dns.c 73 KB

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  1. /* Copyright (c) 2003-2004, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2017, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. /**
  6. * \file dns.c
  7. * \brief Implements a local cache for DNS results for Tor servers.
  8. * This is implemented as a wrapper around Adam Langley's eventdns.c code.
  9. * (We can't just use gethostbyname() and friends because we really need to
  10. * be nonblocking.)
  11. *
  12. * There are three main cases when a Tor relay uses dns.c to launch a DNS
  13. * request:
  14. * <ol>
  15. * <li>To check whether the DNS server is working more or less correctly.
  16. * This happens via dns_launch_correctness_checks(). The answer is
  17. * reported in the return value from later calls to
  18. * dns_seems_to_be_broken().
  19. * <li>When a client has asked the relay, in a RELAY_BEGIN cell, to connect
  20. * to a given server by hostname. This happens via dns_resolve().
  21. * <li>When a client has asked the relay, in a RELAY_RESOLVE cell, to look
  22. * up a given server's IP address(es) by hostname. This also happens via
  23. * dns_resolve().
  24. * </ol>
  25. *
  26. * Each of these gets handled a little differently.
  27. *
  28. * To check for correctness, we look up some hostname we expect to exist and
  29. * have real entries, some hostnames which we expect to definitely not exist,
  30. * and some hostnames that we expect to probably not exist. If too many of
  31. * the hostnames that shouldn't exist do exist, that's a DNS hijacking
  32. * attempt. If too many of the hostnames that should exist have the same
  33. * addresses as the ones that shouldn't exist, that's a very bad DNS hijacking
  34. * attempt, or a very naughty captive portal. And if the hostnames that
  35. * should exist simply don't exist, we probably have a broken nameserver.
  36. *
  37. * To handle client requests, we first check our cache for answers. If there
  38. * isn't something up-to-date, we've got to launch A or AAAA requests as
  39. * appropriate. How we handle responses to those in particular is a bit
  40. * complex; see dns_lookup() and set_exitconn_info_from_resolve().
  41. *
  42. * When a lookup is finally complete, the inform_pending_connections()
  43. * function will tell all of the streams that have been waiting for the
  44. * resolve, by calling connection_exit_connect() if the client sent a
  45. * RELAY_BEGIN cell, and by calling send_resolved_cell() or
  46. * send_hostname_cell() if the client sent a RELAY_RESOLVE cell.
  47. **/
  48. #define DNS_PRIVATE
  49. #include "or.h"
  50. #include "circuitlist.h"
  51. #include "circuituse.h"
  52. #include "config.h"
  53. #include "connection.h"
  54. #include "connection_edge.h"
  55. #include "control.h"
  56. #include "crypto_rand.h"
  57. #include "dns.h"
  58. #include "main.h"
  59. #include "policies.h"
  60. #include "relay.h"
  61. #include "router.h"
  62. #include "ht.h"
  63. #include "sandbox.h"
  64. #include "edge_connection_st.h"
  65. #include <event2/event.h>
  66. #include <event2/dns.h>
  67. /** How long will we wait for an answer from the resolver before we decide
  68. * that the resolver is wedged? */
  69. #define RESOLVE_MAX_TIMEOUT 300
  70. /** Our evdns_base; this structure handles all our name lookups. */
  71. static struct evdns_base *the_evdns_base = NULL;
  72. /** Have we currently configured nameservers with eventdns? */
  73. static int nameservers_configured = 0;
  74. /** Did our most recent attempt to configure nameservers with eventdns fail? */
  75. static int nameserver_config_failed = 0;
  76. /** What was the resolv_conf fname we last used when configuring the
  77. * nameservers? Used to check whether we need to reconfigure. */
  78. static char *resolv_conf_fname = NULL;
  79. /** What was the mtime on the resolv.conf file we last used when configuring
  80. * the nameservers? Used to check whether we need to reconfigure. */
  81. static time_t resolv_conf_mtime = 0;
  82. static void purge_expired_resolves(time_t now);
  83. static void dns_found_answer(const char *address, uint8_t query_type,
  84. int dns_answer,
  85. const tor_addr_t *addr,
  86. const char *hostname,
  87. uint32_t ttl);
  88. static void add_wildcarded_test_address(const char *address);
  89. static int configure_nameservers(int force);
  90. static int answer_is_wildcarded(const char *ip);
  91. static int evdns_err_is_transient(int err);
  92. static void inform_pending_connections(cached_resolve_t *resolve);
  93. static void make_pending_resolve_cached(cached_resolve_t *cached);
  94. #ifdef DEBUG_DNS_CACHE
  95. static void assert_cache_ok_(void);
  96. #define assert_cache_ok() assert_cache_ok_()
  97. #else
  98. #define assert_cache_ok() STMT_NIL
  99. #endif /* defined(DEBUG_DNS_CACHE) */
  100. static void assert_resolve_ok(cached_resolve_t *resolve);
  101. /** Hash table of cached_resolve objects. */
  102. static HT_HEAD(cache_map, cached_resolve_t) cache_root;
  103. /** Global: how many IPv6 requests have we made in all? */
  104. static uint64_t n_ipv6_requests_made = 0;
  105. /** Global: how many IPv6 requests have timed out? */
  106. static uint64_t n_ipv6_timeouts = 0;
  107. /** Global: Do we think that IPv6 DNS is broken? */
  108. static int dns_is_broken_for_ipv6 = 0;
  109. /** Function to compare hashed resolves on their addresses; used to
  110. * implement hash tables. */
  111. static inline int
  112. cached_resolves_eq(cached_resolve_t *a, cached_resolve_t *b)
  113. {
  114. /* make this smarter one day? */
  115. assert_resolve_ok(a); // Not b; b may be just a search.
  116. return !strncmp(a->address, b->address, MAX_ADDRESSLEN);
  117. }
  118. /** Hash function for cached_resolve objects */
  119. static inline unsigned int
  120. cached_resolve_hash(cached_resolve_t *a)
  121. {
  122. return (unsigned) siphash24g((const uint8_t*)a->address, strlen(a->address));
  123. }
  124. HT_PROTOTYPE(cache_map, cached_resolve_t, node, cached_resolve_hash,
  125. cached_resolves_eq)
  126. HT_GENERATE2(cache_map, cached_resolve_t, node, cached_resolve_hash,
  127. cached_resolves_eq, 0.6, tor_reallocarray_, tor_free_)
  128. /** Initialize the DNS cache. */
  129. static void
  130. init_cache_map(void)
  131. {
  132. HT_INIT(cache_map, &cache_root);
  133. }
  134. /** Helper: called by eventdns when eventdns wants to log something. */
  135. static void
  136. evdns_log_cb(int warn, const char *msg)
  137. {
  138. const char *cp;
  139. static int all_down = 0;
  140. int severity = warn ? LOG_WARN : LOG_INFO;
  141. if (!strcmpstart(msg, "Resolve requested for") &&
  142. get_options()->SafeLogging) {
  143. log_info(LD_EXIT, "eventdns: Resolve requested.");
  144. return;
  145. } else if (!strcmpstart(msg, "Search: ")) {
  146. return;
  147. }
  148. if (!strcmpstart(msg, "Nameserver ") && (cp=strstr(msg, " has failed: "))) {
  149. char *ns = tor_strndup(msg+11, cp-(msg+11));
  150. const char *colon = strchr(cp, ':');
  151. tor_assert(colon);
  152. const char *err = colon+2;
  153. /* Don't warn about a single failed nameserver; we'll warn with 'all
  154. * nameservers have failed' if we're completely out of nameservers;
  155. * otherwise, the situation is tolerable. */
  156. severity = LOG_INFO;
  157. control_event_server_status(LOG_NOTICE,
  158. "NAMESERVER_STATUS NS=%s STATUS=DOWN ERR=%s",
  159. ns, escaped(err));
  160. tor_free(ns);
  161. } else if (!strcmpstart(msg, "Nameserver ") &&
  162. (cp=strstr(msg, " is back up"))) {
  163. char *ns = tor_strndup(msg+11, cp-(msg+11));
  164. severity = (all_down && warn) ? LOG_NOTICE : LOG_INFO;
  165. all_down = 0;
  166. control_event_server_status(LOG_NOTICE,
  167. "NAMESERVER_STATUS NS=%s STATUS=UP", ns);
  168. tor_free(ns);
  169. } else if (!strcmp(msg, "All nameservers have failed")) {
  170. control_event_server_status(LOG_WARN, "NAMESERVER_ALL_DOWN");
  171. all_down = 1;
  172. } else if (!strcmpstart(msg, "Address mismatch on received DNS")) {
  173. static ratelim_t mismatch_limit = RATELIM_INIT(3600);
  174. const char *src = strstr(msg, " Apparent source");
  175. if (!src || get_options()->SafeLogging) {
  176. src = "";
  177. }
  178. log_fn_ratelim(&mismatch_limit, severity, LD_EXIT,
  179. "eventdns: Received a DNS packet from "
  180. "an IP address to which we did not send a request. This "
  181. "could be a DNS spoofing attempt, or some kind of "
  182. "misconfiguration.%s", src);
  183. return;
  184. }
  185. tor_log(severity, LD_EXIT, "eventdns: %s", msg);
  186. }
  187. /** Helper: passed to eventdns.c as a callback so it can generate random
  188. * numbers for transaction IDs and 0x20-hack coding. */
  189. static void
  190. dns_randfn_(char *b, size_t n)
  191. {
  192. crypto_rand(b,n);
  193. }
  194. /** Initialize the DNS subsystem; called by the OR process. */
  195. int
  196. dns_init(void)
  197. {
  198. init_cache_map();
  199. evdns_set_random_bytes_fn(dns_randfn_);
  200. if (server_mode(get_options())) {
  201. int r = configure_nameservers(1);
  202. return r;
  203. }
  204. return 0;
  205. }
  206. /** Called when DNS-related options change (or may have changed). Returns -1
  207. * on failure, 0 on success. */
  208. int
  209. dns_reset(void)
  210. {
  211. const or_options_t *options = get_options();
  212. if (! server_mode(options)) {
  213. if (!the_evdns_base) {
  214. if (!(the_evdns_base = evdns_base_new(tor_libevent_get_base(), 0))) {
  215. log_err(LD_BUG, "Couldn't create an evdns_base");
  216. return -1;
  217. }
  218. }
  219. evdns_base_clear_nameservers_and_suspend(the_evdns_base);
  220. evdns_base_search_clear(the_evdns_base);
  221. nameservers_configured = 0;
  222. tor_free(resolv_conf_fname);
  223. resolv_conf_mtime = 0;
  224. } else {
  225. if (configure_nameservers(0) < 0) {
  226. return -1;
  227. }
  228. }
  229. return 0;
  230. }
  231. /** Return true iff the most recent attempt to initialize the DNS subsystem
  232. * failed. */
  233. int
  234. has_dns_init_failed(void)
  235. {
  236. return nameserver_config_failed;
  237. }
  238. /** Helper: Given a TTL from a DNS response, determine what TTL to give the
  239. * OP that asked us to resolve it, and how long to cache that record
  240. * ourselves. */
  241. uint32_t
  242. dns_clip_ttl(uint32_t ttl)
  243. {
  244. /* This logic is a defense against "DefectTor" DNS-based traffic
  245. * confirmation attacks, as in https://nymity.ch/tor-dns/tor-dns.pdf .
  246. * We only give two values: a "low" value and a "high" value.
  247. */
  248. if (ttl < MIN_DNS_TTL_AT_EXIT)
  249. return MIN_DNS_TTL_AT_EXIT;
  250. else
  251. return MAX_DNS_TTL_AT_EXIT;
  252. }
  253. /** Helper: free storage held by an entry in the DNS cache. */
  254. static void
  255. free_cached_resolve_(cached_resolve_t *r)
  256. {
  257. if (!r)
  258. return;
  259. while (r->pending_connections) {
  260. pending_connection_t *victim = r->pending_connections;
  261. r->pending_connections = victim->next;
  262. tor_free(victim);
  263. }
  264. if (r->res_status_hostname == RES_STATUS_DONE_OK)
  265. tor_free(r->result_ptr.hostname);
  266. r->magic = 0xFF00FF00;
  267. tor_free(r);
  268. }
  269. /** Compare two cached_resolve_t pointers by expiry time, and return
  270. * less-than-zero, zero, or greater-than-zero as appropriate. Used for
  271. * the priority queue implementation. */
  272. static int
  273. compare_cached_resolves_by_expiry_(const void *_a, const void *_b)
  274. {
  275. const cached_resolve_t *a = _a, *b = _b;
  276. if (a->expire < b->expire)
  277. return -1;
  278. else if (a->expire == b->expire)
  279. return 0;
  280. else
  281. return 1;
  282. }
  283. /** Priority queue of cached_resolve_t objects to let us know when they
  284. * will expire. */
  285. static smartlist_t *cached_resolve_pqueue = NULL;
  286. static void
  287. cached_resolve_add_answer(cached_resolve_t *resolve,
  288. int query_type,
  289. int dns_result,
  290. const tor_addr_t *answer_addr,
  291. const char *answer_hostname,
  292. uint32_t ttl)
  293. {
  294. if (query_type == DNS_PTR) {
  295. if (resolve->res_status_hostname != RES_STATUS_INFLIGHT)
  296. return;
  297. if (dns_result == DNS_ERR_NONE && answer_hostname) {
  298. resolve->result_ptr.hostname = tor_strdup(answer_hostname);
  299. resolve->res_status_hostname = RES_STATUS_DONE_OK;
  300. } else {
  301. resolve->result_ptr.err_hostname = dns_result;
  302. resolve->res_status_hostname = RES_STATUS_DONE_ERR;
  303. }
  304. resolve->ttl_hostname = ttl;
  305. } else if (query_type == DNS_IPv4_A) {
  306. if (resolve->res_status_ipv4 != RES_STATUS_INFLIGHT)
  307. return;
  308. if (dns_result == DNS_ERR_NONE && answer_addr &&
  309. tor_addr_family(answer_addr) == AF_INET) {
  310. resolve->result_ipv4.addr_ipv4 = tor_addr_to_ipv4h(answer_addr);
  311. resolve->res_status_ipv4 = RES_STATUS_DONE_OK;
  312. } else {
  313. resolve->result_ipv4.err_ipv4 = dns_result;
  314. resolve->res_status_ipv4 = RES_STATUS_DONE_ERR;
  315. }
  316. resolve->ttl_ipv4 = ttl;
  317. } else if (query_type == DNS_IPv6_AAAA) {
  318. if (resolve->res_status_ipv6 != RES_STATUS_INFLIGHT)
  319. return;
  320. if (dns_result == DNS_ERR_NONE && answer_addr &&
  321. tor_addr_family(answer_addr) == AF_INET6) {
  322. memcpy(&resolve->result_ipv6.addr_ipv6,
  323. tor_addr_to_in6(answer_addr),
  324. sizeof(struct in6_addr));
  325. resolve->res_status_ipv6 = RES_STATUS_DONE_OK;
  326. } else {
  327. resolve->result_ipv6.err_ipv6 = dns_result;
  328. resolve->res_status_ipv6 = RES_STATUS_DONE_ERR;
  329. }
  330. resolve->ttl_ipv6 = ttl;
  331. }
  332. }
  333. /** Return true iff there are no in-flight requests for <b>resolve</b>. */
  334. static int
  335. cached_resolve_have_all_answers(const cached_resolve_t *resolve)
  336. {
  337. return (resolve->res_status_ipv4 != RES_STATUS_INFLIGHT &&
  338. resolve->res_status_ipv6 != RES_STATUS_INFLIGHT &&
  339. resolve->res_status_hostname != RES_STATUS_INFLIGHT);
  340. }
  341. /** Set an expiry time for a cached_resolve_t, and add it to the expiry
  342. * priority queue */
  343. static void
  344. set_expiry(cached_resolve_t *resolve, time_t expires)
  345. {
  346. tor_assert(resolve && resolve->expire == 0);
  347. if (!cached_resolve_pqueue)
  348. cached_resolve_pqueue = smartlist_new();
  349. resolve->expire = expires;
  350. smartlist_pqueue_add(cached_resolve_pqueue,
  351. compare_cached_resolves_by_expiry_,
  352. offsetof(cached_resolve_t, minheap_idx),
  353. resolve);
  354. }
  355. /** Free all storage held in the DNS cache and related structures. */
  356. void
  357. dns_free_all(void)
  358. {
  359. cached_resolve_t **ptr, **next, *item;
  360. assert_cache_ok();
  361. if (cached_resolve_pqueue) {
  362. SMARTLIST_FOREACH(cached_resolve_pqueue, cached_resolve_t *, res,
  363. {
  364. if (res->state == CACHE_STATE_DONE)
  365. free_cached_resolve_(res);
  366. });
  367. }
  368. for (ptr = HT_START(cache_map, &cache_root); ptr != NULL; ptr = next) {
  369. item = *ptr;
  370. next = HT_NEXT_RMV(cache_map, &cache_root, ptr);
  371. free_cached_resolve_(item);
  372. }
  373. HT_CLEAR(cache_map, &cache_root);
  374. smartlist_free(cached_resolve_pqueue);
  375. cached_resolve_pqueue = NULL;
  376. tor_free(resolv_conf_fname);
  377. }
  378. /** Remove every cached_resolve whose <b>expire</b> time is before or
  379. * equal to <b>now</b> from the cache. */
  380. static void
  381. purge_expired_resolves(time_t now)
  382. {
  383. cached_resolve_t *resolve, *removed;
  384. pending_connection_t *pend;
  385. edge_connection_t *pendconn;
  386. assert_cache_ok();
  387. if (!cached_resolve_pqueue)
  388. return;
  389. while (smartlist_len(cached_resolve_pqueue)) {
  390. resolve = smartlist_get(cached_resolve_pqueue, 0);
  391. if (resolve->expire > now)
  392. break;
  393. smartlist_pqueue_pop(cached_resolve_pqueue,
  394. compare_cached_resolves_by_expiry_,
  395. offsetof(cached_resolve_t, minheap_idx));
  396. if (resolve->state == CACHE_STATE_PENDING) {
  397. log_debug(LD_EXIT,
  398. "Expiring a dns resolve %s that's still pending. Forgot to "
  399. "cull it? DNS resolve didn't tell us about the timeout?",
  400. escaped_safe_str(resolve->address));
  401. } else if (resolve->state == CACHE_STATE_CACHED) {
  402. log_debug(LD_EXIT,
  403. "Forgetting old cached resolve (address %s, expires %lu)",
  404. escaped_safe_str(resolve->address),
  405. (unsigned long)resolve->expire);
  406. tor_assert(!resolve->pending_connections);
  407. } else {
  408. tor_assert(resolve->state == CACHE_STATE_DONE);
  409. tor_assert(!resolve->pending_connections);
  410. }
  411. if (resolve->pending_connections) {
  412. log_debug(LD_EXIT,
  413. "Closing pending connections on timed-out DNS resolve!");
  414. while (resolve->pending_connections) {
  415. pend = resolve->pending_connections;
  416. resolve->pending_connections = pend->next;
  417. /* Connections should only be pending if they have no socket. */
  418. tor_assert(!SOCKET_OK(pend->conn->base_.s));
  419. pendconn = pend->conn;
  420. /* Prevent double-remove */
  421. pendconn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  422. if (!pendconn->base_.marked_for_close) {
  423. connection_edge_end(pendconn, END_STREAM_REASON_TIMEOUT);
  424. circuit_detach_stream(circuit_get_by_edge_conn(pendconn), pendconn);
  425. connection_free_(TO_CONN(pendconn));
  426. }
  427. tor_free(pend);
  428. }
  429. }
  430. if (resolve->state == CACHE_STATE_CACHED ||
  431. resolve->state == CACHE_STATE_PENDING) {
  432. removed = HT_REMOVE(cache_map, &cache_root, resolve);
  433. if (removed != resolve) {
  434. log_err(LD_BUG, "The expired resolve we purged didn't match any in"
  435. " the cache. Tried to purge %s (%p); instead got %s (%p).",
  436. resolve->address, (void*)resolve,
  437. removed ? removed->address : "NULL", (void*)removed);
  438. }
  439. tor_assert(removed == resolve);
  440. } else {
  441. /* This should be in state DONE. Make sure it's not in the cache. */
  442. cached_resolve_t *tmp = HT_FIND(cache_map, &cache_root, resolve);
  443. tor_assert(tmp != resolve);
  444. }
  445. if (resolve->res_status_hostname == RES_STATUS_DONE_OK)
  446. tor_free(resolve->result_ptr.hostname);
  447. resolve->magic = 0xF0BBF0BB;
  448. tor_free(resolve);
  449. }
  450. assert_cache_ok();
  451. }
  452. /* argument for send_resolved_cell only, meaning "let the answer type be ipv4
  453. * or ipv6 depending on the connection's address". */
  454. #define RESOLVED_TYPE_AUTO 0xff
  455. /** Send a response to the RESOLVE request of a connection.
  456. * <b>answer_type</b> must be one of
  457. * RESOLVED_TYPE_(AUTO|ERROR|ERROR_TRANSIENT|).
  458. *
  459. * If <b>circ</b> is provided, and we have a cached answer, send the
  460. * answer back along circ; otherwise, send the answer back along
  461. * <b>conn</b>'s attached circuit.
  462. */
  463. MOCK_IMPL(STATIC void,
  464. send_resolved_cell,(edge_connection_t *conn, uint8_t answer_type,
  465. const cached_resolve_t *resolved))
  466. {
  467. char buf[RELAY_PAYLOAD_SIZE], *cp = buf;
  468. size_t buflen = 0;
  469. uint32_t ttl;
  470. buf[0] = answer_type;
  471. ttl = dns_clip_ttl(conn->address_ttl);
  472. switch (answer_type)
  473. {
  474. case RESOLVED_TYPE_AUTO:
  475. if (resolved && resolved->res_status_ipv4 == RES_STATUS_DONE_OK) {
  476. cp[0] = RESOLVED_TYPE_IPV4;
  477. cp[1] = 4;
  478. set_uint32(cp+2, htonl(resolved->result_ipv4.addr_ipv4));
  479. set_uint32(cp+6, htonl(ttl));
  480. cp += 10;
  481. }
  482. if (resolved && resolved->res_status_ipv6 == RES_STATUS_DONE_OK) {
  483. const uint8_t *bytes = resolved->result_ipv6.addr_ipv6.s6_addr;
  484. cp[0] = RESOLVED_TYPE_IPV6;
  485. cp[1] = 16;
  486. memcpy(cp+2, bytes, 16);
  487. set_uint32(cp+18, htonl(ttl));
  488. cp += 22;
  489. }
  490. if (cp != buf) {
  491. buflen = cp - buf;
  492. break;
  493. } else {
  494. answer_type = RESOLVED_TYPE_ERROR;
  495. /* fall through. */
  496. }
  497. /* Falls through. */
  498. case RESOLVED_TYPE_ERROR_TRANSIENT:
  499. case RESOLVED_TYPE_ERROR:
  500. {
  501. const char *errmsg = "Error resolving hostname";
  502. size_t msglen = strlen(errmsg);
  503. buf[0] = answer_type;
  504. buf[1] = msglen;
  505. strlcpy(buf+2, errmsg, sizeof(buf)-2);
  506. set_uint32(buf+2+msglen, htonl(ttl));
  507. buflen = 6+msglen;
  508. break;
  509. }
  510. default:
  511. tor_assert(0);
  512. return;
  513. }
  514. // log_notice(LD_EXIT, "Sending a regular RESOLVED reply: ");
  515. connection_edge_send_command(conn, RELAY_COMMAND_RESOLVED, buf, buflen);
  516. }
  517. /** Send a response to the RESOLVE request of a connection for an in-addr.arpa
  518. * address on connection <b>conn</b> which yielded the result <b>hostname</b>.
  519. * The answer type will be RESOLVED_HOSTNAME.
  520. *
  521. * If <b>circ</b> is provided, and we have a cached answer, send the
  522. * answer back along circ; otherwise, send the answer back along
  523. * <b>conn</b>'s attached circuit.
  524. */
  525. MOCK_IMPL(STATIC void,
  526. send_resolved_hostname_cell,(edge_connection_t *conn,
  527. const char *hostname))
  528. {
  529. char buf[RELAY_PAYLOAD_SIZE];
  530. size_t buflen;
  531. uint32_t ttl;
  532. size_t namelen = strlen(hostname);
  533. tor_assert(hostname);
  534. tor_assert(namelen < 256);
  535. ttl = dns_clip_ttl(conn->address_ttl);
  536. buf[0] = RESOLVED_TYPE_HOSTNAME;
  537. buf[1] = (uint8_t)namelen;
  538. memcpy(buf+2, hostname, namelen);
  539. set_uint32(buf+2+namelen, htonl(ttl));
  540. buflen = 2+namelen+4;
  541. // log_notice(LD_EXIT, "Sending a reply RESOLVED reply: %s", hostname);
  542. connection_edge_send_command(conn, RELAY_COMMAND_RESOLVED, buf, buflen);
  543. // log_notice(LD_EXIT, "Sent");
  544. }
  545. /** See if we have a cache entry for <b>exitconn</b>-\>address. If so,
  546. * if resolve valid, put it into <b>exitconn</b>-\>addr and return 1.
  547. * If resolve failed, free exitconn and return -1.
  548. *
  549. * (For EXIT_PURPOSE_RESOLVE connections, send back a RESOLVED error cell
  550. * on returning -1. For EXIT_PURPOSE_CONNECT connections, there's no
  551. * need to send back an END cell, since connection_exit_begin_conn will
  552. * do that for us.)
  553. *
  554. * If we have a cached answer, send the answer back along <b>exitconn</b>'s
  555. * circuit.
  556. *
  557. * Else, if seen before and pending, add conn to the pending list,
  558. * and return 0.
  559. *
  560. * Else, if not seen before, add conn to pending list, hand to
  561. * dns farm, and return 0.
  562. *
  563. * Exitconn's on_circuit field must be set, but exitconn should not
  564. * yet be linked onto the n_streams/resolving_streams list of that circuit.
  565. * On success, link the connection to n_streams if it's an exit connection.
  566. * On "pending", link the connection to resolving streams. Otherwise,
  567. * clear its on_circuit field.
  568. */
  569. int
  570. dns_resolve(edge_connection_t *exitconn)
  571. {
  572. or_circuit_t *oncirc = TO_OR_CIRCUIT(exitconn->on_circuit);
  573. int is_resolve, r;
  574. int made_connection_pending = 0;
  575. char *hostname = NULL;
  576. cached_resolve_t *resolve = NULL;
  577. is_resolve = exitconn->base_.purpose == EXIT_PURPOSE_RESOLVE;
  578. r = dns_resolve_impl(exitconn, is_resolve, oncirc, &hostname,
  579. &made_connection_pending, &resolve);
  580. switch (r) {
  581. case 1:
  582. /* We got an answer without a lookup -- either the answer was
  583. * cached, or it was obvious (like an IP address). */
  584. if (is_resolve) {
  585. /* Send the answer back right now, and detach. */
  586. if (hostname)
  587. send_resolved_hostname_cell(exitconn, hostname);
  588. else
  589. send_resolved_cell(exitconn, RESOLVED_TYPE_AUTO, resolve);
  590. exitconn->on_circuit = NULL;
  591. } else {
  592. /* Add to the n_streams list; the calling function will send back a
  593. * connected cell. */
  594. exitconn->next_stream = oncirc->n_streams;
  595. oncirc->n_streams = exitconn;
  596. }
  597. break;
  598. case 0:
  599. /* The request is pending: add the connection into the linked list of
  600. * resolving_streams on this circuit. */
  601. exitconn->base_.state = EXIT_CONN_STATE_RESOLVING;
  602. exitconn->next_stream = oncirc->resolving_streams;
  603. oncirc->resolving_streams = exitconn;
  604. break;
  605. case -2:
  606. case -1:
  607. /* The request failed before it could start: cancel this connection,
  608. * and stop everybody waiting for the same connection. */
  609. if (is_resolve) {
  610. send_resolved_cell(exitconn,
  611. (r == -1) ? RESOLVED_TYPE_ERROR : RESOLVED_TYPE_ERROR_TRANSIENT,
  612. NULL);
  613. }
  614. exitconn->on_circuit = NULL;
  615. dns_cancel_pending_resolve(exitconn->base_.address);
  616. if (!made_connection_pending && !exitconn->base_.marked_for_close) {
  617. /* If we made the connection pending, then we freed it already in
  618. * dns_cancel_pending_resolve(). If we marked it for close, it'll
  619. * get freed from the main loop. Otherwise, can free it now. */
  620. connection_free_(TO_CONN(exitconn));
  621. }
  622. break;
  623. default:
  624. tor_assert(0);
  625. }
  626. tor_free(hostname);
  627. return r;
  628. }
  629. /** Helper function for dns_resolve: same functionality, but does not handle:
  630. * - marking connections on error and clearing their on_circuit
  631. * - linking connections to n_streams/resolving_streams,
  632. * - sending resolved cells if we have an answer/error right away,
  633. *
  634. * Return -2 on a transient error. If it's a reverse resolve and it's
  635. * successful, sets *<b>hostname_out</b> to a newly allocated string
  636. * holding the cached reverse DNS value.
  637. *
  638. * Set *<b>made_connection_pending_out</b> to true if we have placed
  639. * <b>exitconn</b> on the list of pending connections for some resolve; set it
  640. * to false otherwise.
  641. *
  642. * Set *<b>resolve_out</b> to a cached resolve, if we found one.
  643. */
  644. MOCK_IMPL(STATIC int,
  645. dns_resolve_impl,(edge_connection_t *exitconn, int is_resolve,
  646. or_circuit_t *oncirc, char **hostname_out,
  647. int *made_connection_pending_out,
  648. cached_resolve_t **resolve_out))
  649. {
  650. cached_resolve_t *resolve;
  651. cached_resolve_t search;
  652. pending_connection_t *pending_connection;
  653. int is_reverse = 0;
  654. tor_addr_t addr;
  655. time_t now = time(NULL);
  656. int r;
  657. assert_connection_ok(TO_CONN(exitconn), 0);
  658. tor_assert(!SOCKET_OK(exitconn->base_.s));
  659. assert_cache_ok();
  660. tor_assert(oncirc);
  661. *made_connection_pending_out = 0;
  662. /* first check if exitconn->base_.address is an IP. If so, we already
  663. * know the answer. */
  664. if (tor_addr_parse(&addr, exitconn->base_.address) >= 0) {
  665. if (tor_addr_family(&addr) == AF_INET ||
  666. tor_addr_family(&addr) == AF_INET6) {
  667. tor_addr_copy(&exitconn->base_.addr, &addr);
  668. exitconn->address_ttl = DEFAULT_DNS_TTL;
  669. return 1;
  670. } else {
  671. /* XXXX unspec? Bogus? */
  672. return -1;
  673. }
  674. }
  675. /* If we're a non-exit, don't even do DNS lookups. */
  676. if (router_my_exit_policy_is_reject_star())
  677. return -1;
  678. if (address_is_invalid_destination(exitconn->base_.address, 0)) {
  679. tor_log(LOG_PROTOCOL_WARN, LD_EXIT,
  680. "Rejecting invalid destination address %s",
  681. escaped_safe_str(exitconn->base_.address));
  682. return -1;
  683. }
  684. /* then take this opportunity to see if there are any expired
  685. * resolves in the hash table. */
  686. purge_expired_resolves(now);
  687. /* lower-case exitconn->base_.address, so it's in canonical form */
  688. tor_strlower(exitconn->base_.address);
  689. /* Check whether this is a reverse lookup. If it's malformed, or it's a
  690. * .in-addr.arpa address but this isn't a resolve request, kill the
  691. * connection.
  692. */
  693. if ((r = tor_addr_parse_PTR_name(&addr, exitconn->base_.address,
  694. AF_UNSPEC, 0)) != 0) {
  695. if (r == 1) {
  696. is_reverse = 1;
  697. if (tor_addr_is_internal(&addr, 0)) /* internal address? */
  698. return -1;
  699. }
  700. if (!is_reverse || !is_resolve) {
  701. if (!is_reverse)
  702. log_info(LD_EXIT, "Bad .in-addr.arpa address \"%s\"; sending error.",
  703. escaped_safe_str(exitconn->base_.address));
  704. else if (!is_resolve)
  705. log_info(LD_EXIT,
  706. "Attempt to connect to a .in-addr.arpa address \"%s\"; "
  707. "sending error.",
  708. escaped_safe_str(exitconn->base_.address));
  709. return -1;
  710. }
  711. //log_notice(LD_EXIT, "Looks like an address %s",
  712. //exitconn->base_.address);
  713. }
  714. exitconn->is_reverse_dns_lookup = is_reverse;
  715. /* now check the hash table to see if 'address' is already there. */
  716. strlcpy(search.address, exitconn->base_.address, sizeof(search.address));
  717. resolve = HT_FIND(cache_map, &cache_root, &search);
  718. if (resolve && resolve->expire > now) { /* already there */
  719. switch (resolve->state) {
  720. case CACHE_STATE_PENDING:
  721. /* add us to the pending list */
  722. pending_connection = tor_malloc_zero(
  723. sizeof(pending_connection_t));
  724. pending_connection->conn = exitconn;
  725. pending_connection->next = resolve->pending_connections;
  726. resolve->pending_connections = pending_connection;
  727. *made_connection_pending_out = 1;
  728. log_debug(LD_EXIT,"Connection (fd "TOR_SOCKET_T_FORMAT") waiting "
  729. "for pending DNS resolve of %s", exitconn->base_.s,
  730. escaped_safe_str(exitconn->base_.address));
  731. return 0;
  732. case CACHE_STATE_CACHED:
  733. log_debug(LD_EXIT,"Connection (fd "TOR_SOCKET_T_FORMAT") found "
  734. "cached answer for %s",
  735. exitconn->base_.s,
  736. escaped_safe_str(resolve->address));
  737. *resolve_out = resolve;
  738. return set_exitconn_info_from_resolve(exitconn, resolve, hostname_out);
  739. case CACHE_STATE_DONE:
  740. log_err(LD_BUG, "Found a 'DONE' dns resolve still in the cache.");
  741. tor_fragile_assert();
  742. }
  743. tor_assert(0);
  744. }
  745. tor_assert(!resolve);
  746. /* not there, need to add it */
  747. resolve = tor_malloc_zero(sizeof(cached_resolve_t));
  748. resolve->magic = CACHED_RESOLVE_MAGIC;
  749. resolve->state = CACHE_STATE_PENDING;
  750. resolve->minheap_idx = -1;
  751. strlcpy(resolve->address, exitconn->base_.address, sizeof(resolve->address));
  752. /* add this connection to the pending list */
  753. pending_connection = tor_malloc_zero(sizeof(pending_connection_t));
  754. pending_connection->conn = exitconn;
  755. resolve->pending_connections = pending_connection;
  756. *made_connection_pending_out = 1;
  757. /* Add this resolve to the cache and priority queue. */
  758. HT_INSERT(cache_map, &cache_root, resolve);
  759. set_expiry(resolve, now + RESOLVE_MAX_TIMEOUT);
  760. log_debug(LD_EXIT,"Launching %s.",
  761. escaped_safe_str(exitconn->base_.address));
  762. assert_cache_ok();
  763. return launch_resolve(resolve);
  764. }
  765. /** Given an exit connection <b>exitconn</b>, and a cached_resolve_t
  766. * <b>resolve</b> whose DNS lookups have all either succeeded or failed,
  767. * update the appropriate fields (address_ttl and addr) of <b>exitconn</b>.
  768. *
  769. * The logic can be complicated here, since we might have launched both
  770. * an A lookup and an AAAA lookup, and since either of those might have
  771. * succeeded or failed, and since we want to answer a RESOLVE cell with
  772. * a full answer but answer a BEGIN cell with whatever answer the client
  773. * would accept <i>and</i> we could still connect to.
  774. *
  775. * If this is a reverse lookup, set *<b>hostname_out</b> to a newly allocated
  776. * copy of the name resulting hostname.
  777. *
  778. * Return -2 on a transient error, -1 on a permenent error, and 1 on
  779. * a successful lookup.
  780. */
  781. MOCK_IMPL(STATIC int,
  782. set_exitconn_info_from_resolve,(edge_connection_t *exitconn,
  783. const cached_resolve_t *resolve,
  784. char **hostname_out))
  785. {
  786. int ipv4_ok, ipv6_ok, answer_with_ipv4, r;
  787. uint32_t begincell_flags;
  788. const int is_resolve = exitconn->base_.purpose == EXIT_PURPOSE_RESOLVE;
  789. tor_assert(exitconn);
  790. tor_assert(resolve);
  791. if (exitconn->is_reverse_dns_lookup) {
  792. exitconn->address_ttl = resolve->ttl_hostname;
  793. if (resolve->res_status_hostname == RES_STATUS_DONE_OK) {
  794. *hostname_out = tor_strdup(resolve->result_ptr.hostname);
  795. return 1;
  796. } else {
  797. return -1;
  798. }
  799. }
  800. /* If we're here then the connection wants one or either of ipv4, ipv6, and
  801. * we can give it one or both. */
  802. if (is_resolve) {
  803. begincell_flags = BEGIN_FLAG_IPV6_OK;
  804. } else {
  805. begincell_flags = exitconn->begincell_flags;
  806. }
  807. ipv4_ok = (resolve->res_status_ipv4 == RES_STATUS_DONE_OK) &&
  808. ! (begincell_flags & BEGIN_FLAG_IPV4_NOT_OK);
  809. ipv6_ok = (resolve->res_status_ipv6 == RES_STATUS_DONE_OK) &&
  810. (begincell_flags & BEGIN_FLAG_IPV6_OK) &&
  811. get_options()->IPv6Exit;
  812. /* Now decide which one to actually give. */
  813. if (ipv4_ok && ipv6_ok && is_resolve) {
  814. answer_with_ipv4 = 1;
  815. } else if (ipv4_ok && ipv6_ok) {
  816. /* If we have both, see if our exit policy has an opinion. */
  817. const uint16_t port = exitconn->base_.port;
  818. int ipv4_allowed, ipv6_allowed;
  819. tor_addr_t a4, a6;
  820. tor_addr_from_ipv4h(&a4, resolve->result_ipv4.addr_ipv4);
  821. tor_addr_from_in6(&a6, &resolve->result_ipv6.addr_ipv6);
  822. ipv4_allowed = !router_compare_to_my_exit_policy(&a4, port);
  823. ipv6_allowed = !router_compare_to_my_exit_policy(&a6, port);
  824. if (ipv4_allowed && !ipv6_allowed) {
  825. answer_with_ipv4 = 1;
  826. } else if (ipv6_allowed && !ipv4_allowed) {
  827. answer_with_ipv4 = 0;
  828. } else {
  829. /* Our exit policy would permit both. Answer with whichever the user
  830. * prefers */
  831. answer_with_ipv4 = !(begincell_flags &
  832. BEGIN_FLAG_IPV6_PREFERRED);
  833. }
  834. } else {
  835. /* Otherwise if one is okay, send it back. */
  836. if (ipv4_ok) {
  837. answer_with_ipv4 = 1;
  838. } else if (ipv6_ok) {
  839. answer_with_ipv4 = 0;
  840. } else {
  841. /* Neither one was okay. Choose based on user preference. */
  842. answer_with_ipv4 = !(begincell_flags &
  843. BEGIN_FLAG_IPV6_PREFERRED);
  844. }
  845. }
  846. /* Finally, we write the answer back. */
  847. r = 1;
  848. if (answer_with_ipv4) {
  849. if (resolve->res_status_ipv4 == RES_STATUS_DONE_OK) {
  850. tor_addr_from_ipv4h(&exitconn->base_.addr,
  851. resolve->result_ipv4.addr_ipv4);
  852. } else {
  853. r = evdns_err_is_transient(resolve->result_ipv4.err_ipv4) ? -2 : -1;
  854. }
  855. exitconn->address_ttl = resolve->ttl_ipv4;
  856. } else {
  857. if (resolve->res_status_ipv6 == RES_STATUS_DONE_OK) {
  858. tor_addr_from_in6(&exitconn->base_.addr,
  859. &resolve->result_ipv6.addr_ipv6);
  860. } else {
  861. r = evdns_err_is_transient(resolve->result_ipv6.err_ipv6) ? -2 : -1;
  862. }
  863. exitconn->address_ttl = resolve->ttl_ipv6;
  864. }
  865. return r;
  866. }
  867. /** Log an error and abort if conn is waiting for a DNS resolve.
  868. */
  869. void
  870. assert_connection_edge_not_dns_pending(edge_connection_t *conn)
  871. {
  872. pending_connection_t *pend;
  873. cached_resolve_t search;
  874. #if 1
  875. cached_resolve_t *resolve;
  876. strlcpy(search.address, conn->base_.address, sizeof(search.address));
  877. resolve = HT_FIND(cache_map, &cache_root, &search);
  878. if (!resolve)
  879. return;
  880. for (pend = resolve->pending_connections; pend; pend = pend->next) {
  881. tor_assert(pend->conn != conn);
  882. }
  883. #else /* !(1) */
  884. cached_resolve_t **resolve;
  885. HT_FOREACH(resolve, cache_map, &cache_root) {
  886. for (pend = (*resolve)->pending_connections; pend; pend = pend->next) {
  887. tor_assert(pend->conn != conn);
  888. }
  889. }
  890. #endif /* 1 */
  891. }
  892. /** Log an error and abort if any connection waiting for a DNS resolve is
  893. * corrupted. */
  894. void
  895. assert_all_pending_dns_resolves_ok(void)
  896. {
  897. pending_connection_t *pend;
  898. cached_resolve_t **resolve;
  899. HT_FOREACH(resolve, cache_map, &cache_root) {
  900. for (pend = (*resolve)->pending_connections;
  901. pend;
  902. pend = pend->next) {
  903. assert_connection_ok(TO_CONN(pend->conn), 0);
  904. tor_assert(!SOCKET_OK(pend->conn->base_.s));
  905. tor_assert(!connection_in_array(TO_CONN(pend->conn)));
  906. }
  907. }
  908. }
  909. /** Remove <b>conn</b> from the list of connections waiting for conn-\>address.
  910. */
  911. void
  912. connection_dns_remove(edge_connection_t *conn)
  913. {
  914. pending_connection_t *pend, *victim;
  915. cached_resolve_t search;
  916. cached_resolve_t *resolve;
  917. tor_assert(conn->base_.type == CONN_TYPE_EXIT);
  918. tor_assert(conn->base_.state == EXIT_CONN_STATE_RESOLVING);
  919. strlcpy(search.address, conn->base_.address, sizeof(search.address));
  920. resolve = HT_FIND(cache_map, &cache_root, &search);
  921. if (!resolve) {
  922. log_notice(LD_BUG, "Address %s is not pending. Dropping.",
  923. escaped_safe_str(conn->base_.address));
  924. return;
  925. }
  926. tor_assert(resolve->pending_connections);
  927. assert_connection_ok(TO_CONN(conn),0);
  928. pend = resolve->pending_connections;
  929. if (pend->conn == conn) {
  930. resolve->pending_connections = pend->next;
  931. tor_free(pend);
  932. log_debug(LD_EXIT, "First connection (fd "TOR_SOCKET_T_FORMAT") no "
  933. "longer waiting for resolve of %s",
  934. conn->base_.s,
  935. escaped_safe_str(conn->base_.address));
  936. return;
  937. } else {
  938. for ( ; pend->next; pend = pend->next) {
  939. if (pend->next->conn == conn) {
  940. victim = pend->next;
  941. pend->next = victim->next;
  942. tor_free(victim);
  943. log_debug(LD_EXIT,
  944. "Connection (fd "TOR_SOCKET_T_FORMAT") no longer waiting "
  945. "for resolve of %s",
  946. conn->base_.s, escaped_safe_str(conn->base_.address));
  947. return; /* more are pending */
  948. }
  949. }
  950. log_warn(LD_BUG, "Connection (fd "TOR_SOCKET_T_FORMAT") was not waiting "
  951. "for a resolve of %s, but we tried to remove it.",
  952. conn->base_.s, escaped_safe_str(conn->base_.address));
  953. }
  954. }
  955. /** Mark all connections waiting for <b>address</b> for close. Then cancel
  956. * the resolve for <b>address</b> itself, and remove any cached results for
  957. * <b>address</b> from the cache.
  958. */
  959. MOCK_IMPL(void,
  960. dns_cancel_pending_resolve,(const char *address))
  961. {
  962. pending_connection_t *pend;
  963. cached_resolve_t search;
  964. cached_resolve_t *resolve, *tmp;
  965. edge_connection_t *pendconn;
  966. circuit_t *circ;
  967. strlcpy(search.address, address, sizeof(search.address));
  968. resolve = HT_FIND(cache_map, &cache_root, &search);
  969. if (!resolve)
  970. return;
  971. if (resolve->state != CACHE_STATE_PENDING) {
  972. /* We can get into this state if we never actually created the pending
  973. * resolve, due to finding an earlier cached error or something. Just
  974. * ignore it. */
  975. if (resolve->pending_connections) {
  976. log_warn(LD_BUG,
  977. "Address %s is not pending but has pending connections!",
  978. escaped_safe_str(address));
  979. tor_fragile_assert();
  980. }
  981. return;
  982. }
  983. if (!resolve->pending_connections) {
  984. log_warn(LD_BUG,
  985. "Address %s is pending but has no pending connections!",
  986. escaped_safe_str(address));
  987. tor_fragile_assert();
  988. return;
  989. }
  990. tor_assert(resolve->pending_connections);
  991. /* mark all pending connections to fail */
  992. log_debug(LD_EXIT,
  993. "Failing all connections waiting on DNS resolve of %s",
  994. escaped_safe_str(address));
  995. while (resolve->pending_connections) {
  996. pend = resolve->pending_connections;
  997. pend->conn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  998. pendconn = pend->conn;
  999. assert_connection_ok(TO_CONN(pendconn), 0);
  1000. tor_assert(!SOCKET_OK(pendconn->base_.s));
  1001. if (!pendconn->base_.marked_for_close) {
  1002. connection_edge_end(pendconn, END_STREAM_REASON_RESOLVEFAILED);
  1003. }
  1004. circ = circuit_get_by_edge_conn(pendconn);
  1005. if (circ)
  1006. circuit_detach_stream(circ, pendconn);
  1007. if (!pendconn->base_.marked_for_close)
  1008. connection_free_(TO_CONN(pendconn));
  1009. resolve->pending_connections = pend->next;
  1010. tor_free(pend);
  1011. }
  1012. tmp = HT_REMOVE(cache_map, &cache_root, resolve);
  1013. if (tmp != resolve) {
  1014. log_err(LD_BUG, "The cancelled resolve we purged didn't match any in"
  1015. " the cache. Tried to purge %s (%p); instead got %s (%p).",
  1016. resolve->address, (void*)resolve,
  1017. tmp ? tmp->address : "NULL", (void*)tmp);
  1018. }
  1019. tor_assert(tmp == resolve);
  1020. resolve->state = CACHE_STATE_DONE;
  1021. }
  1022. /** Return true iff <b>address</b> is one of the addresses we use to verify
  1023. * that well-known sites aren't being hijacked by our DNS servers. */
  1024. static inline int
  1025. is_test_address(const char *address)
  1026. {
  1027. const or_options_t *options = get_options();
  1028. return options->ServerDNSTestAddresses &&
  1029. smartlist_contains_string_case(options->ServerDNSTestAddresses, address);
  1030. }
  1031. /** Called on the OR side when the eventdns library tells us the outcome of a
  1032. * single DNS resolve: remember the answer, and tell all pending connections
  1033. * about the result of the lookup if the lookup is now done. (<b>address</b>
  1034. * is a NUL-terminated string containing the address to look up;
  1035. * <b>query_type</b> is one of DNS_{IPv4_A,IPv6_AAAA,PTR}; <b>dns_answer</b>
  1036. * is DNS_OK or one of DNS_ERR_*, <b>addr</b> is an IPv4 or IPv6 address if we
  1037. * got one; <b>hostname</b> is a hostname fora PTR request if we got one, and
  1038. * <b>ttl</b> is the time-to-live of this answer, in seconds.)
  1039. */
  1040. static void
  1041. dns_found_answer(const char *address, uint8_t query_type,
  1042. int dns_answer,
  1043. const tor_addr_t *addr,
  1044. const char *hostname, uint32_t ttl)
  1045. {
  1046. cached_resolve_t search;
  1047. cached_resolve_t *resolve;
  1048. assert_cache_ok();
  1049. strlcpy(search.address, address, sizeof(search.address));
  1050. resolve = HT_FIND(cache_map, &cache_root, &search);
  1051. if (!resolve) {
  1052. int is_test_addr = is_test_address(address);
  1053. if (!is_test_addr)
  1054. log_info(LD_EXIT,"Resolved unasked address %s; ignoring.",
  1055. escaped_safe_str(address));
  1056. return;
  1057. }
  1058. assert_resolve_ok(resolve);
  1059. if (resolve->state != CACHE_STATE_PENDING) {
  1060. /* XXXX Maybe update addr? or check addr for consistency? Or let
  1061. * VALID replace FAILED? */
  1062. int is_test_addr = is_test_address(address);
  1063. if (!is_test_addr)
  1064. log_notice(LD_EXIT,
  1065. "Resolved %s which was already resolved; ignoring",
  1066. escaped_safe_str(address));
  1067. tor_assert(resolve->pending_connections == NULL);
  1068. return;
  1069. }
  1070. cached_resolve_add_answer(resolve, query_type, dns_answer,
  1071. addr, hostname, ttl);
  1072. if (cached_resolve_have_all_answers(resolve)) {
  1073. inform_pending_connections(resolve);
  1074. make_pending_resolve_cached(resolve);
  1075. }
  1076. }
  1077. /** Given a pending cached_resolve_t that we just finished resolving,
  1078. * inform every connection that was waiting for the outcome of that
  1079. * resolution.
  1080. *
  1081. * Do this by sending a RELAY_RESOLVED cell (if the pending stream had sent us
  1082. * RELAY_RESOLVE cell), or by launching an exit connection (if the pending
  1083. * stream had send us a RELAY_BEGIN cell).
  1084. */
  1085. static void
  1086. inform_pending_connections(cached_resolve_t *resolve)
  1087. {
  1088. pending_connection_t *pend;
  1089. edge_connection_t *pendconn;
  1090. int r;
  1091. while (resolve->pending_connections) {
  1092. char *hostname = NULL;
  1093. pend = resolve->pending_connections;
  1094. pendconn = pend->conn; /* don't pass complex things to the
  1095. connection_mark_for_close macro */
  1096. assert_connection_ok(TO_CONN(pendconn),time(NULL));
  1097. if (pendconn->base_.marked_for_close) {
  1098. /* prevent double-remove. */
  1099. pendconn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  1100. resolve->pending_connections = pend->next;
  1101. tor_free(pend);
  1102. continue;
  1103. }
  1104. r = set_exitconn_info_from_resolve(pendconn,
  1105. resolve,
  1106. &hostname);
  1107. if (r < 0) {
  1108. /* prevent double-remove. */
  1109. pendconn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  1110. if (pendconn->base_.purpose == EXIT_PURPOSE_CONNECT) {
  1111. connection_edge_end(pendconn, END_STREAM_REASON_RESOLVEFAILED);
  1112. /* This detach must happen after we send the end cell. */
  1113. circuit_detach_stream(circuit_get_by_edge_conn(pendconn), pendconn);
  1114. } else {
  1115. send_resolved_cell(pendconn, r == -1 ?
  1116. RESOLVED_TYPE_ERROR : RESOLVED_TYPE_ERROR_TRANSIENT,
  1117. NULL);
  1118. /* This detach must happen after we send the resolved cell. */
  1119. circuit_detach_stream(circuit_get_by_edge_conn(pendconn), pendconn);
  1120. }
  1121. connection_free_(TO_CONN(pendconn));
  1122. } else {
  1123. circuit_t *circ;
  1124. if (pendconn->base_.purpose == EXIT_PURPOSE_CONNECT) {
  1125. /* prevent double-remove. */
  1126. pend->conn->base_.state = EXIT_CONN_STATE_CONNECTING;
  1127. circ = circuit_get_by_edge_conn(pend->conn);
  1128. tor_assert(circ);
  1129. tor_assert(!CIRCUIT_IS_ORIGIN(circ));
  1130. /* unlink pend->conn from resolving_streams, */
  1131. circuit_detach_stream(circ, pend->conn);
  1132. /* and link it to n_streams */
  1133. pend->conn->next_stream = TO_OR_CIRCUIT(circ)->n_streams;
  1134. pend->conn->on_circuit = circ;
  1135. TO_OR_CIRCUIT(circ)->n_streams = pend->conn;
  1136. connection_exit_connect(pend->conn);
  1137. } else {
  1138. /* prevent double-remove. This isn't really an accurate state,
  1139. * but it does the right thing. */
  1140. pendconn->base_.state = EXIT_CONN_STATE_RESOLVEFAILED;
  1141. if (pendconn->is_reverse_dns_lookup)
  1142. send_resolved_hostname_cell(pendconn, hostname);
  1143. else
  1144. send_resolved_cell(pendconn, RESOLVED_TYPE_AUTO, resolve);
  1145. circ = circuit_get_by_edge_conn(pendconn);
  1146. tor_assert(circ);
  1147. circuit_detach_stream(circ, pendconn);
  1148. connection_free_(TO_CONN(pendconn));
  1149. }
  1150. }
  1151. resolve->pending_connections = pend->next;
  1152. tor_free(pend);
  1153. tor_free(hostname);
  1154. }
  1155. }
  1156. /** Remove a pending cached_resolve_t from the hashtable, and add a
  1157. * corresponding cached cached_resolve_t.
  1158. *
  1159. * This function is only necessary because of the perversity of our
  1160. * cache timeout code; see inline comment for ideas on eliminating it.
  1161. **/
  1162. static void
  1163. make_pending_resolve_cached(cached_resolve_t *resolve)
  1164. {
  1165. cached_resolve_t *removed;
  1166. resolve->state = CACHE_STATE_DONE;
  1167. removed = HT_REMOVE(cache_map, &cache_root, resolve);
  1168. if (removed != resolve) {
  1169. log_err(LD_BUG, "The pending resolve we found wasn't removable from"
  1170. " the cache. Tried to purge %s (%p); instead got %s (%p).",
  1171. resolve->address, (void*)resolve,
  1172. removed ? removed->address : "NULL", (void*)removed);
  1173. }
  1174. assert_resolve_ok(resolve);
  1175. assert_cache_ok();
  1176. /* The resolve will eventually just hit the time-out in the expiry queue and
  1177. * expire. See fd0bafb0dedc7e2 for a brief explanation of how this got that
  1178. * way. XXXXX we could do better!*/
  1179. {
  1180. cached_resolve_t *new_resolve = tor_memdup(resolve,
  1181. sizeof(cached_resolve_t));
  1182. uint32_t ttl = UINT32_MAX;
  1183. new_resolve->expire = 0; /* So that set_expiry won't croak. */
  1184. if (resolve->res_status_hostname == RES_STATUS_DONE_OK)
  1185. new_resolve->result_ptr.hostname =
  1186. tor_strdup(resolve->result_ptr.hostname);
  1187. new_resolve->state = CACHE_STATE_CACHED;
  1188. assert_resolve_ok(new_resolve);
  1189. HT_INSERT(cache_map, &cache_root, new_resolve);
  1190. if ((resolve->res_status_ipv4 == RES_STATUS_DONE_OK ||
  1191. resolve->res_status_ipv4 == RES_STATUS_DONE_ERR) &&
  1192. resolve->ttl_ipv4 < ttl)
  1193. ttl = resolve->ttl_ipv4;
  1194. if ((resolve->res_status_ipv6 == RES_STATUS_DONE_OK ||
  1195. resolve->res_status_ipv6 == RES_STATUS_DONE_ERR) &&
  1196. resolve->ttl_ipv6 < ttl)
  1197. ttl = resolve->ttl_ipv6;
  1198. if ((resolve->res_status_hostname == RES_STATUS_DONE_OK ||
  1199. resolve->res_status_hostname == RES_STATUS_DONE_ERR) &&
  1200. resolve->ttl_hostname < ttl)
  1201. ttl = resolve->ttl_hostname;
  1202. set_expiry(new_resolve, time(NULL) + dns_clip_ttl(ttl));
  1203. }
  1204. assert_cache_ok();
  1205. }
  1206. /** Eventdns helper: return true iff the eventdns result <b>err</b> is
  1207. * a transient failure. */
  1208. static int
  1209. evdns_err_is_transient(int err)
  1210. {
  1211. switch (err)
  1212. {
  1213. case DNS_ERR_SERVERFAILED:
  1214. case DNS_ERR_TRUNCATED:
  1215. case DNS_ERR_TIMEOUT:
  1216. return 1;
  1217. default:
  1218. return 0;
  1219. }
  1220. }
  1221. /** Configure eventdns nameservers if force is true, or if the configuration
  1222. * has changed since the last time we called this function, or if we failed on
  1223. * our last attempt. On Unix, this reads from /etc/resolv.conf or
  1224. * options->ServerDNSResolvConfFile; on Windows, this reads from
  1225. * options->ServerDNSResolvConfFile or the registry. Return 0 on success or
  1226. * -1 on failure. */
  1227. static int
  1228. configure_nameservers(int force)
  1229. {
  1230. const or_options_t *options;
  1231. const char *conf_fname;
  1232. struct stat st;
  1233. int r, flags;
  1234. options = get_options();
  1235. conf_fname = options->ServerDNSResolvConfFile;
  1236. #ifndef _WIN32
  1237. if (!conf_fname)
  1238. conf_fname = "/etc/resolv.conf";
  1239. #endif
  1240. flags = DNS_OPTIONS_ALL;
  1241. if (!the_evdns_base) {
  1242. if (!(the_evdns_base = evdns_base_new(tor_libevent_get_base(), 0))) {
  1243. log_err(LD_BUG, "Couldn't create an evdns_base");
  1244. return -1;
  1245. }
  1246. }
  1247. evdns_set_log_fn(evdns_log_cb);
  1248. if (conf_fname) {
  1249. log_debug(LD_FS, "stat()ing %s", conf_fname);
  1250. if (stat(sandbox_intern_string(conf_fname), &st)) {
  1251. log_warn(LD_EXIT, "Unable to stat resolver configuration in '%s': %s",
  1252. conf_fname, strerror(errno));
  1253. goto err;
  1254. }
  1255. if (!force && resolv_conf_fname && !strcmp(conf_fname,resolv_conf_fname)
  1256. && st.st_mtime == resolv_conf_mtime) {
  1257. log_info(LD_EXIT, "No change to '%s'", conf_fname);
  1258. return 0;
  1259. }
  1260. if (nameservers_configured) {
  1261. evdns_base_search_clear(the_evdns_base);
  1262. evdns_base_clear_nameservers_and_suspend(the_evdns_base);
  1263. }
  1264. #if defined(DNS_OPTION_HOSTSFILE) && defined(USE_LIBSECCOMP)
  1265. if (flags & DNS_OPTION_HOSTSFILE) {
  1266. flags ^= DNS_OPTION_HOSTSFILE;
  1267. log_debug(LD_FS, "Loading /etc/hosts");
  1268. evdns_base_load_hosts(the_evdns_base,
  1269. sandbox_intern_string("/etc/hosts"));
  1270. }
  1271. #endif /* defined(DNS_OPTION_HOSTSFILE) && defined(USE_LIBSECCOMP) */
  1272. log_info(LD_EXIT, "Parsing resolver configuration in '%s'", conf_fname);
  1273. if ((r = evdns_base_resolv_conf_parse(the_evdns_base, flags,
  1274. sandbox_intern_string(conf_fname)))) {
  1275. log_warn(LD_EXIT, "Unable to parse '%s', or no nameservers in '%s' (%d)",
  1276. conf_fname, conf_fname, r);
  1277. goto err;
  1278. }
  1279. if (evdns_base_count_nameservers(the_evdns_base) == 0) {
  1280. log_warn(LD_EXIT, "Unable to find any nameservers in '%s'.", conf_fname);
  1281. goto err;
  1282. }
  1283. tor_free(resolv_conf_fname);
  1284. resolv_conf_fname = tor_strdup(conf_fname);
  1285. resolv_conf_mtime = st.st_mtime;
  1286. if (nameservers_configured)
  1287. evdns_base_resume(the_evdns_base);
  1288. }
  1289. #ifdef _WIN32
  1290. else {
  1291. if (nameservers_configured) {
  1292. evdns_base_search_clear(the_evdns_base);
  1293. evdns_base_clear_nameservers_and_suspend(the_evdns_base);
  1294. }
  1295. if (evdns_base_config_windows_nameservers(the_evdns_base)) {
  1296. log_warn(LD_EXIT,"Could not config nameservers.");
  1297. goto err;
  1298. }
  1299. if (evdns_base_count_nameservers(the_evdns_base) == 0) {
  1300. log_warn(LD_EXIT, "Unable to find any platform nameservers in "
  1301. "your Windows configuration.");
  1302. goto err;
  1303. }
  1304. if (nameservers_configured)
  1305. evdns_base_resume(the_evdns_base);
  1306. tor_free(resolv_conf_fname);
  1307. resolv_conf_mtime = 0;
  1308. }
  1309. #endif /* defined(_WIN32) */
  1310. #define SET(k,v) evdns_base_set_option(the_evdns_base, (k), (v))
  1311. // If we only have one nameserver, it does not make sense to back off
  1312. // from it for a timeout. Unfortunately, the value for max-timeouts is
  1313. // currently clamped by libevent to 255, but it does not hurt to set
  1314. // it higher in case libevent gets a patch for this. Higher-than-
  1315. // default maximum of 3 with multiple nameservers to avoid spuriously
  1316. // marking one down on bursts of timeouts resulting from scans/attacks
  1317. // against non-responding authoritative DNS servers.
  1318. if (evdns_base_count_nameservers(the_evdns_base) == 1) {
  1319. SET("max-timeouts:", "1000000");
  1320. } else {
  1321. SET("max-timeouts:", "10");
  1322. }
  1323. // Elongate the queue of maximum inflight dns requests, so if a bunch
  1324. // remain pending at the resolver (happens commonly with Unbound) we won't
  1325. // stall every other DNS request. This potentially means some wasted
  1326. // CPU as there's a walk over a linear queue involved, but this is a
  1327. // much better tradeoff compared to just failing DNS requests because
  1328. // of a full queue.
  1329. SET("max-inflight:", "8192");
  1330. // Two retries at 5 and 10 seconds for bind9/named which relies on
  1331. // clients to handle retries. Second retry for retried circuits with
  1332. // extended 15 second timeout. Superfluous with local-system Unbound
  1333. // instance--has its own elaborate retry scheme.
  1334. SET("timeout:", "5");
  1335. SET("attempts:","3");
  1336. if (options->ServerDNSRandomizeCase)
  1337. SET("randomize-case:", "1");
  1338. else
  1339. SET("randomize-case:", "0");
  1340. #undef SET
  1341. dns_servers_relaunch_checks();
  1342. nameservers_configured = 1;
  1343. if (nameserver_config_failed) {
  1344. nameserver_config_failed = 0;
  1345. /* XXX the three calls to republish the descriptor might be producing
  1346. * descriptors that are only cosmetically different, especially on
  1347. * non-exit relays! -RD */
  1348. mark_my_descriptor_dirty("dns resolvers back");
  1349. }
  1350. return 0;
  1351. err:
  1352. nameservers_configured = 0;
  1353. if (! nameserver_config_failed) {
  1354. nameserver_config_failed = 1;
  1355. mark_my_descriptor_dirty("dns resolvers failed");
  1356. }
  1357. return -1;
  1358. }
  1359. /** For eventdns: Called when we get an answer for a request we launched.
  1360. * See eventdns.h for arguments; 'arg' holds the address we tried to resolve.
  1361. */
  1362. static void
  1363. evdns_callback(int result, char type, int count, int ttl, void *addresses,
  1364. void *arg)
  1365. {
  1366. char *arg_ = arg;
  1367. uint8_t orig_query_type = arg_[0];
  1368. char *string_address = arg_ + 1;
  1369. tor_addr_t addr;
  1370. const char *hostname = NULL;
  1371. int was_wildcarded = 0;
  1372. tor_addr_make_unspec(&addr);
  1373. /* Keep track of whether IPv6 is working */
  1374. if (type == DNS_IPv6_AAAA) {
  1375. if (result == DNS_ERR_TIMEOUT) {
  1376. ++n_ipv6_timeouts;
  1377. }
  1378. if (n_ipv6_timeouts > 10 &&
  1379. n_ipv6_timeouts > n_ipv6_requests_made / 2) {
  1380. if (! dns_is_broken_for_ipv6) {
  1381. log_notice(LD_EXIT, "More than half of our IPv6 requests seem to "
  1382. "have timed out. I'm going to assume I can't get AAAA "
  1383. "responses.");
  1384. dns_is_broken_for_ipv6 = 1;
  1385. }
  1386. }
  1387. }
  1388. if (result == DNS_ERR_NONE) {
  1389. if (type == DNS_IPv4_A && count) {
  1390. char answer_buf[INET_NTOA_BUF_LEN+1];
  1391. char *escaped_address;
  1392. uint32_t *addrs = addresses;
  1393. tor_addr_from_ipv4n(&addr, addrs[0]);
  1394. tor_addr_to_str(answer_buf, &addr, sizeof(answer_buf), 0);
  1395. escaped_address = esc_for_log(string_address);
  1396. if (answer_is_wildcarded(answer_buf)) {
  1397. log_debug(LD_EXIT, "eventdns said that %s resolves to ISP-hijacked "
  1398. "address %s; treating as a failure.",
  1399. safe_str(escaped_address),
  1400. escaped_safe_str(answer_buf));
  1401. was_wildcarded = 1;
  1402. tor_addr_make_unspec(&addr);
  1403. result = DNS_ERR_NOTEXIST;
  1404. } else {
  1405. log_debug(LD_EXIT, "eventdns said that %s resolves to %s",
  1406. safe_str(escaped_address),
  1407. escaped_safe_str(answer_buf));
  1408. }
  1409. tor_free(escaped_address);
  1410. } else if (type == DNS_IPv6_AAAA && count) {
  1411. char answer_buf[TOR_ADDR_BUF_LEN];
  1412. char *escaped_address;
  1413. struct in6_addr *addrs = addresses;
  1414. tor_addr_from_in6(&addr, &addrs[0]);
  1415. tor_inet_ntop(AF_INET6, &addrs[0], answer_buf, sizeof(answer_buf));
  1416. escaped_address = esc_for_log(string_address);
  1417. if (answer_is_wildcarded(answer_buf)) {
  1418. log_debug(LD_EXIT, "eventdns said that %s resolves to ISP-hijacked "
  1419. "address %s; treating as a failure.",
  1420. safe_str(escaped_address),
  1421. escaped_safe_str(answer_buf));
  1422. was_wildcarded = 1;
  1423. tor_addr_make_unspec(&addr);
  1424. result = DNS_ERR_NOTEXIST;
  1425. } else {
  1426. log_debug(LD_EXIT, "eventdns said that %s resolves to %s",
  1427. safe_str(escaped_address),
  1428. escaped_safe_str(answer_buf));
  1429. }
  1430. tor_free(escaped_address);
  1431. } else if (type == DNS_PTR && count) {
  1432. char *escaped_address;
  1433. hostname = ((char**)addresses)[0];
  1434. escaped_address = esc_for_log(string_address);
  1435. log_debug(LD_EXIT, "eventdns said that %s resolves to %s",
  1436. safe_str(escaped_address),
  1437. escaped_safe_str(hostname));
  1438. tor_free(escaped_address);
  1439. } else if (count) {
  1440. log_info(LD_EXIT, "eventdns returned only unrecognized answer types "
  1441. " for %s.",
  1442. escaped_safe_str(string_address));
  1443. } else {
  1444. log_info(LD_EXIT, "eventdns returned no addresses or error for %s.",
  1445. escaped_safe_str(string_address));
  1446. }
  1447. }
  1448. if (was_wildcarded) {
  1449. if (is_test_address(string_address)) {
  1450. /* Ick. We're getting redirected on known-good addresses. Our DNS
  1451. * server must really hate us. */
  1452. add_wildcarded_test_address(string_address);
  1453. }
  1454. }
  1455. if (orig_query_type && type && orig_query_type != type) {
  1456. log_warn(LD_BUG, "Weird; orig_query_type == %d but type == %d",
  1457. (int)orig_query_type, (int)type);
  1458. }
  1459. if (result != DNS_ERR_SHUTDOWN)
  1460. dns_found_answer(string_address, orig_query_type,
  1461. result, &addr, hostname, ttl);
  1462. tor_free(arg_);
  1463. }
  1464. /** Start a single DNS resolve for <b>address</b> (if <b>query_type</b> is
  1465. * DNS_IPv4_A or DNS_IPv6_AAAA) <b>ptr_address</b> (if <b>query_type</b> is
  1466. * DNS_PTR). Return 0 if we launched the request, -1 otherwise. */
  1467. static int
  1468. launch_one_resolve(const char *address, uint8_t query_type,
  1469. const tor_addr_t *ptr_address)
  1470. {
  1471. const int options = get_options()->ServerDNSSearchDomains ? 0
  1472. : DNS_QUERY_NO_SEARCH;
  1473. const size_t addr_len = strlen(address);
  1474. struct evdns_request *req = 0;
  1475. char *addr = tor_malloc(addr_len + 2);
  1476. addr[0] = (char) query_type;
  1477. memcpy(addr+1, address, addr_len + 1);
  1478. switch (query_type) {
  1479. case DNS_IPv4_A:
  1480. req = evdns_base_resolve_ipv4(the_evdns_base,
  1481. address, options, evdns_callback, addr);
  1482. break;
  1483. case DNS_IPv6_AAAA:
  1484. req = evdns_base_resolve_ipv6(the_evdns_base,
  1485. address, options, evdns_callback, addr);
  1486. ++n_ipv6_requests_made;
  1487. break;
  1488. case DNS_PTR:
  1489. if (tor_addr_family(ptr_address) == AF_INET)
  1490. req = evdns_base_resolve_reverse(the_evdns_base,
  1491. tor_addr_to_in(ptr_address),
  1492. DNS_QUERY_NO_SEARCH,
  1493. evdns_callback, addr);
  1494. else if (tor_addr_family(ptr_address) == AF_INET6)
  1495. req = evdns_base_resolve_reverse_ipv6(the_evdns_base,
  1496. tor_addr_to_in6(ptr_address),
  1497. DNS_QUERY_NO_SEARCH,
  1498. evdns_callback, addr);
  1499. else
  1500. log_warn(LD_BUG, "Called with PTR query and unexpected address family");
  1501. break;
  1502. default:
  1503. log_warn(LD_BUG, "Called with unexpectd query type %d", (int)query_type);
  1504. break;
  1505. }
  1506. if (req) {
  1507. return 0;
  1508. } else {
  1509. tor_free(addr);
  1510. return -1;
  1511. }
  1512. }
  1513. /** For eventdns: start resolving as necessary to find the target for
  1514. * <b>exitconn</b>. Returns -1 on error, -2 on transient error,
  1515. * 0 on "resolve launched." */
  1516. MOCK_IMPL(STATIC int,
  1517. launch_resolve,(cached_resolve_t *resolve))
  1518. {
  1519. tor_addr_t a;
  1520. int r;
  1521. if (net_is_disabled())
  1522. return -1;
  1523. /* What? Nameservers not configured? Sounds like a bug. */
  1524. if (!nameservers_configured) {
  1525. log_warn(LD_EXIT, "(Harmless.) Nameservers not configured, but resolve "
  1526. "launched. Configuring.");
  1527. if (configure_nameservers(1) < 0) {
  1528. return -1;
  1529. }
  1530. }
  1531. r = tor_addr_parse_PTR_name(
  1532. &a, resolve->address, AF_UNSPEC, 0);
  1533. tor_assert(the_evdns_base);
  1534. if (r == 0) {
  1535. log_info(LD_EXIT, "Launching eventdns request for %s",
  1536. escaped_safe_str(resolve->address));
  1537. resolve->res_status_ipv4 = RES_STATUS_INFLIGHT;
  1538. if (get_options()->IPv6Exit)
  1539. resolve->res_status_ipv6 = RES_STATUS_INFLIGHT;
  1540. if (launch_one_resolve(resolve->address, DNS_IPv4_A, NULL) < 0) {
  1541. resolve->res_status_ipv4 = 0;
  1542. r = -1;
  1543. }
  1544. if (r==0 && get_options()->IPv6Exit) {
  1545. /* We ask for an IPv6 address for *everything*. */
  1546. if (launch_one_resolve(resolve->address, DNS_IPv6_AAAA, NULL) < 0) {
  1547. resolve->res_status_ipv6 = 0;
  1548. r = -1;
  1549. }
  1550. }
  1551. } else if (r == 1) {
  1552. r = 0;
  1553. log_info(LD_EXIT, "Launching eventdns reverse request for %s",
  1554. escaped_safe_str(resolve->address));
  1555. resolve->res_status_hostname = RES_STATUS_INFLIGHT;
  1556. if (launch_one_resolve(resolve->address, DNS_PTR, &a) < 0) {
  1557. resolve->res_status_hostname = 0;
  1558. r = -1;
  1559. }
  1560. } else if (r == -1) {
  1561. log_warn(LD_BUG, "Somehow a malformed in-addr.arpa address reached here.");
  1562. }
  1563. if (r < 0) {
  1564. log_fn(LOG_PROTOCOL_WARN, LD_EXIT, "eventdns rejected address %s.",
  1565. escaped_safe_str(resolve->address));
  1566. }
  1567. return r;
  1568. }
  1569. /** How many requests for bogus addresses have we launched so far? */
  1570. static int n_wildcard_requests = 0;
  1571. /** Map from dotted-quad IP address in response to an int holding how many
  1572. * times we've seen it for a randomly generated (hopefully bogus) address. It
  1573. * would be easier to use definitely-invalid addresses (as specified by
  1574. * RFC2606), but see comment in dns_launch_wildcard_checks(). */
  1575. static strmap_t *dns_wildcard_response_count = NULL;
  1576. /** If present, a list of dotted-quad IP addresses that we are pretty sure our
  1577. * nameserver wants to return in response to requests for nonexistent domains.
  1578. */
  1579. static smartlist_t *dns_wildcard_list = NULL;
  1580. /** True iff we've logged about a single address getting wildcarded.
  1581. * Subsequent warnings will be less severe. */
  1582. static int dns_wildcard_one_notice_given = 0;
  1583. /** True iff we've warned that our DNS server is wildcarding too many failures.
  1584. */
  1585. static int dns_wildcard_notice_given = 0;
  1586. /** List of supposedly good addresses that are getting wildcarded to the
  1587. * same addresses as nonexistent addresses. */
  1588. static smartlist_t *dns_wildcarded_test_address_list = NULL;
  1589. /** True iff we've warned about a test address getting wildcarded */
  1590. static int dns_wildcarded_test_address_notice_given = 0;
  1591. /** True iff all addresses seem to be getting wildcarded. */
  1592. static int dns_is_completely_invalid = 0;
  1593. /** Called when we see <b>id</b> (a dotted quad or IPv6 address) in response
  1594. * to a request for a hopefully bogus address. */
  1595. static void
  1596. wildcard_increment_answer(const char *id)
  1597. {
  1598. int *ip;
  1599. if (!dns_wildcard_response_count)
  1600. dns_wildcard_response_count = strmap_new();
  1601. ip = strmap_get(dns_wildcard_response_count, id); // may be null (0)
  1602. if (!ip) {
  1603. ip = tor_malloc_zero(sizeof(int));
  1604. strmap_set(dns_wildcard_response_count, id, ip);
  1605. }
  1606. ++*ip;
  1607. if (*ip > 5 && n_wildcard_requests > 10) {
  1608. if (!dns_wildcard_list) dns_wildcard_list = smartlist_new();
  1609. if (!smartlist_contains_string(dns_wildcard_list, id)) {
  1610. tor_log(dns_wildcard_notice_given ? LOG_INFO : LOG_NOTICE, LD_EXIT,
  1611. "Your DNS provider has given \"%s\" as an answer for %d different "
  1612. "invalid addresses. Apparently they are hijacking DNS failures. "
  1613. "I'll try to correct for this by treating future occurrences of "
  1614. "\"%s\" as 'not found'.", id, *ip, id);
  1615. smartlist_add_strdup(dns_wildcard_list, id);
  1616. }
  1617. if (!dns_wildcard_notice_given)
  1618. control_event_server_status(LOG_NOTICE, "DNS_HIJACKED");
  1619. dns_wildcard_notice_given = 1;
  1620. }
  1621. }
  1622. /** Note that a single test address (one believed to be good) seems to be
  1623. * getting redirected to the same IP as failures are. */
  1624. static void
  1625. add_wildcarded_test_address(const char *address)
  1626. {
  1627. int n, n_test_addrs;
  1628. if (!dns_wildcarded_test_address_list)
  1629. dns_wildcarded_test_address_list = smartlist_new();
  1630. if (smartlist_contains_string_case(dns_wildcarded_test_address_list,
  1631. address))
  1632. return;
  1633. n_test_addrs = get_options()->ServerDNSTestAddresses ?
  1634. smartlist_len(get_options()->ServerDNSTestAddresses) : 0;
  1635. smartlist_add_strdup(dns_wildcarded_test_address_list, address);
  1636. n = smartlist_len(dns_wildcarded_test_address_list);
  1637. if (n > n_test_addrs/2) {
  1638. tor_log(dns_wildcarded_test_address_notice_given ? LOG_INFO : LOG_NOTICE,
  1639. LD_EXIT, "Your DNS provider tried to redirect \"%s\" to a junk "
  1640. "address. It has done this with %d test addresses so far. I'm "
  1641. "going to stop being an exit node for now, since our DNS seems so "
  1642. "broken.", address, n);
  1643. if (!dns_is_completely_invalid) {
  1644. dns_is_completely_invalid = 1;
  1645. mark_my_descriptor_dirty("dns hijacking confirmed");
  1646. }
  1647. if (!dns_wildcarded_test_address_notice_given)
  1648. control_event_server_status(LOG_WARN, "DNS_USELESS");
  1649. dns_wildcarded_test_address_notice_given = 1;
  1650. }
  1651. }
  1652. /** Callback function when we get an answer (possibly failing) for a request
  1653. * for a (hopefully) nonexistent domain. */
  1654. static void
  1655. evdns_wildcard_check_callback(int result, char type, int count, int ttl,
  1656. void *addresses, void *arg)
  1657. {
  1658. (void)ttl;
  1659. ++n_wildcard_requests;
  1660. if (result == DNS_ERR_NONE && count) {
  1661. char *string_address = arg;
  1662. int i;
  1663. if (type == DNS_IPv4_A) {
  1664. const uint32_t *addrs = addresses;
  1665. for (i = 0; i < count; ++i) {
  1666. char answer_buf[INET_NTOA_BUF_LEN+1];
  1667. struct in_addr in;
  1668. in.s_addr = addrs[i];
  1669. tor_inet_ntoa(&in, answer_buf, sizeof(answer_buf));
  1670. wildcard_increment_answer(answer_buf);
  1671. }
  1672. } else if (type == DNS_IPv6_AAAA) {
  1673. const struct in6_addr *addrs = addresses;
  1674. for (i = 0; i < count; ++i) {
  1675. char answer_buf[TOR_ADDR_BUF_LEN+1];
  1676. tor_inet_ntop(AF_INET6, &addrs[i], answer_buf, sizeof(answer_buf));
  1677. wildcard_increment_answer(answer_buf);
  1678. }
  1679. }
  1680. tor_log(dns_wildcard_one_notice_given ? LOG_INFO : LOG_NOTICE, LD_EXIT,
  1681. "Your DNS provider gave an answer for \"%s\", which "
  1682. "is not supposed to exist. Apparently they are hijacking "
  1683. "DNS failures. Trying to correct for this. We've noticed %d "
  1684. "possibly bad address%s so far.",
  1685. string_address, strmap_size(dns_wildcard_response_count),
  1686. (strmap_size(dns_wildcard_response_count) == 1) ? "" : "es");
  1687. dns_wildcard_one_notice_given = 1;
  1688. }
  1689. tor_free(arg);
  1690. }
  1691. /** Launch a single request for a nonexistent hostname consisting of between
  1692. * <b>min_len</b> and <b>max_len</b> random (plausible) characters followed by
  1693. * <b>suffix</b> */
  1694. static void
  1695. launch_wildcard_check(int min_len, int max_len, int is_ipv6,
  1696. const char *suffix)
  1697. {
  1698. char *addr;
  1699. struct evdns_request *req;
  1700. addr = crypto_random_hostname(min_len, max_len, "", suffix);
  1701. log_info(LD_EXIT, "Testing whether our DNS server is hijacking nonexistent "
  1702. "domains with request for bogus hostname \"%s\"", addr);
  1703. tor_assert(the_evdns_base);
  1704. if (is_ipv6)
  1705. req = evdns_base_resolve_ipv6(
  1706. the_evdns_base,
  1707. /* This "addr" tells us which address to resolve */
  1708. addr,
  1709. DNS_QUERY_NO_SEARCH, evdns_wildcard_check_callback,
  1710. /* This "addr" is an argument to the callback*/ addr);
  1711. else
  1712. req = evdns_base_resolve_ipv4(
  1713. the_evdns_base,
  1714. /* This "addr" tells us which address to resolve */
  1715. addr,
  1716. DNS_QUERY_NO_SEARCH, evdns_wildcard_check_callback,
  1717. /* This "addr" is an argument to the callback*/ addr);
  1718. if (!req) {
  1719. /* There is no evdns request in progress; stop addr from getting leaked */
  1720. tor_free(addr);
  1721. }
  1722. }
  1723. /** Launch attempts to resolve a bunch of known-good addresses (configured in
  1724. * ServerDNSTestAddresses). [Callback for a libevent timer] */
  1725. static void
  1726. launch_test_addresses(evutil_socket_t fd, short event, void *args)
  1727. {
  1728. const or_options_t *options = get_options();
  1729. (void)fd;
  1730. (void)event;
  1731. (void)args;
  1732. if (net_is_disabled())
  1733. return;
  1734. log_info(LD_EXIT, "Launching checks to see whether our nameservers like to "
  1735. "hijack *everything*.");
  1736. /* This situation is worse than the failure-hijacking situation. When this
  1737. * happens, we're no good for DNS requests at all, and we shouldn't really
  1738. * be an exit server.*/
  1739. if (options->ServerDNSTestAddresses) {
  1740. tor_assert(the_evdns_base);
  1741. SMARTLIST_FOREACH_BEGIN(options->ServerDNSTestAddresses,
  1742. const char *, address) {
  1743. if (launch_one_resolve(address, DNS_IPv4_A, NULL) < 0) {
  1744. log_info(LD_EXIT, "eventdns rejected test address %s",
  1745. escaped_safe_str(address));
  1746. }
  1747. if (launch_one_resolve(address, DNS_IPv6_AAAA, NULL) < 0) {
  1748. log_info(LD_EXIT, "eventdns rejected test address %s",
  1749. escaped_safe_str(address));
  1750. }
  1751. } SMARTLIST_FOREACH_END(address);
  1752. }
  1753. }
  1754. #define N_WILDCARD_CHECKS 2
  1755. /** Launch DNS requests for a few nonexistent hostnames and a few well-known
  1756. * hostnames, and see if we can catch our nameserver trying to hijack them and
  1757. * map them to a stupid "I couldn't find ggoogle.com but maybe you'd like to
  1758. * buy these lovely encyclopedias" page. */
  1759. static void
  1760. dns_launch_wildcard_checks(void)
  1761. {
  1762. int i, ipv6;
  1763. log_info(LD_EXIT, "Launching checks to see whether our nameservers like "
  1764. "to hijack DNS failures.");
  1765. for (ipv6 = 0; ipv6 <= 1; ++ipv6) {
  1766. for (i = 0; i < N_WILDCARD_CHECKS; ++i) {
  1767. /* RFC2606 reserves these. Sadly, some DNS hijackers, in a silly
  1768. * attempt to 'comply' with rfc2606, refrain from giving A records for
  1769. * these. This is the standards-compliance equivalent of making sure
  1770. * that your crackhouse's elevator inspection certificate is up to date.
  1771. */
  1772. launch_wildcard_check(2, 16, ipv6, ".invalid");
  1773. launch_wildcard_check(2, 16, ipv6, ".test");
  1774. /* These will break specs if there are ever any number of
  1775. * 8+-character top-level domains. */
  1776. launch_wildcard_check(8, 16, ipv6, "");
  1777. /* Try some random .com/org/net domains. This will work fine so long as
  1778. * not too many resolve to the same place. */
  1779. launch_wildcard_check(8, 16, ipv6, ".com");
  1780. launch_wildcard_check(8, 16, ipv6, ".org");
  1781. launch_wildcard_check(8, 16, ipv6, ".net");
  1782. }
  1783. }
  1784. }
  1785. /** If appropriate, start testing whether our DNS servers tend to lie to
  1786. * us. */
  1787. void
  1788. dns_launch_correctness_checks(void)
  1789. {
  1790. static struct event *launch_event = NULL;
  1791. struct timeval timeout;
  1792. if (!get_options()->ServerDNSDetectHijacking)
  1793. return;
  1794. dns_launch_wildcard_checks();
  1795. /* Wait a while before launching requests for test addresses, so we can
  1796. * get the results from checking for wildcarding. */
  1797. if (! launch_event)
  1798. launch_event = tor_evtimer_new(tor_libevent_get_base(),
  1799. launch_test_addresses, NULL);
  1800. timeout.tv_sec = 30;
  1801. timeout.tv_usec = 0;
  1802. if (evtimer_add(launch_event, &timeout)<0) {
  1803. log_warn(LD_BUG, "Couldn't add timer for checking for dns hijacking");
  1804. }
  1805. }
  1806. /** Return true iff our DNS servers lie to us too much to be trusted. */
  1807. int
  1808. dns_seems_to_be_broken(void)
  1809. {
  1810. return dns_is_completely_invalid;
  1811. }
  1812. /** Return true iff we think that IPv6 hostname lookup is broken */
  1813. int
  1814. dns_seems_to_be_broken_for_ipv6(void)
  1815. {
  1816. return dns_is_broken_for_ipv6;
  1817. }
  1818. /** Forget what we've previously learned about our DNS servers' correctness. */
  1819. void
  1820. dns_reset_correctness_checks(void)
  1821. {
  1822. strmap_free(dns_wildcard_response_count, tor_free_);
  1823. dns_wildcard_response_count = NULL;
  1824. n_wildcard_requests = 0;
  1825. n_ipv6_requests_made = n_ipv6_timeouts = 0;
  1826. if (dns_wildcard_list) {
  1827. SMARTLIST_FOREACH(dns_wildcard_list, char *, cp, tor_free(cp));
  1828. smartlist_clear(dns_wildcard_list);
  1829. }
  1830. if (dns_wildcarded_test_address_list) {
  1831. SMARTLIST_FOREACH(dns_wildcarded_test_address_list, char *, cp,
  1832. tor_free(cp));
  1833. smartlist_clear(dns_wildcarded_test_address_list);
  1834. }
  1835. dns_wildcard_one_notice_given = dns_wildcard_notice_given =
  1836. dns_wildcarded_test_address_notice_given = dns_is_completely_invalid =
  1837. dns_is_broken_for_ipv6 = 0;
  1838. }
  1839. /** Return true iff we have noticed that the dotted-quad <b>ip</b> has been
  1840. * returned in response to requests for nonexistent hostnames. */
  1841. static int
  1842. answer_is_wildcarded(const char *ip)
  1843. {
  1844. return dns_wildcard_list && smartlist_contains_string(dns_wildcard_list, ip);
  1845. }
  1846. /** Exit with an assertion if <b>resolve</b> is corrupt. */
  1847. static void
  1848. assert_resolve_ok(cached_resolve_t *resolve)
  1849. {
  1850. tor_assert(resolve);
  1851. tor_assert(resolve->magic == CACHED_RESOLVE_MAGIC);
  1852. tor_assert(strlen(resolve->address) < MAX_ADDRESSLEN);
  1853. tor_assert(tor_strisnonupper(resolve->address));
  1854. if (resolve->state != CACHE_STATE_PENDING) {
  1855. tor_assert(!resolve->pending_connections);
  1856. }
  1857. if (resolve->state == CACHE_STATE_PENDING ||
  1858. resolve->state == CACHE_STATE_DONE) {
  1859. #if 0
  1860. tor_assert(!resolve->ttl);
  1861. if (resolve->is_reverse)
  1862. tor_assert(!resolve->hostname);
  1863. else
  1864. tor_assert(!resolve->result_ipv4.addr_ipv4);
  1865. #endif /* 0 */
  1866. /*XXXXX ADD MORE */
  1867. }
  1868. }
  1869. /** Return the number of DNS cache entries as an int */
  1870. static int
  1871. dns_cache_entry_count(void)
  1872. {
  1873. return HT_SIZE(&cache_root);
  1874. }
  1875. /** Log memory information about our internal DNS cache at level 'severity'. */
  1876. void
  1877. dump_dns_mem_usage(int severity)
  1878. {
  1879. /* This should never be larger than INT_MAX. */
  1880. int hash_count = dns_cache_entry_count();
  1881. size_t hash_mem = sizeof(struct cached_resolve_t) * hash_count;
  1882. hash_mem += HT_MEM_USAGE(&cache_root);
  1883. /* Print out the count and estimated size of our &cache_root. It undercounts
  1884. hostnames in cached reverse resolves.
  1885. */
  1886. tor_log(severity, LD_MM, "Our DNS cache has %d entries.", hash_count);
  1887. tor_log(severity, LD_MM, "Our DNS cache size is approximately %u bytes.",
  1888. (unsigned)hash_mem);
  1889. }
  1890. #ifdef DEBUG_DNS_CACHE
  1891. /** Exit with an assertion if the DNS cache is corrupt. */
  1892. static void
  1893. assert_cache_ok_(void)
  1894. {
  1895. cached_resolve_t **resolve;
  1896. int bad_rep = HT_REP_IS_BAD_(cache_map, &cache_root);
  1897. if (bad_rep) {
  1898. log_err(LD_BUG, "Bad rep type %d on dns cache hash table", bad_rep);
  1899. tor_assert(!bad_rep);
  1900. }
  1901. HT_FOREACH(resolve, cache_map, &cache_root) {
  1902. assert_resolve_ok(*resolve);
  1903. tor_assert((*resolve)->state != CACHE_STATE_DONE);
  1904. }
  1905. if (!cached_resolve_pqueue)
  1906. return;
  1907. smartlist_pqueue_assert_ok(cached_resolve_pqueue,
  1908. compare_cached_resolves_by_expiry_,
  1909. offsetof(cached_resolve_t, minheap_idx));
  1910. SMARTLIST_FOREACH(cached_resolve_pqueue, cached_resolve_t *, res,
  1911. {
  1912. if (res->state == CACHE_STATE_DONE) {
  1913. cached_resolve_t *found = HT_FIND(cache_map, &cache_root, res);
  1914. tor_assert(!found || found != res);
  1915. } else {
  1916. cached_resolve_t *found = HT_FIND(cache_map, &cache_root, res);
  1917. tor_assert(found);
  1918. }
  1919. });
  1920. }
  1921. #endif /* defined(DEBUG_DNS_CACHE) */
  1922. cached_resolve_t *
  1923. dns_get_cache_entry(cached_resolve_t *query)
  1924. {
  1925. return HT_FIND(cache_map, &cache_root, query);
  1926. }
  1927. void
  1928. dns_insert_cache_entry(cached_resolve_t *new_entry)
  1929. {
  1930. HT_INSERT(cache_map, &cache_root, new_entry);
  1931. }