connection_or.c 100 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_or.c
  8. * \brief Functions to handle OR connections, TLS handshaking, and
  9. * cells on the network.
  10. *
  11. * An or_connection_t is a subtype of connection_t (as implemented in
  12. * connection.c) that uses a TLS connection to send and receive cells on the
  13. * Tor network. (By sending and receiving cells connection_or.c, it cooperates
  14. * with channeltls.c to implement a the channel interface of channel.c.)
  15. *
  16. * Every OR connection has an underlying tortls_t object (as implemented in
  17. * tortls.c) which it uses as its TLS stream. It is responsible for
  18. * sending and receiving cells over that TLS.
  19. *
  20. * This module also implements the client side of the v3 Tor link handshake,
  21. **/
  22. #include "or.h"
  23. #include "bridges.h"
  24. #include "buffers.h"
  25. /*
  26. * Define this so we get channel internal functions, since we're implementing
  27. * part of a subclass (channel_tls_t).
  28. */
  29. #define TOR_CHANNEL_INTERNAL_
  30. #define CONNECTION_OR_PRIVATE
  31. #include "channel.h"
  32. #include "channeltls.h"
  33. #include "circuitbuild.h"
  34. #include "circuitlist.h"
  35. #include "circuitstats.h"
  36. #include "command.h"
  37. #include "config.h"
  38. #include "connection.h"
  39. #include "connection_or.h"
  40. #include "control.h"
  41. #include "crypto_rand.h"
  42. #include "crypto_util.h"
  43. #include "dirserv.h"
  44. #include "entrynodes.h"
  45. #include "geoip.h"
  46. #include "main.h"
  47. #include "link_handshake.h"
  48. #include "microdesc.h"
  49. #include "networkstatus.h"
  50. #include "nodelist.h"
  51. #include "proto_cell.h"
  52. #include "reasons.h"
  53. #include "relay.h"
  54. #include "rephist.h"
  55. #include "router.h"
  56. #include "routerkeys.h"
  57. #include "routerlist.h"
  58. #include "ext_orport.h"
  59. #include "scheduler.h"
  60. #include "torcert.h"
  61. #include "channelpadding.h"
  62. #include "or_connection_st.h"
  63. #include "or_handshake_certs_st.h"
  64. #include "or_handshake_state_st.h"
  65. #include "routerinfo_st.h"
  66. static int connection_tls_finish_handshake(or_connection_t *conn);
  67. static int connection_or_launch_v3_or_handshake(or_connection_t *conn);
  68. static int connection_or_process_cells_from_inbuf(or_connection_t *conn);
  69. static int connection_or_check_valid_tls_handshake(or_connection_t *conn,
  70. int started_here,
  71. char *digest_rcvd_out);
  72. static void connection_or_tls_renegotiated_cb(tor_tls_t *tls, void *_conn);
  73. static unsigned int
  74. connection_or_is_bad_for_new_circs(or_connection_t *or_conn);
  75. static void connection_or_mark_bad_for_new_circs(or_connection_t *or_conn);
  76. /*
  77. * Call this when changing connection state, so notifications to the owning
  78. * channel can be handled.
  79. */
  80. static void connection_or_change_state(or_connection_t *conn, uint8_t state);
  81. static void connection_or_check_canonicity(or_connection_t *conn,
  82. int started_here);
  83. /**************************************************************/
  84. /** Convert a connection_t* to an or_connection_t*; assert if the cast is
  85. * invalid. */
  86. or_connection_t *
  87. TO_OR_CONN(connection_t *c)
  88. {
  89. tor_assert(c->magic == OR_CONNECTION_MAGIC);
  90. return DOWNCAST(or_connection_t, c);
  91. }
  92. /** Global map between Extended ORPort identifiers and OR
  93. * connections. */
  94. static digestmap_t *orconn_ext_or_id_map = NULL;
  95. /** Clear clear conn->identity_digest and update other data
  96. * structures as appropriate.*/
  97. void
  98. connection_or_clear_identity(or_connection_t *conn)
  99. {
  100. tor_assert(conn);
  101. memset(conn->identity_digest, 0, DIGEST_LEN);
  102. }
  103. /** Clear all identities in OR conns.*/
  104. void
  105. connection_or_clear_identity_map(void)
  106. {
  107. smartlist_t *conns = get_connection_array();
  108. SMARTLIST_FOREACH(conns, connection_t *, conn,
  109. {
  110. if (conn->type == CONN_TYPE_OR) {
  111. connection_or_clear_identity(TO_OR_CONN(conn));
  112. }
  113. });
  114. }
  115. /** Change conn->identity_digest to digest, and add conn into
  116. * the appropriate digest maps.
  117. *
  118. * NOTE that this function only allows two kinds of transitions: from
  119. * unset identity to set identity, and from idempotent re-settings
  120. * of the same identity. It's not allowed to clear an identity or to
  121. * change an identity. Return 0 on success, and -1 if the transition
  122. * is not allowed.
  123. **/
  124. static void
  125. connection_or_set_identity_digest(or_connection_t *conn,
  126. const char *rsa_digest,
  127. const ed25519_public_key_t *ed_id)
  128. {
  129. channel_t *chan = NULL;
  130. tor_assert(conn);
  131. tor_assert(rsa_digest);
  132. if (conn->chan)
  133. chan = TLS_CHAN_TO_BASE(conn->chan);
  134. log_info(LD_HANDSHAKE, "Set identity digest for %p (%s): %s %s.",
  135. conn,
  136. escaped_safe_str(conn->base_.address),
  137. hex_str(rsa_digest, DIGEST_LEN),
  138. ed25519_fmt(ed_id));
  139. log_info(LD_HANDSHAKE, " (Previously: %s %s)",
  140. hex_str(conn->identity_digest, DIGEST_LEN),
  141. chan ? ed25519_fmt(&chan->ed25519_identity) : "<null>");
  142. const int rsa_id_was_set = ! tor_digest_is_zero(conn->identity_digest);
  143. const int ed_id_was_set =
  144. chan && !ed25519_public_key_is_zero(&chan->ed25519_identity);
  145. const int rsa_changed =
  146. tor_memneq(conn->identity_digest, rsa_digest, DIGEST_LEN);
  147. const int ed_changed = ed_id_was_set &&
  148. (!ed_id || !ed25519_pubkey_eq(ed_id, &chan->ed25519_identity));
  149. tor_assert(!rsa_changed || !rsa_id_was_set);
  150. tor_assert(!ed_changed || !ed_id_was_set);
  151. if (!rsa_changed && !ed_changed)
  152. return;
  153. /* If the identity was set previously, remove the old mapping. */
  154. if (rsa_id_was_set) {
  155. connection_or_clear_identity(conn);
  156. if (chan)
  157. channel_clear_identity_digest(chan);
  158. }
  159. memcpy(conn->identity_digest, rsa_digest, DIGEST_LEN);
  160. /* If we're initializing the IDs to zero, don't add a mapping yet. */
  161. if (tor_digest_is_zero(rsa_digest) &&
  162. (!ed_id || ed25519_public_key_is_zero(ed_id)))
  163. return;
  164. /* Deal with channels */
  165. if (chan)
  166. channel_set_identity_digest(chan, rsa_digest, ed_id);
  167. }
  168. /** Remove the Extended ORPort identifier of <b>conn</b> from the
  169. * global identifier list. Also, clear the identifier from the
  170. * connection itself. */
  171. void
  172. connection_or_remove_from_ext_or_id_map(or_connection_t *conn)
  173. {
  174. or_connection_t *tmp;
  175. if (!orconn_ext_or_id_map)
  176. return;
  177. if (!conn->ext_or_conn_id)
  178. return;
  179. tmp = digestmap_remove(orconn_ext_or_id_map, conn->ext_or_conn_id);
  180. if (!tor_digest_is_zero(conn->ext_or_conn_id))
  181. tor_assert(tmp == conn);
  182. memset(conn->ext_or_conn_id, 0, EXT_OR_CONN_ID_LEN);
  183. }
  184. /** Return the connection whose ext_or_id is <b>id</b>. Return NULL if no such
  185. * connection is found. */
  186. or_connection_t *
  187. connection_or_get_by_ext_or_id(const char *id)
  188. {
  189. if (!orconn_ext_or_id_map)
  190. return NULL;
  191. return digestmap_get(orconn_ext_or_id_map, id);
  192. }
  193. /** Deallocate the global Extended ORPort identifier list */
  194. void
  195. connection_or_clear_ext_or_id_map(void)
  196. {
  197. digestmap_free(orconn_ext_or_id_map, NULL);
  198. orconn_ext_or_id_map = NULL;
  199. }
  200. /** Creates an Extended ORPort identifier for <b>conn</b> and deposits
  201. * it into the global list of identifiers. */
  202. void
  203. connection_or_set_ext_or_identifier(or_connection_t *conn)
  204. {
  205. char random_id[EXT_OR_CONN_ID_LEN];
  206. or_connection_t *tmp;
  207. if (!orconn_ext_or_id_map)
  208. orconn_ext_or_id_map = digestmap_new();
  209. /* Remove any previous identifiers: */
  210. if (conn->ext_or_conn_id && !tor_digest_is_zero(conn->ext_or_conn_id))
  211. connection_or_remove_from_ext_or_id_map(conn);
  212. do {
  213. crypto_rand(random_id, sizeof(random_id));
  214. } while (digestmap_get(orconn_ext_or_id_map, random_id));
  215. if (!conn->ext_or_conn_id)
  216. conn->ext_or_conn_id = tor_malloc_zero(EXT_OR_CONN_ID_LEN);
  217. memcpy(conn->ext_or_conn_id, random_id, EXT_OR_CONN_ID_LEN);
  218. tmp = digestmap_set(orconn_ext_or_id_map, random_id, conn);
  219. tor_assert(!tmp);
  220. }
  221. /**************************************************************/
  222. /** Map from a string describing what a non-open OR connection was doing when
  223. * failed, to an intptr_t describing the count of connections that failed that
  224. * way. Note that the count is stored _as_ the pointer.
  225. */
  226. static strmap_t *broken_connection_counts;
  227. /** If true, do not record information in <b>broken_connection_counts</b>. */
  228. static int disable_broken_connection_counts = 0;
  229. /** Record that an OR connection failed in <b>state</b>. */
  230. static void
  231. note_broken_connection(const char *state)
  232. {
  233. void *ptr;
  234. intptr_t val;
  235. if (disable_broken_connection_counts)
  236. return;
  237. if (!broken_connection_counts)
  238. broken_connection_counts = strmap_new();
  239. ptr = strmap_get(broken_connection_counts, state);
  240. val = (intptr_t)ptr;
  241. val++;
  242. ptr = (void*)val;
  243. strmap_set(broken_connection_counts, state, ptr);
  244. }
  245. /** Forget all recorded states for failed connections. If
  246. * <b>stop_recording</b> is true, don't record any more. */
  247. void
  248. clear_broken_connection_map(int stop_recording)
  249. {
  250. if (broken_connection_counts)
  251. strmap_free(broken_connection_counts, NULL);
  252. broken_connection_counts = NULL;
  253. if (stop_recording)
  254. disable_broken_connection_counts = 1;
  255. }
  256. /** Write a detailed description the state of <b>orconn</b> into the
  257. * <b>buflen</b>-byte buffer at <b>buf</b>. This description includes not
  258. * only the OR-conn level state but also the TLS state. It's useful for
  259. * diagnosing broken handshakes. */
  260. static void
  261. connection_or_get_state_description(or_connection_t *orconn,
  262. char *buf, size_t buflen)
  263. {
  264. connection_t *conn = TO_CONN(orconn);
  265. const char *conn_state;
  266. char tls_state[256];
  267. tor_assert(conn->type == CONN_TYPE_OR || conn->type == CONN_TYPE_EXT_OR);
  268. conn_state = conn_state_to_string(conn->type, conn->state);
  269. tor_tls_get_state_description(orconn->tls, tls_state, sizeof(tls_state));
  270. tor_snprintf(buf, buflen, "%s with SSL state %s", conn_state, tls_state);
  271. }
  272. /** Record the current state of <b>orconn</b> as the state of a broken
  273. * connection. */
  274. static void
  275. connection_or_note_state_when_broken(or_connection_t *orconn)
  276. {
  277. char buf[256];
  278. if (disable_broken_connection_counts)
  279. return;
  280. connection_or_get_state_description(orconn, buf, sizeof(buf));
  281. log_info(LD_HANDSHAKE,"Connection died in state '%s'", buf);
  282. note_broken_connection(buf);
  283. }
  284. /** Helper type used to sort connection states and find the most frequent. */
  285. typedef struct broken_state_count_t {
  286. intptr_t count;
  287. const char *state;
  288. } broken_state_count_t;
  289. /** Helper function used to sort broken_state_count_t by frequency. */
  290. static int
  291. broken_state_count_compare(const void **a_ptr, const void **b_ptr)
  292. {
  293. const broken_state_count_t *a = *a_ptr, *b = *b_ptr;
  294. if (b->count < a->count)
  295. return -1;
  296. else if (b->count == a->count)
  297. return 0;
  298. else
  299. return 1;
  300. }
  301. /** Upper limit on the number of different states to report for connection
  302. * failure. */
  303. #define MAX_REASONS_TO_REPORT 10
  304. /** Report a list of the top states for failed OR connections at log level
  305. * <b>severity</b>, in log domain <b>domain</b>. */
  306. void
  307. connection_or_report_broken_states(int severity, int domain)
  308. {
  309. int total = 0;
  310. smartlist_t *items;
  311. if (!broken_connection_counts || disable_broken_connection_counts)
  312. return;
  313. items = smartlist_new();
  314. STRMAP_FOREACH(broken_connection_counts, state, void *, countptr) {
  315. broken_state_count_t *c = tor_malloc(sizeof(broken_state_count_t));
  316. c->count = (intptr_t)countptr;
  317. total += (int)c->count;
  318. c->state = state;
  319. smartlist_add(items, c);
  320. } STRMAP_FOREACH_END;
  321. smartlist_sort(items, broken_state_count_compare);
  322. tor_log(severity, domain, "%d connections have failed%s", total,
  323. smartlist_len(items) > MAX_REASONS_TO_REPORT ? ". Top reasons:" : ":");
  324. SMARTLIST_FOREACH_BEGIN(items, const broken_state_count_t *, c) {
  325. if (c_sl_idx > MAX_REASONS_TO_REPORT)
  326. break;
  327. tor_log(severity, domain,
  328. " %d connections died in state %s", (int)c->count, c->state);
  329. } SMARTLIST_FOREACH_END(c);
  330. SMARTLIST_FOREACH(items, broken_state_count_t *, c, tor_free(c));
  331. smartlist_free(items);
  332. }
  333. /** Call this to change or_connection_t states, so the owning channel_tls_t can
  334. * be notified.
  335. */
  336. static void
  337. connection_or_change_state(or_connection_t *conn, uint8_t state)
  338. {
  339. uint8_t old_state;
  340. tor_assert(conn);
  341. old_state = conn->base_.state;
  342. conn->base_.state = state;
  343. if (conn->chan)
  344. channel_tls_handle_state_change_on_orconn(conn->chan, conn,
  345. old_state, state);
  346. }
  347. /** Return the number of circuits using an or_connection_t; this used to
  348. * be an or_connection_t field, but it got moved to channel_t and we
  349. * shouldn't maintain two copies. */
  350. MOCK_IMPL(int,
  351. connection_or_get_num_circuits, (or_connection_t *conn))
  352. {
  353. tor_assert(conn);
  354. if (conn->chan) {
  355. return channel_num_circuits(TLS_CHAN_TO_BASE(conn->chan));
  356. } else return 0;
  357. }
  358. /**************************************************************/
  359. /** Pack the cell_t host-order structure <b>src</b> into network-order
  360. * in the buffer <b>dest</b>. See tor-spec.txt for details about the
  361. * wire format.
  362. *
  363. * Note that this function doesn't touch <b>dst</b>-\>next: the caller
  364. * should set it or clear it as appropriate.
  365. */
  366. void
  367. cell_pack(packed_cell_t *dst, const cell_t *src, int wide_circ_ids)
  368. {
  369. char *dest = dst->body;
  370. if (wide_circ_ids) {
  371. set_uint32(dest, htonl(src->circ_id));
  372. dest += 4;
  373. } else {
  374. /* Clear the last two bytes of dest, in case we can accidentally
  375. * send them to the network somehow. */
  376. memset(dest+CELL_MAX_NETWORK_SIZE-2, 0, 2);
  377. set_uint16(dest, htons(src->circ_id));
  378. dest += 2;
  379. }
  380. set_uint8(dest, src->command);
  381. memcpy(dest+1, src->payload, CELL_PAYLOAD_SIZE);
  382. }
  383. /** Unpack the network-order buffer <b>src</b> into a host-order
  384. * cell_t structure <b>dest</b>.
  385. */
  386. static void
  387. cell_unpack(cell_t *dest, const char *src, int wide_circ_ids)
  388. {
  389. if (wide_circ_ids) {
  390. dest->circ_id = ntohl(get_uint32(src));
  391. src += 4;
  392. } else {
  393. dest->circ_id = ntohs(get_uint16(src));
  394. src += 2;
  395. }
  396. dest->command = get_uint8(src);
  397. memcpy(dest->payload, src+1, CELL_PAYLOAD_SIZE);
  398. }
  399. /** Write the header of <b>cell</b> into the first VAR_CELL_MAX_HEADER_SIZE
  400. * bytes of <b>hdr_out</b>. Returns number of bytes used. */
  401. int
  402. var_cell_pack_header(const var_cell_t *cell, char *hdr_out, int wide_circ_ids)
  403. {
  404. int r;
  405. if (wide_circ_ids) {
  406. set_uint32(hdr_out, htonl(cell->circ_id));
  407. hdr_out += 4;
  408. r = VAR_CELL_MAX_HEADER_SIZE;
  409. } else {
  410. set_uint16(hdr_out, htons(cell->circ_id));
  411. hdr_out += 2;
  412. r = VAR_CELL_MAX_HEADER_SIZE - 2;
  413. }
  414. set_uint8(hdr_out, cell->command);
  415. set_uint16(hdr_out+1, htons(cell->payload_len));
  416. return r;
  417. }
  418. /** Allocate and return a new var_cell_t with <b>payload_len</b> bytes of
  419. * payload space. */
  420. var_cell_t *
  421. var_cell_new(uint16_t payload_len)
  422. {
  423. size_t size = offsetof(var_cell_t, payload) + payload_len;
  424. var_cell_t *cell = tor_malloc_zero(size);
  425. cell->payload_len = payload_len;
  426. cell->command = 0;
  427. cell->circ_id = 0;
  428. return cell;
  429. }
  430. /**
  431. * Copy a var_cell_t
  432. */
  433. var_cell_t *
  434. var_cell_copy(const var_cell_t *src)
  435. {
  436. var_cell_t *copy = NULL;
  437. size_t size = 0;
  438. if (src != NULL) {
  439. size = offsetof(var_cell_t, payload) + src->payload_len;
  440. copy = tor_malloc_zero(size);
  441. copy->payload_len = src->payload_len;
  442. copy->command = src->command;
  443. copy->circ_id = src->circ_id;
  444. memcpy(copy->payload, src->payload, copy->payload_len);
  445. }
  446. return copy;
  447. }
  448. /** Release all space held by <b>cell</b>. */
  449. void
  450. var_cell_free_(var_cell_t *cell)
  451. {
  452. tor_free(cell);
  453. }
  454. /** We've received an EOF from <b>conn</b>. Mark it for close and return. */
  455. int
  456. connection_or_reached_eof(or_connection_t *conn)
  457. {
  458. tor_assert(conn);
  459. log_info(LD_OR,"OR connection reached EOF. Closing.");
  460. connection_or_close_normally(conn, 1);
  461. return 0;
  462. }
  463. /** Handle any new bytes that have come in on connection <b>conn</b>.
  464. * If conn is in 'open' state, hand it to
  465. * connection_or_process_cells_from_inbuf()
  466. * (else do nothing).
  467. */
  468. int
  469. connection_or_process_inbuf(or_connection_t *conn)
  470. {
  471. /** Don't let the inbuf of a nonopen OR connection grow beyond this many
  472. * bytes: it's either a broken client, a non-Tor client, or a DOS
  473. * attempt. */
  474. #define MAX_OR_INBUF_WHEN_NONOPEN 0
  475. int ret = 0;
  476. tor_assert(conn);
  477. switch (conn->base_.state) {
  478. case OR_CONN_STATE_PROXY_HANDSHAKING:
  479. ret = connection_read_proxy_handshake(TO_CONN(conn));
  480. /* start TLS after handshake completion, or deal with error */
  481. if (ret == 1) {
  482. tor_assert(TO_CONN(conn)->proxy_state == PROXY_CONNECTED);
  483. if (connection_tls_start_handshake(conn, 0) < 0)
  484. ret = -1;
  485. /* Touch the channel's active timestamp if there is one */
  486. if (conn->chan)
  487. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  488. }
  489. if (ret < 0) {
  490. connection_or_close_for_error(conn, 0);
  491. }
  492. return ret;
  493. case OR_CONN_STATE_TLS_SERVER_RENEGOTIATING:
  494. case OR_CONN_STATE_OPEN:
  495. case OR_CONN_STATE_OR_HANDSHAKING_V2:
  496. case OR_CONN_STATE_OR_HANDSHAKING_V3:
  497. return connection_or_process_cells_from_inbuf(conn);
  498. default:
  499. break; /* don't do anything */
  500. }
  501. /* This check was necessary with 0.2.2, when the TLS_SERVER_RENEGOTIATING
  502. * check would otherwise just let data accumulate. It serves no purpose
  503. * in 0.2.3.
  504. *
  505. * XXXX Remove this check once we verify that the above paragraph is
  506. * 100% true. */
  507. if (buf_datalen(conn->base_.inbuf) > MAX_OR_INBUF_WHEN_NONOPEN) {
  508. log_fn(LOG_PROTOCOL_WARN, LD_NET, "Accumulated too much data (%d bytes) "
  509. "on nonopen OR connection %s %s:%u in state %s; closing.",
  510. (int)buf_datalen(conn->base_.inbuf),
  511. connection_or_nonopen_was_started_here(conn) ? "to" : "from",
  512. conn->base_.address, conn->base_.port,
  513. conn_state_to_string(conn->base_.type, conn->base_.state));
  514. connection_or_close_for_error(conn, 0);
  515. ret = -1;
  516. }
  517. return ret;
  518. }
  519. /** Called whenever we have flushed some data on an or_conn: add more data
  520. * from active circuits. */
  521. int
  522. connection_or_flushed_some(or_connection_t *conn)
  523. {
  524. size_t datalen;
  525. /* Update the channel's active timestamp if there is one */
  526. if (conn->chan)
  527. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  528. /* If we're under the low water mark, add cells until we're just over the
  529. * high water mark. */
  530. datalen = connection_get_outbuf_len(TO_CONN(conn));
  531. if (datalen < OR_CONN_LOWWATER) {
  532. /* Let the scheduler know */
  533. scheduler_channel_wants_writes(TLS_CHAN_TO_BASE(conn->chan));
  534. }
  535. return 0;
  536. }
  537. /** This is for channeltls.c to ask how many cells we could accept if
  538. * they were available. */
  539. ssize_t
  540. connection_or_num_cells_writeable(or_connection_t *conn)
  541. {
  542. size_t datalen, cell_network_size;
  543. ssize_t n = 0;
  544. tor_assert(conn);
  545. /*
  546. * If we're under the high water mark, we're potentially
  547. * writeable; note this is different from the calculation above
  548. * used to trigger when to start writing after we've stopped.
  549. */
  550. datalen = connection_get_outbuf_len(TO_CONN(conn));
  551. if (datalen < OR_CONN_HIGHWATER) {
  552. cell_network_size = get_cell_network_size(conn->wide_circ_ids);
  553. n = CEIL_DIV(OR_CONN_HIGHWATER - datalen, cell_network_size);
  554. }
  555. return n;
  556. }
  557. /** Connection <b>conn</b> has finished writing and has no bytes left on
  558. * its outbuf.
  559. *
  560. * Otherwise it's in state "open": stop writing and return.
  561. *
  562. * If <b>conn</b> is broken, mark it for close and return -1, else
  563. * return 0.
  564. */
  565. int
  566. connection_or_finished_flushing(or_connection_t *conn)
  567. {
  568. tor_assert(conn);
  569. assert_connection_ok(TO_CONN(conn),0);
  570. switch (conn->base_.state) {
  571. case OR_CONN_STATE_PROXY_HANDSHAKING:
  572. case OR_CONN_STATE_OPEN:
  573. case OR_CONN_STATE_OR_HANDSHAKING_V2:
  574. case OR_CONN_STATE_OR_HANDSHAKING_V3:
  575. break;
  576. default:
  577. log_err(LD_BUG,"Called in unexpected state %d.", conn->base_.state);
  578. tor_fragile_assert();
  579. return -1;
  580. }
  581. /* Update the channel's active timestamp if there is one */
  582. if (conn->chan)
  583. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  584. return 0;
  585. }
  586. /** Connected handler for OR connections: begin the TLS handshake.
  587. */
  588. int
  589. connection_or_finished_connecting(or_connection_t *or_conn)
  590. {
  591. const int proxy_type = or_conn->proxy_type;
  592. connection_t *conn;
  593. tor_assert(or_conn);
  594. conn = TO_CONN(or_conn);
  595. tor_assert(conn->state == OR_CONN_STATE_CONNECTING);
  596. log_debug(LD_HANDSHAKE,"OR connect() to router at %s:%u finished.",
  597. conn->address,conn->port);
  598. control_event_bootstrap(BOOTSTRAP_STATUS_HANDSHAKE, 0);
  599. if (proxy_type != PROXY_NONE) {
  600. /* start proxy handshake */
  601. if (connection_proxy_connect(conn, proxy_type) < 0) {
  602. connection_or_close_for_error(or_conn, 0);
  603. return -1;
  604. }
  605. connection_start_reading(conn);
  606. connection_or_change_state(or_conn, OR_CONN_STATE_PROXY_HANDSHAKING);
  607. return 0;
  608. }
  609. if (connection_tls_start_handshake(or_conn, 0) < 0) {
  610. /* TLS handshaking error of some kind. */
  611. connection_or_close_for_error(or_conn, 0);
  612. return -1;
  613. }
  614. return 0;
  615. }
  616. /** Called when we're about to finally unlink and free an OR connection:
  617. * perform necessary accounting and cleanup */
  618. void
  619. connection_or_about_to_close(or_connection_t *or_conn)
  620. {
  621. connection_t *conn = TO_CONN(or_conn);
  622. /* Tell the controlling channel we're closed */
  623. if (or_conn->chan) {
  624. channel_closed(TLS_CHAN_TO_BASE(or_conn->chan));
  625. /*
  626. * NULL this out because the channel might hang around a little
  627. * longer before channel_run_cleanup() gets it.
  628. */
  629. or_conn->chan->conn = NULL;
  630. or_conn->chan = NULL;
  631. }
  632. /* Remember why we're closing this connection. */
  633. if (conn->state != OR_CONN_STATE_OPEN) {
  634. /* now mark things down as needed */
  635. if (connection_or_nonopen_was_started_here(or_conn)) {
  636. const or_options_t *options = get_options();
  637. connection_or_note_state_when_broken(or_conn);
  638. /* Tell the new guard API about the channel failure */
  639. entry_guard_chan_failed(TLS_CHAN_TO_BASE(or_conn->chan));
  640. if (conn->state >= OR_CONN_STATE_TLS_HANDSHAKING) {
  641. int reason = tls_error_to_orconn_end_reason(or_conn->tls_error);
  642. control_event_or_conn_status(or_conn, OR_CONN_EVENT_FAILED,
  643. reason);
  644. if (!authdir_mode_tests_reachability(options))
  645. control_event_bootstrap_prob_or(
  646. orconn_end_reason_to_control_string(reason),
  647. reason, or_conn);
  648. }
  649. }
  650. } else if (conn->hold_open_until_flushed) {
  651. /* We only set hold_open_until_flushed when we're intentionally
  652. * closing a connection. */
  653. control_event_or_conn_status(or_conn, OR_CONN_EVENT_CLOSED,
  654. tls_error_to_orconn_end_reason(or_conn->tls_error));
  655. } else if (!tor_digest_is_zero(or_conn->identity_digest)) {
  656. control_event_or_conn_status(or_conn, OR_CONN_EVENT_CLOSED,
  657. tls_error_to_orconn_end_reason(or_conn->tls_error));
  658. }
  659. }
  660. /** Return 1 if identity digest <b>id_digest</b> is known to be a
  661. * currently or recently running relay. Otherwise return 0. */
  662. int
  663. connection_or_digest_is_known_relay(const char *id_digest)
  664. {
  665. if (router_get_consensus_status_by_id(id_digest))
  666. return 1; /* It's in the consensus: "yes" */
  667. if (router_get_by_id_digest(id_digest))
  668. return 1; /* Not in the consensus, but we have a descriptor for
  669. * it. Probably it was in a recent consensus. "Yes". */
  670. return 0;
  671. }
  672. /** Set the per-conn read and write limits for <b>conn</b>. If it's a known
  673. * relay, we will rely on the global read and write buckets, so give it
  674. * per-conn limits that are big enough they'll never matter. But if it's
  675. * not a known relay, first check if we set PerConnBwRate/Burst, then
  676. * check if the consensus sets them, else default to 'big enough'.
  677. *
  678. * If <b>reset</b> is true, set the bucket to be full. Otherwise, just
  679. * clip the bucket if it happens to be <em>too</em> full.
  680. */
  681. static void
  682. connection_or_update_token_buckets_helper(or_connection_t *conn, int reset,
  683. const or_options_t *options)
  684. {
  685. int rate, burst; /* per-connection rate limiting params */
  686. if (connection_or_digest_is_known_relay(conn->identity_digest)) {
  687. /* It's in the consensus, or we have a descriptor for it meaning it
  688. * was probably in a recent consensus. It's a recognized relay:
  689. * give it full bandwidth. */
  690. rate = (int)options->BandwidthRate;
  691. burst = (int)options->BandwidthBurst;
  692. } else {
  693. /* Not a recognized relay. Squeeze it down based on the suggested
  694. * bandwidth parameters in the consensus, but allow local config
  695. * options to override. */
  696. rate = options->PerConnBWRate ? (int)options->PerConnBWRate :
  697. networkstatus_get_param(NULL, "perconnbwrate",
  698. (int)options->BandwidthRate, 1, INT32_MAX);
  699. burst = options->PerConnBWBurst ? (int)options->PerConnBWBurst :
  700. networkstatus_get_param(NULL, "perconnbwburst",
  701. (int)options->BandwidthBurst, 1, INT32_MAX);
  702. }
  703. token_bucket_rw_adjust(&conn->bucket, rate, burst);
  704. if (reset) {
  705. token_bucket_rw_reset(&conn->bucket, monotime_coarse_get_stamp());
  706. }
  707. }
  708. /** Either our set of relays or our per-conn rate limits have changed.
  709. * Go through all the OR connections and update their token buckets to make
  710. * sure they don't exceed their maximum values. */
  711. void
  712. connection_or_update_token_buckets(smartlist_t *conns,
  713. const or_options_t *options)
  714. {
  715. SMARTLIST_FOREACH(conns, connection_t *, conn,
  716. {
  717. if (connection_speaks_cells(conn))
  718. connection_or_update_token_buckets_helper(TO_OR_CONN(conn), 0, options);
  719. });
  720. }
  721. /* Mark <b>or_conn</b> as canonical if <b>is_canonical</b> is set, and
  722. * non-canonical otherwise. Adjust idle_timeout accordingly.
  723. */
  724. void
  725. connection_or_set_canonical(or_connection_t *or_conn,
  726. int is_canonical)
  727. {
  728. if (bool_eq(is_canonical, or_conn->is_canonical) &&
  729. or_conn->idle_timeout != 0) {
  730. /* Don't recalculate an existing idle_timeout unless the canonical
  731. * status changed. */
  732. return;
  733. }
  734. or_conn->is_canonical = !! is_canonical; /* force to a 1-bit boolean */
  735. or_conn->idle_timeout = channelpadding_get_channel_idle_timeout(
  736. TLS_CHAN_TO_BASE(or_conn->chan), is_canonical);
  737. log_info(LD_CIRC,
  738. "Channel " U64_FORMAT " chose an idle timeout of %d.",
  739. or_conn->chan ?
  740. U64_PRINTF_ARG(TLS_CHAN_TO_BASE(or_conn->chan)->global_identifier):0,
  741. or_conn->idle_timeout);
  742. }
  743. /** If we don't necessarily know the router we're connecting to, but we
  744. * have an addr/port/id_digest, then fill in as much as we can. Start
  745. * by checking to see if this describes a router we know.
  746. * <b>started_here</b> is 1 if we are the initiator of <b>conn</b> and
  747. * 0 if it's an incoming connection. */
  748. void
  749. connection_or_init_conn_from_address(or_connection_t *conn,
  750. const tor_addr_t *addr, uint16_t port,
  751. const char *id_digest,
  752. const ed25519_public_key_t *ed_id,
  753. int started_here)
  754. {
  755. log_debug(LD_HANDSHAKE, "init conn from address %s: %s, %s (%d)",
  756. fmt_addr(addr),
  757. hex_str((const char*)id_digest, DIGEST_LEN),
  758. ed25519_fmt(ed_id),
  759. started_here);
  760. connection_or_set_identity_digest(conn, id_digest, ed_id);
  761. connection_or_update_token_buckets_helper(conn, 1, get_options());
  762. conn->base_.port = port;
  763. tor_addr_copy(&conn->base_.addr, addr);
  764. tor_addr_copy(&conn->real_addr, addr);
  765. connection_or_check_canonicity(conn, started_here);
  766. }
  767. /** Check whether the identity of <b>conn</b> matches a known node. If it
  768. * does, check whether the address of conn matches the expected address, and
  769. * update the connection's is_canonical flag, nickname, and address fields as
  770. * appropriate. */
  771. static void
  772. connection_or_check_canonicity(or_connection_t *conn, int started_here)
  773. {
  774. const char *id_digest = conn->identity_digest;
  775. const ed25519_public_key_t *ed_id = NULL;
  776. const tor_addr_t *addr = &conn->real_addr;
  777. if (conn->chan)
  778. ed_id = & TLS_CHAN_TO_BASE(conn->chan)->ed25519_identity;
  779. const node_t *r = node_get_by_id(id_digest);
  780. if (r &&
  781. node_supports_ed25519_link_authentication(r, 1) &&
  782. ! node_ed25519_id_matches(r, ed_id)) {
  783. /* If this node is capable of proving an ed25519 ID,
  784. * we can't call this a canonical connection unless both IDs match. */
  785. r = NULL;
  786. }
  787. if (r) {
  788. tor_addr_port_t node_ap;
  789. node_get_pref_orport(r, &node_ap);
  790. /* XXXX proposal 186 is making this more complex. For now, a conn
  791. is canonical when it uses the _preferred_ address. */
  792. if (tor_addr_eq(&conn->base_.addr, &node_ap.addr))
  793. connection_or_set_canonical(conn, 1);
  794. if (!started_here) {
  795. /* Override the addr/port, so our log messages will make sense.
  796. * This is dangerous, since if we ever try looking up a conn by
  797. * its actual addr/port, we won't remember. Careful! */
  798. /* XXXX arma: this is stupid, and it's the reason we need real_addr
  799. * to track is_canonical properly. What requires it? */
  800. /* XXXX <arma> i believe the reason we did this, originally, is because
  801. * we wanted to log what OR a connection was to, and if we logged the
  802. * right IP address and port 56244, that wouldn't be as helpful. now we
  803. * log the "right" port too, so we know if it's moria1 or moria2.
  804. */
  805. tor_addr_copy(&conn->base_.addr, &node_ap.addr);
  806. conn->base_.port = node_ap.port;
  807. }
  808. tor_free(conn->nickname);
  809. conn->nickname = tor_strdup(node_get_nickname(r));
  810. tor_free(conn->base_.address);
  811. conn->base_.address = tor_addr_to_str_dup(&node_ap.addr);
  812. } else {
  813. tor_free(conn->nickname);
  814. conn->nickname = tor_malloc(HEX_DIGEST_LEN+2);
  815. conn->nickname[0] = '$';
  816. base16_encode(conn->nickname+1, HEX_DIGEST_LEN+1,
  817. conn->identity_digest, DIGEST_LEN);
  818. tor_free(conn->base_.address);
  819. conn->base_.address = tor_addr_to_str_dup(addr);
  820. }
  821. /*
  822. * We have to tell channeltls.c to update the channel marks (local, in
  823. * particular), since we may have changed the address.
  824. */
  825. if (conn->chan) {
  826. channel_tls_update_marks(conn);
  827. }
  828. }
  829. /** These just pass all the is_bad_for_new_circs manipulation on to
  830. * channel_t */
  831. static unsigned int
  832. connection_or_is_bad_for_new_circs(or_connection_t *or_conn)
  833. {
  834. tor_assert(or_conn);
  835. if (or_conn->chan)
  836. return channel_is_bad_for_new_circs(TLS_CHAN_TO_BASE(or_conn->chan));
  837. else return 0;
  838. }
  839. static void
  840. connection_or_mark_bad_for_new_circs(or_connection_t *or_conn)
  841. {
  842. tor_assert(or_conn);
  843. if (or_conn->chan)
  844. channel_mark_bad_for_new_circs(TLS_CHAN_TO_BASE(or_conn->chan));
  845. }
  846. /** How old do we let a connection to an OR get before deciding it's
  847. * too old for new circuits? */
  848. #define TIME_BEFORE_OR_CONN_IS_TOO_OLD (60*60*24*7)
  849. /** Expire an or_connection if it is too old. Helper for
  850. * connection_or_group_set_badness_ and fast path for
  851. * channel_rsa_id_group_set_badness.
  852. *
  853. * Returns 1 if the connection was already expired, else 0.
  854. */
  855. int
  856. connection_or_single_set_badness_(time_t now,
  857. or_connection_t *or_conn,
  858. int force)
  859. {
  860. /* XXXX this function should also be about channels? */
  861. if (or_conn->base_.marked_for_close ||
  862. connection_or_is_bad_for_new_circs(or_conn))
  863. return 1;
  864. if (force ||
  865. or_conn->base_.timestamp_created + TIME_BEFORE_OR_CONN_IS_TOO_OLD
  866. < now) {
  867. log_info(LD_OR,
  868. "Marking OR conn to %s:%d as too old for new circuits "
  869. "(fd "TOR_SOCKET_T_FORMAT", %d secs old).",
  870. or_conn->base_.address, or_conn->base_.port, or_conn->base_.s,
  871. (int)(now - or_conn->base_.timestamp_created));
  872. connection_or_mark_bad_for_new_circs(or_conn);
  873. }
  874. return 0;
  875. }
  876. /** Given a list of all the or_connections with a given
  877. * identity, set elements of that list as is_bad_for_new_circs as
  878. * appropriate. Helper for connection_or_set_bad_connections().
  879. *
  880. * Specifically, we set the is_bad_for_new_circs flag on:
  881. * - all connections if <b>force</b> is true.
  882. * - all connections that are too old.
  883. * - all open non-canonical connections for which a canonical connection
  884. * exists to the same router.
  885. * - all open canonical connections for which a 'better' canonical
  886. * connection exists to the same router.
  887. * - all open non-canonical connections for which a 'better' non-canonical
  888. * connection exists to the same router at the same address.
  889. *
  890. * See channel_is_better() in channel.c for our idea of what makes one OR
  891. * connection better than another.
  892. */
  893. void
  894. connection_or_group_set_badness_(smartlist_t *group, int force)
  895. {
  896. /* XXXX this function should be entirely about channels, not OR
  897. * XXXX connections. */
  898. or_connection_t *best = NULL;
  899. int n_old = 0, n_inprogress = 0, n_canonical = 0, n_other = 0;
  900. time_t now = time(NULL);
  901. /* Pass 1: expire everything that's old, and see what the status of
  902. * everything else is. */
  903. SMARTLIST_FOREACH_BEGIN(group, or_connection_t *, or_conn) {
  904. if (connection_or_single_set_badness_(now, or_conn, force))
  905. continue;
  906. if (connection_or_is_bad_for_new_circs(or_conn)) {
  907. ++n_old;
  908. } else if (or_conn->base_.state != OR_CONN_STATE_OPEN) {
  909. ++n_inprogress;
  910. } else if (or_conn->is_canonical) {
  911. ++n_canonical;
  912. } else {
  913. ++n_other;
  914. }
  915. } SMARTLIST_FOREACH_END(or_conn);
  916. /* Pass 2: We know how about how good the best connection is.
  917. * expire everything that's worse, and find the very best if we can. */
  918. SMARTLIST_FOREACH_BEGIN(group, or_connection_t *, or_conn) {
  919. if (or_conn->base_.marked_for_close ||
  920. connection_or_is_bad_for_new_circs(or_conn))
  921. continue; /* This one doesn't need to be marked bad. */
  922. if (or_conn->base_.state != OR_CONN_STATE_OPEN)
  923. continue; /* Don't mark anything bad until we have seen what happens
  924. * when the connection finishes. */
  925. if (n_canonical && !or_conn->is_canonical) {
  926. /* We have at least one open canonical connection to this router,
  927. * and this one is open but not canonical. Mark it bad. */
  928. log_info(LD_OR,
  929. "Marking OR conn to %s:%d as unsuitable for new circuits: "
  930. "(fd "TOR_SOCKET_T_FORMAT", %d secs old). It is not "
  931. "canonical, and we have another connection to that OR that is.",
  932. or_conn->base_.address, or_conn->base_.port, or_conn->base_.s,
  933. (int)(now - or_conn->base_.timestamp_created));
  934. connection_or_mark_bad_for_new_circs(or_conn);
  935. continue;
  936. }
  937. if (!best ||
  938. channel_is_better(TLS_CHAN_TO_BASE(or_conn->chan),
  939. TLS_CHAN_TO_BASE(best->chan))) {
  940. best = or_conn;
  941. }
  942. } SMARTLIST_FOREACH_END(or_conn);
  943. if (!best)
  944. return;
  945. /* Pass 3: One connection to OR is best. If it's canonical, mark as bad
  946. * every other open connection. If it's non-canonical, mark as bad
  947. * every other open connection to the same address.
  948. *
  949. * XXXX This isn't optimal; if we have connections to an OR at multiple
  950. * addresses, we'd like to pick the best _for each address_, and mark as
  951. * bad every open connection that isn't best for its address. But this
  952. * can only occur in cases where the other OR is old (so we have no
  953. * canonical connection to it), or where all the connections to the OR are
  954. * at noncanonical addresses and we have no good direct connection (which
  955. * means we aren't at risk of attaching circuits to it anyway). As
  956. * 0.1.2.x dies out, the first case will go away, and the second one is
  957. * "mostly harmless", so a fix can wait until somebody is bored.
  958. */
  959. SMARTLIST_FOREACH_BEGIN(group, or_connection_t *, or_conn) {
  960. if (or_conn->base_.marked_for_close ||
  961. connection_or_is_bad_for_new_circs(or_conn) ||
  962. or_conn->base_.state != OR_CONN_STATE_OPEN)
  963. continue;
  964. if (or_conn != best &&
  965. channel_is_better(TLS_CHAN_TO_BASE(best->chan),
  966. TLS_CHAN_TO_BASE(or_conn->chan))) {
  967. /* This isn't the best conn, _and_ the best conn is better than it */
  968. if (best->is_canonical) {
  969. log_info(LD_OR,
  970. "Marking OR conn to %s:%d as unsuitable for new circuits: "
  971. "(fd "TOR_SOCKET_T_FORMAT", %d secs old). "
  972. "We have a better canonical one "
  973. "(fd "TOR_SOCKET_T_FORMAT"; %d secs old).",
  974. or_conn->base_.address, or_conn->base_.port, or_conn->base_.s,
  975. (int)(now - or_conn->base_.timestamp_created),
  976. best->base_.s, (int)(now - best->base_.timestamp_created));
  977. connection_or_mark_bad_for_new_circs(or_conn);
  978. } else if (!tor_addr_compare(&or_conn->real_addr,
  979. &best->real_addr, CMP_EXACT)) {
  980. log_info(LD_OR,
  981. "Marking OR conn to %s:%d as unsuitable for new circuits: "
  982. "(fd "TOR_SOCKET_T_FORMAT", %d secs old). We have a better "
  983. "one with the "
  984. "same address (fd "TOR_SOCKET_T_FORMAT"; %d secs old).",
  985. or_conn->base_.address, or_conn->base_.port, or_conn->base_.s,
  986. (int)(now - or_conn->base_.timestamp_created),
  987. best->base_.s, (int)(now - best->base_.timestamp_created));
  988. connection_or_mark_bad_for_new_circs(or_conn);
  989. }
  990. }
  991. } SMARTLIST_FOREACH_END(or_conn);
  992. }
  993. /* Lifetime of a connection failure. After that, we'll retry. This is in
  994. * seconds. */
  995. #define OR_CONNECT_FAILURE_LIFETIME 60
  996. /* The interval to use with when to clean up the failure cache. */
  997. #define OR_CONNECT_FAILURE_CLEANUP_INTERVAL 60
  998. /* When is the next time we have to cleanup the failure map. We keep this
  999. * because we clean it opportunistically. */
  1000. static time_t or_connect_failure_map_next_cleanup_ts = 0;
  1001. /* OR connection failure entry data structure. It is kept in the connection
  1002. * failure map defined below and indexed by OR identity digest, address and
  1003. * port.
  1004. *
  1005. * We need to identify a connection failure with these three values because we
  1006. * want to avoid to wrongfully blacklist a relay if someone is trying to
  1007. * extend to a known identity digest but with the wrong IP/port. For instance,
  1008. * it can happen if a relay changed its port but the client still has an old
  1009. * descriptor with the old port. We want to stop connecting to that
  1010. * IP/port/identity all together, not only the relay identity. */
  1011. typedef struct or_connect_failure_entry_t {
  1012. HT_ENTRY(or_connect_failure_entry_t) node;
  1013. /* Identity digest of the connection where it is connecting to. */
  1014. uint8_t identity_digest[DIGEST_LEN];
  1015. /* This is the connection address from the base connection_t. After the
  1016. * connection is checked for canonicity, the base address should represent
  1017. * what we know instead of where we are connecting to. This is what we need
  1018. * so we can correlate known relays within the consensus. */
  1019. tor_addr_t addr;
  1020. uint16_t port;
  1021. /* Last time we were unable to connect. */
  1022. time_t last_failed_connect_ts;
  1023. } or_connect_failure_entry_t;
  1024. /* Map where we keep connection failure entries. They are indexed by addr,
  1025. * port and identity digest. */
  1026. static HT_HEAD(or_connect_failure_ht, or_connect_failure_entry_t)
  1027. or_connect_failures_map = HT_INITIALIZER();
  1028. /* Helper: Hashtable equal function. Return 1 if equal else 0. */
  1029. static int
  1030. or_connect_failure_ht_eq(const or_connect_failure_entry_t *a,
  1031. const or_connect_failure_entry_t *b)
  1032. {
  1033. return fast_memeq(a->identity_digest, b->identity_digest, DIGEST_LEN) &&
  1034. tor_addr_eq(&a->addr, &b->addr) &&
  1035. a->port == b->port;
  1036. }
  1037. /* Helper: Return the hash for the hashtable of the given entry. For this
  1038. * table, it is a combination of address, port and identity digest. */
  1039. static unsigned int
  1040. or_connect_failure_ht_hash(const or_connect_failure_entry_t *entry)
  1041. {
  1042. size_t offset = 0, addr_size;
  1043. const void *addr_ptr;
  1044. /* Largest size is IPv6 and IPv4 is smaller so it is fine. */
  1045. uint8_t data[16 + sizeof(uint16_t) + DIGEST_LEN];
  1046. /* Get the right address bytes depending on the family. */
  1047. switch (tor_addr_family(&entry->addr)) {
  1048. case AF_INET:
  1049. addr_size = 4;
  1050. addr_ptr = &entry->addr.addr.in_addr.s_addr;
  1051. break;
  1052. case AF_INET6:
  1053. addr_size = 16;
  1054. addr_ptr = &entry->addr.addr.in6_addr.s6_addr;
  1055. break;
  1056. default:
  1057. tor_assert_nonfatal_unreached();
  1058. return 0;
  1059. }
  1060. memcpy(data, addr_ptr, addr_size);
  1061. offset += addr_size;
  1062. memcpy(data + offset, entry->identity_digest, DIGEST_LEN);
  1063. offset += DIGEST_LEN;
  1064. set_uint16(data + offset, entry->port);
  1065. offset += sizeof(uint16_t);
  1066. return (unsigned int) siphash24g(data, offset);
  1067. }
  1068. HT_PROTOTYPE(or_connect_failure_ht, or_connect_failure_entry_t, node,
  1069. or_connect_failure_ht_hash, or_connect_failure_ht_eq)
  1070. HT_GENERATE2(or_connect_failure_ht, or_connect_failure_entry_t, node,
  1071. or_connect_failure_ht_hash, or_connect_failure_ht_eq,
  1072. 0.6, tor_reallocarray_, tor_free_)
  1073. /* Initialize a given connect failure entry with the given identity_digest,
  1074. * addr and port. All field are optional except ocf. */
  1075. static void
  1076. or_connect_failure_init(const char *identity_digest, const tor_addr_t *addr,
  1077. uint16_t port, or_connect_failure_entry_t *ocf)
  1078. {
  1079. tor_assert(ocf);
  1080. if (identity_digest) {
  1081. memcpy(ocf->identity_digest, identity_digest,
  1082. sizeof(ocf->identity_digest));
  1083. }
  1084. if (addr) {
  1085. tor_addr_copy(&ocf->addr, addr);
  1086. }
  1087. ocf->port = port;
  1088. }
  1089. /* Return a newly allocated connection failure entry. It is initialized with
  1090. * the given or_conn data. This can't fail. */
  1091. static or_connect_failure_entry_t *
  1092. or_connect_failure_new(const or_connection_t *or_conn)
  1093. {
  1094. or_connect_failure_entry_t *ocf = tor_malloc_zero(sizeof(*ocf));
  1095. or_connect_failure_init(or_conn->identity_digest, &or_conn->real_addr,
  1096. TO_CONN(or_conn)->port, ocf);
  1097. return ocf;
  1098. }
  1099. /* Return a connection failure entry matching the given or_conn. NULL is
  1100. * returned if not found. */
  1101. static or_connect_failure_entry_t *
  1102. or_connect_failure_find(const or_connection_t *or_conn)
  1103. {
  1104. or_connect_failure_entry_t lookup;
  1105. tor_assert(or_conn);
  1106. or_connect_failure_init(or_conn->identity_digest, &TO_CONN(or_conn)->addr,
  1107. TO_CONN(or_conn)->port, &lookup);
  1108. return HT_FIND(or_connect_failure_ht, &or_connect_failures_map, &lookup);
  1109. }
  1110. /* Note down in the connection failure cache that a failure occurred on the
  1111. * given or_conn. */
  1112. STATIC void
  1113. note_or_connect_failed(const or_connection_t *or_conn)
  1114. {
  1115. or_connect_failure_entry_t *ocf = NULL;
  1116. tor_assert(or_conn);
  1117. ocf = or_connect_failure_find(or_conn);
  1118. if (ocf == NULL) {
  1119. ocf = or_connect_failure_new(or_conn);
  1120. HT_INSERT(or_connect_failure_ht, &or_connect_failures_map, ocf);
  1121. }
  1122. ocf->last_failed_connect_ts = approx_time();
  1123. }
  1124. /* Cleanup the connection failure cache and remove all entries below the
  1125. * given cutoff. */
  1126. static void
  1127. or_connect_failure_map_cleanup(time_t cutoff)
  1128. {
  1129. or_connect_failure_entry_t **ptr, **next, *entry;
  1130. for (ptr = HT_START(or_connect_failure_ht, &or_connect_failures_map);
  1131. ptr != NULL; ptr = next) {
  1132. entry = *ptr;
  1133. if (entry->last_failed_connect_ts <= cutoff) {
  1134. next = HT_NEXT_RMV(or_connect_failure_ht, &or_connect_failures_map, ptr);
  1135. tor_free(entry);
  1136. } else {
  1137. next = HT_NEXT(or_connect_failure_ht, &or_connect_failures_map, ptr);
  1138. }
  1139. }
  1140. }
  1141. /* Return true iff the given OR connection can connect to its destination that
  1142. * is the triplet identity_digest, address and port.
  1143. *
  1144. * The or_conn MUST have gone through connection_or_check_canonicity() so the
  1145. * base address is properly set to what we know or doesn't know. */
  1146. STATIC int
  1147. should_connect_to_relay(const or_connection_t *or_conn)
  1148. {
  1149. time_t now, cutoff;
  1150. time_t connect_failed_since_ts = 0;
  1151. or_connect_failure_entry_t *ocf;
  1152. tor_assert(or_conn);
  1153. now = approx_time();
  1154. cutoff = now - OR_CONNECT_FAILURE_LIFETIME;
  1155. /* Opportunistically try to cleanup the failure cache. We do that at regular
  1156. * interval so it doesn't grow too big. */
  1157. if (or_connect_failure_map_next_cleanup_ts <= now) {
  1158. or_connect_failure_map_cleanup(cutoff);
  1159. or_connect_failure_map_next_cleanup_ts =
  1160. now + OR_CONNECT_FAILURE_CLEANUP_INTERVAL;
  1161. }
  1162. /* Look if we have failed previously to the same destination as this
  1163. * OR connection. */
  1164. ocf = or_connect_failure_find(or_conn);
  1165. if (ocf) {
  1166. connect_failed_since_ts = ocf->last_failed_connect_ts;
  1167. }
  1168. /* If we do have an unable to connect timestamp and it is below cutoff, we
  1169. * can connect. Or we have never failed before so let it connect. */
  1170. if (connect_failed_since_ts > cutoff) {
  1171. goto no_connect;
  1172. }
  1173. /* Ok we can connect! */
  1174. return 1;
  1175. no_connect:
  1176. return 0;
  1177. }
  1178. /** <b>conn</b> is in the 'connecting' state, and it failed to complete
  1179. * a TCP connection. Send notifications appropriately.
  1180. *
  1181. * <b>reason</b> specifies the or_conn_end_reason for the failure;
  1182. * <b>msg</b> specifies the strerror-style error message.
  1183. */
  1184. void
  1185. connection_or_connect_failed(or_connection_t *conn,
  1186. int reason, const char *msg)
  1187. {
  1188. control_event_or_conn_status(conn, OR_CONN_EVENT_FAILED, reason);
  1189. if (!authdir_mode_tests_reachability(get_options()))
  1190. control_event_bootstrap_prob_or(msg, reason, conn);
  1191. note_or_connect_failed(conn);
  1192. }
  1193. /** <b>conn</b> got an error in connection_handle_read_impl() or
  1194. * connection_handle_write_impl() and is going to die soon.
  1195. *
  1196. * <b>reason</b> specifies the or_conn_end_reason for the failure;
  1197. * <b>msg</b> specifies the strerror-style error message.
  1198. */
  1199. void
  1200. connection_or_notify_error(or_connection_t *conn,
  1201. int reason, const char *msg)
  1202. {
  1203. channel_t *chan;
  1204. tor_assert(conn);
  1205. /* If we're connecting, call connect_failed() too */
  1206. if (TO_CONN(conn)->state == OR_CONN_STATE_CONNECTING)
  1207. connection_or_connect_failed(conn, reason, msg);
  1208. /* Tell the controlling channel if we have one */
  1209. if (conn->chan) {
  1210. chan = TLS_CHAN_TO_BASE(conn->chan);
  1211. /* Don't transition if we're already in closing, closed or error */
  1212. if (!CHANNEL_CONDEMNED(chan)) {
  1213. channel_close_for_error(chan);
  1214. }
  1215. }
  1216. /* No need to mark for error because connection.c is about to do that */
  1217. }
  1218. /** Launch a new OR connection to <b>addr</b>:<b>port</b> and expect to
  1219. * handshake with an OR with identity digest <b>id_digest</b>. Optionally,
  1220. * pass in a pointer to a channel using this connection.
  1221. *
  1222. * If <b>id_digest</b> is me, do nothing. If we're already connected to it,
  1223. * return that connection. If the connect() is in progress, set the
  1224. * new conn's state to 'connecting' and return it. If connect() succeeds,
  1225. * call connection_tls_start_handshake() on it.
  1226. *
  1227. * This function is called from router_retry_connections(), for
  1228. * ORs connecting to ORs, and circuit_establish_circuit(), for
  1229. * OPs connecting to ORs.
  1230. *
  1231. * Return the launched conn, or NULL if it failed.
  1232. */
  1233. MOCK_IMPL(or_connection_t *,
  1234. connection_or_connect, (const tor_addr_t *_addr, uint16_t port,
  1235. const char *id_digest,
  1236. const ed25519_public_key_t *ed_id,
  1237. channel_tls_t *chan))
  1238. {
  1239. or_connection_t *conn;
  1240. const or_options_t *options = get_options();
  1241. int socket_error = 0;
  1242. tor_addr_t addr;
  1243. int r;
  1244. tor_addr_t proxy_addr;
  1245. uint16_t proxy_port;
  1246. int proxy_type;
  1247. tor_assert(_addr);
  1248. tor_assert(id_digest);
  1249. tor_addr_copy(&addr, _addr);
  1250. if (server_mode(options) && router_digest_is_me(id_digest)) {
  1251. log_info(LD_PROTOCOL,"Client asked me to connect to myself. Refusing.");
  1252. return NULL;
  1253. }
  1254. if (server_mode(options) && router_ed25519_id_is_me(ed_id)) {
  1255. log_info(LD_PROTOCOL,"Client asked me to connect to myself by Ed25519 "
  1256. "identity. Refusing.");
  1257. return NULL;
  1258. }
  1259. conn = or_connection_new(CONN_TYPE_OR, tor_addr_family(&addr));
  1260. /*
  1261. * Set up conn so it's got all the data we need to remember for channels
  1262. *
  1263. * This stuff needs to happen before connection_or_init_conn_from_address()
  1264. * so connection_or_set_identity_digest() and such know where to look to
  1265. * keep the channel up to date.
  1266. */
  1267. conn->chan = chan;
  1268. chan->conn = conn;
  1269. connection_or_init_conn_from_address(conn, &addr, port, id_digest, ed_id, 1);
  1270. /* We have a proper OR connection setup, now check if we can connect to it
  1271. * that is we haven't had a failure earlier. This is to avoid to try to
  1272. * constantly connect to relays that we think are not reachable. */
  1273. if (!should_connect_to_relay(conn)) {
  1274. log_info(LD_GENERAL, "Can't connect to identity %s at %s:%u because we "
  1275. "failed earlier. Refusing.",
  1276. hex_str(id_digest, DIGEST_LEN), fmt_addr(&TO_CONN(conn)->addr),
  1277. TO_CONN(conn)->port);
  1278. connection_free_(TO_CONN(conn));
  1279. return NULL;
  1280. }
  1281. connection_or_change_state(conn, OR_CONN_STATE_CONNECTING);
  1282. control_event_or_conn_status(conn, OR_CONN_EVENT_LAUNCHED, 0);
  1283. conn->is_outgoing = 1;
  1284. /* If we are using a proxy server, find it and use it. */
  1285. r = get_proxy_addrport(&proxy_addr, &proxy_port, &proxy_type, TO_CONN(conn));
  1286. if (r == 0) {
  1287. conn->proxy_type = proxy_type;
  1288. if (proxy_type != PROXY_NONE) {
  1289. tor_addr_copy(&addr, &proxy_addr);
  1290. port = proxy_port;
  1291. conn->base_.proxy_state = PROXY_INFANT;
  1292. }
  1293. } else {
  1294. /* get_proxy_addrport() might fail if we have a Bridge line that
  1295. references a transport, but no ClientTransportPlugin lines
  1296. defining its transport proxy. If this is the case, let's try to
  1297. output a useful log message to the user. */
  1298. const char *transport_name =
  1299. find_transport_name_by_bridge_addrport(&TO_CONN(conn)->addr,
  1300. TO_CONN(conn)->port);
  1301. if (transport_name) {
  1302. log_warn(LD_GENERAL, "We were supposed to connect to bridge '%s' "
  1303. "using pluggable transport '%s', but we can't find a pluggable "
  1304. "transport proxy supporting '%s'. This can happen if you "
  1305. "haven't provided a ClientTransportPlugin line, or if "
  1306. "your pluggable transport proxy stopped running.",
  1307. fmt_addrport(&TO_CONN(conn)->addr, TO_CONN(conn)->port),
  1308. transport_name, transport_name);
  1309. control_event_bootstrap_prob_or(
  1310. "Can't connect to bridge",
  1311. END_OR_CONN_REASON_PT_MISSING,
  1312. conn);
  1313. } else {
  1314. log_warn(LD_GENERAL, "Tried to connect to '%s' through a proxy, but "
  1315. "the proxy address could not be found.",
  1316. fmt_addrport(&TO_CONN(conn)->addr, TO_CONN(conn)->port));
  1317. }
  1318. connection_free_(TO_CONN(conn));
  1319. return NULL;
  1320. }
  1321. switch (connection_connect(TO_CONN(conn), conn->base_.address,
  1322. &addr, port, &socket_error)) {
  1323. case -1:
  1324. /* We failed to establish a connection probably because of a local
  1325. * error. No need to blame the guard in this case. Notify the networking
  1326. * system of this failure. */
  1327. connection_or_connect_failed(conn,
  1328. errno_to_orconn_end_reason(socket_error),
  1329. tor_socket_strerror(socket_error));
  1330. connection_free_(TO_CONN(conn));
  1331. return NULL;
  1332. case 0:
  1333. connection_watch_events(TO_CONN(conn), READ_EVENT | WRITE_EVENT);
  1334. /* writable indicates finish, readable indicates broken link,
  1335. error indicates broken link on windows */
  1336. return conn;
  1337. /* case 1: fall through */
  1338. }
  1339. if (connection_or_finished_connecting(conn) < 0) {
  1340. /* already marked for close */
  1341. return NULL;
  1342. }
  1343. return conn;
  1344. }
  1345. /** Mark orconn for close and transition the associated channel, if any, to
  1346. * the closing state.
  1347. *
  1348. * It's safe to call this and connection_or_close_for_error() any time, and
  1349. * channel layer will treat it as a connection closing for reasons outside
  1350. * its control, like the remote end closing it. It can also be a local
  1351. * reason that's specific to connection_t/or_connection_t rather than
  1352. * the channel mechanism, such as expiration of old connections in
  1353. * run_connection_housekeeping(). If you want to close a channel_t
  1354. * from somewhere that logically works in terms of generic channels
  1355. * rather than connections, use channel_mark_for_close(); see also
  1356. * the comment on that function in channel.c.
  1357. */
  1358. void
  1359. connection_or_close_normally(or_connection_t *orconn, int flush)
  1360. {
  1361. channel_t *chan = NULL;
  1362. tor_assert(orconn);
  1363. if (flush) connection_mark_and_flush_internal(TO_CONN(orconn));
  1364. else connection_mark_for_close_internal(TO_CONN(orconn));
  1365. if (orconn->chan) {
  1366. chan = TLS_CHAN_TO_BASE(orconn->chan);
  1367. /* Don't transition if we're already in closing, closed or error */
  1368. if (!CHANNEL_CONDEMNED(chan)) {
  1369. channel_close_from_lower_layer(chan);
  1370. }
  1371. }
  1372. }
  1373. /** Mark orconn for close and transition the associated channel, if any, to
  1374. * the error state.
  1375. */
  1376. MOCK_IMPL(void,
  1377. connection_or_close_for_error,(or_connection_t *orconn, int flush))
  1378. {
  1379. channel_t *chan = NULL;
  1380. tor_assert(orconn);
  1381. if (flush) connection_mark_and_flush_internal(TO_CONN(orconn));
  1382. else connection_mark_for_close_internal(TO_CONN(orconn));
  1383. if (orconn->chan) {
  1384. chan = TLS_CHAN_TO_BASE(orconn->chan);
  1385. /* Don't transition if we're already in closing, closed or error */
  1386. if (!CHANNEL_CONDEMNED(chan)) {
  1387. channel_close_for_error(chan);
  1388. }
  1389. }
  1390. }
  1391. /** Begin the tls handshake with <b>conn</b>. <b>receiving</b> is 0 if
  1392. * we initiated the connection, else it's 1.
  1393. *
  1394. * Assign a new tls object to conn->tls, begin reading on <b>conn</b>, and
  1395. * pass <b>conn</b> to connection_tls_continue_handshake().
  1396. *
  1397. * Return -1 if <b>conn</b> is broken, else return 0.
  1398. */
  1399. MOCK_IMPL(int,
  1400. connection_tls_start_handshake,(or_connection_t *conn, int receiving))
  1401. {
  1402. channel_listener_t *chan_listener;
  1403. channel_t *chan;
  1404. /* Incoming connections will need a new channel passed to the
  1405. * channel_tls_listener */
  1406. if (receiving) {
  1407. /* It shouldn't already be set */
  1408. tor_assert(!(conn->chan));
  1409. chan_listener = channel_tls_get_listener();
  1410. if (!chan_listener) {
  1411. chan_listener = channel_tls_start_listener();
  1412. command_setup_listener(chan_listener);
  1413. }
  1414. chan = channel_tls_handle_incoming(conn);
  1415. channel_listener_queue_incoming(chan_listener, chan);
  1416. }
  1417. connection_or_change_state(conn, OR_CONN_STATE_TLS_HANDSHAKING);
  1418. tor_assert(!conn->tls);
  1419. conn->tls = tor_tls_new(conn->base_.s, receiving);
  1420. if (!conn->tls) {
  1421. log_warn(LD_BUG,"tor_tls_new failed. Closing.");
  1422. return -1;
  1423. }
  1424. tor_tls_set_logged_address(conn->tls, // XXX client and relay?
  1425. escaped_safe_str(conn->base_.address));
  1426. connection_start_reading(TO_CONN(conn));
  1427. log_debug(LD_HANDSHAKE,"starting TLS handshake on fd "TOR_SOCKET_T_FORMAT,
  1428. conn->base_.s);
  1429. if (connection_tls_continue_handshake(conn) < 0)
  1430. return -1;
  1431. return 0;
  1432. }
  1433. /** Block all future attempts to renegotiate on 'conn' */
  1434. void
  1435. connection_or_block_renegotiation(or_connection_t *conn)
  1436. {
  1437. tor_tls_t *tls = conn->tls;
  1438. if (!tls)
  1439. return;
  1440. tor_tls_set_renegotiate_callback(tls, NULL, NULL);
  1441. tor_tls_block_renegotiation(tls);
  1442. }
  1443. /** Invoked on the server side from inside tor_tls_read() when the server
  1444. * gets a successful TLS renegotiation from the client. */
  1445. static void
  1446. connection_or_tls_renegotiated_cb(tor_tls_t *tls, void *_conn)
  1447. {
  1448. or_connection_t *conn = _conn;
  1449. (void)tls;
  1450. /* Don't invoke this again. */
  1451. connection_or_block_renegotiation(conn);
  1452. if (connection_tls_finish_handshake(conn) < 0) {
  1453. /* XXXX_TLS double-check that it's ok to do this from inside read. */
  1454. /* XXXX_TLS double-check that this verifies certificates. */
  1455. connection_or_close_for_error(conn, 0);
  1456. }
  1457. }
  1458. /** Move forward with the tls handshake. If it finishes, hand
  1459. * <b>conn</b> to connection_tls_finish_handshake().
  1460. *
  1461. * Return -1 if <b>conn</b> is broken, else return 0.
  1462. */
  1463. int
  1464. connection_tls_continue_handshake(or_connection_t *conn)
  1465. {
  1466. int result;
  1467. check_no_tls_errors();
  1468. tor_assert(conn->base_.state == OR_CONN_STATE_TLS_HANDSHAKING);
  1469. // log_notice(LD_OR, "Continue handshake with %p", conn->tls);
  1470. result = tor_tls_handshake(conn->tls);
  1471. // log_notice(LD_OR, "Result: %d", result);
  1472. switch (result) {
  1473. CASE_TOR_TLS_ERROR_ANY:
  1474. log_info(LD_OR,"tls error [%s]. breaking connection.",
  1475. tor_tls_err_to_string(result));
  1476. return -1;
  1477. case TOR_TLS_DONE:
  1478. if (! tor_tls_used_v1_handshake(conn->tls)) {
  1479. if (!tor_tls_is_server(conn->tls)) {
  1480. tor_assert(conn->base_.state == OR_CONN_STATE_TLS_HANDSHAKING);
  1481. return connection_or_launch_v3_or_handshake(conn);
  1482. } else {
  1483. /* v2/v3 handshake, but we are not a client. */
  1484. log_debug(LD_OR, "Done with initial SSL handshake (server-side). "
  1485. "Expecting renegotiation or VERSIONS cell");
  1486. tor_tls_set_renegotiate_callback(conn->tls,
  1487. connection_or_tls_renegotiated_cb,
  1488. conn);
  1489. connection_or_change_state(conn,
  1490. OR_CONN_STATE_TLS_SERVER_RENEGOTIATING);
  1491. connection_stop_writing(TO_CONN(conn));
  1492. connection_start_reading(TO_CONN(conn));
  1493. return 0;
  1494. }
  1495. }
  1496. tor_assert(tor_tls_is_server(conn->tls));
  1497. return connection_tls_finish_handshake(conn);
  1498. case TOR_TLS_WANTWRITE:
  1499. connection_start_writing(TO_CONN(conn));
  1500. log_debug(LD_OR,"wanted write");
  1501. return 0;
  1502. case TOR_TLS_WANTREAD: /* handshaking conns are *always* reading */
  1503. log_debug(LD_OR,"wanted read");
  1504. return 0;
  1505. case TOR_TLS_CLOSE:
  1506. log_info(LD_OR,"tls closed. breaking connection.");
  1507. return -1;
  1508. }
  1509. return 0;
  1510. }
  1511. /** Return 1 if we initiated this connection, or 0 if it started
  1512. * out as an incoming connection.
  1513. */
  1514. int
  1515. connection_or_nonopen_was_started_here(or_connection_t *conn)
  1516. {
  1517. tor_assert(conn->base_.type == CONN_TYPE_OR ||
  1518. conn->base_.type == CONN_TYPE_EXT_OR);
  1519. if (!conn->tls)
  1520. return 1; /* it's still in proxy states or something */
  1521. if (conn->handshake_state)
  1522. return conn->handshake_state->started_here;
  1523. return !tor_tls_is_server(conn->tls);
  1524. }
  1525. /** <b>Conn</b> just completed its handshake. Return 0 if all is well, and
  1526. * return -1 if they are lying, broken, or otherwise something is wrong.
  1527. *
  1528. * If we initiated this connection (<b>started_here</b> is true), make sure
  1529. * the other side sent a correctly formed certificate. If I initiated the
  1530. * connection, make sure it's the right relay by checking the certificate.
  1531. *
  1532. * Otherwise (if we _didn't_ initiate this connection), it's okay for
  1533. * the certificate to be weird or absent.
  1534. *
  1535. * If we return 0, and the certificate is as expected, write a hash of the
  1536. * identity key into <b>digest_rcvd_out</b>, which must have DIGEST_LEN
  1537. * space in it.
  1538. * If the certificate is invalid or missing on an incoming connection,
  1539. * we return 0 and set <b>digest_rcvd_out</b> to DIGEST_LEN NUL bytes.
  1540. * (If we return -1, the contents of this buffer are undefined.)
  1541. *
  1542. * As side effects,
  1543. * 1) Set conn->circ_id_type according to tor-spec.txt.
  1544. * 2) If we're an authdirserver and we initiated the connection: drop all
  1545. * descriptors that claim to be on that IP/port but that aren't
  1546. * this relay; and note that this relay is reachable.
  1547. * 3) If this is a bridge and we didn't configure its identity
  1548. * fingerprint, remember the keyid we just learned.
  1549. */
  1550. static int
  1551. connection_or_check_valid_tls_handshake(or_connection_t *conn,
  1552. int started_here,
  1553. char *digest_rcvd_out)
  1554. {
  1555. crypto_pk_t *identity_rcvd=NULL;
  1556. const or_options_t *options = get_options();
  1557. int severity = server_mode(options) ? LOG_PROTOCOL_WARN : LOG_WARN;
  1558. const char *safe_address =
  1559. started_here ? conn->base_.address :
  1560. safe_str_client(conn->base_.address);
  1561. const char *conn_type = started_here ? "outgoing" : "incoming";
  1562. int has_cert = 0;
  1563. check_no_tls_errors();
  1564. has_cert = tor_tls_peer_has_cert(conn->tls);
  1565. if (started_here && !has_cert) {
  1566. log_info(LD_HANDSHAKE,"Tried connecting to router at %s:%d, but it didn't "
  1567. "send a cert! Closing.",
  1568. safe_address, conn->base_.port);
  1569. return -1;
  1570. } else if (!has_cert) {
  1571. log_debug(LD_HANDSHAKE,"Got incoming connection with no certificate. "
  1572. "That's ok.");
  1573. }
  1574. check_no_tls_errors();
  1575. if (has_cert) {
  1576. int v = tor_tls_verify(started_here?severity:LOG_INFO,
  1577. conn->tls, &identity_rcvd);
  1578. if (started_here && v<0) {
  1579. log_fn(severity,LD_HANDSHAKE,"Tried connecting to router at %s:%d: It"
  1580. " has a cert but it's invalid. Closing.",
  1581. safe_address, conn->base_.port);
  1582. return -1;
  1583. } else if (v<0) {
  1584. log_info(LD_HANDSHAKE,"Incoming connection gave us an invalid cert "
  1585. "chain; ignoring.");
  1586. } else {
  1587. log_debug(LD_HANDSHAKE,
  1588. "The certificate seems to be valid on %s connection "
  1589. "with %s:%d", conn_type, safe_address, conn->base_.port);
  1590. }
  1591. check_no_tls_errors();
  1592. }
  1593. if (identity_rcvd) {
  1594. if (crypto_pk_get_digest(identity_rcvd, digest_rcvd_out) < 0) {
  1595. crypto_pk_free(identity_rcvd);
  1596. return -1;
  1597. }
  1598. } else {
  1599. memset(digest_rcvd_out, 0, DIGEST_LEN);
  1600. }
  1601. tor_assert(conn->chan);
  1602. channel_set_circid_type(TLS_CHAN_TO_BASE(conn->chan), identity_rcvd, 1);
  1603. crypto_pk_free(identity_rcvd);
  1604. if (started_here) {
  1605. /* A TLS handshake can't teach us an Ed25519 ID, so we set it to NULL
  1606. * here. */
  1607. log_debug(LD_HANDSHAKE, "Calling client_learned_peer_id from "
  1608. "check_valid_tls_handshake");
  1609. return connection_or_client_learned_peer_id(conn,
  1610. (const uint8_t*)digest_rcvd_out,
  1611. NULL);
  1612. }
  1613. return 0;
  1614. }
  1615. /** Called when we (as a connection initiator) have definitively,
  1616. * authenticatedly, learned that ID of the Tor instance on the other
  1617. * side of <b>conn</b> is <b>rsa_peer_id</b> and optionally <b>ed_peer_id</b>.
  1618. * For v1 and v2 handshakes,
  1619. * this is right after we get a certificate chain in a TLS handshake
  1620. * or renegotiation. For v3+ handshakes, this is right after we get a
  1621. * certificate chain in a CERTS cell.
  1622. *
  1623. * If we did not know the ID before, record the one we got.
  1624. *
  1625. * If we wanted an ID, but we didn't get the one we expected, log a message
  1626. * and return -1.
  1627. * On relays:
  1628. * - log a protocol warning whenever the fingerprints don't match;
  1629. * On clients:
  1630. * - if a relay's fingerprint doesn't match, log a warning;
  1631. * - if we don't have updated relay fingerprints from a recent consensus, and
  1632. * a fallback directory mirror's hard-coded fingerprint has changed, log an
  1633. * info explaining that we will try another fallback.
  1634. *
  1635. * If we're testing reachability, remember what we learned.
  1636. *
  1637. * Return 0 on success, -1 on failure.
  1638. */
  1639. int
  1640. connection_or_client_learned_peer_id(or_connection_t *conn,
  1641. const uint8_t *rsa_peer_id,
  1642. const ed25519_public_key_t *ed_peer_id)
  1643. {
  1644. const or_options_t *options = get_options();
  1645. channel_tls_t *chan_tls = conn->chan;
  1646. channel_t *chan = channel_tls_to_base(chan_tls);
  1647. int changed_identity = 0;
  1648. tor_assert(chan);
  1649. const int expected_rsa_key =
  1650. ! tor_digest_is_zero(conn->identity_digest);
  1651. const int expected_ed_key =
  1652. ! ed25519_public_key_is_zero(&chan->ed25519_identity);
  1653. log_info(LD_HANDSHAKE, "learned peer id for %p (%s): %s, %s",
  1654. conn,
  1655. safe_str_client(conn->base_.address),
  1656. hex_str((const char*)rsa_peer_id, DIGEST_LEN),
  1657. ed25519_fmt(ed_peer_id));
  1658. if (! expected_rsa_key && ! expected_ed_key) {
  1659. log_info(LD_HANDSHAKE, "(we had no ID in mind when we made this "
  1660. "connection.");
  1661. connection_or_set_identity_digest(conn,
  1662. (const char*)rsa_peer_id, ed_peer_id);
  1663. tor_free(conn->nickname);
  1664. conn->nickname = tor_malloc(HEX_DIGEST_LEN+2);
  1665. conn->nickname[0] = '$';
  1666. base16_encode(conn->nickname+1, HEX_DIGEST_LEN+1,
  1667. conn->identity_digest, DIGEST_LEN);
  1668. log_info(LD_HANDSHAKE, "Connected to router %s at %s:%d without knowing "
  1669. "its key. Hoping for the best.",
  1670. conn->nickname, conn->base_.address, conn->base_.port);
  1671. /* if it's a bridge and we didn't know its identity fingerprint, now
  1672. * we do -- remember it for future attempts. */
  1673. learned_router_identity(&conn->base_.addr, conn->base_.port,
  1674. (const char*)rsa_peer_id, ed_peer_id);
  1675. changed_identity = 1;
  1676. }
  1677. const int rsa_mismatch = expected_rsa_key &&
  1678. tor_memneq(rsa_peer_id, conn->identity_digest, DIGEST_LEN);
  1679. /* It only counts as an ed25519 mismatch if we wanted an ed25519 identity
  1680. * and didn't get it. It's okay if we get one that we didn't ask for. */
  1681. const int ed25519_mismatch =
  1682. expected_ed_key &&
  1683. (ed_peer_id == NULL ||
  1684. ! ed25519_pubkey_eq(&chan->ed25519_identity, ed_peer_id));
  1685. if (rsa_mismatch || ed25519_mismatch) {
  1686. /* I was aiming for a particular digest. I didn't get it! */
  1687. char seen_rsa[HEX_DIGEST_LEN+1];
  1688. char expected_rsa[HEX_DIGEST_LEN+1];
  1689. char seen_ed[ED25519_BASE64_LEN+1];
  1690. char expected_ed[ED25519_BASE64_LEN+1];
  1691. base16_encode(seen_rsa, sizeof(seen_rsa),
  1692. (const char*)rsa_peer_id, DIGEST_LEN);
  1693. base16_encode(expected_rsa, sizeof(expected_rsa), conn->identity_digest,
  1694. DIGEST_LEN);
  1695. if (ed_peer_id) {
  1696. ed25519_public_to_base64(seen_ed, ed_peer_id);
  1697. } else {
  1698. strlcpy(seen_ed, "no ed25519 key", sizeof(seen_ed));
  1699. }
  1700. if (! ed25519_public_key_is_zero(&chan->ed25519_identity)) {
  1701. ed25519_public_to_base64(expected_ed, &chan->ed25519_identity);
  1702. } else {
  1703. strlcpy(expected_ed, "no ed25519 key", sizeof(expected_ed));
  1704. }
  1705. const int using_hardcoded_fingerprints =
  1706. !networkstatus_get_reasonably_live_consensus(time(NULL),
  1707. usable_consensus_flavor());
  1708. const int is_fallback_fingerprint = router_digest_is_fallback_dir(
  1709. conn->identity_digest);
  1710. const int is_authority_fingerprint = router_digest_is_trusted_dir(
  1711. conn->identity_digest);
  1712. int severity;
  1713. const char *extra_log = "";
  1714. if (server_mode(options)) {
  1715. severity = LOG_PROTOCOL_WARN;
  1716. } else {
  1717. if (using_hardcoded_fingerprints) {
  1718. /* We need to do the checks in this order, because the list of
  1719. * fallbacks includes the list of authorities */
  1720. if (is_authority_fingerprint) {
  1721. severity = LOG_WARN;
  1722. } else if (is_fallback_fingerprint) {
  1723. /* we expect a small number of fallbacks to change from their
  1724. * hard-coded fingerprints over the life of a release */
  1725. severity = LOG_INFO;
  1726. extra_log = " Tor will try a different fallback.";
  1727. } else {
  1728. /* it's a bridge, it's either a misconfiguration, or unexpected */
  1729. severity = LOG_WARN;
  1730. }
  1731. } else {
  1732. /* a relay has changed its fingerprint from the one in the consensus */
  1733. severity = LOG_WARN;
  1734. }
  1735. }
  1736. log_fn(severity, LD_HANDSHAKE,
  1737. "Tried connecting to router at %s:%d, but RSA identity key was not "
  1738. "as expected: wanted %s + %s but got %s + %s.%s",
  1739. conn->base_.address, conn->base_.port,
  1740. expected_rsa, expected_ed, seen_rsa, seen_ed, extra_log);
  1741. /* Tell the new guard API about the channel failure */
  1742. entry_guard_chan_failed(TLS_CHAN_TO_BASE(conn->chan));
  1743. control_event_or_conn_status(conn, OR_CONN_EVENT_FAILED,
  1744. END_OR_CONN_REASON_OR_IDENTITY);
  1745. if (!authdir_mode_tests_reachability(options))
  1746. control_event_bootstrap_prob_or(
  1747. "Unexpected identity in router certificate",
  1748. END_OR_CONN_REASON_OR_IDENTITY,
  1749. conn);
  1750. return -1;
  1751. }
  1752. if (!expected_ed_key && ed_peer_id) {
  1753. log_info(LD_HANDSHAKE, "(we had no Ed25519 ID in mind when we made this "
  1754. "connection.");
  1755. connection_or_set_identity_digest(conn,
  1756. (const char*)rsa_peer_id, ed_peer_id);
  1757. changed_identity = 1;
  1758. }
  1759. if (changed_identity) {
  1760. /* If we learned an identity for this connection, then we might have
  1761. * just discovered it to be canonical. */
  1762. connection_or_check_canonicity(conn, conn->handshake_state->started_here);
  1763. }
  1764. if (authdir_mode_tests_reachability(options)) {
  1765. dirserv_orconn_tls_done(&conn->base_.addr, conn->base_.port,
  1766. (const char*)rsa_peer_id, ed_peer_id);
  1767. }
  1768. return 0;
  1769. }
  1770. /** Return when we last used this channel for client activity (origin
  1771. * circuits). This is called from connection.c, since client_used is now one
  1772. * of the timestamps in channel_t */
  1773. time_t
  1774. connection_or_client_used(or_connection_t *conn)
  1775. {
  1776. tor_assert(conn);
  1777. if (conn->chan) {
  1778. return channel_when_last_client(TLS_CHAN_TO_BASE(conn->chan));
  1779. } else return 0;
  1780. }
  1781. /** The v1/v2 TLS handshake is finished.
  1782. *
  1783. * Make sure we are happy with the peer we just handshaked with.
  1784. *
  1785. * If they initiated the connection, make sure they're not already connected,
  1786. * then initialize conn from the information in router.
  1787. *
  1788. * If all is successful, call circuit_n_conn_done() to handle events
  1789. * that have been pending on the <tls handshake completion. Also set the
  1790. * directory to be dirty (only matters if I'm an authdirserver).
  1791. *
  1792. * If this is a v2 TLS handshake, send a versions cell.
  1793. */
  1794. static int
  1795. connection_tls_finish_handshake(or_connection_t *conn)
  1796. {
  1797. char digest_rcvd[DIGEST_LEN];
  1798. int started_here = connection_or_nonopen_was_started_here(conn);
  1799. tor_assert(!started_here);
  1800. log_debug(LD_HANDSHAKE,"%s tls handshake on %p with %s done, using "
  1801. "ciphersuite %s. verifying.",
  1802. started_here?"outgoing":"incoming",
  1803. conn,
  1804. safe_str_client(conn->base_.address),
  1805. tor_tls_get_ciphersuite_name(conn->tls));
  1806. if (connection_or_check_valid_tls_handshake(conn, started_here,
  1807. digest_rcvd) < 0)
  1808. return -1;
  1809. circuit_build_times_network_is_live(get_circuit_build_times_mutable());
  1810. if (tor_tls_used_v1_handshake(conn->tls)) {
  1811. conn->link_proto = 1;
  1812. connection_or_init_conn_from_address(conn, &conn->base_.addr,
  1813. conn->base_.port, digest_rcvd,
  1814. NULL, 0);
  1815. tor_tls_block_renegotiation(conn->tls);
  1816. rep_hist_note_negotiated_link_proto(1, started_here);
  1817. return connection_or_set_state_open(conn);
  1818. } else {
  1819. connection_or_change_state(conn, OR_CONN_STATE_OR_HANDSHAKING_V2);
  1820. if (connection_init_or_handshake_state(conn, started_here) < 0)
  1821. return -1;
  1822. connection_or_init_conn_from_address(conn, &conn->base_.addr,
  1823. conn->base_.port, digest_rcvd,
  1824. NULL, 0);
  1825. return connection_or_send_versions(conn, 0);
  1826. }
  1827. }
  1828. /**
  1829. * Called as client when initial TLS handshake is done, and we notice
  1830. * that we got a v3-handshake signalling certificate from the server.
  1831. * Set up structures, do bookkeeping, and send the versions cell.
  1832. * Return 0 on success and -1 on failure.
  1833. */
  1834. static int
  1835. connection_or_launch_v3_or_handshake(or_connection_t *conn)
  1836. {
  1837. tor_assert(connection_or_nonopen_was_started_here(conn));
  1838. circuit_build_times_network_is_live(get_circuit_build_times_mutable());
  1839. connection_or_change_state(conn, OR_CONN_STATE_OR_HANDSHAKING_V3);
  1840. if (connection_init_or_handshake_state(conn, 1) < 0)
  1841. return -1;
  1842. return connection_or_send_versions(conn, 1);
  1843. }
  1844. /** Allocate a new connection handshake state for the connection
  1845. * <b>conn</b>. Return 0 on success, -1 on failure. */
  1846. int
  1847. connection_init_or_handshake_state(or_connection_t *conn, int started_here)
  1848. {
  1849. or_handshake_state_t *s;
  1850. if (conn->handshake_state) {
  1851. log_warn(LD_BUG, "Duplicate call to connection_init_or_handshake_state!");
  1852. return 0;
  1853. }
  1854. s = conn->handshake_state = tor_malloc_zero(sizeof(or_handshake_state_t));
  1855. s->started_here = started_here ? 1 : 0;
  1856. s->digest_sent_data = 1;
  1857. s->digest_received_data = 1;
  1858. if (! started_here && get_current_link_cert_cert()) {
  1859. s->own_link_cert = tor_cert_dup(get_current_link_cert_cert());
  1860. }
  1861. s->certs = or_handshake_certs_new();
  1862. s->certs->started_here = s->started_here;
  1863. return 0;
  1864. }
  1865. /** Free all storage held by <b>state</b>. */
  1866. void
  1867. or_handshake_state_free_(or_handshake_state_t *state)
  1868. {
  1869. if (!state)
  1870. return;
  1871. crypto_digest_free(state->digest_sent);
  1872. crypto_digest_free(state->digest_received);
  1873. or_handshake_certs_free(state->certs);
  1874. tor_cert_free(state->own_link_cert);
  1875. memwipe(state, 0xBE, sizeof(or_handshake_state_t));
  1876. tor_free(state);
  1877. }
  1878. /**
  1879. * Remember that <b>cell</b> has been transmitted (if <b>incoming</b> is
  1880. * false) or received (if <b>incoming</b> is true) during a V3 handshake using
  1881. * <b>state</b>.
  1882. *
  1883. * (We don't record the cell, but we keep a digest of everything sent or
  1884. * received during the v3 handshake, and the client signs it in an
  1885. * authenticate cell.)
  1886. */
  1887. void
  1888. or_handshake_state_record_cell(or_connection_t *conn,
  1889. or_handshake_state_t *state,
  1890. const cell_t *cell,
  1891. int incoming)
  1892. {
  1893. size_t cell_network_size = get_cell_network_size(conn->wide_circ_ids);
  1894. crypto_digest_t *d, **dptr;
  1895. packed_cell_t packed;
  1896. if (incoming) {
  1897. if (!state->digest_received_data)
  1898. return;
  1899. } else {
  1900. if (!state->digest_sent_data)
  1901. return;
  1902. }
  1903. if (!incoming) {
  1904. log_warn(LD_BUG, "We shouldn't be sending any non-variable-length cells "
  1905. "while making a handshake digest. But we think we are sending "
  1906. "one with type %d.", (int)cell->command);
  1907. }
  1908. dptr = incoming ? &state->digest_received : &state->digest_sent;
  1909. if (! *dptr)
  1910. *dptr = crypto_digest256_new(DIGEST_SHA256);
  1911. d = *dptr;
  1912. /* Re-packing like this is a little inefficient, but we don't have to do
  1913. this very often at all. */
  1914. cell_pack(&packed, cell, conn->wide_circ_ids);
  1915. crypto_digest_add_bytes(d, packed.body, cell_network_size);
  1916. memwipe(&packed, 0, sizeof(packed));
  1917. }
  1918. /** Remember that a variable-length <b>cell</b> has been transmitted (if
  1919. * <b>incoming</b> is false) or received (if <b>incoming</b> is true) during a
  1920. * V3 handshake using <b>state</b>.
  1921. *
  1922. * (We don't record the cell, but we keep a digest of everything sent or
  1923. * received during the v3 handshake, and the client signs it in an
  1924. * authenticate cell.)
  1925. */
  1926. void
  1927. or_handshake_state_record_var_cell(or_connection_t *conn,
  1928. or_handshake_state_t *state,
  1929. const var_cell_t *cell,
  1930. int incoming)
  1931. {
  1932. crypto_digest_t *d, **dptr;
  1933. int n;
  1934. char buf[VAR_CELL_MAX_HEADER_SIZE];
  1935. if (incoming) {
  1936. if (!state->digest_received_data)
  1937. return;
  1938. } else {
  1939. if (!state->digest_sent_data)
  1940. return;
  1941. }
  1942. dptr = incoming ? &state->digest_received : &state->digest_sent;
  1943. if (! *dptr)
  1944. *dptr = crypto_digest256_new(DIGEST_SHA256);
  1945. d = *dptr;
  1946. n = var_cell_pack_header(cell, buf, conn->wide_circ_ids);
  1947. crypto_digest_add_bytes(d, buf, n);
  1948. crypto_digest_add_bytes(d, (const char *)cell->payload, cell->payload_len);
  1949. memwipe(buf, 0, sizeof(buf));
  1950. }
  1951. /** Set <b>conn</b>'s state to OR_CONN_STATE_OPEN, and tell other subsystems
  1952. * as appropriate. Called when we are done with all TLS and OR handshaking.
  1953. */
  1954. int
  1955. connection_or_set_state_open(or_connection_t *conn)
  1956. {
  1957. connection_or_change_state(conn, OR_CONN_STATE_OPEN);
  1958. control_event_or_conn_status(conn, OR_CONN_EVENT_CONNECTED, 0);
  1959. /* Link protocol 3 appeared in Tor 0.2.3.6-alpha, so any connection
  1960. * that uses an earlier link protocol should not be treated as a relay. */
  1961. if (conn->link_proto < 3) {
  1962. channel_mark_client(TLS_CHAN_TO_BASE(conn->chan));
  1963. }
  1964. or_handshake_state_free(conn->handshake_state);
  1965. conn->handshake_state = NULL;
  1966. connection_start_reading(TO_CONN(conn));
  1967. return 0;
  1968. }
  1969. /** Pack <b>cell</b> into wire-format, and write it onto <b>conn</b>'s outbuf.
  1970. * For cells that use or affect a circuit, this should only be called by
  1971. * connection_or_flush_from_first_active_circuit().
  1972. */
  1973. void
  1974. connection_or_write_cell_to_buf(const cell_t *cell, or_connection_t *conn)
  1975. {
  1976. packed_cell_t networkcell;
  1977. size_t cell_network_size = get_cell_network_size(conn->wide_circ_ids);
  1978. tor_assert(cell);
  1979. tor_assert(conn);
  1980. cell_pack(&networkcell, cell, conn->wide_circ_ids);
  1981. rep_hist_padding_count_write(PADDING_TYPE_TOTAL);
  1982. if (cell->command == CELL_PADDING)
  1983. rep_hist_padding_count_write(PADDING_TYPE_CELL);
  1984. connection_buf_add(networkcell.body, cell_network_size, TO_CONN(conn));
  1985. /* Touch the channel's active timestamp if there is one */
  1986. if (conn->chan) {
  1987. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  1988. if (TLS_CHAN_TO_BASE(conn->chan)->currently_padding) {
  1989. rep_hist_padding_count_write(PADDING_TYPE_ENABLED_TOTAL);
  1990. if (cell->command == CELL_PADDING)
  1991. rep_hist_padding_count_write(PADDING_TYPE_ENABLED_CELL);
  1992. }
  1993. }
  1994. if (conn->base_.state == OR_CONN_STATE_OR_HANDSHAKING_V3)
  1995. or_handshake_state_record_cell(conn, conn->handshake_state, cell, 0);
  1996. }
  1997. /** Pack a variable-length <b>cell</b> into wire-format, and write it onto
  1998. * <b>conn</b>'s outbuf. Right now, this <em>DOES NOT</em> support cells that
  1999. * affect a circuit.
  2000. */
  2001. MOCK_IMPL(void,
  2002. connection_or_write_var_cell_to_buf,(const var_cell_t *cell,
  2003. or_connection_t *conn))
  2004. {
  2005. int n;
  2006. char hdr[VAR_CELL_MAX_HEADER_SIZE];
  2007. tor_assert(cell);
  2008. tor_assert(conn);
  2009. n = var_cell_pack_header(cell, hdr, conn->wide_circ_ids);
  2010. connection_buf_add(hdr, n, TO_CONN(conn));
  2011. connection_buf_add((char*)cell->payload,
  2012. cell->payload_len, TO_CONN(conn));
  2013. if (conn->base_.state == OR_CONN_STATE_OR_HANDSHAKING_V3)
  2014. or_handshake_state_record_var_cell(conn, conn->handshake_state, cell, 0);
  2015. /* Touch the channel's active timestamp if there is one */
  2016. if (conn->chan)
  2017. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  2018. }
  2019. /** See whether there's a variable-length cell waiting on <b>or_conn</b>'s
  2020. * inbuf. Return values as for fetch_var_cell_from_buf(). */
  2021. static int
  2022. connection_fetch_var_cell_from_buf(or_connection_t *or_conn, var_cell_t **out)
  2023. {
  2024. connection_t *conn = TO_CONN(or_conn);
  2025. return fetch_var_cell_from_buf(conn->inbuf, out, or_conn->link_proto);
  2026. }
  2027. /** Process cells from <b>conn</b>'s inbuf.
  2028. *
  2029. * Loop: while inbuf contains a cell, pull it off the inbuf, unpack it,
  2030. * and hand it to command_process_cell().
  2031. *
  2032. * Always return 0.
  2033. */
  2034. static int
  2035. connection_or_process_cells_from_inbuf(or_connection_t *conn)
  2036. {
  2037. var_cell_t *var_cell;
  2038. /*
  2039. * Note on memory management for incoming cells: below the channel layer,
  2040. * we shouldn't need to consider its internal queueing/copying logic. It
  2041. * is safe to pass cells to it on the stack or on the heap, but in the
  2042. * latter case we must be sure we free them later.
  2043. *
  2044. * The incoming cell queue code in channel.c will (in the common case)
  2045. * decide it can pass them to the upper layer immediately, in which case
  2046. * those functions may run directly on the cell pointers we pass here, or
  2047. * it may decide to queue them, in which case it will allocate its own
  2048. * buffer and copy the cell.
  2049. */
  2050. while (1) {
  2051. log_debug(LD_OR,
  2052. TOR_SOCKET_T_FORMAT": starting, inbuf_datalen %d "
  2053. "(%d pending in tls object).",
  2054. conn->base_.s,(int)connection_get_inbuf_len(TO_CONN(conn)),
  2055. tor_tls_get_pending_bytes(conn->tls));
  2056. if (connection_fetch_var_cell_from_buf(conn, &var_cell)) {
  2057. if (!var_cell)
  2058. return 0; /* not yet. */
  2059. /* Touch the channel's active timestamp if there is one */
  2060. if (conn->chan)
  2061. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  2062. circuit_build_times_network_is_live(get_circuit_build_times_mutable());
  2063. channel_tls_handle_var_cell(var_cell, conn);
  2064. var_cell_free(var_cell);
  2065. } else {
  2066. const int wide_circ_ids = conn->wide_circ_ids;
  2067. size_t cell_network_size = get_cell_network_size(conn->wide_circ_ids);
  2068. char buf[CELL_MAX_NETWORK_SIZE];
  2069. cell_t cell;
  2070. if (connection_get_inbuf_len(TO_CONN(conn))
  2071. < cell_network_size) /* whole response available? */
  2072. return 0; /* not yet */
  2073. /* Touch the channel's active timestamp if there is one */
  2074. if (conn->chan)
  2075. channel_timestamp_active(TLS_CHAN_TO_BASE(conn->chan));
  2076. circuit_build_times_network_is_live(get_circuit_build_times_mutable());
  2077. connection_buf_get_bytes(buf, cell_network_size, TO_CONN(conn));
  2078. /* retrieve cell info from buf (create the host-order struct from the
  2079. * network-order string) */
  2080. cell_unpack(&cell, buf, wide_circ_ids);
  2081. channel_tls_handle_cell(&cell, conn);
  2082. }
  2083. }
  2084. }
  2085. /** Array of recognized link protocol versions. */
  2086. static const uint16_t or_protocol_versions[] = { 1, 2, 3, 4, 5 };
  2087. /** Number of versions in <b>or_protocol_versions</b>. */
  2088. static const int n_or_protocol_versions =
  2089. (int)( sizeof(or_protocol_versions)/sizeof(uint16_t) );
  2090. /** Return true iff <b>v</b> is a link protocol version that this Tor
  2091. * implementation believes it can support. */
  2092. int
  2093. is_or_protocol_version_known(uint16_t v)
  2094. {
  2095. int i;
  2096. for (i = 0; i < n_or_protocol_versions; ++i) {
  2097. if (or_protocol_versions[i] == v)
  2098. return 1;
  2099. }
  2100. return 0;
  2101. }
  2102. /** Send a VERSIONS cell on <b>conn</b>, telling the other host about the
  2103. * link protocol versions that this Tor can support.
  2104. *
  2105. * If <b>v3_plus</b>, this is part of a V3 protocol handshake, so only
  2106. * allow protocol version v3 or later. If not <b>v3_plus</b>, this is
  2107. * not part of a v3 protocol handshake, so don't allow protocol v3 or
  2108. * later.
  2109. **/
  2110. int
  2111. connection_or_send_versions(or_connection_t *conn, int v3_plus)
  2112. {
  2113. var_cell_t *cell;
  2114. int i;
  2115. int n_versions = 0;
  2116. const int min_version = v3_plus ? 3 : 0;
  2117. const int max_version = v3_plus ? UINT16_MAX : 2;
  2118. tor_assert(conn->handshake_state &&
  2119. !conn->handshake_state->sent_versions_at);
  2120. cell = var_cell_new(n_or_protocol_versions * 2);
  2121. cell->command = CELL_VERSIONS;
  2122. for (i = 0; i < n_or_protocol_versions; ++i) {
  2123. uint16_t v = or_protocol_versions[i];
  2124. if (v < min_version || v > max_version)
  2125. continue;
  2126. set_uint16(cell->payload+(2*n_versions), htons(v));
  2127. ++n_versions;
  2128. }
  2129. cell->payload_len = n_versions * 2;
  2130. connection_or_write_var_cell_to_buf(cell, conn);
  2131. conn->handshake_state->sent_versions_at = time(NULL);
  2132. var_cell_free(cell);
  2133. return 0;
  2134. }
  2135. /** Send a NETINFO cell on <b>conn</b>, telling the other server what we know
  2136. * about their address, our address, and the current time. */
  2137. MOCK_IMPL(int,
  2138. connection_or_send_netinfo,(or_connection_t *conn))
  2139. {
  2140. cell_t cell;
  2141. time_t now = time(NULL);
  2142. const routerinfo_t *me;
  2143. int len;
  2144. uint8_t *out;
  2145. tor_assert(conn->handshake_state);
  2146. if (conn->handshake_state->sent_netinfo) {
  2147. log_warn(LD_BUG, "Attempted to send an extra netinfo cell on a connection "
  2148. "where we already sent one.");
  2149. return 0;
  2150. }
  2151. memset(&cell, 0, sizeof(cell_t));
  2152. cell.command = CELL_NETINFO;
  2153. /* Timestamp, if we're a relay. */
  2154. if (public_server_mode(get_options()) || ! conn->is_outgoing)
  2155. set_uint32(cell.payload, htonl((uint32_t)now));
  2156. /* Their address. */
  2157. out = cell.payload + 4;
  2158. /* We use &conn->real_addr below, unless it hasn't yet been set. If it
  2159. * hasn't yet been set, we know that base_.addr hasn't been tampered with
  2160. * yet either. */
  2161. len = append_address_to_payload(out, !tor_addr_is_null(&conn->real_addr)
  2162. ? &conn->real_addr : &conn->base_.addr);
  2163. if (len<0)
  2164. return -1;
  2165. out += len;
  2166. /* My address -- only include it if I'm a public relay, or if I'm a
  2167. * bridge and this is an incoming connection. If I'm a bridge and this
  2168. * is an outgoing connection, act like a normal client and omit it. */
  2169. if ((public_server_mode(get_options()) || !conn->is_outgoing) &&
  2170. (me = router_get_my_routerinfo())) {
  2171. tor_addr_t my_addr;
  2172. *out++ = 1 + !tor_addr_is_null(&me->ipv6_addr);
  2173. tor_addr_from_ipv4h(&my_addr, me->addr);
  2174. len = append_address_to_payload(out, &my_addr);
  2175. if (len < 0)
  2176. return -1;
  2177. out += len;
  2178. if (!tor_addr_is_null(&me->ipv6_addr)) {
  2179. len = append_address_to_payload(out, &me->ipv6_addr);
  2180. if (len < 0)
  2181. return -1;
  2182. }
  2183. } else {
  2184. *out = 0;
  2185. }
  2186. conn->handshake_state->digest_sent_data = 0;
  2187. conn->handshake_state->sent_netinfo = 1;
  2188. connection_or_write_cell_to_buf(&cell, conn);
  2189. return 0;
  2190. }
  2191. /** Helper used to add an encoded certs to a cert cell */
  2192. static void
  2193. add_certs_cell_cert_helper(certs_cell_t *certs_cell,
  2194. uint8_t cert_type,
  2195. const uint8_t *cert_encoded,
  2196. size_t cert_len)
  2197. {
  2198. tor_assert(cert_len <= UINT16_MAX);
  2199. certs_cell_cert_t *ccc = certs_cell_cert_new();
  2200. ccc->cert_type = cert_type;
  2201. ccc->cert_len = cert_len;
  2202. certs_cell_cert_setlen_body(ccc, cert_len);
  2203. memcpy(certs_cell_cert_getarray_body(ccc), cert_encoded, cert_len);
  2204. certs_cell_add_certs(certs_cell, ccc);
  2205. }
  2206. /** Add an encoded X509 cert (stored as <b>cert_len</b> bytes at
  2207. * <b>cert_encoded</b>) to the trunnel certs_cell_t object that we are
  2208. * building in <b>certs_cell</b>. Set its type field to <b>cert_type</b>.
  2209. * (If <b>cert</b> is NULL, take no action.) */
  2210. static void
  2211. add_x509_cert(certs_cell_t *certs_cell,
  2212. uint8_t cert_type,
  2213. const tor_x509_cert_t *cert)
  2214. {
  2215. if (NULL == cert)
  2216. return;
  2217. const uint8_t *cert_encoded = NULL;
  2218. size_t cert_len;
  2219. tor_x509_cert_get_der(cert, &cert_encoded, &cert_len);
  2220. add_certs_cell_cert_helper(certs_cell, cert_type, cert_encoded, cert_len);
  2221. }
  2222. /** Add an Ed25519 cert from <b>cert</b> to the trunnel certs_cell_t object
  2223. * that we are building in <b>certs_cell</b>. Set its type field to
  2224. * <b>cert_type</b>. (If <b>cert</b> is NULL, take no action.) */
  2225. static void
  2226. add_ed25519_cert(certs_cell_t *certs_cell,
  2227. uint8_t cert_type,
  2228. const tor_cert_t *cert)
  2229. {
  2230. if (NULL == cert)
  2231. return;
  2232. add_certs_cell_cert_helper(certs_cell, cert_type,
  2233. cert->encoded, cert->encoded_len);
  2234. }
  2235. #ifdef TOR_UNIT_TESTS
  2236. int certs_cell_ed25519_disabled_for_testing = 0;
  2237. #else
  2238. #define certs_cell_ed25519_disabled_for_testing 0
  2239. #endif
  2240. /** Send a CERTS cell on the connection <b>conn</b>. Return 0 on success, -1
  2241. * on failure. */
  2242. int
  2243. connection_or_send_certs_cell(or_connection_t *conn)
  2244. {
  2245. const tor_x509_cert_t *global_link_cert = NULL, *id_cert = NULL;
  2246. tor_x509_cert_t *own_link_cert = NULL;
  2247. var_cell_t *cell;
  2248. certs_cell_t *certs_cell = NULL;
  2249. tor_assert(conn->base_.state == OR_CONN_STATE_OR_HANDSHAKING_V3);
  2250. if (! conn->handshake_state)
  2251. return -1;
  2252. const int conn_in_server_mode = ! conn->handshake_state->started_here;
  2253. /* Get the encoded values of the X509 certificates */
  2254. if (tor_tls_get_my_certs(conn_in_server_mode,
  2255. &global_link_cert, &id_cert) < 0)
  2256. return -1;
  2257. if (conn_in_server_mode) {
  2258. own_link_cert = tor_tls_get_own_cert(conn->tls);
  2259. }
  2260. tor_assert(id_cert);
  2261. certs_cell = certs_cell_new();
  2262. /* Start adding certs. First the link cert or auth1024 cert. */
  2263. if (conn_in_server_mode) {
  2264. tor_assert_nonfatal(own_link_cert);
  2265. add_x509_cert(certs_cell,
  2266. OR_CERT_TYPE_TLS_LINK, own_link_cert);
  2267. } else {
  2268. tor_assert(global_link_cert);
  2269. add_x509_cert(certs_cell,
  2270. OR_CERT_TYPE_AUTH_1024, global_link_cert);
  2271. }
  2272. /* Next the RSA->RSA ID cert */
  2273. add_x509_cert(certs_cell,
  2274. OR_CERT_TYPE_ID_1024, id_cert);
  2275. /* Next the Ed25519 certs */
  2276. add_ed25519_cert(certs_cell,
  2277. CERTTYPE_ED_ID_SIGN,
  2278. get_master_signing_key_cert());
  2279. if (conn_in_server_mode) {
  2280. tor_assert_nonfatal(conn->handshake_state->own_link_cert ||
  2281. certs_cell_ed25519_disabled_for_testing);
  2282. add_ed25519_cert(certs_cell,
  2283. CERTTYPE_ED_SIGN_LINK,
  2284. conn->handshake_state->own_link_cert);
  2285. } else {
  2286. add_ed25519_cert(certs_cell,
  2287. CERTTYPE_ED_SIGN_AUTH,
  2288. get_current_auth_key_cert());
  2289. }
  2290. /* And finally the crosscert. */
  2291. {
  2292. const uint8_t *crosscert=NULL;
  2293. size_t crosscert_len;
  2294. get_master_rsa_crosscert(&crosscert, &crosscert_len);
  2295. if (crosscert) {
  2296. add_certs_cell_cert_helper(certs_cell,
  2297. CERTTYPE_RSA1024_ID_EDID,
  2298. crosscert, crosscert_len);
  2299. }
  2300. }
  2301. /* We've added all the certs; make the cell. */
  2302. certs_cell->n_certs = certs_cell_getlen_certs(certs_cell);
  2303. ssize_t alloc_len = certs_cell_encoded_len(certs_cell);
  2304. tor_assert(alloc_len >= 0 && alloc_len <= UINT16_MAX);
  2305. cell = var_cell_new(alloc_len);
  2306. cell->command = CELL_CERTS;
  2307. ssize_t enc_len = certs_cell_encode(cell->payload, alloc_len, certs_cell);
  2308. tor_assert(enc_len > 0 && enc_len <= alloc_len);
  2309. cell->payload_len = enc_len;
  2310. connection_or_write_var_cell_to_buf(cell, conn);
  2311. var_cell_free(cell);
  2312. certs_cell_free(certs_cell);
  2313. tor_x509_cert_free(own_link_cert);
  2314. return 0;
  2315. }
  2316. /** Return true iff <b>challenge_type</b> is an AUTHCHALLENGE type that
  2317. * we can send and receive. */
  2318. int
  2319. authchallenge_type_is_supported(uint16_t challenge_type)
  2320. {
  2321. switch (challenge_type) {
  2322. case AUTHTYPE_RSA_SHA256_TLSSECRET:
  2323. case AUTHTYPE_ED25519_SHA256_RFC5705:
  2324. return 1;
  2325. case AUTHTYPE_RSA_SHA256_RFC5705:
  2326. default:
  2327. return 0;
  2328. }
  2329. }
  2330. /** Return true iff <b>challenge_type_a</b> is one that we would rather
  2331. * use than <b>challenge_type_b</b>. */
  2332. int
  2333. authchallenge_type_is_better(uint16_t challenge_type_a,
  2334. uint16_t challenge_type_b)
  2335. {
  2336. /* Any supported type is better than an unsupported one;
  2337. * all unsupported types are equally bad. */
  2338. if (!authchallenge_type_is_supported(challenge_type_a))
  2339. return 0;
  2340. if (!authchallenge_type_is_supported(challenge_type_b))
  2341. return 1;
  2342. /* It happens that types are superior in numerically ascending order.
  2343. * If that ever changes, this must change too. */
  2344. return (challenge_type_a > challenge_type_b);
  2345. }
  2346. /** Send an AUTH_CHALLENGE cell on the connection <b>conn</b>. Return 0
  2347. * on success, -1 on failure. */
  2348. int
  2349. connection_or_send_auth_challenge_cell(or_connection_t *conn)
  2350. {
  2351. var_cell_t *cell = NULL;
  2352. int r = -1;
  2353. tor_assert(conn->base_.state == OR_CONN_STATE_OR_HANDSHAKING_V3);
  2354. if (! conn->handshake_state)
  2355. return -1;
  2356. auth_challenge_cell_t *ac = auth_challenge_cell_new();
  2357. tor_assert(sizeof(ac->challenge) == 32);
  2358. crypto_rand((char*)ac->challenge, sizeof(ac->challenge));
  2359. auth_challenge_cell_add_methods(ac, AUTHTYPE_RSA_SHA256_TLSSECRET);
  2360. /* Disabled, because everything that supports this method also supports
  2361. * the much-superior ED25519_SHA256_RFC5705 */
  2362. /* auth_challenge_cell_add_methods(ac, AUTHTYPE_RSA_SHA256_RFC5705); */
  2363. auth_challenge_cell_add_methods(ac, AUTHTYPE_ED25519_SHA256_RFC5705);
  2364. auth_challenge_cell_set_n_methods(ac,
  2365. auth_challenge_cell_getlen_methods(ac));
  2366. cell = var_cell_new(auth_challenge_cell_encoded_len(ac));
  2367. ssize_t len = auth_challenge_cell_encode(cell->payload, cell->payload_len,
  2368. ac);
  2369. if (len != cell->payload_len) {
  2370. /* LCOV_EXCL_START */
  2371. log_warn(LD_BUG, "Encoded auth challenge cell length not as expected");
  2372. goto done;
  2373. /* LCOV_EXCL_STOP */
  2374. }
  2375. cell->command = CELL_AUTH_CHALLENGE;
  2376. connection_or_write_var_cell_to_buf(cell, conn);
  2377. r = 0;
  2378. done:
  2379. var_cell_free(cell);
  2380. auth_challenge_cell_free(ac);
  2381. return r;
  2382. }
  2383. /** Compute the main body of an AUTHENTICATE cell that a client can use
  2384. * to authenticate itself on a v3 handshake for <b>conn</b>. Return it
  2385. * in a var_cell_t.
  2386. *
  2387. * If <b>server</b> is true, only calculate the first
  2388. * V3_AUTH_FIXED_PART_LEN bytes -- the part of the authenticator that's
  2389. * determined by the rest of the handshake, and which match the provided value
  2390. * exactly.
  2391. *
  2392. * If <b>server</b> is false and <b>signing_key</b> is NULL, calculate the
  2393. * first V3_AUTH_BODY_LEN bytes of the authenticator (that is, everything
  2394. * that should be signed), but don't actually sign it.
  2395. *
  2396. * If <b>server</b> is false and <b>signing_key</b> is provided, calculate the
  2397. * entire authenticator, signed with <b>signing_key</b>.
  2398. *
  2399. * Return the length of the cell body on success, and -1 on failure.
  2400. */
  2401. var_cell_t *
  2402. connection_or_compute_authenticate_cell_body(or_connection_t *conn,
  2403. const int authtype,
  2404. crypto_pk_t *signing_key,
  2405. const ed25519_keypair_t *ed_signing_key,
  2406. int server)
  2407. {
  2408. auth1_t *auth = NULL;
  2409. auth_ctx_t *ctx = auth_ctx_new();
  2410. var_cell_t *result = NULL;
  2411. int old_tlssecrets_algorithm = 0;
  2412. const char *authtype_str = NULL;
  2413. int is_ed = 0;
  2414. /* assert state is reasonable XXXX */
  2415. switch (authtype) {
  2416. case AUTHTYPE_RSA_SHA256_TLSSECRET:
  2417. authtype_str = "AUTH0001";
  2418. old_tlssecrets_algorithm = 1;
  2419. break;
  2420. case AUTHTYPE_RSA_SHA256_RFC5705:
  2421. authtype_str = "AUTH0002";
  2422. break;
  2423. case AUTHTYPE_ED25519_SHA256_RFC5705:
  2424. authtype_str = "AUTH0003";
  2425. is_ed = 1;
  2426. break;
  2427. default:
  2428. tor_assert(0);
  2429. break;
  2430. }
  2431. auth = auth1_new();
  2432. ctx->is_ed = is_ed;
  2433. /* Type: 8 bytes. */
  2434. memcpy(auth1_getarray_type(auth), authtype_str, 8);
  2435. {
  2436. const tor_x509_cert_t *id_cert=NULL;
  2437. const common_digests_t *my_digests, *their_digests;
  2438. const uint8_t *my_id, *their_id, *client_id, *server_id;
  2439. if (tor_tls_get_my_certs(server, NULL, &id_cert))
  2440. goto err;
  2441. my_digests = tor_x509_cert_get_id_digests(id_cert);
  2442. their_digests =
  2443. tor_x509_cert_get_id_digests(conn->handshake_state->certs->id_cert);
  2444. tor_assert(my_digests);
  2445. tor_assert(their_digests);
  2446. my_id = (uint8_t*)my_digests->d[DIGEST_SHA256];
  2447. their_id = (uint8_t*)their_digests->d[DIGEST_SHA256];
  2448. client_id = server ? their_id : my_id;
  2449. server_id = server ? my_id : their_id;
  2450. /* Client ID digest: 32 octets. */
  2451. memcpy(auth->cid, client_id, 32);
  2452. /* Server ID digest: 32 octets. */
  2453. memcpy(auth->sid, server_id, 32);
  2454. }
  2455. if (is_ed) {
  2456. const ed25519_public_key_t *my_ed_id, *their_ed_id;
  2457. if (!conn->handshake_state->certs->ed_id_sign) {
  2458. log_warn(LD_OR, "Ed authenticate without Ed ID cert from peer.");
  2459. goto err;
  2460. }
  2461. my_ed_id = get_master_identity_key();
  2462. their_ed_id = &conn->handshake_state->certs->ed_id_sign->signing_key;
  2463. const uint8_t *cid_ed = (server ? their_ed_id : my_ed_id)->pubkey;
  2464. const uint8_t *sid_ed = (server ? my_ed_id : their_ed_id)->pubkey;
  2465. memcpy(auth->u1_cid_ed, cid_ed, ED25519_PUBKEY_LEN);
  2466. memcpy(auth->u1_sid_ed, sid_ed, ED25519_PUBKEY_LEN);
  2467. }
  2468. {
  2469. crypto_digest_t *server_d, *client_d;
  2470. if (server) {
  2471. server_d = conn->handshake_state->digest_sent;
  2472. client_d = conn->handshake_state->digest_received;
  2473. } else {
  2474. client_d = conn->handshake_state->digest_sent;
  2475. server_d = conn->handshake_state->digest_received;
  2476. }
  2477. /* Server log digest : 32 octets */
  2478. crypto_digest_get_digest(server_d, (char*)auth->slog, 32);
  2479. /* Client log digest : 32 octets */
  2480. crypto_digest_get_digest(client_d, (char*)auth->clog, 32);
  2481. }
  2482. {
  2483. /* Digest of cert used on TLS link : 32 octets. */
  2484. tor_x509_cert_t *cert = NULL;
  2485. if (server) {
  2486. cert = tor_tls_get_own_cert(conn->tls);
  2487. } else {
  2488. cert = tor_tls_get_peer_cert(conn->tls);
  2489. }
  2490. if (!cert) {
  2491. log_warn(LD_OR, "Unable to find cert when making %s data.",
  2492. authtype_str);
  2493. goto err;
  2494. }
  2495. memcpy(auth->scert,
  2496. tor_x509_cert_get_cert_digests(cert)->d[DIGEST_SHA256], 32);
  2497. tor_x509_cert_free(cert);
  2498. }
  2499. /* HMAC of clientrandom and serverrandom using master key : 32 octets */
  2500. if (old_tlssecrets_algorithm) {
  2501. tor_tls_get_tlssecrets(conn->tls, auth->tlssecrets);
  2502. } else {
  2503. char label[128];
  2504. tor_snprintf(label, sizeof(label),
  2505. "EXPORTER FOR TOR TLS CLIENT BINDING %s", authtype_str);
  2506. tor_tls_export_key_material(conn->tls, auth->tlssecrets,
  2507. auth->cid, sizeof(auth->cid),
  2508. label);
  2509. }
  2510. /* 8 octets were reserved for the current time, but we're trying to get out
  2511. * of the habit of sending time around willynilly. Fortunately, nothing
  2512. * checks it. That's followed by 16 bytes of nonce. */
  2513. crypto_rand((char*)auth->rand, 24);
  2514. ssize_t maxlen = auth1_encoded_len(auth, ctx);
  2515. if (ed_signing_key && is_ed) {
  2516. maxlen += ED25519_SIG_LEN;
  2517. } else if (signing_key && !is_ed) {
  2518. maxlen += crypto_pk_keysize(signing_key);
  2519. }
  2520. const int AUTH_CELL_HEADER_LEN = 4; /* 2 bytes of type, 2 bytes of length */
  2521. result = var_cell_new(AUTH_CELL_HEADER_LEN + maxlen);
  2522. uint8_t *const out = result->payload + AUTH_CELL_HEADER_LEN;
  2523. const size_t outlen = maxlen;
  2524. ssize_t len;
  2525. result->command = CELL_AUTHENTICATE;
  2526. set_uint16(result->payload, htons(authtype));
  2527. if ((len = auth1_encode(out, outlen, auth, ctx)) < 0) {
  2528. /* LCOV_EXCL_START */
  2529. log_warn(LD_BUG, "Unable to encode signed part of AUTH1 data.");
  2530. goto err;
  2531. /* LCOV_EXCL_STOP */
  2532. }
  2533. if (server) {
  2534. auth1_t *tmp = NULL;
  2535. ssize_t len2 = auth1_parse(&tmp, out, len, ctx);
  2536. if (!tmp) {
  2537. /* LCOV_EXCL_START */
  2538. log_warn(LD_BUG, "Unable to parse signed part of AUTH1 data that "
  2539. "we just encoded");
  2540. goto err;
  2541. /* LCOV_EXCL_STOP */
  2542. }
  2543. result->payload_len = (tmp->end_of_signed - result->payload);
  2544. auth1_free(tmp);
  2545. if (len2 != len) {
  2546. /* LCOV_EXCL_START */
  2547. log_warn(LD_BUG, "Mismatched length when re-parsing AUTH1 data.");
  2548. goto err;
  2549. /* LCOV_EXCL_STOP */
  2550. }
  2551. goto done;
  2552. }
  2553. if (ed_signing_key && is_ed) {
  2554. ed25519_signature_t sig;
  2555. if (ed25519_sign(&sig, out, len, ed_signing_key) < 0) {
  2556. /* LCOV_EXCL_START */
  2557. log_warn(LD_BUG, "Unable to sign ed25519 authentication data");
  2558. goto err;
  2559. /* LCOV_EXCL_STOP */
  2560. }
  2561. auth1_setlen_sig(auth, ED25519_SIG_LEN);
  2562. memcpy(auth1_getarray_sig(auth), sig.sig, ED25519_SIG_LEN);
  2563. } else if (signing_key && !is_ed) {
  2564. auth1_setlen_sig(auth, crypto_pk_keysize(signing_key));
  2565. char d[32];
  2566. crypto_digest256(d, (char*)out, len, DIGEST_SHA256);
  2567. int siglen = crypto_pk_private_sign(signing_key,
  2568. (char*)auth1_getarray_sig(auth),
  2569. auth1_getlen_sig(auth),
  2570. d, 32);
  2571. if (siglen < 0) {
  2572. log_warn(LD_OR, "Unable to sign AUTH1 data.");
  2573. goto err;
  2574. }
  2575. auth1_setlen_sig(auth, siglen);
  2576. }
  2577. len = auth1_encode(out, outlen, auth, ctx);
  2578. if (len < 0) {
  2579. /* LCOV_EXCL_START */
  2580. log_warn(LD_BUG, "Unable to encode signed AUTH1 data.");
  2581. goto err;
  2582. /* LCOV_EXCL_STOP */
  2583. }
  2584. tor_assert(len + AUTH_CELL_HEADER_LEN <= result->payload_len);
  2585. result->payload_len = len + AUTH_CELL_HEADER_LEN;
  2586. set_uint16(result->payload+2, htons(len));
  2587. goto done;
  2588. err:
  2589. var_cell_free(result);
  2590. result = NULL;
  2591. done:
  2592. auth1_free(auth);
  2593. auth_ctx_free(ctx);
  2594. return result;
  2595. }
  2596. /** Send an AUTHENTICATE cell on the connection <b>conn</b>. Return 0 on
  2597. * success, -1 on failure */
  2598. MOCK_IMPL(int,
  2599. connection_or_send_authenticate_cell,(or_connection_t *conn, int authtype))
  2600. {
  2601. var_cell_t *cell;
  2602. crypto_pk_t *pk = tor_tls_get_my_client_auth_key();
  2603. /* XXXX make sure we're actually supposed to send this! */
  2604. if (!pk) {
  2605. log_warn(LD_BUG, "Can't compute authenticate cell: no client auth key");
  2606. return -1;
  2607. }
  2608. if (! authchallenge_type_is_supported(authtype)) {
  2609. log_warn(LD_BUG, "Tried to send authenticate cell with unknown "
  2610. "authentication type %d", authtype);
  2611. return -1;
  2612. }
  2613. cell = connection_or_compute_authenticate_cell_body(conn,
  2614. authtype,
  2615. pk,
  2616. get_current_auth_keypair(),
  2617. 0 /* not server */);
  2618. if (! cell) {
  2619. /* LCOV_EXCL_START */
  2620. log_warn(LD_BUG, "Unable to compute authenticate cell!");
  2621. return -1;
  2622. /* LCOV_EXCL_STOP */
  2623. }
  2624. connection_or_write_var_cell_to_buf(cell, conn);
  2625. var_cell_free(cell);
  2626. return 0;
  2627. }