policies.c 100 KB

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  1. /* Copyright (c) 2001-2004, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2015, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. /**
  6. * \file policies.c
  7. * \brief Code to parse and use address policies and exit policies.
  8. **/
  9. #define POLICIES_PRIVATE
  10. #include "or.h"
  11. #include "config.h"
  12. #include "dirserv.h"
  13. #include "networkstatus.h"
  14. #include "nodelist.h"
  15. #include "policies.h"
  16. #include "router.h"
  17. #include "routerparse.h"
  18. #include "geoip.h"
  19. #include "ht.h"
  20. /** Policy that addresses for incoming SOCKS connections must match. */
  21. static smartlist_t *socks_policy = NULL;
  22. /** Policy that addresses for incoming directory connections must match. */
  23. static smartlist_t *dir_policy = NULL;
  24. /** Policy that addresses for incoming router descriptors must match in order
  25. * to be published by us. */
  26. static smartlist_t *authdir_reject_policy = NULL;
  27. /** Policy that addresses for incoming router descriptors must match in order
  28. * to be marked as valid in our networkstatus. */
  29. static smartlist_t *authdir_invalid_policy = NULL;
  30. /** Policy that addresses for incoming router descriptors must <b>not</b>
  31. * match in order to not be marked as BadExit. */
  32. static smartlist_t *authdir_badexit_policy = NULL;
  33. /** Parsed addr_policy_t describing which addresses we believe we can start
  34. * circuits at. */
  35. static smartlist_t *reachable_or_addr_policy = NULL;
  36. /** Parsed addr_policy_t describing which addresses we believe we can connect
  37. * to directories at. */
  38. static smartlist_t *reachable_dir_addr_policy = NULL;
  39. /** Element of an exit policy summary */
  40. typedef struct policy_summary_item_t {
  41. uint16_t prt_min; /**< Lowest port number to accept/reject. */
  42. uint16_t prt_max; /**< Highest port number to accept/reject. */
  43. uint64_t reject_count; /**< Number of IP-Addresses that are rejected to
  44. this port range. */
  45. unsigned int accepted:1; /** Has this port already been accepted */
  46. } policy_summary_item_t;
  47. /** Private networks. This list is used in two places, once to expand the
  48. * "private" keyword when parsing our own exit policy, secondly to ignore
  49. * just such networks when building exit policy summaries. It is important
  50. * that all authorities agree on that list when creating summaries, so don't
  51. * just change this without a proper migration plan and a proposal and stuff.
  52. */
  53. static const char *private_nets[] = {
  54. "0.0.0.0/8", "169.254.0.0/16",
  55. "127.0.0.0/8", "192.168.0.0/16", "10.0.0.0/8", "172.16.0.0/12",
  56. "[::]/8",
  57. "[fc00::]/7", "[fe80::]/10", "[fec0::]/10", "[ff00::]/8", "[::]/127",
  58. NULL
  59. };
  60. static int policies_parse_exit_policy_internal(
  61. config_line_t *cfg,
  62. smartlist_t **dest,
  63. int ipv6_exit,
  64. int rejectprivate,
  65. const smartlist_t *configured_addresses,
  66. int reject_interface_addresses,
  67. int reject_configured_port_addresses,
  68. int add_default_policy);
  69. /** Replace all "private" entries in *<b>policy</b> with their expanded
  70. * equivalents. */
  71. void
  72. policy_expand_private(smartlist_t **policy)
  73. {
  74. uint16_t port_min, port_max;
  75. int i;
  76. smartlist_t *tmp;
  77. if (!*policy) /*XXXX disallow NULL policies? */
  78. return;
  79. tmp = smartlist_new();
  80. SMARTLIST_FOREACH_BEGIN(*policy, addr_policy_t *, p) {
  81. if (! p->is_private) {
  82. smartlist_add(tmp, p);
  83. continue;
  84. }
  85. for (i = 0; private_nets[i]; ++i) {
  86. addr_policy_t newpolicy;
  87. memcpy(&newpolicy, p, sizeof(addr_policy_t));
  88. newpolicy.is_private = 0;
  89. newpolicy.is_canonical = 0;
  90. if (tor_addr_parse_mask_ports(private_nets[i], 0,
  91. &newpolicy.addr,
  92. &newpolicy.maskbits, &port_min, &port_max)<0) {
  93. tor_assert(0);
  94. }
  95. smartlist_add(tmp, addr_policy_get_canonical_entry(&newpolicy));
  96. }
  97. addr_policy_free(p);
  98. } SMARTLIST_FOREACH_END(p);
  99. smartlist_free(*policy);
  100. *policy = tmp;
  101. }
  102. /** Expand each of the AF_UNSPEC elements in *<b>policy</b> (which indicate
  103. * protocol-neutral wildcards) into a pair of wildcard elements: one IPv4-
  104. * specific and one IPv6-specific. */
  105. void
  106. policy_expand_unspec(smartlist_t **policy)
  107. {
  108. smartlist_t *tmp;
  109. if (!*policy)
  110. return;
  111. tmp = smartlist_new();
  112. SMARTLIST_FOREACH_BEGIN(*policy, addr_policy_t *, p) {
  113. sa_family_t family = tor_addr_family(&p->addr);
  114. if (family == AF_INET6 || family == AF_INET || p->is_private) {
  115. smartlist_add(tmp, p);
  116. } else if (family == AF_UNSPEC) {
  117. addr_policy_t newpolicy_ipv4;
  118. addr_policy_t newpolicy_ipv6;
  119. memcpy(&newpolicy_ipv4, p, sizeof(addr_policy_t));
  120. memcpy(&newpolicy_ipv6, p, sizeof(addr_policy_t));
  121. newpolicy_ipv4.is_canonical = 0;
  122. newpolicy_ipv6.is_canonical = 0;
  123. if (p->maskbits != 0) {
  124. log_warn(LD_BUG, "AF_UNSPEC policy with maskbits==%d", p->maskbits);
  125. newpolicy_ipv4.maskbits = 0;
  126. newpolicy_ipv6.maskbits = 0;
  127. }
  128. tor_addr_from_ipv4h(&newpolicy_ipv4.addr, 0);
  129. tor_addr_from_ipv6_bytes(&newpolicy_ipv6.addr,
  130. "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0");
  131. smartlist_add(tmp, addr_policy_get_canonical_entry(&newpolicy_ipv4));
  132. smartlist_add(tmp, addr_policy_get_canonical_entry(&newpolicy_ipv6));
  133. addr_policy_free(p);
  134. } else {
  135. log_warn(LD_BUG, "Funny-looking address policy with family %d", family);
  136. smartlist_add(tmp, p);
  137. }
  138. } SMARTLIST_FOREACH_END(p);
  139. smartlist_free(*policy);
  140. *policy = tmp;
  141. }
  142. /**
  143. * Given a linked list of config lines containing "accept[6]" and "reject[6]"
  144. * tokens, parse them and append the result to <b>dest</b>. Return -1
  145. * if any tokens are malformed (and don't append any), else return 0.
  146. *
  147. * If <b>assume_action</b> is nonnegative, then insert its action
  148. * (ADDR_POLICY_ACCEPT or ADDR_POLICY_REJECT) for items that specify no
  149. * action.
  150. */
  151. static int
  152. parse_addr_policy(config_line_t *cfg, smartlist_t **dest,
  153. int assume_action)
  154. {
  155. smartlist_t *result;
  156. smartlist_t *entries;
  157. addr_policy_t *item;
  158. int malformed_list;
  159. int r = 0;
  160. if (!cfg)
  161. return 0;
  162. result = smartlist_new();
  163. entries = smartlist_new();
  164. for (; cfg; cfg = cfg->next) {
  165. smartlist_split_string(entries, cfg->value, ",",
  166. SPLIT_SKIP_SPACE|SPLIT_IGNORE_BLANK, 0);
  167. SMARTLIST_FOREACH_BEGIN(entries, const char *, ent) {
  168. log_debug(LD_CONFIG,"Adding new entry '%s'",ent);
  169. malformed_list = 0;
  170. item = router_parse_addr_policy_item_from_string(ent, assume_action,
  171. &malformed_list);
  172. if (item) {
  173. smartlist_add(result, item);
  174. } else if (malformed_list) {
  175. /* the error is so severe the entire list should be discarded */
  176. log_warn(LD_CONFIG, "Malformed policy '%s'. Discarding entire policy "
  177. "list.", ent);
  178. r = -1;
  179. } else {
  180. /* the error is minor: don't add the item, but keep processing the
  181. * rest of the policies in the list */
  182. log_debug(LD_CONFIG, "Ignored policy '%s' due to non-fatal error. "
  183. "The remainder of the policy list will be used.",
  184. ent);
  185. }
  186. } SMARTLIST_FOREACH_END(ent);
  187. SMARTLIST_FOREACH(entries, char *, ent, tor_free(ent));
  188. smartlist_clear(entries);
  189. }
  190. smartlist_free(entries);
  191. if (r == -1) {
  192. addr_policy_list_free(result);
  193. } else {
  194. policy_expand_private(&result);
  195. policy_expand_unspec(&result);
  196. if (*dest) {
  197. smartlist_add_all(*dest, result);
  198. smartlist_free(result);
  199. } else {
  200. *dest = result;
  201. }
  202. }
  203. return r;
  204. }
  205. /** Helper: parse the Reachable(Dir|OR)?Addresses fields into
  206. * reachable_(or|dir)_addr_policy. The options should already have
  207. * been validated by validate_addr_policies.
  208. */
  209. static int
  210. parse_reachable_addresses(void)
  211. {
  212. const or_options_t *options = get_options();
  213. int ret = 0;
  214. if (options->ReachableDirAddresses &&
  215. options->ReachableORAddresses &&
  216. options->ReachableAddresses) {
  217. log_warn(LD_CONFIG,
  218. "Both ReachableDirAddresses and ReachableORAddresses are set. "
  219. "ReachableAddresses setting will be ignored.");
  220. }
  221. addr_policy_list_free(reachable_or_addr_policy);
  222. reachable_or_addr_policy = NULL;
  223. if (!options->ReachableORAddresses && options->ReachableAddresses)
  224. log_info(LD_CONFIG,
  225. "Using ReachableAddresses as ReachableORAddresses.");
  226. if (parse_addr_policy(options->ReachableORAddresses ?
  227. options->ReachableORAddresses :
  228. options->ReachableAddresses,
  229. &reachable_or_addr_policy, ADDR_POLICY_ACCEPT)) {
  230. log_warn(LD_CONFIG,
  231. "Error parsing Reachable%sAddresses entry; ignoring.",
  232. options->ReachableORAddresses ? "OR" : "");
  233. ret = -1;
  234. }
  235. addr_policy_list_free(reachable_dir_addr_policy);
  236. reachable_dir_addr_policy = NULL;
  237. if (!options->ReachableDirAddresses && options->ReachableAddresses)
  238. log_info(LD_CONFIG,
  239. "Using ReachableAddresses as ReachableDirAddresses");
  240. if (parse_addr_policy(options->ReachableDirAddresses ?
  241. options->ReachableDirAddresses :
  242. options->ReachableAddresses,
  243. &reachable_dir_addr_policy, ADDR_POLICY_ACCEPT)) {
  244. if (options->ReachableDirAddresses)
  245. log_warn(LD_CONFIG,
  246. "Error parsing ReachableDirAddresses entry; ignoring.");
  247. ret = -1;
  248. }
  249. /* We ignore ReachableAddresses for relays */
  250. if (!server_mode(options)) {
  251. if ((reachable_or_addr_policy
  252. && policy_is_reject_star(reachable_or_addr_policy, AF_UNSPEC))
  253. || (reachable_dir_addr_policy
  254. && policy_is_reject_star(reachable_dir_addr_policy, AF_UNSPEC))) {
  255. log_warn(LD_CONFIG, "Tor cannot connect to the Internet if "
  256. "ReachableAddresses, ReachableORAddresses, or "
  257. "ReachableDirAddresses reject all addresses. Please accept "
  258. "some addresses in these options.");
  259. } else if (options->ClientUseIPv4 == 1
  260. && ((reachable_or_addr_policy
  261. && policy_is_reject_star(reachable_or_addr_policy, AF_INET))
  262. || (reachable_dir_addr_policy
  263. && policy_is_reject_star(reachable_dir_addr_policy, AF_INET)))) {
  264. log_warn(LD_CONFIG, "You have set ClientUseIPv4 1, but "
  265. "ReachableAddresses, ReachableORAddresses, or "
  266. "ReachableDirAddresses reject all IPv4 addresses. "
  267. "Tor will not connect using IPv4.");
  268. } else if (fascist_firewall_use_ipv6(options)
  269. && ((reachable_or_addr_policy
  270. && policy_is_reject_star(reachable_or_addr_policy, AF_INET6))
  271. || (reachable_dir_addr_policy
  272. && policy_is_reject_star(reachable_dir_addr_policy, AF_INET6)))) {
  273. log_warn(LD_CONFIG, "You have configured tor to use IPv6 "
  274. "(ClientUseIPv6 1 or UseBridges 1), but "
  275. "ReachableAddresses, ReachableORAddresses, or "
  276. "ReachableDirAddresses reject all IPv6 addresses. "
  277. "Tor will not connect using IPv6.");
  278. }
  279. }
  280. return ret;
  281. }
  282. /* Return true iff ClientUseIPv4 0 or ClientUseIPv6 0 might block any OR or Dir
  283. * address:port combination. */
  284. static int
  285. firewall_is_fascist_impl(void)
  286. {
  287. const or_options_t *options = get_options();
  288. /* Assume every non-bridge relay has an IPv4 address.
  289. * Clients which use bridges may only know the IPv6 address of their
  290. * bridge. */
  291. return (options->ClientUseIPv4 == 0
  292. || (!fascist_firewall_use_ipv6(options)
  293. && options->UseBridges == 1));
  294. }
  295. /** Return true iff the firewall options, including ClientUseIPv4 0 and
  296. * ClientUseIPv6 0, might block any OR address:port combination.
  297. */
  298. int
  299. firewall_is_fascist_or(void)
  300. {
  301. return (reachable_or_addr_policy != NULL || firewall_is_fascist_impl());
  302. }
  303. /** Return true iff the firewall options, including ClientUseIPv4 0 and
  304. * ClientUseIPv6 0, might block any Dir address:port combination.
  305. */
  306. int
  307. firewall_is_fascist_dir(void)
  308. {
  309. return (reachable_dir_addr_policy != NULL || firewall_is_fascist_impl());
  310. }
  311. /** Return true iff <b>policy</b> (possibly NULL) will allow a
  312. * connection to <b>addr</b>:<b>port</b>.
  313. */
  314. static int
  315. addr_policy_permits_tor_addr(const tor_addr_t *addr, uint16_t port,
  316. smartlist_t *policy)
  317. {
  318. addr_policy_result_t p;
  319. p = compare_tor_addr_to_addr_policy(addr, port, policy);
  320. switch (p) {
  321. case ADDR_POLICY_PROBABLY_ACCEPTED:
  322. case ADDR_POLICY_ACCEPTED:
  323. return 1;
  324. case ADDR_POLICY_PROBABLY_REJECTED:
  325. case ADDR_POLICY_REJECTED:
  326. return 0;
  327. default:
  328. log_warn(LD_BUG, "Unexpected result: %d", (int)p);
  329. return 0;
  330. }
  331. }
  332. /** Return true iff <b> policy</b> (possibly NULL) will allow a connection to
  333. * <b>addr</b>:<b>port</b>. <b>addr</b> is an IPv4 address given in host
  334. * order. */
  335. /* XXXX deprecate when possible. */
  336. static int
  337. addr_policy_permits_address(uint32_t addr, uint16_t port,
  338. smartlist_t *policy)
  339. {
  340. tor_addr_t a;
  341. tor_addr_from_ipv4h(&a, addr);
  342. return addr_policy_permits_tor_addr(&a, port, policy);
  343. }
  344. /** Return true iff we think our firewall will let us make a connection to
  345. * addr:port.
  346. *
  347. * If we are configured as a server, ignore any address family preference and
  348. * just use IPv4.
  349. * Otherwise:
  350. * - return false for all IPv4 addresses:
  351. * - if ClientUseIPv4 is 0, or
  352. * if pref_only and pref_ipv6 are both true;
  353. * - return false for all IPv6 addresses:
  354. * - if fascist_firewall_use_ipv6() is 0, or
  355. * - if pref_only is true and pref_ipv6 is false.
  356. *
  357. * Return false if addr is NULL or tor_addr_is_null(), or if port is 0. */
  358. STATIC int
  359. fascist_firewall_allows_address(const tor_addr_t *addr,
  360. uint16_t port,
  361. smartlist_t *firewall_policy,
  362. int pref_only, int pref_ipv6)
  363. {
  364. const or_options_t *options = get_options();
  365. if (!addr || tor_addr_is_null(addr) || !port) {
  366. return 0;
  367. }
  368. if (!server_mode(options)) {
  369. if (tor_addr_family(addr) == AF_INET &&
  370. (!options->ClientUseIPv4 || (pref_only && pref_ipv6)))
  371. return 0;
  372. /* Bridges can always use IPv6 */
  373. if (tor_addr_family(addr) == AF_INET6 &&
  374. (!fascist_firewall_use_ipv6(options) || (pref_only && !pref_ipv6)))
  375. return 0;
  376. }
  377. return addr_policy_permits_tor_addr(addr, port,
  378. firewall_policy);
  379. }
  380. /** Is this client configured to use IPv6?
  381. * Clients use IPv6 if ClientUseIPv6 is 1, or UseBridges is 1.
  382. */
  383. int fascist_firewall_use_ipv6(const or_options_t *options)
  384. {
  385. return (options->ClientUseIPv6 == 1 || options->UseBridges == 1);
  386. }
  387. /** Do we prefer to connect to IPv6, ignoring ClientPreferIPv6ORPort and
  388. * ClientPreferIPv6DirPort?
  389. * If we're unsure, return -1, otherwise, return 1 for IPv6 and 0 for IPv4.
  390. */
  391. static int
  392. fascist_firewall_prefer_ipv6_impl(const or_options_t *options)
  393. {
  394. /*
  395. Cheap implementation of config options ClientUseIPv4 & ClientUseIPv6 --
  396. If we're a server or IPv6 is disabled, use IPv4.
  397. If IPv4 is disabled, use IPv6.
  398. */
  399. if (server_mode(options) || !fascist_firewall_use_ipv6(options)) {
  400. return 0;
  401. }
  402. if (!options->ClientUseIPv4) {
  403. return 1;
  404. }
  405. return -1;
  406. }
  407. /** Do we prefer to connect to IPv6 ORPorts?
  408. */
  409. int
  410. fascist_firewall_prefer_ipv6_orport(const or_options_t *options)
  411. {
  412. int pref_ipv6 = fascist_firewall_prefer_ipv6_impl(options);
  413. if (pref_ipv6 >= 0) {
  414. return pref_ipv6;
  415. }
  416. /* We can use both IPv4 and IPv6 - which do we prefer? */
  417. if (options->ClientPreferIPv6ORPort == 1) {
  418. return 1;
  419. }
  420. /* For bridge clients, ClientPreferIPv6ORPort auto means "prefer IPv6". */
  421. if (options->UseBridges && options->ClientPreferIPv6ORPort != 0) {
  422. return 1;
  423. }
  424. return 0;
  425. }
  426. /** Do we prefer to connect to IPv6 DirPorts?
  427. */
  428. int
  429. fascist_firewall_prefer_ipv6_dirport(const or_options_t *options)
  430. {
  431. int pref_ipv6 = fascist_firewall_prefer_ipv6_impl(options);
  432. if (pref_ipv6 >= 0) {
  433. return pref_ipv6;
  434. }
  435. /* We can use both IPv4 and IPv6 - which do we prefer? */
  436. if (options->ClientPreferIPv6DirPort == 1) {
  437. return 1;
  438. }
  439. /* For bridge clients, ClientPreferIPv6ORPort auto means "prefer IPv6".
  440. * XX/teor - do bridge clients ever use a DirPort? */
  441. if (options->UseBridges && options->ClientPreferIPv6DirPort != 0) {
  442. return 1;
  443. }
  444. return 0;
  445. }
  446. /** Return true iff we think our firewall will let us make a connection to
  447. * addr:port. Uses ReachableORAddresses or ReachableDirAddresses based on
  448. * fw_connection.
  449. * If pref_only, return false if addr is not in the client's preferred address
  450. * family.
  451. */
  452. int
  453. fascist_firewall_allows_address_addr(const tor_addr_t *addr, uint16_t port,
  454. firewall_connection_t fw_connection,
  455. int pref_only)
  456. {
  457. const or_options_t *options = get_options();
  458. if (fw_connection == FIREWALL_OR_CONNECTION) {
  459. return fascist_firewall_allows_address(addr, port,
  460. reachable_or_addr_policy,
  461. pref_only,
  462. fascist_firewall_prefer_ipv6_orport(options));
  463. } else if (fw_connection == FIREWALL_DIR_CONNECTION) {
  464. return fascist_firewall_allows_address(addr, port,
  465. reachable_dir_addr_policy,
  466. pref_only,
  467. fascist_firewall_prefer_ipv6_dirport(options));
  468. } else {
  469. log_warn(LD_BUG, "Bad firewall_connection_t value %d.",
  470. fw_connection);
  471. return 0;
  472. }
  473. }
  474. /** Return true iff we think our firewall will let us make a connection to
  475. * addr:port (ap). Uses ReachableORAddresses or ReachableDirAddresses based on
  476. * fw_connection.
  477. * If pref_only, return false if addr is not in the client's preferred address
  478. * family.
  479. */
  480. int
  481. fascist_firewall_allows_address_ap(const tor_addr_port_t *ap,
  482. firewall_connection_t fw_connection,
  483. int pref_only)
  484. {
  485. tor_assert(ap);
  486. return fascist_firewall_allows_address_addr(&ap->addr, ap->port,
  487. fw_connection, pref_only);
  488. }
  489. /* Return true iff we think our firewall will let us make a connection to
  490. * ipv4h_or_addr:ipv4_or_port. ipv4h_or_addr is interpreted in host order.
  491. * Uses ReachableORAddresses or ReachableDirAddresses based on
  492. * fw_connection.
  493. * If pref_only, return false if addr is not in the client's preferred address
  494. * family. */
  495. int
  496. fascist_firewall_allows_address_ipv4h(uint32_t ipv4h_or_addr,
  497. uint16_t ipv4_or_port,
  498. firewall_connection_t fw_connection,
  499. int pref_only)
  500. {
  501. tor_addr_t ipv4_or_addr;
  502. tor_addr_from_ipv4h(&ipv4_or_addr, ipv4h_or_addr);
  503. return fascist_firewall_allows_address_addr(&ipv4_or_addr, ipv4_or_port,
  504. fw_connection, pref_only);
  505. }
  506. /** Return true iff we think our firewall will let us make a connection to
  507. * ipv4h_addr/ipv6_addr. Uses ipv4_orport/ipv6_orport/ReachableORAddresses or
  508. * ipv4_dirport/ipv6_dirport/ReachableDirAddresses based on IPv4/IPv6 and
  509. * <b>fw_connection</b>.
  510. * If pref_only, return false if addr is not in the client's preferred address
  511. * family. */
  512. static int
  513. fascist_firewall_allows_base(uint32_t ipv4h_addr, uint16_t ipv4_orport,
  514. uint16_t ipv4_dirport,
  515. const tor_addr_t *ipv6_addr, uint16_t ipv6_orport,
  516. uint16_t ipv6_dirport,
  517. firewall_connection_t fw_connection,
  518. int pref_only)
  519. {
  520. if (fascist_firewall_allows_address_ipv4h(ipv4h_addr,
  521. (fw_connection == FIREWALL_OR_CONNECTION
  522. ? ipv4_orport
  523. : ipv4_dirport),
  524. fw_connection,
  525. pref_only)) {
  526. return 1;
  527. }
  528. if (fascist_firewall_allows_address_addr(ipv6_addr,
  529. (fw_connection == FIREWALL_OR_CONNECTION
  530. ? ipv6_orport
  531. : ipv6_dirport),
  532. fw_connection,
  533. pref_only)) {
  534. return 1;
  535. }
  536. return 0;
  537. }
  538. /** Like fascist_firewall_allows_ri, but doesn't consult the node. */
  539. static int
  540. fascist_firewall_allows_ri_impl(const routerinfo_t *ri,
  541. firewall_connection_t fw_connection,
  542. int pref_only)
  543. {
  544. if (!ri) {
  545. return 0;
  546. }
  547. /* Assume IPv4 and IPv6 DirPorts are the same */
  548. return fascist_firewall_allows_base(ri->addr, ri->or_port, ri->dir_port,
  549. &ri->ipv6_addr, ri->ipv6_orport,
  550. ri->dir_port, fw_connection, pref_only);
  551. }
  552. /** Like fascist_firewall_allows_rs, but doesn't consult the node. */
  553. static int
  554. fascist_firewall_allows_rs_impl(const routerstatus_t *rs,
  555. firewall_connection_t fw_connection,
  556. int pref_only)
  557. {
  558. if (!rs) {
  559. return 0;
  560. }
  561. /* Assume IPv4 and IPv6 DirPorts are the same */
  562. return fascist_firewall_allows_base(rs->addr, rs->or_port, rs->dir_port,
  563. &rs->ipv6_addr, rs->ipv6_orport,
  564. rs->dir_port, fw_connection, pref_only);
  565. }
  566. /** Return true iff we think our firewall will let us make a connection to
  567. * <b>rs</b> on either its IPv4 or IPv6 address. Uses
  568. * or_port/ipv6_orport/ReachableORAddresses or dir_port/ReachableDirAddresses
  569. * based on IPv4/IPv6 and <b>fw_connection</b>.
  570. * If pref_only, return false if addr is not in the client's preferred address
  571. * family.
  572. * Consults the corresponding node if the addresses in rs are not permitted. */
  573. int
  574. fascist_firewall_allows_rs(const routerstatus_t *rs,
  575. firewall_connection_t fw_connection, int pref_only)
  576. {
  577. if (!rs) {
  578. return 0;
  579. }
  580. /* Assume IPv4 and IPv6 DirPorts are the same */
  581. if (fascist_firewall_allows_rs_impl(rs, fw_connection, pref_only)) {
  582. return 1;
  583. } else {
  584. const node_t *node = node_get_by_id(rs->identity_digest);
  585. return fascist_firewall_allows_node(node, fw_connection, pref_only);
  586. }
  587. }
  588. /** Like fascist_firewall_allows_md, but doesn't consult the node. */
  589. static int
  590. fascist_firewall_allows_md_impl(const microdesc_t *md,
  591. firewall_connection_t fw_connection,
  592. int pref_only)
  593. {
  594. if (!md) {
  595. return 0;
  596. }
  597. /* Can't check dirport, it doesn't have one */
  598. if (fw_connection == FIREWALL_DIR_CONNECTION) {
  599. return 0;
  600. }
  601. /* Also can't check IPv4, doesn't have that either */
  602. return fascist_firewall_allows_address_addr(&md->ipv6_addr, md->ipv6_orport,
  603. fw_connection, pref_only);
  604. }
  605. /** Return true iff we think our firewall will let us make a connection to
  606. * <b>node</b>:
  607. * - if <b>preferred</b> is true, on its preferred address,
  608. * - if not, on either its IPv4 or IPv6 address.
  609. * Uses or_port/ipv6_orport/ReachableORAddresses or
  610. * dir_port/ReachableDirAddresses based on IPv4/IPv6 and <b>fw_connection</b>.
  611. * If pref_only, return false if addr is not in the client's preferred address
  612. * family. */
  613. int
  614. fascist_firewall_allows_node(const node_t *node,
  615. firewall_connection_t fw_connection,
  616. int pref_only)
  617. {
  618. if (!node) {
  619. return 0;
  620. }
  621. node_assert_ok(node);
  622. /* Sometimes, the rs is missing the IPv6 address info, and we need to go
  623. * all the way to the md */
  624. if (node->ri && fascist_firewall_allows_ri_impl(node->ri, fw_connection,
  625. pref_only)) {
  626. return 1;
  627. } else if (node->rs && fascist_firewall_allows_rs_impl(node->rs,
  628. fw_connection,
  629. pref_only)) {
  630. return 1;
  631. } else if (node->md && fascist_firewall_allows_md_impl(node->md,
  632. fw_connection,
  633. pref_only)) {
  634. return 1;
  635. } else {
  636. /* If we know nothing, assume it's unreachable, we'll never get an address
  637. * to connect to. */
  638. return 0;
  639. }
  640. }
  641. /** Return true iff we think our firewall will let us make a connection to
  642. * <b>ds</b> on either its IPv4 or IPv6 address. Uses ReachableORAddresses or
  643. * ReachableDirAddresses based on <b>fw_connection</b> (some directory
  644. * connections are tunneled over ORPorts).
  645. * If pref_only, return false if addr is not in the client's preferred address
  646. * family. */
  647. int
  648. fascist_firewall_allows_dir_server(const dir_server_t *ds,
  649. firewall_connection_t fw_connection,
  650. int pref_only)
  651. {
  652. if (!ds) {
  653. return 0;
  654. }
  655. /* A dir_server_t always has a fake_status. As long as it has the same
  656. * addresses/ports in both fake_status and dir_server_t, this works fine.
  657. * (See #17867.)
  658. * This function relies on fascist_firewall_allows_rs looking up the node on
  659. * failure, because it will get the latest info for the relay. */
  660. return fascist_firewall_allows_rs(&ds->fake_status, fw_connection,
  661. pref_only);
  662. }
  663. /** If a and b are both valid and allowed by fw_connection,
  664. * choose one based on want_a and return it.
  665. * Otherwise, return whichever is allowed.
  666. * Otherwise, return NULL.
  667. * If pref_only, only return an address if it's in the client's preferred
  668. * address family. */
  669. static const tor_addr_port_t *
  670. fascist_firewall_choose_address_impl(const tor_addr_port_t *a,
  671. const tor_addr_port_t *b,
  672. int want_a,
  673. firewall_connection_t fw_connection,
  674. int pref_only)
  675. {
  676. const tor_addr_port_t *use_a = NULL;
  677. const tor_addr_port_t *use_b = NULL;
  678. if (fascist_firewall_allows_address_ap(a, fw_connection, pref_only)) {
  679. use_a = a;
  680. }
  681. if (fascist_firewall_allows_address_ap(b, fw_connection, pref_only)) {
  682. use_b = b;
  683. }
  684. /* If both are allowed */
  685. if (use_a && use_b) {
  686. /* Choose a if we want it */
  687. return (want_a ? use_a : use_b);
  688. } else {
  689. /* Choose a if we have it */
  690. return (use_a ? use_a : use_b);
  691. }
  692. }
  693. /** If a and b are both valid and preferred by fw_connection,
  694. * choose one based on want_a and return it.
  695. * Otherwise, return whichever is preferred.
  696. * If neither are preferred, and pref_only is false:
  697. * - If a and b are both allowed by fw_connection,
  698. * choose one based on want_a and return it.
  699. * - Otherwise, return whichever is preferred.
  700. * Otherwise, return NULL. */
  701. const tor_addr_port_t *
  702. fascist_firewall_choose_address(const tor_addr_port_t *a,
  703. const tor_addr_port_t *b,
  704. int want_a,
  705. firewall_connection_t fw_connection,
  706. int pref_only)
  707. {
  708. const tor_addr_port_t *pref = fascist_firewall_choose_address_impl(
  709. a, b, want_a,
  710. fw_connection,
  711. 1);
  712. if (pref_only || pref) {
  713. /* If there is a preferred address, use it. If we can only use preferred
  714. * addresses, and neither address is preferred, pref will be NULL, and we
  715. * want to return NULL, so return it. */
  716. return pref;
  717. } else {
  718. /* If there's no preferred address, and we can return addresses that are
  719. * not preferred, use an address that's allowed */
  720. return fascist_firewall_choose_address_impl(a, b, want_a, fw_connection,
  721. 0);
  722. }
  723. }
  724. /** Copy an address and port into <b>ap</b> that we think our firewall will
  725. * let us connect to. Uses ipv4_addr/ipv6_addr and
  726. * ipv4_orport/ipv6_orport/ReachableORAddresses or
  727. * ipv4_dirport/ipv6_dirport/ReachableDirAddresses based on IPv4/IPv6 and
  728. * <b>fw_connection</b>.
  729. * If pref_only, only choose preferred addresses. In either case, choose
  730. * a preferred address before an address that's not preferred.
  731. * If neither address is chosen, return 0, else return 1. */
  732. static int
  733. fascist_firewall_choose_address_base(const tor_addr_t *ipv4_addr,
  734. uint16_t ipv4_orport,
  735. uint16_t ipv4_dirport,
  736. const tor_addr_t *ipv6_addr,
  737. uint16_t ipv6_orport,
  738. uint16_t ipv6_dirport,
  739. firewall_connection_t fw_connection,
  740. int pref_only,
  741. tor_addr_port_t* ap)
  742. {
  743. const tor_addr_port_t *result = NULL;
  744. /* This argument is ignored as long as the address pair is IPv4/IPv6,
  745. * because we always have a preference in a client.
  746. * For bridge clients, this selects the preferred address, which was
  747. * previously IPv6 (if a bridge has both), so we keep that behaviour. */
  748. const int bridge_client_prefer_ipv4 = 0;
  749. tor_assert(ipv6_addr);
  750. tor_assert(ap);
  751. tor_addr_port_t ipv4_ap;
  752. tor_addr_copy(&ipv4_ap.addr, ipv4_addr);
  753. ipv4_ap.port = (fw_connection == FIREWALL_OR_CONNECTION
  754. ? ipv4_orport
  755. : ipv4_dirport);
  756. tor_addr_port_t ipv6_ap;
  757. tor_addr_copy(&ipv6_ap.addr, ipv6_addr);
  758. ipv6_ap.port = (fw_connection == FIREWALL_OR_CONNECTION
  759. ? ipv6_orport
  760. : ipv6_dirport);
  761. result = fascist_firewall_choose_address(&ipv4_ap, &ipv6_ap,
  762. bridge_client_prefer_ipv4,
  763. fw_connection, pref_only);
  764. if (result) {
  765. tor_addr_copy(&ap->addr, &result->addr);
  766. ap->port = result->port;
  767. return 1;
  768. } else {
  769. return 0;
  770. }
  771. }
  772. /** Like fascist_firewall_choose_address_base, but takes a host-order IPv4
  773. * address as the first parameter. */
  774. static int
  775. fascist_firewall_choose_address_ipv4h(uint32_t ipv4h_addr,
  776. uint16_t ipv4_orport,
  777. uint16_t ipv4_dirport,
  778. const tor_addr_t *ipv6_addr,
  779. uint16_t ipv6_orport,
  780. uint16_t ipv6_dirport,
  781. firewall_connection_t fw_connection,
  782. int pref_only,
  783. tor_addr_port_t* ap)
  784. {
  785. tor_addr_t ipv4_addr;
  786. tor_addr_from_ipv4h(&ipv4_addr, ipv4h_addr);
  787. return fascist_firewall_choose_address_base(&ipv4_addr, ipv4_orport,
  788. ipv4_dirport, ipv6_addr,
  789. ipv6_orport, ipv6_dirport,
  790. fw_connection, pref_only, ap);
  791. }
  792. #define IPV6_OR_LOOKUP(r, identity_digest, ipv6_or_ap) \
  793. STMT_BEGIN \
  794. if (!(r)->ipv6_orport || tor_addr_is_null(&(r)->ipv6_addr)) { \
  795. const node_t *node = node_get_by_id((identity_digest)); \
  796. if (node) { \
  797. node_get_pref_ipv6_orport(node, &(ipv6_or_ap)); \
  798. } else { \
  799. tor_addr_make_null(&(ipv6_or_ap).addr, AF_INET6); \
  800. (ipv6_or_ap).port = 0; \
  801. } \
  802. } else { \
  803. tor_addr_copy(&(ipv6_or_ap).addr, &(r)->ipv6_addr); \
  804. (ipv6_or_ap).port = (r)->ipv6_orport; \
  805. } \
  806. STMT_END
  807. /** Copy an address and port from <b>rs</b> into <b>ap</b> that we think our
  808. * firewall will let us connect to. Uses ipv4h_addr/ipv6_addr and
  809. * ipv4_orport/ipv6_orport/ReachableORAddresses or
  810. * ipv4_dirport/ipv6_dirport/ReachableDirAddresses based on IPv4/IPv6 and
  811. * <b>fw_connection</b>.
  812. * If pref_only, only choose preferred addresses. In either case, choose
  813. * a preferred address before an address that's not preferred.
  814. * If neither address is chosen, return 0, else return 1.
  815. * Consults the corresponding node if the addresses in rs are not valid. */
  816. int
  817. fascist_firewall_choose_address_rs(const routerstatus_t *rs,
  818. firewall_connection_t fw_connection,
  819. int pref_only, tor_addr_port_t* ap)
  820. {
  821. if (!rs) {
  822. return 0;
  823. }
  824. tor_assert(ap);
  825. /* Don't do the lookup if the IPv6 address/port in rs is OK.
  826. * If it's OK, assume the dir_port is also OK. */
  827. tor_addr_port_t ipv6_or_ap;
  828. IPV6_OR_LOOKUP(rs, rs->identity_digest, ipv6_or_ap);
  829. /* Assume IPv4 and IPv6 DirPorts are the same.
  830. * Assume the IPv6 OR and Dir addresses are the same. */
  831. return fascist_firewall_choose_address_ipv4h(rs->addr,
  832. rs->or_port,
  833. rs->dir_port,
  834. &ipv6_or_ap.addr,
  835. ipv6_or_ap.port,
  836. rs->dir_port,
  837. fw_connection,
  838. pref_only,
  839. ap);
  840. }
  841. /** Copy an address and port from <b>node</b> into <b>ap</b> that we think our
  842. * firewall will let us connect to. Uses ipv4h_addr/ipv6_addr and
  843. * ipv4_orport/ipv6_orport/ReachableORAddresses or
  844. * ipv4_dirport/ipv6_dirport/ReachableDirAddresses based on IPv4/IPv6 and
  845. * <b>fw_connection</b>.
  846. * If pref_only, only choose preferred addresses. In either case, choose
  847. * a preferred address before an address that's not preferred.
  848. * If neither address is chosen, return 0, else return 1. */
  849. int
  850. fascist_firewall_choose_address_node(const node_t *node,
  851. firewall_connection_t fw_connection,
  852. int pref_only, tor_addr_port_t *ap)
  853. {
  854. if (!node) {
  855. return 0;
  856. }
  857. node_assert_ok(node);
  858. tor_addr_port_t ipv4_or_ap;
  859. node_get_prim_orport(node, &ipv4_or_ap);
  860. tor_addr_port_t ipv4_dir_ap;
  861. node_get_prim_dirport(node, &ipv4_dir_ap);
  862. tor_addr_port_t ipv6_or_ap;
  863. node_get_pref_ipv6_orport(node, &ipv6_or_ap);
  864. tor_addr_port_t ipv6_dir_ap;
  865. node_get_pref_ipv6_dirport(node, &ipv6_dir_ap);
  866. /* Assume the IPv6 OR and Dir addresses are the same. */
  867. return fascist_firewall_choose_address_base(&ipv4_or_ap.addr,
  868. ipv4_or_ap.port,
  869. ipv4_dir_ap.port,
  870. &ipv6_or_ap.addr,
  871. ipv6_or_ap.port,
  872. ipv6_dir_ap.port,
  873. fw_connection,
  874. pref_only,
  875. ap);
  876. }
  877. /** Copy an address and port from <b>ds</b> into <b>ap</b> that we think our
  878. * firewall will let us connect to. Uses ipv4h_addr/ipv6_addr and
  879. * ipv4_orport/ipv6_orport/ReachableORAddresses or
  880. * ipv4_dirport/ipv6_dirport/ReachableDirAddresses based on IPv4/IPv6 and
  881. * <b>fw_connection</b>.
  882. * If pref_only, only choose preferred addresses. In either case, choose
  883. * a preferred address before an address that's not preferred.
  884. * If neither address is chosen, return 0, else return 1. */
  885. int
  886. fascist_firewall_choose_address_dir_server(const dir_server_t *ds,
  887. firewall_connection_t fw_connection,
  888. int pref_only, tor_addr_port_t *ap)
  889. {
  890. if (!ds) {
  891. return 0;
  892. }
  893. /* A dir_server_t always has a fake_status. As long as it has the same
  894. * addresses/ports in both fake_status and dir_server_t, this works fine.
  895. * (See #17867.)
  896. * This function relies on fascist_firewall_choose_address_rs looking up the
  897. * addresses from the node if it can, because that will get the latest info
  898. * for the relay. */
  899. return fascist_firewall_choose_address_rs(&ds->fake_status, fw_connection,
  900. pref_only, ap);
  901. }
  902. /** Return 1 if <b>addr</b> is permitted to connect to our dir port,
  903. * based on <b>dir_policy</b>. Else return 0.
  904. */
  905. int
  906. dir_policy_permits_address(const tor_addr_t *addr)
  907. {
  908. return addr_policy_permits_tor_addr(addr, 1, dir_policy);
  909. }
  910. /** Return 1 if <b>addr</b> is permitted to connect to our socks port,
  911. * based on <b>socks_policy</b>. Else return 0.
  912. */
  913. int
  914. socks_policy_permits_address(const tor_addr_t *addr)
  915. {
  916. return addr_policy_permits_tor_addr(addr, 1, socks_policy);
  917. }
  918. /** Return true iff the address <b>addr</b> is in a country listed in the
  919. * case-insensitive list of country codes <b>cc_list</b>. */
  920. static int
  921. addr_is_in_cc_list(uint32_t addr, const smartlist_t *cc_list)
  922. {
  923. country_t country;
  924. const char *name;
  925. tor_addr_t tar;
  926. if (!cc_list)
  927. return 0;
  928. /* XXXXipv6 */
  929. tor_addr_from_ipv4h(&tar, addr);
  930. country = geoip_get_country_by_addr(&tar);
  931. name = geoip_get_country_name(country);
  932. return smartlist_contains_string_case(cc_list, name);
  933. }
  934. /** Return 1 if <b>addr</b>:<b>port</b> is permitted to publish to our
  935. * directory, based on <b>authdir_reject_policy</b>. Else return 0.
  936. */
  937. int
  938. authdir_policy_permits_address(uint32_t addr, uint16_t port)
  939. {
  940. if (! addr_policy_permits_address(addr, port, authdir_reject_policy))
  941. return 0;
  942. return !addr_is_in_cc_list(addr, get_options()->AuthDirRejectCCs);
  943. }
  944. /** Return 1 if <b>addr</b>:<b>port</b> is considered valid in our
  945. * directory, based on <b>authdir_invalid_policy</b>. Else return 0.
  946. */
  947. int
  948. authdir_policy_valid_address(uint32_t addr, uint16_t port)
  949. {
  950. if (! addr_policy_permits_address(addr, port, authdir_invalid_policy))
  951. return 0;
  952. return !addr_is_in_cc_list(addr, get_options()->AuthDirInvalidCCs);
  953. }
  954. /** Return 1 if <b>addr</b>:<b>port</b> should be marked as a bad exit,
  955. * based on <b>authdir_badexit_policy</b>. Else return 0.
  956. */
  957. int
  958. authdir_policy_badexit_address(uint32_t addr, uint16_t port)
  959. {
  960. if (! addr_policy_permits_address(addr, port, authdir_badexit_policy))
  961. return 1;
  962. return addr_is_in_cc_list(addr, get_options()->AuthDirBadExitCCs);
  963. }
  964. #define REJECT(arg) \
  965. STMT_BEGIN *msg = tor_strdup(arg); goto err; STMT_END
  966. /** Config helper: If there's any problem with the policy configuration
  967. * options in <b>options</b>, return -1 and set <b>msg</b> to a newly
  968. * allocated description of the error. Else return 0. */
  969. int
  970. validate_addr_policies(const or_options_t *options, char **msg)
  971. {
  972. /* XXXX Maybe merge this into parse_policies_from_options, to make sure
  973. * that the two can't go out of sync. */
  974. smartlist_t *addr_policy=NULL;
  975. *msg = NULL;
  976. if (policies_parse_exit_policy_from_options(options,0,NULL,&addr_policy)) {
  977. REJECT("Error in ExitPolicy entry.");
  978. }
  979. static int warned_about_exitrelay = 0;
  980. const int exitrelay_setting_is_auto = options->ExitRelay == -1;
  981. const int policy_accepts_something =
  982. ! (policy_is_reject_star(addr_policy, AF_INET) &&
  983. policy_is_reject_star(addr_policy, AF_INET6));
  984. if (server_mode(options) &&
  985. ! warned_about_exitrelay &&
  986. exitrelay_setting_is_auto &&
  987. policy_accepts_something) {
  988. /* Policy accepts something */
  989. warned_about_exitrelay = 1;
  990. log_warn(LD_CONFIG,
  991. "Tor is running as an exit relay%s. If you did not want this "
  992. "behavior, please set the ExitRelay option to 0. If you do "
  993. "want to run an exit Relay, please set the ExitRelay option "
  994. "to 1 to disable this warning, and for forward compatibility.",
  995. options->ExitPolicy == NULL ?
  996. " with the default exit policy" : "");
  997. if (options->ExitPolicy == NULL) {
  998. log_warn(LD_CONFIG,
  999. "In a future version of Tor, ExitRelay 0 may become the "
  1000. "default when no ExitPolicy is given.");
  1001. }
  1002. }
  1003. /* The rest of these calls *append* to addr_policy. So don't actually
  1004. * use the results for anything other than checking if they parse! */
  1005. if (parse_addr_policy(options->DirPolicy, &addr_policy, -1))
  1006. REJECT("Error in DirPolicy entry.");
  1007. if (parse_addr_policy(options->SocksPolicy, &addr_policy, -1))
  1008. REJECT("Error in SocksPolicy entry.");
  1009. if (parse_addr_policy(options->AuthDirReject, &addr_policy,
  1010. ADDR_POLICY_REJECT))
  1011. REJECT("Error in AuthDirReject entry.");
  1012. if (parse_addr_policy(options->AuthDirInvalid, &addr_policy,
  1013. ADDR_POLICY_REJECT))
  1014. REJECT("Error in AuthDirInvalid entry.");
  1015. if (parse_addr_policy(options->AuthDirBadExit, &addr_policy,
  1016. ADDR_POLICY_REJECT))
  1017. REJECT("Error in AuthDirBadExit entry.");
  1018. if (parse_addr_policy(options->ReachableAddresses, &addr_policy,
  1019. ADDR_POLICY_ACCEPT))
  1020. REJECT("Error in ReachableAddresses entry.");
  1021. if (parse_addr_policy(options->ReachableORAddresses, &addr_policy,
  1022. ADDR_POLICY_ACCEPT))
  1023. REJECT("Error in ReachableORAddresses entry.");
  1024. if (parse_addr_policy(options->ReachableDirAddresses, &addr_policy,
  1025. ADDR_POLICY_ACCEPT))
  1026. REJECT("Error in ReachableDirAddresses entry.");
  1027. err:
  1028. addr_policy_list_free(addr_policy);
  1029. return *msg ? -1 : 0;
  1030. #undef REJECT
  1031. }
  1032. /** Parse <b>string</b> in the same way that the exit policy
  1033. * is parsed, and put the processed version in *<b>policy</b>.
  1034. * Ignore port specifiers.
  1035. */
  1036. static int
  1037. load_policy_from_option(config_line_t *config, const char *option_name,
  1038. smartlist_t **policy,
  1039. int assume_action)
  1040. {
  1041. int r;
  1042. int killed_any_ports = 0;
  1043. addr_policy_list_free(*policy);
  1044. *policy = NULL;
  1045. r = parse_addr_policy(config, policy, assume_action);
  1046. if (r < 0) {
  1047. return -1;
  1048. }
  1049. if (*policy) {
  1050. SMARTLIST_FOREACH_BEGIN(*policy, addr_policy_t *, n) {
  1051. /* ports aren't used in these. */
  1052. if (n->prt_min > 1 || n->prt_max != 65535) {
  1053. addr_policy_t newp, *c;
  1054. memcpy(&newp, n, sizeof(newp));
  1055. newp.prt_min = 1;
  1056. newp.prt_max = 65535;
  1057. newp.is_canonical = 0;
  1058. c = addr_policy_get_canonical_entry(&newp);
  1059. SMARTLIST_REPLACE_CURRENT(*policy, n, c);
  1060. addr_policy_free(n);
  1061. killed_any_ports = 1;
  1062. }
  1063. } SMARTLIST_FOREACH_END(n);
  1064. }
  1065. if (killed_any_ports) {
  1066. log_warn(LD_CONFIG, "Ignoring ports in %s option.", option_name);
  1067. }
  1068. return 0;
  1069. }
  1070. /** Set all policies based on <b>options</b>, which should have been validated
  1071. * first by validate_addr_policies. */
  1072. int
  1073. policies_parse_from_options(const or_options_t *options)
  1074. {
  1075. int ret = 0;
  1076. if (load_policy_from_option(options->SocksPolicy, "SocksPolicy",
  1077. &socks_policy, -1) < 0)
  1078. ret = -1;
  1079. if (load_policy_from_option(options->DirPolicy, "DirPolicy",
  1080. &dir_policy, -1) < 0)
  1081. ret = -1;
  1082. if (load_policy_from_option(options->AuthDirReject, "AuthDirReject",
  1083. &authdir_reject_policy, ADDR_POLICY_REJECT) < 0)
  1084. ret = -1;
  1085. if (load_policy_from_option(options->AuthDirInvalid, "AuthDirInvalid",
  1086. &authdir_invalid_policy, ADDR_POLICY_REJECT) < 0)
  1087. ret = -1;
  1088. if (load_policy_from_option(options->AuthDirBadExit, "AuthDirBadExit",
  1089. &authdir_badexit_policy, ADDR_POLICY_REJECT) < 0)
  1090. ret = -1;
  1091. if (parse_reachable_addresses() < 0)
  1092. ret = -1;
  1093. return ret;
  1094. }
  1095. /** Compare two provided address policy items, and return -1, 0, or 1
  1096. * if the first is less than, equal to, or greater than the second. */
  1097. static int
  1098. cmp_single_addr_policy(addr_policy_t *a, addr_policy_t *b)
  1099. {
  1100. int r;
  1101. if ((r=((int)a->policy_type - (int)b->policy_type)))
  1102. return r;
  1103. if ((r=((int)a->is_private - (int)b->is_private)))
  1104. return r;
  1105. /* refcnt and is_canonical are irrelevant to equality,
  1106. * they are hash table implementation details */
  1107. if ((r=tor_addr_compare(&a->addr, &b->addr, CMP_EXACT)))
  1108. return r;
  1109. if ((r=((int)a->maskbits - (int)b->maskbits)))
  1110. return r;
  1111. if ((r=((int)a->prt_min - (int)b->prt_min)))
  1112. return r;
  1113. if ((r=((int)a->prt_max - (int)b->prt_max)))
  1114. return r;
  1115. return 0;
  1116. }
  1117. /** Like cmp_single_addr_policy() above, but looks at the
  1118. * whole set of policies in each case. */
  1119. int
  1120. cmp_addr_policies(smartlist_t *a, smartlist_t *b)
  1121. {
  1122. int r, i;
  1123. int len_a = a ? smartlist_len(a) : 0;
  1124. int len_b = b ? smartlist_len(b) : 0;
  1125. for (i = 0; i < len_a && i < len_b; ++i) {
  1126. if ((r = cmp_single_addr_policy(smartlist_get(a, i), smartlist_get(b, i))))
  1127. return r;
  1128. }
  1129. if (i == len_a && i == len_b)
  1130. return 0;
  1131. if (i < len_a)
  1132. return -1;
  1133. else
  1134. return 1;
  1135. }
  1136. /** Node in hashtable used to store address policy entries. */
  1137. typedef struct policy_map_ent_t {
  1138. HT_ENTRY(policy_map_ent_t) node;
  1139. addr_policy_t *policy;
  1140. } policy_map_ent_t;
  1141. /* DOCDOC policy_root */
  1142. static HT_HEAD(policy_map, policy_map_ent_t) policy_root = HT_INITIALIZER();
  1143. /** Return true iff a and b are equal. */
  1144. static inline int
  1145. policy_eq(policy_map_ent_t *a, policy_map_ent_t *b)
  1146. {
  1147. return cmp_single_addr_policy(a->policy, b->policy) == 0;
  1148. }
  1149. /** Return a hashcode for <b>ent</b> */
  1150. static unsigned int
  1151. policy_hash(const policy_map_ent_t *ent)
  1152. {
  1153. const addr_policy_t *a = ent->policy;
  1154. addr_policy_t aa;
  1155. memset(&aa, 0, sizeof(aa));
  1156. aa.prt_min = a->prt_min;
  1157. aa.prt_max = a->prt_max;
  1158. aa.maskbits = a->maskbits;
  1159. aa.policy_type = a->policy_type;
  1160. aa.is_private = a->is_private;
  1161. if (a->is_private) {
  1162. aa.is_private = 1;
  1163. } else {
  1164. tor_addr_copy_tight(&aa.addr, &a->addr);
  1165. }
  1166. return (unsigned) siphash24g(&aa, sizeof(aa));
  1167. }
  1168. HT_PROTOTYPE(policy_map, policy_map_ent_t, node, policy_hash,
  1169. policy_eq)
  1170. HT_GENERATE2(policy_map, policy_map_ent_t, node, policy_hash,
  1171. policy_eq, 0.6, tor_reallocarray_, tor_free_)
  1172. /** Given a pointer to an addr_policy_t, return a copy of the pointer to the
  1173. * "canonical" copy of that addr_policy_t; the canonical copy is a single
  1174. * reference-counted object. */
  1175. addr_policy_t *
  1176. addr_policy_get_canonical_entry(addr_policy_t *e)
  1177. {
  1178. policy_map_ent_t search, *found;
  1179. if (e->is_canonical)
  1180. return e;
  1181. search.policy = e;
  1182. found = HT_FIND(policy_map, &policy_root, &search);
  1183. if (!found) {
  1184. found = tor_malloc_zero(sizeof(policy_map_ent_t));
  1185. found->policy = tor_memdup(e, sizeof(addr_policy_t));
  1186. found->policy->is_canonical = 1;
  1187. found->policy->refcnt = 0;
  1188. HT_INSERT(policy_map, &policy_root, found);
  1189. }
  1190. tor_assert(!cmp_single_addr_policy(found->policy, e));
  1191. ++found->policy->refcnt;
  1192. return found->policy;
  1193. }
  1194. /** Helper for compare_tor_addr_to_addr_policy. Implements the case where
  1195. * addr and port are both known. */
  1196. static addr_policy_result_t
  1197. compare_known_tor_addr_to_addr_policy(const tor_addr_t *addr, uint16_t port,
  1198. const smartlist_t *policy)
  1199. {
  1200. /* We know the address and port, and we know the policy, so we can just
  1201. * compute an exact match. */
  1202. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, tmpe) {
  1203. if (tmpe->addr.family == AF_UNSPEC) {
  1204. log_warn(LD_BUG, "Policy contains an AF_UNSPEC address, which only "
  1205. "matches other AF_UNSPEC addresses.");
  1206. }
  1207. /* Address is known */
  1208. if (!tor_addr_compare_masked(addr, &tmpe->addr, tmpe->maskbits,
  1209. CMP_EXACT)) {
  1210. if (port >= tmpe->prt_min && port <= tmpe->prt_max) {
  1211. /* Exact match for the policy */
  1212. return tmpe->policy_type == ADDR_POLICY_ACCEPT ?
  1213. ADDR_POLICY_ACCEPTED : ADDR_POLICY_REJECTED;
  1214. }
  1215. }
  1216. } SMARTLIST_FOREACH_END(tmpe);
  1217. /* accept all by default. */
  1218. return ADDR_POLICY_ACCEPTED;
  1219. }
  1220. /** Helper for compare_tor_addr_to_addr_policy. Implements the case where
  1221. * addr is known but port is not. */
  1222. static addr_policy_result_t
  1223. compare_known_tor_addr_to_addr_policy_noport(const tor_addr_t *addr,
  1224. const smartlist_t *policy)
  1225. {
  1226. /* We look to see if there's a definite match. If so, we return that
  1227. match's value, unless there's an intervening possible match that says
  1228. something different. */
  1229. int maybe_accept = 0, maybe_reject = 0;
  1230. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, tmpe) {
  1231. if (tmpe->addr.family == AF_UNSPEC) {
  1232. log_warn(LD_BUG, "Policy contains an AF_UNSPEC address, which only "
  1233. "matches other AF_UNSPEC addresses.");
  1234. }
  1235. if (!tor_addr_compare_masked(addr, &tmpe->addr, tmpe->maskbits,
  1236. CMP_EXACT)) {
  1237. if (tmpe->prt_min <= 1 && tmpe->prt_max >= 65535) {
  1238. /* Definitely matches, since it covers all ports. */
  1239. if (tmpe->policy_type == ADDR_POLICY_ACCEPT) {
  1240. /* If we already hit a clause that might trigger a 'reject', than we
  1241. * can't be sure of this certain 'accept'.*/
  1242. return maybe_reject ? ADDR_POLICY_PROBABLY_ACCEPTED :
  1243. ADDR_POLICY_ACCEPTED;
  1244. } else {
  1245. return maybe_accept ? ADDR_POLICY_PROBABLY_REJECTED :
  1246. ADDR_POLICY_REJECTED;
  1247. }
  1248. } else {
  1249. /* Might match. */
  1250. if (tmpe->policy_type == ADDR_POLICY_REJECT)
  1251. maybe_reject = 1;
  1252. else
  1253. maybe_accept = 1;
  1254. }
  1255. }
  1256. } SMARTLIST_FOREACH_END(tmpe);
  1257. /* accept all by default. */
  1258. return maybe_reject ? ADDR_POLICY_PROBABLY_ACCEPTED : ADDR_POLICY_ACCEPTED;
  1259. }
  1260. /** Helper for compare_tor_addr_to_addr_policy. Implements the case where
  1261. * port is known but address is not. */
  1262. static addr_policy_result_t
  1263. compare_unknown_tor_addr_to_addr_policy(uint16_t port,
  1264. const smartlist_t *policy)
  1265. {
  1266. /* We look to see if there's a definite match. If so, we return that
  1267. match's value, unless there's an intervening possible match that says
  1268. something different. */
  1269. int maybe_accept = 0, maybe_reject = 0;
  1270. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, tmpe) {
  1271. if (tmpe->addr.family == AF_UNSPEC) {
  1272. log_warn(LD_BUG, "Policy contains an AF_UNSPEC address, which only "
  1273. "matches other AF_UNSPEC addresses.");
  1274. }
  1275. if (tmpe->prt_min <= port && port <= tmpe->prt_max) {
  1276. if (tmpe->maskbits == 0) {
  1277. /* Definitely matches, since it covers all addresses. */
  1278. if (tmpe->policy_type == ADDR_POLICY_ACCEPT) {
  1279. /* If we already hit a clause that might trigger a 'reject', than we
  1280. * can't be sure of this certain 'accept'.*/
  1281. return maybe_reject ? ADDR_POLICY_PROBABLY_ACCEPTED :
  1282. ADDR_POLICY_ACCEPTED;
  1283. } else {
  1284. return maybe_accept ? ADDR_POLICY_PROBABLY_REJECTED :
  1285. ADDR_POLICY_REJECTED;
  1286. }
  1287. } else {
  1288. /* Might match. */
  1289. if (tmpe->policy_type == ADDR_POLICY_REJECT)
  1290. maybe_reject = 1;
  1291. else
  1292. maybe_accept = 1;
  1293. }
  1294. }
  1295. } SMARTLIST_FOREACH_END(tmpe);
  1296. /* accept all by default. */
  1297. return maybe_reject ? ADDR_POLICY_PROBABLY_ACCEPTED : ADDR_POLICY_ACCEPTED;
  1298. }
  1299. /** Decide whether a given addr:port is definitely accepted,
  1300. * definitely rejected, probably accepted, or probably rejected by a
  1301. * given policy. If <b>addr</b> is 0, we don't know the IP of the
  1302. * target address. If <b>port</b> is 0, we don't know the port of the
  1303. * target address. (At least one of <b>addr</b> and <b>port</b> must be
  1304. * provided. If you want to know whether a policy would definitely reject
  1305. * an unknown address:port, use policy_is_reject_star().)
  1306. *
  1307. * We could do better by assuming that some ranges never match typical
  1308. * addresses (127.0.0.1, and so on). But we'll try this for now.
  1309. */
  1310. MOCK_IMPL(addr_policy_result_t,
  1311. compare_tor_addr_to_addr_policy,(const tor_addr_t *addr, uint16_t port,
  1312. const smartlist_t *policy))
  1313. {
  1314. if (!policy) {
  1315. /* no policy? accept all. */
  1316. return ADDR_POLICY_ACCEPTED;
  1317. } else if (addr == NULL || tor_addr_is_null(addr)) {
  1318. if (port == 0) {
  1319. log_info(LD_BUG, "Rejecting null address with 0 port (family %d)",
  1320. addr ? tor_addr_family(addr) : -1);
  1321. return ADDR_POLICY_REJECTED;
  1322. }
  1323. return compare_unknown_tor_addr_to_addr_policy(port, policy);
  1324. } else if (port == 0) {
  1325. return compare_known_tor_addr_to_addr_policy_noport(addr, policy);
  1326. } else {
  1327. return compare_known_tor_addr_to_addr_policy(addr, port, policy);
  1328. }
  1329. }
  1330. /** Return true iff the address policy <b>a</b> covers every case that
  1331. * would be covered by <b>b</b>, so that a,b is redundant. */
  1332. static int
  1333. addr_policy_covers(addr_policy_t *a, addr_policy_t *b)
  1334. {
  1335. if (tor_addr_family(&a->addr) != tor_addr_family(&b->addr)) {
  1336. /* You can't cover a different family. */
  1337. return 0;
  1338. }
  1339. /* We can ignore accept/reject, since "accept *:80, reject *:80" reduces
  1340. * to "accept *:80". */
  1341. if (a->maskbits > b->maskbits) {
  1342. /* a has more fixed bits than b; it can't possibly cover b. */
  1343. return 0;
  1344. }
  1345. if (tor_addr_compare_masked(&a->addr, &b->addr, a->maskbits, CMP_EXACT)) {
  1346. /* There's a fixed bit in a that's set differently in b. */
  1347. return 0;
  1348. }
  1349. return (a->prt_min <= b->prt_min && a->prt_max >= b->prt_max);
  1350. }
  1351. /** Return true iff the address policies <b>a</b> and <b>b</b> intersect,
  1352. * that is, there exists an address/port that is covered by <b>a</b> that
  1353. * is also covered by <b>b</b>.
  1354. */
  1355. static int
  1356. addr_policy_intersects(addr_policy_t *a, addr_policy_t *b)
  1357. {
  1358. maskbits_t minbits;
  1359. /* All the bits we care about are those that are set in both
  1360. * netmasks. If they are equal in a and b's networkaddresses
  1361. * then the networks intersect. If there is a difference,
  1362. * then they do not. */
  1363. if (a->maskbits < b->maskbits)
  1364. minbits = a->maskbits;
  1365. else
  1366. minbits = b->maskbits;
  1367. if (tor_addr_compare_masked(&a->addr, &b->addr, minbits, CMP_EXACT))
  1368. return 0;
  1369. if (a->prt_max < b->prt_min || b->prt_max < a->prt_min)
  1370. return 0;
  1371. return 1;
  1372. }
  1373. /** Add the exit policy described by <b>more</b> to <b>policy</b>.
  1374. */
  1375. STATIC void
  1376. append_exit_policy_string(smartlist_t **policy, const char *more)
  1377. {
  1378. config_line_t tmp;
  1379. tmp.key = NULL;
  1380. tmp.value = (char*) more;
  1381. tmp.next = NULL;
  1382. if (parse_addr_policy(&tmp, policy, -1)<0) {
  1383. log_warn(LD_BUG, "Unable to parse internally generated policy %s",more);
  1384. }
  1385. }
  1386. /** Add "reject <b>addr</b>:*" to <b>dest</b>, creating the list as needed. */
  1387. void
  1388. addr_policy_append_reject_addr(smartlist_t **dest, const tor_addr_t *addr)
  1389. {
  1390. tor_assert(dest);
  1391. tor_assert(addr);
  1392. addr_policy_t p, *add;
  1393. memset(&p, 0, sizeof(p));
  1394. p.policy_type = ADDR_POLICY_REJECT;
  1395. p.maskbits = tor_addr_family(addr) == AF_INET6 ? 128 : 32;
  1396. tor_addr_copy(&p.addr, addr);
  1397. p.prt_min = 1;
  1398. p.prt_max = 65535;
  1399. add = addr_policy_get_canonical_entry(&p);
  1400. if (!*dest)
  1401. *dest = smartlist_new();
  1402. smartlist_add(*dest, add);
  1403. log_debug(LD_CONFIG, "Adding a reject ExitPolicy 'reject %s:*'",
  1404. fmt_addr(addr));
  1405. }
  1406. /* Is addr public for the purposes of rejection? */
  1407. static int
  1408. tor_addr_is_public_for_reject(const tor_addr_t *addr)
  1409. {
  1410. return (!tor_addr_is_null(addr) && !tor_addr_is_internal(addr, 0)
  1411. && !tor_addr_is_multicast(addr));
  1412. }
  1413. /* Add "reject <b>addr</b>:*" to <b>dest</b>, creating the list as needed.
  1414. * Filter the address, only adding an IPv4 reject rule if ipv4_rules
  1415. * is true, and similarly for ipv6_rules. Check each address returns true for
  1416. * tor_addr_is_public_for_reject before adding it.
  1417. */
  1418. static void
  1419. addr_policy_append_reject_addr_filter(smartlist_t **dest,
  1420. const tor_addr_t *addr,
  1421. int ipv4_rules,
  1422. int ipv6_rules)
  1423. {
  1424. tor_assert(dest);
  1425. tor_assert(addr);
  1426. /* Only reject IP addresses which are public */
  1427. if (tor_addr_is_public_for_reject(addr)) {
  1428. /* Reject IPv4 addresses and IPv6 addresses based on the filters */
  1429. int is_ipv4 = tor_addr_is_v4(addr);
  1430. if ((is_ipv4 && ipv4_rules) || (!is_ipv4 && ipv6_rules)) {
  1431. addr_policy_append_reject_addr(dest, addr);
  1432. }
  1433. }
  1434. }
  1435. /** Add "reject addr:*" to <b>dest</b>, for each addr in addrs, creating the
  1436. * list as needed. */
  1437. void
  1438. addr_policy_append_reject_addr_list(smartlist_t **dest,
  1439. const smartlist_t *addrs)
  1440. {
  1441. tor_assert(dest);
  1442. tor_assert(addrs);
  1443. SMARTLIST_FOREACH_BEGIN(addrs, tor_addr_t *, addr) {
  1444. addr_policy_append_reject_addr(dest, addr);
  1445. } SMARTLIST_FOREACH_END(addr);
  1446. }
  1447. /** Add "reject addr:*" to <b>dest</b>, for each addr in addrs, creating the
  1448. * list as needed. Filter using */
  1449. static void
  1450. addr_policy_append_reject_addr_list_filter(smartlist_t **dest,
  1451. const smartlist_t *addrs,
  1452. int ipv4_rules,
  1453. int ipv6_rules)
  1454. {
  1455. tor_assert(dest);
  1456. tor_assert(addrs);
  1457. SMARTLIST_FOREACH_BEGIN(addrs, tor_addr_t *, addr) {
  1458. addr_policy_append_reject_addr_filter(dest, addr, ipv4_rules, ipv6_rules);
  1459. } SMARTLIST_FOREACH_END(addr);
  1460. }
  1461. /** Detect and excise "dead code" from the policy *<b>dest</b>. */
  1462. static void
  1463. exit_policy_remove_redundancies(smartlist_t *dest)
  1464. {
  1465. addr_policy_t *ap, *tmp;
  1466. int i, j;
  1467. /* Step one: kill every ipv4 thing after *4:*, every IPv6 thing after *6:*
  1468. */
  1469. {
  1470. int kill_v4=0, kill_v6=0;
  1471. for (i = 0; i < smartlist_len(dest); ++i) {
  1472. sa_family_t family;
  1473. ap = smartlist_get(dest, i);
  1474. family = tor_addr_family(&ap->addr);
  1475. if ((family == AF_INET && kill_v4) ||
  1476. (family == AF_INET6 && kill_v6)) {
  1477. smartlist_del_keeporder(dest, i--);
  1478. addr_policy_free(ap);
  1479. continue;
  1480. }
  1481. if (ap->maskbits == 0 && ap->prt_min <= 1 && ap->prt_max >= 65535) {
  1482. /* This is a catch-all line -- later lines are unreachable. */
  1483. if (family == AF_INET) {
  1484. kill_v4 = 1;
  1485. } else if (family == AF_INET6) {
  1486. kill_v6 = 1;
  1487. }
  1488. }
  1489. }
  1490. }
  1491. /* Step two: for every entry, see if there's a redundant entry
  1492. * later on, and remove it. */
  1493. for (i = 0; i < smartlist_len(dest)-1; ++i) {
  1494. ap = smartlist_get(dest, i);
  1495. for (j = i+1; j < smartlist_len(dest); ++j) {
  1496. tmp = smartlist_get(dest, j);
  1497. tor_assert(j > i);
  1498. if (addr_policy_covers(ap, tmp)) {
  1499. char p1[POLICY_BUF_LEN], p2[POLICY_BUF_LEN];
  1500. policy_write_item(p1, sizeof(p1), tmp, 0);
  1501. policy_write_item(p2, sizeof(p2), ap, 0);
  1502. log_debug(LD_CONFIG, "Removing exit policy %s (%d). It is made "
  1503. "redundant by %s (%d).", p1, j, p2, i);
  1504. smartlist_del_keeporder(dest, j--);
  1505. addr_policy_free(tmp);
  1506. }
  1507. }
  1508. }
  1509. /* Step three: for every entry A, see if there's an entry B making this one
  1510. * redundant later on. This is the case if A and B are of the same type
  1511. * (accept/reject), A is a subset of B, and there is no other entry of
  1512. * different type in between those two that intersects with A.
  1513. *
  1514. * Anybody want to double-check the logic here? XXX
  1515. */
  1516. for (i = 0; i < smartlist_len(dest)-1; ++i) {
  1517. ap = smartlist_get(dest, i);
  1518. for (j = i+1; j < smartlist_len(dest); ++j) {
  1519. // tor_assert(j > i); // j starts out at i+1; j only increases; i only
  1520. // // decreases.
  1521. tmp = smartlist_get(dest, j);
  1522. if (ap->policy_type != tmp->policy_type) {
  1523. if (addr_policy_intersects(ap, tmp))
  1524. break;
  1525. } else { /* policy_types are equal. */
  1526. if (addr_policy_covers(tmp, ap)) {
  1527. char p1[POLICY_BUF_LEN], p2[POLICY_BUF_LEN];
  1528. policy_write_item(p1, sizeof(p1), ap, 0);
  1529. policy_write_item(p2, sizeof(p2), tmp, 0);
  1530. log_debug(LD_CONFIG, "Removing exit policy %s. It is already "
  1531. "covered by %s.", p1, p2);
  1532. smartlist_del_keeporder(dest, i--);
  1533. addr_policy_free(ap);
  1534. break;
  1535. }
  1536. }
  1537. }
  1538. }
  1539. }
  1540. /** Reject private helper for policies_parse_exit_policy_internal: rejects
  1541. * publicly routable addresses on this exit relay.
  1542. *
  1543. * Add reject entries to the linked list *dest:
  1544. * - if configured_addresses is non-NULL, add entries that reject each
  1545. * tor_addr_t* in the list as a destination.
  1546. * - if reject_interface_addresses is true, add entries that reject each
  1547. * public IPv4 and IPv6 address of each interface on this machine.
  1548. * - if reject_configured_port_addresses is true, add entries that reject
  1549. * each IPv4 and IPv6 address configured for a port.
  1550. *
  1551. * IPv6 entries are only added if ipv6_exit is true. (All IPv6 addresses are
  1552. * already blocked by policies_parse_exit_policy_internal if ipv6_exit is
  1553. * false.)
  1554. *
  1555. * The list *dest is created as needed.
  1556. */
  1557. void
  1558. policies_parse_exit_policy_reject_private(
  1559. smartlist_t **dest,
  1560. int ipv6_exit,
  1561. const smartlist_t *configured_addresses,
  1562. int reject_interface_addresses,
  1563. int reject_configured_port_addresses)
  1564. {
  1565. tor_assert(dest);
  1566. /* Reject configured addresses, if they are from public netblocks. */
  1567. if (configured_addresses) {
  1568. addr_policy_append_reject_addr_list_filter(dest, configured_addresses,
  1569. 1, ipv6_exit);
  1570. }
  1571. /* Reject configured port addresses, if they are from public netblocks. */
  1572. if (reject_configured_port_addresses) {
  1573. const smartlist_t *port_addrs = get_configured_ports();
  1574. SMARTLIST_FOREACH_BEGIN(port_addrs, port_cfg_t *, port) {
  1575. /* Only reject port IP addresses, not port unix sockets */
  1576. if (!port->is_unix_addr) {
  1577. addr_policy_append_reject_addr_filter(dest, &port->addr, 1, ipv6_exit);
  1578. }
  1579. } SMARTLIST_FOREACH_END(port);
  1580. }
  1581. /* Reject local addresses from public netblocks on any interface. */
  1582. if (reject_interface_addresses) {
  1583. smartlist_t *public_addresses = NULL;
  1584. /* Reject public IPv4 addresses on any interface */
  1585. public_addresses = get_interface_address6_list(LOG_INFO, AF_INET, 0);
  1586. addr_policy_append_reject_addr_list_filter(dest, public_addresses, 1, 0);
  1587. free_interface_address6_list(public_addresses);
  1588. /* Don't look for IPv6 addresses if we're configured as IPv4-only */
  1589. if (ipv6_exit) {
  1590. /* Reject public IPv6 addresses on any interface */
  1591. public_addresses = get_interface_address6_list(LOG_INFO, AF_INET6, 0);
  1592. addr_policy_append_reject_addr_list_filter(dest, public_addresses, 0, 1);
  1593. free_interface_address6_list(public_addresses);
  1594. }
  1595. }
  1596. /* If addresses were added multiple times, remove all but one of them. */
  1597. if (*dest) {
  1598. exit_policy_remove_redundancies(*dest);
  1599. }
  1600. }
  1601. /**
  1602. * Iterate through <b>policy</b> looking for redundant entries. Log a
  1603. * warning message with the first redundant entry, if any is found.
  1604. */
  1605. static void
  1606. policies_log_first_redundant_entry(const smartlist_t *policy)
  1607. {
  1608. int found_final_effective_entry = 0;
  1609. int first_redundant_entry = 0;
  1610. tor_assert(policy);
  1611. SMARTLIST_FOREACH_BEGIN(policy, const addr_policy_t *, p) {
  1612. sa_family_t family;
  1613. int found_ipv4_wildcard = 0, found_ipv6_wildcard = 0;
  1614. const int i = p_sl_idx;
  1615. /* Look for accept/reject *[4|6|]:* entires */
  1616. if (p->prt_min <= 1 && p->prt_max == 65535 && p->maskbits == 0) {
  1617. family = tor_addr_family(&p->addr);
  1618. /* accept/reject *:* may have already been expanded into
  1619. * accept/reject *4:*,accept/reject *6:*
  1620. * But handle both forms.
  1621. */
  1622. if (family == AF_INET || family == AF_UNSPEC) {
  1623. found_ipv4_wildcard = 1;
  1624. }
  1625. if (family == AF_INET6 || family == AF_UNSPEC) {
  1626. found_ipv6_wildcard = 1;
  1627. }
  1628. }
  1629. /* We also find accept *4:*,reject *6:* ; and
  1630. * accept *4:*,<other policies>,accept *6:* ; and similar.
  1631. * That's ok, because they make any subsequent entries redundant. */
  1632. if (found_ipv4_wildcard && found_ipv6_wildcard) {
  1633. found_final_effective_entry = 1;
  1634. /* if we're not on the final entry in the list */
  1635. if (i < smartlist_len(policy) - 1) {
  1636. first_redundant_entry = i + 1;
  1637. }
  1638. break;
  1639. }
  1640. } SMARTLIST_FOREACH_END(p);
  1641. /* Work out if there are redundant trailing entries in the policy list */
  1642. if (found_final_effective_entry && first_redundant_entry > 0) {
  1643. const addr_policy_t *p;
  1644. /* Longest possible policy is
  1645. * "accept6 ffff:ffff:..255/128:10000-65535",
  1646. * which contains a max-length IPv6 address, plus 24 characters. */
  1647. char line[TOR_ADDR_BUF_LEN + 32];
  1648. tor_assert(first_redundant_entry < smartlist_len(policy));
  1649. p = smartlist_get(policy, first_redundant_entry);
  1650. /* since we've already parsed the policy into an addr_policy_t struct,
  1651. * we might not log exactly what the user typed in */
  1652. policy_write_item(line, TOR_ADDR_BUF_LEN + 32, p, 0);
  1653. log_warn(LD_DIR, "Exit policy '%s' and all following policies are "
  1654. "redundant, as it follows accept/reject *:* rules for both "
  1655. "IPv4 and IPv6. They will be removed from the exit policy. (Use "
  1656. "accept/reject *:* as the last entry in any exit policy.)",
  1657. line);
  1658. }
  1659. }
  1660. #define DEFAULT_EXIT_POLICY \
  1661. "reject *:25,reject *:119,reject *:135-139,reject *:445," \
  1662. "reject *:563,reject *:1214,reject *:4661-4666," \
  1663. "reject *:6346-6429,reject *:6699,reject *:6881-6999,accept *:*"
  1664. /** Parse the exit policy <b>cfg</b> into the linked list *<b>dest</b>.
  1665. *
  1666. * If <b>ipv6_exit</b> is false, prepend "reject *6:*" to the policy.
  1667. *
  1668. * If <b>rejectprivate</b> is true:
  1669. * - prepend "reject private:*" to the policy.
  1670. * - prepend entries that reject publicly routable addresses on this exit
  1671. * relay by calling policies_parse_exit_policy_reject_private
  1672. *
  1673. * If cfg doesn't end in an absolute accept or reject and if
  1674. * <b>add_default_policy</b> is true, add the default exit
  1675. * policy afterwards.
  1676. *
  1677. * Return -1 if we can't parse cfg, else return 0.
  1678. *
  1679. * This function is used to parse the exit policy from our torrc. For
  1680. * the functions used to parse the exit policy from a router descriptor,
  1681. * see router_add_exit_policy.
  1682. */
  1683. static int
  1684. policies_parse_exit_policy_internal(config_line_t *cfg,
  1685. smartlist_t **dest,
  1686. int ipv6_exit,
  1687. int rejectprivate,
  1688. const smartlist_t *configured_addresses,
  1689. int reject_interface_addresses,
  1690. int reject_configured_port_addresses,
  1691. int add_default_policy)
  1692. {
  1693. if (!ipv6_exit) {
  1694. append_exit_policy_string(dest, "reject *6:*");
  1695. }
  1696. if (rejectprivate) {
  1697. /* Reject IPv4 and IPv6 reserved private netblocks */
  1698. append_exit_policy_string(dest, "reject private:*");
  1699. /* Reject IPv4 and IPv6 publicly routable addresses on this exit relay */
  1700. policies_parse_exit_policy_reject_private(
  1701. dest, ipv6_exit,
  1702. configured_addresses,
  1703. reject_interface_addresses,
  1704. reject_configured_port_addresses);
  1705. }
  1706. if (parse_addr_policy(cfg, dest, -1))
  1707. return -1;
  1708. /* Before we add the default policy and final rejects, check to see if
  1709. * there are any lines after accept *:* or reject *:*. These lines have no
  1710. * effect, and are most likely an error. */
  1711. policies_log_first_redundant_entry(*dest);
  1712. if (add_default_policy) {
  1713. append_exit_policy_string(dest, DEFAULT_EXIT_POLICY);
  1714. } else {
  1715. append_exit_policy_string(dest, "reject *4:*");
  1716. append_exit_policy_string(dest, "reject *6:*");
  1717. }
  1718. exit_policy_remove_redundancies(*dest);
  1719. return 0;
  1720. }
  1721. /** Parse exit policy in <b>cfg</b> into <b>dest</b> smartlist.
  1722. *
  1723. * Prepend an entry that rejects all IPv6 destinations unless
  1724. * <b>EXIT_POLICY_IPV6_ENABLED</b> bit is set in <b>options</b> bitmask.
  1725. *
  1726. * If <b>EXIT_POLICY_REJECT_PRIVATE</b> bit is set in <b>options</b>:
  1727. * - prepend an entry that rejects all destinations in all netblocks
  1728. * reserved for private use.
  1729. * - prepend entries that reject publicly routable addresses on this exit
  1730. * relay by calling policies_parse_exit_policy_internal
  1731. *
  1732. * If <b>EXIT_POLICY_ADD_DEFAULT</b> bit is set in <b>options</b>, append
  1733. * default exit policy entries to <b>result</b> smartlist.
  1734. */
  1735. int
  1736. policies_parse_exit_policy(config_line_t *cfg, smartlist_t **dest,
  1737. exit_policy_parser_cfg_t options,
  1738. const smartlist_t *configured_addresses)
  1739. {
  1740. int ipv6_enabled = (options & EXIT_POLICY_IPV6_ENABLED) ? 1 : 0;
  1741. int reject_private = (options & EXIT_POLICY_REJECT_PRIVATE) ? 1 : 0;
  1742. int add_default = (options & EXIT_POLICY_ADD_DEFAULT) ? 1 : 0;
  1743. return policies_parse_exit_policy_internal(cfg,dest,ipv6_enabled,
  1744. reject_private,
  1745. configured_addresses,
  1746. reject_private,
  1747. reject_private,
  1748. add_default);
  1749. }
  1750. /** Helper function that adds a copy of addr to a smartlist as long as it is
  1751. * non-NULL and not tor_addr_is_null().
  1752. *
  1753. * The caller is responsible for freeing all the tor_addr_t* in the smartlist.
  1754. */
  1755. static void
  1756. policies_copy_addr_to_smartlist(smartlist_t *addr_list, const tor_addr_t *addr)
  1757. {
  1758. if (addr && !tor_addr_is_null(addr)) {
  1759. tor_addr_t *addr_copy = tor_malloc(sizeof(tor_addr_t));
  1760. tor_addr_copy(addr_copy, addr);
  1761. smartlist_add(addr_list, addr_copy);
  1762. }
  1763. }
  1764. /** Helper function that adds ipv4h_addr to a smartlist as a tor_addr_t *,
  1765. * as long as it is not tor_addr_is_null(), by converting it to a tor_addr_t
  1766. * and passing it to policies_add_addr_to_smartlist.
  1767. *
  1768. * The caller is responsible for freeing all the tor_addr_t* in the smartlist.
  1769. */
  1770. static void
  1771. policies_copy_ipv4h_to_smartlist(smartlist_t *addr_list, uint32_t ipv4h_addr)
  1772. {
  1773. if (ipv4h_addr) {
  1774. tor_addr_t ipv4_tor_addr;
  1775. tor_addr_from_ipv4h(&ipv4_tor_addr, ipv4h_addr);
  1776. policies_copy_addr_to_smartlist(addr_list, &ipv4_tor_addr);
  1777. }
  1778. }
  1779. /** Helper function that adds copies of
  1780. * or_options->OutboundBindAddressIPv[4|6]_ to a smartlist as tor_addr_t *, as
  1781. * long as or_options is non-NULL, and the addresses are not
  1782. * tor_addr_is_null(), by passing them to policies_add_addr_to_smartlist.
  1783. *
  1784. * The caller is responsible for freeing all the tor_addr_t* in the smartlist.
  1785. */
  1786. static void
  1787. policies_copy_outbound_addresses_to_smartlist(smartlist_t *addr_list,
  1788. const or_options_t *or_options)
  1789. {
  1790. if (or_options) {
  1791. policies_copy_addr_to_smartlist(addr_list,
  1792. &or_options->OutboundBindAddressIPv4_);
  1793. policies_copy_addr_to_smartlist(addr_list,
  1794. &or_options->OutboundBindAddressIPv6_);
  1795. }
  1796. }
  1797. /** Parse <b>ExitPolicy</b> member of <b>or_options</b> into <b>result</b>
  1798. * smartlist.
  1799. * If <b>or_options->IPv6Exit</b> is false, prepend an entry that
  1800. * rejects all IPv6 destinations.
  1801. *
  1802. * If <b>or_options->ExitPolicyRejectPrivate</b> is true:
  1803. * - prepend an entry that rejects all destinations in all netblocks reserved
  1804. * for private use.
  1805. * - if local_address is non-zero, treat it as a host-order IPv4 address, and
  1806. * add it to the list of configured addresses.
  1807. * - if ipv6_local_address is non-NULL, and not the null tor_addr_t, add it
  1808. * to the list of configured addresses.
  1809. * - if or_options->OutboundBindAddressIPv4_ is not the null tor_addr_t, add
  1810. * it to the list of configured addresses.
  1811. * - if or_options->OutboundBindAddressIPv6_ is not the null tor_addr_t, add
  1812. * it to the list of configured addresses.
  1813. *
  1814. * If <b>or_options->BridgeRelay</b> is false, append entries of default
  1815. * Tor exit policy into <b>result</b> smartlist.
  1816. *
  1817. * If or_options->ExitRelay is false, then make our exit policy into
  1818. * "reject *:*" regardless.
  1819. */
  1820. int
  1821. policies_parse_exit_policy_from_options(const or_options_t *or_options,
  1822. uint32_t local_address,
  1823. const tor_addr_t *ipv6_local_address,
  1824. smartlist_t **result)
  1825. {
  1826. exit_policy_parser_cfg_t parser_cfg = 0;
  1827. smartlist_t *configured_addresses = NULL;
  1828. int rv = 0;
  1829. /* Short-circuit for non-exit relays */
  1830. if (or_options->ExitRelay == 0) {
  1831. append_exit_policy_string(result, "reject *4:*");
  1832. append_exit_policy_string(result, "reject *6:*");
  1833. return 0;
  1834. }
  1835. configured_addresses = smartlist_new();
  1836. /* Configure the parser */
  1837. if (or_options->IPv6Exit) {
  1838. parser_cfg |= EXIT_POLICY_IPV6_ENABLED;
  1839. }
  1840. if (or_options->ExitPolicyRejectPrivate) {
  1841. parser_cfg |= EXIT_POLICY_REJECT_PRIVATE;
  1842. }
  1843. if (!or_options->BridgeRelay) {
  1844. parser_cfg |= EXIT_POLICY_ADD_DEFAULT;
  1845. }
  1846. /* Copy the configured addresses into the tor_addr_t* list */
  1847. policies_copy_ipv4h_to_smartlist(configured_addresses, local_address);
  1848. policies_copy_addr_to_smartlist(configured_addresses, ipv6_local_address);
  1849. policies_copy_outbound_addresses_to_smartlist(configured_addresses,
  1850. or_options);
  1851. rv = policies_parse_exit_policy(or_options->ExitPolicy, result, parser_cfg,
  1852. configured_addresses);
  1853. SMARTLIST_FOREACH(configured_addresses, tor_addr_t *, a, tor_free(a));
  1854. smartlist_free(configured_addresses);
  1855. return rv;
  1856. }
  1857. /** Add "reject *:*" to the end of the policy in *<b>dest</b>, allocating
  1858. * *<b>dest</b> as needed. */
  1859. void
  1860. policies_exit_policy_append_reject_star(smartlist_t **dest)
  1861. {
  1862. append_exit_policy_string(dest, "reject *4:*");
  1863. append_exit_policy_string(dest, "reject *6:*");
  1864. }
  1865. /** Replace the exit policy of <b>node</b> with reject *:* */
  1866. void
  1867. policies_set_node_exitpolicy_to_reject_all(node_t *node)
  1868. {
  1869. node->rejects_all = 1;
  1870. }
  1871. /** Return 1 if there is at least one /8 subnet in <b>policy</b> that
  1872. * allows exiting to <b>port</b>. Otherwise, return 0. */
  1873. static int
  1874. exit_policy_is_general_exit_helper(smartlist_t *policy, int port)
  1875. {
  1876. uint32_t mask, ip, i;
  1877. /* Is this /8 rejected (1), or undecided (0)? */
  1878. char subnet_status[256];
  1879. memset(subnet_status, 0, sizeof(subnet_status));
  1880. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, p) {
  1881. if (tor_addr_family(&p->addr) != AF_INET)
  1882. continue; /* IPv4 only for now */
  1883. if (p->prt_min > port || p->prt_max < port)
  1884. continue; /* Doesn't cover our port. */
  1885. mask = 0;
  1886. tor_assert(p->maskbits <= 32);
  1887. if (p->maskbits)
  1888. mask = UINT32_MAX<<(32-p->maskbits);
  1889. ip = tor_addr_to_ipv4h(&p->addr);
  1890. /* Calculate the first and last subnet that this exit policy touches
  1891. * and set it as loop boundaries. */
  1892. for (i = ((mask & ip)>>24); i <= (~((mask & ip) ^ mask)>>24); ++i) {
  1893. tor_addr_t addr;
  1894. if (subnet_status[i] != 0)
  1895. continue; /* We already reject some part of this /8 */
  1896. tor_addr_from_ipv4h(&addr, i<<24);
  1897. if (tor_addr_is_internal(&addr, 0))
  1898. continue; /* Local or non-routable addresses */
  1899. if (p->policy_type == ADDR_POLICY_ACCEPT) {
  1900. if (p->maskbits > 8)
  1901. continue; /* Narrower than a /8. */
  1902. /* We found an allowed subnet of at least size /8. Done
  1903. * for this port! */
  1904. return 1;
  1905. } else if (p->policy_type == ADDR_POLICY_REJECT) {
  1906. subnet_status[i] = 1;
  1907. }
  1908. }
  1909. } SMARTLIST_FOREACH_END(p);
  1910. return 0;
  1911. }
  1912. /** Return true iff <b>ri</b> is "useful as an exit node", meaning
  1913. * it allows exit to at least one /8 address space for at least
  1914. * two of ports 80, 443, and 6667. */
  1915. int
  1916. exit_policy_is_general_exit(smartlist_t *policy)
  1917. {
  1918. static const int ports[] = { 80, 443, 6667 };
  1919. int n_allowed = 0;
  1920. int i;
  1921. if (!policy) /*XXXX disallow NULL policies? */
  1922. return 0;
  1923. for (i = 0; i < 3; ++i) {
  1924. n_allowed += exit_policy_is_general_exit_helper(policy, ports[i]);
  1925. }
  1926. return n_allowed >= 2;
  1927. }
  1928. /** Return false if <b>policy</b> might permit access to some addr:port;
  1929. * otherwise if we are certain it rejects everything, return true. */
  1930. int
  1931. policy_is_reject_star(const smartlist_t *policy, sa_family_t family)
  1932. {
  1933. if (!policy) /*XXXX disallow NULL policies? */
  1934. return 1;
  1935. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, p) {
  1936. if (p->policy_type == ADDR_POLICY_ACCEPT &&
  1937. (tor_addr_family(&p->addr) == family ||
  1938. tor_addr_family(&p->addr) == AF_UNSPEC)) {
  1939. return 0;
  1940. } else if (p->policy_type == ADDR_POLICY_REJECT &&
  1941. p->prt_min <= 1 && p->prt_max == 65535 &&
  1942. p->maskbits == 0 &&
  1943. (tor_addr_family(&p->addr) == family ||
  1944. tor_addr_family(&p->addr) == AF_UNSPEC)) {
  1945. return 1;
  1946. }
  1947. } SMARTLIST_FOREACH_END(p);
  1948. return 1;
  1949. }
  1950. /** Write a single address policy to the buf_len byte buffer at buf. Return
  1951. * the number of characters written, or -1 on failure. */
  1952. int
  1953. policy_write_item(char *buf, size_t buflen, const addr_policy_t *policy,
  1954. int format_for_desc)
  1955. {
  1956. size_t written = 0;
  1957. char addrbuf[TOR_ADDR_BUF_LEN];
  1958. const char *addrpart;
  1959. int result;
  1960. const int is_accept = policy->policy_type == ADDR_POLICY_ACCEPT;
  1961. const sa_family_t family = tor_addr_family(&policy->addr);
  1962. const int is_ip6 = (family == AF_INET6);
  1963. tor_addr_to_str(addrbuf, &policy->addr, sizeof(addrbuf), 1);
  1964. /* write accept/reject 1.2.3.4 */
  1965. if (policy->is_private) {
  1966. addrpart = "private";
  1967. } else if (policy->maskbits == 0) {
  1968. if (format_for_desc)
  1969. addrpart = "*";
  1970. else if (family == AF_INET6)
  1971. addrpart = "*6";
  1972. else if (family == AF_INET)
  1973. addrpart = "*4";
  1974. else
  1975. addrpart = "*";
  1976. } else {
  1977. addrpart = addrbuf;
  1978. }
  1979. result = tor_snprintf(buf, buflen, "%s%s %s",
  1980. is_accept ? "accept" : "reject",
  1981. (is_ip6&&format_for_desc)?"6":"",
  1982. addrpart);
  1983. if (result < 0)
  1984. return -1;
  1985. written += strlen(buf);
  1986. /* If the maskbits is 32 (IPv4) or 128 (IPv6) we don't need to give it. If
  1987. the mask is 0, we already wrote "*". */
  1988. if (policy->maskbits < (is_ip6?128:32) && policy->maskbits > 0) {
  1989. if (tor_snprintf(buf+written, buflen-written, "/%d", policy->maskbits)<0)
  1990. return -1;
  1991. written += strlen(buf+written);
  1992. }
  1993. if (policy->prt_min <= 1 && policy->prt_max == 65535) {
  1994. /* There is no port set; write ":*" */
  1995. if (written+4 > buflen)
  1996. return -1;
  1997. strlcat(buf+written, ":*", buflen-written);
  1998. written += 2;
  1999. } else if (policy->prt_min == policy->prt_max) {
  2000. /* There is only one port; write ":80". */
  2001. result = tor_snprintf(buf+written, buflen-written, ":%d", policy->prt_min);
  2002. if (result<0)
  2003. return -1;
  2004. written += result;
  2005. } else {
  2006. /* There is a range of ports; write ":79-80". */
  2007. result = tor_snprintf(buf+written, buflen-written, ":%d-%d",
  2008. policy->prt_min, policy->prt_max);
  2009. if (result<0)
  2010. return -1;
  2011. written += result;
  2012. }
  2013. if (written < buflen)
  2014. buf[written] = '\0';
  2015. else
  2016. return -1;
  2017. return (int)written;
  2018. }
  2019. /** Create a new exit policy summary, initially only with a single
  2020. * port 1-64k item */
  2021. /* XXXX This entire thing will do most stuff in O(N^2), or worse. Use an
  2022. * RB-tree if that turns out to matter. */
  2023. static smartlist_t *
  2024. policy_summary_create(void)
  2025. {
  2026. smartlist_t *summary;
  2027. policy_summary_item_t* item;
  2028. item = tor_malloc_zero(sizeof(policy_summary_item_t));
  2029. item->prt_min = 1;
  2030. item->prt_max = 65535;
  2031. item->reject_count = 0;
  2032. item->accepted = 0;
  2033. summary = smartlist_new();
  2034. smartlist_add(summary, item);
  2035. return summary;
  2036. }
  2037. /** Split the summary item in <b>item</b> at the port <b>new_starts</b>.
  2038. * The current item is changed to end at new-starts - 1, the new item
  2039. * copies reject_count and accepted from the old item,
  2040. * starts at new_starts and ends at the port where the original item
  2041. * previously ended.
  2042. */
  2043. static policy_summary_item_t*
  2044. policy_summary_item_split(policy_summary_item_t* old, uint16_t new_starts)
  2045. {
  2046. policy_summary_item_t* new;
  2047. new = tor_malloc_zero(sizeof(policy_summary_item_t));
  2048. new->prt_min = new_starts;
  2049. new->prt_max = old->prt_max;
  2050. new->reject_count = old->reject_count;
  2051. new->accepted = old->accepted;
  2052. old->prt_max = new_starts-1;
  2053. tor_assert(old->prt_min <= old->prt_max);
  2054. tor_assert(new->prt_min <= new->prt_max);
  2055. return new;
  2056. }
  2057. /* XXXX Nick says I'm going to hell for this. If he feels charitably towards
  2058. * my immortal soul, he can clean it up himself. */
  2059. #define AT(x) ((policy_summary_item_t*)smartlist_get(summary, x))
  2060. #define REJECT_CUTOFF_COUNT (1<<25)
  2061. /** Split an exit policy summary so that prt_min and prt_max
  2062. * fall at exactly the start and end of an item respectively.
  2063. */
  2064. static int
  2065. policy_summary_split(smartlist_t *summary,
  2066. uint16_t prt_min, uint16_t prt_max)
  2067. {
  2068. int start_at_index;
  2069. int i = 0;
  2070. while (AT(i)->prt_max < prt_min)
  2071. i++;
  2072. if (AT(i)->prt_min != prt_min) {
  2073. policy_summary_item_t* new_item;
  2074. new_item = policy_summary_item_split(AT(i), prt_min);
  2075. smartlist_insert(summary, i+1, new_item);
  2076. i++;
  2077. }
  2078. start_at_index = i;
  2079. while (AT(i)->prt_max < prt_max)
  2080. i++;
  2081. if (AT(i)->prt_max != prt_max) {
  2082. policy_summary_item_t* new_item;
  2083. new_item = policy_summary_item_split(AT(i), prt_max+1);
  2084. smartlist_insert(summary, i+1, new_item);
  2085. }
  2086. return start_at_index;
  2087. }
  2088. /** Mark port ranges as accepted if they are below the reject_count */
  2089. static void
  2090. policy_summary_accept(smartlist_t *summary,
  2091. uint16_t prt_min, uint16_t prt_max)
  2092. {
  2093. int i = policy_summary_split(summary, prt_min, prt_max);
  2094. while (i < smartlist_len(summary) &&
  2095. AT(i)->prt_max <= prt_max) {
  2096. if (!AT(i)->accepted &&
  2097. AT(i)->reject_count <= REJECT_CUTOFF_COUNT)
  2098. AT(i)->accepted = 1;
  2099. i++;
  2100. }
  2101. tor_assert(i < smartlist_len(summary) || prt_max==65535);
  2102. }
  2103. /** Count the number of addresses in a network with prefixlen maskbits
  2104. * against the given portrange. */
  2105. static void
  2106. policy_summary_reject(smartlist_t *summary,
  2107. maskbits_t maskbits,
  2108. uint16_t prt_min, uint16_t prt_max)
  2109. {
  2110. int i = policy_summary_split(summary, prt_min, prt_max);
  2111. /* XXX: ipv4 specific */
  2112. uint64_t count = (U64_LITERAL(1) << (32-maskbits));
  2113. while (i < smartlist_len(summary) &&
  2114. AT(i)->prt_max <= prt_max) {
  2115. AT(i)->reject_count += count;
  2116. i++;
  2117. }
  2118. tor_assert(i < smartlist_len(summary) || prt_max==65535);
  2119. }
  2120. /** Add a single exit policy item to our summary:
  2121. * If it is an accept ignore it unless it is for all IP addresses
  2122. * ("*"), i.e. it's prefixlen/maskbits is 0, else call
  2123. * policy_summary_accept().
  2124. * If it's a reject ignore it if it is about one of the private
  2125. * networks, else call policy_summary_reject().
  2126. */
  2127. static void
  2128. policy_summary_add_item(smartlist_t *summary, addr_policy_t *p)
  2129. {
  2130. if (p->policy_type == ADDR_POLICY_ACCEPT) {
  2131. if (p->maskbits == 0) {
  2132. policy_summary_accept(summary, p->prt_min, p->prt_max);
  2133. }
  2134. } else if (p->policy_type == ADDR_POLICY_REJECT) {
  2135. int is_private = 0;
  2136. int i;
  2137. for (i = 0; private_nets[i]; ++i) {
  2138. tor_addr_t addr;
  2139. maskbits_t maskbits;
  2140. if (tor_addr_parse_mask_ports(private_nets[i], 0, &addr,
  2141. &maskbits, NULL, NULL)<0) {
  2142. tor_assert(0);
  2143. }
  2144. if (tor_addr_compare(&p->addr, &addr, CMP_EXACT) == 0 &&
  2145. p->maskbits == maskbits) {
  2146. is_private = 1;
  2147. break;
  2148. }
  2149. }
  2150. if (!is_private) {
  2151. policy_summary_reject(summary, p->maskbits, p->prt_min, p->prt_max);
  2152. }
  2153. } else
  2154. tor_assert(0);
  2155. }
  2156. /** Create a string representing a summary for an exit policy.
  2157. * The summary will either be an "accept" plus a comma-separated list of port
  2158. * ranges or a "reject" plus port-ranges, depending on which is shorter.
  2159. *
  2160. * If no exits are allowed at all then "reject 1-65535" is returned. If no
  2161. * ports are blocked instead of "reject " we return "accept 1-65535". (These
  2162. * are an exception to the shorter-representation-wins rule).
  2163. */
  2164. char *
  2165. policy_summarize(smartlist_t *policy, sa_family_t family)
  2166. {
  2167. smartlist_t *summary = policy_summary_create();
  2168. smartlist_t *accepts, *rejects;
  2169. int i, last, start_prt;
  2170. size_t accepts_len, rejects_len;
  2171. char *accepts_str = NULL, *rejects_str = NULL, *shorter_str, *result;
  2172. const char *prefix;
  2173. tor_assert(policy);
  2174. /* Create the summary list */
  2175. SMARTLIST_FOREACH_BEGIN(policy, addr_policy_t *, p) {
  2176. sa_family_t f = tor_addr_family(&p->addr);
  2177. if (f != AF_INET && f != AF_INET6) {
  2178. log_warn(LD_BUG, "Weird family when summarizing address policy");
  2179. }
  2180. if (f != family)
  2181. continue;
  2182. /* XXXX-ipv6 More family work is needed */
  2183. policy_summary_add_item(summary, p);
  2184. } SMARTLIST_FOREACH_END(p);
  2185. /* Now create two lists of strings, one for accepted and one
  2186. * for rejected ports. We take care to merge ranges so that
  2187. * we avoid getting stuff like "1-4,5-9,10", instead we want
  2188. * "1-10"
  2189. */
  2190. i = 0;
  2191. start_prt = 1;
  2192. accepts = smartlist_new();
  2193. rejects = smartlist_new();
  2194. while (1) {
  2195. last = i == smartlist_len(summary)-1;
  2196. if (last ||
  2197. AT(i)->accepted != AT(i+1)->accepted) {
  2198. char buf[POLICY_BUF_LEN];
  2199. if (start_prt == AT(i)->prt_max)
  2200. tor_snprintf(buf, sizeof(buf), "%d", start_prt);
  2201. else
  2202. tor_snprintf(buf, sizeof(buf), "%d-%d", start_prt, AT(i)->prt_max);
  2203. if (AT(i)->accepted)
  2204. smartlist_add(accepts, tor_strdup(buf));
  2205. else
  2206. smartlist_add(rejects, tor_strdup(buf));
  2207. if (last)
  2208. break;
  2209. start_prt = AT(i+1)->prt_min;
  2210. };
  2211. i++;
  2212. };
  2213. /* Figure out which of the two stringlists will be shorter and use
  2214. * that to build the result
  2215. */
  2216. if (smartlist_len(accepts) == 0) { /* no exits at all */
  2217. result = tor_strdup("reject 1-65535");
  2218. goto cleanup;
  2219. }
  2220. if (smartlist_len(rejects) == 0) { /* no rejects at all */
  2221. result = tor_strdup("accept 1-65535");
  2222. goto cleanup;
  2223. }
  2224. accepts_str = smartlist_join_strings(accepts, ",", 0, &accepts_len);
  2225. rejects_str = smartlist_join_strings(rejects, ",", 0, &rejects_len);
  2226. if (rejects_len > MAX_EXITPOLICY_SUMMARY_LEN-strlen("reject")-1 &&
  2227. accepts_len > MAX_EXITPOLICY_SUMMARY_LEN-strlen("accept")-1) {
  2228. char *c;
  2229. shorter_str = accepts_str;
  2230. prefix = "accept";
  2231. c = shorter_str + (MAX_EXITPOLICY_SUMMARY_LEN-strlen(prefix)-1);
  2232. while (*c != ',' && c >= shorter_str)
  2233. c--;
  2234. tor_assert(c >= shorter_str);
  2235. tor_assert(*c == ',');
  2236. *c = '\0';
  2237. } else if (rejects_len < accepts_len) {
  2238. shorter_str = rejects_str;
  2239. prefix = "reject";
  2240. } else {
  2241. shorter_str = accepts_str;
  2242. prefix = "accept";
  2243. }
  2244. tor_asprintf(&result, "%s %s", prefix, shorter_str);
  2245. cleanup:
  2246. /* cleanup */
  2247. SMARTLIST_FOREACH(summary, policy_summary_item_t *, s, tor_free(s));
  2248. smartlist_free(summary);
  2249. tor_free(accepts_str);
  2250. SMARTLIST_FOREACH(accepts, char *, s, tor_free(s));
  2251. smartlist_free(accepts);
  2252. tor_free(rejects_str);
  2253. SMARTLIST_FOREACH(rejects, char *, s, tor_free(s));
  2254. smartlist_free(rejects);
  2255. return result;
  2256. }
  2257. /** Convert a summarized policy string into a short_policy_t. Return NULL
  2258. * if the string is not well-formed. */
  2259. short_policy_t *
  2260. parse_short_policy(const char *summary)
  2261. {
  2262. const char *orig_summary = summary;
  2263. short_policy_t *result;
  2264. int is_accept;
  2265. int n_entries;
  2266. short_policy_entry_t entries[MAX_EXITPOLICY_SUMMARY_LEN]; /* overkill */
  2267. const char *next;
  2268. if (!strcmpstart(summary, "accept ")) {
  2269. is_accept = 1;
  2270. summary += strlen("accept ");
  2271. } else if (!strcmpstart(summary, "reject ")) {
  2272. is_accept = 0;
  2273. summary += strlen("reject ");
  2274. } else {
  2275. log_fn(LOG_PROTOCOL_WARN, LD_DIR, "Unrecognized policy summary keyword");
  2276. return NULL;
  2277. }
  2278. n_entries = 0;
  2279. for ( ; *summary; summary = next) {
  2280. const char *comma = strchr(summary, ',');
  2281. unsigned low, high;
  2282. char dummy;
  2283. char ent_buf[32];
  2284. size_t len;
  2285. next = comma ? comma+1 : strchr(summary, '\0');
  2286. len = comma ? (size_t)(comma - summary) : strlen(summary);
  2287. if (n_entries == MAX_EXITPOLICY_SUMMARY_LEN) {
  2288. log_fn(LOG_PROTOCOL_WARN, LD_DIR, "Impossibly long policy summary %s",
  2289. escaped(orig_summary));
  2290. return NULL;
  2291. }
  2292. if (! TOR_ISDIGIT(*summary) || len > (sizeof(ent_buf)-1)) {
  2293. /* unrecognized entry format. skip it. */
  2294. continue;
  2295. }
  2296. if (len < 1) {
  2297. /* empty; skip it. */
  2298. /* XXX This happens to be unreachable, since if len==0, then *summary is
  2299. * ',' or '\0', and the TOR_ISDIGIT test above would have failed. */
  2300. continue;
  2301. }
  2302. memcpy(ent_buf, summary, len);
  2303. ent_buf[len] = '\0';
  2304. if (tor_sscanf(ent_buf, "%u-%u%c", &low, &high, &dummy) == 2) {
  2305. if (low<1 || low>65535 || high<1 || high>65535 || low>high) {
  2306. log_fn(LOG_PROTOCOL_WARN, LD_DIR,
  2307. "Found bad entry in policy summary %s", escaped(orig_summary));
  2308. return NULL;
  2309. }
  2310. } else if (tor_sscanf(ent_buf, "%u%c", &low, &dummy) == 1) {
  2311. if (low<1 || low>65535) {
  2312. log_fn(LOG_PROTOCOL_WARN, LD_DIR,
  2313. "Found bad entry in policy summary %s", escaped(orig_summary));
  2314. return NULL;
  2315. }
  2316. high = low;
  2317. } else {
  2318. log_fn(LOG_PROTOCOL_WARN, LD_DIR,"Found bad entry in policy summary %s",
  2319. escaped(orig_summary));
  2320. return NULL;
  2321. }
  2322. entries[n_entries].min_port = low;
  2323. entries[n_entries].max_port = high;
  2324. n_entries++;
  2325. }
  2326. if (n_entries == 0) {
  2327. log_fn(LOG_PROTOCOL_WARN, LD_DIR,
  2328. "Found no port-range entries in summary %s", escaped(orig_summary));
  2329. return NULL;
  2330. }
  2331. {
  2332. size_t size = STRUCT_OFFSET(short_policy_t, entries) +
  2333. sizeof(short_policy_entry_t)*(n_entries);
  2334. result = tor_malloc_zero(size);
  2335. tor_assert( (char*)&result->entries[n_entries-1] < ((char*)result)+size);
  2336. }
  2337. result->is_accept = is_accept;
  2338. result->n_entries = n_entries;
  2339. memcpy(result->entries, entries, sizeof(short_policy_entry_t)*n_entries);
  2340. return result;
  2341. }
  2342. /** Write <b>policy</b> back out into a string. Used only for unit tests
  2343. * currently. */
  2344. char *
  2345. write_short_policy(const short_policy_t *policy)
  2346. {
  2347. int i;
  2348. char *answer;
  2349. smartlist_t *sl = smartlist_new();
  2350. smartlist_add_asprintf(sl, "%s", policy->is_accept ? "accept " : "reject ");
  2351. for (i=0; i < policy->n_entries; i++) {
  2352. const short_policy_entry_t *e = &policy->entries[i];
  2353. if (e->min_port == e->max_port) {
  2354. smartlist_add_asprintf(sl, "%d", e->min_port);
  2355. } else {
  2356. smartlist_add_asprintf(sl, "%d-%d", e->min_port, e->max_port);
  2357. }
  2358. if (i < policy->n_entries-1)
  2359. smartlist_add(sl, tor_strdup(","));
  2360. }
  2361. answer = smartlist_join_strings(sl, "", 0, NULL);
  2362. SMARTLIST_FOREACH(sl, char *, a, tor_free(a));
  2363. smartlist_free(sl);
  2364. return answer;
  2365. }
  2366. /** Release all storage held in <b>policy</b>. */
  2367. void
  2368. short_policy_free(short_policy_t *policy)
  2369. {
  2370. tor_free(policy);
  2371. }
  2372. /** See whether the <b>addr</b>:<b>port</b> address is likely to be accepted
  2373. * or rejected by the summarized policy <b>policy</b>. Return values are as
  2374. * for compare_tor_addr_to_addr_policy. Unlike the regular addr_policy
  2375. * functions, requires the <b>port</b> be specified. */
  2376. addr_policy_result_t
  2377. compare_tor_addr_to_short_policy(const tor_addr_t *addr, uint16_t port,
  2378. const short_policy_t *policy)
  2379. {
  2380. int i;
  2381. int found_match = 0;
  2382. int accept;
  2383. tor_assert(port != 0);
  2384. if (addr && tor_addr_is_null(addr))
  2385. addr = NULL; /* Unspec means 'no address at all,' in this context. */
  2386. if (addr && get_options()->ClientRejectInternalAddresses &&
  2387. (tor_addr_is_internal(addr, 0) || tor_addr_is_loopback(addr)))
  2388. return ADDR_POLICY_REJECTED;
  2389. for (i=0; i < policy->n_entries; ++i) {
  2390. const short_policy_entry_t *e = &policy->entries[i];
  2391. if (e->min_port <= port && port <= e->max_port) {
  2392. found_match = 1;
  2393. break;
  2394. }
  2395. }
  2396. if (found_match)
  2397. accept = policy->is_accept;
  2398. else
  2399. accept = ! policy->is_accept;
  2400. /* ???? are these right? -NM */
  2401. /* We should be sure not to return ADDR_POLICY_ACCEPTED in the accept
  2402. * case here, because it would cause clients to believe that the node
  2403. * allows exit enclaving. Trying it anyway would open up a cool attack
  2404. * where the node refuses due to exitpolicy, the client reacts in
  2405. * surprise by rewriting the node's exitpolicy to reject *:*, and then
  2406. * a bad guy targets users by causing them to attempt such connections
  2407. * to 98% of the exits.
  2408. *
  2409. * Once microdescriptors can handle addresses in special cases (e.g. if
  2410. * we ever solve ticket 1774), we can provide certainty here. -RD */
  2411. if (accept)
  2412. return ADDR_POLICY_PROBABLY_ACCEPTED;
  2413. else
  2414. return ADDR_POLICY_REJECTED;
  2415. }
  2416. /** Return true iff <b>policy</b> seems reject all ports */
  2417. int
  2418. short_policy_is_reject_star(const short_policy_t *policy)
  2419. {
  2420. /* This doesn't need to be as much on the lookout as policy_is_reject_star,
  2421. * since policy summaries are from the consensus or from consensus
  2422. * microdescs.
  2423. */
  2424. tor_assert(policy);
  2425. /* Check for an exact match of "reject 1-65535". */
  2426. return (policy->is_accept == 0 && policy->n_entries == 1 &&
  2427. policy->entries[0].min_port == 1 &&
  2428. policy->entries[0].max_port == 65535);
  2429. }
  2430. /** Decide whether addr:port is probably or definitely accepted or rejected by
  2431. * <b>node</b>. See compare_tor_addr_to_addr_policy for details on addr/port
  2432. * interpretation. */
  2433. addr_policy_result_t
  2434. compare_tor_addr_to_node_policy(const tor_addr_t *addr, uint16_t port,
  2435. const node_t *node)
  2436. {
  2437. if (node->rejects_all)
  2438. return ADDR_POLICY_REJECTED;
  2439. if (addr && tor_addr_family(addr) == AF_INET6) {
  2440. const short_policy_t *p = NULL;
  2441. if (node->ri)
  2442. p = node->ri->ipv6_exit_policy;
  2443. else if (node->md)
  2444. p = node->md->ipv6_exit_policy;
  2445. if (p)
  2446. return compare_tor_addr_to_short_policy(addr, port, p);
  2447. else
  2448. return ADDR_POLICY_REJECTED;
  2449. }
  2450. if (node->ri) {
  2451. return compare_tor_addr_to_addr_policy(addr, port, node->ri->exit_policy);
  2452. } else if (node->md) {
  2453. if (node->md->exit_policy == NULL)
  2454. return ADDR_POLICY_REJECTED;
  2455. else
  2456. return compare_tor_addr_to_short_policy(addr, port,
  2457. node->md->exit_policy);
  2458. } else {
  2459. return ADDR_POLICY_PROBABLY_REJECTED;
  2460. }
  2461. }
  2462. /**
  2463. * Given <b>policy_list</b>, a list of addr_policy_t, produce a string
  2464. * representation of the list.
  2465. * If <b>include_ipv4</b> is true, include IPv4 entries.
  2466. * If <b>include_ipv6</b> is true, include IPv6 entries.
  2467. */
  2468. char *
  2469. policy_dump_to_string(const smartlist_t *policy_list,
  2470. int include_ipv4,
  2471. int include_ipv6)
  2472. {
  2473. smartlist_t *policy_string_list;
  2474. char *policy_string = NULL;
  2475. policy_string_list = smartlist_new();
  2476. SMARTLIST_FOREACH_BEGIN(policy_list, addr_policy_t *, tmpe) {
  2477. char *pbuf;
  2478. int bytes_written_to_pbuf;
  2479. if ((tor_addr_family(&tmpe->addr) == AF_INET6) && (!include_ipv6)) {
  2480. continue; /* Don't include IPv6 parts of address policy */
  2481. }
  2482. if ((tor_addr_family(&tmpe->addr) == AF_INET) && (!include_ipv4)) {
  2483. continue; /* Don't include IPv4 parts of address policy */
  2484. }
  2485. pbuf = tor_malloc(POLICY_BUF_LEN);
  2486. bytes_written_to_pbuf = policy_write_item(pbuf,POLICY_BUF_LEN, tmpe, 1);
  2487. if (bytes_written_to_pbuf < 0) {
  2488. log_warn(LD_BUG, "policy_dump_to_string ran out of room!");
  2489. tor_free(pbuf);
  2490. goto done;
  2491. }
  2492. smartlist_add(policy_string_list,pbuf);
  2493. } SMARTLIST_FOREACH_END(tmpe);
  2494. policy_string = smartlist_join_strings(policy_string_list, "\n", 0, NULL);
  2495. done:
  2496. SMARTLIST_FOREACH(policy_string_list, char *, str, tor_free(str));
  2497. smartlist_free(policy_string_list);
  2498. return policy_string;
  2499. }
  2500. /** Implementation for GETINFO control command: knows the answer for questions
  2501. * about "exit-policy/..." */
  2502. int
  2503. getinfo_helper_policies(control_connection_t *conn,
  2504. const char *question, char **answer,
  2505. const char **errmsg)
  2506. {
  2507. (void) conn;
  2508. (void) errmsg;
  2509. if (!strcmp(question, "exit-policy/default")) {
  2510. *answer = tor_strdup(DEFAULT_EXIT_POLICY);
  2511. } else if (!strcmp(question, "exit-policy/reject-private/default")) {
  2512. smartlist_t *private_policy_strings;
  2513. const char **priv = private_nets;
  2514. private_policy_strings = smartlist_new();
  2515. while (*priv != NULL) {
  2516. /* IPv6 addresses are in "[]" and contain ":",
  2517. * IPv4 addresses are not in "[]" and contain "." */
  2518. smartlist_add_asprintf(private_policy_strings, "reject %s:*", *priv);
  2519. priv++;
  2520. }
  2521. *answer = smartlist_join_strings(private_policy_strings,
  2522. ",", 0, NULL);
  2523. SMARTLIST_FOREACH(private_policy_strings, char *, str, tor_free(str));
  2524. smartlist_free(private_policy_strings);
  2525. } else if (!strcmp(question, "exit-policy/reject-private/relay")) {
  2526. const or_options_t *options = get_options();
  2527. const routerinfo_t *me = router_get_my_routerinfo();
  2528. if (!me) {
  2529. *errmsg = "router_get_my_routerinfo returned NULL";
  2530. return -1;
  2531. }
  2532. if (!options->ExitPolicyRejectPrivate) {
  2533. *answer = tor_strdup("");
  2534. return 0;
  2535. }
  2536. smartlist_t *private_policy_list = smartlist_new();
  2537. smartlist_t *configured_addresses = smartlist_new();
  2538. /* Copy the configured addresses into the tor_addr_t* list */
  2539. policies_copy_ipv4h_to_smartlist(configured_addresses, me->addr);
  2540. policies_copy_addr_to_smartlist(configured_addresses, &me->ipv6_addr);
  2541. policies_copy_outbound_addresses_to_smartlist(configured_addresses,
  2542. options);
  2543. policies_parse_exit_policy_reject_private(
  2544. &private_policy_list,
  2545. options->IPv6Exit,
  2546. configured_addresses,
  2547. 1, 1);
  2548. *answer = policy_dump_to_string(private_policy_list, 1, 1);
  2549. addr_policy_list_free(private_policy_list);
  2550. SMARTLIST_FOREACH(configured_addresses, tor_addr_t *, a, tor_free(a));
  2551. smartlist_free(configured_addresses);
  2552. } else if (!strcmpstart(question, "exit-policy/")) {
  2553. const routerinfo_t *me = router_get_my_routerinfo();
  2554. int include_ipv4 = 0;
  2555. int include_ipv6 = 0;
  2556. if (!strcmp(question, "exit-policy/ipv4")) {
  2557. include_ipv4 = 1;
  2558. } else if (!strcmp(question, "exit-policy/ipv6")) {
  2559. include_ipv6 = 1;
  2560. } else if (!strcmp(question, "exit-policy/full")) {
  2561. include_ipv4 = include_ipv6 = 1;
  2562. } else {
  2563. return 0; /* No such key. */
  2564. }
  2565. if (!me) {
  2566. *errmsg = "router_get_my_routerinfo returned NULL";
  2567. return -1;
  2568. }
  2569. *answer = router_dump_exit_policy_to_string(me,include_ipv4,include_ipv6);
  2570. }
  2571. return 0;
  2572. }
  2573. /** Release all storage held by <b>p</b>. */
  2574. void
  2575. addr_policy_list_free(smartlist_t *lst)
  2576. {
  2577. if (!lst)
  2578. return;
  2579. SMARTLIST_FOREACH(lst, addr_policy_t *, policy, addr_policy_free(policy));
  2580. smartlist_free(lst);
  2581. }
  2582. /** Release all storage held by <b>p</b>. */
  2583. void
  2584. addr_policy_free(addr_policy_t *p)
  2585. {
  2586. if (!p)
  2587. return;
  2588. if (--p->refcnt <= 0) {
  2589. if (p->is_canonical) {
  2590. policy_map_ent_t search, *found;
  2591. search.policy = p;
  2592. found = HT_REMOVE(policy_map, &policy_root, &search);
  2593. if (found) {
  2594. tor_assert(p == found->policy);
  2595. tor_free(found);
  2596. }
  2597. }
  2598. tor_free(p);
  2599. }
  2600. }
  2601. /** Release all storage held by policy variables. */
  2602. void
  2603. policies_free_all(void)
  2604. {
  2605. addr_policy_list_free(reachable_or_addr_policy);
  2606. reachable_or_addr_policy = NULL;
  2607. addr_policy_list_free(reachable_dir_addr_policy);
  2608. reachable_dir_addr_policy = NULL;
  2609. addr_policy_list_free(socks_policy);
  2610. socks_policy = NULL;
  2611. addr_policy_list_free(dir_policy);
  2612. dir_policy = NULL;
  2613. addr_policy_list_free(authdir_reject_policy);
  2614. authdir_reject_policy = NULL;
  2615. addr_policy_list_free(authdir_invalid_policy);
  2616. authdir_invalid_policy = NULL;
  2617. addr_policy_list_free(authdir_badexit_policy);
  2618. authdir_badexit_policy = NULL;
  2619. if (!HT_EMPTY(&policy_root)) {
  2620. policy_map_ent_t **ent;
  2621. int n = 0;
  2622. char buf[POLICY_BUF_LEN];
  2623. log_warn(LD_MM, "Still had %d address policies cached at shutdown.",
  2624. (int)HT_SIZE(&policy_root));
  2625. /* Note the first 10 cached policies to try to figure out where they
  2626. * might be coming from. */
  2627. HT_FOREACH(ent, policy_map, &policy_root) {
  2628. if (++n > 10)
  2629. break;
  2630. if (policy_write_item(buf, sizeof(buf), (*ent)->policy, 0) >= 0)
  2631. log_warn(LD_MM," %d [%d]: %s", n, (*ent)->policy->refcnt, buf);
  2632. }
  2633. }
  2634. HT_CLEAR(policy_map, &policy_root);
  2635. }