connection_edge.c 154 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) 2007-2017, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file connection_edge.c
  8. * \brief Handle edge streams.
  9. *
  10. * An edge_connection_t is a subtype of a connection_t, and represents two
  11. * critical concepts in Tor: a stream, and an edge connection. From the Tor
  12. * protocol's point of view, a stream is a bi-directional channel that is
  13. * multiplexed on a single circuit. Each stream on a circuit is identified
  14. * with a separate 16-bit stream ID, local to the (circuit,exit) pair.
  15. * Streams are created in response to client requests.
  16. *
  17. * An edge connection is one thing that can implement a stream: it is either a
  18. * TCP application socket that has arrived via (e.g.) a SOCKS request, or an
  19. * exit connection.
  20. *
  21. * Not every instance of edge_connection_t truly represents an edge connction,
  22. * however. (Sorry!) We also create edge_connection_t objects for streams that
  23. * we will not be handling with TCP. The types of these streams are:
  24. * <ul>
  25. * <li>DNS lookup streams, created on the client side in response to
  26. * a UDP DNS request received on a DNSPort, or a RESOLVE command
  27. * on a controller.
  28. * <li>DNS lookup streams, created on the exit side in response to
  29. * a RELAY_RESOLVE cell from a client.
  30. * <li>Tunneled directory streams, created on the directory cache side
  31. * in response to a RELAY_BEGIN_DIR cell. These streams attach directly
  32. * to a dir_connection_t object without ever using TCP.
  33. * </ul>
  34. *
  35. * This module handles general-purpose functionality having to do with
  36. * edge_connection_t. On the client side, it accepts various types of
  37. * application requests on SocksPorts, TransPorts, and NATDPorts, and
  38. * creates streams appropriately.
  39. *
  40. * This module is also responsible for implementing stream isolation:
  41. * ensuring that streams that should not be linkable to one another are
  42. * kept to different circuits.
  43. *
  44. * On the exit side, this module handles the various stream-creating
  45. * type of RELAY cells by launching appropriate outgoing connections,
  46. * DNS requests, or directory connection objects.
  47. *
  48. * And for all edge connections, this module is responsible for handling
  49. * incoming and outdoing data as it arrives or leaves in the relay.c
  50. * module. (Outgoing data will be packaged in
  51. * connection_edge_process_inbuf() as it calls
  52. * connection_edge_package_raw_inbuf(); incoming data from RELAY_DATA
  53. * cells is applied in connection_edge_process_relay_cell().)
  54. **/
  55. #define CONNECTION_EDGE_PRIVATE
  56. #include "or.h"
  57. #include "backtrace.h"
  58. #include "addressmap.h"
  59. #include "buffers.h"
  60. #include "channel.h"
  61. #include "circpathbias.h"
  62. #include "circuitlist.h"
  63. #include "circuituse.h"
  64. #include "config.h"
  65. #include "connection.h"
  66. #include "connection_edge.h"
  67. #include "connection_or.h"
  68. #include "control.h"
  69. #include "crypto_util.h"
  70. #include "dns.h"
  71. #include "dnsserv.h"
  72. #include "directory.h"
  73. #include "dirserv.h"
  74. #include "hibernate.h"
  75. #include "hs_common.h"
  76. #include "hs_cache.h"
  77. #include "hs_client.h"
  78. #include "hs_circuit.h"
  79. #include "main.h"
  80. #include "networkstatus.h"
  81. #include "nodelist.h"
  82. #include "policies.h"
  83. #include "proto_http.h"
  84. #include "proto_socks.h"
  85. #include "reasons.h"
  86. #include "relay.h"
  87. #include "rendclient.h"
  88. #include "rendcommon.h"
  89. #include "rendservice.h"
  90. #include "rephist.h"
  91. #include "router.h"
  92. #include "routerlist.h"
  93. #include "routerset.h"
  94. #include "circuitbuild.h"
  95. #include "cell_st.h"
  96. #include "cpath_build_state_st.h"
  97. #include "dir_connection_st.h"
  98. #include "entry_connection_st.h"
  99. #include "node_st.h"
  100. #include "or_circuit_st.h"
  101. #include "origin_circuit_st.h"
  102. #include "socks_request_st.h"
  103. #ifdef HAVE_LINUX_TYPES_H
  104. #include <linux/types.h>
  105. #endif
  106. #ifdef HAVE_LINUX_NETFILTER_IPV4_H
  107. #include <linux/netfilter_ipv4.h>
  108. #define TRANS_NETFILTER
  109. #define TRANS_NETFILTER_IPV4
  110. #endif
  111. #ifdef HAVE_LINUX_IF_H
  112. #include <linux/if.h>
  113. #endif
  114. #ifdef HAVE_LINUX_NETFILTER_IPV6_IP6_TABLES_H
  115. #include <linux/netfilter_ipv6/ip6_tables.h>
  116. #if defined(IP6T_SO_ORIGINAL_DST)
  117. #define TRANS_NETFILTER
  118. #define TRANS_NETFILTER_IPV6
  119. #endif
  120. #endif /* defined(HAVE_LINUX_NETFILTER_IPV6_IP6_TABLES_H) */
  121. #if defined(HAVE_NET_IF_H) && defined(HAVE_NET_PFVAR_H)
  122. #include <net/if.h>
  123. #include <net/pfvar.h>
  124. #define TRANS_PF
  125. #endif
  126. #ifdef IP_TRANSPARENT
  127. #define TRANS_TPROXY
  128. #endif
  129. #define SOCKS4_GRANTED 90
  130. #define SOCKS4_REJECT 91
  131. static int connection_ap_handshake_process_socks(entry_connection_t *conn);
  132. static int connection_ap_process_natd(entry_connection_t *conn);
  133. static int connection_exit_connect_dir(edge_connection_t *exitconn);
  134. static int consider_plaintext_ports(entry_connection_t *conn, uint16_t port);
  135. static int connection_ap_supports_optimistic_data(const entry_connection_t *);
  136. /** Convert a connection_t* to an edge_connection_t*; assert if the cast is
  137. * invalid. */
  138. edge_connection_t *
  139. TO_EDGE_CONN(connection_t *c)
  140. {
  141. tor_assert(c->magic == EDGE_CONNECTION_MAGIC ||
  142. c->magic == ENTRY_CONNECTION_MAGIC);
  143. return DOWNCAST(edge_connection_t, c);
  144. }
  145. entry_connection_t *
  146. TO_ENTRY_CONN(connection_t *c)
  147. {
  148. tor_assert(c->magic == ENTRY_CONNECTION_MAGIC);
  149. return (entry_connection_t*) SUBTYPE_P(c, entry_connection_t, edge_.base_);
  150. }
  151. entry_connection_t *
  152. EDGE_TO_ENTRY_CONN(edge_connection_t *c)
  153. {
  154. tor_assert(c->base_.magic == ENTRY_CONNECTION_MAGIC);
  155. return (entry_connection_t*) SUBTYPE_P(c, entry_connection_t, edge_);
  156. }
  157. /** An AP stream has failed/finished. If it hasn't already sent back
  158. * a socks reply, send one now (based on endreason). Also set
  159. * has_sent_end to 1, and mark the conn.
  160. */
  161. MOCK_IMPL(void,
  162. connection_mark_unattached_ap_,(entry_connection_t *conn, int endreason,
  163. int line, const char *file))
  164. {
  165. connection_t *base_conn = ENTRY_TO_CONN(conn);
  166. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(conn);
  167. tor_assert(base_conn->type == CONN_TYPE_AP);
  168. ENTRY_TO_EDGE_CONN(conn)->edge_has_sent_end = 1; /* no circ yet */
  169. /* If this is a rendezvous stream and it is failing without ever
  170. * being attached to a circuit, assume that an attempt to connect to
  171. * the destination hidden service has just ended.
  172. *
  173. * XXXX This condition doesn't limit to only streams failing
  174. * without ever being attached. That sloppiness should be harmless,
  175. * but we should fix it someday anyway. */
  176. if ((edge_conn->on_circuit != NULL || edge_conn->edge_has_sent_end) &&
  177. connection_edge_is_rendezvous_stream(edge_conn)) {
  178. if (edge_conn->rend_data) {
  179. rend_client_note_connection_attempt_ended(edge_conn->rend_data);
  180. }
  181. }
  182. if (base_conn->marked_for_close) {
  183. /* This call will warn as appropriate. */
  184. connection_mark_for_close_(base_conn, line, file);
  185. return;
  186. }
  187. if (!conn->socks_request->has_finished) {
  188. if (endreason & END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED)
  189. log_warn(LD_BUG,
  190. "stream (marked at %s:%d) sending two socks replies?",
  191. file, line);
  192. if (SOCKS_COMMAND_IS_CONNECT(conn->socks_request->command))
  193. connection_ap_handshake_socks_reply(conn, NULL, 0, endreason);
  194. else if (SOCKS_COMMAND_IS_RESOLVE(conn->socks_request->command))
  195. connection_ap_handshake_socks_resolved(conn,
  196. RESOLVED_TYPE_ERROR_TRANSIENT,
  197. 0, NULL, -1, -1);
  198. else /* unknown or no handshake at all. send no response. */
  199. conn->socks_request->has_finished = 1;
  200. }
  201. connection_mark_and_flush_(base_conn, line, file);
  202. ENTRY_TO_EDGE_CONN(conn)->end_reason = endreason;
  203. }
  204. /** There was an EOF. Send an end and mark the connection for close.
  205. */
  206. int
  207. connection_edge_reached_eof(edge_connection_t *conn)
  208. {
  209. if (connection_get_inbuf_len(TO_CONN(conn)) &&
  210. connection_state_is_open(TO_CONN(conn))) {
  211. /* it still has stuff to process. don't let it die yet. */
  212. return 0;
  213. }
  214. log_info(LD_EDGE,"conn (fd "TOR_SOCKET_T_FORMAT") reached eof. Closing.",
  215. conn->base_.s);
  216. if (!conn->base_.marked_for_close) {
  217. /* only mark it if not already marked. it's possible to
  218. * get the 'end' right around when the client hangs up on us. */
  219. connection_edge_end(conn, END_STREAM_REASON_DONE);
  220. if (conn->base_.type == CONN_TYPE_AP) {
  221. /* eof, so don't send a socks reply back */
  222. if (EDGE_TO_ENTRY_CONN(conn)->socks_request)
  223. EDGE_TO_ENTRY_CONN(conn)->socks_request->has_finished = 1;
  224. }
  225. connection_mark_for_close(TO_CONN(conn));
  226. }
  227. return 0;
  228. }
  229. /** Handle new bytes on conn->inbuf based on state:
  230. * - If it's waiting for socks info, try to read another step of the
  231. * socks handshake out of conn->inbuf.
  232. * - If it's waiting for the original destination, fetch it.
  233. * - If it's open, then package more relay cells from the stream.
  234. * - Else, leave the bytes on inbuf alone for now.
  235. *
  236. * Mark and return -1 if there was an unexpected error with the conn,
  237. * else return 0.
  238. */
  239. int
  240. connection_edge_process_inbuf(edge_connection_t *conn, int package_partial)
  241. {
  242. tor_assert(conn);
  243. switch (conn->base_.state) {
  244. case AP_CONN_STATE_SOCKS_WAIT:
  245. if (connection_ap_handshake_process_socks(EDGE_TO_ENTRY_CONN(conn)) <0) {
  246. /* already marked */
  247. return -1;
  248. }
  249. return 0;
  250. case AP_CONN_STATE_NATD_WAIT:
  251. if (connection_ap_process_natd(EDGE_TO_ENTRY_CONN(conn)) < 0) {
  252. /* already marked */
  253. return -1;
  254. }
  255. return 0;
  256. case AP_CONN_STATE_HTTP_CONNECT_WAIT:
  257. if (connection_ap_process_http_connect(EDGE_TO_ENTRY_CONN(conn)) < 0) {
  258. return -1;
  259. }
  260. return 0;
  261. case AP_CONN_STATE_OPEN:
  262. case EXIT_CONN_STATE_OPEN:
  263. if (connection_edge_package_raw_inbuf(conn, package_partial, NULL) < 0) {
  264. /* (We already sent an end cell if possible) */
  265. connection_mark_for_close(TO_CONN(conn));
  266. return -1;
  267. }
  268. return 0;
  269. case AP_CONN_STATE_CONNECT_WAIT:
  270. if (connection_ap_supports_optimistic_data(EDGE_TO_ENTRY_CONN(conn))) {
  271. log_info(LD_EDGE,
  272. "data from edge while in '%s' state. Sending it anyway. "
  273. "package_partial=%d, buflen=%ld",
  274. conn_state_to_string(conn->base_.type, conn->base_.state),
  275. package_partial,
  276. (long)connection_get_inbuf_len(TO_CONN(conn)));
  277. if (connection_edge_package_raw_inbuf(conn, package_partial, NULL)<0) {
  278. /* (We already sent an end cell if possible) */
  279. connection_mark_for_close(TO_CONN(conn));
  280. return -1;
  281. }
  282. return 0;
  283. }
  284. /* Fall through if the connection is on a circuit without optimistic
  285. * data support. */
  286. /* Falls through. */
  287. case EXIT_CONN_STATE_CONNECTING:
  288. case AP_CONN_STATE_RENDDESC_WAIT:
  289. case AP_CONN_STATE_CIRCUIT_WAIT:
  290. case AP_CONN_STATE_RESOLVE_WAIT:
  291. case AP_CONN_STATE_CONTROLLER_WAIT:
  292. log_info(LD_EDGE,
  293. "data from edge while in '%s' state. Leaving it on buffer.",
  294. conn_state_to_string(conn->base_.type, conn->base_.state));
  295. return 0;
  296. }
  297. log_warn(LD_BUG,"Got unexpected state %d. Closing.",conn->base_.state);
  298. tor_fragile_assert();
  299. connection_edge_end(conn, END_STREAM_REASON_INTERNAL);
  300. connection_mark_for_close(TO_CONN(conn));
  301. return -1;
  302. }
  303. /** This edge needs to be closed, because its circuit has closed.
  304. * Mark it for close and return 0.
  305. */
  306. int
  307. connection_edge_destroy(circid_t circ_id, edge_connection_t *conn)
  308. {
  309. if (!conn->base_.marked_for_close) {
  310. log_info(LD_EDGE, "CircID %u: At an edge. Marking connection for close.",
  311. (unsigned) circ_id);
  312. if (conn->base_.type == CONN_TYPE_AP) {
  313. entry_connection_t *entry_conn = EDGE_TO_ENTRY_CONN(conn);
  314. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_DESTROY);
  315. control_event_stream_bandwidth(conn);
  316. control_event_stream_status(entry_conn, STREAM_EVENT_CLOSED,
  317. END_STREAM_REASON_DESTROY);
  318. conn->end_reason |= END_STREAM_REASON_FLAG_ALREADY_SENT_CLOSED;
  319. } else {
  320. /* closing the circuit, nothing to send an END to */
  321. conn->edge_has_sent_end = 1;
  322. conn->end_reason = END_STREAM_REASON_DESTROY;
  323. conn->end_reason |= END_STREAM_REASON_FLAG_ALREADY_SENT_CLOSED;
  324. connection_mark_and_flush(TO_CONN(conn));
  325. }
  326. }
  327. conn->cpath_layer = NULL;
  328. conn->on_circuit = NULL;
  329. return 0;
  330. }
  331. /** Send a raw end cell to the stream with ID <b>stream_id</b> out over the
  332. * <b>circ</b> towards the hop identified with <b>cpath_layer</b>. If this
  333. * is not a client connection, set the relay end cell's reason for closing
  334. * as <b>reason</b> */
  335. static int
  336. relay_send_end_cell_from_edge(streamid_t stream_id, circuit_t *circ,
  337. uint8_t reason, crypt_path_t *cpath_layer)
  338. {
  339. char payload[1];
  340. if (CIRCUIT_PURPOSE_IS_CLIENT(circ->purpose)) {
  341. /* Never send the server an informative reason code; it doesn't need to
  342. * know why the client stream is failing. */
  343. reason = END_STREAM_REASON_MISC;
  344. }
  345. payload[0] = (char) reason;
  346. /* Note: we have to use relay_send_command_from_edge here, not
  347. * connection_edge_end or connection_edge_send_command, since those require
  348. * that we have a stream connected to a circuit, and we don't connect to a
  349. * circuit until we have a pending/successful resolve. */
  350. return relay_send_command_from_edge(stream_id, circ, RELAY_COMMAND_END,
  351. payload, 1, cpath_layer);
  352. }
  353. /* If the connection <b>conn</b> is attempting to connect to an external
  354. * destination that is an hidden service and the reason is a connection
  355. * refused or timeout, log it so the operator can take appropriate actions.
  356. * The log statement is a rate limited warning. */
  357. static void
  358. warn_if_hs_unreachable(const edge_connection_t *conn, uint8_t reason)
  359. {
  360. tor_assert(conn);
  361. if (conn->base_.type == CONN_TYPE_EXIT &&
  362. connection_edge_is_rendezvous_stream(conn) &&
  363. (reason == END_STREAM_REASON_CONNECTREFUSED ||
  364. reason == END_STREAM_REASON_TIMEOUT)) {
  365. #define WARN_FAILED_HS_CONNECTION 300
  366. static ratelim_t warn_limit = RATELIM_INIT(WARN_FAILED_HS_CONNECTION);
  367. char *m;
  368. if ((m = rate_limit_log(&warn_limit, approx_time()))) {
  369. log_warn(LD_EDGE, "Onion service connection to %s failed (%s)",
  370. (conn->base_.socket_family == AF_UNIX) ?
  371. safe_str(conn->base_.address) :
  372. safe_str(fmt_addrport(&conn->base_.addr, conn->base_.port)),
  373. stream_end_reason_to_string(reason));
  374. tor_free(m);
  375. }
  376. }
  377. }
  378. /** Send a relay end cell from stream <b>conn</b> down conn's circuit, and
  379. * remember that we've done so. If this is not a client connection, set the
  380. * relay end cell's reason for closing as <b>reason</b>.
  381. *
  382. * Return -1 if this function has already been called on this conn,
  383. * else return 0.
  384. */
  385. int
  386. connection_edge_end(edge_connection_t *conn, uint8_t reason)
  387. {
  388. char payload[RELAY_PAYLOAD_SIZE];
  389. size_t payload_len=1;
  390. circuit_t *circ;
  391. uint8_t control_reason = reason;
  392. if (conn->edge_has_sent_end) {
  393. log_warn(LD_BUG,"(Harmless.) Calling connection_edge_end (reason %d) "
  394. "on an already ended stream?", reason);
  395. tor_fragile_assert();
  396. return -1;
  397. }
  398. if (conn->base_.marked_for_close) {
  399. log_warn(LD_BUG,
  400. "called on conn that's already marked for close at %s:%d.",
  401. conn->base_.marked_for_close_file, conn->base_.marked_for_close);
  402. return 0;
  403. }
  404. circ = circuit_get_by_edge_conn(conn);
  405. if (circ && CIRCUIT_PURPOSE_IS_CLIENT(circ->purpose)) {
  406. /* If this is a client circuit, don't send the server an informative
  407. * reason code; it doesn't need to know why the client stream is
  408. * failing. */
  409. reason = END_STREAM_REASON_MISC;
  410. }
  411. payload[0] = (char)reason;
  412. if (reason == END_STREAM_REASON_EXITPOLICY &&
  413. !connection_edge_is_rendezvous_stream(conn)) {
  414. int addrlen;
  415. if (tor_addr_family(&conn->base_.addr) == AF_INET) {
  416. set_uint32(payload+1, tor_addr_to_ipv4n(&conn->base_.addr));
  417. addrlen = 4;
  418. } else {
  419. memcpy(payload+1, tor_addr_to_in6_addr8(&conn->base_.addr), 16);
  420. addrlen = 16;
  421. }
  422. set_uint32(payload+1+addrlen, htonl(dns_clip_ttl(conn->address_ttl)));
  423. payload_len += 4+addrlen;
  424. }
  425. if (circ && !circ->marked_for_close) {
  426. log_debug(LD_EDGE,"Sending end on conn (fd "TOR_SOCKET_T_FORMAT").",
  427. conn->base_.s);
  428. connection_edge_send_command(conn, RELAY_COMMAND_END,
  429. payload, payload_len);
  430. /* We'll log warn if the connection was an hidden service and couldn't be
  431. * made because the service wasn't available. */
  432. warn_if_hs_unreachable(conn, control_reason);
  433. } else {
  434. log_debug(LD_EDGE,"No circ to send end on conn "
  435. "(fd "TOR_SOCKET_T_FORMAT").",
  436. conn->base_.s);
  437. }
  438. conn->edge_has_sent_end = 1;
  439. conn->end_reason = control_reason;
  440. return 0;
  441. }
  442. /** An error has just occurred on an operation on an edge connection
  443. * <b>conn</b>. Extract the errno; convert it to an end reason, and send an
  444. * appropriate relay end cell to the other end of the connection's circuit.
  445. **/
  446. int
  447. connection_edge_end_errno(edge_connection_t *conn)
  448. {
  449. uint8_t reason;
  450. tor_assert(conn);
  451. reason = errno_to_stream_end_reason(tor_socket_errno(conn->base_.s));
  452. return connection_edge_end(conn, reason);
  453. }
  454. /** We just wrote some data to <b>conn</b>; act appropriately.
  455. *
  456. * (That is, if it's open, consider sending a stream-level sendme cell if we
  457. * have just flushed enough.)
  458. */
  459. int
  460. connection_edge_flushed_some(edge_connection_t *conn)
  461. {
  462. switch (conn->base_.state) {
  463. case AP_CONN_STATE_OPEN:
  464. case EXIT_CONN_STATE_OPEN:
  465. connection_edge_consider_sending_sendme(conn);
  466. break;
  467. }
  468. return 0;
  469. }
  470. /** Connection <b>conn</b> has finished writing and has no bytes left on
  471. * its outbuf.
  472. *
  473. * If it's in state 'open', stop writing, consider responding with a
  474. * sendme, and return.
  475. * Otherwise, stop writing and return.
  476. *
  477. * If <b>conn</b> is broken, mark it for close and return -1, else
  478. * return 0.
  479. */
  480. int
  481. connection_edge_finished_flushing(edge_connection_t *conn)
  482. {
  483. tor_assert(conn);
  484. switch (conn->base_.state) {
  485. case AP_CONN_STATE_OPEN:
  486. case EXIT_CONN_STATE_OPEN:
  487. connection_edge_consider_sending_sendme(conn);
  488. return 0;
  489. case AP_CONN_STATE_SOCKS_WAIT:
  490. case AP_CONN_STATE_NATD_WAIT:
  491. case AP_CONN_STATE_RENDDESC_WAIT:
  492. case AP_CONN_STATE_CIRCUIT_WAIT:
  493. case AP_CONN_STATE_CONNECT_WAIT:
  494. case AP_CONN_STATE_CONTROLLER_WAIT:
  495. case AP_CONN_STATE_RESOLVE_WAIT:
  496. case AP_CONN_STATE_HTTP_CONNECT_WAIT:
  497. return 0;
  498. default:
  499. log_warn(LD_BUG, "Called in unexpected state %d.",conn->base_.state);
  500. tor_fragile_assert();
  501. return -1;
  502. }
  503. return 0;
  504. }
  505. /** Longest size for the relay payload of a RELAY_CONNECTED cell that we're
  506. * able to generate. */
  507. /* 4 zero bytes; 1 type byte; 16 byte IPv6 address; 4 byte TTL. */
  508. #define MAX_CONNECTED_CELL_PAYLOAD_LEN 25
  509. /** Set the buffer at <b>payload_out</b> -- which must have at least
  510. * MAX_CONNECTED_CELL_PAYLOAD_LEN bytes available -- to the body of a
  511. * RELAY_CONNECTED cell indicating that we have connected to <b>addr</b>, and
  512. * that the name resolution that led us to <b>addr</b> will be valid for
  513. * <b>ttl</b> seconds. Return -1 on error, or the number of bytes used on
  514. * success. */
  515. STATIC int
  516. connected_cell_format_payload(uint8_t *payload_out,
  517. const tor_addr_t *addr,
  518. uint32_t ttl)
  519. {
  520. const sa_family_t family = tor_addr_family(addr);
  521. int connected_payload_len;
  522. /* should be needless */
  523. memset(payload_out, 0, MAX_CONNECTED_CELL_PAYLOAD_LEN);
  524. if (family == AF_INET) {
  525. set_uint32(payload_out, tor_addr_to_ipv4n(addr));
  526. connected_payload_len = 4;
  527. } else if (family == AF_INET6) {
  528. set_uint32(payload_out, 0);
  529. set_uint8(payload_out + 4, 6);
  530. memcpy(payload_out + 5, tor_addr_to_in6_addr8(addr), 16);
  531. connected_payload_len = 21;
  532. } else {
  533. return -1;
  534. }
  535. set_uint32(payload_out + connected_payload_len, htonl(dns_clip_ttl(ttl)));
  536. connected_payload_len += 4;
  537. tor_assert(connected_payload_len <= MAX_CONNECTED_CELL_PAYLOAD_LEN);
  538. return connected_payload_len;
  539. }
  540. /** Connected handler for exit connections: start writing pending
  541. * data, deliver 'CONNECTED' relay cells as appropriate, and check
  542. * any pending data that may have been received. */
  543. int
  544. connection_edge_finished_connecting(edge_connection_t *edge_conn)
  545. {
  546. connection_t *conn;
  547. tor_assert(edge_conn);
  548. tor_assert(edge_conn->base_.type == CONN_TYPE_EXIT);
  549. conn = TO_CONN(edge_conn);
  550. tor_assert(conn->state == EXIT_CONN_STATE_CONNECTING);
  551. log_info(LD_EXIT,"Exit connection to %s:%u (%s) established.",
  552. escaped_safe_str(conn->address), conn->port,
  553. safe_str(fmt_and_decorate_addr(&conn->addr)));
  554. rep_hist_note_exit_stream_opened(conn->port);
  555. conn->state = EXIT_CONN_STATE_OPEN;
  556. connection_watch_events(conn, READ_EVENT); /* stop writing, keep reading */
  557. if (connection_get_outbuf_len(conn)) /* in case there are any queued relay
  558. * cells */
  559. connection_start_writing(conn);
  560. /* deliver a 'connected' relay cell back through the circuit. */
  561. if (connection_edge_is_rendezvous_stream(edge_conn)) {
  562. if (connection_edge_send_command(edge_conn,
  563. RELAY_COMMAND_CONNECTED, NULL, 0) < 0)
  564. return 0; /* circuit is closed, don't continue */
  565. } else {
  566. uint8_t connected_payload[MAX_CONNECTED_CELL_PAYLOAD_LEN];
  567. int connected_payload_len =
  568. connected_cell_format_payload(connected_payload, &conn->addr,
  569. edge_conn->address_ttl);
  570. if (connected_payload_len < 0)
  571. return -1;
  572. if (connection_edge_send_command(edge_conn,
  573. RELAY_COMMAND_CONNECTED,
  574. (char*)connected_payload, connected_payload_len) < 0)
  575. return 0; /* circuit is closed, don't continue */
  576. }
  577. tor_assert(edge_conn->package_window > 0);
  578. /* in case the server has written anything */
  579. return connection_edge_process_inbuf(edge_conn, 1);
  580. }
  581. /** A list of all the entry_connection_t * objects that are not marked
  582. * for close, and are in AP_CONN_STATE_CIRCUIT_WAIT.
  583. *
  584. * (Right now, we check in several places to make sure that this list is
  585. * correct. When it's incorrect, we'll fix it, and log a BUG message.)
  586. */
  587. static smartlist_t *pending_entry_connections = NULL;
  588. static int untried_pending_connections = 0;
  589. /**
  590. * Mainloop event to tell us to scan for pending connections that can
  591. * be attached.
  592. */
  593. static mainloop_event_t *attach_pending_entry_connections_ev = NULL;
  594. /** Common code to connection_(ap|exit)_about_to_close. */
  595. static void
  596. connection_edge_about_to_close(edge_connection_t *edge_conn)
  597. {
  598. if (!edge_conn->edge_has_sent_end) {
  599. connection_t *conn = TO_CONN(edge_conn);
  600. log_warn(LD_BUG, "(Harmless.) Edge connection (marked at %s:%d) "
  601. "hasn't sent end yet?",
  602. conn->marked_for_close_file, conn->marked_for_close);
  603. tor_fragile_assert();
  604. }
  605. }
  606. /** Called when we're about to finally unlink and free an AP (client)
  607. * connection: perform necessary accounting and cleanup */
  608. void
  609. connection_ap_about_to_close(entry_connection_t *entry_conn)
  610. {
  611. circuit_t *circ;
  612. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(entry_conn);
  613. connection_t *conn = ENTRY_TO_CONN(entry_conn);
  614. connection_edge_about_to_close(edge_conn);
  615. if (entry_conn->socks_request->has_finished == 0) {
  616. /* since conn gets removed right after this function finishes,
  617. * there's no point trying to send back a reply at this point. */
  618. log_warn(LD_BUG,"Closing stream (marked at %s:%d) without sending"
  619. " back a socks reply.",
  620. conn->marked_for_close_file, conn->marked_for_close);
  621. }
  622. if (!edge_conn->end_reason) {
  623. log_warn(LD_BUG,"Closing stream (marked at %s:%d) without having"
  624. " set end_reason.",
  625. conn->marked_for_close_file, conn->marked_for_close);
  626. }
  627. if (entry_conn->dns_server_request) {
  628. log_warn(LD_BUG,"Closing stream (marked at %s:%d) without having"
  629. " replied to DNS request.",
  630. conn->marked_for_close_file, conn->marked_for_close);
  631. dnsserv_reject_request(entry_conn);
  632. }
  633. if (TO_CONN(edge_conn)->state == AP_CONN_STATE_CIRCUIT_WAIT) {
  634. smartlist_remove(pending_entry_connections, entry_conn);
  635. }
  636. #if 1
  637. /* Check to make sure that this isn't in pending_entry_connections if it
  638. * didn't actually belong there. */
  639. if (TO_CONN(edge_conn)->type == CONN_TYPE_AP) {
  640. connection_ap_warn_and_unmark_if_pending_circ(entry_conn,
  641. "about_to_close");
  642. }
  643. #endif /* 1 */
  644. control_event_stream_bandwidth(edge_conn);
  645. control_event_stream_status(entry_conn, STREAM_EVENT_CLOSED,
  646. edge_conn->end_reason);
  647. circ = circuit_get_by_edge_conn(edge_conn);
  648. if (circ)
  649. circuit_detach_stream(circ, edge_conn);
  650. }
  651. /** Called when we're about to finally unlink and free an exit
  652. * connection: perform necessary accounting and cleanup */
  653. void
  654. connection_exit_about_to_close(edge_connection_t *edge_conn)
  655. {
  656. circuit_t *circ;
  657. connection_t *conn = TO_CONN(edge_conn);
  658. connection_edge_about_to_close(edge_conn);
  659. circ = circuit_get_by_edge_conn(edge_conn);
  660. if (circ)
  661. circuit_detach_stream(circ, edge_conn);
  662. if (conn->state == EXIT_CONN_STATE_RESOLVING) {
  663. connection_dns_remove(edge_conn);
  664. }
  665. }
  666. /** Define a schedule for how long to wait between retrying
  667. * application connections. Rather than waiting a fixed amount of
  668. * time between each retry, we wait 10 seconds each for the first
  669. * two tries, and 15 seconds for each retry after
  670. * that. Hopefully this will improve the expected user experience. */
  671. static int
  672. compute_retry_timeout(entry_connection_t *conn)
  673. {
  674. int timeout = get_options()->CircuitStreamTimeout;
  675. if (timeout) /* if our config options override the default, use them */
  676. return timeout;
  677. if (conn->num_socks_retries < 2) /* try 0 and try 1 */
  678. return 10;
  679. return 15;
  680. }
  681. /** Find all general-purpose AP streams waiting for a response that sent their
  682. * begin/resolve cell too long ago. Detach from their current circuit, and
  683. * mark their current circuit as unsuitable for new streams. Then call
  684. * connection_ap_handshake_attach_circuit() to attach to a new circuit (if
  685. * available) or launch a new one.
  686. *
  687. * For rendezvous streams, simply give up after SocksTimeout seconds (with no
  688. * retry attempt).
  689. */
  690. void
  691. connection_ap_expire_beginning(void)
  692. {
  693. edge_connection_t *conn;
  694. entry_connection_t *entry_conn;
  695. circuit_t *circ;
  696. time_t now = time(NULL);
  697. const or_options_t *options = get_options();
  698. int severity;
  699. int cutoff;
  700. int seconds_idle, seconds_since_born;
  701. smartlist_t *conns = get_connection_array();
  702. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, base_conn) {
  703. if (base_conn->type != CONN_TYPE_AP || base_conn->marked_for_close)
  704. continue;
  705. entry_conn = TO_ENTRY_CONN(base_conn);
  706. conn = ENTRY_TO_EDGE_CONN(entry_conn);
  707. /* if it's an internal linked connection, don't yell its status. */
  708. severity = (tor_addr_is_null(&base_conn->addr) && !base_conn->port)
  709. ? LOG_INFO : LOG_NOTICE;
  710. seconds_idle = (int)( now - base_conn->timestamp_last_read_allowed );
  711. seconds_since_born = (int)( now - base_conn->timestamp_created );
  712. if (base_conn->state == AP_CONN_STATE_OPEN)
  713. continue;
  714. /* We already consider SocksTimeout in
  715. * connection_ap_handshake_attach_circuit(), but we need to consider
  716. * it here too because controllers that put streams in controller_wait
  717. * state never ask Tor to attach the circuit. */
  718. if (AP_CONN_STATE_IS_UNATTACHED(base_conn->state)) {
  719. if (seconds_since_born >= options->SocksTimeout) {
  720. log_fn(severity, LD_APP,
  721. "Tried for %d seconds to get a connection to %s:%d. "
  722. "Giving up. (%s)",
  723. seconds_since_born,
  724. safe_str_client(entry_conn->socks_request->address),
  725. entry_conn->socks_request->port,
  726. conn_state_to_string(CONN_TYPE_AP, base_conn->state));
  727. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TIMEOUT);
  728. }
  729. continue;
  730. }
  731. /* We're in state connect_wait or resolve_wait now -- waiting for a
  732. * reply to our relay cell. See if we want to retry/give up. */
  733. cutoff = compute_retry_timeout(entry_conn);
  734. if (seconds_idle < cutoff)
  735. continue;
  736. circ = circuit_get_by_edge_conn(conn);
  737. if (!circ) { /* it's vanished? */
  738. log_info(LD_APP,"Conn is waiting (address %s), but lost its circ.",
  739. safe_str_client(entry_conn->socks_request->address));
  740. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TIMEOUT);
  741. continue;
  742. }
  743. if (circ->purpose == CIRCUIT_PURPOSE_C_REND_JOINED) {
  744. if (seconds_idle >= options->SocksTimeout) {
  745. log_fn(severity, LD_REND,
  746. "Rend stream is %d seconds late. Giving up on address"
  747. " '%s.onion'.",
  748. seconds_idle,
  749. safe_str_client(entry_conn->socks_request->address));
  750. /* Roll back path bias use state so that we probe the circuit
  751. * if nothing else succeeds on it */
  752. pathbias_mark_use_rollback(TO_ORIGIN_CIRCUIT(circ));
  753. connection_edge_end(conn, END_STREAM_REASON_TIMEOUT);
  754. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TIMEOUT);
  755. }
  756. continue;
  757. }
  758. if (circ->purpose != CIRCUIT_PURPOSE_C_GENERAL &&
  759. circ->purpose != CIRCUIT_PURPOSE_C_HSDIR_GET &&
  760. circ->purpose != CIRCUIT_PURPOSE_S_HSDIR_POST &&
  761. circ->purpose != CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT &&
  762. circ->purpose != CIRCUIT_PURPOSE_PATH_BIAS_TESTING) {
  763. log_warn(LD_BUG, "circuit->purpose == CIRCUIT_PURPOSE_C_GENERAL failed. "
  764. "The purpose on the circuit was %s; it was in state %s, "
  765. "path_state %s.",
  766. circuit_purpose_to_string(circ->purpose),
  767. circuit_state_to_string(circ->state),
  768. CIRCUIT_IS_ORIGIN(circ) ?
  769. pathbias_state_to_string(TO_ORIGIN_CIRCUIT(circ)->path_state) :
  770. "none");
  771. }
  772. log_fn(cutoff < 15 ? LOG_INFO : severity, LD_APP,
  773. "We tried for %d seconds to connect to '%s' using exit %s."
  774. " Retrying on a new circuit.",
  775. seconds_idle,
  776. safe_str_client(entry_conn->socks_request->address),
  777. conn->cpath_layer ?
  778. extend_info_describe(conn->cpath_layer->extend_info):
  779. "*unnamed*");
  780. /* send an end down the circuit */
  781. connection_edge_end(conn, END_STREAM_REASON_TIMEOUT);
  782. /* un-mark it as ending, since we're going to reuse it */
  783. conn->edge_has_sent_end = 0;
  784. conn->end_reason = 0;
  785. /* make us not try this circuit again, but allow
  786. * current streams on it to survive if they can */
  787. mark_circuit_unusable_for_new_conns(TO_ORIGIN_CIRCUIT(circ));
  788. /* give our stream another 'cutoff' seconds to try */
  789. conn->base_.timestamp_last_read_allowed += cutoff;
  790. if (entry_conn->num_socks_retries < 250) /* avoid overflow */
  791. entry_conn->num_socks_retries++;
  792. /* move it back into 'pending' state, and try to attach. */
  793. if (connection_ap_detach_retriable(entry_conn, TO_ORIGIN_CIRCUIT(circ),
  794. END_STREAM_REASON_TIMEOUT)<0) {
  795. if (!base_conn->marked_for_close)
  796. connection_mark_unattached_ap(entry_conn,
  797. END_STREAM_REASON_CANT_ATTACH);
  798. }
  799. } SMARTLIST_FOREACH_END(base_conn);
  800. }
  801. /**
  802. * As connection_ap_attach_pending, but first scans the entire connection
  803. * array to see if any elements are missing.
  804. */
  805. void
  806. connection_ap_rescan_and_attach_pending(void)
  807. {
  808. entry_connection_t *entry_conn;
  809. smartlist_t *conns = get_connection_array();
  810. if (PREDICT_UNLIKELY(NULL == pending_entry_connections))
  811. pending_entry_connections = smartlist_new();
  812. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  813. if (conn->marked_for_close ||
  814. conn->type != CONN_TYPE_AP ||
  815. conn->state != AP_CONN_STATE_CIRCUIT_WAIT)
  816. continue;
  817. entry_conn = TO_ENTRY_CONN(conn);
  818. tor_assert(entry_conn);
  819. if (! smartlist_contains(pending_entry_connections, entry_conn)) {
  820. log_warn(LD_BUG, "Found a connection %p that was supposed to be "
  821. "in pending_entry_connections, but wasn't. No worries; "
  822. "adding it.",
  823. pending_entry_connections);
  824. untried_pending_connections = 1;
  825. connection_ap_mark_as_pending_circuit(entry_conn);
  826. }
  827. } SMARTLIST_FOREACH_END(conn);
  828. connection_ap_attach_pending(1);
  829. }
  830. #ifdef DEBUGGING_17659
  831. #define UNMARK() do { \
  832. entry_conn->marked_pending_circ_line = 0; \
  833. entry_conn->marked_pending_circ_file = 0; \
  834. } while (0)
  835. #else /* !(defined(DEBUGGING_17659)) */
  836. #define UNMARK() do { } while (0)
  837. #endif /* defined(DEBUGGING_17659) */
  838. /** Tell any AP streams that are listed as waiting for a new circuit to try
  839. * again. If there is an available circuit for a stream, attach it. Otherwise,
  840. * launch a new circuit.
  841. *
  842. * If <b>retry</b> is false, only check the list if it contains at least one
  843. * streams that we have not yet tried to attach to a circuit.
  844. */
  845. void
  846. connection_ap_attach_pending(int retry)
  847. {
  848. if (PREDICT_UNLIKELY(!pending_entry_connections)) {
  849. return;
  850. }
  851. if (untried_pending_connections == 0 && !retry)
  852. return;
  853. /* Don't allow any modifications to list while we are iterating over
  854. * it. We'll put streams back on this list if we can't attach them
  855. * immediately. */
  856. smartlist_t *pending = pending_entry_connections;
  857. pending_entry_connections = smartlist_new();
  858. SMARTLIST_FOREACH_BEGIN(pending,
  859. entry_connection_t *, entry_conn) {
  860. connection_t *conn = ENTRY_TO_CONN(entry_conn);
  861. tor_assert(conn && entry_conn);
  862. if (conn->marked_for_close) {
  863. UNMARK();
  864. continue;
  865. }
  866. if (conn->magic != ENTRY_CONNECTION_MAGIC) {
  867. log_warn(LD_BUG, "%p has impossible magic value %u.",
  868. entry_conn, (unsigned)conn->magic);
  869. UNMARK();
  870. continue;
  871. }
  872. if (conn->state != AP_CONN_STATE_CIRCUIT_WAIT) {
  873. log_warn(LD_BUG, "%p is no longer in circuit_wait. Its current state "
  874. "is %s. Why is it on pending_entry_connections?",
  875. entry_conn,
  876. conn_state_to_string(conn->type, conn->state));
  877. UNMARK();
  878. continue;
  879. }
  880. /* Okay, we're through the sanity checks. Try to handle this stream. */
  881. if (connection_ap_handshake_attach_circuit(entry_conn) < 0) {
  882. if (!conn->marked_for_close)
  883. connection_mark_unattached_ap(entry_conn,
  884. END_STREAM_REASON_CANT_ATTACH);
  885. }
  886. if (! conn->marked_for_close &&
  887. conn->type == CONN_TYPE_AP &&
  888. conn->state == AP_CONN_STATE_CIRCUIT_WAIT) {
  889. /* Is it still waiting for a circuit? If so, we didn't attach it,
  890. * so it's still pending. Put it back on the list.
  891. */
  892. if (!smartlist_contains(pending_entry_connections, entry_conn)) {
  893. smartlist_add(pending_entry_connections, entry_conn);
  894. continue;
  895. }
  896. }
  897. /* If we got here, then we either closed the connection, or
  898. * we attached it. */
  899. UNMARK();
  900. } SMARTLIST_FOREACH_END(entry_conn);
  901. smartlist_free(pending);
  902. untried_pending_connections = 0;
  903. }
  904. static void
  905. attach_pending_entry_connections_cb(mainloop_event_t *ev, void *arg)
  906. {
  907. (void)ev;
  908. (void)arg;
  909. connection_ap_attach_pending(0);
  910. }
  911. /** Mark <b>entry_conn</b> as needing to get attached to a circuit.
  912. *
  913. * And <b>entry_conn</b> must be in AP_CONN_STATE_CIRCUIT_WAIT,
  914. * should not already be pending a circuit. The circuit will get
  915. * launched or the connection will get attached the next time we
  916. * call connection_ap_attach_pending().
  917. */
  918. void
  919. connection_ap_mark_as_pending_circuit_(entry_connection_t *entry_conn,
  920. const char *fname, int lineno)
  921. {
  922. connection_t *conn = ENTRY_TO_CONN(entry_conn);
  923. tor_assert(conn->state == AP_CONN_STATE_CIRCUIT_WAIT);
  924. tor_assert(conn->magic == ENTRY_CONNECTION_MAGIC);
  925. if (conn->marked_for_close)
  926. return;
  927. if (PREDICT_UNLIKELY(NULL == pending_entry_connections)) {
  928. pending_entry_connections = smartlist_new();
  929. }
  930. if (PREDICT_UNLIKELY(NULL == attach_pending_entry_connections_ev)) {
  931. attach_pending_entry_connections_ev = mainloop_event_postloop_new(
  932. attach_pending_entry_connections_cb, NULL);
  933. }
  934. if (PREDICT_UNLIKELY(smartlist_contains(pending_entry_connections,
  935. entry_conn))) {
  936. log_warn(LD_BUG, "What?? pending_entry_connections already contains %p! "
  937. "(Called from %s:%d.)",
  938. entry_conn, fname, lineno);
  939. #ifdef DEBUGGING_17659
  940. const char *f2 = entry_conn->marked_pending_circ_file;
  941. log_warn(LD_BUG, "(Previously called from %s:%d.)\n",
  942. f2 ? f2 : "<NULL>",
  943. entry_conn->marked_pending_circ_line);
  944. #endif /* defined(DEBUGGING_17659) */
  945. log_backtrace(LOG_WARN, LD_BUG, "To debug, this may help");
  946. return;
  947. }
  948. #ifdef DEBUGGING_17659
  949. entry_conn->marked_pending_circ_line = (uint16_t) lineno;
  950. entry_conn->marked_pending_circ_file = fname;
  951. #endif
  952. untried_pending_connections = 1;
  953. smartlist_add(pending_entry_connections, entry_conn);
  954. mainloop_event_activate(attach_pending_entry_connections_ev);
  955. }
  956. /** Mark <b>entry_conn</b> as no longer waiting for a circuit. */
  957. void
  958. connection_ap_mark_as_non_pending_circuit(entry_connection_t *entry_conn)
  959. {
  960. if (PREDICT_UNLIKELY(NULL == pending_entry_connections))
  961. return;
  962. UNMARK();
  963. smartlist_remove(pending_entry_connections, entry_conn);
  964. }
  965. /* DOCDOC */
  966. void
  967. connection_ap_warn_and_unmark_if_pending_circ(entry_connection_t *entry_conn,
  968. const char *where)
  969. {
  970. if (pending_entry_connections &&
  971. smartlist_contains(pending_entry_connections, entry_conn)) {
  972. log_warn(LD_BUG, "What was %p doing in pending_entry_connections in %s?",
  973. entry_conn, where);
  974. connection_ap_mark_as_non_pending_circuit(entry_conn);
  975. }
  976. }
  977. /** Tell any AP streams that are waiting for a one-hop tunnel to
  978. * <b>failed_digest</b> that they are going to fail. */
  979. /* XXXX We should get rid of this function, and instead attach
  980. * one-hop streams to circ->p_streams so they get marked in
  981. * circuit_mark_for_close like normal p_streams. */
  982. void
  983. connection_ap_fail_onehop(const char *failed_digest,
  984. cpath_build_state_t *build_state)
  985. {
  986. entry_connection_t *entry_conn;
  987. char digest[DIGEST_LEN];
  988. smartlist_t *conns = get_connection_array();
  989. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  990. if (conn->marked_for_close ||
  991. conn->type != CONN_TYPE_AP ||
  992. conn->state != AP_CONN_STATE_CIRCUIT_WAIT)
  993. continue;
  994. entry_conn = TO_ENTRY_CONN(conn);
  995. if (!entry_conn->want_onehop)
  996. continue;
  997. if (hexdigest_to_digest(entry_conn->chosen_exit_name, digest) < 0 ||
  998. tor_memneq(digest, failed_digest, DIGEST_LEN))
  999. continue;
  1000. if (tor_digest_is_zero(digest)) {
  1001. /* we don't know the digest; have to compare addr:port */
  1002. tor_addr_t addr;
  1003. if (!build_state || !build_state->chosen_exit ||
  1004. !entry_conn->socks_request) {
  1005. continue;
  1006. }
  1007. if (tor_addr_parse(&addr, entry_conn->socks_request->address)<0 ||
  1008. !tor_addr_eq(&build_state->chosen_exit->addr, &addr) ||
  1009. build_state->chosen_exit->port != entry_conn->socks_request->port)
  1010. continue;
  1011. }
  1012. log_info(LD_APP, "Closing one-hop stream to '%s/%s' because the OR conn "
  1013. "just failed.", entry_conn->chosen_exit_name,
  1014. entry_conn->socks_request->address);
  1015. connection_mark_unattached_ap(entry_conn, END_STREAM_REASON_TIMEOUT);
  1016. } SMARTLIST_FOREACH_END(conn);
  1017. }
  1018. /** A circuit failed to finish on its last hop <b>info</b>. If there
  1019. * are any streams waiting with this exit node in mind, but they
  1020. * don't absolutely require it, make them give up on it.
  1021. */
  1022. void
  1023. circuit_discard_optional_exit_enclaves(extend_info_t *info)
  1024. {
  1025. entry_connection_t *entry_conn;
  1026. const node_t *r1, *r2;
  1027. smartlist_t *conns = get_connection_array();
  1028. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  1029. if (conn->marked_for_close ||
  1030. conn->type != CONN_TYPE_AP ||
  1031. conn->state != AP_CONN_STATE_CIRCUIT_WAIT)
  1032. continue;
  1033. entry_conn = TO_ENTRY_CONN(conn);
  1034. if (!entry_conn->chosen_exit_optional &&
  1035. !entry_conn->chosen_exit_retries)
  1036. continue;
  1037. r1 = node_get_by_nickname(entry_conn->chosen_exit_name,
  1038. NNF_NO_WARN_UNNAMED);
  1039. r2 = node_get_by_id(info->identity_digest);
  1040. if (!r1 || !r2 || r1 != r2)
  1041. continue;
  1042. tor_assert(entry_conn->socks_request);
  1043. if (entry_conn->chosen_exit_optional) {
  1044. log_info(LD_APP, "Giving up on enclave exit '%s' for destination %s.",
  1045. safe_str_client(entry_conn->chosen_exit_name),
  1046. escaped_safe_str_client(entry_conn->socks_request->address));
  1047. entry_conn->chosen_exit_optional = 0;
  1048. tor_free(entry_conn->chosen_exit_name); /* clears it */
  1049. /* if this port is dangerous, warn or reject it now that we don't
  1050. * think it'll be using an enclave. */
  1051. consider_plaintext_ports(entry_conn, entry_conn->socks_request->port);
  1052. }
  1053. if (entry_conn->chosen_exit_retries) {
  1054. if (--entry_conn->chosen_exit_retries == 0) { /* give up! */
  1055. clear_trackexithost_mappings(entry_conn->chosen_exit_name);
  1056. tor_free(entry_conn->chosen_exit_name); /* clears it */
  1057. /* if this port is dangerous, warn or reject it now that we don't
  1058. * think it'll be using an enclave. */
  1059. consider_plaintext_ports(entry_conn, entry_conn->socks_request->port);
  1060. }
  1061. }
  1062. } SMARTLIST_FOREACH_END(conn);
  1063. }
  1064. /** The AP connection <b>conn</b> has just failed while attaching or
  1065. * sending a BEGIN or resolving on <b>circ</b>, but another circuit
  1066. * might work. Detach the circuit, and either reattach it, launch a
  1067. * new circuit, tell the controller, or give up as appropriate.
  1068. *
  1069. * Returns -1 on err, 1 on success, 0 on not-yet-sure.
  1070. */
  1071. int
  1072. connection_ap_detach_retriable(entry_connection_t *conn,
  1073. origin_circuit_t *circ,
  1074. int reason)
  1075. {
  1076. control_event_stream_status(conn, STREAM_EVENT_FAILED_RETRIABLE, reason);
  1077. ENTRY_TO_CONN(conn)->timestamp_last_read_allowed = time(NULL);
  1078. /* Roll back path bias use state so that we probe the circuit
  1079. * if nothing else succeeds on it */
  1080. pathbias_mark_use_rollback(circ);
  1081. if (conn->pending_optimistic_data) {
  1082. buf_set_to_copy(&conn->sending_optimistic_data,
  1083. conn->pending_optimistic_data);
  1084. }
  1085. if (!get_options()->LeaveStreamsUnattached || conn->use_begindir) {
  1086. /* If we're attaching streams ourself, or if this connection is
  1087. * a tunneled directory connection, then just attach it. */
  1088. ENTRY_TO_CONN(conn)->state = AP_CONN_STATE_CIRCUIT_WAIT;
  1089. circuit_detach_stream(TO_CIRCUIT(circ),ENTRY_TO_EDGE_CONN(conn));
  1090. connection_ap_mark_as_pending_circuit(conn);
  1091. } else {
  1092. CONNECTION_AP_EXPECT_NONPENDING(conn);
  1093. ENTRY_TO_CONN(conn)->state = AP_CONN_STATE_CONTROLLER_WAIT;
  1094. circuit_detach_stream(TO_CIRCUIT(circ),ENTRY_TO_EDGE_CONN(conn));
  1095. }
  1096. return 0;
  1097. }
  1098. /** Check if <b>conn</b> is using a dangerous port. Then warn and/or
  1099. * reject depending on our config options. */
  1100. static int
  1101. consider_plaintext_ports(entry_connection_t *conn, uint16_t port)
  1102. {
  1103. const or_options_t *options = get_options();
  1104. int reject = smartlist_contains_int_as_string(
  1105. options->RejectPlaintextPorts, port);
  1106. if (smartlist_contains_int_as_string(options->WarnPlaintextPorts, port)) {
  1107. log_warn(LD_APP, "Application request to port %d: this port is "
  1108. "commonly used for unencrypted protocols. Please make sure "
  1109. "you don't send anything you would mind the rest of the "
  1110. "Internet reading!%s", port, reject ? " Closing." : "");
  1111. control_event_client_status(LOG_WARN, "DANGEROUS_PORT PORT=%d RESULT=%s",
  1112. port, reject ? "REJECT" : "WARN");
  1113. }
  1114. if (reject) {
  1115. log_info(LD_APP, "Port %d listed in RejectPlaintextPorts. Closing.", port);
  1116. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1117. return -1;
  1118. }
  1119. return 0;
  1120. }
  1121. /** How many times do we try connecting with an exit configured via
  1122. * TrackHostExits before concluding that it won't work any more and trying a
  1123. * different one? */
  1124. #define TRACKHOSTEXITS_RETRIES 5
  1125. /** Call connection_ap_handshake_rewrite_and_attach() unless a controller
  1126. * asked us to leave streams unattached. Return 0 in that case.
  1127. *
  1128. * See connection_ap_handshake_rewrite_and_attach()'s
  1129. * documentation for arguments and return value.
  1130. */
  1131. MOCK_IMPL(int,
  1132. connection_ap_rewrite_and_attach_if_allowed,(entry_connection_t *conn,
  1133. origin_circuit_t *circ,
  1134. crypt_path_t *cpath))
  1135. {
  1136. const or_options_t *options = get_options();
  1137. if (options->LeaveStreamsUnattached) {
  1138. CONNECTION_AP_EXPECT_NONPENDING(conn);
  1139. ENTRY_TO_CONN(conn)->state = AP_CONN_STATE_CONTROLLER_WAIT;
  1140. return 0;
  1141. }
  1142. return connection_ap_handshake_rewrite_and_attach(conn, circ, cpath);
  1143. }
  1144. /* Try to perform any map-based rewriting of the target address in
  1145. * <b>conn</b>, filling in the fields of <b>out</b> as we go, and modifying
  1146. * conn->socks_request.address as appropriate.
  1147. */
  1148. STATIC void
  1149. connection_ap_handshake_rewrite(entry_connection_t *conn,
  1150. rewrite_result_t *out)
  1151. {
  1152. socks_request_t *socks = conn->socks_request;
  1153. const or_options_t *options = get_options();
  1154. tor_addr_t addr_tmp;
  1155. /* Initialize all the fields of 'out' to reasonable defaults */
  1156. out->automap = 0;
  1157. out->exit_source = ADDRMAPSRC_NONE;
  1158. out->map_expires = TIME_MAX;
  1159. out->end_reason = 0;
  1160. out->should_close = 0;
  1161. out->orig_address[0] = 0;
  1162. /* We convert all incoming addresses to lowercase. */
  1163. tor_strlower(socks->address);
  1164. /* Remember the original address. */
  1165. strlcpy(out->orig_address, socks->address, sizeof(out->orig_address));
  1166. log_debug(LD_APP,"Client asked for %s:%d",
  1167. safe_str_client(socks->address),
  1168. socks->port);
  1169. /* Check for whether this is a .exit address. By default, those are
  1170. * disallowed when they're coming straight from the client, but you're
  1171. * allowed to have them in MapAddress commands and so forth. */
  1172. if (!strcmpend(socks->address, ".exit")) {
  1173. log_warn(LD_APP, "The \".exit\" notation is disabled in Tor due to "
  1174. "security risks.");
  1175. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1176. escaped(socks->address));
  1177. out->end_reason = END_STREAM_REASON_TORPROTOCOL;
  1178. out->should_close = 1;
  1179. return;
  1180. }
  1181. /* Remember the original address so we can tell the user about what
  1182. * they actually said, not just what it turned into. */
  1183. /* XXX yes, this is the same as out->orig_address above. One is
  1184. * in the output, and one is in the connection. */
  1185. if (! conn->original_dest_address) {
  1186. /* Is the 'if' necessary here? XXXX */
  1187. conn->original_dest_address = tor_strdup(conn->socks_request->address);
  1188. }
  1189. /* First, apply MapAddress and MAPADDRESS mappings. We need to do
  1190. * these only for non-reverse lookups, since they don't exist for those.
  1191. * We also need to do this before we consider automapping, since we might
  1192. * e.g. resolve irc.oftc.net into irconionaddress.onion, at which point
  1193. * we'd need to automap it. */
  1194. if (socks->command != SOCKS_COMMAND_RESOLVE_PTR) {
  1195. const unsigned rewrite_flags = AMR_FLAG_USE_MAPADDRESS;
  1196. if (addressmap_rewrite(socks->address, sizeof(socks->address),
  1197. rewrite_flags, &out->map_expires, &out->exit_source)) {
  1198. control_event_stream_status(conn, STREAM_EVENT_REMAP,
  1199. REMAP_STREAM_SOURCE_CACHE);
  1200. }
  1201. }
  1202. /* Now see if we need to create or return an existing Hostname->IP
  1203. * automapping. Automapping happens when we're asked to resolve a
  1204. * hostname, and AutomapHostsOnResolve is set, and the hostname has a
  1205. * suffix listed in AutomapHostsSuffixes. It's a handy feature
  1206. * that lets you have Tor assign e.g. IPv6 addresses for .onion
  1207. * names, and return them safely from DNSPort.
  1208. */
  1209. if (socks->command == SOCKS_COMMAND_RESOLVE &&
  1210. tor_addr_parse(&addr_tmp, socks->address)<0 &&
  1211. options->AutomapHostsOnResolve) {
  1212. /* Check the suffix... */
  1213. out->automap = addressmap_address_should_automap(socks->address, options);
  1214. if (out->automap) {
  1215. /* If we get here, then we should apply an automapping for this. */
  1216. const char *new_addr;
  1217. /* We return an IPv4 address by default, or an IPv6 address if we
  1218. * are allowed to do so. */
  1219. int addr_type = RESOLVED_TYPE_IPV4;
  1220. if (conn->socks_request->socks_version != 4) {
  1221. if (!conn->entry_cfg.ipv4_traffic ||
  1222. (conn->entry_cfg.ipv6_traffic && conn->entry_cfg.prefer_ipv6) ||
  1223. conn->entry_cfg.prefer_ipv6_virtaddr)
  1224. addr_type = RESOLVED_TYPE_IPV6;
  1225. }
  1226. /* Okay, register the target address as automapped, and find the new
  1227. * address we're supposed to give as a resolve answer. (Return a cached
  1228. * value if we've looked up this address before.
  1229. */
  1230. new_addr = addressmap_register_virtual_address(
  1231. addr_type, tor_strdup(socks->address));
  1232. if (! new_addr) {
  1233. log_warn(LD_APP, "Unable to automap address %s",
  1234. escaped_safe_str(socks->address));
  1235. out->end_reason = END_STREAM_REASON_INTERNAL;
  1236. out->should_close = 1;
  1237. return;
  1238. }
  1239. log_info(LD_APP, "Automapping %s to %s",
  1240. escaped_safe_str_client(socks->address),
  1241. safe_str_client(new_addr));
  1242. strlcpy(socks->address, new_addr, sizeof(socks->address));
  1243. }
  1244. }
  1245. /* Now handle reverse lookups, if they're in the cache. This doesn't
  1246. * happen too often, since client-side DNS caching is off by default,
  1247. * and very deprecated. */
  1248. if (socks->command == SOCKS_COMMAND_RESOLVE_PTR) {
  1249. unsigned rewrite_flags = 0;
  1250. if (conn->entry_cfg.use_cached_ipv4_answers)
  1251. rewrite_flags |= AMR_FLAG_USE_IPV4_DNS;
  1252. if (conn->entry_cfg.use_cached_ipv6_answers)
  1253. rewrite_flags |= AMR_FLAG_USE_IPV6_DNS;
  1254. if (addressmap_rewrite_reverse(socks->address, sizeof(socks->address),
  1255. rewrite_flags, &out->map_expires)) {
  1256. char *result = tor_strdup(socks->address);
  1257. /* remember _what_ is supposed to have been resolved. */
  1258. tor_snprintf(socks->address, sizeof(socks->address), "REVERSE[%s]",
  1259. out->orig_address);
  1260. connection_ap_handshake_socks_resolved(conn, RESOLVED_TYPE_HOSTNAME,
  1261. strlen(result), (uint8_t*)result,
  1262. -1,
  1263. out->map_expires);
  1264. tor_free(result);
  1265. out->end_reason = END_STREAM_REASON_DONE |
  1266. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED;
  1267. out->should_close = 1;
  1268. return;
  1269. }
  1270. /* Hang on, did we find an answer saying that this is a reverse lookup for
  1271. * an internal address? If so, we should reject it if we're configured to
  1272. * do so. */
  1273. if (options->ClientDNSRejectInternalAddresses) {
  1274. /* Don't let clients try to do a reverse lookup on 10.0.0.1. */
  1275. tor_addr_t addr;
  1276. int ok;
  1277. ok = tor_addr_parse_PTR_name(
  1278. &addr, socks->address, AF_UNSPEC, 1);
  1279. if (ok == 1 && tor_addr_is_internal(&addr, 0)) {
  1280. connection_ap_handshake_socks_resolved(conn, RESOLVED_TYPE_ERROR,
  1281. 0, NULL, -1, TIME_MAX);
  1282. out->end_reason = END_STREAM_REASON_SOCKSPROTOCOL |
  1283. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED;
  1284. out->should_close = 1;
  1285. return;
  1286. }
  1287. }
  1288. }
  1289. /* If we didn't automap it before, then this is still the address that
  1290. * came straight from the user, mapped according to any
  1291. * MapAddress/MAPADDRESS commands. Now apply other mappings,
  1292. * including previously registered Automap entries (IP back to
  1293. * hostname), TrackHostExits entries, and client-side DNS cache
  1294. * entries (if they're turned on).
  1295. */
  1296. if (socks->command != SOCKS_COMMAND_RESOLVE_PTR &&
  1297. !out->automap) {
  1298. unsigned rewrite_flags = AMR_FLAG_USE_AUTOMAP | AMR_FLAG_USE_TRACKEXIT;
  1299. addressmap_entry_source_t exit_source2;
  1300. if (conn->entry_cfg.use_cached_ipv4_answers)
  1301. rewrite_flags |= AMR_FLAG_USE_IPV4_DNS;
  1302. if (conn->entry_cfg.use_cached_ipv6_answers)
  1303. rewrite_flags |= AMR_FLAG_USE_IPV6_DNS;
  1304. if (addressmap_rewrite(socks->address, sizeof(socks->address),
  1305. rewrite_flags, &out->map_expires, &exit_source2)) {
  1306. control_event_stream_status(conn, STREAM_EVENT_REMAP,
  1307. REMAP_STREAM_SOURCE_CACHE);
  1308. }
  1309. if (out->exit_source == ADDRMAPSRC_NONE) {
  1310. /* If it wasn't a .exit before, maybe it turned into a .exit. Remember
  1311. * the original source of a .exit. */
  1312. out->exit_source = exit_source2;
  1313. }
  1314. }
  1315. /* Check to see whether we're about to use an address in the virtual
  1316. * range without actually having gotten it from an Automap. */
  1317. if (!out->automap && address_is_in_virtual_range(socks->address)) {
  1318. /* This address was probably handed out by
  1319. * client_dns_get_unmapped_address, but the mapping was discarded for some
  1320. * reason. Or the user typed in a virtual address range manually. We
  1321. * *don't* want to send the address through Tor; that's likely to fail,
  1322. * and may leak information.
  1323. */
  1324. log_warn(LD_APP,"Missing mapping for virtual address '%s'. Refusing.",
  1325. safe_str_client(socks->address));
  1326. out->end_reason = END_STREAM_REASON_INTERNAL;
  1327. out->should_close = 1;
  1328. return;
  1329. }
  1330. }
  1331. /** We just received a SOCKS request in <b>conn</b> to an onion address of type
  1332. * <b>addresstype</b>. Start connecting to the onion service. */
  1333. static int
  1334. connection_ap_handle_onion(entry_connection_t *conn,
  1335. socks_request_t *socks,
  1336. origin_circuit_t *circ,
  1337. hostname_type_t addresstype)
  1338. {
  1339. time_t now = approx_time();
  1340. connection_t *base_conn = ENTRY_TO_CONN(conn);
  1341. /* If .onion address requests are disabled, refuse the request */
  1342. if (!conn->entry_cfg.onion_traffic) {
  1343. log_warn(LD_APP, "Onion address %s requested from a port with .onion "
  1344. "disabled", safe_str_client(socks->address));
  1345. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1346. return -1;
  1347. }
  1348. /* Check whether it's RESOLVE or RESOLVE_PTR. We don't handle those
  1349. * for hidden service addresses. */
  1350. if (SOCKS_COMMAND_IS_RESOLVE(socks->command)) {
  1351. /* if it's a resolve request, fail it right now, rather than
  1352. * building all the circuits and then realizing it won't work. */
  1353. log_warn(LD_APP,
  1354. "Resolve requests to hidden services not allowed. Failing.");
  1355. connection_ap_handshake_socks_resolved(conn,RESOLVED_TYPE_ERROR,
  1356. 0,NULL,-1,TIME_MAX);
  1357. connection_mark_unattached_ap(conn,
  1358. END_STREAM_REASON_SOCKSPROTOCOL |
  1359. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED);
  1360. return -1;
  1361. }
  1362. /* If we were passed a circuit, then we need to fail. .onion addresses
  1363. * only work when we launch our own circuits for now. */
  1364. if (circ) {
  1365. log_warn(LD_CONTROL, "Attachstream to a circuit is not "
  1366. "supported for .onion addresses currently. Failing.");
  1367. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1368. return -1;
  1369. }
  1370. /* Interface: Regardless of HS version after the block below we should have
  1371. set onion_address, rend_cache_lookup_result, and descriptor_is_usable. */
  1372. const char *onion_address = NULL;
  1373. int rend_cache_lookup_result = -ENOENT;
  1374. int descriptor_is_usable = 0;
  1375. if (addresstype == ONION_V2_HOSTNAME) { /* it's a v2 hidden service */
  1376. rend_cache_entry_t *entry = NULL;
  1377. /* Look up if we have client authorization configured for this hidden
  1378. * service. If we do, associate it with the rend_data. */
  1379. rend_service_authorization_t *client_auth =
  1380. rend_client_lookup_service_authorization(socks->address);
  1381. const uint8_t *cookie = NULL;
  1382. rend_auth_type_t auth_type = REND_NO_AUTH;
  1383. if (client_auth) {
  1384. log_info(LD_REND, "Using previously configured client authorization "
  1385. "for hidden service request.");
  1386. auth_type = client_auth->auth_type;
  1387. cookie = client_auth->descriptor_cookie;
  1388. }
  1389. /* Fill in the rend_data field so we can start doing a connection to
  1390. * a hidden service. */
  1391. rend_data_t *rend_data = ENTRY_TO_EDGE_CONN(conn)->rend_data =
  1392. rend_data_client_create(socks->address, NULL, (char *) cookie,
  1393. auth_type);
  1394. if (rend_data == NULL) {
  1395. return -1;
  1396. }
  1397. onion_address = rend_data_get_address(rend_data);
  1398. log_info(LD_REND,"Got a hidden service request for ID '%s'",
  1399. safe_str_client(onion_address));
  1400. rend_cache_lookup_result = rend_cache_lookup_entry(onion_address,-1,
  1401. &entry);
  1402. if (!rend_cache_lookup_result && entry) {
  1403. descriptor_is_usable = rend_client_any_intro_points_usable(entry);
  1404. }
  1405. } else { /* it's a v3 hidden service */
  1406. tor_assert(addresstype == ONION_V3_HOSTNAME);
  1407. const hs_descriptor_t *cached_desc = NULL;
  1408. int retval;
  1409. /* Create HS conn identifier with HS pubkey */
  1410. hs_ident_edge_conn_t *hs_conn_ident =
  1411. tor_malloc_zero(sizeof(hs_ident_edge_conn_t));
  1412. retval = hs_parse_address(socks->address, &hs_conn_ident->identity_pk,
  1413. NULL, NULL);
  1414. if (retval < 0) {
  1415. log_warn(LD_GENERAL, "failed to parse hs address");
  1416. tor_free(hs_conn_ident);
  1417. return -1;
  1418. }
  1419. ENTRY_TO_EDGE_CONN(conn)->hs_ident = hs_conn_ident;
  1420. onion_address = socks->address;
  1421. /* Check the v3 desc cache */
  1422. cached_desc = hs_cache_lookup_as_client(&hs_conn_ident->identity_pk);
  1423. if (cached_desc) {
  1424. rend_cache_lookup_result = 0;
  1425. descriptor_is_usable =
  1426. hs_client_any_intro_points_usable(&hs_conn_ident->identity_pk,
  1427. cached_desc);
  1428. log_info(LD_GENERAL, "Found %s descriptor in cache for %s. %s.",
  1429. (descriptor_is_usable) ? "usable" : "unusable",
  1430. safe_str_client(onion_address),
  1431. (descriptor_is_usable) ? "Not fetching." : "Refecting.");
  1432. } else {
  1433. rend_cache_lookup_result = -ENOENT;
  1434. }
  1435. }
  1436. /* Lookup the given onion address. If invalid, stop right now.
  1437. * Otherwise, we might have it in the cache or not. */
  1438. unsigned int refetch_desc = 0;
  1439. if (rend_cache_lookup_result < 0) {
  1440. switch (-rend_cache_lookup_result) {
  1441. case EINVAL:
  1442. /* We should already have rejected this address! */
  1443. log_warn(LD_BUG,"Invalid service name '%s'",
  1444. safe_str_client(onion_address));
  1445. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1446. return -1;
  1447. case ENOENT:
  1448. /* We didn't have this; we should look it up. */
  1449. log_info(LD_REND, "No descriptor found in our cache for %s. Fetching.",
  1450. safe_str_client(onion_address));
  1451. refetch_desc = 1;
  1452. break;
  1453. default:
  1454. log_warn(LD_BUG, "Unknown cache lookup error %d",
  1455. rend_cache_lookup_result);
  1456. return -1;
  1457. }
  1458. }
  1459. /* Help predict that we'll want to do hidden service circuits in the
  1460. * future. We're not sure if it will need a stable circuit yet, but
  1461. * we know we'll need *something*. */
  1462. rep_hist_note_used_internal(now, 0, 1);
  1463. /* Now we have a descriptor but is it usable or not? If not, refetch.
  1464. * Also, a fetch could have been requested if the onion address was not
  1465. * found in the cache previously. */
  1466. if (refetch_desc || !descriptor_is_usable) {
  1467. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(conn);
  1468. connection_ap_mark_as_non_pending_circuit(conn);
  1469. base_conn->state = AP_CONN_STATE_RENDDESC_WAIT;
  1470. if (addresstype == ONION_V2_HOSTNAME) {
  1471. tor_assert(edge_conn->rend_data);
  1472. rend_client_refetch_v2_renddesc(edge_conn->rend_data);
  1473. /* Whatever the result of the refetch, we don't go further. */
  1474. return 0;
  1475. } else {
  1476. tor_assert(addresstype == ONION_V3_HOSTNAME);
  1477. tor_assert(edge_conn->hs_ident);
  1478. /* Attempt to fetch the hsv3 descriptor. Check the retval to see how it
  1479. * went and act accordingly. */
  1480. int ret = hs_client_refetch_hsdesc(&edge_conn->hs_ident->identity_pk);
  1481. switch (ret) {
  1482. case HS_CLIENT_FETCH_MISSING_INFO:
  1483. /* Keeping the connection in descriptor wait state is fine because
  1484. * once we get enough dirinfo or a new live consensus, the HS client
  1485. * subsystem is notified and every connection in that state will
  1486. * trigger a fetch for the service key. */
  1487. case HS_CLIENT_FETCH_LAUNCHED:
  1488. case HS_CLIENT_FETCH_PENDING:
  1489. case HS_CLIENT_FETCH_HAVE_DESC:
  1490. return 0;
  1491. case HS_CLIENT_FETCH_ERROR:
  1492. case HS_CLIENT_FETCH_NO_HSDIRS:
  1493. case HS_CLIENT_FETCH_NOT_ALLOWED:
  1494. /* Can't proceed further and better close the SOCKS request. */
  1495. return -1;
  1496. }
  1497. }
  1498. }
  1499. /* We have the descriptor! So launch a connection to the HS. */
  1500. log_info(LD_REND, "Descriptor is here. Great.");
  1501. base_conn->state = AP_CONN_STATE_CIRCUIT_WAIT;
  1502. /* We'll try to attach it at the next event loop, or whenever
  1503. * we call connection_ap_attach_pending() */
  1504. connection_ap_mark_as_pending_circuit(conn);
  1505. return 0;
  1506. }
  1507. /** Connection <b>conn</b> just finished its socks handshake, or the
  1508. * controller asked us to take care of it. If <b>circ</b> is defined,
  1509. * then that's where we'll want to attach it. Otherwise we have to
  1510. * figure it out ourselves.
  1511. *
  1512. * First, parse whether it's a .exit address, remap it, and so on. Then
  1513. * if it's for a general circuit, try to attach it to a circuit (or launch
  1514. * one as needed), else if it's for a rendezvous circuit, fetch a
  1515. * rendezvous descriptor first (or attach/launch a circuit if the
  1516. * rendezvous descriptor is already here and fresh enough).
  1517. *
  1518. * The stream will exit from the hop
  1519. * indicated by <b>cpath</b>, or from the last hop in circ's cpath if
  1520. * <b>cpath</b> is NULL.
  1521. */
  1522. int
  1523. connection_ap_handshake_rewrite_and_attach(entry_connection_t *conn,
  1524. origin_circuit_t *circ,
  1525. crypt_path_t *cpath)
  1526. {
  1527. socks_request_t *socks = conn->socks_request;
  1528. const or_options_t *options = get_options();
  1529. connection_t *base_conn = ENTRY_TO_CONN(conn);
  1530. time_t now = time(NULL);
  1531. rewrite_result_t rr;
  1532. /* First we'll do the rewrite part. Let's see if we get a reasonable
  1533. * answer.
  1534. */
  1535. memset(&rr, 0, sizeof(rr));
  1536. connection_ap_handshake_rewrite(conn,&rr);
  1537. if (rr.should_close) {
  1538. /* connection_ap_handshake_rewrite told us to close the connection:
  1539. * either because it sent back an answer, or because it sent back an
  1540. * error */
  1541. connection_mark_unattached_ap(conn, rr.end_reason);
  1542. if (END_STREAM_REASON_DONE == (rr.end_reason & END_STREAM_REASON_MASK))
  1543. return 0;
  1544. else
  1545. return -1;
  1546. }
  1547. const time_t map_expires = rr.map_expires;
  1548. const int automap = rr.automap;
  1549. const addressmap_entry_source_t exit_source = rr.exit_source;
  1550. /* Now, we parse the address to see if it's an .onion or .exit or
  1551. * other special address.
  1552. */
  1553. const hostname_type_t addresstype = parse_extended_hostname(socks->address);
  1554. /* Now see whether the hostname is bogus. This could happen because of an
  1555. * onion hostname whose format we don't recognize. */
  1556. if (addresstype == BAD_HOSTNAME) {
  1557. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1558. escaped(socks->address));
  1559. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1560. return -1;
  1561. }
  1562. /* If this is a .exit hostname, strip off the .name.exit part, and
  1563. * see whether we're willing to connect there, and and otherwise handle the
  1564. * .exit address.
  1565. *
  1566. * We'll set chosen_exit_name and/or close the connection as appropriate.
  1567. */
  1568. if (addresstype == EXIT_HOSTNAME) {
  1569. /* If StrictNodes is not set, then .exit overrides ExcludeNodes but
  1570. * not ExcludeExitNodes. */
  1571. routerset_t *excludeset = options->StrictNodes ?
  1572. options->ExcludeExitNodesUnion_ : options->ExcludeExitNodes;
  1573. const node_t *node = NULL;
  1574. /* If this .exit was added by an AUTOMAP, then it came straight from
  1575. * a user. That's not safe. */
  1576. if (exit_source == ADDRMAPSRC_AUTOMAP) {
  1577. /* Whoops; this one is stale. It must have gotten added earlier?
  1578. * (Probably this is not possible, since AllowDotExit no longer
  1579. * exists.) */
  1580. log_warn(LD_APP,"Stale automapped address for '%s.exit'. Refusing.",
  1581. safe_str_client(socks->address));
  1582. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1583. escaped(socks->address));
  1584. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1585. tor_assert_nonfatal_unreached();
  1586. return -1;
  1587. }
  1588. /* Double-check to make sure there are no .exits coming from
  1589. * impossible/weird sources. */
  1590. if (exit_source == ADDRMAPSRC_DNS || exit_source == ADDRMAPSRC_NONE) {
  1591. /* It shouldn't be possible to get a .exit address from any of these
  1592. * sources. */
  1593. log_warn(LD_BUG,"Address '%s.exit', with impossible source for the "
  1594. ".exit part. Refusing.",
  1595. safe_str_client(socks->address));
  1596. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1597. escaped(socks->address));
  1598. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1599. return -1;
  1600. }
  1601. tor_assert(!automap);
  1602. /* Now, find the character before the .(name) part.
  1603. * (The ".exit" part got stripped off by "parse_extended_hostname").
  1604. *
  1605. * We're going to put the exit name into conn->chosen_exit_name, and
  1606. * look up a node correspondingly. */
  1607. char *s = strrchr(socks->address,'.');
  1608. if (s) {
  1609. /* The address was of the form "(stuff).(name).exit */
  1610. if (s[1] != '\0') {
  1611. /* Looks like a real .exit one. */
  1612. conn->chosen_exit_name = tor_strdup(s+1);
  1613. node = node_get_by_nickname(conn->chosen_exit_name, 0);
  1614. if (exit_source == ADDRMAPSRC_TRACKEXIT) {
  1615. /* We 5 tries before it expires the addressmap */
  1616. conn->chosen_exit_retries = TRACKHOSTEXITS_RETRIES;
  1617. }
  1618. *s = 0;
  1619. } else {
  1620. /* Oops, the address was (stuff)..exit. That's not okay. */
  1621. log_warn(LD_APP,"Malformed exit address '%s.exit'. Refusing.",
  1622. safe_str_client(socks->address));
  1623. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1624. escaped(socks->address));
  1625. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1626. return -1;
  1627. }
  1628. } else {
  1629. /* It looks like they just asked for "foo.exit". That's a special
  1630. * form that means (foo's address).foo.exit. */
  1631. conn->chosen_exit_name = tor_strdup(socks->address);
  1632. node = node_get_by_nickname(conn->chosen_exit_name, 0);
  1633. if (node) {
  1634. *socks->address = 0;
  1635. node_get_address_string(node, socks->address, sizeof(socks->address));
  1636. }
  1637. }
  1638. /* Now make sure that the chosen exit exists... */
  1639. if (!node) {
  1640. log_warn(LD_APP,
  1641. "Unrecognized relay in exit address '%s.exit'. Refusing.",
  1642. safe_str_client(socks->address));
  1643. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1644. return -1;
  1645. }
  1646. /* ...and make sure that it isn't excluded. */
  1647. if (routerset_contains_node(excludeset, node)) {
  1648. log_warn(LD_APP,
  1649. "Excluded relay in exit address '%s.exit'. Refusing.",
  1650. safe_str_client(socks->address));
  1651. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1652. return -1;
  1653. }
  1654. /* XXXX-1090 Should we also allow foo.bar.exit if ExitNodes is set and
  1655. Bar is not listed in it? I say yes, but our revised manpage branch
  1656. implies no. */
  1657. }
  1658. /* Now, we handle everything that isn't a .onion address. */
  1659. if (addresstype != ONION_V2_HOSTNAME && addresstype != ONION_V3_HOSTNAME) {
  1660. /* Not a hidden-service request. It's either a hostname or an IP,
  1661. * possibly with a .exit that we stripped off. We're going to check
  1662. * if we're allowed to connect/resolve there, and then launch the
  1663. * appropriate request. */
  1664. /* Check for funny characters in the address. */
  1665. if (address_is_invalid_destination(socks->address, 1)) {
  1666. control_event_client_status(LOG_WARN, "SOCKS_BAD_HOSTNAME HOSTNAME=%s",
  1667. escaped(socks->address));
  1668. log_warn(LD_APP,
  1669. "Destination '%s' seems to be an invalid hostname. Failing.",
  1670. safe_str_client(socks->address));
  1671. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1672. return -1;
  1673. }
  1674. #ifdef ENABLE_TOR2WEB_MODE
  1675. /* If we're running in Tor2webMode, we don't allow anything BUT .onion
  1676. * addresses. */
  1677. if (options->Tor2webMode) {
  1678. log_warn(LD_APP, "Refusing to connect to non-hidden-service hostname "
  1679. "or IP address %s because tor2web mode is enabled.",
  1680. safe_str_client(socks->address));
  1681. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1682. return -1;
  1683. }
  1684. #endif /* defined(ENABLE_TOR2WEB_MODE) */
  1685. /* socks->address is a non-onion hostname or IP address.
  1686. * If we can't do any non-onion requests, refuse the connection.
  1687. * If we have a hostname but can't do DNS, refuse the connection.
  1688. * If we have an IP address, but we can't use that address family,
  1689. * refuse the connection.
  1690. *
  1691. * If we can do DNS requests, and we can use at least one address family,
  1692. * then we have to resolve the address first. Then we'll know if it
  1693. * resolves to a usable address family. */
  1694. /* First, check if all non-onion traffic is disabled */
  1695. if (!conn->entry_cfg.dns_request && !conn->entry_cfg.ipv4_traffic
  1696. && !conn->entry_cfg.ipv6_traffic) {
  1697. log_warn(LD_APP, "Refusing to connect to non-hidden-service hostname "
  1698. "or IP address %s because Port has OnionTrafficOnly set (or "
  1699. "NoDNSRequest, NoIPv4Traffic, and NoIPv6Traffic).",
  1700. safe_str_client(socks->address));
  1701. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1702. return -1;
  1703. }
  1704. /* Then check if we have a hostname or IP address, and whether DNS or
  1705. * the IP address family are permitted. Reject if not. */
  1706. tor_addr_t dummy_addr;
  1707. int socks_family = tor_addr_parse(&dummy_addr, socks->address);
  1708. /* family will be -1 for a non-onion hostname that's not an IP */
  1709. if (socks_family == -1) {
  1710. if (!conn->entry_cfg.dns_request) {
  1711. log_warn(LD_APP, "Refusing to connect to hostname %s "
  1712. "because Port has NoDNSRequest set.",
  1713. safe_str_client(socks->address));
  1714. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1715. return -1;
  1716. }
  1717. } else if (socks_family == AF_INET) {
  1718. if (!conn->entry_cfg.ipv4_traffic) {
  1719. log_warn(LD_APP, "Refusing to connect to IPv4 address %s because "
  1720. "Port has NoIPv4Traffic set.",
  1721. safe_str_client(socks->address));
  1722. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1723. return -1;
  1724. }
  1725. } else if (socks_family == AF_INET6) {
  1726. if (!conn->entry_cfg.ipv6_traffic) {
  1727. log_warn(LD_APP, "Refusing to connect to IPv6 address %s because "
  1728. "Port has NoIPv6Traffic set.",
  1729. safe_str_client(socks->address));
  1730. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1731. return -1;
  1732. }
  1733. } else {
  1734. tor_assert_nonfatal_unreached_once();
  1735. }
  1736. /* See if this is a hostname lookup that we can answer immediately.
  1737. * (For example, an attempt to look up the IP address for an IP address.)
  1738. */
  1739. if (socks->command == SOCKS_COMMAND_RESOLVE) {
  1740. tor_addr_t answer;
  1741. /* Reply to resolves immediately if we can. */
  1742. if (tor_addr_parse(&answer, socks->address) >= 0) {/* is it an IP? */
  1743. /* remember _what_ is supposed to have been resolved. */
  1744. strlcpy(socks->address, rr.orig_address, sizeof(socks->address));
  1745. connection_ap_handshake_socks_resolved_addr(conn, &answer, -1,
  1746. map_expires);
  1747. connection_mark_unattached_ap(conn,
  1748. END_STREAM_REASON_DONE |
  1749. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED);
  1750. return 0;
  1751. }
  1752. tor_assert(!automap);
  1753. rep_hist_note_used_resolve(now); /* help predict this next time */
  1754. } else if (socks->command == SOCKS_COMMAND_CONNECT) {
  1755. /* Now see if this is a connect request that we can reject immediately */
  1756. tor_assert(!automap);
  1757. /* Don't allow connections to port 0. */
  1758. if (socks->port == 0) {
  1759. log_notice(LD_APP,"Application asked to connect to port 0. Refusing.");
  1760. connection_mark_unattached_ap(conn, END_STREAM_REASON_TORPROTOCOL);
  1761. return -1;
  1762. }
  1763. /* You can't make connections to internal addresses, by default.
  1764. * Exceptions are begindir requests (where the address is meaningless),
  1765. * or cases where you've hand-configured a particular exit, thereby
  1766. * making the local address meaningful. */
  1767. if (options->ClientRejectInternalAddresses &&
  1768. !conn->use_begindir && !conn->chosen_exit_name && !circ) {
  1769. /* If we reach this point then we don't want to allow internal
  1770. * addresses. Check if we got one. */
  1771. tor_addr_t addr;
  1772. if (tor_addr_hostname_is_local(socks->address) ||
  1773. (tor_addr_parse(&addr, socks->address) >= 0 &&
  1774. tor_addr_is_internal(&addr, 0))) {
  1775. /* If this is an explicit private address with no chosen exit node,
  1776. * then we really don't want to try to connect to it. That's
  1777. * probably an error. */
  1778. if (conn->is_transparent_ap) {
  1779. #define WARN_INTRVL_LOOP 300
  1780. static ratelim_t loop_warn_limit = RATELIM_INIT(WARN_INTRVL_LOOP);
  1781. char *m;
  1782. if ((m = rate_limit_log(&loop_warn_limit, approx_time()))) {
  1783. log_warn(LD_NET,
  1784. "Rejecting request for anonymous connection to private "
  1785. "address %s on a TransPort or NATDPort. Possible loop "
  1786. "in your NAT rules?%s", safe_str_client(socks->address),
  1787. m);
  1788. tor_free(m);
  1789. }
  1790. } else {
  1791. #define WARN_INTRVL_PRIV 300
  1792. static ratelim_t priv_warn_limit = RATELIM_INIT(WARN_INTRVL_PRIV);
  1793. char *m;
  1794. if ((m = rate_limit_log(&priv_warn_limit, approx_time()))) {
  1795. log_warn(LD_NET,
  1796. "Rejecting SOCKS request for anonymous connection to "
  1797. "private address %s.%s",
  1798. safe_str_client(socks->address),m);
  1799. tor_free(m);
  1800. }
  1801. }
  1802. connection_mark_unattached_ap(conn, END_STREAM_REASON_PRIVATE_ADDR);
  1803. return -1;
  1804. }
  1805. } /* end "if we should check for internal addresses" */
  1806. /* Okay. We're still doing a CONNECT, and it wasn't a private
  1807. * address. Here we do special handling for literal IP addresses,
  1808. * to see if we should reject this preemptively, and to set up
  1809. * fields in conn->entry_cfg to tell the exit what AF we want. */
  1810. {
  1811. tor_addr_t addr;
  1812. /* XXX Duplicate call to tor_addr_parse. */
  1813. if (tor_addr_parse(&addr, socks->address) >= 0) {
  1814. /* If we reach this point, it's an IPv4 or an IPv6 address. */
  1815. sa_family_t family = tor_addr_family(&addr);
  1816. if ((family == AF_INET && ! conn->entry_cfg.ipv4_traffic) ||
  1817. (family == AF_INET6 && ! conn->entry_cfg.ipv6_traffic)) {
  1818. /* You can't do an IPv4 address on a v6-only socks listener,
  1819. * or vice versa. */
  1820. log_warn(LD_NET, "Rejecting SOCKS request for an IP address "
  1821. "family that this listener does not support.");
  1822. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1823. return -1;
  1824. } else if (family == AF_INET6 && socks->socks_version == 4) {
  1825. /* You can't make a socks4 request to an IPv6 address. Socks4
  1826. * doesn't support that. */
  1827. log_warn(LD_NET, "Rejecting SOCKS4 request for an IPv6 address.");
  1828. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1829. return -1;
  1830. } else if (socks->socks_version == 4 &&
  1831. !conn->entry_cfg.ipv4_traffic) {
  1832. /* You can't do any kind of Socks4 request when IPv4 is forbidden.
  1833. *
  1834. * XXX raise this check outside the enclosing block? */
  1835. log_warn(LD_NET, "Rejecting SOCKS4 request on a listener with "
  1836. "no IPv4 traffic supported.");
  1837. connection_mark_unattached_ap(conn, END_STREAM_REASON_ENTRYPOLICY);
  1838. return -1;
  1839. } else if (family == AF_INET6) {
  1840. /* Tell the exit: we won't accept any ipv4 connection to an IPv6
  1841. * address. */
  1842. conn->entry_cfg.ipv4_traffic = 0;
  1843. } else if (family == AF_INET) {
  1844. /* Tell the exit: we won't accept any ipv6 connection to an IPv4
  1845. * address. */
  1846. conn->entry_cfg.ipv6_traffic = 0;
  1847. }
  1848. }
  1849. }
  1850. /* we never allow IPv6 answers on socks4. (TODO: Is this smart?) */
  1851. if (socks->socks_version == 4)
  1852. conn->entry_cfg.ipv6_traffic = 0;
  1853. /* Still handling CONNECT. Now, check for exit enclaves. (Which we
  1854. * don't do on BEGIN_DIR, or when there is a chosen exit.)
  1855. *
  1856. * TODO: Should we remove this? Exit enclaves are nutty and don't
  1857. * work very well
  1858. */
  1859. if (!conn->use_begindir && !conn->chosen_exit_name && !circ) {
  1860. /* see if we can find a suitable enclave exit */
  1861. const node_t *r =
  1862. router_find_exact_exit_enclave(socks->address, socks->port);
  1863. if (r) {
  1864. log_info(LD_APP,
  1865. "Redirecting address %s to exit at enclave router %s",
  1866. safe_str_client(socks->address), node_describe(r));
  1867. /* use the hex digest, not nickname, in case there are two
  1868. routers with this nickname */
  1869. conn->chosen_exit_name =
  1870. tor_strdup(hex_str(r->identity, DIGEST_LEN));
  1871. conn->chosen_exit_optional = 1;
  1872. }
  1873. }
  1874. /* Still handling CONNECT: warn or reject if it's using a dangerous
  1875. * port. */
  1876. if (!conn->use_begindir && !conn->chosen_exit_name && !circ)
  1877. if (consider_plaintext_ports(conn, socks->port) < 0)
  1878. return -1;
  1879. /* Remember the port so that we will predict that more requests
  1880. there will happen in the future. */
  1881. if (!conn->use_begindir) {
  1882. /* help predict this next time */
  1883. rep_hist_note_used_port(now, socks->port);
  1884. }
  1885. } else if (socks->command == SOCKS_COMMAND_RESOLVE_PTR) {
  1886. rep_hist_note_used_resolve(now); /* help predict this next time */
  1887. /* no extra processing needed */
  1888. } else {
  1889. /* We should only be doing CONNECT, RESOLVE, or RESOLVE_PTR! */
  1890. tor_fragile_assert();
  1891. }
  1892. /* Okay. At this point we've set chosen_exit_name if needed, rewritten the
  1893. * address, and decided not to reject it for any number of reasons. Now
  1894. * mark the connection as waiting for a circuit, and try to attach it!
  1895. */
  1896. base_conn->state = AP_CONN_STATE_CIRCUIT_WAIT;
  1897. /* If we were given a circuit to attach to, try to attach. Otherwise,
  1898. * try to find a good one and attach to that. */
  1899. int rv;
  1900. if (circ) {
  1901. rv = connection_ap_handshake_attach_chosen_circuit(conn, circ, cpath);
  1902. } else {
  1903. /* We'll try to attach it at the next event loop, or whenever
  1904. * we call connection_ap_attach_pending() */
  1905. connection_ap_mark_as_pending_circuit(conn);
  1906. rv = 0;
  1907. }
  1908. /* If the above function returned 0 then we're waiting for a circuit.
  1909. * if it returned 1, we're attached. Both are okay. But if it returned
  1910. * -1, there was an error, so make sure the connection is marked, and
  1911. * return -1. */
  1912. if (rv < 0) {
  1913. if (!base_conn->marked_for_close)
  1914. connection_mark_unattached_ap(conn, END_STREAM_REASON_CANT_ATTACH);
  1915. return -1;
  1916. }
  1917. return 0;
  1918. } else {
  1919. /* If we get here, it's a request for a .onion address! */
  1920. tor_assert(addresstype == ONION_V2_HOSTNAME ||
  1921. addresstype == ONION_V3_HOSTNAME);
  1922. tor_assert(!automap);
  1923. return connection_ap_handle_onion(conn, socks, circ, addresstype);
  1924. }
  1925. return 0; /* unreached but keeps the compiler happy */
  1926. }
  1927. #ifdef TRANS_PF
  1928. static int pf_socket = -1;
  1929. int
  1930. get_pf_socket(void)
  1931. {
  1932. int pf;
  1933. /* This should be opened before dropping privileges. */
  1934. if (pf_socket >= 0)
  1935. return pf_socket;
  1936. #if defined(OpenBSD)
  1937. /* only works on OpenBSD */
  1938. pf = tor_open_cloexec("/dev/pf", O_RDONLY, 0);
  1939. #else
  1940. /* works on NetBSD and FreeBSD */
  1941. pf = tor_open_cloexec("/dev/pf", O_RDWR, 0);
  1942. #endif /* defined(OpenBSD) */
  1943. if (pf < 0) {
  1944. log_warn(LD_NET, "open(\"/dev/pf\") failed: %s", strerror(errno));
  1945. return -1;
  1946. }
  1947. pf_socket = pf;
  1948. return pf_socket;
  1949. }
  1950. #endif /* defined(TRANS_PF) */
  1951. #if defined(TRANS_NETFILTER) || defined(TRANS_PF) || \
  1952. defined(TRANS_TPROXY)
  1953. /** Try fill in the address of <b>req</b> from the socket configured
  1954. * with <b>conn</b>. */
  1955. static int
  1956. destination_from_socket(entry_connection_t *conn, socks_request_t *req)
  1957. {
  1958. struct sockaddr_storage orig_dst;
  1959. socklen_t orig_dst_len = sizeof(orig_dst);
  1960. tor_addr_t addr;
  1961. #ifdef TRANS_TPROXY
  1962. if (get_options()->TransProxyType_parsed == TPT_TPROXY) {
  1963. if (getsockname(ENTRY_TO_CONN(conn)->s, (struct sockaddr*)&orig_dst,
  1964. &orig_dst_len) < 0) {
  1965. int e = tor_socket_errno(ENTRY_TO_CONN(conn)->s);
  1966. log_warn(LD_NET, "getsockname() failed: %s", tor_socket_strerror(e));
  1967. return -1;
  1968. }
  1969. goto done;
  1970. }
  1971. #endif /* defined(TRANS_TPROXY) */
  1972. #ifdef TRANS_NETFILTER
  1973. int rv = -1;
  1974. switch (ENTRY_TO_CONN(conn)->socket_family) {
  1975. #ifdef TRANS_NETFILTER_IPV4
  1976. case AF_INET:
  1977. rv = getsockopt(ENTRY_TO_CONN(conn)->s, SOL_IP, SO_ORIGINAL_DST,
  1978. (struct sockaddr*)&orig_dst, &orig_dst_len);
  1979. break;
  1980. #endif /* defined(TRANS_NETFILTER_IPV4) */
  1981. #ifdef TRANS_NETFILTER_IPV6
  1982. case AF_INET6:
  1983. rv = getsockopt(ENTRY_TO_CONN(conn)->s, SOL_IPV6, IP6T_SO_ORIGINAL_DST,
  1984. (struct sockaddr*)&orig_dst, &orig_dst_len);
  1985. break;
  1986. #endif /* defined(TRANS_NETFILTER_IPV6) */
  1987. default:
  1988. log_warn(LD_BUG,
  1989. "Received transparent data from an unsuported socket family %d",
  1990. ENTRY_TO_CONN(conn)->socket_family);
  1991. return -1;
  1992. }
  1993. if (rv < 0) {
  1994. int e = tor_socket_errno(ENTRY_TO_CONN(conn)->s);
  1995. log_warn(LD_NET, "getsockopt() failed: %s", tor_socket_strerror(e));
  1996. return -1;
  1997. }
  1998. goto done;
  1999. #elif defined(TRANS_PF)
  2000. if (getsockname(ENTRY_TO_CONN(conn)->s, (struct sockaddr*)&orig_dst,
  2001. &orig_dst_len) < 0) {
  2002. int e = tor_socket_errno(ENTRY_TO_CONN(conn)->s);
  2003. log_warn(LD_NET, "getsockname() failed: %s", tor_socket_strerror(e));
  2004. return -1;
  2005. }
  2006. goto done;
  2007. #else
  2008. (void)conn;
  2009. (void)req;
  2010. log_warn(LD_BUG, "Unable to determine destination from socket.");
  2011. return -1;
  2012. #endif /* defined(TRANS_NETFILTER) || ... */
  2013. done:
  2014. tor_addr_from_sockaddr(&addr, (struct sockaddr*)&orig_dst, &req->port);
  2015. tor_addr_to_str(req->address, &addr, sizeof(req->address), 1);
  2016. return 0;
  2017. }
  2018. #endif /* defined(TRANS_NETFILTER) || defined(TRANS_PF) || ... */
  2019. #ifdef TRANS_PF
  2020. static int
  2021. destination_from_pf(entry_connection_t *conn, socks_request_t *req)
  2022. {
  2023. struct sockaddr_storage proxy_addr;
  2024. socklen_t proxy_addr_len = sizeof(proxy_addr);
  2025. struct sockaddr *proxy_sa = (struct sockaddr*) &proxy_addr;
  2026. struct pfioc_natlook pnl;
  2027. tor_addr_t addr;
  2028. int pf = -1;
  2029. if (getsockname(ENTRY_TO_CONN(conn)->s, (struct sockaddr*)&proxy_addr,
  2030. &proxy_addr_len) < 0) {
  2031. int e = tor_socket_errno(ENTRY_TO_CONN(conn)->s);
  2032. log_warn(LD_NET, "getsockname() to determine transocks destination "
  2033. "failed: %s", tor_socket_strerror(e));
  2034. return -1;
  2035. }
  2036. #ifdef __FreeBSD__
  2037. if (get_options()->TransProxyType_parsed == TPT_IPFW) {
  2038. /* ipfw(8) is used and in this case getsockname returned the original
  2039. destination */
  2040. if (tor_addr_from_sockaddr(&addr, proxy_sa, &req->port) < 0) {
  2041. tor_fragile_assert();
  2042. return -1;
  2043. }
  2044. tor_addr_to_str(req->address, &addr, sizeof(req->address), 0);
  2045. return 0;
  2046. }
  2047. #endif /* defined(__FreeBSD__) */
  2048. memset(&pnl, 0, sizeof(pnl));
  2049. pnl.proto = IPPROTO_TCP;
  2050. pnl.direction = PF_OUT;
  2051. if (proxy_sa->sa_family == AF_INET) {
  2052. struct sockaddr_in *sin = (struct sockaddr_in *)proxy_sa;
  2053. pnl.af = AF_INET;
  2054. pnl.saddr.v4.s_addr = tor_addr_to_ipv4n(&ENTRY_TO_CONN(conn)->addr);
  2055. pnl.sport = htons(ENTRY_TO_CONN(conn)->port);
  2056. pnl.daddr.v4.s_addr = sin->sin_addr.s_addr;
  2057. pnl.dport = sin->sin_port;
  2058. } else if (proxy_sa->sa_family == AF_INET6) {
  2059. struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)proxy_sa;
  2060. pnl.af = AF_INET6;
  2061. memcpy(&pnl.saddr.v6, tor_addr_to_in6(&ENTRY_TO_CONN(conn)->addr),
  2062. sizeof(struct in6_addr));
  2063. pnl.sport = htons(ENTRY_TO_CONN(conn)->port);
  2064. memcpy(&pnl.daddr.v6, &sin6->sin6_addr, sizeof(struct in6_addr));
  2065. pnl.dport = sin6->sin6_port;
  2066. } else {
  2067. log_warn(LD_NET, "getsockname() gave an unexpected address family (%d)",
  2068. (int)proxy_sa->sa_family);
  2069. return -1;
  2070. }
  2071. pf = get_pf_socket();
  2072. if (pf<0)
  2073. return -1;
  2074. if (ioctl(pf, DIOCNATLOOK, &pnl) < 0) {
  2075. log_warn(LD_NET, "ioctl(DIOCNATLOOK) failed: %s", strerror(errno));
  2076. return -1;
  2077. }
  2078. if (pnl.af == AF_INET) {
  2079. tor_addr_from_ipv4n(&addr, pnl.rdaddr.v4.s_addr);
  2080. } else if (pnl.af == AF_INET6) {
  2081. tor_addr_from_in6(&addr, &pnl.rdaddr.v6);
  2082. } else {
  2083. tor_fragile_assert();
  2084. return -1;
  2085. }
  2086. tor_addr_to_str(req->address, &addr, sizeof(req->address), 1);
  2087. req->port = ntohs(pnl.rdport);
  2088. return 0;
  2089. }
  2090. #endif /* defined(TRANS_PF) */
  2091. /** Fetch the original destination address and port from a
  2092. * system-specific interface and put them into a
  2093. * socks_request_t as if they came from a socks request.
  2094. *
  2095. * Return -1 if an error prevents fetching the destination,
  2096. * else return 0.
  2097. */
  2098. static int
  2099. connection_ap_get_original_destination(entry_connection_t *conn,
  2100. socks_request_t *req)
  2101. {
  2102. #ifdef TRANS_NETFILTER
  2103. return destination_from_socket(conn, req);
  2104. #elif defined(TRANS_PF)
  2105. const or_options_t *options = get_options();
  2106. if (options->TransProxyType_parsed == TPT_PF_DIVERT)
  2107. return destination_from_socket(conn, req);
  2108. if (options->TransProxyType_parsed == TPT_DEFAULT ||
  2109. options->TransProxyType_parsed == TPT_IPFW)
  2110. return destination_from_pf(conn, req);
  2111. (void)conn;
  2112. (void)req;
  2113. log_warn(LD_BUG, "Proxy destination determination mechanism %s unknown.",
  2114. options->TransProxyType);
  2115. return -1;
  2116. #else
  2117. (void)conn;
  2118. (void)req;
  2119. log_warn(LD_BUG, "Called connection_ap_get_original_destination, but no "
  2120. "transparent proxy method was configured.");
  2121. return -1;
  2122. #endif /* defined(TRANS_NETFILTER) || ... */
  2123. }
  2124. /** connection_edge_process_inbuf() found a conn in state
  2125. * socks_wait. See if conn->inbuf has the right bytes to proceed with
  2126. * the socks handshake.
  2127. *
  2128. * If the handshake is complete, send it to
  2129. * connection_ap_handshake_rewrite_and_attach().
  2130. *
  2131. * Return -1 if an unexpected error with conn occurs (and mark it for close),
  2132. * else return 0.
  2133. */
  2134. static int
  2135. connection_ap_handshake_process_socks(entry_connection_t *conn)
  2136. {
  2137. socks_request_t *socks;
  2138. int sockshere;
  2139. const or_options_t *options = get_options();
  2140. int had_reply = 0;
  2141. connection_t *base_conn = ENTRY_TO_CONN(conn);
  2142. tor_assert(conn);
  2143. tor_assert(base_conn->type == CONN_TYPE_AP);
  2144. tor_assert(base_conn->state == AP_CONN_STATE_SOCKS_WAIT);
  2145. tor_assert(conn->socks_request);
  2146. socks = conn->socks_request;
  2147. log_debug(LD_APP,"entered.");
  2148. sockshere = fetch_from_buf_socks(base_conn->inbuf, socks,
  2149. options->TestSocks, options->SafeSocks);
  2150. if (socks->replylen) {
  2151. had_reply = 1;
  2152. connection_buf_add((const char*)socks->reply, socks->replylen,
  2153. base_conn);
  2154. socks->replylen = 0;
  2155. if (sockshere == -1) {
  2156. /* An invalid request just got a reply, no additional
  2157. * one is necessary. */
  2158. socks->has_finished = 1;
  2159. }
  2160. }
  2161. if (sockshere == 0) {
  2162. log_debug(LD_APP,"socks handshake not all here yet.");
  2163. return 0;
  2164. } else if (sockshere == -1) {
  2165. if (!had_reply) {
  2166. log_warn(LD_APP,"Fetching socks handshake failed. Closing.");
  2167. connection_ap_handshake_socks_reply(conn, NULL, 0,
  2168. END_STREAM_REASON_SOCKSPROTOCOL);
  2169. }
  2170. connection_mark_unattached_ap(conn,
  2171. END_STREAM_REASON_SOCKSPROTOCOL |
  2172. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED);
  2173. return -1;
  2174. } /* else socks handshake is done, continue processing */
  2175. if (SOCKS_COMMAND_IS_CONNECT(socks->command))
  2176. control_event_stream_status(conn, STREAM_EVENT_NEW, 0);
  2177. else
  2178. control_event_stream_status(conn, STREAM_EVENT_NEW_RESOLVE, 0);
  2179. return connection_ap_rewrite_and_attach_if_allowed(conn, NULL, NULL);
  2180. }
  2181. /** connection_init_accepted_conn() found a new trans AP conn.
  2182. * Get the original destination and send it to
  2183. * connection_ap_handshake_rewrite_and_attach().
  2184. *
  2185. * Return -1 if an unexpected error with conn (and it should be marked
  2186. * for close), else return 0.
  2187. */
  2188. int
  2189. connection_ap_process_transparent(entry_connection_t *conn)
  2190. {
  2191. socks_request_t *socks;
  2192. tor_assert(conn);
  2193. tor_assert(conn->socks_request);
  2194. socks = conn->socks_request;
  2195. /* pretend that a socks handshake completed so we don't try to
  2196. * send a socks reply down a transparent conn */
  2197. socks->command = SOCKS_COMMAND_CONNECT;
  2198. socks->has_finished = 1;
  2199. log_debug(LD_APP,"entered.");
  2200. if (connection_ap_get_original_destination(conn, socks) < 0) {
  2201. log_warn(LD_APP,"Fetching original destination failed. Closing.");
  2202. connection_mark_unattached_ap(conn,
  2203. END_STREAM_REASON_CANT_FETCH_ORIG_DEST);
  2204. return -1;
  2205. }
  2206. /* we have the original destination */
  2207. control_event_stream_status(conn, STREAM_EVENT_NEW, 0);
  2208. return connection_ap_rewrite_and_attach_if_allowed(conn, NULL, NULL);
  2209. }
  2210. /** connection_edge_process_inbuf() found a conn in state natd_wait. See if
  2211. * conn-\>inbuf has the right bytes to proceed. See FreeBSD's libalias(3) and
  2212. * ProxyEncodeTcpStream() in src/lib/libalias/alias_proxy.c for the encoding
  2213. * form of the original destination.
  2214. *
  2215. * If the original destination is complete, send it to
  2216. * connection_ap_handshake_rewrite_and_attach().
  2217. *
  2218. * Return -1 if an unexpected error with conn (and it should be marked
  2219. * for close), else return 0.
  2220. */
  2221. static int
  2222. connection_ap_process_natd(entry_connection_t *conn)
  2223. {
  2224. char tmp_buf[36], *tbuf, *daddr;
  2225. size_t tlen = 30;
  2226. int err, port_ok;
  2227. socks_request_t *socks;
  2228. tor_assert(conn);
  2229. tor_assert(ENTRY_TO_CONN(conn)->state == AP_CONN_STATE_NATD_WAIT);
  2230. tor_assert(conn->socks_request);
  2231. socks = conn->socks_request;
  2232. log_debug(LD_APP,"entered.");
  2233. /* look for LF-terminated "[DEST ip_addr port]"
  2234. * where ip_addr is a dotted-quad and port is in string form */
  2235. err = connection_buf_get_line(ENTRY_TO_CONN(conn), tmp_buf, &tlen);
  2236. if (err == 0)
  2237. return 0;
  2238. if (err < 0) {
  2239. log_warn(LD_APP,"NATD handshake failed (DEST too long). Closing");
  2240. connection_mark_unattached_ap(conn, END_STREAM_REASON_INVALID_NATD_DEST);
  2241. return -1;
  2242. }
  2243. if (strcmpstart(tmp_buf, "[DEST ")) {
  2244. log_warn(LD_APP,"NATD handshake was ill-formed; closing. The client "
  2245. "said: %s",
  2246. escaped(tmp_buf));
  2247. connection_mark_unattached_ap(conn, END_STREAM_REASON_INVALID_NATD_DEST);
  2248. return -1;
  2249. }
  2250. daddr = tbuf = &tmp_buf[0] + 6; /* after end of "[DEST " */
  2251. if (!(tbuf = strchr(tbuf, ' '))) {
  2252. log_warn(LD_APP,"NATD handshake was ill-formed; closing. The client "
  2253. "said: %s",
  2254. escaped(tmp_buf));
  2255. connection_mark_unattached_ap(conn, END_STREAM_REASON_INVALID_NATD_DEST);
  2256. return -1;
  2257. }
  2258. *tbuf++ = '\0';
  2259. /* pretend that a socks handshake completed so we don't try to
  2260. * send a socks reply down a natd conn */
  2261. strlcpy(socks->address, daddr, sizeof(socks->address));
  2262. socks->port = (uint16_t)
  2263. tor_parse_long(tbuf, 10, 1, 65535, &port_ok, &daddr);
  2264. if (!port_ok) {
  2265. log_warn(LD_APP,"NATD handshake failed; port %s is ill-formed or out "
  2266. "of range.", escaped(tbuf));
  2267. connection_mark_unattached_ap(conn, END_STREAM_REASON_INVALID_NATD_DEST);
  2268. return -1;
  2269. }
  2270. socks->command = SOCKS_COMMAND_CONNECT;
  2271. socks->has_finished = 1;
  2272. control_event_stream_status(conn, STREAM_EVENT_NEW, 0);
  2273. ENTRY_TO_CONN(conn)->state = AP_CONN_STATE_CIRCUIT_WAIT;
  2274. return connection_ap_rewrite_and_attach_if_allowed(conn, NULL, NULL);
  2275. }
  2276. /** Called on an HTTP CONNECT entry connection when some bytes have arrived,
  2277. * but we have not yet received a full HTTP CONNECT request. Try to parse an
  2278. * HTTP CONNECT request from the connection's inbuf. On success, set up the
  2279. * connection's socks_request field and try to attach the connection. On
  2280. * failure, send an HTTP reply, and mark the connection.
  2281. */
  2282. STATIC int
  2283. connection_ap_process_http_connect(entry_connection_t *conn)
  2284. {
  2285. if (BUG(ENTRY_TO_CONN(conn)->state != AP_CONN_STATE_HTTP_CONNECT_WAIT))
  2286. return -1;
  2287. char *headers = NULL, *body = NULL;
  2288. char *command = NULL, *addrport = NULL;
  2289. char *addr = NULL;
  2290. size_t bodylen = 0;
  2291. const char *errmsg = NULL;
  2292. int rv = 0;
  2293. const int http_status =
  2294. fetch_from_buf_http(ENTRY_TO_CONN(conn)->inbuf, &headers, 8192,
  2295. &body, &bodylen, 1024, 0);
  2296. if (http_status < 0) {
  2297. /* Bad http status */
  2298. errmsg = "HTTP/1.0 400 Bad Request\r\n\r\n";
  2299. goto err;
  2300. } else if (http_status == 0) {
  2301. /* no HTTP request yet. */
  2302. goto done;
  2303. }
  2304. const int cmd_status = parse_http_command(headers, &command, &addrport);
  2305. if (cmd_status < 0) {
  2306. errmsg = "HTTP/1.0 400 Bad Request\r\n\r\n";
  2307. goto err;
  2308. }
  2309. tor_assert(command);
  2310. tor_assert(addrport);
  2311. if (strcasecmp(command, "connect")) {
  2312. errmsg = "HTTP/1.0 405 Method Not Allowed\r\n\r\n";
  2313. goto err;
  2314. }
  2315. tor_assert(conn->socks_request);
  2316. socks_request_t *socks = conn->socks_request;
  2317. uint16_t port;
  2318. if (tor_addr_port_split(LOG_WARN, addrport, &addr, &port) < 0) {
  2319. errmsg = "HTTP/1.0 400 Bad Request\r\n\r\n";
  2320. goto err;
  2321. }
  2322. if (strlen(addr) >= MAX_SOCKS_ADDR_LEN) {
  2323. errmsg = "HTTP/1.0 414 Request-URI Too Long\r\n\r\n";
  2324. goto err;
  2325. }
  2326. /* Abuse the 'username' and 'password' fields here. They are already an
  2327. * abuse. */
  2328. {
  2329. char *authorization = http_get_header(headers, "Proxy-Authorization: ");
  2330. if (authorization) {
  2331. socks->username = authorization; // steal reference
  2332. socks->usernamelen = strlen(authorization);
  2333. }
  2334. char *isolation = http_get_header(headers, "X-Tor-Stream-Isolation: ");
  2335. if (isolation) {
  2336. socks->password = isolation; // steal reference
  2337. socks->passwordlen = strlen(isolation);
  2338. }
  2339. }
  2340. socks->command = SOCKS_COMMAND_CONNECT;
  2341. socks->listener_type = CONN_TYPE_AP_HTTP_CONNECT_LISTENER;
  2342. strlcpy(socks->address, addr, sizeof(socks->address));
  2343. socks->port = port;
  2344. control_event_stream_status(conn, STREAM_EVENT_NEW, 0);
  2345. rv = connection_ap_rewrite_and_attach_if_allowed(conn, NULL, NULL);
  2346. // XXXX send a "100 Continue" message?
  2347. goto done;
  2348. err:
  2349. if (BUG(errmsg == NULL))
  2350. errmsg = "HTTP/1.0 400 Bad Request\r\n\r\n";
  2351. log_warn(LD_EDGE, "Saying %s", escaped(errmsg));
  2352. connection_buf_add(errmsg, strlen(errmsg), ENTRY_TO_CONN(conn));
  2353. connection_mark_unattached_ap(conn,
  2354. END_STREAM_REASON_HTTPPROTOCOL|
  2355. END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED);
  2356. done:
  2357. tor_free(headers);
  2358. tor_free(body);
  2359. tor_free(command);
  2360. tor_free(addrport);
  2361. tor_free(addr);
  2362. return rv;
  2363. }
  2364. /** Iterate over the two bytes of stream_id until we get one that is not
  2365. * already in use; return it. Return 0 if can't get a unique stream_id.
  2366. */
  2367. streamid_t
  2368. get_unique_stream_id_by_circ(origin_circuit_t *circ)
  2369. {
  2370. edge_connection_t *tmpconn;
  2371. streamid_t test_stream_id;
  2372. uint32_t attempts=0;
  2373. again:
  2374. test_stream_id = circ->next_stream_id++;
  2375. if (++attempts > 1<<16) {
  2376. /* Make sure we don't loop forever if all stream_id's are used. */
  2377. log_warn(LD_APP,"No unused stream IDs. Failing.");
  2378. return 0;
  2379. }
  2380. if (test_stream_id == 0)
  2381. goto again;
  2382. for (tmpconn = circ->p_streams; tmpconn; tmpconn=tmpconn->next_stream)
  2383. if (tmpconn->stream_id == test_stream_id)
  2384. goto again;
  2385. return test_stream_id;
  2386. }
  2387. /** Return true iff <b>conn</b> is linked to a circuit and configured to use
  2388. * an exit that supports optimistic data. */
  2389. static int
  2390. connection_ap_supports_optimistic_data(const entry_connection_t *conn)
  2391. {
  2392. const edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(conn);
  2393. /* We can only send optimistic data if we're connected to an open
  2394. general circuit. */
  2395. if (edge_conn->on_circuit == NULL ||
  2396. edge_conn->on_circuit->state != CIRCUIT_STATE_OPEN ||
  2397. (edge_conn->on_circuit->purpose != CIRCUIT_PURPOSE_C_GENERAL &&
  2398. edge_conn->on_circuit->purpose != CIRCUIT_PURPOSE_C_HSDIR_GET &&
  2399. edge_conn->on_circuit->purpose != CIRCUIT_PURPOSE_S_HSDIR_POST &&
  2400. edge_conn->on_circuit->purpose != CIRCUIT_PURPOSE_C_REND_JOINED))
  2401. return 0;
  2402. return conn->may_use_optimistic_data;
  2403. }
  2404. /** Return a bitmask of BEGIN_FLAG_* flags that we should transmit in the
  2405. * RELAY_BEGIN cell for <b>ap_conn</b>. */
  2406. static uint32_t
  2407. connection_ap_get_begincell_flags(entry_connection_t *ap_conn)
  2408. {
  2409. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(ap_conn);
  2410. const node_t *exitnode = NULL;
  2411. const crypt_path_t *cpath_layer = edge_conn->cpath_layer;
  2412. uint32_t flags = 0;
  2413. /* No flags for begindir */
  2414. if (ap_conn->use_begindir)
  2415. return 0;
  2416. /* No flags for hidden services. */
  2417. if (edge_conn->on_circuit->purpose != CIRCUIT_PURPOSE_C_GENERAL)
  2418. return 0;
  2419. /* If only IPv4 is supported, no flags */
  2420. if (ap_conn->entry_cfg.ipv4_traffic && !ap_conn->entry_cfg.ipv6_traffic)
  2421. return 0;
  2422. if (! cpath_layer ||
  2423. ! cpath_layer->extend_info)
  2424. return 0;
  2425. if (!ap_conn->entry_cfg.ipv4_traffic)
  2426. flags |= BEGIN_FLAG_IPV4_NOT_OK;
  2427. exitnode = node_get_by_id(cpath_layer->extend_info->identity_digest);
  2428. if (ap_conn->entry_cfg.ipv6_traffic && exitnode) {
  2429. tor_addr_t a;
  2430. tor_addr_make_null(&a, AF_INET6);
  2431. if (compare_tor_addr_to_node_policy(&a, ap_conn->socks_request->port,
  2432. exitnode)
  2433. != ADDR_POLICY_REJECTED) {
  2434. /* Only say "IPv6 OK" if the exit node supports IPv6. Otherwise there's
  2435. * no point. */
  2436. flags |= BEGIN_FLAG_IPV6_OK;
  2437. }
  2438. }
  2439. if (flags == BEGIN_FLAG_IPV6_OK) {
  2440. /* When IPv4 and IPv6 are both allowed, consider whether to say we
  2441. * prefer IPv6. Otherwise there's no point in declaring a preference */
  2442. if (ap_conn->entry_cfg.prefer_ipv6)
  2443. flags |= BEGIN_FLAG_IPV6_PREFERRED;
  2444. }
  2445. if (flags == BEGIN_FLAG_IPV4_NOT_OK) {
  2446. log_warn(LD_EDGE, "I'm about to ask a node for a connection that I "
  2447. "am telling it to fulfil with neither IPv4 nor IPv6. That's "
  2448. "not going to work. Did you perhaps ask for an IPv6 address "
  2449. "on an IPv4Only port, or vice versa?");
  2450. }
  2451. return flags;
  2452. }
  2453. /** Write a relay begin cell, using destaddr and destport from ap_conn's
  2454. * socks_request field, and send it down circ.
  2455. *
  2456. * If ap_conn is broken, mark it for close and return -1. Else return 0.
  2457. */
  2458. MOCK_IMPL(int,
  2459. connection_ap_handshake_send_begin,(entry_connection_t *ap_conn))
  2460. {
  2461. char payload[CELL_PAYLOAD_SIZE];
  2462. int payload_len;
  2463. int begin_type;
  2464. const or_options_t *options = get_options();
  2465. origin_circuit_t *circ;
  2466. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(ap_conn);
  2467. connection_t *base_conn = TO_CONN(edge_conn);
  2468. tor_assert(edge_conn->on_circuit);
  2469. circ = TO_ORIGIN_CIRCUIT(edge_conn->on_circuit);
  2470. tor_assert(base_conn->type == CONN_TYPE_AP);
  2471. tor_assert(base_conn->state == AP_CONN_STATE_CIRCUIT_WAIT);
  2472. tor_assert(ap_conn->socks_request);
  2473. tor_assert(SOCKS_COMMAND_IS_CONNECT(ap_conn->socks_request->command));
  2474. edge_conn->stream_id = get_unique_stream_id_by_circ(circ);
  2475. if (edge_conn->stream_id==0) {
  2476. /* XXXX+ Instead of closing this stream, we should make it get
  2477. * retried on another circuit. */
  2478. connection_mark_unattached_ap(ap_conn, END_STREAM_REASON_INTERNAL);
  2479. /* Mark this circuit "unusable for new streams". */
  2480. mark_circuit_unusable_for_new_conns(circ);
  2481. return -1;
  2482. }
  2483. /* Set up begin cell flags. */
  2484. edge_conn->begincell_flags = connection_ap_get_begincell_flags(ap_conn);
  2485. tor_snprintf(payload,RELAY_PAYLOAD_SIZE, "%s:%d",
  2486. (circ->base_.purpose == CIRCUIT_PURPOSE_C_GENERAL) ?
  2487. ap_conn->socks_request->address : "",
  2488. ap_conn->socks_request->port);
  2489. payload_len = (int)strlen(payload)+1;
  2490. if (payload_len <= RELAY_PAYLOAD_SIZE - 4 && edge_conn->begincell_flags) {
  2491. set_uint32(payload + payload_len, htonl(edge_conn->begincell_flags));
  2492. payload_len += 4;
  2493. }
  2494. log_info(LD_APP,
  2495. "Sending relay cell %d on circ %u to begin stream %d.",
  2496. (int)ap_conn->use_begindir,
  2497. (unsigned)circ->base_.n_circ_id,
  2498. edge_conn->stream_id);
  2499. begin_type = ap_conn->use_begindir ?
  2500. RELAY_COMMAND_BEGIN_DIR : RELAY_COMMAND_BEGIN;
  2501. /* Check that circuits are anonymised, based on their type. */
  2502. if (begin_type == RELAY_COMMAND_BEGIN) {
  2503. /* This connection is a standard OR connection.
  2504. * Make sure its path length is anonymous, or that we're in a
  2505. * non-anonymous mode. */
  2506. assert_circ_anonymity_ok(circ, options);
  2507. } else if (begin_type == RELAY_COMMAND_BEGIN_DIR) {
  2508. /* This connection is a begindir directory connection.
  2509. * Look at the linked directory connection to access the directory purpose.
  2510. * If a BEGINDIR connection is ever not linked, that's a bug. */
  2511. if (BUG(!base_conn->linked)) {
  2512. return -1;
  2513. }
  2514. connection_t *linked_dir_conn_base = base_conn->linked_conn;
  2515. /* If the linked connection has been unlinked by other code, we can't send
  2516. * a begin cell on it. */
  2517. if (!linked_dir_conn_base) {
  2518. return -1;
  2519. }
  2520. /* Sensitive directory connections must have an anonymous path length.
  2521. * Otherwise, directory connections are typically one-hop.
  2522. * This matches the earlier check for directory connection path anonymity
  2523. * in directory_initiate_request(). */
  2524. if (purpose_needs_anonymity(linked_dir_conn_base->purpose,
  2525. TO_DIR_CONN(linked_dir_conn_base)->router_purpose,
  2526. TO_DIR_CONN(linked_dir_conn_base)->requested_resource)) {
  2527. assert_circ_anonymity_ok(circ, options);
  2528. }
  2529. } else {
  2530. /* This code was written for the two connection types BEGIN and BEGIN_DIR
  2531. */
  2532. tor_assert_unreached();
  2533. }
  2534. if (connection_edge_send_command(edge_conn, begin_type,
  2535. begin_type == RELAY_COMMAND_BEGIN ? payload : NULL,
  2536. begin_type == RELAY_COMMAND_BEGIN ? payload_len : 0) < 0)
  2537. return -1; /* circuit is closed, don't continue */
  2538. edge_conn->package_window = STREAMWINDOW_START;
  2539. edge_conn->deliver_window = STREAMWINDOW_START;
  2540. base_conn->state = AP_CONN_STATE_CONNECT_WAIT;
  2541. log_info(LD_APP,"Address/port sent, ap socket "TOR_SOCKET_T_FORMAT
  2542. ", n_circ_id %u",
  2543. base_conn->s, (unsigned)circ->base_.n_circ_id);
  2544. control_event_stream_status(ap_conn, STREAM_EVENT_SENT_CONNECT, 0);
  2545. /* If there's queued-up data, send it now */
  2546. if ((connection_get_inbuf_len(base_conn) ||
  2547. ap_conn->sending_optimistic_data) &&
  2548. connection_ap_supports_optimistic_data(ap_conn)) {
  2549. log_info(LD_APP, "Sending up to %ld + %ld bytes of queued-up data",
  2550. (long)connection_get_inbuf_len(base_conn),
  2551. ap_conn->sending_optimistic_data ?
  2552. (long)buf_datalen(ap_conn->sending_optimistic_data) : 0);
  2553. if (connection_edge_package_raw_inbuf(edge_conn, 1, NULL) < 0) {
  2554. connection_mark_for_close(base_conn);
  2555. }
  2556. }
  2557. return 0;
  2558. }
  2559. /** Write a relay resolve cell, using destaddr and destport from ap_conn's
  2560. * socks_request field, and send it down circ.
  2561. *
  2562. * If ap_conn is broken, mark it for close and return -1. Else return 0.
  2563. */
  2564. int
  2565. connection_ap_handshake_send_resolve(entry_connection_t *ap_conn)
  2566. {
  2567. int payload_len, command;
  2568. const char *string_addr;
  2569. char inaddr_buf[REVERSE_LOOKUP_NAME_BUF_LEN];
  2570. origin_circuit_t *circ;
  2571. edge_connection_t *edge_conn = ENTRY_TO_EDGE_CONN(ap_conn);
  2572. connection_t *base_conn = TO_CONN(edge_conn);
  2573. tor_assert(edge_conn->on_circuit);
  2574. circ = TO_ORIGIN_CIRCUIT(edge_conn->on_circuit);
  2575. tor_assert(base_conn->type == CONN_TYPE_AP);
  2576. tor_assert(base_conn->state == AP_CONN_STATE_CIRCUIT_WAIT);
  2577. tor_assert(ap_conn->socks_request);
  2578. tor_assert(circ->base_.purpose == CIRCUIT_PURPOSE_C_GENERAL);
  2579. command = ap_conn->socks_request->command;
  2580. tor_assert(SOCKS_COMMAND_IS_RESOLVE(command));
  2581. edge_conn->stream_id = get_unique_stream_id_by_circ(circ);
  2582. if (edge_conn->stream_id==0) {
  2583. /* XXXX+ Instead of closing this stream, we should make it get
  2584. * retried on another circuit. */
  2585. connection_mark_unattached_ap(ap_conn, END_STREAM_REASON_INTERNAL);
  2586. /* Mark this circuit "unusable for new streams". */
  2587. mark_circuit_unusable_for_new_conns(circ);
  2588. return -1;
  2589. }
  2590. if (command == SOCKS_COMMAND_RESOLVE) {
  2591. string_addr = ap_conn->socks_request->address;
  2592. payload_len = (int)strlen(string_addr)+1;
  2593. } else {
  2594. /* command == SOCKS_COMMAND_RESOLVE_PTR */
  2595. const char *a = ap_conn->socks_request->address;
  2596. tor_addr_t addr;
  2597. int r;
  2598. /* We're doing a reverse lookup. The input could be an IP address, or
  2599. * could be an .in-addr.arpa or .ip6.arpa address */
  2600. r = tor_addr_parse_PTR_name(&addr, a, AF_UNSPEC, 1);
  2601. if (r <= 0) {
  2602. log_warn(LD_APP, "Rejecting ill-formed reverse lookup of %s",
  2603. safe_str_client(a));
  2604. connection_mark_unattached_ap(ap_conn, END_STREAM_REASON_INTERNAL);
  2605. return -1;
  2606. }
  2607. r = tor_addr_to_PTR_name(inaddr_buf, sizeof(inaddr_buf), &addr);
  2608. if (r < 0) {
  2609. log_warn(LD_BUG, "Couldn't generate reverse lookup hostname of %s",
  2610. safe_str_client(a));
  2611. connection_mark_unattached_ap(ap_conn, END_STREAM_REASON_INTERNAL);
  2612. return -1;
  2613. }
  2614. string_addr = inaddr_buf;
  2615. payload_len = (int)strlen(inaddr_buf)+1;
  2616. tor_assert(payload_len <= (int)sizeof(inaddr_buf));
  2617. }
  2618. log_debug(LD_APP,
  2619. "Sending relay cell to begin stream %d.", edge_conn->stream_id);
  2620. if (connection_edge_send_command(edge_conn,
  2621. RELAY_COMMAND_RESOLVE,
  2622. string_addr, payload_len) < 0)
  2623. return -1; /* circuit is closed, don't continue */
  2624. if (!base_conn->address) {
  2625. /* This might be unnecessary. XXXX */
  2626. base_conn->address = tor_addr_to_str_dup(&base_conn->addr);
  2627. }
  2628. base_conn->state = AP_CONN_STATE_RESOLVE_WAIT;
  2629. log_info(LD_APP,"Address sent for resolve, ap socket "TOR_SOCKET_T_FORMAT
  2630. ", n_circ_id %u",
  2631. base_conn->s, (unsigned)circ->base_.n_circ_id);
  2632. control_event_stream_status(ap_conn, STREAM_EVENT_SENT_RESOLVE, 0);
  2633. return 0;
  2634. }
  2635. /** Make an AP connection_t linked to the connection_t <b>partner</b>. make a
  2636. * new linked connection pair, and attach one side to the conn, connection_add
  2637. * it, initialize it to circuit_wait, and call
  2638. * connection_ap_handshake_attach_circuit(conn) on it.
  2639. *
  2640. * Return the newly created end of the linked connection pair, or -1 if error.
  2641. */
  2642. entry_connection_t *
  2643. connection_ap_make_link(connection_t *partner,
  2644. char *address, uint16_t port,
  2645. const char *digest,
  2646. int session_group, int isolation_flags,
  2647. int use_begindir, int want_onehop)
  2648. {
  2649. entry_connection_t *conn;
  2650. connection_t *base_conn;
  2651. log_info(LD_APP,"Making internal %s tunnel to %s:%d ...",
  2652. want_onehop ? "direct" : "anonymized",
  2653. safe_str_client(address), port);
  2654. conn = entry_connection_new(CONN_TYPE_AP, tor_addr_family(&partner->addr));
  2655. base_conn = ENTRY_TO_CONN(conn);
  2656. base_conn->linked = 1; /* so that we can add it safely below. */
  2657. /* populate conn->socks_request */
  2658. /* leave version at zero, so the socks_reply is empty */
  2659. conn->socks_request->socks_version = 0;
  2660. conn->socks_request->has_finished = 0; /* waiting for 'connected' */
  2661. strlcpy(conn->socks_request->address, address,
  2662. sizeof(conn->socks_request->address));
  2663. conn->socks_request->port = port;
  2664. conn->socks_request->command = SOCKS_COMMAND_CONNECT;
  2665. conn->want_onehop = want_onehop;
  2666. conn->use_begindir = use_begindir;
  2667. if (use_begindir) {
  2668. conn->chosen_exit_name = tor_malloc(HEX_DIGEST_LEN+2);
  2669. conn->chosen_exit_name[0] = '$';
  2670. tor_assert(digest);
  2671. base16_encode(conn->chosen_exit_name+1,HEX_DIGEST_LEN+1,
  2672. digest, DIGEST_LEN);
  2673. }
  2674. /* Populate isolation fields. */
  2675. conn->socks_request->listener_type = CONN_TYPE_DIR_LISTENER;
  2676. conn->original_dest_address = tor_strdup(address);
  2677. conn->entry_cfg.session_group = session_group;
  2678. conn->entry_cfg.isolation_flags = isolation_flags;
  2679. base_conn->address = tor_strdup("(Tor_internal)");
  2680. tor_addr_make_unspec(&base_conn->addr);
  2681. base_conn->port = 0;
  2682. connection_link_connections(partner, base_conn);
  2683. if (connection_add(base_conn) < 0) { /* no space, forget it */
  2684. connection_free(base_conn);
  2685. return NULL;
  2686. }
  2687. base_conn->state = AP_CONN_STATE_CIRCUIT_WAIT;
  2688. control_event_stream_status(conn, STREAM_EVENT_NEW, 0);
  2689. /* attaching to a dirty circuit is fine */
  2690. connection_ap_mark_as_pending_circuit(conn);
  2691. log_info(LD_APP,"... application connection created and linked.");
  2692. return conn;
  2693. }
  2694. /** Notify any interested controller connections about a new hostname resolve
  2695. * or resolve error. Takes the same arguments as does
  2696. * connection_ap_handshake_socks_resolved(). */
  2697. static void
  2698. tell_controller_about_resolved_result(entry_connection_t *conn,
  2699. int answer_type,
  2700. size_t answer_len,
  2701. const char *answer,
  2702. int ttl,
  2703. time_t expires)
  2704. {
  2705. expires = time(NULL) + ttl;
  2706. if (answer_type == RESOLVED_TYPE_IPV4 && answer_len >= 4) {
  2707. char *cp = tor_dup_ip(ntohl(get_uint32(answer)));
  2708. control_event_address_mapped(conn->socks_request->address,
  2709. cp, expires, NULL, 0);
  2710. tor_free(cp);
  2711. } else if (answer_type == RESOLVED_TYPE_HOSTNAME && answer_len < 256) {
  2712. char *cp = tor_strndup(answer, answer_len);
  2713. control_event_address_mapped(conn->socks_request->address,
  2714. cp, expires, NULL, 0);
  2715. tor_free(cp);
  2716. } else {
  2717. control_event_address_mapped(conn->socks_request->address,
  2718. "<error>", time(NULL)+ttl,
  2719. "error=yes", 0);
  2720. }
  2721. }
  2722. /**
  2723. * As connection_ap_handshake_socks_resolved, but take a tor_addr_t to send
  2724. * as the answer.
  2725. */
  2726. void
  2727. connection_ap_handshake_socks_resolved_addr(entry_connection_t *conn,
  2728. const tor_addr_t *answer,
  2729. int ttl,
  2730. time_t expires)
  2731. {
  2732. if (tor_addr_family(answer) == AF_INET) {
  2733. uint32_t a = tor_addr_to_ipv4n(answer); /* network order */
  2734. connection_ap_handshake_socks_resolved(conn,RESOLVED_TYPE_IPV4,4,
  2735. (uint8_t*)&a,
  2736. ttl, expires);
  2737. } else if (tor_addr_family(answer) == AF_INET6) {
  2738. const uint8_t *a = tor_addr_to_in6_addr8(answer);
  2739. connection_ap_handshake_socks_resolved(conn,RESOLVED_TYPE_IPV6,16,
  2740. a,
  2741. ttl, expires);
  2742. } else {
  2743. log_warn(LD_BUG, "Got called with address of unexpected family %d",
  2744. tor_addr_family(answer));
  2745. connection_ap_handshake_socks_resolved(conn,
  2746. RESOLVED_TYPE_ERROR,0,NULL,-1,-1);
  2747. }
  2748. }
  2749. /** Send an answer to an AP connection that has requested a DNS lookup via
  2750. * SOCKS. The type should be one of RESOLVED_TYPE_(IPV4|IPV6|HOSTNAME) or -1
  2751. * for unreachable; the answer should be in the format specified in the socks
  2752. * extensions document. <b>ttl</b> is the ttl for the answer, or -1 on
  2753. * certain errors or for values that didn't come via DNS. <b>expires</b> is
  2754. * a time when the answer expires, or -1 or TIME_MAX if there's a good TTL.
  2755. **/
  2756. /* XXXX the use of the ttl and expires fields is nutty. Let's make this
  2757. * interface and those that use it less ugly. */
  2758. MOCK_IMPL(void,
  2759. connection_ap_handshake_socks_resolved,(entry_connection_t *conn,
  2760. int answer_type,
  2761. size_t answer_len,
  2762. const uint8_t *answer,
  2763. int ttl,
  2764. time_t expires))
  2765. {
  2766. char buf[384];
  2767. size_t replylen;
  2768. if (ttl >= 0) {
  2769. if (answer_type == RESOLVED_TYPE_IPV4 && answer_len == 4) {
  2770. tor_addr_t a;
  2771. tor_addr_from_ipv4n(&a, get_uint32(answer));
  2772. if (! tor_addr_is_null(&a)) {
  2773. client_dns_set_addressmap(conn,
  2774. conn->socks_request->address, &a,
  2775. conn->chosen_exit_name, ttl);
  2776. }
  2777. } else if (answer_type == RESOLVED_TYPE_IPV6 && answer_len == 16) {
  2778. tor_addr_t a;
  2779. tor_addr_from_ipv6_bytes(&a, (char*)answer);
  2780. if (! tor_addr_is_null(&a)) {
  2781. client_dns_set_addressmap(conn,
  2782. conn->socks_request->address, &a,
  2783. conn->chosen_exit_name, ttl);
  2784. }
  2785. } else if (answer_type == RESOLVED_TYPE_HOSTNAME && answer_len < 256) {
  2786. char *cp = tor_strndup((char*)answer, answer_len);
  2787. client_dns_set_reverse_addressmap(conn,
  2788. conn->socks_request->address,
  2789. cp,
  2790. conn->chosen_exit_name, ttl);
  2791. tor_free(cp);
  2792. }
  2793. }
  2794. if (ENTRY_TO_EDGE_CONN(conn)->is_dns_request) {
  2795. if (conn->dns_server_request) {
  2796. /* We had a request on our DNS port: answer it. */
  2797. dnsserv_resolved(conn, answer_type, answer_len, (char*)answer, ttl);
  2798. conn->socks_request->has_finished = 1;
  2799. return;
  2800. } else {
  2801. /* This must be a request from the controller. Since answers to those
  2802. * requests are not cached, they do not generate an ADDRMAP event on
  2803. * their own. */
  2804. tell_controller_about_resolved_result(conn, answer_type, answer_len,
  2805. (char*)answer, ttl, expires);
  2806. conn->socks_request->has_finished = 1;
  2807. return;
  2808. }
  2809. /* We shouldn't need to free conn here; it gets marked by the caller. */
  2810. }
  2811. if (conn->socks_request->socks_version == 4) {
  2812. buf[0] = 0x00; /* version */
  2813. if (answer_type == RESOLVED_TYPE_IPV4 && answer_len == 4) {
  2814. buf[1] = SOCKS4_GRANTED;
  2815. set_uint16(buf+2, 0);
  2816. memcpy(buf+4, answer, 4); /* address */
  2817. replylen = SOCKS4_NETWORK_LEN;
  2818. } else { /* "error" */
  2819. buf[1] = SOCKS4_REJECT;
  2820. memset(buf+2, 0, 6);
  2821. replylen = SOCKS4_NETWORK_LEN;
  2822. }
  2823. } else if (conn->socks_request->socks_version == 5) {
  2824. /* SOCKS5 */
  2825. buf[0] = 0x05; /* version */
  2826. if (answer_type == RESOLVED_TYPE_IPV4 && answer_len == 4) {
  2827. buf[1] = SOCKS5_SUCCEEDED;
  2828. buf[2] = 0; /* reserved */
  2829. buf[3] = 0x01; /* IPv4 address type */
  2830. memcpy(buf+4, answer, 4); /* address */
  2831. set_uint16(buf+8, 0); /* port == 0. */
  2832. replylen = 10;
  2833. } else if (answer_type == RESOLVED_TYPE_IPV6 && answer_len == 16) {
  2834. buf[1] = SOCKS5_SUCCEEDED;
  2835. buf[2] = 0; /* reserved */
  2836. buf[3] = 0x04; /* IPv6 address type */
  2837. memcpy(buf+4, answer, 16); /* address */
  2838. set_uint16(buf+20, 0); /* port == 0. */
  2839. replylen = 22;
  2840. } else if (answer_type == RESOLVED_TYPE_HOSTNAME && answer_len < 256) {
  2841. buf[1] = SOCKS5_SUCCEEDED;
  2842. buf[2] = 0; /* reserved */
  2843. buf[3] = 0x03; /* Domainname address type */
  2844. buf[4] = (char)answer_len;
  2845. memcpy(buf+5, answer, answer_len); /* address */
  2846. set_uint16(buf+5+answer_len, 0); /* port == 0. */
  2847. replylen = 5+answer_len+2;
  2848. } else {
  2849. buf[1] = SOCKS5_HOST_UNREACHABLE;
  2850. memset(buf+2, 0, 8);
  2851. replylen = 10;
  2852. }
  2853. } else {
  2854. /* no socks version info; don't send anything back */
  2855. return;
  2856. }
  2857. connection_ap_handshake_socks_reply(conn, buf, replylen,
  2858. (answer_type == RESOLVED_TYPE_IPV4 ||
  2859. answer_type == RESOLVED_TYPE_IPV6 ||
  2860. answer_type == RESOLVED_TYPE_HOSTNAME) ?
  2861. 0 : END_STREAM_REASON_RESOLVEFAILED);
  2862. }
  2863. /** Send a socks reply to stream <b>conn</b>, using the appropriate
  2864. * socks version, etc, and mark <b>conn</b> as completed with SOCKS
  2865. * handshaking.
  2866. *
  2867. * If <b>reply</b> is defined, then write <b>replylen</b> bytes of it to conn
  2868. * and return, else reply based on <b>endreason</b> (one of
  2869. * END_STREAM_REASON_*). If <b>reply</b> is undefined, <b>endreason</b> can't
  2870. * be 0 or REASON_DONE. Send endreason to the controller, if appropriate.
  2871. */
  2872. void
  2873. connection_ap_handshake_socks_reply(entry_connection_t *conn, char *reply,
  2874. size_t replylen, int endreason)
  2875. {
  2876. char buf[256];
  2877. socks5_reply_status_t status =
  2878. stream_end_reason_to_socks5_response(endreason);
  2879. tor_assert(conn->socks_request); /* make sure it's an AP stream */
  2880. if (!SOCKS_COMMAND_IS_RESOLVE(conn->socks_request->command)) {
  2881. control_event_stream_status(conn, status==SOCKS5_SUCCEEDED ?
  2882. STREAM_EVENT_SUCCEEDED : STREAM_EVENT_FAILED,
  2883. endreason);
  2884. }
  2885. /* Flag this stream's circuit as having completed a stream successfully
  2886. * (for path bias) */
  2887. if (status == SOCKS5_SUCCEEDED ||
  2888. endreason == END_STREAM_REASON_RESOLVEFAILED ||
  2889. endreason == END_STREAM_REASON_CONNECTREFUSED ||
  2890. endreason == END_STREAM_REASON_CONNRESET ||
  2891. endreason == END_STREAM_REASON_NOROUTE ||
  2892. endreason == END_STREAM_REASON_RESOURCELIMIT) {
  2893. if (!conn->edge_.on_circuit ||
  2894. !CIRCUIT_IS_ORIGIN(conn->edge_.on_circuit)) {
  2895. if (endreason != END_STREAM_REASON_RESOLVEFAILED) {
  2896. log_info(LD_BUG,
  2897. "No origin circuit for successful SOCKS stream "U64_FORMAT
  2898. ". Reason: %d",
  2899. U64_PRINTF_ARG(ENTRY_TO_CONN(conn)->global_identifier),
  2900. endreason);
  2901. }
  2902. /*
  2903. * Else DNS remaps and failed hidden service lookups can send us
  2904. * here with END_STREAM_REASON_RESOLVEFAILED; ignore it
  2905. *
  2906. * Perhaps we could make the test more precise; we can tell hidden
  2907. * services by conn->edge_.renddata != NULL; anything analogous for
  2908. * the DNS remap case?
  2909. */
  2910. } else {
  2911. // XXX: Hrmm. It looks like optimistic data can't go through this
  2912. // codepath, but someone should probably test it and make sure.
  2913. // We don't want to mark optimistically opened streams as successful.
  2914. pathbias_mark_use_success(TO_ORIGIN_CIRCUIT(conn->edge_.on_circuit));
  2915. }
  2916. }
  2917. if (conn->socks_request->has_finished) {
  2918. log_warn(LD_BUG, "(Harmless.) duplicate calls to "
  2919. "connection_ap_handshake_socks_reply.");
  2920. return;
  2921. }
  2922. if (replylen) { /* we already have a reply in mind */
  2923. connection_buf_add(reply, replylen, ENTRY_TO_CONN(conn));
  2924. conn->socks_request->has_finished = 1;
  2925. return;
  2926. }
  2927. if (conn->socks_request->listener_type ==
  2928. CONN_TYPE_AP_HTTP_CONNECT_LISTENER) {
  2929. const char *response = end_reason_to_http_connect_response_line(endreason);
  2930. if (!response) {
  2931. response = "HTTP/1.0 400 Bad Request\r\n\r\n";
  2932. }
  2933. connection_buf_add(response, strlen(response), ENTRY_TO_CONN(conn));
  2934. } else if (conn->socks_request->socks_version == 4) {
  2935. memset(buf,0,SOCKS4_NETWORK_LEN);
  2936. buf[1] = (status==SOCKS5_SUCCEEDED ? SOCKS4_GRANTED : SOCKS4_REJECT);
  2937. /* leave version, destport, destip zero */
  2938. connection_buf_add(buf, SOCKS4_NETWORK_LEN, ENTRY_TO_CONN(conn));
  2939. } else if (conn->socks_request->socks_version == 5) {
  2940. size_t buf_len;
  2941. memset(buf,0,sizeof(buf));
  2942. if (tor_addr_family(&conn->edge_.base_.addr) == AF_INET) {
  2943. buf[0] = 5; /* version 5 */
  2944. buf[1] = (char)status;
  2945. buf[2] = 0;
  2946. buf[3] = 1; /* ipv4 addr */
  2947. /* 4 bytes for the header, 2 bytes for the port, 4 for the address. */
  2948. buf_len = 10;
  2949. } else { /* AF_INET6. */
  2950. buf[0] = 5; /* version 5 */
  2951. buf[1] = (char)status;
  2952. buf[2] = 0;
  2953. buf[3] = 4; /* ipv6 addr */
  2954. /* 4 bytes for the header, 2 bytes for the port, 16 for the address. */
  2955. buf_len = 22;
  2956. }
  2957. connection_buf_add(buf,buf_len,ENTRY_TO_CONN(conn));
  2958. }
  2959. /* If socks_version isn't 4 or 5, don't send anything.
  2960. * This can happen in the case of AP bridges. */
  2961. conn->socks_request->has_finished = 1;
  2962. return;
  2963. }
  2964. /** Read a RELAY_BEGIN or RELAY_BEGIN_DIR cell from <b>cell</b>, decode it, and
  2965. * place the result in <b>bcell</b>. On success return 0; on failure return
  2966. * <0 and set *<b>end_reason_out</b> to the end reason we should send back to
  2967. * the client.
  2968. *
  2969. * Return -1 in the case where we want to send a RELAY_END cell, and < -1 when
  2970. * we don't.
  2971. **/
  2972. STATIC int
  2973. begin_cell_parse(const cell_t *cell, begin_cell_t *bcell,
  2974. uint8_t *end_reason_out)
  2975. {
  2976. relay_header_t rh;
  2977. const uint8_t *body, *nul;
  2978. memset(bcell, 0, sizeof(*bcell));
  2979. *end_reason_out = END_STREAM_REASON_MISC;
  2980. relay_header_unpack(&rh, cell->payload);
  2981. if (rh.length > RELAY_PAYLOAD_SIZE) {
  2982. return -2; /*XXXX why not TORPROTOCOL? */
  2983. }
  2984. bcell->stream_id = rh.stream_id;
  2985. if (rh.command == RELAY_COMMAND_BEGIN_DIR) {
  2986. bcell->is_begindir = 1;
  2987. return 0;
  2988. } else if (rh.command != RELAY_COMMAND_BEGIN) {
  2989. log_warn(LD_BUG, "Got an unexpected command %d", (int)rh.command);
  2990. *end_reason_out = END_STREAM_REASON_INTERNAL;
  2991. return -1;
  2992. }
  2993. body = cell->payload + RELAY_HEADER_SIZE;
  2994. nul = memchr(body, 0, rh.length);
  2995. if (! nul) {
  2996. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2997. "Relay begin cell has no \\0. Closing.");
  2998. *end_reason_out = END_STREAM_REASON_TORPROTOCOL;
  2999. return -1;
  3000. }
  3001. if (tor_addr_port_split(LOG_PROTOCOL_WARN,
  3002. (char*)(body),
  3003. &bcell->address,&bcell->port)<0) {
  3004. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  3005. "Unable to parse addr:port in relay begin cell. Closing.");
  3006. *end_reason_out = END_STREAM_REASON_TORPROTOCOL;
  3007. return -1;
  3008. }
  3009. if (bcell->port == 0) {
  3010. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  3011. "Missing port in relay begin cell. Closing.");
  3012. tor_free(bcell->address);
  3013. *end_reason_out = END_STREAM_REASON_TORPROTOCOL;
  3014. return -1;
  3015. }
  3016. if (body + rh.length >= nul + 4)
  3017. bcell->flags = ntohl(get_uint32(nul+1));
  3018. return 0;
  3019. }
  3020. /** For the given <b>circ</b> and the edge connection <b>conn</b>, setup the
  3021. * connection, attach it to the circ and connect it. Return 0 on success
  3022. * or END_CIRC_AT_ORIGIN if we can't find the requested hidden service port
  3023. * where the caller should close the circuit. */
  3024. static int
  3025. handle_hs_exit_conn(circuit_t *circ, edge_connection_t *conn)
  3026. {
  3027. int ret;
  3028. origin_circuit_t *origin_circ;
  3029. assert_circuit_ok(circ);
  3030. tor_assert(circ->purpose == CIRCUIT_PURPOSE_S_REND_JOINED);
  3031. tor_assert(conn);
  3032. log_debug(LD_REND, "Connecting the hidden service rendezvous circuit "
  3033. "to the service destination.");
  3034. origin_circ = TO_ORIGIN_CIRCUIT(circ);
  3035. conn->base_.address = tor_strdup("(rendezvous)");
  3036. conn->base_.state = EXIT_CONN_STATE_CONNECTING;
  3037. /* The circuit either has an hs identifier for v3+ or a rend_data for legacy
  3038. * service. */
  3039. if (origin_circ->rend_data) {
  3040. conn->rend_data = rend_data_dup(origin_circ->rend_data);
  3041. tor_assert(connection_edge_is_rendezvous_stream(conn));
  3042. ret = rend_service_set_connection_addr_port(conn, origin_circ);
  3043. } else if (origin_circ->hs_ident) {
  3044. /* Setup the identifier to be the one for the circuit service. */
  3045. conn->hs_ident =
  3046. hs_ident_edge_conn_new(&origin_circ->hs_ident->identity_pk);
  3047. tor_assert(connection_edge_is_rendezvous_stream(conn));
  3048. ret = hs_service_set_conn_addr_port(origin_circ, conn);
  3049. } else {
  3050. /* We should never get here if the circuit's purpose is rendezvous. */
  3051. tor_assert_nonfatal_unreached();
  3052. return -1;
  3053. }
  3054. if (ret < 0) {
  3055. log_info(LD_REND, "Didn't find rendezvous service (addr%s, port %d)",
  3056. fmt_addr(&TO_CONN(conn)->addr), TO_CONN(conn)->port);
  3057. /* Send back reason DONE because we want to make hidden service port
  3058. * scanning harder thus instead of returning that the exit policy
  3059. * didn't match, which makes it obvious that the port is closed,
  3060. * return DONE and kill the circuit. That way, a user (malicious or
  3061. * not) needs one circuit per bad port unless it matches the policy of
  3062. * the hidden service. */
  3063. relay_send_end_cell_from_edge(conn->stream_id, circ,
  3064. END_STREAM_REASON_DONE,
  3065. origin_circ->cpath->prev);
  3066. connection_free_(TO_CONN(conn));
  3067. /* Drop the circuit here since it might be someone deliberately
  3068. * scanning the hidden service ports. Note that this mitigates port
  3069. * scanning by adding more work on the attacker side to successfully
  3070. * scan but does not fully solve it. */
  3071. if (ret < -1) {
  3072. return END_CIRC_AT_ORIGIN;
  3073. } else {
  3074. return 0;
  3075. }
  3076. }
  3077. /* Link the circuit and the connection crypt path. */
  3078. conn->cpath_layer = origin_circ->cpath->prev;
  3079. /* Add it into the linked list of p_streams on this circuit */
  3080. conn->next_stream = origin_circ->p_streams;
  3081. origin_circ->p_streams = conn;
  3082. conn->on_circuit = circ;
  3083. assert_circuit_ok(circ);
  3084. hs_inc_rdv_stream_counter(origin_circ);
  3085. /* Connect tor to the hidden service destination. */
  3086. connection_exit_connect(conn);
  3087. /* For path bias: This circuit was used successfully */
  3088. pathbias_mark_use_success(origin_circ);
  3089. return 0;
  3090. }
  3091. /** A relay 'begin' or 'begin_dir' cell has arrived, and either we are
  3092. * an exit hop for the circuit, or we are the origin and it is a
  3093. * rendezvous begin.
  3094. *
  3095. * Launch a new exit connection and initialize things appropriately.
  3096. *
  3097. * If it's a rendezvous stream, call connection_exit_connect() on
  3098. * it.
  3099. *
  3100. * For general streams, call dns_resolve() on it first, and only call
  3101. * connection_exit_connect() if the dns answer is already known.
  3102. *
  3103. * Note that we don't call connection_add() on the new stream! We wait
  3104. * for connection_exit_connect() to do that.
  3105. *
  3106. * Return -(some circuit end reason) if we want to tear down <b>circ</b>.
  3107. * Else return 0.
  3108. */
  3109. int
  3110. connection_exit_begin_conn(cell_t *cell, circuit_t *circ)
  3111. {
  3112. edge_connection_t *n_stream;
  3113. relay_header_t rh;
  3114. char *address = NULL;
  3115. uint16_t port = 0;
  3116. or_circuit_t *or_circ = NULL;
  3117. origin_circuit_t *origin_circ = NULL;
  3118. crypt_path_t *layer_hint = NULL;
  3119. const or_options_t *options = get_options();
  3120. begin_cell_t bcell;
  3121. int rv;
  3122. uint8_t end_reason=0;
  3123. assert_circuit_ok(circ);
  3124. if (!CIRCUIT_IS_ORIGIN(circ)) {
  3125. or_circ = TO_OR_CIRCUIT(circ);
  3126. } else {
  3127. tor_assert(circ->purpose == CIRCUIT_PURPOSE_S_REND_JOINED);
  3128. origin_circ = TO_ORIGIN_CIRCUIT(circ);
  3129. layer_hint = origin_circ->cpath->prev;
  3130. }
  3131. relay_header_unpack(&rh, cell->payload);
  3132. if (rh.length > RELAY_PAYLOAD_SIZE)
  3133. return -END_CIRC_REASON_TORPROTOCOL;
  3134. if (!server_mode(options) &&
  3135. circ->purpose != CIRCUIT_PURPOSE_S_REND_JOINED) {
  3136. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  3137. "Relay begin cell at non-server. Closing.");
  3138. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3139. END_STREAM_REASON_EXITPOLICY, NULL);
  3140. return 0;
  3141. }
  3142. rv = begin_cell_parse(cell, &bcell, &end_reason);
  3143. if (rv < -1) {
  3144. return -END_CIRC_REASON_TORPROTOCOL;
  3145. } else if (rv == -1) {
  3146. tor_free(bcell.address);
  3147. relay_send_end_cell_from_edge(rh.stream_id, circ, end_reason, layer_hint);
  3148. return 0;
  3149. }
  3150. if (! bcell.is_begindir) {
  3151. /* Steal reference */
  3152. address = bcell.address;
  3153. port = bcell.port;
  3154. if (or_circ && or_circ->p_chan) {
  3155. const int client_chan = channel_is_client(or_circ->p_chan);
  3156. if ((client_chan ||
  3157. (!connection_or_digest_is_known_relay(
  3158. or_circ->p_chan->identity_digest) &&
  3159. should_refuse_unknown_exits(options)))) {
  3160. /* Don't let clients use us as a single-hop proxy. It attracts
  3161. * attackers and users who'd be better off with, well, single-hop
  3162. * proxies. */
  3163. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  3164. "Attempt by %s to open a stream %s. Closing.",
  3165. safe_str(channel_get_canonical_remote_descr(or_circ->p_chan)),
  3166. client_chan ? "on first hop of circuit" :
  3167. "from unknown relay");
  3168. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3169. client_chan ?
  3170. END_STREAM_REASON_TORPROTOCOL :
  3171. END_STREAM_REASON_MISC,
  3172. NULL);
  3173. tor_free(address);
  3174. return 0;
  3175. }
  3176. }
  3177. } else if (rh.command == RELAY_COMMAND_BEGIN_DIR) {
  3178. if (!directory_permits_begindir_requests(options) ||
  3179. circ->purpose != CIRCUIT_PURPOSE_OR) {
  3180. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3181. END_STREAM_REASON_NOTDIRECTORY, layer_hint);
  3182. return 0;
  3183. }
  3184. /* Make sure to get the 'real' address of the previous hop: the
  3185. * caller might want to know whether the remote IP address has changed,
  3186. * and we might already have corrected base_.addr[ess] for the relay's
  3187. * canonical IP address. */
  3188. if (or_circ && or_circ->p_chan)
  3189. address = tor_strdup(channel_get_actual_remote_address(or_circ->p_chan));
  3190. else
  3191. address = tor_strdup("127.0.0.1");
  3192. port = 1; /* XXXX This value is never actually used anywhere, and there
  3193. * isn't "really" a connection here. But we
  3194. * need to set it to something nonzero. */
  3195. } else {
  3196. log_warn(LD_BUG, "Got an unexpected command %d", (int)rh.command);
  3197. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3198. END_STREAM_REASON_INTERNAL, layer_hint);
  3199. return 0;
  3200. }
  3201. if (! options->IPv6Exit) {
  3202. /* I don't care if you prefer IPv6; I can't give you any. */
  3203. bcell.flags &= ~BEGIN_FLAG_IPV6_PREFERRED;
  3204. /* If you don't want IPv4, I can't help. */
  3205. if (bcell.flags & BEGIN_FLAG_IPV4_NOT_OK) {
  3206. tor_free(address);
  3207. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3208. END_STREAM_REASON_EXITPOLICY, layer_hint);
  3209. return 0;
  3210. }
  3211. }
  3212. log_debug(LD_EXIT,"Creating new exit connection.");
  3213. /* The 'AF_INET' here is temporary; we might need to change it later in
  3214. * connection_exit_connect(). */
  3215. n_stream = edge_connection_new(CONN_TYPE_EXIT, AF_INET);
  3216. /* Remember the tunneled request ID in the new edge connection, so that
  3217. * we can measure download times. */
  3218. n_stream->dirreq_id = circ->dirreq_id;
  3219. n_stream->base_.purpose = EXIT_PURPOSE_CONNECT;
  3220. n_stream->begincell_flags = bcell.flags;
  3221. n_stream->stream_id = rh.stream_id;
  3222. n_stream->base_.port = port;
  3223. /* leave n_stream->s at -1, because it's not yet valid */
  3224. n_stream->package_window = STREAMWINDOW_START;
  3225. n_stream->deliver_window = STREAMWINDOW_START;
  3226. if (circ->purpose == CIRCUIT_PURPOSE_S_REND_JOINED) {
  3227. int ret;
  3228. tor_free(address);
  3229. /* We handle this circuit and stream in this function for all supported
  3230. * hidden service version. */
  3231. ret = handle_hs_exit_conn(circ, n_stream);
  3232. if (ret == 0) {
  3233. /* This was a valid cell. Count it as delivered + overhead. */
  3234. circuit_read_valid_data(origin_circ, rh.length);
  3235. }
  3236. return ret;
  3237. }
  3238. tor_strlower(address);
  3239. n_stream->base_.address = address;
  3240. n_stream->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  3241. /* default to failed, change in dns_resolve if it turns out not to fail */
  3242. /* If we're hibernating or shutting down, we refuse to open new streams. */
  3243. if (we_are_hibernating()) {
  3244. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3245. END_STREAM_REASON_HIBERNATING, NULL);
  3246. connection_free_(TO_CONN(n_stream));
  3247. return 0;
  3248. }
  3249. n_stream->on_circuit = circ;
  3250. if (rh.command == RELAY_COMMAND_BEGIN_DIR) {
  3251. tor_addr_t tmp_addr;
  3252. tor_assert(or_circ);
  3253. if (or_circ->p_chan &&
  3254. channel_get_addr_if_possible(or_circ->p_chan, &tmp_addr)) {
  3255. tor_addr_copy(&n_stream->base_.addr, &tmp_addr);
  3256. }
  3257. return connection_exit_connect_dir(n_stream);
  3258. }
  3259. log_debug(LD_EXIT,"about to start the dns_resolve().");
  3260. /* send it off to the gethostbyname farm */
  3261. switch (dns_resolve(n_stream)) {
  3262. case 1: /* resolve worked; now n_stream is attached to circ. */
  3263. assert_circuit_ok(circ);
  3264. log_debug(LD_EXIT,"about to call connection_exit_connect().");
  3265. connection_exit_connect(n_stream);
  3266. return 0;
  3267. case -1: /* resolve failed */
  3268. relay_send_end_cell_from_edge(rh.stream_id, circ,
  3269. END_STREAM_REASON_RESOLVEFAILED, NULL);
  3270. /* n_stream got freed. don't touch it. */
  3271. break;
  3272. case 0: /* resolve added to pending list */
  3273. assert_circuit_ok(circ);
  3274. break;
  3275. }
  3276. return 0;
  3277. }
  3278. /**
  3279. * Called when we receive a RELAY_COMMAND_RESOLVE cell 'cell' along the
  3280. * circuit <b>circ</b>;
  3281. * begin resolving the hostname, and (eventually) reply with a RESOLVED cell.
  3282. */
  3283. int
  3284. connection_exit_begin_resolve(cell_t *cell, or_circuit_t *circ)
  3285. {
  3286. edge_connection_t *dummy_conn;
  3287. relay_header_t rh;
  3288. assert_circuit_ok(TO_CIRCUIT(circ));
  3289. relay_header_unpack(&rh, cell->payload);
  3290. if (rh.length > RELAY_PAYLOAD_SIZE)
  3291. return -1;
  3292. /* This 'dummy_conn' only exists to remember the stream ID
  3293. * associated with the resolve request; and to make the
  3294. * implementation of dns.c more uniform. (We really only need to
  3295. * remember the circuit, the stream ID, and the hostname to be
  3296. * resolved; but if we didn't store them in a connection like this,
  3297. * the housekeeping in dns.c would get way more complicated.)
  3298. */
  3299. dummy_conn = edge_connection_new(CONN_TYPE_EXIT, AF_INET);
  3300. dummy_conn->stream_id = rh.stream_id;
  3301. dummy_conn->base_.address = tor_strndup(
  3302. (char*)cell->payload+RELAY_HEADER_SIZE,
  3303. rh.length);
  3304. dummy_conn->base_.port = 0;
  3305. dummy_conn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  3306. dummy_conn->base_.purpose = EXIT_PURPOSE_RESOLVE;
  3307. dummy_conn->on_circuit = TO_CIRCUIT(circ);
  3308. /* send it off to the gethostbyname farm */
  3309. switch (dns_resolve(dummy_conn)) {
  3310. case -1: /* Impossible to resolve; a resolved cell was sent. */
  3311. /* Connection freed; don't touch it. */
  3312. return 0;
  3313. case 1: /* The result was cached; a resolved cell was sent. */
  3314. if (!dummy_conn->base_.marked_for_close)
  3315. connection_free_(TO_CONN(dummy_conn));
  3316. return 0;
  3317. case 0: /* resolve added to pending list */
  3318. assert_circuit_ok(TO_CIRCUIT(circ));
  3319. break;
  3320. }
  3321. return 0;
  3322. }
  3323. /** Helper: Return true and set *<b>why_rejected</b> to an optional clarifying
  3324. * message message iff we do not allow connections to <b>addr</b>:<b>port</b>.
  3325. */
  3326. static int
  3327. my_exit_policy_rejects(const tor_addr_t *addr,
  3328. uint16_t port,
  3329. const char **why_rejected)
  3330. {
  3331. if (router_compare_to_my_exit_policy(addr, port)) {
  3332. *why_rejected = "";
  3333. return 1;
  3334. } else if (tor_addr_family(addr) == AF_INET6 && !get_options()->IPv6Exit) {
  3335. *why_rejected = " (IPv6 address without IPv6Exit configured)";
  3336. return 1;
  3337. }
  3338. return 0;
  3339. }
  3340. /** Connect to conn's specified addr and port. If it worked, conn
  3341. * has now been added to the connection_array.
  3342. *
  3343. * Send back a connected cell. Include the resolved IP of the destination
  3344. * address, but <em>only</em> if it's a general exit stream. (Rendezvous
  3345. * streams must not reveal what IP they connected to.)
  3346. */
  3347. void
  3348. connection_exit_connect(edge_connection_t *edge_conn)
  3349. {
  3350. const tor_addr_t *addr;
  3351. uint16_t port;
  3352. connection_t *conn = TO_CONN(edge_conn);
  3353. int socket_error = 0, result;
  3354. const char *why_failed_exit_policy = NULL;
  3355. /* Apply exit policy to non-rendezvous connections. */
  3356. if (! connection_edge_is_rendezvous_stream(edge_conn) &&
  3357. my_exit_policy_rejects(&edge_conn->base_.addr,
  3358. edge_conn->base_.port,
  3359. &why_failed_exit_policy)) {
  3360. if (BUG(!why_failed_exit_policy))
  3361. why_failed_exit_policy = "";
  3362. log_info(LD_EXIT,"%s:%d failed exit policy%s. Closing.",
  3363. escaped_safe_str_client(conn->address), conn->port,
  3364. why_failed_exit_policy);
  3365. connection_edge_end(edge_conn, END_STREAM_REASON_EXITPOLICY);
  3366. circuit_detach_stream(circuit_get_by_edge_conn(edge_conn), edge_conn);
  3367. connection_free(conn);
  3368. return;
  3369. }
  3370. #ifdef HAVE_SYS_UN_H
  3371. if (conn->socket_family != AF_UNIX) {
  3372. #else
  3373. {
  3374. #endif /* defined(HAVE_SYS_UN_H) */
  3375. addr = &conn->addr;
  3376. port = conn->port;
  3377. if (tor_addr_family(addr) == AF_INET6)
  3378. conn->socket_family = AF_INET6;
  3379. log_debug(LD_EXIT, "about to try connecting");
  3380. result = connection_connect(conn, conn->address,
  3381. addr, port, &socket_error);
  3382. #ifdef HAVE_SYS_UN_H
  3383. } else {
  3384. /*
  3385. * In the AF_UNIX case, we expect to have already had conn->port = 1,
  3386. * tor_addr_make_unspec(conn->addr) (cf. the way we mark in the incoming
  3387. * case in connection_handle_listener_read()), and conn->address should
  3388. * have the socket path to connect to.
  3389. */
  3390. tor_assert(conn->address && strlen(conn->address) > 0);
  3391. log_debug(LD_EXIT, "about to try connecting");
  3392. result = connection_connect_unix(conn, conn->address, &socket_error);
  3393. #endif /* defined(HAVE_SYS_UN_H) */
  3394. }
  3395. switch (result) {
  3396. case -1: {
  3397. int reason = errno_to_stream_end_reason(socket_error);
  3398. connection_edge_end(edge_conn, reason);
  3399. circuit_detach_stream(circuit_get_by_edge_conn(edge_conn), edge_conn);
  3400. connection_free(conn);
  3401. return;
  3402. }
  3403. case 0:
  3404. conn->state = EXIT_CONN_STATE_CONNECTING;
  3405. connection_watch_events(conn, READ_EVENT | WRITE_EVENT);
  3406. /* writable indicates finish;
  3407. * readable/error indicates broken link in windows-land. */
  3408. return;
  3409. /* case 1: fall through */
  3410. }
  3411. conn->state = EXIT_CONN_STATE_OPEN;
  3412. if (connection_get_outbuf_len(conn)) {
  3413. /* in case there are any queued data cells, from e.g. optimistic data */
  3414. connection_watch_events(conn, READ_EVENT|WRITE_EVENT);
  3415. } else {
  3416. connection_watch_events(conn, READ_EVENT);
  3417. }
  3418. /* also, deliver a 'connected' cell back through the circuit. */
  3419. if (connection_edge_is_rendezvous_stream(edge_conn)) {
  3420. /* don't send an address back! */
  3421. connection_edge_send_command(edge_conn,
  3422. RELAY_COMMAND_CONNECTED,
  3423. NULL, 0);
  3424. } else { /* normal stream */
  3425. uint8_t connected_payload[MAX_CONNECTED_CELL_PAYLOAD_LEN];
  3426. int connected_payload_len =
  3427. connected_cell_format_payload(connected_payload, &conn->addr,
  3428. edge_conn->address_ttl);
  3429. if (connected_payload_len < 0) {
  3430. connection_edge_end(edge_conn, END_STREAM_REASON_INTERNAL);
  3431. circuit_detach_stream(circuit_get_by_edge_conn(edge_conn), edge_conn);
  3432. connection_free(conn);
  3433. return;
  3434. }
  3435. connection_edge_send_command(edge_conn,
  3436. RELAY_COMMAND_CONNECTED,
  3437. (char*)connected_payload,
  3438. connected_payload_len);
  3439. }
  3440. }
  3441. /** Given an exit conn that should attach to us as a directory server, open a
  3442. * bridge connection with a linked connection pair, create a new directory
  3443. * conn, and join them together. Return 0 on success (or if there was an
  3444. * error we could send back an end cell for). Return -(some circuit end
  3445. * reason) if the circuit needs to be torn down. Either connects
  3446. * <b>exitconn</b>, frees it, or marks it, as appropriate.
  3447. */
  3448. static int
  3449. connection_exit_connect_dir(edge_connection_t *exitconn)
  3450. {
  3451. dir_connection_t *dirconn = NULL;
  3452. or_circuit_t *circ = TO_OR_CIRCUIT(exitconn->on_circuit);
  3453. log_info(LD_EXIT, "Opening local connection for anonymized directory exit");
  3454. exitconn->base_.state = EXIT_CONN_STATE_OPEN;
  3455. dirconn = dir_connection_new(tor_addr_family(&exitconn->base_.addr));
  3456. tor_addr_copy(&dirconn->base_.addr, &exitconn->base_.addr);
  3457. dirconn->base_.port = 0;
  3458. dirconn->base_.address = tor_strdup(exitconn->base_.address);
  3459. dirconn->base_.type = CONN_TYPE_DIR;
  3460. dirconn->base_.purpose = DIR_PURPOSE_SERVER;
  3461. dirconn->base_.state = DIR_CONN_STATE_SERVER_COMMAND_WAIT;
  3462. /* Note that the new dir conn belongs to the same tunneled request as
  3463. * the edge conn, so that we can measure download times. */
  3464. dirconn->dirreq_id = exitconn->dirreq_id;
  3465. connection_link_connections(TO_CONN(dirconn), TO_CONN(exitconn));
  3466. if (connection_add(TO_CONN(exitconn))<0) {
  3467. connection_edge_end(exitconn, END_STREAM_REASON_RESOURCELIMIT);
  3468. connection_free_(TO_CONN(exitconn));
  3469. connection_free_(TO_CONN(dirconn));
  3470. return 0;
  3471. }
  3472. /* link exitconn to circ, now that we know we can use it. */
  3473. exitconn->next_stream = circ->n_streams;
  3474. circ->n_streams = exitconn;
  3475. if (connection_add(TO_CONN(dirconn))<0) {
  3476. connection_edge_end(exitconn, END_STREAM_REASON_RESOURCELIMIT);
  3477. connection_close_immediate(TO_CONN(exitconn));
  3478. connection_mark_for_close(TO_CONN(exitconn));
  3479. connection_free_(TO_CONN(dirconn));
  3480. return 0;
  3481. }
  3482. connection_start_reading(TO_CONN(dirconn));
  3483. connection_start_reading(TO_CONN(exitconn));
  3484. if (connection_edge_send_command(exitconn,
  3485. RELAY_COMMAND_CONNECTED, NULL, 0) < 0) {
  3486. connection_mark_for_close(TO_CONN(exitconn));
  3487. connection_mark_for_close(TO_CONN(dirconn));
  3488. return 0;
  3489. }
  3490. return 0;
  3491. }
  3492. /** Return 1 if <b>conn</b> is a rendezvous stream, or 0 if
  3493. * it is a general stream.
  3494. */
  3495. int
  3496. connection_edge_is_rendezvous_stream(const edge_connection_t *conn)
  3497. {
  3498. tor_assert(conn);
  3499. /* It should not be possible to set both of these structs */
  3500. tor_assert_nonfatal(!(conn->rend_data && conn->hs_ident));
  3501. if (conn->rend_data || conn->hs_ident) {
  3502. return 1;
  3503. }
  3504. return 0;
  3505. }
  3506. /** Return 1 if router <b>exit_node</b> is likely to allow stream <b>conn</b>
  3507. * to exit from it, or 0 if it probably will not allow it.
  3508. * (We might be uncertain if conn's destination address has not yet been
  3509. * resolved.)
  3510. */
  3511. int
  3512. connection_ap_can_use_exit(const entry_connection_t *conn,
  3513. const node_t *exit_node)
  3514. {
  3515. const or_options_t *options = get_options();
  3516. tor_assert(conn);
  3517. tor_assert(conn->socks_request);
  3518. tor_assert(exit_node);
  3519. /* If a particular exit node has been requested for the new connection,
  3520. * make sure the exit node of the existing circuit matches exactly.
  3521. */
  3522. if (conn->chosen_exit_name) {
  3523. const node_t *chosen_exit =
  3524. node_get_by_nickname(conn->chosen_exit_name, 0);
  3525. if (!chosen_exit || tor_memneq(chosen_exit->identity,
  3526. exit_node->identity, DIGEST_LEN)) {
  3527. /* doesn't match */
  3528. // log_debug(LD_APP,"Requested node '%s', considering node '%s'. No.",
  3529. // conn->chosen_exit_name, exit->nickname);
  3530. return 0;
  3531. }
  3532. }
  3533. if (conn->use_begindir) {
  3534. /* Internal directory fetches do not count as exiting. */
  3535. return 1;
  3536. }
  3537. if (conn->socks_request->command == SOCKS_COMMAND_CONNECT) {
  3538. tor_addr_t addr, *addrp = NULL;
  3539. addr_policy_result_t r;
  3540. if (0 == tor_addr_parse(&addr, conn->socks_request->address)) {
  3541. addrp = &addr;
  3542. } else if (!conn->entry_cfg.ipv4_traffic && conn->entry_cfg.ipv6_traffic) {
  3543. tor_addr_make_null(&addr, AF_INET6);
  3544. addrp = &addr;
  3545. } else if (conn->entry_cfg.ipv4_traffic && !conn->entry_cfg.ipv6_traffic) {
  3546. tor_addr_make_null(&addr, AF_INET);
  3547. addrp = &addr;
  3548. }
  3549. r = compare_tor_addr_to_node_policy(addrp, conn->socks_request->port,
  3550. exit_node);
  3551. if (r == ADDR_POLICY_REJECTED)
  3552. return 0; /* We know the address, and the exit policy rejects it. */
  3553. if (r == ADDR_POLICY_PROBABLY_REJECTED && !conn->chosen_exit_name)
  3554. return 0; /* We don't know the addr, but the exit policy rejects most
  3555. * addresses with this port. Since the user didn't ask for
  3556. * this node, err on the side of caution. */
  3557. } else if (SOCKS_COMMAND_IS_RESOLVE(conn->socks_request->command)) {
  3558. /* Don't send DNS requests to non-exit servers by default. */
  3559. if (!conn->chosen_exit_name && node_exit_policy_rejects_all(exit_node))
  3560. return 0;
  3561. }
  3562. if (routerset_contains_node(options->ExcludeExitNodesUnion_, exit_node)) {
  3563. /* Not a suitable exit. Refuse it. */
  3564. return 0;
  3565. }
  3566. return 1;
  3567. }
  3568. /** If address is of the form "y.onion" with a well-formed handle y:
  3569. * Put a NUL after y, lower-case it, and return ONION_V2_HOSTNAME or
  3570. * ONION_V3_HOSTNAME depending on the HS version.
  3571. *
  3572. * If address is of the form "x.y.onion" with a well-formed handle x:
  3573. * Drop "x.", put a NUL after y, lower-case it, and return
  3574. * ONION_V2_HOSTNAME or ONION_V3_HOSTNAME depending on the HS version.
  3575. *
  3576. * If address is of the form "y.onion" with a badly-formed handle y:
  3577. * Return BAD_HOSTNAME and log a message.
  3578. *
  3579. * If address is of the form "y.exit":
  3580. * Put a NUL after y and return EXIT_HOSTNAME.
  3581. *
  3582. * Otherwise:
  3583. * Return NORMAL_HOSTNAME and change nothing.
  3584. */
  3585. hostname_type_t
  3586. parse_extended_hostname(char *address)
  3587. {
  3588. char *s;
  3589. char *q;
  3590. char query[HS_SERVICE_ADDR_LEN_BASE32+1];
  3591. s = strrchr(address,'.');
  3592. if (!s)
  3593. return NORMAL_HOSTNAME; /* no dot, thus normal */
  3594. if (!strcmp(s+1,"exit")) {
  3595. *s = 0; /* NUL-terminate it */
  3596. return EXIT_HOSTNAME; /* .exit */
  3597. }
  3598. if (strcmp(s+1,"onion"))
  3599. return NORMAL_HOSTNAME; /* neither .exit nor .onion, thus normal */
  3600. /* so it is .onion */
  3601. *s = 0; /* NUL-terminate it */
  3602. /* locate a 'sub-domain' component, in order to remove it */
  3603. q = strrchr(address, '.');
  3604. if (q == address) {
  3605. goto failed; /* reject sub-domain, as DNS does */
  3606. }
  3607. q = (NULL == q) ? address : q + 1;
  3608. if (strlcpy(query, q, HS_SERVICE_ADDR_LEN_BASE32+1) >=
  3609. HS_SERVICE_ADDR_LEN_BASE32+1)
  3610. goto failed;
  3611. if (q != address) {
  3612. memmove(address, q, strlen(q) + 1 /* also get \0 */);
  3613. }
  3614. if (rend_valid_v2_service_id(query)) {
  3615. return ONION_V2_HOSTNAME; /* success */
  3616. }
  3617. if (hs_address_is_valid(query)) {
  3618. return ONION_V3_HOSTNAME;
  3619. }
  3620. failed:
  3621. /* otherwise, return to previous state and return 0 */
  3622. *s = '.';
  3623. log_warn(LD_APP, "Invalid onion hostname %s; rejecting",
  3624. safe_str_client(address));
  3625. return BAD_HOSTNAME;
  3626. }
  3627. /** Return true iff the (possibly NULL) <b>alen</b>-byte chunk of memory at
  3628. * <b>a</b> is equal to the (possibly NULL) <b>blen</b>-byte chunk of memory
  3629. * at <b>b</b>. */
  3630. static int
  3631. memeq_opt(const char *a, size_t alen, const char *b, size_t blen)
  3632. {
  3633. if (a == NULL) {
  3634. return (b == NULL);
  3635. } else if (b == NULL) {
  3636. return 0;
  3637. } else if (alen != blen) {
  3638. return 0;
  3639. } else {
  3640. return tor_memeq(a, b, alen);
  3641. }
  3642. }
  3643. /**
  3644. * Return true iff none of the isolation flags and fields in <b>conn</b>
  3645. * should prevent it from being attached to <b>circ</b>.
  3646. */
  3647. int
  3648. connection_edge_compatible_with_circuit(const entry_connection_t *conn,
  3649. const origin_circuit_t *circ)
  3650. {
  3651. const uint8_t iso = conn->entry_cfg.isolation_flags;
  3652. const socks_request_t *sr = conn->socks_request;
  3653. /* If circ has never been used for an isolated connection, we can
  3654. * totally use it for this one. */
  3655. if (!circ->isolation_values_set)
  3656. return 1;
  3657. /* If circ has been used for connections having more than one value
  3658. * for some field f, it will have the corresponding bit set in
  3659. * isolation_flags_mixed. If isolation_flags_mixed has any bits
  3660. * in common with iso, then conn must be isolated from at least
  3661. * one stream that has been attached to circ. */
  3662. if ((iso & circ->isolation_flags_mixed) != 0) {
  3663. /* For at least one field where conn is isolated, the circuit
  3664. * already has mixed streams. */
  3665. return 0;
  3666. }
  3667. if (! conn->original_dest_address) {
  3668. log_warn(LD_BUG, "Reached connection_edge_compatible_with_circuit without "
  3669. "having set conn->original_dest_address");
  3670. ((entry_connection_t*)conn)->original_dest_address =
  3671. tor_strdup(conn->socks_request->address);
  3672. }
  3673. if ((iso & ISO_STREAM) &&
  3674. (circ->associated_isolated_stream_global_id !=
  3675. ENTRY_TO_CONN(conn)->global_identifier))
  3676. return 0;
  3677. if ((iso & ISO_DESTPORT) && conn->socks_request->port != circ->dest_port)
  3678. return 0;
  3679. if ((iso & ISO_DESTADDR) &&
  3680. strcasecmp(conn->original_dest_address, circ->dest_address))
  3681. return 0;
  3682. if ((iso & ISO_SOCKSAUTH) &&
  3683. (! memeq_opt(sr->username, sr->usernamelen,
  3684. circ->socks_username, circ->socks_username_len) ||
  3685. ! memeq_opt(sr->password, sr->passwordlen,
  3686. circ->socks_password, circ->socks_password_len)))
  3687. return 0;
  3688. if ((iso & ISO_CLIENTPROTO) &&
  3689. (conn->socks_request->listener_type != circ->client_proto_type ||
  3690. conn->socks_request->socks_version != circ->client_proto_socksver))
  3691. return 0;
  3692. if ((iso & ISO_CLIENTADDR) &&
  3693. !tor_addr_eq(&ENTRY_TO_CONN(conn)->addr, &circ->client_addr))
  3694. return 0;
  3695. if ((iso & ISO_SESSIONGRP) &&
  3696. conn->entry_cfg.session_group != circ->session_group)
  3697. return 0;
  3698. if ((iso & ISO_NYM_EPOCH) && conn->nym_epoch != circ->nym_epoch)
  3699. return 0;
  3700. return 1;
  3701. }
  3702. /**
  3703. * If <b>dry_run</b> is false, update <b>circ</b>'s isolation flags and fields
  3704. * to reflect having had <b>conn</b> attached to it, and return 0. Otherwise,
  3705. * if <b>dry_run</b> is true, then make no changes to <b>circ</b>, and return
  3706. * a bitfield of isolation flags that we would have to set in
  3707. * isolation_flags_mixed to add <b>conn</b> to <b>circ</b>, or -1 if
  3708. * <b>circ</b> has had no streams attached to it.
  3709. */
  3710. int
  3711. connection_edge_update_circuit_isolation(const entry_connection_t *conn,
  3712. origin_circuit_t *circ,
  3713. int dry_run)
  3714. {
  3715. const socks_request_t *sr = conn->socks_request;
  3716. if (! conn->original_dest_address) {
  3717. log_warn(LD_BUG, "Reached connection_update_circuit_isolation without "
  3718. "having set conn->original_dest_address");
  3719. ((entry_connection_t*)conn)->original_dest_address =
  3720. tor_strdup(conn->socks_request->address);
  3721. }
  3722. if (!circ->isolation_values_set) {
  3723. if (dry_run)
  3724. return -1;
  3725. circ->associated_isolated_stream_global_id =
  3726. ENTRY_TO_CONN(conn)->global_identifier;
  3727. circ->dest_port = conn->socks_request->port;
  3728. circ->dest_address = tor_strdup(conn->original_dest_address);
  3729. circ->client_proto_type = conn->socks_request->listener_type;
  3730. circ->client_proto_socksver = conn->socks_request->socks_version;
  3731. tor_addr_copy(&circ->client_addr, &ENTRY_TO_CONN(conn)->addr);
  3732. circ->session_group = conn->entry_cfg.session_group;
  3733. circ->nym_epoch = conn->nym_epoch;
  3734. circ->socks_username = sr->username ?
  3735. tor_memdup(sr->username, sr->usernamelen) : NULL;
  3736. circ->socks_password = sr->password ?
  3737. tor_memdup(sr->password, sr->passwordlen) : NULL;
  3738. circ->socks_username_len = sr->usernamelen;
  3739. circ->socks_password_len = sr->passwordlen;
  3740. circ->isolation_values_set = 1;
  3741. return 0;
  3742. } else {
  3743. uint8_t mixed = 0;
  3744. if (conn->socks_request->port != circ->dest_port)
  3745. mixed |= ISO_DESTPORT;
  3746. if (strcasecmp(conn->original_dest_address, circ->dest_address))
  3747. mixed |= ISO_DESTADDR;
  3748. if (!memeq_opt(sr->username, sr->usernamelen,
  3749. circ->socks_username, circ->socks_username_len) ||
  3750. !memeq_opt(sr->password, sr->passwordlen,
  3751. circ->socks_password, circ->socks_password_len))
  3752. mixed |= ISO_SOCKSAUTH;
  3753. if ((conn->socks_request->listener_type != circ->client_proto_type ||
  3754. conn->socks_request->socks_version != circ->client_proto_socksver))
  3755. mixed |= ISO_CLIENTPROTO;
  3756. if (!tor_addr_eq(&ENTRY_TO_CONN(conn)->addr, &circ->client_addr))
  3757. mixed |= ISO_CLIENTADDR;
  3758. if (conn->entry_cfg.session_group != circ->session_group)
  3759. mixed |= ISO_SESSIONGRP;
  3760. if (conn->nym_epoch != circ->nym_epoch)
  3761. mixed |= ISO_NYM_EPOCH;
  3762. if (dry_run)
  3763. return mixed;
  3764. if ((mixed & conn->entry_cfg.isolation_flags) != 0) {
  3765. log_warn(LD_BUG, "Updating a circuit with seemingly incompatible "
  3766. "isolation flags.");
  3767. }
  3768. circ->isolation_flags_mixed |= mixed;
  3769. return 0;
  3770. }
  3771. }
  3772. /**
  3773. * Clear the isolation settings on <b>circ</b>.
  3774. *
  3775. * This only works on an open circuit that has never had a stream attached to
  3776. * it, and whose isolation settings are hypothetical. (We set hypothetical
  3777. * isolation settings on circuits as we're launching them, so that we
  3778. * know whether they can handle more streams or whether we need to launch
  3779. * even more circuits. Once the circuit is open, if it turns out that
  3780. * we no longer have any streams to attach to it, we clear the isolation flags
  3781. * and data so that other streams can have a chance.)
  3782. */
  3783. void
  3784. circuit_clear_isolation(origin_circuit_t *circ)
  3785. {
  3786. if (circ->isolation_any_streams_attached) {
  3787. log_warn(LD_BUG, "Tried to clear the isolation status of a dirty circuit");
  3788. return;
  3789. }
  3790. if (TO_CIRCUIT(circ)->state != CIRCUIT_STATE_OPEN) {
  3791. log_warn(LD_BUG, "Tried to clear the isolation status of a non-open "
  3792. "circuit");
  3793. return;
  3794. }
  3795. circ->isolation_values_set = 0;
  3796. circ->isolation_flags_mixed = 0;
  3797. circ->associated_isolated_stream_global_id = 0;
  3798. circ->client_proto_type = 0;
  3799. circ->client_proto_socksver = 0;
  3800. circ->dest_port = 0;
  3801. tor_addr_make_unspec(&circ->client_addr);
  3802. tor_free(circ->dest_address);
  3803. circ->session_group = -1;
  3804. circ->nym_epoch = 0;
  3805. if (circ->socks_username) {
  3806. memwipe(circ->socks_username, 0x11, circ->socks_username_len);
  3807. tor_free(circ->socks_username);
  3808. }
  3809. if (circ->socks_password) {
  3810. memwipe(circ->socks_password, 0x05, circ->socks_password_len);
  3811. tor_free(circ->socks_password);
  3812. }
  3813. circ->socks_username_len = circ->socks_password_len = 0;
  3814. }
  3815. /** Free all storage held in module-scoped variables for connection_edge.c */
  3816. void
  3817. connection_edge_free_all(void)
  3818. {
  3819. untried_pending_connections = 0;
  3820. smartlist_free(pending_entry_connections);
  3821. pending_entry_connections = NULL;
  3822. mainloop_event_free(attach_pending_entry_connections_ev);
  3823. }