dnsserv.c 15 KB

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  1. /* Copyright (c) 2007-2019, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. /**
  4. * \file dnsserv.c
  5. * \brief Implements client-side DNS proxy server code.
  6. *
  7. * When a user enables the DNSPort configuration option to have their local
  8. * Tor client handle DNS requests, this module handles it. It functions as a
  9. * "DNS Server" on the client side, which client applications use.
  10. *
  11. * Inbound DNS requests are represented as entry_connection_t here (since
  12. * that's how Tor represents client-side streams), which are kept associated
  13. * with an evdns_server_request structure as exposed by Libevent's
  14. * evdns code.
  15. *
  16. * Upon receiving a DNS request, libevent calls our evdns_server_callback()
  17. * function here, which causes this module to create an entry_connection_t
  18. * request as appropriate. Later, when that request is answered,
  19. * connection_edge.c calls dnsserv_resolved() so we can finish up and tell the
  20. * DNS client.
  21. **/
  22. #include "core/or/or.h"
  23. #include "feature/client/dnsserv.h"
  24. #include "app/config/config.h"
  25. #include "core/mainloop/connection.h"
  26. #include "core/or/connection_edge.h"
  27. #include "feature/control/control_events.h"
  28. #include "core/mainloop/mainloop.h"
  29. #include "core/mainloop/netstatus.h"
  30. #include "core/or/policies.h"
  31. #include "feature/control/control_connection_st.h"
  32. #include "core/or/entry_connection_st.h"
  33. #include "core/or/listener_connection_st.h"
  34. #include "core/or/socks_request_st.h"
  35. #include "lib/evloop/compat_libevent.h"
  36. #include <event2/dns.h>
  37. #include <event2/dns_compat.h>
  38. /* XXXX this implies we want an improved evdns */
  39. #include <event2/dns_struct.h>
  40. /** Helper function: called by evdns whenever the client sends a request to our
  41. * DNSPort. We need to eventually answer the request <b>req</b>.
  42. */
  43. static void
  44. evdns_server_callback(struct evdns_server_request *req, void *data_)
  45. {
  46. const listener_connection_t *listener = data_;
  47. entry_connection_t *entry_conn;
  48. edge_connection_t *conn;
  49. int i = 0;
  50. struct evdns_server_question *q = NULL, *supported_q = NULL;
  51. struct sockaddr_storage addr;
  52. struct sockaddr *sa;
  53. int addrlen;
  54. tor_addr_t tor_addr;
  55. uint16_t port;
  56. int err = DNS_ERR_NONE;
  57. char *q_name;
  58. tor_assert(req);
  59. log_info(LD_APP, "Got a new DNS request!");
  60. req->flags |= 0x80; /* set RA */
  61. /* First, check whether the requesting address matches our SOCKSPolicy. */
  62. if ((addrlen = evdns_server_request_get_requesting_addr(req,
  63. (struct sockaddr*)&addr, (socklen_t)sizeof(addr))) < 0) {
  64. log_warn(LD_APP, "Couldn't get requesting address.");
  65. evdns_server_request_respond(req, DNS_ERR_SERVERFAILED);
  66. return;
  67. }
  68. (void) addrlen;
  69. sa = (struct sockaddr*) &addr;
  70. if (tor_addr_from_sockaddr(&tor_addr, sa, &port)<0) {
  71. log_warn(LD_APP, "Requesting address wasn't recognized.");
  72. evdns_server_request_respond(req, DNS_ERR_SERVERFAILED);
  73. return;
  74. }
  75. if (!socks_policy_permits_address(&tor_addr)) {
  76. log_warn(LD_APP, "Rejecting DNS request from disallowed IP.");
  77. evdns_server_request_respond(req, DNS_ERR_REFUSED);
  78. return;
  79. }
  80. /* Now, let's find the first actual question of a type we can answer in this
  81. * DNS request. It makes us a little noncompliant to act like this; we
  82. * should fix that eventually if it turns out to make a difference for
  83. * anybody. */
  84. if (req->nquestions == 0) {
  85. log_info(LD_APP, "No questions in DNS request; sending back nil reply.");
  86. evdns_server_request_respond(req, 0);
  87. return;
  88. }
  89. if (req->nquestions > 1) {
  90. log_info(LD_APP, "Got a DNS request with more than one question; I only "
  91. "handle one question at a time for now. Skipping the extras.");
  92. }
  93. for (i = 0; i < req->nquestions; ++i) {
  94. if (req->questions[i]->dns_question_class != EVDNS_CLASS_INET)
  95. continue;
  96. switch (req->questions[i]->type) {
  97. case EVDNS_TYPE_A:
  98. case EVDNS_TYPE_AAAA:
  99. case EVDNS_TYPE_PTR:
  100. /* We always pick the first one of these questions, if there is
  101. one. */
  102. if (! supported_q)
  103. supported_q = req->questions[i];
  104. break;
  105. default:
  106. break;
  107. }
  108. }
  109. if (supported_q)
  110. q = supported_q;
  111. if (!q) {
  112. log_info(LD_APP, "None of the questions we got were ones we're willing "
  113. "to support. Sending NOTIMPL.");
  114. evdns_server_request_respond(req, DNS_ERR_NOTIMPL);
  115. return;
  116. }
  117. /* Make sure the name isn't too long: This should be impossible, I think. */
  118. if (err == DNS_ERR_NONE && strlen(q->name) > MAX_SOCKS_ADDR_LEN-1)
  119. err = DNS_ERR_FORMAT;
  120. if (err != DNS_ERR_NONE || !supported_q) {
  121. /* We got an error? There's no question we're willing to answer? Then
  122. * send back an answer immediately; we're done. */
  123. evdns_server_request_respond(req, err);
  124. return;
  125. }
  126. /* Make a new dummy AP connection, and attach the request to it. */
  127. entry_conn = entry_connection_new(CONN_TYPE_AP, AF_INET);
  128. conn = ENTRY_TO_EDGE_CONN(entry_conn);
  129. CONNECTION_AP_EXPECT_NONPENDING(entry_conn);
  130. TO_CONN(conn)->state = AP_CONN_STATE_RESOLVE_WAIT;
  131. conn->is_dns_request = 1;
  132. tor_addr_copy(&TO_CONN(conn)->addr, &tor_addr);
  133. TO_CONN(conn)->port = port;
  134. TO_CONN(conn)->address = tor_addr_to_str_dup(&tor_addr);
  135. if (q->type == EVDNS_TYPE_A || q->type == EVDNS_TYPE_AAAA ||
  136. q->type == EVDNS_QTYPE_ALL) {
  137. entry_conn->socks_request->command = SOCKS_COMMAND_RESOLVE;
  138. } else {
  139. tor_assert(q->type == EVDNS_TYPE_PTR);
  140. entry_conn->socks_request->command = SOCKS_COMMAND_RESOLVE_PTR;
  141. }
  142. /* This serves our DNS port so enable DNS request by default. */
  143. entry_conn->entry_cfg.dns_request = 1;
  144. if (q->type == EVDNS_TYPE_A || q->type == EVDNS_QTYPE_ALL) {
  145. entry_conn->entry_cfg.ipv4_traffic = 1;
  146. entry_conn->entry_cfg.ipv6_traffic = 0;
  147. entry_conn->entry_cfg.prefer_ipv6 = 0;
  148. } else if (q->type == EVDNS_TYPE_AAAA) {
  149. entry_conn->entry_cfg.ipv4_traffic = 0;
  150. entry_conn->entry_cfg.ipv6_traffic = 1;
  151. entry_conn->entry_cfg.prefer_ipv6 = 1;
  152. }
  153. strlcpy(entry_conn->socks_request->address, q->name,
  154. sizeof(entry_conn->socks_request->address));
  155. entry_conn->socks_request->listener_type = listener->base_.type;
  156. entry_conn->dns_server_request = req;
  157. entry_conn->entry_cfg.isolation_flags = listener->entry_cfg.isolation_flags;
  158. entry_conn->entry_cfg.session_group = listener->entry_cfg.session_group;
  159. entry_conn->nym_epoch = get_signewnym_epoch();
  160. if (connection_add(ENTRY_TO_CONN(entry_conn)) < 0) {
  161. log_warn(LD_APP, "Couldn't register dummy connection for DNS request");
  162. evdns_server_request_respond(req, DNS_ERR_SERVERFAILED);
  163. connection_free_(ENTRY_TO_CONN(entry_conn));
  164. return;
  165. }
  166. control_event_stream_status(entry_conn, STREAM_EVENT_NEW_RESOLVE, 0);
  167. /* Now, unless a controller asked us to leave streams unattached,
  168. * throw the connection over to get rewritten (which will
  169. * answer it immediately if it's in the cache, or completely bogus, or
  170. * automapped), and then attached to a circuit. */
  171. log_info(LD_APP, "Passing request for %s to rewrite_and_attach.",
  172. escaped_safe_str_client(q->name));
  173. q_name = tor_strdup(q->name); /* q could be freed in rewrite_and_attach */
  174. connection_ap_rewrite_and_attach_if_allowed(entry_conn, NULL, NULL);
  175. /* Now, the connection is marked if it was bad. */
  176. log_info(LD_APP, "Passed request for %s to rewrite_and_attach_if_allowed.",
  177. escaped_safe_str_client(q_name));
  178. tor_free(q_name);
  179. }
  180. /** Helper function: called whenever the client sends a resolve request to our
  181. * controller. We need to eventually answer the request <b>req</b>.
  182. * Returns 0 if the controller will be getting (or has gotten) an event in
  183. * response; -1 if we couldn't launch the request.
  184. */
  185. int
  186. dnsserv_launch_request(const char *name, int reverse,
  187. control_connection_t *control_conn)
  188. {
  189. entry_connection_t *entry_conn;
  190. edge_connection_t *conn;
  191. char *q_name;
  192. /* Launching a request for a user counts as user activity. */
  193. note_user_activity(approx_time());
  194. /* Make a new dummy AP connection, and attach the request to it. */
  195. entry_conn = entry_connection_new(CONN_TYPE_AP, AF_INET);
  196. entry_conn->entry_cfg.dns_request = 1;
  197. conn = ENTRY_TO_EDGE_CONN(entry_conn);
  198. CONNECTION_AP_EXPECT_NONPENDING(entry_conn);
  199. conn->base_.state = AP_CONN_STATE_RESOLVE_WAIT;
  200. tor_addr_copy(&TO_CONN(conn)->addr, &control_conn->base_.addr);
  201. #ifdef AF_UNIX
  202. /*
  203. * The control connection can be AF_UNIX and if so tor_addr_to_str_dup will
  204. * unhelpfully say "<unknown address type>"; say "(Tor_internal)"
  205. * instead.
  206. */
  207. if (control_conn->base_.socket_family == AF_UNIX) {
  208. TO_CONN(conn)->port = 0;
  209. TO_CONN(conn)->address = tor_strdup("(Tor_internal)");
  210. } else {
  211. TO_CONN(conn)->port = control_conn->base_.port;
  212. TO_CONN(conn)->address = tor_addr_to_str_dup(&control_conn->base_.addr);
  213. }
  214. #else /* !defined(AF_UNIX) */
  215. TO_CONN(conn)->port = control_conn->base_.port;
  216. TO_CONN(conn)->address = tor_addr_to_str_dup(&control_conn->base_.addr);
  217. #endif /* defined(AF_UNIX) */
  218. if (reverse)
  219. entry_conn->socks_request->command = SOCKS_COMMAND_RESOLVE_PTR;
  220. else
  221. entry_conn->socks_request->command = SOCKS_COMMAND_RESOLVE;
  222. conn->is_dns_request = 1;
  223. strlcpy(entry_conn->socks_request->address, name,
  224. sizeof(entry_conn->socks_request->address));
  225. entry_conn->socks_request->listener_type = CONN_TYPE_CONTROL_LISTENER;
  226. entry_conn->original_dest_address = tor_strdup(name);
  227. entry_conn->entry_cfg.session_group = SESSION_GROUP_CONTROL_RESOLVE;
  228. entry_conn->nym_epoch = get_signewnym_epoch();
  229. entry_conn->entry_cfg.isolation_flags = ISO_DEFAULT;
  230. if (connection_add(TO_CONN(conn))<0) {
  231. log_warn(LD_APP, "Couldn't register dummy connection for RESOLVE request");
  232. connection_free_(TO_CONN(conn));
  233. return -1;
  234. }
  235. control_event_stream_status(entry_conn, STREAM_EVENT_NEW_RESOLVE, 0);
  236. /* Now, unless a controller asked us to leave streams unattached,
  237. * throw the connection over to get rewritten (which will
  238. * answer it immediately if it's in the cache, or completely bogus, or
  239. * automapped), and then attached to a circuit. */
  240. log_info(LD_APP, "Passing request for %s to rewrite_and_attach.",
  241. escaped_safe_str_client(name));
  242. q_name = tor_strdup(name); /* q could be freed in rewrite_and_attach */
  243. connection_ap_rewrite_and_attach_if_allowed(entry_conn, NULL, NULL);
  244. /* Now, the connection is marked if it was bad. */
  245. log_info(LD_APP, "Passed request for %s to rewrite_and_attach_if_allowed.",
  246. escaped_safe_str_client(q_name));
  247. tor_free(q_name);
  248. return 0;
  249. }
  250. /** If there is a pending request on <b>conn</b> that's waiting for an answer,
  251. * send back an error and free the request. */
  252. void
  253. dnsserv_reject_request(entry_connection_t *conn)
  254. {
  255. if (conn->dns_server_request) {
  256. evdns_server_request_respond(conn->dns_server_request,
  257. DNS_ERR_SERVERFAILED);
  258. conn->dns_server_request = NULL;
  259. }
  260. }
  261. /** Look up the original name that corresponds to 'addr' in req. We use this
  262. * to preserve case in order to facilitate clients using 0x20-hacks to avoid
  263. * DNS poisoning. */
  264. static const char *
  265. evdns_get_orig_address(const struct evdns_server_request *req,
  266. int rtype, const char *addr)
  267. {
  268. int i, type;
  269. switch (rtype) {
  270. case RESOLVED_TYPE_IPV4:
  271. type = EVDNS_TYPE_A;
  272. break;
  273. case RESOLVED_TYPE_HOSTNAME:
  274. type = EVDNS_TYPE_PTR;
  275. break;
  276. case RESOLVED_TYPE_IPV6:
  277. type = EVDNS_TYPE_AAAA;
  278. break;
  279. case RESOLVED_TYPE_ERROR:
  280. case RESOLVED_TYPE_ERROR_TRANSIENT:
  281. /* Addr doesn't matter, since we're not sending it back in the reply.*/
  282. return addr;
  283. default:
  284. tor_fragile_assert();
  285. return addr;
  286. }
  287. for (i = 0; i < req->nquestions; ++i) {
  288. const struct evdns_server_question *q = req->questions[i];
  289. if (q->type == type && !strcasecmp(q->name, addr))
  290. return q->name;
  291. }
  292. return addr;
  293. }
  294. /** Tell the dns request waiting for an answer on <b>conn</b> that we have an
  295. * answer of type <b>answer_type</b> (RESOLVE_TYPE_IPV4/IPV6/ERR), of length
  296. * <b>answer_len</b>, in <b>answer</b>, with TTL <b>ttl</b>. Doesn't do
  297. * any caching; that's handled elsewhere. */
  298. void
  299. dnsserv_resolved(entry_connection_t *conn,
  300. int answer_type,
  301. size_t answer_len,
  302. const char *answer,
  303. int ttl)
  304. {
  305. struct evdns_server_request *req = conn->dns_server_request;
  306. const char *name;
  307. int err = DNS_ERR_NONE;
  308. if (!req)
  309. return;
  310. name = evdns_get_orig_address(req, answer_type,
  311. conn->socks_request->address);
  312. /* XXXX Re-do; this is dumb. */
  313. if (ttl < 60)
  314. ttl = 60;
  315. /* The evdns interface is: add a bunch of reply items (corresponding to one
  316. * or more of the questions in the request); then, call
  317. * evdns_server_request_respond. */
  318. if (answer_type == RESOLVED_TYPE_IPV6) {
  319. evdns_server_request_add_aaaa_reply(req,
  320. name,
  321. 1, answer, ttl);
  322. } else if (answer_type == RESOLVED_TYPE_IPV4 && answer_len == 4 &&
  323. conn->socks_request->command == SOCKS_COMMAND_RESOLVE) {
  324. evdns_server_request_add_a_reply(req,
  325. name,
  326. 1, answer, ttl);
  327. } else if (answer_type == RESOLVED_TYPE_HOSTNAME &&
  328. answer_len < 256 &&
  329. conn->socks_request->command == SOCKS_COMMAND_RESOLVE_PTR) {
  330. char *ans = tor_strndup(answer, answer_len);
  331. evdns_server_request_add_ptr_reply(req, NULL,
  332. name,
  333. ans, ttl);
  334. tor_free(ans);
  335. } else if (answer_type == RESOLVED_TYPE_ERROR) {
  336. err = DNS_ERR_NOTEXIST;
  337. } else { /* answer_type == RESOLVED_TYPE_ERROR_TRANSIENT */
  338. err = DNS_ERR_SERVERFAILED;
  339. }
  340. evdns_server_request_respond(req, err);
  341. conn->dns_server_request = NULL;
  342. }
  343. /** Set up the evdns server port for the UDP socket on <b>conn</b>, which
  344. * must be an AP_DNS_LISTENER */
  345. void
  346. dnsserv_configure_listener(connection_t *conn)
  347. {
  348. listener_connection_t *listener_conn;
  349. tor_assert(conn);
  350. tor_assert(SOCKET_OK(conn->s));
  351. tor_assert(conn->type == CONN_TYPE_AP_DNS_LISTENER);
  352. listener_conn = TO_LISTENER_CONN(conn);
  353. listener_conn->dns_server_port =
  354. tor_evdns_add_server_port(conn->s, 0, evdns_server_callback,
  355. listener_conn);
  356. }
  357. /** Free the evdns server port for <b>conn</b>, which must be an
  358. * AP_DNS_LISTENER. */
  359. void
  360. dnsserv_close_listener(connection_t *conn)
  361. {
  362. listener_connection_t *listener_conn;
  363. tor_assert(conn);
  364. tor_assert(conn->type == CONN_TYPE_AP_DNS_LISTENER);
  365. listener_conn = TO_LISTENER_CONN(conn);
  366. if (listener_conn->dns_server_port) {
  367. evdns_close_server_port(listener_conn->dns_server_port);
  368. listener_conn->dns_server_port = NULL;
  369. }
  370. }