry_connection_st.h"
  88. #include "core/or/extend_info_st.h"
  89. #include "core/or/or_circuit_st.h"
  90. #include "core/or/origin_circuit_st.h"
  91. #include "feature/nodelist/routerinfo_st.h"
  92. #include "core/or/socks_request_st.h"
  93. #include "core/or/sendme.h"
  94. static edge_connection_t *relay_lookup_conn(circuit_t *circ, cell_t *cell,
  95. cell_direction_t cell_direction,
  96. crypt_path_t *layer_hint);
  97. static void circuit_resume_edge_reading(circuit_t *circ,
  98. crypt_path_t *layer_hint);
  99. static int circuit_resume_edge_reading_helper(edge_connection_t *conn,
  100. circuit_t *circ,
  101. crypt_path_t *layer_hint);
  102. static int circuit_consider_stop_edge_reading(circuit_t *circ,
  103. crypt_path_t *layer_hint);
  104. static int circuit_queue_streams_are_blocked(circuit_t *circ);
  105. static void adjust_exit_policy_from_exitpolicy_failure(origin_circuit_t *circ,
  106. entry_connection_t *conn,
  107. node_t *node,
  108. const tor_addr_t *addr);
  109. /** Stop reading on edge connections when we have this many cells
  110. * waiting on the appropriate queue. */
  111. #define CELL_QUEUE_HIGHWATER_SIZE 256
  112. /** Start reading from edge connections again when we get down to this many
  113. * cells. */
  114. #define CELL_QUEUE_LOWWATER_SIZE 64
  115. /** Stats: how many relay cells have originated at this hop, or have
  116. * been relayed onward (not recognized at this hop)?
  117. */
  118. uint64_t stats_n_relay_cells_relayed = 0;
  119. /** Stats: how many relay cells have been delivered to streams at this
  120. * hop?
  121. */
  122. uint64_t stats_n_relay_cells_delivered = 0;
  123. /** Stats: how many circuits have we closed due to the cell queue limit being
  124. * reached (see append_cell_to_circuit_queue()) */
  125. uint64_t stats_n_circ_max_cell_reached = 0;
  126. /**
  127. * Update channel usage state based on the type of relay cell and
  128. * circuit properties.
  129. *
  130. * This is needed to determine if a client channel is being
  131. * used for application traffic, and if a relay channel is being
  132. * used for multihop circuits and application traffic. The decision
  133. * to pad in channelpadding.c depends upon this info (as well as
  134. * consensus parameters) to decide what channels to pad.
  135. */
  136. static void
  137. circuit_update_channel_usage(circuit_t *circ, cell_t *cell)
  138. {
  139. if (CIRCUIT_IS_ORIGIN(circ)) {
  140. /*
  141. * The client state was first set much earlier in
  142. * circuit_send_next_onion_skin(), so we can start padding as early as
  143. * possible.
  144. *
  145. * However, if padding turns out to be expensive, we may want to not do
  146. * it until actual application traffic starts flowing (which is controlled
  147. * via consensus param nf_pad_before_usage).
  148. *
  149. * So: If we're an origin circuit and we've created a full length circuit,
  150. * then any CELL_RELAY cell means application data. Increase the usage
  151. * state of the channel to indicate this.
  152. *
  153. * We want to wait for CELL_RELAY specifically here, so we know that
  154. * the channel was definitely being used for data and not for extends.
  155. * By default, we pad as soon as a channel has been used for *any*
  156. * circuits, so this state is irrelevant to the padding decision in
  157. * the default case. However, if padding turns out to be expensive,
  158. * we would like the ability to avoid padding until we're absolutely
  159. * sure that a channel is used for enough application data to be worth
  160. * padding.
  161. *
  162. * (So it does not matter that CELL_RELAY_EARLY can actually contain
  163. * application data. This is only a load reducing option and that edge
  164. * case does not matter if we're desperately trying to reduce overhead
  165. * anyway. See also consensus parameter nf_pad_before_usage).
  166. */
  167. if (BUG(!circ->n_chan))
  168. return;
  169. if (circ->n_chan->channel_usage == CHANNEL_USED_FOR_FULL_CIRCS &&
  170. cell->command == CELL_RELAY) {
  171. circ->n_chan->channel_usage = CHANNEL_USED_FOR_USER_TRAFFIC;
  172. }
  173. } else {
  174. /* If we're a relay circuit, the question is more complicated. Basically:
  175. * we only want to pad connections that carry multihop (anonymous)
  176. * circuits.
  177. *
  178. * We assume we're more than one hop if either the previous hop
  179. * is not a client, or if the previous hop is a client and there's
  180. * a next hop. Then, circuit traffic starts at RELAY_EARLY, and
  181. * user application traffic starts when we see RELAY cells.
  182. */
  183. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  184. if (BUG(!or_circ->p_chan))
  185. return;
  186. if (!channel_is_client(or_circ->p_chan) ||
  187. (channel_is_client(or_circ->p_chan) && circ->n_chan)) {
  188. if (cell->command == CELL_RELAY_EARLY) {
  189. if (or_circ->p_chan->channel_usage < CHANNEL_USED_FOR_FULL_CIRCS) {
  190. or_circ->p_chan->channel_usage = CHANNEL_USED_FOR_FULL_CIRCS;
  191. }
  192. } else if (cell->command == CELL_RELAY) {
  193. or_circ->p_chan->channel_usage = CHANNEL_USED_FOR_USER_TRAFFIC;
  194. }
  195. }
  196. }
  197. }
  198. /** Receive a relay cell:
  199. * - Crypt it (encrypt if headed toward the origin or if we <b>are</b> the
  200. * origin; decrypt if we're headed toward the exit).
  201. * - Check if recognized (if exitward).
  202. * - If recognized and the digest checks out, then find if there's a stream
  203. * that the cell is intended for, and deliver it to the right
  204. * connection_edge.
  205. * - If not recognized, then we need to relay it: append it to the appropriate
  206. * cell_queue on <b>circ</b>.
  207. *
  208. * Return -<b>reason</b> on failure.
  209. */
  210. int
  211. circuit_receive_relay_cell(cell_t *cell, circuit_t *circ,
  212. cell_direction_t cell_direction)
  213. {
  214. channel_t *chan = NULL;
  215. crypt_path_t *layer_hint=NULL;
  216. char recognized=0;
  217. int reason;
  218. tor_assert(cell);
  219. tor_assert(circ);
  220. tor_assert(cell_direction == CELL_DIRECTION_OUT ||
  221. cell_direction == CELL_DIRECTION_IN);
  222. if (circ->marked_for_close)
  223. return 0;
  224. if (relay_decrypt_cell(circ, cell, cell_direction, &layer_hint, &recognized)
  225. < 0) {
  226. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  227. "relay crypt failed. Dropping connection.");
  228. return -END_CIRC_REASON_INTERNAL;
  229. }
  230. circuit_update_channel_usage(circ, cell);
  231. if (recognized) {
  232. edge_connection_t *conn = NULL;
  233. if (circ->purpose == CIRCUIT_PURPOSE_PATH_BIAS_TESTING) {
  234. if (pathbias_check_probe_response(circ, cell) == -1) {
  235. pathbias_count_valid_cells(circ, cell);
  236. }
  237. /* We need to drop this cell no matter what to avoid code that expects
  238. * a certain purpose (such as the hidserv code). */
  239. return 0;
  240. }
  241. conn = relay_lookup_conn(circ, cell, cell_direction, layer_hint);
  242. if (cell_direction == CELL_DIRECTION_OUT) {
  243. ++stats_n_relay_cells_delivered;
  244. log_debug(LD_OR,"Sending away from origin.");
  245. if ((reason=connection_edge_process_relay_cell(cell, circ, conn, NULL))
  246. < 0) {
  247. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  248. "connection_edge_process_relay_cell (away from origin) "
  249. "failed.");
  250. return reason;
  251. }
  252. }
  253. if (cell_direction == CELL_DIRECTION_IN) {
  254. ++stats_n_relay_cells_delivered;
  255. log_debug(LD_OR,"Sending to origin.");
  256. if ((reason = connection_edge_process_relay_cell(cell, circ, conn,
  257. layer_hint)) < 0) {
  258. /* If a client is trying to connect to unknown hidden service port,
  259. * END_CIRC_AT_ORIGIN is sent back so we can then close the circuit.
  260. * Do not log warn as this is an expected behavior for a service. */
  261. if (reason != END_CIRC_AT_ORIGIN) {
  262. log_warn(LD_OR,
  263. "connection_edge_process_relay_cell (at origin) failed.");
  264. }
  265. return reason;
  266. }
  267. }
  268. return 0;
  269. }
  270. /* not recognized. inform circpad and pass it on. */
  271. circpad_deliver_unrecognized_cell_events(circ, cell_direction);
  272. if (cell_direction == CELL_DIRECTION_OUT) {
  273. cell->circ_id = circ->n_circ_id; /* switch it */
  274. chan = circ->n_chan;
  275. } else if (! CIRCUIT_IS_ORIGIN(circ)) {
  276. cell->circ_id = TO_OR_CIRCUIT(circ)->p_circ_id; /* switch it */
  277. chan = TO_OR_CIRCUIT(circ)->p_chan;
  278. } else {
  279. log_fn(LOG_PROTOCOL_WARN, LD_OR,
  280. "Dropping unrecognized inbound cell on origin circuit.");
  281. /* If we see unrecognized cells on path bias testing circs,
  282. * it's bad mojo. Those circuits need to die.
  283. * XXX: Shouldn't they always die? */
  284. if (circ->purpose == CIRCUIT_PURPOSE_PATH_BIAS_TESTING) {
  285. TO_ORIGIN_CIRCUIT(circ)->path_state = PATH_STATE_USE_FAILED;
  286. return -END_CIRC_REASON_TORPROTOCOL;
  287. } else {
  288. return 0;
  289. }
  290. }
  291. if (!chan) {
  292. // XXXX Can this splice stuff be done more cleanly?
  293. if (! CIRCUIT_IS_ORIGIN(circ) &&
  294. TO_OR_CIRCUIT(circ)->rend_splice &&
  295. cell_direction == CELL_DIRECTION_OUT) {
  296. or_circuit_t *splice_ = TO_OR_CIRCUIT(circ)->rend_splice;
  297. tor_assert(circ->purpose == CIRCUIT_PURPOSE_REND_ESTABLISHED);
  298. tor_assert(splice_->base_.purpose == CIRCUIT_PURPOSE_REND_ESTABLISHED);
  299. cell->circ_id = splice_->p_circ_id;
  300. cell->command = CELL_RELAY; /* can't be relay_early anyway */
  301. if ((reason = circuit_receive_relay_cell(cell, TO_CIRCUIT(splice_),
  302. CELL_DIRECTION_IN)) < 0) {
  303. log_warn(LD_REND, "Error relaying cell across rendezvous; closing "
  304. "circuits");
  305. /* XXXX Do this here, or just return -1? */
  306. circuit_mark_for_close(circ, -reason);
  307. return reason;
  308. }
  309. return 0;
  310. }
  311. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  312. "Didn't recognize cell, but circ stops here! Closing circ.");
  313. return -END_CIRC_REASON_TORPROTOCOL;
  314. }
  315. log_debug(LD_OR,"Passing on unrecognized cell.");
  316. ++stats_n_relay_cells_relayed; /* XXXX no longer quite accurate {cells}
  317. * we might kill the circ before we relay
  318. * the cells. */
  319. append_cell_to_circuit_queue(circ, chan, cell, cell_direction, 0);
  320. return 0;
  321. }
  322. /** Package a relay cell from an edge:
  323. * - Encrypt it to the right layer
  324. * - Append it to the appropriate cell_queue on <b>circ</b>.
  325. */
  326. MOCK_IMPL(int,
  327. circuit_package_relay_cell, (cell_t *cell, circuit_t *circ,
  328. cell_direction_t cell_direction,
  329. crypt_path_t *layer_hint, streamid_t on_stream,
  330. const char *filename, int lineno))
  331. {
  332. channel_t *chan; /* where to send the cell */
  333. if (circ->marked_for_close) {
  334. /* Circuit is marked; send nothing. */
  335. return 0;
  336. }
  337. if (cell_direction == CELL_DIRECTION_OUT) {
  338. chan = circ->n_chan;
  339. if (!chan) {
  340. log_warn(LD_BUG,"outgoing relay cell sent from %s:%d has n_chan==NULL."
  341. " Dropping. Circuit is in state %s (%d), and is "
  342. "%smarked for close. (%s:%d, %d)", filename, lineno,
  343. circuit_state_to_string(circ->state), circ->state,
  344. circ->marked_for_close ? "" : "not ",
  345. circ->marked_for_close_file?circ->marked_for_close_file:"",
  346. circ->marked_for_close, circ->marked_for_close_reason);
  347. if (CIRCUIT_IS_ORIGIN(circ)) {
  348. circuit_log_path(LOG_WARN, LD_BUG, TO_ORIGIN_CIRCUIT(circ));
  349. }
  350. log_backtrace(LOG_WARN,LD_BUG,"");
  351. return 0; /* just drop it */
  352. }
  353. if (!CIRCUIT_IS_ORIGIN(circ)) {
  354. log_warn(LD_BUG,"outgoing relay cell sent from %s:%d on non-origin "
  355. "circ. Dropping.", filename, lineno);
  356. log_backtrace(LOG_WARN,LD_BUG,"");
  357. return 0; /* just drop it */
  358. }
  359. relay_encrypt_cell_outbound(cell, TO_ORIGIN_CIRCUIT(circ), layer_hint);
  360. /* Update circ written totals for control port */
  361. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  362. ocirc->n_written_circ_bw = tor_add_u32_nowrap(ocirc->n_written_circ_bw,
  363. CELL_PAYLOAD_SIZE);
  364. } else { /* incoming cell */
  365. if (CIRCUIT_IS_ORIGIN(circ)) {
  366. /* We should never package an _incoming_ cell from the circuit
  367. * origin; that means we messed up somewhere. */
  368. log_warn(LD_BUG,"incoming relay cell at origin circuit. Dropping.");
  369. assert_circuit_ok(circ);
  370. return 0; /* just drop it */
  371. }
  372. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  373. relay_encrypt_cell_inbound(cell, or_circ);
  374. chan = or_circ->p_chan;
  375. }
  376. ++stats_n_relay_cells_relayed;
  377. append_cell_to_circuit_queue(circ, chan, cell, cell_direction, on_stream);
  378. return 0;
  379. }
  380. /** If cell's stream_id matches the stream_id of any conn that's
  381. * attached to circ, return that conn, else return NULL.
  382. */
  383. static edge_connection_t *
  384. relay_lookup_conn(circuit_t *circ, cell_t *cell,
  385. cell_direction_t cell_direction, crypt_path_t *layer_hint)
  386. {
  387. edge_connection_t *tmpconn;
  388. relay_header_t rh;
  389. relay_header_unpack(&rh, cell->payload);
  390. if (!rh.stream_id)
  391. return NULL;
  392. /* IN or OUT cells could have come from either direction, now
  393. * that we allow rendezvous *to* an OP.
  394. */
  395. if (CIRCUIT_IS_ORIGIN(circ)) {
  396. for (tmpconn = TO_ORIGIN_CIRCUIT(circ)->p_streams; tmpconn;
  397. tmpconn=tmpconn->next_stream) {
  398. if (rh.stream_id == tmpconn->stream_id &&
  399. !tmpconn->base_.marked_for_close &&
  400. tmpconn->cpath_layer == layer_hint) {
  401. log_debug(LD_APP,"found conn for stream %d.", rh.stream_id);
  402. return tmpconn;
  403. }
  404. }
  405. } else {
  406. for (tmpconn = TO_OR_CIRCUIT(circ)->n_streams; tmpconn;
  407. tmpconn=tmpconn->next_stream) {
  408. if (rh.stream_id == tmpconn->stream_id &&
  409. !tmpconn->base_.marked_for_close) {
  410. log_debug(LD_EXIT,"found conn for stream %d.", rh.stream_id);
  411. if (cell_direction == CELL_DIRECTION_OUT ||
  412. connection_edge_is_rendezvous_stream(tmpconn))
  413. return tmpconn;
  414. }
  415. }
  416. for (tmpconn = TO_OR_CIRCUIT(circ)->resolving_streams; tmpconn;
  417. tmpconn=tmpconn->next_stream) {
  418. if (rh.stream_id == tmpconn->stream_id &&
  419. !tmpconn->base_.marked_for_close) {
  420. log_debug(LD_EXIT,"found conn for stream %d.", rh.stream_id);
  421. return tmpconn;
  422. }
  423. }
  424. }
  425. return NULL; /* probably a begin relay cell */
  426. }
  427. /** Pack the relay_header_t host-order structure <b>src</b> into
  428. * network-order in the buffer <b>dest</b>. See tor-spec.txt for details
  429. * about the wire format.
  430. */
  431. void
  432. relay_header_pack(uint8_t *dest, const relay_header_t *src)
  433. {
  434. set_uint8(dest, src->command);
  435. set_uint16(dest+1, htons(src->recognized));
  436. set_uint16(dest+3, htons(src->stream_id));
  437. memcpy(dest+5, src->integrity, 4);
  438. set_uint16(dest+9, htons(src->length));
  439. }
  440. /** Unpack the network-order buffer <b>src</b> into a host-order
  441. * relay_header_t structure <b>dest</b>.
  442. */
  443. void
  444. relay_header_unpack(relay_header_t *dest, const uint8_t *src)
  445. {
  446. dest->command = get_uint8(src);
  447. dest->recognized = ntohs(get_uint16(src+1));
  448. dest->stream_id = ntohs(get_uint16(src+3));
  449. memcpy(dest->integrity, src+5, 4);
  450. dest->length = ntohs(get_uint16(src+9));
  451. }
  452. /** Convert the relay <b>command</b> into a human-readable string. */
  453. static const char *
  454. relay_command_to_string(uint8_t command)
  455. {
  456. static char buf[64];
  457. switch (command) {
  458. case RELAY_COMMAND_BEGIN: return "BEGIN";
  459. case RELAY_COMMAND_DATA: return "DATA";
  460. case RELAY_COMMAND_END: return "END";
  461. case RELAY_COMMAND_CONNECTED: return "CONNECTED";
  462. case RELAY_COMMAND_SENDME: return "SENDME";
  463. case RELAY_COMMAND_EXTEND: return "EXTEND";
  464. case RELAY_COMMAND_EXTENDED: return "EXTENDED";
  465. case RELAY_COMMAND_TRUNCATE: return "TRUNCATE";
  466. case RELAY_COMMAND_TRUNCATED: return "TRUNCATED";
  467. case RELAY_COMMAND_DROP: return "DROP";
  468. case RELAY_COMMAND_RESOLVE: return "RESOLVE";
  469. case RELAY_COMMAND_RESOLVED: return "RESOLVED";
  470. case RELAY_COMMAND_BEGIN_DIR: return "BEGIN_DIR";
  471. case RELAY_COMMAND_ESTABLISH_INTRO: return "ESTABLISH_INTRO";
  472. case RELAY_COMMAND_ESTABLISH_RENDEZVOUS: return "ESTABLISH_RENDEZVOUS";
  473. case RELAY_COMMAND_INTRODUCE1: return "INTRODUCE1";
  474. case RELAY_COMMAND_INTRODUCE2: return "INTRODUCE2";
  475. case RELAY_COMMAND_RENDEZVOUS1: return "RENDEZVOUS1";
  476. case RELAY_COMMAND_RENDEZVOUS2: return "RENDEZVOUS2";
  477. case RELAY_COMMAND_INTRO_ESTABLISHED: return "INTRO_ESTABLISHED";
  478. case RELAY_COMMAND_RENDEZVOUS_ESTABLISHED:
  479. return "RENDEZVOUS_ESTABLISHED";
  480. case RELAY_COMMAND_INTRODUCE_ACK: return "INTRODUCE_ACK";
  481. case RELAY_COMMAND_EXTEND2: return "EXTEND2";
  482. case RELAY_COMMAND_EXTENDED2: return "EXTENDED2";
  483. case RELAY_COMMAND_PADDING_NEGOTIATE: return "PADDING_NEGOTIATE";
  484. case RELAY_COMMAND_PADDING_NEGOTIATED: return "PADDING_NEGOTIATED";
  485. default:
  486. tor_snprintf(buf, sizeof(buf), "Unrecognized relay command %u",
  487. (unsigned)command);
  488. return buf;
  489. }
  490. }
  491. /** Make a relay cell out of <b>relay_command</b> and <b>payload</b>, and send
  492. * it onto the open circuit <b>circ</b>. <b>stream_id</b> is the ID on
  493. * <b>circ</b> for the stream that's sending the relay cell, or 0 if it's a
  494. * control cell. <b>cpath_layer</b> is NULL for OR->OP cells, or the
  495. * destination hop for OP->OR cells.
  496. *
  497. * If you can't send the cell, mark the circuit for close and return -1. Else
  498. * return 0.
  499. */
  500. MOCK_IMPL(int,
  501. relay_send_command_from_edge_,(streamid_t stream_id, circuit_t *circ,
  502. uint8_t relay_command, const char *payload,
  503. size_t payload_len, crypt_path_t *cpath_layer,
  504. const char *filename, int lineno))
  505. {
  506. cell_t cell;
  507. relay_header_t rh;
  508. cell_direction_t cell_direction;
  509. /* XXXX NM Split this function into a separate versions per circuit type? */
  510. tor_assert(circ);
  511. tor_assert(payload_len <= RELAY_PAYLOAD_SIZE);
  512. memset(&cell, 0, sizeof(cell_t));
  513. cell.command = CELL_RELAY;
  514. if (CIRCUIT_IS_ORIGIN(circ)) {
  515. tor_assert(cpath_layer);
  516. cell.circ_id = circ->n_circ_id;
  517. cell_direction = CELL_DIRECTION_OUT;
  518. } else {
  519. tor_assert(! cpath_layer);
  520. cell.circ_id = TO_OR_CIRCUIT(circ)->p_circ_id;
  521. cell_direction = CELL_DIRECTION_IN;
  522. }
  523. memset(&rh, 0, sizeof(rh));
  524. rh.command = relay_command;
  525. rh.stream_id = stream_id;
  526. rh.length = payload_len;
  527. relay_header_pack(cell.payload, &rh);
  528. if (payload_len)
  529. memcpy(cell.payload+RELAY_HEADER_SIZE, payload, payload_len);
  530. log_debug(LD_OR,"delivering %d cell %s.", relay_command,
  531. cell_direction == CELL_DIRECTION_OUT ? "forward" : "backward");
  532. /* Tell circpad we're sending a relay cell */
  533. circpad_deliver_sent_relay_cell_events(circ, relay_command);
  534. /* If we are sending an END cell and this circuit is used for a tunneled
  535. * directory request, advance its state. */
  536. if (relay_command == RELAY_COMMAND_END && circ->dirreq_id)
  537. geoip_change_dirreq_state(circ->dirreq_id, DIRREQ_TUNNELED,
  538. DIRREQ_END_CELL_SENT);
  539. if (cell_direction == CELL_DIRECTION_OUT && circ->n_chan) {
  540. /* if we're using relaybandwidthrate, this conn wants priority */
  541. channel_timestamp_client(circ->n_chan);
  542. }
  543. if (cell_direction == CELL_DIRECTION_OUT) {
  544. origin_circuit_t *origin_circ = TO_ORIGIN_CIRCUIT(circ);
  545. if (origin_circ->remaining_relay_early_cells > 0 &&
  546. (relay_command == RELAY_COMMAND_EXTEND ||
  547. relay_command == RELAY_COMMAND_EXTEND2 ||
  548. cpath_layer != origin_circ->cpath)) {
  549. /* If we've got any relay_early cells left and (we're sending
  550. * an extend cell or we're not talking to the first hop), use
  551. * one of them. Don't worry about the conn protocol version:
  552. * append_cell_to_circuit_queue will fix it up. */
  553. cell.command = CELL_RELAY_EARLY;
  554. /* If we're out of relay early cells, tell circpad */
  555. if (--origin_circ->remaining_relay_early_cells == 0)
  556. circpad_machine_event_circ_has_no_relay_early(origin_circ);
  557. log_debug(LD_OR, "Sending a RELAY_EARLY cell; %d remaining.",
  558. (int)origin_circ->remaining_relay_early_cells);
  559. /* Memorize the command that is sent as RELAY_EARLY cell; helps debug
  560. * task 878. */
  561. origin_circ->relay_early_commands[
  562. origin_circ->relay_early_cells_sent++] = relay_command;
  563. } else if (relay_command == RELAY_COMMAND_EXTEND ||
  564. relay_command == RELAY_COMMAND_EXTEND2) {
  565. /* If no RELAY_EARLY cells can be sent over this circuit, log which
  566. * commands have been sent as RELAY_EARLY cells before; helps debug
  567. * task 878. */
  568. smartlist_t *commands_list = smartlist_new();
  569. int i = 0;
  570. char *commands = NULL;
  571. for (; i < origin_circ->relay_early_cells_sent; i++)
  572. smartlist_add(commands_list, (char *)
  573. relay_command_to_string(origin_circ->relay_early_commands[i]));
  574. commands = smartlist_join_strings(commands_list, ",", 0, NULL);
  575. log_warn(LD_BUG, "Uh-oh. We're sending a RELAY_COMMAND_EXTEND cell, "
  576. "but we have run out of RELAY_EARLY cells on that circuit. "
  577. "Commands sent before: %s", commands);
  578. tor_free(commands);
  579. smartlist_free(commands_list);
  580. }
  581. /* Let's assume we're well-behaved: Anything that we decide to send is
  582. * valid, delivered data. */
  583. circuit_sent_valid_data(origin_circ, rh.length);
  584. }
  585. if (circuit_package_relay_cell(&cell, circ, cell_direction, cpath_layer,
  586. stream_id, filename, lineno) < 0) {
  587. log_warn(LD_BUG,"circuit_package_relay_cell failed. Closing.");
  588. circuit_mark_for_close(circ, END_CIRC_REASON_INTERNAL);
  589. return -1;
  590. }
  591. return 0;
  592. }
  593. /** Make a relay cell out of <b>relay_command</b> and <b>payload</b>, and
  594. * send it onto the open circuit <b>circ</b>. <b>fromconn</b> is the stream
  595. * that's sending the relay cell, or NULL if it's a control cell.
  596. * <b>cpath_layer</b> is NULL for OR->OP cells, or the destination hop
  597. * for OP->OR cells.
  598. *
  599. * If you can't send the cell, mark the circuit for close and
  600. * return -1. Else return 0.
  601. */
  602. int
  603. connection_edge_send_command(edge_connection_t *fromconn,
  604. uint8_t relay_command, const char *payload,
  605. size_t payload_len)
  606. {
  607. /* XXXX NM Split this function into a separate versions per circuit type? */
  608. circuit_t *circ;
  609. crypt_path_t *cpath_layer = fromconn->cpath_layer;
  610. tor_assert(fromconn);
  611. circ = fromconn->on_circuit;
  612. if (fromconn->base_.marked_for_close) {
  613. log_warn(LD_BUG,
  614. "called on conn that's already marked for close at %s:%d.",
  615. fromconn->base_.marked_for_close_file,
  616. fromconn->base_.marked_for_close);
  617. return 0;
  618. }
  619. if (!circ) {
  620. if (fromconn->base_.type == CONN_TYPE_AP) {
  621. log_info(LD_APP,"no circ. Closing conn.");
  622. connection_mark_unattached_ap(EDGE_TO_ENTRY_CONN(fromconn),
  623. END_STREAM_REASON_INTERNAL);
  624. } else {
  625. log_info(LD_EXIT,"no circ. Closing conn.");
  626. fromconn->edge_has_sent_end = 1; /* no circ to send to */
  627. fromconn->end_reason = END_STREAM_REASON_INTERNAL;
  628. connection_mark_for_close(TO_CONN(fromconn));
  629. }
  630. return -1;
  631. }
  632. if (circ->marked_for_close) {
  633. /* The circuit has been marked, but not freed yet. When it's freed, it
  634. * will mark this connection for close. */
  635. return -1;
  636. }
  637. #ifdef MEASUREMENTS_21206
  638. /* Keep track of the number of RELAY_DATA cells sent for directory
  639. * connections. */
  640. connection_t *linked_conn = TO_CONN(fromconn)->linked_conn;
  641. if (linked_conn && linked_conn->type == CONN_TYPE_DIR) {
  642. ++(TO_DIR_CONN(linked_conn)->data_cells_sent);
  643. }
  644. #endif /* defined(MEASUREMENTS_21206) */
  645. return relay_send_command_from_edge(fromconn->stream_id, circ,
  646. relay_command, payload,
  647. payload_len, cpath_layer);
  648. }
  649. /** How many times will I retry a stream that fails due to DNS
  650. * resolve failure or misc error?
  651. */
  652. #define MAX_RESOLVE_FAILURES 3
  653. /** Return 1 if reason is something that you should retry if you
  654. * get the end cell before you've connected; else return 0. */
  655. static int
  656. edge_reason_is_retriable(int reason)
  657. {
  658. return reason == END_STREAM_REASON_HIBERNATING ||
  659. reason == END_STREAM_REASON_RESOURCELIMIT ||
  660. reason == END_STREAM_REASON_EXITPOLICY ||
  661. reason == END_STREAM_REASON_RESOLVEFAILED ||
  662. reason == END_STREAM_REASON_MISC ||
  663. reason == END_STREAM_REASON_NOROUTE;
  664. }
  665. /** Called when we receive an END cell on a stream that isn't open yet,
  666. * from the client side.
  667. * Arguments are as for connection_edge_process_relay_cell().
  668. */
  669. static int
  670. connection_ap_process_end_not_open(
  671. relay_header_t *rh, cell_t *cell, origin_circuit_t *circ,
  672. entry_connection_t *conn, crypt_path_t *layer_hint)
  673. {
  674. node_t *exitrouter;
  675. int reason = *(cell->payload+RELAY_HEADER_SIZE);
  676. int control_reason;
  677. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(conn);
  678. (void) layer_hint; /* unused */
  679. if (rh->length > 0) {
  680. if (reason == END_STREAM_REASON_TORPROTOCOL ||
  681. reason == END_STREAM_REASON_DESTROY) {
  682. /* Both of these reasons could mean a failed tag
  683. * hit the exit and it complained. Do not probe.
  684. * Fail the circuit. */
  685. circ->path_state = PATH_STATE_USE_FAILED;
  686. return -END_CIRC_REASON_TORPROTOCOL;
  687. } else if (reason == END_STREAM_REASON_INTERNAL) {
  688. /* We can't infer success or failure, since older Tors report
  689. * ENETUNREACH as END_STREAM_REASON_INTERNAL. */
  690. } else {
  691. /* Path bias: If we get a valid reason code from the exit,
  692. * it wasn't due to tagging.
  693. *
  694. * We rely on recognized+digest being strong enough to make
  695. * tags unlikely to allow us to get tagged, yet 'recognized'
  696. * reason codes here. */
  697. pathbias_mark_use_success(circ);
  698. }
  699. }
  700. /* This end cell is now valid. */
  701. circuit_read_valid_data(circ, rh->length);
  702. if (rh->length == 0) {
  703. reason = END_STREAM_REASON_MISC;
  704. }
  705. control_reason = reason | END_STREAM_REASON_FLAG_REMOTE;
  706. if (edge_reason_is_retriable(reason) &&
  707. /* avoid retry if rend */
  708. !connection_edge_is_rendezvous_stream(edge_conn)) {
  709. const char *chosen_exit_digest =
  710. circ->build_state->chosen_exit->identity_digest;
  711. log_info(LD_APP,"Address '%s' refused due to '%s'. Considering retrying.",
  712. safe_str(conn->socks_request->address),
  713. stream_end_reason_to_string(reason));
  714. exitrouter = node_get_mutable_by_id(chosen_exit_digest);
  715. switch (reason) {
  716. case END_STREAM_REASON_EXITPOLICY: {
  717. tor_addr_t addr;
  718. tor_addr_make_unspec(&addr);
  719. if (rh->length >= 5) {
  720. int ttl = -1;
  721. tor_addr_make_unspec(&addr);
  722. if (rh->length == 5 || rh->length == 9) {
  723. tor_addr_from_ipv4n(&addr,
  724. get_uint32(cell->payload+RELAY_HEADER_SIZE+1));
  725. if (rh->length == 9)
  726. ttl = (int)ntohl(get_uint32(cell->payload+RELAY_HEADER_SIZE+5));
  727. } else if (rh->length == 17 || rh->length == 21) {
  728. tor_addr_from_ipv6_bytes(&addr,
  729. (char*)(cell->payload+RELAY_HEADER_SIZE+1));
  730. if (rh->length == 21)
  731. ttl = (int)ntohl(get_uint32(cell->payload+RELAY_HEADER_SIZE+17));
  732. }
  733. if (tor_addr_is_null(&addr)) {
  734. log_info(LD_APP,"Address '%s' resolved to 0.0.0.0. Closing,",
  735. safe_str(conn->socks_request->address));
  736. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  737. return 0;
  738. }
  739. if ((tor_addr_family(&addr) == AF_INET &&
  740. !conn->entry_cfg.ipv4_traffic) ||
  741. (tor_addr_family(&addr) == AF_INET6 &&
  742. !conn->entry_cfg.ipv6_traffic)) {
  743. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  744. "Got an EXITPOLICY failure on a connection with a "
  745. "mismatched family. Closing.");
  746. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  747. return 0;
  748. }
  749. if (get_options()->ClientDNSRejectInternalAddresses &&
  750. tor_addr_is_internal(&addr, 0)) {
  751. log_info(LD_APP,"Address '%s' resolved to internal. Closing,",
  752. safe_str(conn->socks_request->address));
  753. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  754. return 0;
  755. }
  756. client_dns_set_addressmap(conn,
  757. conn->socks_request->address, &addr,
  758. conn->chosen_exit_name, ttl);
  759. {
  760. char new_addr[TOR_ADDR_BUF_LEN];
  761. tor_addr_to_str(new_addr, &addr, sizeof(new_addr), 1);
  762. if (strcmp(conn->socks_request->address, new_addr)) {
  763. strlcpy(conn->socks_request->address, new_addr,
  764. sizeof(conn->socks_request->address));
  765. control_event_stream_status(conn, STREAM_EVENT_REMAP, 0);
  766. }
  767. }
  768. }
  769. /* check if the exit *ought* to have allowed it */
  770. adjust_exit_policy_from_exitpolicy_failure(circ,
  771. conn,
  772. exitrouter,
  773. &addr);
  774. if (conn->chosen_exit_optional ||
  775. conn->chosen_exit_retries) {
  776. /* stop wanting a specific exit */
  777. conn->chosen_exit_optional = 0;
  778. /* A non-zero chosen_exit_retries can happen if we set a
  779. * TrackHostExits for this address under a port that the exit
  780. * relay allows, but then try the same address with a different
  781. * port that it doesn't allow to exit. We shouldn't unregister
  782. * the mapping, since it is probably still wanted on the
  783. * original port. But now we give away to the exit relay that
  784. * we probably have a TrackHostExits on it. So be it. */
  785. conn->chosen_exit_retries = 0;
  786. tor_free(conn->chosen_exit_name); /* clears it */
  787. }
  788. if (connection_ap_detach_retriable(conn, circ, control_reason) >= 0)
  789. return 0;
  790. /* else, conn will get closed below */
  791. break;
  792. }
  793. case END_STREAM_REASON_CONNECTREFUSED:
  794. if (!conn->chosen_exit_optional)
  795. break; /* break means it'll close, below */
  796. /* Else fall through: expire this circuit, clear the
  797. * chosen_exit_name field, and try again. */
  798. /* Falls through. */
  799. case END_STREAM_REASON_RESOLVEFAILED:
  800. case END_STREAM_REASON_TIMEOUT:
  801. case END_STREAM_REASON_MISC:
  802. case END_STREAM_REASON_NOROUTE:
  803. if (client_dns_incr_failures(conn->socks_request->address)
  804. < MAX_RESOLVE_FAILURES) {
  805. /* We haven't retried too many times; reattach the connection. */
  806. circuit_log_path(LOG_INFO,LD_APP,circ);
  807. /* Mark this circuit "unusable for new streams". */
  808. mark_circuit_unusable_for_new_conns(circ);
  809. if (conn->chosen_exit_optional) {
  810. /* stop wanting a specific exit */
  811. conn->chosen_exit_optional = 0;
  812. tor_free(conn->chosen_exit_name); /* clears it */
  813. }
  814. if (connection_ap_detach_retriable(conn, circ, control_reason) >= 0)
  815. return 0;
  816. /* else, conn will get closed below */
  817. } else {
  818. log_notice(LD_APP,
  819. "Have tried resolving or connecting to address '%s' "
  820. "at %d different places. Giving up.",
  821. safe_str(conn->socks_request->address),
  822. MAX_RESOLVE_FAILURES);
  823. /* clear the failures, so it will have a full try next time */
  824. client_dns_clear_failures(conn->socks_request->address);
  825. }
  826. break;
  827. case END_STREAM_REASON_HIBERNATING:
  828. case END_STREAM_REASON_RESOURCELIMIT:
  829. if (exitrouter) {
  830. policies_set_node_exitpolicy_to_reject_all(exitrouter);
  831. }
  832. if (conn->chosen_exit_optional) {
  833. /* stop wanting a specific exit */
  834. conn->chosen_exit_optional = 0;
  835. tor_free(conn->chosen_exit_name); /* clears it */
  836. }
  837. if (connection_ap_detach_retriable(conn, circ, control_reason) >= 0)
  838. return 0;
  839. /* else, will close below */
  840. break;
  841. } /* end switch */
  842. log_info(LD_APP,"Giving up on retrying; conn can't be handled.");
  843. }
  844. log_info(LD_APP,
  845. "Edge got end (%s) before we're connected. Marking for close.",
  846. stream_end_reason_to_string(rh->length > 0 ? reason : -1));
  847. circuit_log_path(LOG_INFO,LD_APP,circ);
  848. /* need to test because of detach_retriable */
  849. if (!ENTRY_TO_CONN(conn)->marked_for_close)
  850. connection_mark_unattached_ap(conn, control_reason);
  851. return 0;
  852. }
  853. /** Called when we have gotten an END_REASON_EXITPOLICY failure on <b>circ</b>
  854. * for <b>conn</b>, while attempting to connect via <b>node</b>. If the node
  855. * told us which address it rejected, then <b>addr</b> is that address;
  856. * otherwise it is AF_UNSPEC.
  857. *
  858. * If we are sure the node should have allowed this address, mark the node as
  859. * having a reject *:* exit policy. Otherwise, mark the circuit as unusable
  860. * for this particular address.
  861. **/
  862. static void
  863. adjust_exit_policy_from_exitpolicy_failure(origin_circuit_t *circ,
  864. entry_connection_t *conn,
  865. node_t *node,
  866. const tor_addr_t *addr)
  867. {
  868. int make_reject_all = 0;
  869. const sa_family_t family = tor_addr_family(addr);
  870. if (node) {
  871. tor_addr_t tmp;
  872. int asked_for_family = tor_addr_parse(&tmp, conn->socks_request->address);
  873. if (family == AF_UNSPEC) {
  874. make_reject_all = 1;
  875. } else if (node_exit_policy_is_exact(node, family) &&
  876. asked_for_family != -1 && !conn->chosen_exit_name) {
  877. make_reject_all = 1;
  878. }
  879. if (make_reject_all) {
  880. log_info(LD_APP,
  881. "Exitrouter %s seems to be more restrictive than its exit "
  882. "policy. Not using this router as exit for now.",
  883. node_describe(node));
  884. policies_set_node_exitpolicy_to_reject_all(node);
  885. }
  886. }
  887. if (family != AF_UNSPEC)
  888. addr_policy_append_reject_addr(&circ->prepend_policy, addr);
  889. }
  890. /** Helper: change the socks_request-&gt;address field on conn to the
  891. * dotted-quad representation of <b>new_addr</b>,
  892. * and send an appropriate REMAP event. */
  893. static void
  894. remap_event_helper(entry_connection_t *conn, const tor_addr_t *new_addr)
  895. {
  896. tor_addr_to_str(conn->socks_request->address, new_addr,
  897. sizeof(conn->socks_request->address),
  898. 1);
  899. control_event_stream_status(conn, STREAM_EVENT_REMAP,
  900. REMAP_STREAM_SOURCE_EXIT);
  901. }
  902. /** Extract the contents of a connected cell in <b>cell</b>, whose relay
  903. * header has already been parsed into <b>rh</b>. On success, set
  904. * <b>addr_out</b> to the address we're connected to, and <b>ttl_out</b> to
  905. * the ttl of that address, in seconds, and return 0. On failure, return
  906. * -1.
  907. *
  908. * Note that the resulting address can be UNSPEC if the connected cell had no
  909. * address (as for a stream to an union service or a tunneled directory
  910. * connection), and that the ttl can be absent (in which case <b>ttl_out</b>
  911. * is set to -1). */
  912. STATIC int
  913. connected_cell_parse(const relay_header_t *rh, const cell_t *cell,
  914. tor_addr_t *addr_out, int *ttl_out)
  915. {
  916. uint32_t bytes;
  917. const uint8_t *payload = cell->payload + RELAY_HEADER_SIZE;
  918. tor_addr_make_unspec(addr_out);
  919. *ttl_out = -1;
  920. if (rh->length == 0)
  921. return 0;
  922. if (rh->length < 4)
  923. return -1;
  924. bytes = ntohl(get_uint32(payload));
  925. /* If bytes is 0, this is maybe a v6 address. Otherwise it's a v4 address */
  926. if (bytes != 0) {
  927. /* v4 address */
  928. tor_addr_from_ipv4h(addr_out, bytes);
  929. if (rh->length >= 8) {
  930. bytes = ntohl(get_uint32(payload + 4));
  931. if (bytes <= INT32_MAX)
  932. *ttl_out = bytes;
  933. }
  934. } else {
  935. if (rh->length < 25) /* 4 bytes of 0s, 1 addr, 16 ipv4, 4 ttl. */
  936. return -1;
  937. if (get_uint8(payload + 4) != 6)
  938. return -1;
  939. tor_addr_from_ipv6_bytes(addr_out, (char*)(payload + 5));
  940. bytes = ntohl(get_uint32(payload + 21));
  941. if (bytes <= INT32_MAX)
  942. *ttl_out = (int) bytes;
  943. }
  944. return 0;
  945. }
  946. /** Drop all storage held by <b>addr</b>. */
  947. STATIC void
  948. address_ttl_free_(address_ttl_t *addr)
  949. {
  950. if (!addr)
  951. return;
  952. tor_free(addr->hostname);
  953. tor_free(addr);
  954. }
  955. /** Parse a resolved cell in <b>cell</b>, with parsed header in <b>rh</b>.
  956. * Return -1 on parse error. On success, add one or more newly allocated
  957. * address_ttl_t to <b>addresses_out</b>; set *<b>errcode_out</b> to
  958. * one of 0, RESOLVED_TYPE_ERROR, or RESOLVED_TYPE_ERROR_TRANSIENT, and
  959. * return 0. */
  960. STATIC int
  961. resolved_cell_parse(const cell_t *cell, const relay_header_t *rh,
  962. smartlist_t *addresses_out, int *errcode_out)
  963. {
  964. const uint8_t *cp;
  965. uint8_t answer_type;
  966. size_t answer_len;
  967. address_ttl_t *addr;
  968. size_t remaining;
  969. int errcode = 0;
  970. smartlist_t *addrs;
  971. tor_assert(cell);
  972. tor_assert(rh);
  973. tor_assert(addresses_out);
  974. tor_assert(errcode_out);
  975. *errcode_out = 0;
  976. if (rh->length > RELAY_PAYLOAD_SIZE)
  977. return -1;
  978. addrs = smartlist_new();
  979. cp = cell->payload + RELAY_HEADER_SIZE;
  980. remaining = rh->length;
  981. while (remaining) {
  982. const uint8_t *cp_orig = cp;
  983. if (remaining < 2)
  984. goto err;
  985. answer_type = *cp++;
  986. answer_len = *cp++;
  987. if (remaining < 2 + answer_len + 4) {
  988. goto err;
  989. }
  990. if (answer_type == RESOLVED_TYPE_IPV4) {
  991. if (answer_len != 4) {
  992. goto err;
  993. }
  994. addr = tor_malloc_zero(sizeof(*addr));
  995. tor_addr_from_ipv4n(&addr->addr, get_uint32(cp));
  996. cp += 4;
  997. addr->ttl = ntohl(get_uint32(cp));
  998. cp += 4;
  999. smartlist_add(addrs, addr);
  1000. } else if (answer_type == RESOLVED_TYPE_IPV6) {
  1001. if (answer_len != 16)
  1002. goto err;
  1003. addr = tor_malloc_zero(sizeof(*addr));
  1004. tor_addr_from_ipv6_bytes(&addr->addr, (const char*) cp);
  1005. cp += 16;
  1006. addr->ttl = ntohl(get_uint32(cp));
  1007. cp += 4;
  1008. smartlist_add(addrs, addr);
  1009. } else if (answer_type == RESOLVED_TYPE_HOSTNAME) {
  1010. if (answer_len == 0) {
  1011. goto err;
  1012. }
  1013. addr = tor_malloc_zero(sizeof(*addr));
  1014. addr->hostname = tor_memdup_nulterm(cp, answer_len);
  1015. cp += answer_len;
  1016. addr->ttl = ntohl(get_uint32(cp));
  1017. cp += 4;
  1018. smartlist_add(addrs, addr);
  1019. } else if (answer_type == RESOLVED_TYPE_ERROR_TRANSIENT ||
  1020. answer_type == RESOLVED_TYPE_ERROR) {
  1021. errcode = answer_type;
  1022. /* Ignore the error contents */
  1023. cp += answer_len + 4;
  1024. } else {
  1025. cp += answer_len + 4;
  1026. }
  1027. tor_assert(((ssize_t)remaining) >= (cp - cp_orig));
  1028. remaining -= (cp - cp_orig);
  1029. }
  1030. if (errcode && smartlist_len(addrs) == 0) {
  1031. /* Report an error only if there were no results. */
  1032. *errcode_out = errcode;
  1033. }
  1034. smartlist_add_all(addresses_out, addrs);
  1035. smartlist_free(addrs);
  1036. return 0;
  1037. err:
  1038. /* On parse error, don't report any results */
  1039. SMARTLIST_FOREACH(addrs, address_ttl_t *, a, address_ttl_free(a));
  1040. smartlist_free(addrs);
  1041. return -1;
  1042. }
  1043. /** Helper for connection_edge_process_resolved_cell: given an error code,
  1044. * an entry_connection, and a list of address_ttl_t *, report the best answer
  1045. * to the entry_connection. */
  1046. static void
  1047. connection_ap_handshake_socks_got_resolved_cell(entry_connection_t *conn,
  1048. int error_code,
  1049. smartlist_t *results)
  1050. {
  1051. address_ttl_t *addr_ipv4 = NULL;
  1052. address_ttl_t *addr_ipv6 = NULL;
  1053. address_ttl_t *addr_hostname = NULL;
  1054. address_ttl_t *addr_best = NULL;
  1055. /* If it's an error code, that's easy. */
  1056. if (error_code) {
  1057. tor_assert(error_code == RESOLVED_TYPE_ERROR ||
  1058. error_code == RESOLVED_TYPE_ERROR_TRANSIENT);
  1059. connection_ap_handshake_socks_resolved(conn,
  1060. error_code,0,NULL,-1,-1);
  1061. return;
  1062. }
  1063. /* Get the first answer of each type. */
  1064. SMARTLIST_FOREACH_BEGIN(results, address_ttl_t *, addr) {
  1065. if (addr->hostname) {
  1066. if (!addr_hostname) {
  1067. addr_hostname = addr;
  1068. }
  1069. } else if (tor_addr_family(&addr->addr) == AF_INET) {
  1070. if (!addr_ipv4 && conn->entry_cfg.ipv4_traffic) {
  1071. addr_ipv4 = addr;
  1072. }
  1073. } else if (tor_addr_family(&addr->addr) == AF_INET6) {
  1074. if (!addr_ipv6 && conn->entry_cfg.ipv6_traffic) {
  1075. addr_ipv6 = addr;
  1076. }
  1077. }
  1078. } SMARTLIST_FOREACH_END(addr);
  1079. /* Now figure out which type we wanted to deliver. */
  1080. if (conn->socks_request->command == SOCKS_COMMAND_RESOLVE_PTR) {
  1081. if (addr_hostname) {
  1082. connection_ap_handshake_socks_resolved(conn,
  1083. RESOLVED_TYPE_HOSTNAME,
  1084. strlen(addr_hostname->hostname),
  1085. (uint8_t*)addr_hostname->hostname,
  1086. addr_hostname->ttl,-1);
  1087. } else {
  1088. connection_ap_handshake_socks_resolved(conn,
  1089. RESOLVED_TYPE_ERROR,0,NULL,-1,-1);
  1090. }
  1091. return;
  1092. }
  1093. if (conn->entry_cfg.prefer_ipv6) {
  1094. addr_best = addr_ipv6 ? addr_ipv6 : addr_ipv4;
  1095. } else {
  1096. addr_best = addr_ipv4 ? addr_ipv4 : addr_ipv6;
  1097. }
  1098. /* Now convert it to the ugly old interface */
  1099. if (! addr_best) {
  1100. connection_ap_handshake_socks_resolved(conn,
  1101. RESOLVED_TYPE_ERROR,0,NULL,-1,-1);
  1102. return;
  1103. }
  1104. connection_ap_handshake_socks_resolved_addr(conn,
  1105. &addr_best->addr,
  1106. addr_best->ttl,
  1107. -1);
  1108. remap_event_helper(conn, &addr_best->addr);
  1109. }
  1110. /** Handle a RELAY_COMMAND_RESOLVED cell that we received on a non-open AP
  1111. * stream. */
  1112. STATIC int
  1113. connection_edge_process_resolved_cell(edge_connection_t *conn,
  1114. const cell_t *cell,
  1115. const relay_header_t *rh)
  1116. {
  1117. entry_connection_t *entry_conn = EDGE_TO_ENTRY_CONN(conn);
  1118. smartlist_t *resolved_addresses = NULL;
  1119. int errcode = 0;
  1120. if (conn->base_.state != AP_CONN_STATE_RESOLVE_WAIT) {
  1121. log_fn(LOG_PROTOCOL_WARN, LD_APP, "Got a 'resolved' cell while "
  1122. "not in state resolve_wait. Dropping.");
  1123. return 0;
  1124. }
  1125. tor_assert(SOCKS_COMMAND_IS_RESOLVE(entry_conn->socks_request->command));
  1126. resolved_addresses = smartlist_new();
  1127. if (resolved_cell_parse(cell, rh, resolved_addresses, &errcode)) {
  1128. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1129. "Dropping malformed 'resolved' cell");
  1130. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TORPROTOCOL);
  1131. goto done;
  1132. }
  1133. if (get_options()->ClientDNSRejectInternalAddresses) {
  1134. int orig_len = smartlist_len(resolved_addresses);
  1135. SMARTLIST_FOREACH_BEGIN(resolved_addresses, address_ttl_t *, addr) {
  1136. if (addr->hostname == NULL && tor_addr_is_internal(&addr->addr, 0)) {
  1137. log_info(LD_APP, "Got a resolved cell with answer %s; dropping that "
  1138. "answer.",
  1139. safe_str_client(fmt_addr(&addr->addr)));
  1140. address_ttl_free(addr);
  1141. SMARTLIST_DEL_CURRENT(resolved_addresses, addr);
  1142. }
  1143. } SMARTLIST_FOREACH_END(addr);
  1144. if (orig_len && smartlist_len(resolved_addresses) == 0) {
  1145. log_info(LD_APP, "Got a resolved cell with only private addresses; "
  1146. "dropping it.");
  1147. connection_ap_handshake_socks_resolved(entry_conn,
  1148. RESOLVED_TYPE_ERROR_TRANSIENT,
  1149. 0, NULL, 0, TIME_MAX);
  1150. connection_mark_unattached_ap(entry_conn,
  1151. END_STREAM_REASON_TORPROTOCOL);
  1152. goto done;
  1153. }
  1154. }
  1155. /* This is valid data at this point. Count it */
  1156. if (conn->on_circuit && CIRCUIT_IS_ORIGIN(conn->on_circuit)) {
  1157. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(conn->on_circuit),
  1158. rh->length);
  1159. }
  1160. connection_ap_handshake_socks_got_resolved_cell(entry_conn,
  1161. errcode,
  1162. resolved_addresses);
  1163. connection_mark_unattached_ap(entry_conn,
  1164. END_STREAM_REASON_DONE |
  1165. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED);
  1166. done:
  1167. SMARTLIST_FOREACH(resolved_addresses, address_ttl_t *, addr,
  1168. address_ttl_free(addr));
  1169. smartlist_free(resolved_addresses);
  1170. return 0;
  1171. }
  1172. /** An incoming relay cell has arrived from circuit <b>circ</b> to
  1173. * stream <b>conn</b>.
  1174. *
  1175. * The arguments here are the same as in
  1176. * connection_edge_process_relay_cell() below; this function is called
  1177. * from there when <b>conn</b> is defined and not in an open state.
  1178. */
  1179. static int
  1180. connection_edge_process_relay_cell_not_open(
  1181. relay_header_t *rh, cell_t *cell, circuit_t *circ,
  1182. edge_connection_t *conn, crypt_path_t *layer_hint)
  1183. {
  1184. if (rh->command == RELAY_COMMAND_END) {
  1185. if (CIRCUIT_IS_ORIGIN(circ) && conn->base_.type == CONN_TYPE_AP) {
  1186. return connection_ap_process_end_not_open(rh, cell,
  1187. TO_ORIGIN_CIRCUIT(circ),
  1188. EDGE_TO_ENTRY_CONN(conn),
  1189. layer_hint);
  1190. } else {
  1191. /* we just got an 'end', don't need to send one */
  1192. conn->edge_has_sent_end = 1;
  1193. conn->end_reason = *(cell->payload+RELAY_HEADER_SIZE) |
  1194. END_STREAM_REASON_FLAG_REMOTE;
  1195. connection_mark_for_close(TO_CONN(conn));
  1196. return 0;
  1197. }
  1198. }
  1199. if (conn->base_.type == CONN_TYPE_AP &&
  1200. rh->command == RELAY_COMMAND_CONNECTED) {
  1201. tor_addr_t addr;
  1202. int ttl;
  1203. entry_connection_t *entry_conn = EDGE_TO_ENTRY_CONN(conn);
  1204. tor_assert(CIRCUIT_IS_ORIGIN(circ));
  1205. if (conn->base_.state != AP_CONN_STATE_CONNECT_WAIT) {
  1206. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1207. "Got 'connected' while not in state connect_wait. Dropping.");
  1208. return 0;
  1209. }
  1210. CONNECTION_AP_EXPECT_NONPENDING(entry_conn);
  1211. conn->base_.state = AP_CONN_STATE_OPEN;
  1212. log_info(LD_APP,"'connected' received for circid %u streamid %d "
  1213. "after %d seconds.",
  1214. (unsigned)circ->n_circ_id,
  1215. rh->stream_id,
  1216. (int)(time(NULL) - conn->base_.timestamp_last_read_allowed));
  1217. if (connected_cell_parse(rh, cell, &addr, &ttl) < 0) {
  1218. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1219. "Got a badly formatted connected cell. Closing.");
  1220. connection_edge_end(conn, END_STREAM_REASON_TORPROTOCOL);
  1221. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TORPROTOCOL);
  1222. return 0;
  1223. }
  1224. if (tor_addr_family(&addr) != AF_UNSPEC) {
  1225. /* The family is not UNSPEC: so we were given an address in the
  1226. * connected cell. (This is normal, except for BEGINDIR and onion
  1227. * service streams.) */
  1228. const sa_family_t family = tor_addr_family(&addr);
  1229. if (tor_addr_is_null(&addr) ||
  1230. (get_options()->ClientDNSRejectInternalAddresses &&
  1231. tor_addr_is_internal(&addr, 0))) {
  1232. log_info(LD_APP, "...but it claims the IP address was %s. Closing.",
  1233. fmt_addr(&addr));
  1234. connection_edge_end(conn, END_STREAM_REASON_TORPROTOCOL);
  1235. connection_mark_unattached_ap(entry_conn,
  1236. END_STREAM_REASON_TORPROTOCOL);
  1237. return 0;
  1238. }
  1239. if ((family == AF_INET && ! entry_conn->entry_cfg.ipv4_traffic) ||
  1240. (family == AF_INET6 && ! entry_conn->entry_cfg.ipv6_traffic)) {
  1241. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1242. "Got a connected cell to %s with unsupported address family."
  1243. " Closing.", fmt_addr(&addr));
  1244. connection_edge_end(conn, END_STREAM_REASON_TORPROTOCOL);
  1245. connection_mark_unattached_ap(entry_conn,
  1246. END_STREAM_REASON_TORPROTOCOL);
  1247. return 0;
  1248. }
  1249. client_dns_set_addressmap(entry_conn,
  1250. entry_conn->socks_request->address, &addr,
  1251. entry_conn->chosen_exit_name, ttl);
  1252. remap_event_helper(entry_conn, &addr);
  1253. }
  1254. circuit_log_path(LOG_INFO,LD_APP,TO_ORIGIN_CIRCUIT(circ));
  1255. /* don't send a socks reply to transparent conns */
  1256. tor_assert(entry_conn->socks_request != NULL);
  1257. if (!entry_conn->socks_request->has_finished) {
  1258. connection_ap_handshake_socks_reply(entry_conn, NULL, 0, 0);
  1259. }
  1260. /* Was it a linked dir conn? If so, a dir request just started to
  1261. * fetch something; this could be a bootstrap status milestone. */
  1262. log_debug(LD_APP, "considering");
  1263. if (TO_CONN(conn)->linked_conn &&
  1264. TO_CONN(conn)->linked_conn->type == CONN_TYPE_DIR) {
  1265. connection_t *dirconn = TO_CONN(conn)->linked_conn;
  1266. log_debug(LD_APP, "it is! %d", dirconn->purpose);
  1267. switch (dirconn->purpose) {
  1268. case DIR_PURPOSE_FETCH_CERTIFICATE:
  1269. if (consensus_is_waiting_for_certs())
  1270. control_event_bootstrap(BOOTSTRAP_STATUS_LOADING_KEYS, 0);
  1271. break;
  1272. case DIR_PURPOSE_FETCH_CONSENSUS:
  1273. control_event_bootstrap(BOOTSTRAP_STATUS_LOADING_STATUS, 0);
  1274. break;
  1275. case DIR_PURPOSE_FETCH_SERVERDESC:
  1276. case DIR_PURPOSE_FETCH_MICRODESC:
  1277. if (TO_DIR_CONN(dirconn)->router_purpose == ROUTER_PURPOSE_GENERAL)
  1278. control_event_boot_dir(BOOTSTRAP_STATUS_LOADING_DESCRIPTORS,
  1279. count_loading_descriptors_progress());
  1280. break;
  1281. }
  1282. }
  1283. /* This is definitely a success, so forget about any pending data we
  1284. * had sent. */
  1285. if (entry_conn->pending_optimistic_data) {
  1286. buf_free(entry_conn->pending_optimistic_data);
  1287. entry_conn->pending_optimistic_data = NULL;
  1288. }
  1289. /* This is valid data at this point. Count it */
  1290. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ), rh->length);
  1291. /* handle anything that might have queued */
  1292. if (connection_edge_package_raw_inbuf(conn, 1, NULL) < 0) {
  1293. /* (We already sent an end cell if possible) */
  1294. connection_mark_for_close(TO_CONN(conn));
  1295. return 0;
  1296. }
  1297. return 0;
  1298. }
  1299. if (conn->base_.type == CONN_TYPE_AP &&
  1300. rh->command == RELAY_COMMAND_RESOLVED) {
  1301. return connection_edge_process_resolved_cell(conn, cell, rh);
  1302. }
  1303. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1304. "Got an unexpected relay command %d, in state %d (%s). Dropping.",
  1305. rh->command, conn->base_.state,
  1306. conn_state_to_string(conn->base_.type, conn->base_.state));
  1307. return 0; /* for forward compatibility, don't kill the circuit */
  1308. // connection_edge_end(conn, END_STREAM_REASON_TORPROTOCOL);
  1309. // connection_mark_for_close(conn);
  1310. // return -1;
  1311. }
  1312. /** An incoming relay cell has arrived on circuit <b>circ</b>. If
  1313. * <b>conn</b> is NULL this is a control cell, else <b>cell</b> is
  1314. * destined for <b>conn</b>.
  1315. *
  1316. * If <b>layer_hint</b> is defined, then we're the origin of the
  1317. * circuit, and it specifies the hop that packaged <b>cell</b>.
  1318. *
  1319. * Return -reason if you want to warn and tear down the circuit, else 0.
  1320. */
  1321. STATIC int
  1322. connection_edge_process_relay_cell(cell_t *cell, circuit_t *circ,
  1323. edge_connection_t *conn,
  1324. crypt_path_t *layer_hint)
  1325. {
  1326. static int num_seen=0;
  1327. relay_header_t rh;
  1328. unsigned domain = layer_hint?LD_APP:LD_EXIT;
  1329. int reason;
  1330. int optimistic_data = 0; /* Set to 1 if we receive data on a stream
  1331. * that's in the EXIT_CONN_STATE_RESOLVING
  1332. * or EXIT_CONN_STATE_CONNECTING states. */
  1333. tor_assert(cell);
  1334. tor_assert(circ);
  1335. relay_header_unpack(&rh, cell->payload);
  1336. // log_fn(LOG_DEBUG,"command %d stream %d", rh.command, rh.stream_id);
  1337. num_seen++;
  1338. log_debug(domain, "Now seen %d relay cells here (command %d, stream %d).",
  1339. num_seen, rh.command, rh.stream_id);
  1340. if (rh.length > RELAY_PAYLOAD_SIZE) {
  1341. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1342. "Relay cell length field too long. Closing circuit.");
  1343. return - END_CIRC_REASON_TORPROTOCOL;
  1344. }
  1345. if (rh.stream_id == 0) {
  1346. switch (rh.command) {
  1347. case RELAY_COMMAND_BEGIN:
  1348. case RELAY_COMMAND_CONNECTED:
  1349. case RELAY_COMMAND_END:
  1350. case RELAY_COMMAND_RESOLVE:
  1351. case RELAY_COMMAND_RESOLVED:
  1352. case RELAY_COMMAND_BEGIN_DIR:
  1353. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL, "Relay command %d with zero "
  1354. "stream_id. Dropping.", (int)rh.command);
  1355. return 0;
  1356. default:
  1357. ;
  1358. }
  1359. }
  1360. /* Tell circpad that we've recieved a recognized cell */
  1361. circpad_deliver_recognized_relay_cell_events(circ, rh.command, layer_hint);
  1362. /* either conn is NULL, in which case we've got a control cell, or else
  1363. * conn points to the recognized stream. */
  1364. if (conn && !connection_state_is_open(TO_CONN(conn))) {
  1365. if (conn->base_.type == CONN_TYPE_EXIT &&
  1366. (conn->base_.state == EXIT_CONN_STATE_CONNECTING ||
  1367. conn->base_.state == EXIT_CONN_STATE_RESOLVING) &&
  1368. rh.command == RELAY_COMMAND_DATA) {
  1369. /* Allow DATA cells to be delivered to an exit node in state
  1370. * EXIT_CONN_STATE_CONNECTING or EXIT_CONN_STATE_RESOLVING.
  1371. * This speeds up HTTP, for example. */
  1372. optimistic_data = 1;
  1373. } else if (rh.stream_id == 0 && rh.command == RELAY_COMMAND_DATA) {
  1374. log_warn(LD_BUG, "Somehow I had a connection that matched a "
  1375. "data cell with stream ID 0.");
  1376. } else {
  1377. return connection_edge_process_relay_cell_not_open(
  1378. &rh, cell, circ, conn, layer_hint);
  1379. }
  1380. }
  1381. switch (rh.command) {
  1382. case RELAY_COMMAND_DROP:
  1383. /* Already examined in circpad_deliver_recognized_relay_cell_events */
  1384. return 0;
  1385. case RELAY_COMMAND_PADDING_NEGOTIATE:
  1386. circpad_handle_padding_negotiate(circ, cell);
  1387. return 0;
  1388. case RELAY_COMMAND_PADDING_NEGOTIATED:
  1389. if (circpad_handle_padding_negotiated(circ, cell, layer_hint) == 0)
  1390. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ), rh.length);
  1391. return 0;
  1392. case RELAY_COMMAND_BEGIN:
  1393. case RELAY_COMMAND_BEGIN_DIR:
  1394. if (layer_hint &&
  1395. circ->purpose != CIRCUIT_PURPOSE_S_REND_JOINED) {
  1396. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1397. "Relay begin request unsupported at AP. Dropping.");
  1398. return 0;
  1399. }
  1400. if (circ->purpose == CIRCUIT_PURPOSE_S_REND_JOINED &&
  1401. layer_hint != TO_ORIGIN_CIRCUIT(circ)->cpath->prev) {
  1402. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1403. "Relay begin request to Hidden Service "
  1404. "from intermediary node. Dropping.");
  1405. return 0;
  1406. }
  1407. if (conn) {
  1408. log_fn(LOG_PROTOCOL_WARN, domain,
  1409. "Begin cell for known stream. Dropping.");
  1410. return 0;
  1411. }
  1412. if (rh.command == RELAY_COMMAND_BEGIN_DIR &&
  1413. circ->purpose != CIRCUIT_PURPOSE_S_REND_JOINED) {
  1414. /* Assign this circuit and its app-ward OR connection a unique ID,
  1415. * so that we can measure download times. The local edge and dir
  1416. * connection will be assigned the same ID when they are created
  1417. * and linked. */
  1418. static uint64_t next_id = 0;
  1419. circ->dirreq_id = ++next_id;
  1420. TO_OR_CIRCUIT(circ)->p_chan->dirreq_id = circ->dirreq_id;
  1421. }
  1422. return connection_exit_begin_conn(cell, circ);
  1423. case RELAY_COMMAND_DATA:
  1424. ++stats_n_data_cells_received;
  1425. /* Update our circuit-level deliver window that we received a DATA cell.
  1426. * If the deliver window goes below 0, we end the circuit and stream due
  1427. * to a protocol failure. */
  1428. if (sendme_circuit_data_received(circ, layer_hint) < 0) {
  1429. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1430. "(relay data) circ deliver_window below 0. Killing.");
  1431. connection_edge_end_close(conn, END_STREAM_REASON_TORPROTOCOL);
  1432. return -END_CIRC_REASON_TORPROTOCOL;
  1433. }
  1434. /* Consider sending a circuit-level SENDME cell. */
  1435. sendme_circuit_consider_sending(circ, layer_hint);
  1436. if (rh.stream_id == 0) {
  1437. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL, "Relay data cell with zero "
  1438. "stream_id. Dropping.");
  1439. return 0;
  1440. } else if (!conn) {
  1441. if (CIRCUIT_IS_ORIGIN(circ)) {
  1442. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1443. if (connection_half_edge_is_valid_data(ocirc->half_streams,
  1444. rh.stream_id)) {
  1445. circuit_read_valid_data(ocirc, rh.length);
  1446. log_info(domain,
  1447. "data cell on circ %u valid on half-closed "
  1448. "stream id %d", ocirc->global_identifier, rh.stream_id);
  1449. }
  1450. }
  1451. log_info(domain,"data cell dropped, unknown stream (streamid %d).",
  1452. rh.stream_id);
  1453. return 0;
  1454. }
  1455. /* Update our stream-level deliver window that we just received a DATA
  1456. * cell. Going below 0 means we have a protocol level error so the
  1457. * stream and circuit are closed. */
  1458. if (sendme_stream_data_received(conn) < 0) {
  1459. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1460. "(relay data) conn deliver_window below 0. Killing.");
  1461. connection_edge_end_close(conn, END_STREAM_REASON_TORPROTOCOL);
  1462. return -END_CIRC_REASON_TORPROTOCOL;
  1463. }
  1464. /* Total all valid application bytes delivered */
  1465. if (CIRCUIT_IS_ORIGIN(circ) && rh.length > 0) {
  1466. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ), rh.length);
  1467. }
  1468. stats_n_data_bytes_received += rh.length;
  1469. connection_buf_add((char*)(cell->payload + RELAY_HEADER_SIZE),
  1470. rh.length, TO_CONN(conn));
  1471. #ifdef MEASUREMENTS_21206
  1472. /* Count number of RELAY_DATA cells received on a linked directory
  1473. * connection. */
  1474. connection_t *linked_conn = TO_CONN(conn)->linked_conn;
  1475. if (linked_conn && linked_conn->type == CONN_TYPE_DIR) {
  1476. ++(TO_DIR_CONN(linked_conn)->data_cells_received);
  1477. }
  1478. #endif /* defined(MEASUREMENTS_21206) */
  1479. if (!optimistic_data) {
  1480. /* Only send a SENDME if we're not getting optimistic data; otherwise
  1481. * a SENDME could arrive before the CONNECTED.
  1482. */
  1483. sendme_connection_edge_consider_sending(conn);
  1484. }
  1485. return 0;
  1486. case RELAY_COMMAND_END:
  1487. reason = rh.length > 0 ?
  1488. get_uint8(cell->payload+RELAY_HEADER_SIZE) : END_STREAM_REASON_MISC;
  1489. if (!conn) {
  1490. if (CIRCUIT_IS_ORIGIN(circ)) {
  1491. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1492. if (connection_half_edge_is_valid_end(ocirc->half_streams,
  1493. rh.stream_id)) {
  1494. circuit_read_valid_data(ocirc, rh.length);
  1495. log_info(domain,
  1496. "end cell (%s) on circ %u valid on half-closed "
  1497. "stream id %d",
  1498. stream_end_reason_to_string(reason),
  1499. ocirc->global_identifier, rh.stream_id);
  1500. return 0;
  1501. }
  1502. }
  1503. log_info(domain,"end cell (%s) dropped, unknown stream.",
  1504. stream_end_reason_to_string(reason));
  1505. return 0;
  1506. }
  1507. /* XXX add to this log_fn the exit node's nickname? */
  1508. log_info(domain,TOR_SOCKET_T_FORMAT": end cell (%s) for stream %d. "
  1509. "Removing stream.",
  1510. conn->base_.s,
  1511. stream_end_reason_to_string(reason),
  1512. conn->stream_id);
  1513. if (conn->base_.type == CONN_TYPE_AP) {
  1514. entry_connection_t *entry_conn = EDGE_TO_ENTRY_CONN(conn);
  1515. if (entry_conn->socks_request &&
  1516. !entry_conn->socks_request->has_finished)
  1517. log_warn(LD_BUG,
  1518. "open stream hasn't sent socks answer yet? Closing.");
  1519. }
  1520. /* We just *got* an end; no reason to send one. */
  1521. conn->edge_has_sent_end = 1;
  1522. if (!conn->end_reason)
  1523. conn->end_reason = reason | END_STREAM_REASON_FLAG_REMOTE;
  1524. if (!conn->base_.marked_for_close) {
  1525. /* only mark it if not already marked. it's possible to
  1526. * get the 'end' right around when the client hangs up on us. */
  1527. connection_mark_and_flush(TO_CONN(conn));
  1528. /* Total all valid application bytes delivered */
  1529. if (CIRCUIT_IS_ORIGIN(circ)) {
  1530. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ), rh.length);
  1531. }
  1532. }
  1533. return 0;
  1534. case RELAY_COMMAND_EXTEND:
  1535. case RELAY_COMMAND_EXTEND2: {
  1536. static uint64_t total_n_extend=0, total_nonearly=0;
  1537. total_n_extend++;
  1538. if (rh.stream_id) {
  1539. log_fn(LOG_PROTOCOL_WARN, domain,
  1540. "'extend' cell received for non-zero stream. Dropping.");
  1541. return 0;
  1542. }
  1543. if (cell->command != CELL_RELAY_EARLY &&
  1544. !networkstatus_get_param(NULL,"AllowNonearlyExtend",0,0,1)) {
  1545. #define EARLY_WARNING_INTERVAL 3600
  1546. static ratelim_t early_warning_limit =
  1547. RATELIM_INIT(EARLY_WARNING_INTERVAL);
  1548. char *m;
  1549. if (cell->command == CELL_RELAY) {
  1550. ++total_nonearly;
  1551. if ((m = rate_limit_log(&early_warning_limit, approx_time()))) {
  1552. double percentage = ((double)total_nonearly)/total_n_extend;
  1553. percentage *= 100;
  1554. log_fn(LOG_PROTOCOL_WARN, domain, "EXTEND cell received, "
  1555. "but not via RELAY_EARLY. Dropping.%s", m);
  1556. log_fn(LOG_PROTOCOL_WARN, domain, " (We have dropped %.02f%% of "
  1557. "all EXTEND cells for this reason)", percentage);
  1558. tor_free(m);
  1559. }
  1560. } else {
  1561. log_fn(LOG_WARN, domain,
  1562. "EXTEND cell received, in a cell with type %d! Dropping.",
  1563. cell->command);
  1564. }
  1565. return 0;
  1566. }
  1567. return circuit_extend(cell, circ);
  1568. }
  1569. case RELAY_COMMAND_EXTENDED:
  1570. case RELAY_COMMAND_EXTENDED2:
  1571. if (!layer_hint) {
  1572. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1573. "'extended' unsupported at non-origin. Dropping.");
  1574. return 0;
  1575. }
  1576. log_debug(domain,"Got an extended cell! Yay.");
  1577. {
  1578. extended_cell_t extended_cell;
  1579. if (extended_cell_parse(&extended_cell, rh.command,
  1580. (const uint8_t*)cell->payload+RELAY_HEADER_SIZE,
  1581. rh.length)<0) {
  1582. log_warn(LD_PROTOCOL,
  1583. "Can't parse EXTENDED cell; killing circuit.");
  1584. return -END_CIRC_REASON_TORPROTOCOL;
  1585. }
  1586. if ((reason = circuit_finish_handshake(TO_ORIGIN_CIRCUIT(circ),
  1587. &extended_cell.created_cell)) < 0) {
  1588. circuit_mark_for_close(circ, -reason);
  1589. return 0; /* We don't want to cause a warning, so we mark the circuit
  1590. * here. */
  1591. }
  1592. }
  1593. if ((reason=circuit_send_next_onion_skin(TO_ORIGIN_CIRCUIT(circ)))<0) {
  1594. log_info(domain,"circuit_send_next_onion_skin() failed.");
  1595. return reason;
  1596. }
  1597. /* Total all valid bytes delivered. */
  1598. if (CIRCUIT_IS_ORIGIN(circ)) {
  1599. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ), rh.length);
  1600. }
  1601. return 0;
  1602. case RELAY_COMMAND_TRUNCATE:
  1603. if (layer_hint) {
  1604. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1605. "'truncate' unsupported at origin. Dropping.");
  1606. return 0;
  1607. }
  1608. if (circ->n_hop) {
  1609. if (circ->n_chan)
  1610. log_warn(LD_BUG, "n_chan and n_hop set on the same circuit!");
  1611. extend_info_free(circ->n_hop);
  1612. circ->n_hop = NULL;
  1613. tor_free(circ->n_chan_create_cell);
  1614. circuit_set_state(circ, CIRCUIT_STATE_OPEN);
  1615. }
  1616. if (circ->n_chan) {
  1617. uint8_t trunc_reason = get_uint8(cell->payload + RELAY_HEADER_SIZE);
  1618. circuit_synchronize_written_or_bandwidth(circ, CIRCUIT_N_CHAN);
  1619. circuit_clear_cell_queue(circ, circ->n_chan);
  1620. channel_send_destroy(circ->n_circ_id, circ->n_chan,
  1621. trunc_reason);
  1622. circuit_set_n_circid_chan(circ, 0, NULL);
  1623. }
  1624. log_debug(LD_EXIT, "Processed 'truncate', replying.");
  1625. {
  1626. char payload[1];
  1627. payload[0] = (char)END_CIRC_REASON_REQUESTED;
  1628. relay_send_command_from_edge(0, circ, RELAY_COMMAND_TRUNCATED,
  1629. payload, sizeof(payload), NULL);
  1630. }
  1631. return 0;
  1632. case RELAY_COMMAND_TRUNCATED:
  1633. if (!layer_hint) {
  1634. log_fn(LOG_PROTOCOL_WARN, LD_EXIT,
  1635. "'truncated' unsupported at non-origin. Dropping.");
  1636. return 0;
  1637. }
  1638. /* Count the truncated as valid, for completeness. The
  1639. * circuit is being torn down anyway, though. */
  1640. if (CIRCUIT_IS_ORIGIN(circ)) {
  1641. circuit_read_valid_data(TO_ORIGIN_CIRCUIT(circ),
  1642. rh.length);
  1643. }
  1644. circuit_truncated(TO_ORIGIN_CIRCUIT(circ),
  1645. get_uint8(cell->payload + RELAY_HEADER_SIZE));
  1646. return 0;
  1647. case RELAY_COMMAND_CONNECTED:
  1648. if (conn) {
  1649. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1650. "'connected' unsupported while open. Closing circ.");
  1651. return -END_CIRC_REASON_TORPROTOCOL;
  1652. }
  1653. if (CIRCUIT_IS_ORIGIN(circ)) {
  1654. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1655. if (connection_half_edge_is_valid_connected(ocirc->half_streams,
  1656. rh.stream_id)) {
  1657. circuit_read_valid_data(ocirc, rh.length);
  1658. log_info(domain,
  1659. "connected cell on circ %u valid on half-closed "
  1660. "stream id %d", ocirc->global_identifier, rh.stream_id);
  1661. return 0;
  1662. }
  1663. }
  1664. log_info(domain,
  1665. "'connected' received on circid %u for streamid %d, "
  1666. "no conn attached anymore. Ignoring.",
  1667. (unsigned)circ->n_circ_id, rh.stream_id);
  1668. return 0;
  1669. case RELAY_COMMAND_SENDME:
  1670. {
  1671. int ret;
  1672. if (!rh.stream_id) {
  1673. /* Circuit level SENDME cell. */
  1674. ret = sendme_process_circuit_level(layer_hint, circ, rh.length);
  1675. if (ret < 0) {
  1676. return ret;
  1677. }
  1678. /* Resume reading on any streams now that we've processed a valid
  1679. * SENDME cell that updated our package window. */
  1680. circuit_resume_edge_reading(circ, layer_hint);
  1681. /* We are done, the rest of the code is for the stream level. */
  1682. return 0;
  1683. }
  1684. /* No connection, might be half edge state. We are done if so. */
  1685. if (!conn) {
  1686. if (CIRCUIT_IS_ORIGIN(circ)) {
  1687. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1688. if (connection_half_edge_is_valid_sendme(ocirc->half_streams,
  1689. rh.stream_id)) {
  1690. circuit_read_valid_data(ocirc, rh.length);
  1691. log_info(domain, "Sendme cell on circ %u valid on half-closed "
  1692. "stream id %d",
  1693. ocirc->global_identifier, rh.stream_id);
  1694. }
  1695. }
  1696. log_info(domain, "SENDME cell dropped, unknown stream (streamid %d).",
  1697. rh.stream_id);
  1698. return 0;
  1699. }
  1700. /* Stream level SENDME cell. */
  1701. ret = sendme_process_stream_level(conn, circ, rh.length);
  1702. if (ret < 0) {
  1703. /* Means we need to close the circuit with reason ret. */
  1704. return ret;
  1705. }
  1706. /* We've now processed properly a SENDME cell, all windows have been
  1707. * properly updated, we'll read on the edge connection to see if we can
  1708. * get data out towards the end point (Exit or client) since we are now
  1709. * allowed to deliver more cells. */
  1710. if (circuit_queue_streams_are_blocked(circ)) {
  1711. /* Still waiting for queue to flush; don't touch conn */
  1712. return 0;
  1713. }
  1714. connection_start_reading(TO_CONN(conn));
  1715. /* handle whatever might still be on the inbuf */
  1716. if (connection_edge_package_raw_inbuf(conn, 1, NULL) < 0) {
  1717. /* (We already sent an end cell if possible) */
  1718. connection_mark_for_close(TO_CONN(conn));
  1719. return 0;
  1720. }
  1721. return 0;
  1722. }
  1723. case RELAY_COMMAND_RESOLVE:
  1724. if (layer_hint) {
  1725. log_fn(LOG_PROTOCOL_WARN, LD_APP,
  1726. "resolve request unsupported at AP; dropping.");
  1727. return 0;
  1728. } else if (conn) {
  1729. log_fn(LOG_PROTOCOL_WARN, domain,
  1730. "resolve request for known stream; dropping.");
  1731. return 0;
  1732. } else if (circ->purpose != CIRCUIT_PURPOSE_OR) {
  1733. log_fn(LOG_PROTOCOL_WARN, domain,
  1734. "resolve request on circ with purpose %d; dropping",
  1735. circ->purpose);
  1736. return 0;
  1737. }
  1738. connection_exit_begin_resolve(cell, TO_OR_CIRCUIT(circ));
  1739. return 0;
  1740. case RELAY_COMMAND_RESOLVED:
  1741. if (conn) {
  1742. log_fn(LOG_PROTOCOL_WARN, domain,
  1743. "'resolved' unsupported while open. Closing circ.");
  1744. return -END_CIRC_REASON_TORPROTOCOL;
  1745. }
  1746. if (CIRCUIT_IS_ORIGIN(circ)) {
  1747. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1748. if (connection_half_edge_is_valid_resolved(ocirc->half_streams,
  1749. rh.stream_id)) {
  1750. circuit_read_valid_data(ocirc, rh.length);
  1751. log_info(domain,
  1752. "resolved cell on circ %u valid on half-closed "
  1753. "stream id %d", ocirc->global_identifier, rh.stream_id);
  1754. return 0;
  1755. }
  1756. }
  1757. log_info(domain,
  1758. "'resolved' received, no conn attached anymore. Ignoring.");
  1759. return 0;
  1760. case RELAY_COMMAND_ESTABLISH_INTRO:
  1761. case RELAY_COMMAND_ESTABLISH_RENDEZVOUS:
  1762. case RELAY_COMMAND_INTRODUCE1:
  1763. case RELAY_COMMAND_INTRODUCE2:
  1764. case RELAY_COMMAND_INTRODUCE_ACK:
  1765. case RELAY_COMMAND_RENDEZVOUS1:
  1766. case RELAY_COMMAND_RENDEZVOUS2:
  1767. case RELAY_COMMAND_INTRO_ESTABLISHED:
  1768. case RELAY_COMMAND_RENDEZVOUS_ESTABLISHED:
  1769. rend_process_relay_cell(circ, layer_hint,
  1770. rh.command, rh.length,
  1771. cell->payload+RELAY_HEADER_SIZE);
  1772. return 0;
  1773. }
  1774. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1775. "Received unknown relay command %d. Perhaps the other side is using "
  1776. "a newer version of Tor? Dropping.",
  1777. rh.command);
  1778. return 0; /* for forward compatibility, don't kill the circuit */
  1779. }
  1780. /** How many relay_data cells have we built, ever? */
  1781. uint64_t stats_n_data_cells_packaged = 0;
  1782. /** How many bytes of data have we put in relay_data cells have we built,
  1783. * ever? This would be RELAY_PAYLOAD_SIZE*stats_n_data_cells_packaged if
  1784. * every relay cell we ever sent were completely full of data. */
  1785. uint64_t stats_n_data_bytes_packaged = 0;
  1786. /** How many relay_data cells have we received, ever? */
  1787. uint64_t stats_n_data_cells_received = 0;
  1788. /** How many bytes of data have we received relay_data cells, ever? This would
  1789. * be RELAY_PAYLOAD_SIZE*stats_n_data_cells_packaged if every relay cell we
  1790. * ever received were completely full of data. */
  1791. uint64_t stats_n_data_bytes_received = 0;
  1792. /** If <b>conn</b> has an entire relay payload of bytes on its inbuf (or
  1793. * <b>package_partial</b> is true), and the appropriate package windows aren't
  1794. * empty, grab a cell and send it down the circuit.
  1795. *
  1796. * If *<b>max_cells</b> is given, package no more than max_cells. Decrement
  1797. * *<b>max_cells</b> by the number of cells packaged.
  1798. *
  1799. * Return -1 (and send a RELAY_COMMAND_END cell if necessary) if conn should
  1800. * be marked for close, else return 0.
  1801. */
  1802. int
  1803. connection_edge_package_raw_inbuf(edge_connection_t *conn, int package_partial,
  1804. int *max_cells)
  1805. {
  1806. size_t bytes_to_process, length;
  1807. char payload[CELL_PAYLOAD_SIZE];
  1808. circuit_t *circ;
  1809. const unsigned domain = conn->base_.type == CONN_TYPE_AP ? LD_APP : LD_EXIT;
  1810. int sending_from_optimistic = 0;
  1811. entry_connection_t *entry_conn =
  1812. conn->base_.type == CONN_TYPE_AP ? EDGE_TO_ENTRY_CONN(conn) : NULL;
  1813. const int sending_optimistically =
  1814. entry_conn &&
  1815. conn->base_.type == CONN_TYPE_AP &&
  1816. conn->base_.state != AP_CONN_STATE_OPEN;
  1817. crypt_path_t *cpath_layer = conn->cpath_layer;
  1818. tor_assert(conn);
  1819. if (conn->base_.marked_for_close) {
  1820. log_warn(LD_BUG,
  1821. "called on conn that's already marked for close at %s:%d.",
  1822. conn->base_.marked_for_close_file, conn->base_.marked_for_close);
  1823. return 0;
  1824. }
  1825. if (max_cells && *max_cells <= 0)
  1826. return 0;
  1827. repeat_connection_edge_package_raw_inbuf:
  1828. circ = circuit_get_by_edge_conn(conn);
  1829. if (!circ) {
  1830. log_info(domain,"conn has no circuit! Closing.");
  1831. conn->end_reason = END_STREAM_REASON_CANT_ATTACH;
  1832. return -1;
  1833. }
  1834. if (circuit_consider_stop_edge_reading(circ, cpath_layer))
  1835. return 0;
  1836. if (conn->package_window <= 0) {
  1837. log_info(domain,"called with package_window %d. Skipping.",
  1838. conn->package_window);
  1839. connection_stop_reading(TO_CONN(conn));
  1840. return 0;
  1841. }
  1842. sending_from_optimistic = entry_conn &&
  1843. entry_conn->sending_optimistic_data != NULL;
  1844. if (PREDICT_UNLIKELY(sending_from_optimistic)) {
  1845. bytes_to_process = buf_datalen(entry_conn->sending_optimistic_data);
  1846. if (PREDICT_UNLIKELY(!bytes_to_process)) {
  1847. log_warn(LD_BUG, "sending_optimistic_data was non-NULL but empty");
  1848. bytes_to_process = connection_get_inbuf_len(TO_CONN(conn));
  1849. sending_from_optimistic = 0;
  1850. }
  1851. } else {
  1852. bytes_to_process = connection_get_inbuf_len(TO_CONN(conn));
  1853. }
  1854. if (!bytes_to_process)
  1855. return 0;
  1856. if (!package_partial && bytes_to_process < RELAY_PAYLOAD_SIZE)
  1857. return 0;
  1858. if (bytes_to_process > RELAY_PAYLOAD_SIZE) {
  1859. length = RELAY_PAYLOAD_SIZE;
  1860. } else {
  1861. length = bytes_to_process;
  1862. }
  1863. stats_n_data_bytes_packaged += length;
  1864. stats_n_data_cells_packaged += 1;
  1865. if (PREDICT_UNLIKELY(sending_from_optimistic)) {
  1866. /* XXXX We could be more efficient here by sometimes packing
  1867. * previously-sent optimistic data in the same cell with data
  1868. * from the inbuf. */
  1869. buf_get_bytes(entry_conn->sending_optimistic_data, payload, length);
  1870. if (!buf_datalen(entry_conn->sending_optimistic_data)) {
  1871. buf_free(entry_conn->sending_optimistic_data);
  1872. entry_conn->sending_optimistic_data = NULL;
  1873. }
  1874. } else {
  1875. connection_buf_get_bytes(payload, length, TO_CONN(conn));
  1876. }
  1877. log_debug(domain,TOR_SOCKET_T_FORMAT": Packaging %d bytes (%d waiting).",
  1878. conn->base_.s,
  1879. (int)length, (int)connection_get_inbuf_len(TO_CONN(conn)));
  1880. if (sending_optimistically && !sending_from_optimistic) {
  1881. /* This is new optimistic data; remember it in case we need to detach and
  1882. retry */
  1883. if (!entry_conn->pending_optimistic_data)
  1884. entry_conn->pending_optimistic_data = buf_new();
  1885. buf_add(entry_conn->pending_optimistic_data, payload, length);
  1886. }
  1887. if (connection_edge_send_command(conn, RELAY_COMMAND_DATA,
  1888. payload, length) < 0 ) {
  1889. /* circuit got marked for close, don't continue, don't need to mark conn */
  1890. return 0;
  1891. }
  1892. /* Handle the circuit-level SENDME package window. */
  1893. if (sendme_circuit_data_packaged(circ, cpath_layer) < 0) {
  1894. /* Package window has gone under 0. Protocol issue. */
  1895. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  1896. "Circuit package window is below 0. Closing circuit.");
  1897. conn->end_reason = END_STREAM_REASON_TORPROTOCOL;
  1898. return -1;
  1899. }
  1900. /* Handle the stream-level SENDME package window. */
  1901. if (sendme_stream_data_packaged(conn) < 0) {
  1902. connection_stop_reading(TO_CONN(conn));
  1903. log_debug(domain,"conn->package_window reached 0.");
  1904. circuit_consider_stop_edge_reading(circ, cpath_layer);
  1905. return 0; /* don't process the inbuf any more */
  1906. }
  1907. log_debug(domain,"conn->package_window is now %d",conn->package_window);
  1908. if (max_cells) {
  1909. *max_cells -= 1;
  1910. if (*max_cells <= 0)
  1911. return 0;
  1912. }
  1913. /* handle more if there's more, or return 0 if there isn't */
  1914. goto repeat_connection_edge_package_raw_inbuf;
  1915. }
  1916. /** The circuit <b>circ</b> has received a circuit-level sendme
  1917. * (on hop <b>layer_hint</b>, if we're the OP). Go through all the
  1918. * attached streams and let them resume reading and packaging, if
  1919. * their stream windows allow it.
  1920. */
  1921. static void
  1922. circuit_resume_edge_reading(circuit_t *circ, crypt_path_t *layer_hint)
  1923. {
  1924. if (circuit_queue_streams_are_blocked(circ)) {
  1925. log_debug(layer_hint?LD_APP:LD_EXIT,"Too big queue, no resuming");
  1926. return;
  1927. }
  1928. log_debug(layer_hint?LD_APP:LD_EXIT,"resuming");
  1929. if (CIRCUIT_IS_ORIGIN(circ))
  1930. circuit_resume_edge_reading_helper(TO_ORIGIN_CIRCUIT(circ)->p_streams,
  1931. circ, layer_hint);
  1932. else
  1933. circuit_resume_edge_reading_helper(TO_OR_CIRCUIT(circ)->n_streams,
  1934. circ, layer_hint);
  1935. }
  1936. /** A helper function for circuit_resume_edge_reading() above.
  1937. * The arguments are the same, except that <b>conn</b> is the head
  1938. * of a linked list of edge streams that should each be considered.
  1939. */
  1940. static int
  1941. circuit_resume_edge_reading_helper(edge_connection_t *first_conn,
  1942. circuit_t *circ,
  1943. crypt_path_t *layer_hint)
  1944. {
  1945. edge_connection_t *conn;
  1946. int n_packaging_streams, n_streams_left;
  1947. int packaged_this_round;
  1948. int cells_on_queue;
  1949. int cells_per_conn;
  1950. edge_connection_t *chosen_stream = NULL;
  1951. int max_to_package;
  1952. if (first_conn == NULL) {
  1953. /* Don't bother to try to do the rest of this if there are no connections
  1954. * to resume. */
  1955. return 0;
  1956. }
  1957. /* How many cells do we have space for? It will be the minimum of
  1958. * the number needed to exhaust the package window, and the minimum
  1959. * needed to fill the cell queue. */
  1960. max_to_package = circ->package_window;
  1961. if (CIRCUIT_IS_ORIGIN(circ)) {
  1962. cells_on_queue = circ->n_chan_cells.n;
  1963. } else {
  1964. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1965. cells_on_queue = or_circ->p_chan_cells.n;
  1966. }
  1967. if (CELL_QUEUE_HIGHWATER_SIZE - cells_on_queue < max_to_package)
  1968. max_to_package = CELL_QUEUE_HIGHWATER_SIZE - cells_on_queue;
  1969. /* Once we used to start listening on the streams in the order they
  1970. * appeared in the linked list. That leads to starvation on the
  1971. * streams that appeared later on the list, since the first streams
  1972. * would always get to read first. Instead, we just pick a random
  1973. * stream on the list, and enable reading for streams starting at that
  1974. * point (and wrapping around as if the list were circular). It would
  1975. * probably be better to actually remember which streams we've
  1976. * serviced in the past, but this is simple and effective. */
  1977. /* Select a stream uniformly at random from the linked list. We
  1978. * don't need cryptographic randomness here. */
  1979. {
  1980. int num_streams = 0;
  1981. for (conn = first_conn; conn; conn = conn->next_stream) {
  1982. num_streams++;
  1983. if (crypto_fast_rng_one_in_n(get_thread_fast_rng(), num_streams)) {
  1984. chosen_stream = conn;
  1985. }
  1986. /* Invariant: chosen_stream has been chosen uniformly at random from
  1987. * among the first num_streams streams on first_conn.
  1988. *
  1989. * (Note that we iterate over every stream on the circuit, so that after
  1990. * we've considered the first stream, we've chosen it with P=1; and
  1991. * after we consider the second stream, we've switched to it with P=1/2
  1992. * and stayed with the first stream with P=1/2; and after we've
  1993. * considered the third stream, we've switched to it with P=1/3 and
  1994. * remained with one of the first two streams with P=(2/3), giving each
  1995. * one P=(1/2)(2/3) )=(1/3).) */
  1996. }
  1997. }
  1998. /* Count how many non-marked streams there are that have anything on
  1999. * their inbuf, and enable reading on all of the connections. */
  2000. n_packaging_streams = 0;
  2001. /* Activate reading starting from the chosen stream */
  2002. for (conn=chosen_stream; conn; conn = conn->next_stream) {
  2003. /* Start reading for the streams starting from here */
  2004. if (conn->base_.marked_for_close || conn->package_window <= 0)
  2005. continue;
  2006. if (!layer_hint || conn->cpath_layer == layer_hint) {
  2007. connection_start_reading(TO_CONN(conn));
  2008. if (connection_get_inbuf_len(TO_CONN(conn)) > 0)
  2009. ++n_packaging_streams;
  2010. }
  2011. }
  2012. /* Go back and do the ones we skipped, circular-style */
  2013. for (conn = first_conn; conn != chosen_stream; conn = conn->next_stream) {
  2014. if (conn->base_.marked_for_close || conn->package_window <= 0)
  2015. continue;
  2016. if (!layer_hint || conn->cpath_layer == layer_hint) {
  2017. connection_start_reading(TO_CONN(conn));
  2018. if (connection_get_inbuf_len(TO_CONN(conn)) > 0)
  2019. ++n_packaging_streams;
  2020. }
  2021. }
  2022. if (n_packaging_streams == 0) /* avoid divide-by-zero */
  2023. return 0;
  2024. again:
  2025. cells_per_conn = CEIL_DIV(max_to_package, n_packaging_streams);
  2026. packaged_this_round = 0;
  2027. n_streams_left = 0;
  2028. /* Iterate over all connections. Package up to cells_per_conn cells on
  2029. * each. Update packaged_this_round with the total number of cells
  2030. * packaged, and n_streams_left with the number that still have data to
  2031. * package.
  2032. */
  2033. for (conn=first_conn; conn; conn=conn->next_stream) {
  2034. if (conn->base_.marked_for_close || conn->package_window <= 0)
  2035. continue;
  2036. if (!layer_hint || conn->cpath_layer == layer_hint) {
  2037. int n = cells_per_conn, r;
  2038. /* handle whatever might still be on the inbuf */
  2039. r = connection_edge_package_raw_inbuf(conn, 1, &n);
  2040. /* Note how many we packaged */
  2041. packaged_this_round += (cells_per_conn-n);
  2042. if (r<0) {
  2043. /* Problem while packaging. (We already sent an end cell if
  2044. * possible) */
  2045. connection_mark_for_close(TO_CONN(conn));
  2046. continue;
  2047. }
  2048. /* If there's still data to read, we'll be coming back to this stream. */
  2049. if (connection_get_inbuf_len(TO_CONN(conn)))
  2050. ++n_streams_left;
  2051. /* If the circuit won't accept any more data, return without looking
  2052. * at any more of the streams. Any connections that should be stopped
  2053. * have already been stopped by connection_edge_package_raw_inbuf. */
  2054. if (circuit_consider_stop_edge_reading(circ, layer_hint))
  2055. return -1;
  2056. /* XXXX should we also stop immediately if we fill up the cell queue?
  2057. * Probably. */
  2058. }
  2059. }
  2060. /* If we made progress, and we are willing to package more, and there are
  2061. * any streams left that want to package stuff... try again!
  2062. */
  2063. if (packaged_this_round && packaged_this_round < max_to_package &&
  2064. n_streams_left) {
  2065. max_to_package -= packaged_this_round;
  2066. n_packaging_streams = n_streams_left;
  2067. goto again;
  2068. }
  2069. return 0;
  2070. }
  2071. /** Check if the package window for <b>circ</b> is empty (at
  2072. * hop <b>layer_hint</b> if it's defined).
  2073. *
  2074. * If yes, tell edge streams to stop reading and return 1.
  2075. * Else return 0.
  2076. */
  2077. static int
  2078. circuit_consider_stop_edge_reading(circuit_t *circ, crypt_path_t *layer_hint)
  2079. {
  2080. edge_connection_t *conn = NULL;
  2081. unsigned domain = layer_hint ? LD_APP : LD_EXIT;
  2082. if (!layer_hint) {
  2083. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  2084. log_debug(domain,"considering circ->package_window %d",
  2085. circ->package_window);
  2086. if (circ->package_window <= 0) {
  2087. log_debug(domain,"yes, not-at-origin. stopped.");
  2088. for (conn = or_circ->n_streams; conn; conn=conn->next_stream)
  2089. connection_stop_reading(TO_CONN(conn));
  2090. return 1;
  2091. }
  2092. return 0;
  2093. }
  2094. /* else, layer hint is defined, use it */
  2095. log_debug(domain,"considering layer_hint->package_window %d",
  2096. layer_hint->package_window);
  2097. if (layer_hint->package_window <= 0) {
  2098. log_debug(domain,"yes, at-origin. stopped.");
  2099. for (conn = TO_ORIGIN_CIRCUIT(circ)->p_streams; conn;
  2100. conn=conn->next_stream) {
  2101. if (conn->cpath_layer == layer_hint)
  2102. connection_stop_reading(TO_CONN(conn));
  2103. }
  2104. return 1;
  2105. }
  2106. return 0;
  2107. }
  2108. /** The total number of cells we have allocated. */
  2109. static size_t total_cells_allocated = 0;
  2110. /** Release storage held by <b>cell</b>. */
  2111. static inline void
  2112. packed_cell_free_unchecked(packed_cell_t *cell)
  2113. {
  2114. --total_cells_allocated;
  2115. tor_free(cell);
  2116. }
  2117. /** Allocate and return a new packed_cell_t. */
  2118. STATIC packed_cell_t *
  2119. packed_cell_new(void)
  2120. {
  2121. ++total_cells_allocated;
  2122. return tor_malloc_zero(sizeof(packed_cell_t));
  2123. }
  2124. /** Return a packed cell used outside by channel_t lower layer */
  2125. void
  2126. packed_cell_free_(packed_cell_t *cell)
  2127. {
  2128. if (!cell)
  2129. return;
  2130. packed_cell_free_unchecked(cell);
  2131. }
  2132. /** Log current statistics for cell pool allocation at log level
  2133. * <b>severity</b>. */
  2134. void
  2135. dump_cell_pool_usage(int severity)
  2136. {
  2137. int n_circs = 0;
  2138. int n_cells = 0;
  2139. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, c) {
  2140. n_cells += c->n_chan_cells.n;
  2141. if (!CIRCUIT_IS_ORIGIN(c))
  2142. n_cells += TO_OR_CIRCUIT(c)->p_chan_cells.n;
  2143. ++n_circs;
  2144. }
  2145. SMARTLIST_FOREACH_END(c);
  2146. tor_log(severity, LD_MM,
  2147. "%d cells allocated on %d circuits. %d cells leaked.",
  2148. n_cells, n_circs, (int)total_cells_allocated - n_cells);
  2149. }
  2150. /** Allocate a new copy of packed <b>cell</b>. */
  2151. static inline packed_cell_t *
  2152. packed_cell_copy(const cell_t *cell, int wide_circ_ids)
  2153. {
  2154. packed_cell_t *c = packed_cell_new();
  2155. cell_pack(c, cell, wide_circ_ids);
  2156. return c;
  2157. }
  2158. /** Append <b>cell</b> to the end of <b>queue</b>. */
  2159. void
  2160. cell_queue_append(cell_queue_t *queue, packed_cell_t *cell)
  2161. {
  2162. TOR_SIMPLEQ_INSERT_TAIL(&queue->head, cell, next);
  2163. ++queue->n;
  2164. }
  2165. /** Append a newly allocated copy of <b>cell</b> to the end of the
  2166. * <b>exitward</b> (or app-ward) <b>queue</b> of <b>circ</b>. If
  2167. * <b>use_stats</b> is true, record statistics about the cell.
  2168. */
  2169. void
  2170. cell_queue_append_packed_copy(circuit_t *circ, cell_queue_t *queue,
  2171. int exitward, const cell_t *cell,
  2172. int wide_circ_ids, int use_stats)
  2173. {
  2174. packed_cell_t *copy = packed_cell_copy(cell, wide_circ_ids);
  2175. (void)circ;
  2176. (void)exitward;
  2177. (void)use_stats;
  2178. copy->inserted_timestamp = monotime_coarse_get_stamp();
  2179. cell_queue_append(queue, copy);
  2180. }
  2181. /** Initialize <b>queue</b> as an empty cell queue. */
  2182. void
  2183. cell_queue_init(cell_queue_t *queue)
  2184. {
  2185. memset(queue, 0, sizeof(cell_queue_t));
  2186. TOR_SIMPLEQ_INIT(&queue->head);
  2187. }
  2188. /** Remove and free every cell in <b>queue</b>. */
  2189. void
  2190. cell_queue_clear(cell_queue_t *queue)
  2191. {
  2192. packed_cell_t *cell;
  2193. while ((cell = TOR_SIMPLEQ_FIRST(&queue->head))) {
  2194. TOR_SIMPLEQ_REMOVE_HEAD(&queue->head, next);
  2195. packed_cell_free_unchecked(cell);
  2196. }
  2197. TOR_SIMPLEQ_INIT(&queue->head);
  2198. queue->n = 0;
  2199. }
  2200. /** Extract and return the cell at the head of <b>queue</b>; return NULL if
  2201. * <b>queue</b> is empty. */
  2202. STATIC packed_cell_t *
  2203. cell_queue_pop(cell_queue_t *queue)
  2204. {
  2205. packed_cell_t *cell = TOR_SIMPLEQ_FIRST(&queue->head);
  2206. if (!cell)
  2207. return NULL;
  2208. TOR_SIMPLEQ_REMOVE_HEAD(&queue->head, next);
  2209. --queue->n;
  2210. return cell;
  2211. }
  2212. /** Initialize <b>queue</b> as an empty cell queue. */
  2213. void
  2214. destroy_cell_queue_init(destroy_cell_queue_t *queue)
  2215. {
  2216. memset(queue, 0, sizeof(destroy_cell_queue_t));
  2217. TOR_SIMPLEQ_INIT(&queue->head);
  2218. }
  2219. /** Remove and free every cell in <b>queue</b>. */
  2220. void
  2221. destroy_cell_queue_clear(destroy_cell_queue_t *queue)
  2222. {
  2223. destroy_cell_t *cell;
  2224. while ((cell = TOR_SIMPLEQ_FIRST(&queue->head))) {
  2225. TOR_SIMPLEQ_REMOVE_HEAD(&queue->head, next);
  2226. tor_free(cell);
  2227. }
  2228. TOR_SIMPLEQ_INIT(&queue->head);
  2229. queue->n = 0;
  2230. }
  2231. /** Extract and return the cell at the head of <b>queue</b>; return NULL if
  2232. * <b>queue</b> is empty. */
  2233. STATIC destroy_cell_t *
  2234. destroy_cell_queue_pop(destroy_cell_queue_t *queue)
  2235. {
  2236. destroy_cell_t *cell = TOR_SIMPLEQ_FIRST(&queue->head);
  2237. if (!cell)
  2238. return NULL;
  2239. TOR_SIMPLEQ_REMOVE_HEAD(&queue->head, next);
  2240. --queue->n;
  2241. return cell;
  2242. }
  2243. /** Append a destroy cell for <b>circid</b> to <b>queue</b>. */
  2244. void
  2245. destroy_cell_queue_append(destroy_cell_queue_t *queue,
  2246. circid_t circid,
  2247. uint8_t reason)
  2248. {
  2249. destroy_cell_t *cell = tor_malloc_zero(sizeof(destroy_cell_t));
  2250. cell->circid = circid;
  2251. cell->reason = reason;
  2252. /* Not yet used, but will be required for OOM handling. */
  2253. cell->inserted_timestamp = monotime_coarse_get_stamp();
  2254. TOR_SIMPLEQ_INSERT_TAIL(&queue->head, cell, next);
  2255. ++queue->n;
  2256. }
  2257. /** Convert a destroy_cell_t to a newly allocated cell_t. Frees its input. */
  2258. static packed_cell_t *
  2259. destroy_cell_to_packed_cell(destroy_cell_t *inp, int wide_circ_ids)
  2260. {
  2261. packed_cell_t *packed = packed_cell_new();
  2262. cell_t cell;
  2263. memset(&cell, 0, sizeof(cell));
  2264. cell.circ_id = inp->circid;
  2265. cell.command = CELL_DESTROY;
  2266. cell.payload[0] = inp->reason;
  2267. cell_pack(packed, &cell, wide_circ_ids);
  2268. tor_free(inp);
  2269. return packed;
  2270. }
  2271. /** Return the total number of bytes used for each packed_cell in a queue.
  2272. * Approximate. */
  2273. size_t
  2274. packed_cell_mem_cost(void)
  2275. {
  2276. return sizeof(packed_cell_t);
  2277. }
  2278. /* DOCDOC */
  2279. size_t
  2280. cell_queues_get_total_allocation(void)
  2281. {
  2282. return total_cells_allocated * packed_cell_mem_cost();
  2283. }
  2284. /** How long after we've been low on memory should we try to conserve it? */
  2285. #define MEMORY_PRESSURE_INTERVAL (30*60)
  2286. /** The time at which we were last low on memory. */
  2287. static time_t last_time_under_memory_pressure = 0;
  2288. /** Check whether we've got too much space used for cells. If so,
  2289. * call the OOM handler and return 1. Otherwise, return 0. */
  2290. STATIC int
  2291. cell_queues_check_size(void)
  2292. {
  2293. time_t now = time(NULL);
  2294. size_t alloc = cell_queues_get_total_allocation();
  2295. alloc += half_streams_get_total_allocation();
  2296. alloc += buf_get_total_allocation();
  2297. alloc += tor_compress_get_total_allocation();
  2298. const size_t rend_cache_total = rend_cache_get_total_allocation();
  2299. alloc += rend_cache_total;
  2300. const size_t geoip_client_cache_total =
  2301. geoip_client_cache_total_allocation();
  2302. alloc += geoip_client_cache_total;
  2303. const size_t dns_cache_total = dns_cache_total_allocation();
  2304. alloc += dns_cache_total;
  2305. if (alloc >= get_options()->MaxMemInQueues_low_threshold) {
  2306. last_time_under_memory_pressure = approx_time();
  2307. if (alloc >= get_options()->MaxMemInQueues) {
  2308. /* If we're spending over 20% of the memory limit on hidden service
  2309. * descriptors, free them until we're down to 10%. Do the same for geoip
  2310. * client cache. */
  2311. if (rend_cache_total > get_options()->MaxMemInQueues / 5) {
  2312. const size_t bytes_to_remove =
  2313. rend_cache_total - (size_t)(get_options()->MaxMemInQueues / 10);
  2314. alloc -= hs_cache_handle_oom(now, bytes_to_remove);
  2315. }
  2316. if (geoip_client_cache_total > get_options()->MaxMemInQueues / 5) {
  2317. const size_t bytes_to_remove =
  2318. geoip_client_cache_total -
  2319. (size_t)(get_options()->MaxMemInQueues / 10);
  2320. alloc -= geoip_client_cache_handle_oom(now, bytes_to_remove);
  2321. }
  2322. if (dns_cache_total > get_options()->MaxMemInQueues / 5) {
  2323. const size_t bytes_to_remove =
  2324. dns_cache_total - (size_t)(get_options()->MaxMemInQueues / 10);
  2325. alloc -= dns_cache_handle_oom(now, bytes_to_remove);
  2326. }
  2327. circuits_handle_oom(alloc);
  2328. return 1;
  2329. }
  2330. }
  2331. return 0;
  2332. }
  2333. /** Return true if we've been under memory pressure in the last
  2334. * MEMORY_PRESSURE_INTERVAL seconds. */
  2335. int
  2336. have_been_under_memory_pressure(void)
  2337. {
  2338. return last_time_under_memory_pressure + MEMORY_PRESSURE_INTERVAL
  2339. < approx_time();
  2340. }
  2341. /**
  2342. * Update the number of cells available on the circuit's n_chan or p_chan's
  2343. * circuit mux.
  2344. */
  2345. void
  2346. update_circuit_on_cmux_(circuit_t *circ, cell_direction_t direction,
  2347. const char *file, int lineno)
  2348. {
  2349. channel_t *chan = NULL;
  2350. or_circuit_t *or_circ = NULL;
  2351. circuitmux_t *cmux = NULL;
  2352. tor_assert(circ);
  2353. /* Okay, get the channel */
  2354. if (direction == CELL_DIRECTION_OUT) {
  2355. chan = circ->n_chan;
  2356. } else {
  2357. or_circ = TO_OR_CIRCUIT(circ);
  2358. chan = or_circ->p_chan;
  2359. }
  2360. tor_assert(chan);
  2361. tor_assert(chan->cmux);
  2362. /* Now get the cmux */
  2363. cmux = chan->cmux;
  2364. /* Cmux sanity check */
  2365. if (! circuitmux_is_circuit_attached(cmux, circ)) {
  2366. log_warn(LD_BUG, "called on non-attached circuit from %s:%d",
  2367. file, lineno);
  2368. return;
  2369. }
  2370. tor_assert(circuitmux_attached_circuit_direction(cmux, circ) == direction);
  2371. /* Update the number of cells we have for the circuit mux */
  2372. if (direction == CELL_DIRECTION_OUT) {
  2373. circuitmux_set_num_cells(cmux, circ, circ->n_chan_cells.n);
  2374. } else {
  2375. circuitmux_set_num_cells(cmux, circ, or_circ->p_chan_cells.n);
  2376. }
  2377. }
  2378. /** Remove all circuits from the cmux on <b>chan</b>.
  2379. *
  2380. * If <b>circuits_out</b> is non-NULL, add all detached circuits to
  2381. * <b>circuits_out</b>.
  2382. **/
  2383. void
  2384. channel_unlink_all_circuits(channel_t *chan, smartlist_t *circuits_out)
  2385. {
  2386. tor_assert(chan);
  2387. tor_assert(chan->cmux);
  2388. circuitmux_detach_all_circuits(chan->cmux, circuits_out);
  2389. chan->num_n_circuits = 0;
  2390. chan->num_p_circuits = 0;
  2391. }
  2392. /** Block (if <b>block</b> is true) or unblock (if <b>block</b> is false)
  2393. * every edge connection that is using <b>circ</b> to write to <b>chan</b>,
  2394. * and start or stop reading as appropriate.
  2395. *
  2396. * If <b>stream_id</b> is nonzero, block only the edge connection whose
  2397. * stream_id matches it.
  2398. *
  2399. * Returns the number of streams whose status we changed.
  2400. */
  2401. static int
  2402. set_streams_blocked_on_circ(circuit_t *circ, channel_t *chan,
  2403. int block, streamid_t stream_id)
  2404. {
  2405. edge_connection_t *edge = NULL;
  2406. int n = 0;
  2407. if (circ->n_chan == chan) {
  2408. circ->streams_blocked_on_n_chan = block;
  2409. if (CIRCUIT_IS_ORIGIN(circ))
  2410. edge = TO_ORIGIN_CIRCUIT(circ)->p_streams;
  2411. } else {
  2412. circ->streams_blocked_on_p_chan = block;
  2413. tor_assert(!CIRCUIT_IS_ORIGIN(circ));
  2414. edge = TO_OR_CIRCUIT(circ)->n_streams;
  2415. }
  2416. for (; edge; edge = edge->next_stream) {
  2417. connection_t *conn = TO_CONN(edge);
  2418. if (stream_id && edge->stream_id != stream_id)
  2419. continue;
  2420. if (edge->edge_blocked_on_circ != block) {
  2421. ++n;
  2422. edge->edge_blocked_on_circ = block;
  2423. }
  2424. if (!conn->read_event) {
  2425. /* This connection is a placeholder for something; probably a DNS
  2426. * request. It can't actually stop or start reading.*/
  2427. continue;
  2428. }
  2429. if (block) {
  2430. if (connection_is_reading(conn))
  2431. connection_stop_reading(conn);
  2432. } else {
  2433. /* Is this right? */
  2434. if (!connection_is_reading(conn))
  2435. connection_start_reading(conn);
  2436. }
  2437. }
  2438. return n;
  2439. }
  2440. /** Extract the command from a packed cell. */
  2441. static uint8_t
  2442. packed_cell_get_command(const packed_cell_t *cell, int wide_circ_ids)
  2443. {
  2444. if (wide_circ_ids) {
  2445. return get_uint8(cell->body+4);
  2446. } else {
  2447. return get_uint8(cell->body+2);
  2448. }
  2449. }
  2450. /** Extract the circuit ID from a packed cell. */
  2451. circid_t
  2452. packed_cell_get_circid(const packed_cell_t *cell, int wide_circ_ids)
  2453. {
  2454. if (wide_circ_ids) {
  2455. return ntohl(get_uint32(cell->body));
  2456. } else {
  2457. return ntohs(get_uint16(cell->body));
  2458. }
  2459. }
  2460. /** Pull as many cells as possible (but no more than <b>max</b>) from the
  2461. * queue of the first active circuit on <b>chan</b>, and write them to
  2462. * <b>chan</b>-&gt;outbuf. Return the number of cells written. Advance
  2463. * the active circuit pointer to the next active circuit in the ring. */
  2464. MOCK_IMPL(int,
  2465. channel_flush_from_first_active_circuit, (channel_t *chan, int max))
  2466. {
  2467. circuitmux_t *cmux = NULL;
  2468. int n_flushed = 0;
  2469. cell_queue_t *queue;
  2470. destroy_cell_queue_t *destroy_queue=NULL;
  2471. circuit_t *circ;
  2472. or_circuit_t *or_circ;
  2473. int streams_blocked;
  2474. packed_cell_t *cell;
  2475. /* Get the cmux */
  2476. tor_assert(chan);
  2477. tor_assert(chan->cmux);
  2478. cmux = chan->cmux;
  2479. /* Main loop: pick a circuit, send a cell, update the cmux */
  2480. while (n_flushed < max) {
  2481. circ = circuitmux_get_first_active_circuit(cmux, &destroy_queue);
  2482. if (destroy_queue) {
  2483. destroy_cell_t *dcell;
  2484. /* this code is duplicated from some of the logic below. Ugly! XXXX */
  2485. /* If we are given a destroy_queue here, then it is required to be
  2486. * nonempty... */
  2487. tor_assert(destroy_queue->n > 0);
  2488. dcell = destroy_cell_queue_pop(destroy_queue);
  2489. /* ...and pop() will always yield a cell from a nonempty queue. */
  2490. tor_assert(dcell);
  2491. /* frees dcell */
  2492. cell = destroy_cell_to_packed_cell(dcell, chan->wide_circ_ids);
  2493. /* Send the DESTROY cell. It is very unlikely that this fails but just
  2494. * in case, get rid of the channel. */
  2495. if (channel_write_packed_cell(chan, cell) < 0) {
  2496. /* The cell has been freed. */
  2497. channel_mark_for_close(chan);
  2498. continue;
  2499. }
  2500. /* Update the cmux destroy counter */
  2501. circuitmux_notify_xmit_destroy(cmux);
  2502. cell = NULL;
  2503. ++n_flushed;
  2504. continue;
  2505. }
  2506. /* If it returns NULL, no cells left to send */
  2507. if (!circ) break;
  2508. if (circ->n_chan == chan) {
  2509. queue = &circ->n_chan_cells;
  2510. streams_blocked = circ->streams_blocked_on_n_chan;
  2511. } else {
  2512. or_circ = TO_OR_CIRCUIT(circ);
  2513. tor_assert(or_circ->p_chan == chan);
  2514. queue = &TO_OR_CIRCUIT(circ)->p_chan_cells;
  2515. streams_blocked = circ->streams_blocked_on_p_chan;
  2516. }
  2517. /* Circuitmux told us this was active, so it should have cells */
  2518. if (/*BUG(*/ queue->n == 0 /*)*/) {
  2519. log_warn(LD_BUG, "Found a supposedly active circuit with no cells "
  2520. "to send. Trying to recover.");
  2521. circuitmux_set_num_cells(cmux, circ, 0);
  2522. if (! circ->marked_for_close)
  2523. circuit_mark_for_close(circ, END_CIRC_REASON_INTERNAL);
  2524. continue;
  2525. }
  2526. tor_assert(queue->n > 0);
  2527. /*
  2528. * Get just one cell here; once we've sent it, that can change the circuit
  2529. * selection, so we have to loop around for another even if this circuit
  2530. * has more than one.
  2531. */
  2532. cell = cell_queue_pop(queue);
  2533. /* Calculate the exact time that this cell has spent in the queue. */
  2534. if (get_options()->CellStatistics ||
  2535. get_options()->TestingEnableCellStatsEvent) {
  2536. uint32_t timestamp_now = monotime_coarse_get_stamp();
  2537. uint32_t msec_waiting =
  2538. (uint32_t) monotime_coarse_stamp_units_to_approx_msec(
  2539. timestamp_now - cell->inserted_timestamp);
  2540. if (get_options()->CellStatistics && !CIRCUIT_IS_ORIGIN(circ)) {
  2541. or_circ = TO_OR_CIRCUIT(circ);
  2542. or_circ->total_cell_waiting_time += msec_waiting;
  2543. or_circ->processed_cells++;
  2544. }
  2545. if (get_options()->TestingEnableCellStatsEvent) {
  2546. uint8_t command = packed_cell_get_command(cell, chan->wide_circ_ids);
  2547. testing_cell_stats_entry_t *ent =
  2548. tor_malloc_zero(sizeof(testing_cell_stats_entry_t));
  2549. ent->command = command;
  2550. ent->waiting_time = msec_waiting / 10;
  2551. ent->removed = 1;
  2552. if (circ->n_chan == chan)
  2553. ent->exitward = 1;
  2554. if (!circ->testing_cell_stats)
  2555. circ->testing_cell_stats = smartlist_new();
  2556. smartlist_add(circ->testing_cell_stats, ent);
  2557. }
  2558. }
  2559. /* If we just flushed our queue and this circuit is used for a
  2560. * tunneled directory request, possibly advance its state. */
  2561. if (queue->n == 0 && chan->dirreq_id)
  2562. geoip_change_dirreq_state(chan->dirreq_id,
  2563. DIRREQ_TUNNELED,
  2564. DIRREQ_CIRC_QUEUE_FLUSHED);
  2565. /* Now send the cell. It is very unlikely that this fails but just in
  2566. * case, get rid of the channel. */
  2567. if (channel_write_packed_cell(chan, cell) < 0) {
  2568. /* The cell has been freed at this point. */
  2569. channel_mark_for_close(chan);
  2570. continue;
  2571. }
  2572. cell = NULL;
  2573. /*
  2574. * Don't packed_cell_free_unchecked(cell) here because the channel will
  2575. * do so when it gets out of the channel queue (probably already did, in
  2576. * which case that was an immediate double-free bug).
  2577. */
  2578. /* Update the counter */
  2579. ++n_flushed;
  2580. /*
  2581. * Now update the cmux; tell it we've just sent a cell, and how many
  2582. * we have left.
  2583. */
  2584. circuitmux_notify_xmit_cells(cmux, circ, 1);
  2585. circuitmux_set_num_cells(cmux, circ, queue->n);
  2586. if (queue->n == 0)
  2587. log_debug(LD_GENERAL, "Made a circuit inactive.");
  2588. /* Is the cell queue low enough to unblock all the streams that are waiting
  2589. * to write to this circuit? */
  2590. if (streams_blocked && queue->n <= CELL_QUEUE_LOWWATER_SIZE)
  2591. set_streams_blocked_on_circ(circ, chan, 0, 0); /* unblock streams */
  2592. /* If n_flushed < max still, loop around and pick another circuit */
  2593. }
  2594. /* Okay, we're done sending now */
  2595. return n_flushed;
  2596. }
  2597. /* Minimum value is the maximum circuit window size.
  2598. *
  2599. * SENDME cells makes it that we can control how many cells can be inflight on
  2600. * a circuit from end to end. This logic makes it that on any circuit cell
  2601. * queue, we have a maximum of cells possible.
  2602. *
  2603. * Because the Tor protocol allows for a client to exit at any hop in a
  2604. * circuit and a circuit can be of a maximum of 8 hops, so in theory the
  2605. * normal worst case will be the circuit window start value times the maximum
  2606. * number of hops (8). Having more cells then that means something is wrong.
  2607. *
  2608. * However, because padding cells aren't counted in the package window, we set
  2609. * the maximum size to a reasonably large size for which we expect that we'll
  2610. * never reach in theory. And if we ever do because of future changes, we'll
  2611. * be able to control it with a consensus parameter.
  2612. *
  2613. * XXX: Unfortunately, END cells aren't accounted for in the circuit window
  2614. * which means that for instance if a client opens 8001 streams, the 8001
  2615. * following END cells will queue up in the circuit which will get closed if
  2616. * the max limit is 8000. Which is sad because it is allowed by the Tor
  2617. * protocol. But, we need an upper bound on circuit queue in order to avoid
  2618. * DoS memory pressure so the default size is a middle ground between not
  2619. * having any limit and having a very restricted one. This is why we can also
  2620. * control it through a consensus parameter. */
  2621. #define RELAY_CIRC_CELL_QUEUE_SIZE_MIN CIRCWINDOW_START_MAX
  2622. /* We can't have a consensus parameter above this value. */
  2623. #define RELAY_CIRC_CELL_QUEUE_SIZE_MAX INT32_MAX
  2624. /* Default value is set to a large value so we can handle padding cells
  2625. * properly which aren't accounted for in the SENDME window. Default is 50000
  2626. * allowed cells in the queue resulting in ~25MB. */
  2627. #define RELAY_CIRC_CELL_QUEUE_SIZE_DEFAULT \
  2628. (50 * RELAY_CIRC_CELL_QUEUE_SIZE_MIN)
  2629. /* The maximum number of cell a circuit queue can contain. This is updated at
  2630. * every new consensus and controlled by a parameter. */
  2631. static int32_t max_circuit_cell_queue_size =
  2632. RELAY_CIRC_CELL_QUEUE_SIZE_DEFAULT;
  2633. /* Called when the consensus has changed. At this stage, the global consensus
  2634. * object has NOT been updated. It is called from
  2635. * notify_before_networkstatus_changes(). */
  2636. void
  2637. relay_consensus_has_changed(const networkstatus_t *ns)
  2638. {
  2639. tor_assert(ns);
  2640. /* Update the circuit max cell queue size from the consensus. */
  2641. max_circuit_cell_queue_size =
  2642. networkstatus_get_param(ns, "circ_max_cell_queue_size",
  2643. RELAY_CIRC_CELL_QUEUE_SIZE_DEFAULT,
  2644. RELAY_CIRC_CELL_QUEUE_SIZE_MIN,
  2645. RELAY_CIRC_CELL_QUEUE_SIZE_MAX);
  2646. }
  2647. /** Add <b>cell</b> to the queue of <b>circ</b> writing to <b>chan</b>
  2648. * transmitting in <b>direction</b>.
  2649. *
  2650. * The given <b>cell</b> is copied onto the circuit queue so the caller must
  2651. * cleanup the memory.
  2652. *
  2653. * This function is part of the fast path. */
  2654. void
  2655. append_cell_to_circuit_queue(circuit_t *circ, channel_t *chan,
  2656. cell_t *cell, cell_direction_t direction,
  2657. streamid_t fromstream)
  2658. {
  2659. or_circuit_t *orcirc = NULL;
  2660. cell_queue_t *queue;
  2661. int streams_blocked;
  2662. int exitward;
  2663. if (circ->marked_for_close)
  2664. return;
  2665. exitward = (direction == CELL_DIRECTION_OUT);
  2666. if (exitward) {
  2667. queue = &circ->n_chan_cells;
  2668. streams_blocked = circ->streams_blocked_on_n_chan;
  2669. } else {
  2670. orcirc = TO_OR_CIRCUIT(circ);
  2671. queue = &orcirc->p_chan_cells;
  2672. streams_blocked = circ->streams_blocked_on_p_chan;
  2673. }
  2674. if (PREDICT_UNLIKELY(queue->n >= max_circuit_cell_queue_size)) {
  2675. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2676. "%s circuit has %d cells in its queue, maximum allowed is %d. "
  2677. "Closing circuit for safety reasons.",
  2678. (exitward) ? "Outbound" : "Inbound", queue->n,
  2679. max_circuit_cell_queue_size);
  2680. circuit_mark_for_close(circ, END_CIRC_REASON_RESOURCELIMIT);
  2681. stats_n_circ_max_cell_reached++;
  2682. return;
  2683. }
  2684. /* Very important that we copy to the circuit queue because all calls to
  2685. * this function use the stack for the cell memory. */
  2686. cell_queue_append_packed_copy(circ, queue, exitward, cell,
  2687. chan->wide_circ_ids, 1);
  2688. /* Check and run the OOM if needed. */
  2689. if (PREDICT_UNLIKELY(cell_queues_check_size())) {
  2690. /* We ran the OOM handler which might have closed this circuit. */
  2691. if (circ->marked_for_close)
  2692. return;
  2693. }
  2694. /* If we have too many cells on the circuit, we should stop reading from
  2695. * the edge streams for a while. */
  2696. if (!streams_blocked && queue->n >= CELL_QUEUE_HIGHWATER_SIZE)
  2697. set_streams_blocked_on_circ(circ, chan, 1, 0); /* block streams */
  2698. if (streams_blocked && fromstream) {
  2699. /* This edge connection is apparently not blocked; block it. */
  2700. set_streams_blocked_on_circ(circ, chan, 1, fromstream);
  2701. }
  2702. update_circuit_on_cmux(circ, direction);
  2703. if (queue->n == 1) {
  2704. /* This was the first cell added to the queue. We just made this
  2705. * circuit active. */
  2706. log_debug(LD_GENERAL, "Made a circuit active.");
  2707. }
  2708. /* New way: mark this as having waiting cells for the scheduler */
  2709. scheduler_channel_has_waiting_cells(chan);
  2710. }
  2711. /** Append an encoded value of <b>addr</b> to <b>payload_out</b>, which must
  2712. * have at least 18 bytes of free space. The encoding is, as specified in
  2713. * tor-spec.txt:
  2714. * RESOLVED_TYPE_IPV4 or RESOLVED_TYPE_IPV6 [1 byte]
  2715. * LENGTH [1 byte]
  2716. * ADDRESS [length bytes]
  2717. * Return the number of bytes added, or -1 on error */
  2718. int
  2719. append_address_to_payload(uint8_t *payload_out, const tor_addr_t *addr)
  2720. {
  2721. uint32_t a;
  2722. switch (tor_addr_family(addr)) {
  2723. case AF_INET:
  2724. payload_out[0] = RESOLVED_TYPE_IPV4;
  2725. payload_out[1] = 4;
  2726. a = tor_addr_to_ipv4n(addr);
  2727. memcpy(payload_out+2, &a, 4);
  2728. return 6;
  2729. case AF_INET6:
  2730. payload_out[0] = RESOLVED_TYPE_IPV6;
  2731. payload_out[1] = 16;
  2732. memcpy(payload_out+2, tor_addr_to_in6_addr8(addr), 16);
  2733. return 18;
  2734. case AF_UNSPEC:
  2735. default:
  2736. return -1;
  2737. }
  2738. }
  2739. /** Given <b>payload_len</b> bytes at <b>payload</b>, starting with an address
  2740. * encoded as by append_address_to_payload(), try to decode the address into
  2741. * *<b>addr_out</b>. Return the next byte in the payload after the address on
  2742. * success, or NULL on failure. */
  2743. const uint8_t *
  2744. decode_address_from_payload(tor_addr_t *addr_out, const uint8_t *payload,
  2745. int payload_len)
  2746. {
  2747. if (payload_len < 2)
  2748. return NULL;
  2749. if (payload_len < 2+payload[1])
  2750. return NULL;
  2751. switch (payload[0]) {
  2752. case RESOLVED_TYPE_IPV4:
  2753. if (payload[1] != 4)
  2754. return NULL;
  2755. tor_addr_from_ipv4n(addr_out, get_uint32(payload+2));
  2756. break;
  2757. case RESOLVED_TYPE_IPV6:
  2758. if (payload[1] != 16)
  2759. return NULL;
  2760. tor_addr_from_ipv6_bytes(addr_out, (char*)(payload+2));
  2761. break;
  2762. default:
  2763. tor_addr_make_unspec(addr_out);
  2764. break;
  2765. }
  2766. return payload + 2 + payload[1];
  2767. }
  2768. /** Remove all the cells queued on <b>circ</b> for <b>chan</b>. */
  2769. void
  2770. circuit_clear_cell_queue(circuit_t *circ, channel_t *chan)
  2771. {
  2772. cell_queue_t *queue;
  2773. cell_direction_t direction;
  2774. if (circ->n_chan == chan) {
  2775. queue = &circ->n_chan_cells;
  2776. direction = CELL_DIRECTION_OUT;
  2777. } else {
  2778. or_circuit_t *orcirc = TO_OR_CIRCUIT(circ);
  2779. tor_assert(orcirc->p_chan == chan);
  2780. queue = &orcirc->p_chan_cells;
  2781. direction = CELL_DIRECTION_IN;
  2782. }
  2783. /* Clear the queue */
  2784. cell_queue_clear(queue);
  2785. /* Update the cell counter in the cmux */
  2786. if (chan->cmux && circuitmux_is_circuit_attached(chan->cmux, circ))
  2787. update_circuit_on_cmux(circ, direction);
  2788. }
  2789. /** Return 1 if we shouldn't restart reading on this circuit, even if
  2790. * we get a SENDME. Else return 0.
  2791. */
  2792. static int
  2793. circuit_queue_streams_are_blocked(circuit_t *circ)
  2794. {
  2795. if (CIRCUIT_IS_ORIGIN(circ)) {
  2796. return circ->streams_blocked_on_n_chan;
  2797. } else {
  2798. return circ->streams_blocked_on_p_chan;
  2799. }
  2800. }