hs_service.c 145 KB

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  1. /* Copyright (c) 2016-2018, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. /**
  4. * \file hs_service.c
  5. * \brief Implement next generation hidden service functionality
  6. **/
  7. #define HS_SERVICE_PRIVATE
  8. #include "core/or/or.h"
  9. #include "feature/client/circpathbias.h"
  10. #include "core/or/circuitbuild.h"
  11. #include "core/or/circuitlist.h"
  12. #include "core/or/circuituse.h"
  13. #include "app/config/config.h"
  14. #include "core/mainloop/connection.h"
  15. #include "lib/crypt_ops/crypto_rand.h"
  16. #include "lib/crypt_ops/crypto_util.h"
  17. #include "lib/crypt_ops/crypto_ope.h"
  18. #include "lib/crypt_ops/crypto_rand.h"
  19. #include "feature/dircommon/directory.h"
  20. #include "feature/dirclient/dirclient.h"
  21. #include "core/mainloop/mainloop.h"
  22. #include "feature/nodelist/networkstatus.h"
  23. #include "feature/nodelist/nodelist.h"
  24. #include "core/or/relay.h"
  25. #include "feature/rend/rendservice.h"
  26. #include "feature/relay/router.h"
  27. #include "feature/relay/routerkeys.h"
  28. #include "feature/nodelist/node_select.h"
  29. #include "feature/hs_common/shared_random_client.h"
  30. #include "app/config/statefile.h"
  31. #include "feature/hs/hs_circuit.h"
  32. #include "feature/hs/hs_common.h"
  33. #include "feature/hs/hs_config.h"
  34. #include "feature/hs/hs_control.h"
  35. #include "feature/hs/hs_descriptor.h"
  36. #include "feature/hs/hs_ident.h"
  37. #include "feature/hs/hs_intropoint.h"
  38. #include "feature/hs/hs_service.h"
  39. #include "feature/hs/hs_stats.h"
  40. #include "feature/dircommon/dir_connection_st.h"
  41. #include "core/or/edge_connection_st.h"
  42. #include "core/or/extend_info_st.h"
  43. #include "feature/nodelist/networkstatus_st.h"
  44. #include "feature/nodelist/node_st.h"
  45. #include "core/or/origin_circuit_st.h"
  46. #include "app/config/or_state_st.h"
  47. #include "feature/nodelist/routerstatus_st.h"
  48. #include "lib/encoding/confline.h"
  49. #include "lib/crypt_ops/crypto_format.h"
  50. /* Trunnel */
  51. #include "trunnel/ed25519_cert.h"
  52. #include "trunnel/hs/cell_common.h"
  53. #include "trunnel/hs/cell_establish_intro.h"
  54. #ifdef HAVE_SYS_STAT_H
  55. #include <sys/stat.h>
  56. #endif
  57. #ifdef HAVE_UNISTD_H
  58. #include <unistd.h>
  59. #endif
  60. /* Helper macro. Iterate over every service in the global map. The var is the
  61. * name of the service pointer. */
  62. #define FOR_EACH_SERVICE_BEGIN(var) \
  63. STMT_BEGIN \
  64. hs_service_t **var##_iter, *var; \
  65. HT_FOREACH(var##_iter, hs_service_ht, hs_service_map) { \
  66. var = *var##_iter;
  67. #define FOR_EACH_SERVICE_END } STMT_END ;
  68. /* Helper macro. Iterate over both current and previous descriptor of a
  69. * service. The var is the name of the descriptor pointer. This macro skips
  70. * any descriptor object of the service that is NULL. */
  71. #define FOR_EACH_DESCRIPTOR_BEGIN(service, var) \
  72. STMT_BEGIN \
  73. hs_service_descriptor_t *var; \
  74. for (int var ## _loop_idx = 0; var ## _loop_idx < 2; \
  75. ++var ## _loop_idx) { \
  76. (var ## _loop_idx == 0) ? (var = service->desc_current) : \
  77. (var = service->desc_next); \
  78. if (var == NULL) continue;
  79. #define FOR_EACH_DESCRIPTOR_END } STMT_END ;
  80. /* Onion service directory file names. */
  81. static const char fname_keyfile_prefix[] = "hs_ed25519";
  82. static const char dname_client_pubkeys[] = "authorized_clients";
  83. static const char fname_hostname[] = "hostname";
  84. static const char address_tld[] = "onion";
  85. /* Staging list of service object. When configuring service, we add them to
  86. * this list considered a staging area and they will get added to our global
  87. * map once the keys have been loaded. These two steps are separated because
  88. * loading keys requires that we are an actual running tor process. */
  89. static smartlist_t *hs_service_staging_list;
  90. /** True if the list of available router descriptors might have changed which
  91. * might result in an altered hash ring. Check if the hash ring changed and
  92. * reupload if needed */
  93. static int consider_republishing_hs_descriptors = 0;
  94. /* Static declaration. */
  95. static int load_client_keys(hs_service_t *service);
  96. static void set_descriptor_revision_counter(hs_service_descriptor_t *hs_desc,
  97. time_t now, bool is_current);
  98. static int build_service_desc_superencrypted(const hs_service_t *service,
  99. hs_service_descriptor_t *desc);
  100. static void move_descriptors(hs_service_t *src, hs_service_t *dst);
  101. static int service_encode_descriptor(const hs_service_t *service,
  102. const hs_service_descriptor_t *desc,
  103. const ed25519_keypair_t *signing_kp,
  104. char **encoded_out);
  105. /* Helper: Function to compare two objects in the service map. Return 1 if the
  106. * two service have the same master public identity key. */
  107. static inline int
  108. hs_service_ht_eq(const hs_service_t *first, const hs_service_t *second)
  109. {
  110. tor_assert(first);
  111. tor_assert(second);
  112. /* Simple key compare. */
  113. return ed25519_pubkey_eq(&first->keys.identity_pk,
  114. &second->keys.identity_pk);
  115. }
  116. /* Helper: Function for the service hash table code below. The key used is the
  117. * master public identity key which is ultimately the onion address. */
  118. static inline unsigned int
  119. hs_service_ht_hash(const hs_service_t *service)
  120. {
  121. tor_assert(service);
  122. return (unsigned int) siphash24g(service->keys.identity_pk.pubkey,
  123. sizeof(service->keys.identity_pk.pubkey));
  124. }
  125. /* This is _the_ global hash map of hidden services which indexed the service
  126. * contained in it by master public identity key which is roughly the onion
  127. * address of the service. */
  128. static struct hs_service_ht *hs_service_map;
  129. /* Register the service hash table. */
  130. HT_PROTOTYPE(hs_service_ht, /* Name of hashtable. */
  131. hs_service_t, /* Object contained in the map. */
  132. hs_service_node, /* The name of the HT_ENTRY member. */
  133. hs_service_ht_hash, /* Hashing function. */
  134. hs_service_ht_eq) /* Compare function for objects. */
  135. HT_GENERATE2(hs_service_ht, hs_service_t, hs_service_node,
  136. hs_service_ht_hash, hs_service_ht_eq,
  137. 0.6, tor_reallocarray, tor_free_)
  138. /* Query the given service map with a public key and return a service object
  139. * if found else NULL. It is also possible to set a directory path in the
  140. * search query. If pk is NULL, then it will be set to zero indicating the
  141. * hash table to compare the directory path instead. */
  142. STATIC hs_service_t *
  143. find_service(hs_service_ht *map, const ed25519_public_key_t *pk)
  144. {
  145. hs_service_t dummy_service;
  146. tor_assert(map);
  147. tor_assert(pk);
  148. memset(&dummy_service, 0, sizeof(dummy_service));
  149. ed25519_pubkey_copy(&dummy_service.keys.identity_pk, pk);
  150. return HT_FIND(hs_service_ht, map, &dummy_service);
  151. }
  152. /* Register the given service in the given map. If the service already exists
  153. * in the map, -1 is returned. On success, 0 is returned and the service
  154. * ownership has been transferred to the global map. */
  155. STATIC int
  156. register_service(hs_service_ht *map, hs_service_t *service)
  157. {
  158. tor_assert(map);
  159. tor_assert(service);
  160. tor_assert(!ed25519_public_key_is_zero(&service->keys.identity_pk));
  161. if (find_service(map, &service->keys.identity_pk)) {
  162. /* Existing service with the same key. Do not register it. */
  163. return -1;
  164. }
  165. /* Taking ownership of the object at this point. */
  166. HT_INSERT(hs_service_ht, map, service);
  167. /* If we just modified the global map, we notify. */
  168. if (map == hs_service_map) {
  169. hs_service_map_has_changed();
  170. }
  171. return 0;
  172. }
  173. /* Remove a given service from the given map. If service is NULL or the
  174. * service key is unset, return gracefully. */
  175. STATIC void
  176. remove_service(hs_service_ht *map, hs_service_t *service)
  177. {
  178. hs_service_t *elm;
  179. tor_assert(map);
  180. /* Ignore if no service or key is zero. */
  181. if (BUG(service == NULL) ||
  182. BUG(ed25519_public_key_is_zero(&service->keys.identity_pk))) {
  183. return;
  184. }
  185. elm = HT_REMOVE(hs_service_ht, map, service);
  186. if (elm) {
  187. tor_assert(elm == service);
  188. } else {
  189. log_warn(LD_BUG, "Could not find service in the global map "
  190. "while removing service %s",
  191. escaped(service->config.directory_path));
  192. }
  193. /* If we just modified the global map, we notify. */
  194. if (map == hs_service_map) {
  195. hs_service_map_has_changed();
  196. }
  197. }
  198. /* Set the default values for a service configuration object <b>c</b>. */
  199. static void
  200. set_service_default_config(hs_service_config_t *c,
  201. const or_options_t *options)
  202. {
  203. (void) options;
  204. tor_assert(c);
  205. c->ports = smartlist_new();
  206. c->directory_path = NULL;
  207. c->max_streams_per_rdv_circuit = 0;
  208. c->max_streams_close_circuit = 0;
  209. c->num_intro_points = NUM_INTRO_POINTS_DEFAULT;
  210. c->allow_unknown_ports = 0;
  211. c->is_single_onion = 0;
  212. c->dir_group_readable = 0;
  213. c->is_ephemeral = 0;
  214. }
  215. /* From a service configuration object config, clear everything from it
  216. * meaning free allocated pointers and reset the values. */
  217. STATIC void
  218. service_clear_config(hs_service_config_t *config)
  219. {
  220. if (config == NULL) {
  221. return;
  222. }
  223. tor_free(config->directory_path);
  224. if (config->ports) {
  225. SMARTLIST_FOREACH(config->ports, rend_service_port_config_t *, p,
  226. rend_service_port_config_free(p););
  227. smartlist_free(config->ports);
  228. }
  229. if (config->clients) {
  230. SMARTLIST_FOREACH(config->clients, hs_service_authorized_client_t *, p,
  231. service_authorized_client_free(p));
  232. smartlist_free(config->clients);
  233. }
  234. memset(config, 0, sizeof(*config));
  235. }
  236. /* Helper function to return a human readable description of the given intro
  237. * point object.
  238. *
  239. * This function is not thread-safe. Each call to this invalidates the
  240. * previous values returned by it. */
  241. static const char *
  242. describe_intro_point(const hs_service_intro_point_t *ip)
  243. {
  244. /* Hex identity digest of the IP prefixed by the $ sign and ends with NUL
  245. * byte hence the plus two. */
  246. static char buf[HEX_DIGEST_LEN + 2];
  247. const char *legacy_id = NULL;
  248. SMARTLIST_FOREACH_BEGIN(ip->base.link_specifiers,
  249. const hs_desc_link_specifier_t *, lspec) {
  250. if (lspec->type == LS_LEGACY_ID) {
  251. legacy_id = (const char *) lspec->u.legacy_id;
  252. break;
  253. }
  254. } SMARTLIST_FOREACH_END(lspec);
  255. /* For now, we only print the identity digest but we could improve this with
  256. * much more information such as the ed25519 identity has well. */
  257. buf[0] = '$';
  258. if (legacy_id) {
  259. base16_encode(buf + 1, HEX_DIGEST_LEN + 1, legacy_id, DIGEST_LEN);
  260. }
  261. return buf;
  262. }
  263. /* Return the lower bound of maximum INTRODUCE2 cells per circuit before we
  264. * rotate intro point (defined by a consensus parameter or the default
  265. * value). */
  266. static int32_t
  267. get_intro_point_min_introduce2(void)
  268. {
  269. /* The [0, 2147483647] range is quite large to accommodate anything we decide
  270. * in the future. */
  271. return networkstatus_get_param(NULL, "hs_intro_min_introduce2",
  272. INTRO_POINT_MIN_LIFETIME_INTRODUCTIONS,
  273. 0, INT32_MAX);
  274. }
  275. /* Return the upper bound of maximum INTRODUCE2 cells per circuit before we
  276. * rotate intro point (defined by a consensus parameter or the default
  277. * value). */
  278. static int32_t
  279. get_intro_point_max_introduce2(void)
  280. {
  281. /* The [0, 2147483647] range is quite large to accommodate anything we decide
  282. * in the future. */
  283. return networkstatus_get_param(NULL, "hs_intro_max_introduce2",
  284. INTRO_POINT_MAX_LIFETIME_INTRODUCTIONS,
  285. 0, INT32_MAX);
  286. }
  287. /* Return the minimum lifetime in seconds of an introduction point defined by a
  288. * consensus parameter or the default value. */
  289. static int32_t
  290. get_intro_point_min_lifetime(void)
  291. {
  292. #define MIN_INTRO_POINT_LIFETIME_TESTING 10
  293. if (get_options()->TestingTorNetwork) {
  294. return MIN_INTRO_POINT_LIFETIME_TESTING;
  295. }
  296. /* The [0, 2147483647] range is quite large to accommodate anything we decide
  297. * in the future. */
  298. return networkstatus_get_param(NULL, "hs_intro_min_lifetime",
  299. INTRO_POINT_LIFETIME_MIN_SECONDS,
  300. 0, INT32_MAX);
  301. }
  302. /* Return the maximum lifetime in seconds of an introduction point defined by a
  303. * consensus parameter or the default value. */
  304. static int32_t
  305. get_intro_point_max_lifetime(void)
  306. {
  307. #define MAX_INTRO_POINT_LIFETIME_TESTING 30
  308. if (get_options()->TestingTorNetwork) {
  309. return MAX_INTRO_POINT_LIFETIME_TESTING;
  310. }
  311. /* The [0, 2147483647] range is quite large to accommodate anything we decide
  312. * in the future. */
  313. return networkstatus_get_param(NULL, "hs_intro_max_lifetime",
  314. INTRO_POINT_LIFETIME_MAX_SECONDS,
  315. 0, INT32_MAX);
  316. }
  317. /* Return the number of extra introduction point defined by a consensus
  318. * parameter or the default value. */
  319. static int32_t
  320. get_intro_point_num_extra(void)
  321. {
  322. /* The [0, 128] range bounds the number of extra introduction point allowed.
  323. * Above 128 intro points, it's getting a bit crazy. */
  324. return networkstatus_get_param(NULL, "hs_intro_num_extra",
  325. NUM_INTRO_POINTS_EXTRA, 0, 128);
  326. }
  327. /* Helper: Function that needs to return 1 for the HT for each loop which
  328. * frees every service in an hash map. */
  329. static int
  330. ht_free_service_(struct hs_service_t *service, void *data)
  331. {
  332. (void) data;
  333. hs_service_free(service);
  334. /* This function MUST return 1 so the given object is then removed from the
  335. * service map leading to this free of the object being safe. */
  336. return 1;
  337. }
  338. /* Free every service that can be found in the global map. Once done, clear
  339. * and free the global map. */
  340. static void
  341. service_free_all(void)
  342. {
  343. if (hs_service_map) {
  344. /* The free helper function returns 1 so this is safe. */
  345. hs_service_ht_HT_FOREACH_FN(hs_service_map, ht_free_service_, NULL);
  346. HT_CLEAR(hs_service_ht, hs_service_map);
  347. tor_free(hs_service_map);
  348. hs_service_map = NULL;
  349. }
  350. if (hs_service_staging_list) {
  351. /* Cleanup staging list. */
  352. SMARTLIST_FOREACH(hs_service_staging_list, hs_service_t *, s,
  353. hs_service_free(s));
  354. smartlist_free(hs_service_staging_list);
  355. hs_service_staging_list = NULL;
  356. }
  357. }
  358. /* Free a given service intro point object. */
  359. STATIC void
  360. service_intro_point_free_(hs_service_intro_point_t *ip)
  361. {
  362. if (!ip) {
  363. return;
  364. }
  365. memwipe(&ip->auth_key_kp, 0, sizeof(ip->auth_key_kp));
  366. memwipe(&ip->enc_key_kp, 0, sizeof(ip->enc_key_kp));
  367. crypto_pk_free(ip->legacy_key);
  368. replaycache_free(ip->replay_cache);
  369. hs_intropoint_clear(&ip->base);
  370. tor_free(ip);
  371. }
  372. /* Helper: free an hs_service_intro_point_t object. This function is used by
  373. * digest256map_free() which requires a void * pointer. */
  374. static void
  375. service_intro_point_free_void(void *obj)
  376. {
  377. service_intro_point_free_(obj);
  378. }
  379. /* Return a newly allocated service intro point and fully initialized from the
  380. * given extend_info_t ei if non NULL.
  381. * If is_legacy is true, we also generate the legacy key.
  382. * If supports_ed25519_link_handshake_any is true, we add the relay's ed25519
  383. * key to the link specifiers.
  384. *
  385. * If ei is NULL, returns a hs_service_intro_point_t with an empty link
  386. * specifier list and no onion key. (This is used for testing.)
  387. * On any other error, NULL is returned.
  388. *
  389. * ei must be an extend_info_t containing an IPv4 address. (We will add supoort
  390. * for IPv6 in a later release.) When calling extend_info_from_node(), pass
  391. * 0 in for_direct_connection to make sure ei always has an IPv4 address. */
  392. STATIC hs_service_intro_point_t *
  393. service_intro_point_new(const extend_info_t *ei, unsigned int is_legacy,
  394. unsigned int supports_ed25519_link_handshake_any)
  395. {
  396. hs_desc_link_specifier_t *ls;
  397. hs_service_intro_point_t *ip;
  398. ip = tor_malloc_zero(sizeof(*ip));
  399. /* We'll create the key material. No need for extra strong, those are short
  400. * term keys. */
  401. ed25519_keypair_generate(&ip->auth_key_kp, 0);
  402. { /* Set introduce2 max cells limit */
  403. int32_t min_introduce2_cells = get_intro_point_min_introduce2();
  404. int32_t max_introduce2_cells = get_intro_point_max_introduce2();
  405. if (BUG(max_introduce2_cells < min_introduce2_cells)) {
  406. goto err;
  407. }
  408. ip->introduce2_max = crypto_rand_int_range(min_introduce2_cells,
  409. max_introduce2_cells);
  410. }
  411. { /* Set intro point lifetime */
  412. int32_t intro_point_min_lifetime = get_intro_point_min_lifetime();
  413. int32_t intro_point_max_lifetime = get_intro_point_max_lifetime();
  414. if (BUG(intro_point_max_lifetime < intro_point_min_lifetime)) {
  415. goto err;
  416. }
  417. ip->time_to_expire = approx_time() +
  418. crypto_rand_int_range(intro_point_min_lifetime,intro_point_max_lifetime);
  419. }
  420. ip->replay_cache = replaycache_new(0, 0);
  421. /* Initialize the base object. We don't need the certificate object. */
  422. ip->base.link_specifiers = smartlist_new();
  423. /* Generate the encryption key for this intro point. */
  424. curve25519_keypair_generate(&ip->enc_key_kp, 0);
  425. /* Figure out if this chosen node supports v3 or is legacy only. */
  426. if (is_legacy) {
  427. ip->base.is_only_legacy = 1;
  428. /* Legacy mode that is doesn't support v3+ with ed25519 auth key. */
  429. ip->legacy_key = crypto_pk_new();
  430. if (crypto_pk_generate_key(ip->legacy_key) < 0) {
  431. goto err;
  432. }
  433. if (crypto_pk_get_digest(ip->legacy_key,
  434. (char *) ip->legacy_key_digest) < 0) {
  435. goto err;
  436. }
  437. }
  438. if (ei == NULL) {
  439. goto done;
  440. }
  441. /* We'll try to add all link specifiers. Legacy is mandatory.
  442. * IPv4 or IPv6 is required, and we always send IPv4. */
  443. ls = hs_desc_link_specifier_new(ei, LS_IPV4);
  444. /* It is impossible to have an extend info object without a v4. */
  445. if (BUG(!ls)) {
  446. goto err;
  447. }
  448. smartlist_add(ip->base.link_specifiers, ls);
  449. ls = hs_desc_link_specifier_new(ei, LS_LEGACY_ID);
  450. /* It is impossible to have an extend info object without an identity
  451. * digest. */
  452. if (BUG(!ls)) {
  453. goto err;
  454. }
  455. smartlist_add(ip->base.link_specifiers, ls);
  456. /* ed25519 identity key is optional for intro points. If the node supports
  457. * ed25519 link authentication, we include it. */
  458. if (supports_ed25519_link_handshake_any) {
  459. ls = hs_desc_link_specifier_new(ei, LS_ED25519_ID);
  460. if (ls) {
  461. smartlist_add(ip->base.link_specifiers, ls);
  462. }
  463. }
  464. /* IPv6 is not supported in this release. */
  465. /* Finally, copy onion key from the extend_info_t object. */
  466. memcpy(&ip->onion_key, &ei->curve25519_onion_key, sizeof(ip->onion_key));
  467. done:
  468. return ip;
  469. err:
  470. service_intro_point_free(ip);
  471. return NULL;
  472. }
  473. /* Add the given intro point object to the given intro point map. The intro
  474. * point MUST have its RSA encryption key set if this is a legacy type or the
  475. * authentication key set otherwise. */
  476. STATIC void
  477. service_intro_point_add(digest256map_t *map, hs_service_intro_point_t *ip)
  478. {
  479. hs_service_intro_point_t *old_ip_entry;
  480. tor_assert(map);
  481. tor_assert(ip);
  482. old_ip_entry = digest256map_set(map, ip->auth_key_kp.pubkey.pubkey, ip);
  483. /* Make sure we didn't just try to double-add an intro point */
  484. tor_assert_nonfatal(!old_ip_entry);
  485. }
  486. /* For a given service, remove the intro point from that service's descriptors
  487. * (check both current and next descriptor) */
  488. STATIC void
  489. service_intro_point_remove(const hs_service_t *service,
  490. const hs_service_intro_point_t *ip)
  491. {
  492. tor_assert(service);
  493. tor_assert(ip);
  494. /* Trying all descriptors. */
  495. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  496. /* We'll try to remove the descriptor on both descriptors which is not
  497. * very expensive to do instead of doing loopup + remove. */
  498. digest256map_remove(desc->intro_points.map,
  499. ip->auth_key_kp.pubkey.pubkey);
  500. } FOR_EACH_DESCRIPTOR_END;
  501. }
  502. /* For a given service and authentication key, return the intro point or NULL
  503. * if not found. This will check both descriptors in the service. */
  504. STATIC hs_service_intro_point_t *
  505. service_intro_point_find(const hs_service_t *service,
  506. const ed25519_public_key_t *auth_key)
  507. {
  508. hs_service_intro_point_t *ip = NULL;
  509. tor_assert(service);
  510. tor_assert(auth_key);
  511. /* Trying all descriptors to find the right intro point.
  512. *
  513. * Even if we use the same node as intro point in both descriptors, the node
  514. * will have a different intro auth key for each descriptor since we generate
  515. * a new one everytime we pick an intro point.
  516. *
  517. * After #22893 gets implemented, intro points will be moved to be
  518. * per-service instead of per-descriptor so this function will need to
  519. * change.
  520. */
  521. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  522. if ((ip = digest256map_get(desc->intro_points.map,
  523. auth_key->pubkey)) != NULL) {
  524. break;
  525. }
  526. } FOR_EACH_DESCRIPTOR_END;
  527. return ip;
  528. }
  529. /* For a given service and intro point, return the descriptor for which the
  530. * intro point is assigned to. NULL is returned if not found. */
  531. STATIC hs_service_descriptor_t *
  532. service_desc_find_by_intro(const hs_service_t *service,
  533. const hs_service_intro_point_t *ip)
  534. {
  535. hs_service_descriptor_t *descp = NULL;
  536. tor_assert(service);
  537. tor_assert(ip);
  538. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  539. if (digest256map_get(desc->intro_points.map,
  540. ip->auth_key_kp.pubkey.pubkey)) {
  541. descp = desc;
  542. break;
  543. }
  544. } FOR_EACH_DESCRIPTOR_END;
  545. return descp;
  546. }
  547. /* From a circuit identifier, get all the possible objects associated with the
  548. * ident. If not NULL, service, ip or desc are set if the object can be found.
  549. * They are untouched if they can't be found.
  550. *
  551. * This is an helper function because we do those lookups often so it's more
  552. * convenient to simply call this functions to get all the things at once. */
  553. STATIC void
  554. get_objects_from_ident(const hs_ident_circuit_t *ident,
  555. hs_service_t **service, hs_service_intro_point_t **ip,
  556. hs_service_descriptor_t **desc)
  557. {
  558. hs_service_t *s;
  559. tor_assert(ident);
  560. /* Get service object from the circuit identifier. */
  561. s = find_service(hs_service_map, &ident->identity_pk);
  562. if (s && service) {
  563. *service = s;
  564. }
  565. /* From the service object, get the intro point object of that circuit. The
  566. * following will query both descriptors intro points list. */
  567. if (s && ip) {
  568. *ip = service_intro_point_find(s, &ident->intro_auth_pk);
  569. }
  570. /* Get the descriptor for this introduction point and service. */
  571. if (s && ip && *ip && desc) {
  572. *desc = service_desc_find_by_intro(s, *ip);
  573. }
  574. }
  575. /* From a given intro point, return the first link specifier of type
  576. * encountered in the link specifier list. Return NULL if it can't be found.
  577. *
  578. * The caller does NOT have ownership of the object, the intro point does. */
  579. static hs_desc_link_specifier_t *
  580. get_link_spec_by_type(const hs_service_intro_point_t *ip, uint8_t type)
  581. {
  582. hs_desc_link_specifier_t *lnk_spec = NULL;
  583. tor_assert(ip);
  584. SMARTLIST_FOREACH_BEGIN(ip->base.link_specifiers,
  585. hs_desc_link_specifier_t *, ls) {
  586. if (ls->type == type) {
  587. lnk_spec = ls;
  588. goto end;
  589. }
  590. } SMARTLIST_FOREACH_END(ls);
  591. end:
  592. return lnk_spec;
  593. }
  594. /* Given a service intro point, return the node_t associated to it. This can
  595. * return NULL if the given intro point has no legacy ID or if the node can't
  596. * be found in the consensus. */
  597. STATIC const node_t *
  598. get_node_from_intro_point(const hs_service_intro_point_t *ip)
  599. {
  600. const hs_desc_link_specifier_t *ls;
  601. tor_assert(ip);
  602. ls = get_link_spec_by_type(ip, LS_LEGACY_ID);
  603. if (BUG(!ls)) {
  604. return NULL;
  605. }
  606. /* XXX In the future, we want to only use the ed25519 ID (#22173). */
  607. return node_get_by_id((const char *) ls->u.legacy_id);
  608. }
  609. /* Given a service intro point, return the extend_info_t for it. This can
  610. * return NULL if the node can't be found for the intro point or the extend
  611. * info can't be created for the found node. If direct_conn is set, the extend
  612. * info is validated on if we can connect directly. */
  613. static extend_info_t *
  614. get_extend_info_from_intro_point(const hs_service_intro_point_t *ip,
  615. unsigned int direct_conn)
  616. {
  617. extend_info_t *info = NULL;
  618. const node_t *node;
  619. tor_assert(ip);
  620. node = get_node_from_intro_point(ip);
  621. if (node == NULL) {
  622. /* This can happen if the relay serving as intro point has been removed
  623. * from the consensus. In that case, the intro point will be removed from
  624. * the descriptor during the scheduled events. */
  625. goto end;
  626. }
  627. /* In the case of a direct connection (single onion service), it is possible
  628. * our firewall policy won't allow it so this can return a NULL value. */
  629. info = extend_info_from_node(node, direct_conn);
  630. end:
  631. return info;
  632. }
  633. /* Return the number of introduction points that are established for the
  634. * given descriptor. */
  635. static unsigned int
  636. count_desc_circuit_established(const hs_service_descriptor_t *desc)
  637. {
  638. unsigned int count = 0;
  639. tor_assert(desc);
  640. DIGEST256MAP_FOREACH(desc->intro_points.map, key,
  641. const hs_service_intro_point_t *, ip) {
  642. count += ip->circuit_established;
  643. } DIGEST256MAP_FOREACH_END;
  644. return count;
  645. }
  646. /* For a given service and descriptor of that service, close all active
  647. * directory connections. */
  648. static void
  649. close_directory_connections(const hs_service_t *service,
  650. const hs_service_descriptor_t *desc)
  651. {
  652. unsigned int count = 0;
  653. smartlist_t *dir_conns;
  654. tor_assert(service);
  655. tor_assert(desc);
  656. /* Close pending HS desc upload connections for the blinded key of 'desc'. */
  657. dir_conns = connection_list_by_type_purpose(CONN_TYPE_DIR,
  658. DIR_PURPOSE_UPLOAD_HSDESC);
  659. SMARTLIST_FOREACH_BEGIN(dir_conns, connection_t *, conn) {
  660. dir_connection_t *dir_conn = TO_DIR_CONN(conn);
  661. if (ed25519_pubkey_eq(&dir_conn->hs_ident->identity_pk,
  662. &service->keys.identity_pk) &&
  663. ed25519_pubkey_eq(&dir_conn->hs_ident->blinded_pk,
  664. &desc->blinded_kp.pubkey)) {
  665. connection_mark_for_close(conn);
  666. count++;
  667. continue;
  668. }
  669. } SMARTLIST_FOREACH_END(conn);
  670. log_info(LD_REND, "Closed %u active service directory connections for "
  671. "descriptor %s of service %s",
  672. count, safe_str_client(ed25519_fmt(&desc->blinded_kp.pubkey)),
  673. safe_str_client(service->onion_address));
  674. /* We don't have ownership of the objects in this list. */
  675. smartlist_free(dir_conns);
  676. }
  677. /* Close all rendezvous circuits for the given service. */
  678. static void
  679. close_service_rp_circuits(hs_service_t *service)
  680. {
  681. origin_circuit_t *ocirc = NULL;
  682. tor_assert(service);
  683. /* The reason we go over all circuit instead of using the circuitmap API is
  684. * because most hidden service circuits are rendezvous circuits so there is
  685. * no real improvement at getting all rendezvous circuits from the
  686. * circuitmap and then going over them all to find the right ones.
  687. * Furthermore, another option would have been to keep a list of RP cookies
  688. * for a service but it creates an engineering complexity since we don't
  689. * have a "RP circuit closed" event to clean it up properly so we avoid a
  690. * memory DoS possibility. */
  691. while ((ocirc = circuit_get_next_service_rp_circ(ocirc))) {
  692. /* Only close circuits that are v3 and for this service. */
  693. if (ocirc->hs_ident != NULL &&
  694. ed25519_pubkey_eq(&ocirc->hs_ident->identity_pk,
  695. &service->keys.identity_pk)) {
  696. /* Reason is FINISHED because service has been removed and thus the
  697. * circuit is considered old/uneeded. When freed, it is removed from the
  698. * hs circuitmap. */
  699. circuit_mark_for_close(TO_CIRCUIT(ocirc), END_CIRC_REASON_FINISHED);
  700. }
  701. }
  702. }
  703. /* Close the circuit(s) for the given map of introduction points. */
  704. static void
  705. close_intro_circuits(hs_service_intropoints_t *intro_points)
  706. {
  707. tor_assert(intro_points);
  708. DIGEST256MAP_FOREACH(intro_points->map, key,
  709. const hs_service_intro_point_t *, ip) {
  710. origin_circuit_t *ocirc = hs_circ_service_get_intro_circ(ip);
  711. if (ocirc) {
  712. /* Reason is FINISHED because service has been removed and thus the
  713. * circuit is considered old/uneeded. When freed, the circuit is removed
  714. * from the HS circuitmap. */
  715. circuit_mark_for_close(TO_CIRCUIT(ocirc), END_CIRC_REASON_FINISHED);
  716. }
  717. } DIGEST256MAP_FOREACH_END;
  718. }
  719. /* Close all introduction circuits for the given service. */
  720. static void
  721. close_service_intro_circuits(hs_service_t *service)
  722. {
  723. tor_assert(service);
  724. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  725. close_intro_circuits(&desc->intro_points);
  726. } FOR_EACH_DESCRIPTOR_END;
  727. }
  728. /* Close any circuits related to the given service. */
  729. static void
  730. close_service_circuits(hs_service_t *service)
  731. {
  732. tor_assert(service);
  733. /* Only support for version >= 3. */
  734. if (BUG(service->config.version < HS_VERSION_THREE)) {
  735. return;
  736. }
  737. /* Close intro points. */
  738. close_service_intro_circuits(service);
  739. /* Close rendezvous points. */
  740. close_service_rp_circuits(service);
  741. }
  742. /* Move every ephemeral services from the src service map to the dst service
  743. * map. It is possible that a service can't be register to the dst map which
  744. * won't stop the process of moving them all but will trigger a log warn. */
  745. static void
  746. move_ephemeral_services(hs_service_ht *src, hs_service_ht *dst)
  747. {
  748. hs_service_t **iter, **next;
  749. tor_assert(src);
  750. tor_assert(dst);
  751. /* Iterate over the map to find ephemeral service and move them to the other
  752. * map. We loop using this method to have a safe removal process. */
  753. for (iter = HT_START(hs_service_ht, src); iter != NULL; iter = next) {
  754. hs_service_t *s = *iter;
  755. if (!s->config.is_ephemeral) {
  756. /* Yeah, we are in a very manual loop :). */
  757. next = HT_NEXT(hs_service_ht, src, iter);
  758. continue;
  759. }
  760. /* Remove service from map and then register to it to the other map.
  761. * Reminder that "*iter" and "s" are the same thing. */
  762. next = HT_NEXT_RMV(hs_service_ht, src, iter);
  763. if (register_service(dst, s) < 0) {
  764. log_warn(LD_BUG, "Ephemeral service key is already being used. "
  765. "Skipping.");
  766. }
  767. }
  768. }
  769. /* Return a const string of the directory path escaped. If this is an
  770. * ephemeral service, it returns "[EPHEMERAL]". This can only be called from
  771. * the main thread because escaped() uses a static variable. */
  772. static const char *
  773. service_escaped_dir(const hs_service_t *s)
  774. {
  775. return (s->config.is_ephemeral) ? "[EPHEMERAL]" :
  776. escaped(s->config.directory_path);
  777. }
  778. /** Move the hidden service state from <b>src</b> to <b>dst</b>. We do this
  779. * when we receive a SIGHUP: <b>dst</b> is the post-HUP service */
  780. static void
  781. move_hs_state(hs_service_t *src_service, hs_service_t *dst_service)
  782. {
  783. tor_assert(src_service);
  784. tor_assert(dst_service);
  785. hs_service_state_t *src = &src_service->state;
  786. hs_service_state_t *dst = &dst_service->state;
  787. /* Let's do a shallow copy */
  788. dst->intro_circ_retry_started_time = src->intro_circ_retry_started_time;
  789. dst->num_intro_circ_launched = src->num_intro_circ_launched;
  790. /* Freeing a NULL replaycache triggers an info LD_BUG. */
  791. if (dst->replay_cache_rend_cookie != NULL) {
  792. replaycache_free(dst->replay_cache_rend_cookie);
  793. }
  794. dst->replay_cache_rend_cookie = src->replay_cache_rend_cookie;
  795. dst->next_rotation_time = src->next_rotation_time;
  796. src->replay_cache_rend_cookie = NULL; /* steal pointer reference */
  797. }
  798. /* Register services that are in the staging list. Once this function returns,
  799. * the global service map will be set with the right content and all non
  800. * surviving services will be cleaned up. */
  801. static void
  802. register_all_services(void)
  803. {
  804. struct hs_service_ht *new_service_map;
  805. tor_assert(hs_service_staging_list);
  806. /* Allocate a new map that will replace the current one. */
  807. new_service_map = tor_malloc_zero(sizeof(*new_service_map));
  808. HT_INIT(hs_service_ht, new_service_map);
  809. /* First step is to transfer all ephemeral services from the current global
  810. * map to the new one we are constructing. We do not prune ephemeral
  811. * services as the only way to kill them is by deleting it from the control
  812. * port or stopping the tor daemon. */
  813. move_ephemeral_services(hs_service_map, new_service_map);
  814. SMARTLIST_FOREACH_BEGIN(hs_service_staging_list, hs_service_t *, snew) {
  815. hs_service_t *s;
  816. /* Check if that service is already in our global map and if so, we'll
  817. * transfer the intro points to it. */
  818. s = find_service(hs_service_map, &snew->keys.identity_pk);
  819. if (s) {
  820. /* Pass ownership of the descriptors from s (the current service) to
  821. * snew (the newly configured one). */
  822. move_descriptors(s, snew);
  823. move_hs_state(s, snew);
  824. /* Remove the service from the global map because after this, we need to
  825. * go over the remaining service in that map that aren't surviving the
  826. * reload to close their circuits. */
  827. remove_service(hs_service_map, s);
  828. hs_service_free(s);
  829. }
  830. /* Great, this service is now ready to be added to our new map. */
  831. if (BUG(register_service(new_service_map, snew) < 0)) {
  832. /* This should never happen because prior to registration, we validate
  833. * every service against the entire set. Not being able to register a
  834. * service means we failed to validate correctly. In that case, don't
  835. * break tor and ignore the service but tell user. */
  836. log_warn(LD_BUG, "Unable to register service with directory %s",
  837. service_escaped_dir(snew));
  838. SMARTLIST_DEL_CURRENT(hs_service_staging_list, snew);
  839. hs_service_free(snew);
  840. }
  841. } SMARTLIST_FOREACH_END(snew);
  842. /* Close any circuits associated with the non surviving services. Every
  843. * service in the current global map are roaming. */
  844. FOR_EACH_SERVICE_BEGIN(service) {
  845. close_service_circuits(service);
  846. } FOR_EACH_SERVICE_END;
  847. /* Time to make the switch. We'll clear the staging list because its content
  848. * has now changed ownership to the map. */
  849. smartlist_clear(hs_service_staging_list);
  850. service_free_all();
  851. hs_service_map = new_service_map;
  852. /* We've just register services into the new map and now we've replaced the
  853. * global map with it so we have to notify that the change happened. When
  854. * registering a service, the notify is only triggered if the destination
  855. * map is the global map for which in here it was not. */
  856. hs_service_map_has_changed();
  857. }
  858. /* Write the onion address of a given service to the given filename fname_ in
  859. * the service directory. Return 0 on success else -1 on error. */
  860. STATIC int
  861. write_address_to_file(const hs_service_t *service, const char *fname_)
  862. {
  863. int ret = -1;
  864. char *fname = NULL;
  865. char *addr_buf = NULL;
  866. tor_assert(service);
  867. tor_assert(fname_);
  868. /* Construct the full address with the onion tld and write the hostname file
  869. * to disk. */
  870. tor_asprintf(&addr_buf, "%s.%s\n", service->onion_address, address_tld);
  871. /* Notice here that we use the given "fname_". */
  872. fname = hs_path_from_filename(service->config.directory_path, fname_);
  873. if (write_str_to_file(fname, addr_buf, 0) < 0) {
  874. log_warn(LD_REND, "Could not write onion address to hostname file %s",
  875. escaped(fname));
  876. goto end;
  877. }
  878. #ifndef _WIN32
  879. if (service->config.dir_group_readable) {
  880. /* Mode to 0640. */
  881. if (chmod(fname, S_IRUSR | S_IWUSR | S_IRGRP) < 0) {
  882. log_warn(LD_FS, "Unable to make onion service hostname file %s "
  883. "group-readable.", escaped(fname));
  884. }
  885. }
  886. #endif /* !defined(_WIN32) */
  887. /* Success. */
  888. ret = 0;
  889. end:
  890. tor_free(fname);
  891. tor_free(addr_buf);
  892. return ret;
  893. }
  894. /* Load and/or generate private keys for the given service. On success, the
  895. * hostname file will be written to disk along with the master private key iff
  896. * the service is not configured for offline keys. Return 0 on success else -1
  897. * on failure. */
  898. static int
  899. load_service_keys(hs_service_t *service)
  900. {
  901. int ret = -1;
  902. char *fname = NULL;
  903. ed25519_keypair_t *kp;
  904. const hs_service_config_t *config;
  905. tor_assert(service);
  906. config = &service->config;
  907. /* Create and fix permission on service directory. We are about to write
  908. * files to that directory so make sure it exists and has the right
  909. * permissions. We do this here because at this stage we know that Tor is
  910. * actually running and the service we have has been validated. */
  911. if (hs_check_service_private_dir(get_options()->User,
  912. config->directory_path,
  913. config->dir_group_readable, 1) < 0) {
  914. goto end;
  915. }
  916. /* Try to load the keys from file or generate it if not found. */
  917. fname = hs_path_from_filename(config->directory_path, fname_keyfile_prefix);
  918. /* Don't ask for key creation, we want to know if we were able to load it or
  919. * we had to generate it. Better logging! */
  920. kp = ed_key_init_from_file(fname, INIT_ED_KEY_SPLIT, LOG_INFO, NULL, 0, 0,
  921. 0, NULL, NULL);
  922. if (!kp) {
  923. log_info(LD_REND, "Unable to load keys from %s. Generating it...", fname);
  924. /* We'll now try to generate the keys and for it we want the strongest
  925. * randomness for it. The keypair will be written in different files. */
  926. uint32_t key_flags = INIT_ED_KEY_CREATE | INIT_ED_KEY_EXTRA_STRONG |
  927. INIT_ED_KEY_SPLIT;
  928. kp = ed_key_init_from_file(fname, key_flags, LOG_WARN, NULL, 0, 0, 0,
  929. NULL, NULL);
  930. if (!kp) {
  931. log_warn(LD_REND, "Unable to generate keys and save in %s.", fname);
  932. goto end;
  933. }
  934. }
  935. /* Copy loaded or generated keys to service object. */
  936. ed25519_pubkey_copy(&service->keys.identity_pk, &kp->pubkey);
  937. memcpy(&service->keys.identity_sk, &kp->seckey,
  938. sizeof(service->keys.identity_sk));
  939. /* This does a proper memory wipe. */
  940. ed25519_keypair_free(kp);
  941. /* Build onion address from the newly loaded keys. */
  942. tor_assert(service->config.version <= UINT8_MAX);
  943. hs_build_address(&service->keys.identity_pk,
  944. (uint8_t) service->config.version,
  945. service->onion_address);
  946. /* Write onion address to hostname file. */
  947. if (write_address_to_file(service, fname_hostname) < 0) {
  948. goto end;
  949. }
  950. /* Load all client authorization keys in the service. */
  951. if (load_client_keys(service) < 0) {
  952. goto end;
  953. }
  954. /* Succes. */
  955. ret = 0;
  956. end:
  957. tor_free(fname);
  958. return ret;
  959. }
  960. /* Check if the client file name is valid or not. Return 1 if valid,
  961. * otherwise return 0. */
  962. STATIC int
  963. client_filename_is_valid(const char *filename)
  964. {
  965. int ret = 1;
  966. const char *valid_extension = ".auth";
  967. tor_assert(filename);
  968. /* The file extension must match and the total filename length can't be the
  969. * length of the extension else we do not have a filename. */
  970. if (!strcmpend(filename, valid_extension) &&
  971. strlen(filename) != strlen(valid_extension)) {
  972. ret = 1;
  973. } else {
  974. ret = 0;
  975. }
  976. return ret;
  977. }
  978. /* Parse an authorized client from a string. The format of a client string
  979. * looks like (see rend-spec-v3.txt):
  980. *
  981. * <auth-type>:<key-type>:<base32-encoded-public-key>
  982. *
  983. * The <auth-type> can only be "descriptor".
  984. * The <key-type> can only be "x25519".
  985. *
  986. * Return the key on success, return NULL, otherwise. */
  987. STATIC hs_service_authorized_client_t *
  988. parse_authorized_client(const char *client_key_str)
  989. {
  990. char *auth_type = NULL;
  991. char *key_type = NULL;
  992. char *pubkey_b32 = NULL;
  993. hs_service_authorized_client_t *client = NULL;
  994. smartlist_t *fields = smartlist_new();
  995. tor_assert(client_key_str);
  996. smartlist_split_string(fields, client_key_str, ":",
  997. SPLIT_SKIP_SPACE, 0);
  998. /* Wrong number of fields. */
  999. if (smartlist_len(fields) != 3) {
  1000. log_warn(LD_REND, "Unknown format of client authorization file.");
  1001. goto err;
  1002. }
  1003. auth_type = smartlist_get(fields, 0);
  1004. key_type = smartlist_get(fields, 1);
  1005. pubkey_b32 = smartlist_get(fields, 2);
  1006. /* Currently, the only supported auth type is "descriptor". */
  1007. if (strcmp(auth_type, "descriptor")) {
  1008. log_warn(LD_REND, "Client authorization auth type '%s' not supported.",
  1009. auth_type);
  1010. goto err;
  1011. }
  1012. /* Currently, the only supported key type is "x25519". */
  1013. if (strcmp(key_type, "x25519")) {
  1014. log_warn(LD_REND, "Client authorization key type '%s' not supported.",
  1015. key_type);
  1016. goto err;
  1017. }
  1018. /* We expect a specific length of the base32 encoded key so make sure we
  1019. * have that so we don't successfully decode a value with a different length
  1020. * and end up in trouble when copying the decoded key into a fixed length
  1021. * buffer. */
  1022. if (strlen(pubkey_b32) != BASE32_NOPAD_LEN(CURVE25519_PUBKEY_LEN)) {
  1023. log_warn(LD_REND, "Client authorization encoded base32 public key "
  1024. "length is invalid: %s", pubkey_b32);
  1025. goto err;
  1026. }
  1027. client = tor_malloc_zero(sizeof(hs_service_authorized_client_t));
  1028. if (base32_decode((char *) client->client_pk.public_key,
  1029. sizeof(client->client_pk.public_key),
  1030. pubkey_b32, strlen(pubkey_b32)) < 0) {
  1031. log_warn(LD_REND, "Client authorization public key cannot be decoded: %s",
  1032. pubkey_b32);
  1033. goto err;
  1034. }
  1035. /* Success. */
  1036. goto done;
  1037. err:
  1038. service_authorized_client_free(client);
  1039. done:
  1040. /* It is also a good idea to wipe the public key. */
  1041. if (pubkey_b32) {
  1042. memwipe(pubkey_b32, 0, strlen(pubkey_b32));
  1043. }
  1044. tor_assert(fields);
  1045. SMARTLIST_FOREACH(fields, char *, s, tor_free(s));
  1046. smartlist_free(fields);
  1047. return client;
  1048. }
  1049. /* Load all the client public keys for the given service. Return 0 on
  1050. * success else -1 on failure. */
  1051. static int
  1052. load_client_keys(hs_service_t *service)
  1053. {
  1054. int ret = -1;
  1055. char *client_key_str = NULL;
  1056. char *client_key_file_path = NULL;
  1057. char *client_keys_dir_path = NULL;
  1058. hs_service_config_t *config;
  1059. smartlist_t *file_list = NULL;
  1060. tor_assert(service);
  1061. config = &service->config;
  1062. /* Before calling this function, we already call load_service_keys to make
  1063. * sure that the directory exists with the right permission. So, if we
  1064. * cannot create a client pubkey key directory, we consider it as a bug. */
  1065. client_keys_dir_path = hs_path_from_filename(config->directory_path,
  1066. dname_client_pubkeys);
  1067. if (BUG(hs_check_service_private_dir(get_options()->User,
  1068. client_keys_dir_path,
  1069. config->dir_group_readable, 1) < 0)) {
  1070. goto end;
  1071. }
  1072. /* If the list of clients already exists, we must clear it first. */
  1073. if (config->clients) {
  1074. SMARTLIST_FOREACH(config->clients, hs_service_authorized_client_t *, p,
  1075. service_authorized_client_free(p));
  1076. smartlist_free(config->clients);
  1077. }
  1078. config->clients = smartlist_new();
  1079. file_list = tor_listdir(client_keys_dir_path);
  1080. if (file_list == NULL) {
  1081. log_warn(LD_REND, "Client authorization directory %s can't be listed.",
  1082. client_keys_dir_path);
  1083. goto end;
  1084. }
  1085. SMARTLIST_FOREACH_BEGIN(file_list, const char *, filename) {
  1086. hs_service_authorized_client_t *client = NULL;
  1087. log_info(LD_REND, "Loading a client authorization key file %s...",
  1088. filename);
  1089. if (!client_filename_is_valid(filename)) {
  1090. log_warn(LD_REND, "Client authorization unrecognized filename %s. "
  1091. "File must end in .auth. Ignoring.", filename);
  1092. continue;
  1093. }
  1094. /* Create a full path for a file. */
  1095. client_key_file_path = hs_path_from_filename(client_keys_dir_path,
  1096. filename);
  1097. client_key_str = read_file_to_str(client_key_file_path, 0, NULL);
  1098. /* Free immediately after using it. */
  1099. tor_free(client_key_file_path);
  1100. /* If we cannot read the file, continue with the next file. */
  1101. if (!client_key_str) {
  1102. log_warn(LD_REND, "Client authorization file %s can't be read. "
  1103. "Corrupted or verify permission? Ignoring.",
  1104. client_key_file_path);
  1105. continue;
  1106. }
  1107. client = parse_authorized_client(client_key_str);
  1108. /* Wipe and free immediately after using it. */
  1109. memwipe(client_key_str, 0, strlen(client_key_str));
  1110. tor_free(client_key_str);
  1111. if (client) {
  1112. smartlist_add(config->clients, client);
  1113. log_info(LD_REND, "Loaded a client authorization key file %s.",
  1114. filename);
  1115. }
  1116. } SMARTLIST_FOREACH_END(filename);
  1117. /* If the number of clients is greater than zero, set the flag to be true. */
  1118. if (smartlist_len(config->clients) > 0) {
  1119. config->is_client_auth_enabled = 1;
  1120. }
  1121. /* Success. */
  1122. ret = 0;
  1123. end:
  1124. if (client_key_str) {
  1125. memwipe(client_key_str, 0, strlen(client_key_str));
  1126. }
  1127. if (file_list) {
  1128. SMARTLIST_FOREACH(file_list, char *, s, tor_free(s));
  1129. smartlist_free(file_list);
  1130. }
  1131. tor_free(client_key_str);
  1132. tor_free(client_key_file_path);
  1133. tor_free(client_keys_dir_path);
  1134. return ret;
  1135. }
  1136. STATIC void
  1137. service_authorized_client_free_(hs_service_authorized_client_t *client)
  1138. {
  1139. if (!client) {
  1140. return;
  1141. }
  1142. memwipe(&client->client_pk, 0, sizeof(client->client_pk));
  1143. tor_free(client);
  1144. }
  1145. /* Free a given service descriptor object and all key material is wiped. */
  1146. STATIC void
  1147. service_descriptor_free_(hs_service_descriptor_t *desc)
  1148. {
  1149. if (!desc) {
  1150. return;
  1151. }
  1152. hs_descriptor_free(desc->desc);
  1153. memwipe(&desc->signing_kp, 0, sizeof(desc->signing_kp));
  1154. memwipe(&desc->blinded_kp, 0, sizeof(desc->blinded_kp));
  1155. /* Cleanup all intro points. */
  1156. digest256map_free(desc->intro_points.map, service_intro_point_free_void);
  1157. digestmap_free(desc->intro_points.failed_id, tor_free_);
  1158. if (desc->previous_hsdirs) {
  1159. SMARTLIST_FOREACH(desc->previous_hsdirs, char *, s, tor_free(s));
  1160. smartlist_free(desc->previous_hsdirs);
  1161. }
  1162. crypto_ope_free(desc->ope_cipher);
  1163. tor_free(desc);
  1164. }
  1165. /* Return a newly allocated service descriptor object. */
  1166. STATIC hs_service_descriptor_t *
  1167. service_descriptor_new(void)
  1168. {
  1169. hs_service_descriptor_t *sdesc = tor_malloc_zero(sizeof(*sdesc));
  1170. sdesc->desc = tor_malloc_zero(sizeof(hs_descriptor_t));
  1171. /* Initialize the intro points map. */
  1172. sdesc->intro_points.map = digest256map_new();
  1173. sdesc->intro_points.failed_id = digestmap_new();
  1174. sdesc->previous_hsdirs = smartlist_new();
  1175. return sdesc;
  1176. }
  1177. /* Allocate and return a deep copy of client. */
  1178. static hs_service_authorized_client_t *
  1179. service_authorized_client_dup(const hs_service_authorized_client_t *client)
  1180. {
  1181. hs_service_authorized_client_t *client_dup = NULL;
  1182. tor_assert(client);
  1183. client_dup = tor_malloc_zero(sizeof(hs_service_authorized_client_t));
  1184. /* Currently, the public key is the only component of
  1185. * hs_service_authorized_client_t. */
  1186. memcpy(client_dup->client_pk.public_key,
  1187. client->client_pk.public_key,
  1188. CURVE25519_PUBKEY_LEN);
  1189. return client_dup;
  1190. }
  1191. /* If two authorized clients are equal, return 0. If the first one should come
  1192. * before the second, return less than zero. If the first should come after
  1193. * the second, return greater than zero. */
  1194. static int
  1195. service_authorized_client_cmp(const hs_service_authorized_client_t *client1,
  1196. const hs_service_authorized_client_t *client2)
  1197. {
  1198. tor_assert(client1);
  1199. tor_assert(client2);
  1200. /* Currently, the public key is the only component of
  1201. * hs_service_authorized_client_t. */
  1202. return tor_memcmp(client1->client_pk.public_key,
  1203. client2->client_pk.public_key,
  1204. CURVE25519_PUBKEY_LEN);
  1205. }
  1206. /* Helper for sorting authorized clients. */
  1207. static int
  1208. compare_service_authorzized_client_(const void **_a, const void **_b)
  1209. {
  1210. const hs_service_authorized_client_t *a = *_a, *b = *_b;
  1211. return service_authorized_client_cmp(a, b);
  1212. }
  1213. /* If the list of hs_service_authorized_client_t's is different between
  1214. * src and dst, return 1. Otherwise, return 0. */
  1215. STATIC int
  1216. service_authorized_client_config_equal(const hs_service_config_t *config1,
  1217. const hs_service_config_t *config2)
  1218. {
  1219. int ret = 0;
  1220. int i;
  1221. smartlist_t *sl1 = smartlist_new();
  1222. smartlist_t *sl2 = smartlist_new();
  1223. tor_assert(config1);
  1224. tor_assert(config2);
  1225. tor_assert(config1->clients);
  1226. tor_assert(config2->clients);
  1227. /* If the number of clients is different, it is obvious that the list
  1228. * changes. */
  1229. if (smartlist_len(config1->clients) != smartlist_len(config2->clients)) {
  1230. goto done;
  1231. }
  1232. /* We do not want to mutate config1 and config2, so we will duplicate both
  1233. * entire client lists here. */
  1234. SMARTLIST_FOREACH(config1->clients,
  1235. hs_service_authorized_client_t *, client,
  1236. smartlist_add(sl1, service_authorized_client_dup(client)));
  1237. SMARTLIST_FOREACH(config2->clients,
  1238. hs_service_authorized_client_t *, client,
  1239. smartlist_add(sl2, service_authorized_client_dup(client)));
  1240. smartlist_sort(sl1, compare_service_authorzized_client_);
  1241. smartlist_sort(sl2, compare_service_authorzized_client_);
  1242. for (i = 0; i < smartlist_len(sl1); i++) {
  1243. /* If the clients at index i in both lists differ, the whole configs
  1244. * differ. */
  1245. if (service_authorized_client_cmp(smartlist_get(sl1, i),
  1246. smartlist_get(sl2, i))) {
  1247. goto done;
  1248. }
  1249. }
  1250. /* Success. */
  1251. ret = 1;
  1252. done:
  1253. if (sl1) {
  1254. SMARTLIST_FOREACH(sl1, hs_service_authorized_client_t *, p,
  1255. service_authorized_client_free(p));
  1256. smartlist_free(sl1);
  1257. }
  1258. if (sl2) {
  1259. SMARTLIST_FOREACH(sl2, hs_service_authorized_client_t *, p,
  1260. service_authorized_client_free(p));
  1261. smartlist_free(sl2);
  1262. }
  1263. return ret;
  1264. }
  1265. /* Move descriptor(s) from the src service to the dst service and modify their
  1266. * content if necessary. We do this during SIGHUP when we re-create our
  1267. * hidden services. */
  1268. static void
  1269. move_descriptors(hs_service_t *src, hs_service_t *dst)
  1270. {
  1271. tor_assert(src);
  1272. tor_assert(dst);
  1273. if (src->desc_current) {
  1274. /* Nothing should be there, but clean it up just in case */
  1275. if (BUG(dst->desc_current)) {
  1276. service_descriptor_free(dst->desc_current);
  1277. }
  1278. dst->desc_current = src->desc_current;
  1279. src->desc_current = NULL;
  1280. }
  1281. if (src->desc_next) {
  1282. /* Nothing should be there, but clean it up just in case */
  1283. if (BUG(dst->desc_next)) {
  1284. service_descriptor_free(dst->desc_next);
  1285. }
  1286. dst->desc_next = src->desc_next;
  1287. src->desc_next = NULL;
  1288. }
  1289. /* If the client authorization changes, we must rebuild the superencrypted
  1290. * section and republish the descriptors. */
  1291. int client_auth_changed =
  1292. !service_authorized_client_config_equal(&src->config, &dst->config);
  1293. if (client_auth_changed && dst->desc_current) {
  1294. /* We have to clear the superencrypted content first. */
  1295. hs_desc_superencrypted_data_free_contents(
  1296. &dst->desc_current->desc->superencrypted_data);
  1297. if (build_service_desc_superencrypted(dst, dst->desc_current) < 0) {
  1298. goto err;
  1299. }
  1300. service_desc_schedule_upload(dst->desc_current, time(NULL), 1);
  1301. }
  1302. if (client_auth_changed && dst->desc_next) {
  1303. /* We have to clear the superencrypted content first. */
  1304. hs_desc_superencrypted_data_free_contents(
  1305. &dst->desc_next->desc->superencrypted_data);
  1306. if (build_service_desc_superencrypted(dst, dst->desc_next) < 0) {
  1307. goto err;
  1308. }
  1309. service_desc_schedule_upload(dst->desc_next, time(NULL), 1);
  1310. }
  1311. return;
  1312. err:
  1313. /* If there is an error, free all descriptors to make it clean and generate
  1314. * them later. */
  1315. service_descriptor_free(dst->desc_current);
  1316. service_descriptor_free(dst->desc_next);
  1317. }
  1318. /* From the given service, remove all expired failing intro points for each
  1319. * descriptor. */
  1320. static void
  1321. remove_expired_failing_intro(hs_service_t *service, time_t now)
  1322. {
  1323. tor_assert(service);
  1324. /* For both descriptors, cleanup the failing intro points list. */
  1325. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  1326. DIGESTMAP_FOREACH_MODIFY(desc->intro_points.failed_id, key, time_t *, t) {
  1327. time_t failure_time = *t;
  1328. if ((failure_time + INTRO_CIRC_RETRY_PERIOD) <= now) {
  1329. MAP_DEL_CURRENT(key);
  1330. tor_free(t);
  1331. }
  1332. } DIGESTMAP_FOREACH_END;
  1333. } FOR_EACH_DESCRIPTOR_END;
  1334. }
  1335. /* For the given descriptor desc, put all node_t object found from its failing
  1336. * intro point list and put them in the given node_list. */
  1337. static void
  1338. setup_intro_point_exclude_list(const hs_service_descriptor_t *desc,
  1339. smartlist_t *node_list)
  1340. {
  1341. tor_assert(desc);
  1342. tor_assert(node_list);
  1343. DIGESTMAP_FOREACH(desc->intro_points.failed_id, key, time_t *, t) {
  1344. (void) t; /* Make gcc happy. */
  1345. const node_t *node = node_get_by_id(key);
  1346. if (node) {
  1347. smartlist_add(node_list, (void *) node);
  1348. }
  1349. } DIGESTMAP_FOREACH_END;
  1350. }
  1351. /* For the given failing intro point ip, we add its time of failure to the
  1352. * failed map and index it by identity digest (legacy ID) in the descriptor
  1353. * desc failed id map. */
  1354. static void
  1355. remember_failing_intro_point(const hs_service_intro_point_t *ip,
  1356. hs_service_descriptor_t *desc, time_t now)
  1357. {
  1358. time_t *time_of_failure, *prev_ptr;
  1359. const hs_desc_link_specifier_t *legacy_ls;
  1360. tor_assert(ip);
  1361. tor_assert(desc);
  1362. time_of_failure = tor_malloc_zero(sizeof(time_t));
  1363. *time_of_failure = now;
  1364. legacy_ls = get_link_spec_by_type(ip, LS_LEGACY_ID);
  1365. tor_assert(legacy_ls);
  1366. prev_ptr = digestmap_set(desc->intro_points.failed_id,
  1367. (const char *) legacy_ls->u.legacy_id,
  1368. time_of_failure);
  1369. tor_free(prev_ptr);
  1370. }
  1371. /* Copy the descriptor link specifier object from src to dst. */
  1372. static void
  1373. link_specifier_copy(hs_desc_link_specifier_t *dst,
  1374. const hs_desc_link_specifier_t *src)
  1375. {
  1376. tor_assert(dst);
  1377. tor_assert(src);
  1378. memcpy(dst, src, sizeof(hs_desc_link_specifier_t));
  1379. }
  1380. /* Using a given descriptor signing keypair signing_kp, a service intro point
  1381. * object ip and the time now, setup the content of an already allocated
  1382. * descriptor intro desc_ip.
  1383. *
  1384. * Return 0 on success else a negative value. */
  1385. static int
  1386. setup_desc_intro_point(const ed25519_keypair_t *signing_kp,
  1387. const hs_service_intro_point_t *ip,
  1388. time_t now, hs_desc_intro_point_t *desc_ip)
  1389. {
  1390. int ret = -1;
  1391. time_t nearest_hour = now - (now % 3600);
  1392. tor_assert(signing_kp);
  1393. tor_assert(ip);
  1394. tor_assert(desc_ip);
  1395. /* Copy the onion key. */
  1396. memcpy(&desc_ip->onion_key, &ip->onion_key, sizeof(desc_ip->onion_key));
  1397. /* Key and certificate material. */
  1398. desc_ip->auth_key_cert = tor_cert_create(signing_kp,
  1399. CERT_TYPE_AUTH_HS_IP_KEY,
  1400. &ip->auth_key_kp.pubkey,
  1401. nearest_hour,
  1402. HS_DESC_CERT_LIFETIME,
  1403. CERT_FLAG_INCLUDE_SIGNING_KEY);
  1404. if (desc_ip->auth_key_cert == NULL) {
  1405. log_warn(LD_REND, "Unable to create intro point auth-key certificate");
  1406. goto done;
  1407. }
  1408. /* Copy link specifier(s). */
  1409. SMARTLIST_FOREACH_BEGIN(ip->base.link_specifiers,
  1410. const hs_desc_link_specifier_t *, ls) {
  1411. hs_desc_link_specifier_t *copy = tor_malloc_zero(sizeof(*copy));
  1412. link_specifier_copy(copy, ls);
  1413. smartlist_add(desc_ip->link_specifiers, copy);
  1414. } SMARTLIST_FOREACH_END(ls);
  1415. /* For a legacy intro point, we'll use an RSA/ed cross certificate. */
  1416. if (ip->base.is_only_legacy) {
  1417. desc_ip->legacy.key = crypto_pk_dup_key(ip->legacy_key);
  1418. /* Create cross certification cert. */
  1419. ssize_t cert_len = tor_make_rsa_ed25519_crosscert(
  1420. &signing_kp->pubkey,
  1421. desc_ip->legacy.key,
  1422. nearest_hour + HS_DESC_CERT_LIFETIME,
  1423. &desc_ip->legacy.cert.encoded);
  1424. if (cert_len < 0) {
  1425. log_warn(LD_REND, "Unable to create enc key legacy cross cert.");
  1426. goto done;
  1427. }
  1428. desc_ip->legacy.cert.len = cert_len;
  1429. }
  1430. /* Encryption key and its cross certificate. */
  1431. {
  1432. ed25519_public_key_t ed25519_pubkey;
  1433. /* Use the public curve25519 key. */
  1434. memcpy(&desc_ip->enc_key, &ip->enc_key_kp.pubkey,
  1435. sizeof(desc_ip->enc_key));
  1436. /* The following can't fail. */
  1437. ed25519_public_key_from_curve25519_public_key(&ed25519_pubkey,
  1438. &ip->enc_key_kp.pubkey,
  1439. 0);
  1440. desc_ip->enc_key_cert = tor_cert_create(signing_kp,
  1441. CERT_TYPE_CROSS_HS_IP_KEYS,
  1442. &ed25519_pubkey, nearest_hour,
  1443. HS_DESC_CERT_LIFETIME,
  1444. CERT_FLAG_INCLUDE_SIGNING_KEY);
  1445. if (desc_ip->enc_key_cert == NULL) {
  1446. log_warn(LD_REND, "Unable to create enc key curve25519 cross cert.");
  1447. goto done;
  1448. }
  1449. }
  1450. /* Success. */
  1451. ret = 0;
  1452. done:
  1453. return ret;
  1454. }
  1455. /* Using the given descriptor from the given service, build the descriptor
  1456. * intro point list so we can then encode the descriptor for publication. This
  1457. * function does not pick intro points, they have to be in the descriptor
  1458. * current map. Cryptographic material (keys) must be initialized in the
  1459. * descriptor for this function to make sense. */
  1460. static void
  1461. build_desc_intro_points(const hs_service_t *service,
  1462. hs_service_descriptor_t *desc, time_t now)
  1463. {
  1464. hs_desc_encrypted_data_t *encrypted;
  1465. tor_assert(service);
  1466. tor_assert(desc);
  1467. /* Ease our life. */
  1468. encrypted = &desc->desc->encrypted_data;
  1469. /* Cleanup intro points, we are about to set them from scratch. */
  1470. hs_descriptor_clear_intro_points(desc->desc);
  1471. DIGEST256MAP_FOREACH(desc->intro_points.map, key,
  1472. const hs_service_intro_point_t *, ip) {
  1473. hs_desc_intro_point_t *desc_ip = hs_desc_intro_point_new();
  1474. if (setup_desc_intro_point(&desc->signing_kp, ip, now, desc_ip) < 0) {
  1475. hs_desc_intro_point_free(desc_ip);
  1476. continue;
  1477. }
  1478. /* We have a valid descriptor intro point. Add it to the list. */
  1479. smartlist_add(encrypted->intro_points, desc_ip);
  1480. } DIGEST256MAP_FOREACH_END;
  1481. }
  1482. /* Populate the descriptor encrypted section from the given service object.
  1483. * This will generate a valid list of introduction points that can be used
  1484. * after for circuit creation. Return 0 on success else -1 on error. */
  1485. static int
  1486. build_service_desc_encrypted(const hs_service_t *service,
  1487. hs_service_descriptor_t *desc)
  1488. {
  1489. hs_desc_encrypted_data_t *encrypted;
  1490. tor_assert(service);
  1491. tor_assert(desc);
  1492. encrypted = &desc->desc->encrypted_data;
  1493. encrypted->create2_ntor = 1;
  1494. encrypted->single_onion_service = service->config.is_single_onion;
  1495. /* Setup introduction points from what we have in the service. */
  1496. if (encrypted->intro_points == NULL) {
  1497. encrypted->intro_points = smartlist_new();
  1498. }
  1499. /* We do NOT build introduction point yet, we only do that once the circuit
  1500. * have been opened. Until we have the right number of introduction points,
  1501. * we do not encode anything in the descriptor. */
  1502. /* XXX: Support client authorization (#20700). */
  1503. encrypted->intro_auth_types = NULL;
  1504. return 0;
  1505. }
  1506. /* Populate the descriptor superencrypted section from the given service
  1507. * object. This will generate a valid list of hs_desc_authorized_client_t
  1508. * of clients that are authorized to use the service. Return 0 on success
  1509. * else -1 on error. */
  1510. static int
  1511. build_service_desc_superencrypted(const hs_service_t *service,
  1512. hs_service_descriptor_t *desc)
  1513. {
  1514. const hs_service_config_t *config;
  1515. int i;
  1516. hs_desc_superencrypted_data_t *superencrypted;
  1517. tor_assert(service);
  1518. tor_assert(desc);
  1519. superencrypted = &desc->desc->superencrypted_data;
  1520. config = &service->config;
  1521. /* The ephemeral key pair is already generated, so this should not give
  1522. * an error. */
  1523. if (BUG(!curve25519_public_key_is_ok(&desc->auth_ephemeral_kp.pubkey))) {
  1524. return -1;
  1525. }
  1526. memcpy(&superencrypted->auth_ephemeral_pubkey,
  1527. &desc->auth_ephemeral_kp.pubkey,
  1528. sizeof(curve25519_public_key_t));
  1529. /* Test that subcred is not zero because we might use it below */
  1530. if (BUG(tor_mem_is_zero((char*)desc->desc->subcredential, DIGEST256_LEN))) {
  1531. return -1;
  1532. }
  1533. /* Create a smartlist to store clients */
  1534. superencrypted->clients = smartlist_new();
  1535. /* We do not need to build the desc authorized client if the client
  1536. * authorization is disabled */
  1537. if (config->is_client_auth_enabled) {
  1538. SMARTLIST_FOREACH_BEGIN(config->clients,
  1539. hs_service_authorized_client_t *, client) {
  1540. hs_desc_authorized_client_t *desc_client;
  1541. desc_client = tor_malloc_zero(sizeof(hs_desc_authorized_client_t));
  1542. /* Prepare the client for descriptor and then add to the list in the
  1543. * superencrypted part of the descriptor */
  1544. hs_desc_build_authorized_client(desc->desc->subcredential,
  1545. &client->client_pk,
  1546. &desc->auth_ephemeral_kp.seckey,
  1547. desc->descriptor_cookie, desc_client);
  1548. smartlist_add(superencrypted->clients, desc_client);
  1549. } SMARTLIST_FOREACH_END(client);
  1550. }
  1551. /* We cannot let the number of auth-clients to be zero, so we need to
  1552. * make it be 16. If it is already a multiple of 16, we do not need to
  1553. * do anything. Otherwise, add the additional ones to make it a
  1554. * multiple of 16. */
  1555. int num_clients = smartlist_len(superencrypted->clients);
  1556. int num_clients_to_add;
  1557. if (num_clients == 0) {
  1558. num_clients_to_add = HS_DESC_AUTH_CLIENT_MULTIPLE;
  1559. } else if (num_clients % HS_DESC_AUTH_CLIENT_MULTIPLE == 0) {
  1560. num_clients_to_add = 0;
  1561. } else {
  1562. num_clients_to_add =
  1563. HS_DESC_AUTH_CLIENT_MULTIPLE
  1564. - (num_clients % HS_DESC_AUTH_CLIENT_MULTIPLE);
  1565. }
  1566. for (i = 0; i < num_clients_to_add; i++) {
  1567. hs_desc_authorized_client_t *desc_client =
  1568. hs_desc_build_fake_authorized_client();
  1569. smartlist_add(superencrypted->clients, desc_client);
  1570. }
  1571. /* Shuffle the list to prevent the client know the position in the
  1572. * config. */
  1573. smartlist_shuffle(superencrypted->clients);
  1574. return 0;
  1575. }
  1576. /* Populate the descriptor plaintext section from the given service object.
  1577. * The caller must make sure that the keys in the descriptors are valid that
  1578. * is are non-zero. Return 0 on success else -1 on error. */
  1579. static int
  1580. build_service_desc_plaintext(const hs_service_t *service,
  1581. hs_service_descriptor_t *desc, time_t now)
  1582. {
  1583. int ret = -1;
  1584. hs_desc_plaintext_data_t *plaintext;
  1585. tor_assert(service);
  1586. tor_assert(desc);
  1587. /* XXX: Use a "assert_desc_ok()" ? */
  1588. tor_assert(!tor_mem_is_zero((char *) &desc->blinded_kp,
  1589. sizeof(desc->blinded_kp)));
  1590. tor_assert(!tor_mem_is_zero((char *) &desc->signing_kp,
  1591. sizeof(desc->signing_kp)));
  1592. /* Set the subcredential. */
  1593. hs_get_subcredential(&service->keys.identity_pk, &desc->blinded_kp.pubkey,
  1594. desc->desc->subcredential);
  1595. plaintext = &desc->desc->plaintext_data;
  1596. plaintext->version = service->config.version;
  1597. plaintext->lifetime_sec = HS_DESC_DEFAULT_LIFETIME;
  1598. plaintext->signing_key_cert =
  1599. tor_cert_create(&desc->blinded_kp, CERT_TYPE_SIGNING_HS_DESC,
  1600. &desc->signing_kp.pubkey, now, HS_DESC_CERT_LIFETIME,
  1601. CERT_FLAG_INCLUDE_SIGNING_KEY);
  1602. if (plaintext->signing_key_cert == NULL) {
  1603. log_warn(LD_REND, "Unable to create descriptor signing certificate for "
  1604. "service %s",
  1605. safe_str_client(service->onion_address));
  1606. goto end;
  1607. }
  1608. /* Copy public key material to go in the descriptor. */
  1609. ed25519_pubkey_copy(&plaintext->signing_pubkey, &desc->signing_kp.pubkey);
  1610. ed25519_pubkey_copy(&plaintext->blinded_pubkey, &desc->blinded_kp.pubkey);
  1611. /* Success. */
  1612. ret = 0;
  1613. end:
  1614. return ret;
  1615. }
  1616. /** Compute the descriptor's OPE cipher for encrypting revision counters. */
  1617. static crypto_ope_t *
  1618. generate_ope_cipher_for_desc(const hs_service_descriptor_t *hs_desc)
  1619. {
  1620. /* Compute OPE key as H("rev-counter-generation" | blinded privkey) */
  1621. uint8_t key[DIGEST256_LEN];
  1622. crypto_digest_t *digest = crypto_digest256_new(DIGEST_SHA3_256);
  1623. const char ope_key_prefix[] = "rev-counter-generation";
  1624. const ed25519_secret_key_t *eph_privkey = &hs_desc->blinded_kp.seckey;
  1625. crypto_digest_add_bytes(digest, ope_key_prefix, sizeof(ope_key_prefix));
  1626. crypto_digest_add_bytes(digest, (char*)eph_privkey->seckey,
  1627. sizeof(eph_privkey->seckey));
  1628. crypto_digest_get_digest(digest, (char *)key, sizeof(key));
  1629. crypto_digest_free(digest);
  1630. return crypto_ope_new(key);
  1631. }
  1632. /* For the given service and descriptor object, create the key material which
  1633. * is the blinded keypair, the descriptor signing keypair, the ephemeral
  1634. * keypair, and the descriptor cookie. Return 0 on success else -1 on error
  1635. * where the generated keys MUST be ignored. */
  1636. static int
  1637. build_service_desc_keys(const hs_service_t *service,
  1638. hs_service_descriptor_t *desc)
  1639. {
  1640. int ret = -1;
  1641. ed25519_keypair_t kp;
  1642. tor_assert(desc);
  1643. tor_assert(!tor_mem_is_zero((char *) &service->keys.identity_pk,
  1644. ED25519_PUBKEY_LEN));
  1645. /* XXX: Support offline key feature (#18098). */
  1646. /* Copy the identity keys to the keypair so we can use it to create the
  1647. * blinded key. */
  1648. memcpy(&kp.pubkey, &service->keys.identity_pk, sizeof(kp.pubkey));
  1649. memcpy(&kp.seckey, &service->keys.identity_sk, sizeof(kp.seckey));
  1650. /* Build blinded keypair for this time period. */
  1651. hs_build_blinded_keypair(&kp, NULL, 0, desc->time_period_num,
  1652. &desc->blinded_kp);
  1653. /* Let's not keep too much traces of our keys in memory. */
  1654. memwipe(&kp, 0, sizeof(kp));
  1655. /* Compute the OPE cipher struct (it's tied to the current blinded key) */
  1656. log_info(LD_GENERAL,
  1657. "Getting OPE for TP#%u", (unsigned) desc->time_period_num);
  1658. tor_assert_nonfatal(!desc->ope_cipher);
  1659. desc->ope_cipher = generate_ope_cipher_for_desc(desc);
  1660. /* No need for extra strong, this is a temporary key only for this
  1661. * descriptor. Nothing long term. */
  1662. if (ed25519_keypair_generate(&desc->signing_kp, 0) < 0) {
  1663. log_warn(LD_REND, "Can't generate descriptor signing keypair for "
  1664. "service %s",
  1665. safe_str_client(service->onion_address));
  1666. goto end;
  1667. }
  1668. /* No need for extra strong, this is a temporary key only for this
  1669. * descriptor. Nothing long term. */
  1670. if (curve25519_keypair_generate(&desc->auth_ephemeral_kp, 0) < 0) {
  1671. log_warn(LD_REND, "Can't generate auth ephemeral keypair for "
  1672. "service %s",
  1673. safe_str_client(service->onion_address));
  1674. goto end;
  1675. }
  1676. /* Random a descriptor cookie to be used as a part of a key to encrypt the
  1677. * descriptor, if the client auth is enabled. */
  1678. if (service->config.is_client_auth_enabled) {
  1679. crypto_strongest_rand(desc->descriptor_cookie,
  1680. sizeof(desc->descriptor_cookie));
  1681. }
  1682. /* Success. */
  1683. ret = 0;
  1684. end:
  1685. return ret;
  1686. }
  1687. /* Given a service and the current time, build a descriptor for the service.
  1688. * This function does not pick introduction point, this needs to be done by
  1689. * the update function. On success, desc_out will point to the newly allocated
  1690. * descriptor object.
  1691. *
  1692. * This can error if we are unable to create keys or certificate. */
  1693. static void
  1694. build_service_descriptor(hs_service_t *service, time_t now,
  1695. uint64_t time_period_num,
  1696. hs_service_descriptor_t **desc_out)
  1697. {
  1698. char *encoded_desc;
  1699. hs_service_descriptor_t *desc;
  1700. tor_assert(service);
  1701. tor_assert(desc_out);
  1702. desc = service_descriptor_new();
  1703. /* Set current time period */
  1704. desc->time_period_num = time_period_num;
  1705. /* Create the needed keys so we can setup the descriptor content. */
  1706. if (build_service_desc_keys(service, desc) < 0) {
  1707. goto err;
  1708. }
  1709. /* Setup plaintext descriptor content. */
  1710. if (build_service_desc_plaintext(service, desc, now) < 0) {
  1711. goto err;
  1712. }
  1713. /* Setup superencrypted descriptor content. */
  1714. if (build_service_desc_superencrypted(service, desc) < 0) {
  1715. goto err;
  1716. }
  1717. /* Setup encrypted descriptor content. */
  1718. if (build_service_desc_encrypted(service, desc) < 0) {
  1719. goto err;
  1720. }
  1721. /* Let's make sure that we've created a descriptor that can actually be
  1722. * encoded properly. This function also checks if the encoded output is
  1723. * decodable after. */
  1724. if (BUG(service_encode_descriptor(service, desc, &desc->signing_kp,
  1725. &encoded_desc) < 0)) {
  1726. goto err;
  1727. }
  1728. tor_free(encoded_desc);
  1729. /* Assign newly built descriptor to the next slot. */
  1730. *desc_out = desc;
  1731. /* Fire a CREATED control port event. */
  1732. hs_control_desc_event_created(service->onion_address,
  1733. &desc->blinded_kp.pubkey);
  1734. return;
  1735. err:
  1736. service_descriptor_free(desc);
  1737. }
  1738. /* Build both descriptors for the given service that has just booted up.
  1739. * Because it's a special case, it deserves its special function ;). */
  1740. static void
  1741. build_descriptors_for_new_service(hs_service_t *service, time_t now)
  1742. {
  1743. uint64_t current_desc_tp, next_desc_tp;
  1744. tor_assert(service);
  1745. /* These are the conditions for a new service. */
  1746. tor_assert(!service->desc_current);
  1747. tor_assert(!service->desc_next);
  1748. /*
  1749. * +------------------------------------------------------------------+
  1750. * | |
  1751. * | 00:00 12:00 00:00 12:00 00:00 12:00 |
  1752. * | SRV#1 TP#1 SRV#2 TP#2 SRV#3 TP#3 |
  1753. * | |
  1754. * | $==========|-----------$===========|-----------$===========| |
  1755. * | ^ ^ |
  1756. * | A B |
  1757. * +------------------------------------------------------------------+
  1758. *
  1759. * Case A: The service boots up before a new time period, the current time
  1760. * period is thus TP#1 and the next is TP#2 which for both we have access to
  1761. * their SRVs.
  1762. *
  1763. * Case B: The service boots up inside TP#2, we can't use the TP#3 for the
  1764. * next descriptor because we don't have the SRV#3 so the current should be
  1765. * TP#1 and next TP#2.
  1766. */
  1767. if (hs_in_period_between_tp_and_srv(NULL, now)) {
  1768. /* Case B from the above, inside of the new time period. */
  1769. current_desc_tp = hs_get_previous_time_period_num(0); /* TP#1 */
  1770. next_desc_tp = hs_get_time_period_num(0); /* TP#2 */
  1771. } else {
  1772. /* Case A from the above, outside of the new time period. */
  1773. current_desc_tp = hs_get_time_period_num(0); /* TP#1 */
  1774. next_desc_tp = hs_get_next_time_period_num(0); /* TP#2 */
  1775. }
  1776. /* Build descriptors. */
  1777. build_service_descriptor(service, now, current_desc_tp,
  1778. &service->desc_current);
  1779. build_service_descriptor(service, now, next_desc_tp,
  1780. &service->desc_next);
  1781. log_info(LD_REND, "Hidden service %s has just started. Both descriptors "
  1782. "built. Now scheduled for upload.",
  1783. safe_str_client(service->onion_address));
  1784. }
  1785. /* Build descriptors for each service if needed. There are conditions to build
  1786. * a descriptor which are details in the function. */
  1787. STATIC void
  1788. build_all_descriptors(time_t now)
  1789. {
  1790. FOR_EACH_SERVICE_BEGIN(service) {
  1791. /* A service booting up will have both descriptors to NULL. No other cases
  1792. * makes both descriptor non existent. */
  1793. if (service->desc_current == NULL && service->desc_next == NULL) {
  1794. build_descriptors_for_new_service(service, now);
  1795. continue;
  1796. }
  1797. /* Reaching this point means we are pass bootup so at runtime. We should
  1798. * *never* have an empty current descriptor. If the next descriptor is
  1799. * empty, we'll try to build it for the next time period. This only
  1800. * happens when we rotate meaning that we are guaranteed to have a new SRV
  1801. * at that point for the next time period. */
  1802. if (BUG(service->desc_current == NULL)) {
  1803. continue;
  1804. }
  1805. if (service->desc_next == NULL) {
  1806. build_service_descriptor(service, now, hs_get_next_time_period_num(0),
  1807. &service->desc_next);
  1808. log_info(LD_REND, "Hidden service %s next descriptor successfully "
  1809. "built. Now scheduled for upload.",
  1810. safe_str_client(service->onion_address));
  1811. }
  1812. } FOR_EACH_DESCRIPTOR_END;
  1813. }
  1814. /* Randomly pick a node to become an introduction point but not present in the
  1815. * given exclude_nodes list. The chosen node is put in the exclude list
  1816. * regardless of success or not because in case of failure, the node is simply
  1817. * unsusable from that point on.
  1818. *
  1819. * If direct_conn is set, try to pick a node that our local firewall/policy
  1820. * allows us to connect to directly. If we can't find any, return NULL.
  1821. * This function supports selecting dual-stack nodes for direct single onion
  1822. * service IPv6 connections. But it does not send IPv6 addresses in link
  1823. * specifiers. (Current clients don't use IPv6 addresses to extend, and
  1824. * direct client connections to intro points are not supported.)
  1825. *
  1826. * Return a newly allocated service intro point ready to be used for encoding.
  1827. * Return NULL on error. */
  1828. static hs_service_intro_point_t *
  1829. pick_intro_point(unsigned int direct_conn, smartlist_t *exclude_nodes)
  1830. {
  1831. const node_t *node;
  1832. extend_info_t *info = NULL;
  1833. hs_service_intro_point_t *ip = NULL;
  1834. /* Normal 3-hop introduction point flags. */
  1835. router_crn_flags_t flags = CRN_NEED_UPTIME | CRN_NEED_DESC;
  1836. /* Single onion flags. */
  1837. router_crn_flags_t direct_flags = flags | CRN_PREF_ADDR | CRN_DIRECT_CONN;
  1838. node = router_choose_random_node(exclude_nodes, get_options()->ExcludeNodes,
  1839. direct_conn ? direct_flags : flags);
  1840. /* Unable to find a node. When looking for a node for a direct connection,
  1841. * we could try a 3-hop path instead. We'll add support for this in a later
  1842. * release. */
  1843. if (!node) {
  1844. goto err;
  1845. }
  1846. /* We have a suitable node, add it to the exclude list. We do this *before*
  1847. * we can validate the extend information because even in case of failure,
  1848. * we don't want to use that node anymore. */
  1849. smartlist_add(exclude_nodes, (void *) node);
  1850. /* We do this to ease our life but also this call makes appropriate checks
  1851. * of the node object such as validating ntor support for instance.
  1852. *
  1853. * We must provide an extend_info for clients to connect over a 3-hop path,
  1854. * so we don't pass direct_conn here. */
  1855. info = extend_info_from_node(node, 0);
  1856. if (BUG(info == NULL)) {
  1857. goto err;
  1858. }
  1859. /* Let's do a basic sanity check here so that we don't end up advertising the
  1860. * ed25519 identity key of relays that don't actually support the link
  1861. * protocol */
  1862. if (!node_supports_ed25519_link_authentication(node, 0)) {
  1863. tor_assert_nonfatal(ed25519_public_key_is_zero(&info->ed_identity));
  1864. } else {
  1865. /* Make sure we *do* have an ed key if we support the link authentication.
  1866. * Sending an empty key would result in a failure to extend. */
  1867. tor_assert_nonfatal(!ed25519_public_key_is_zero(&info->ed_identity));
  1868. }
  1869. /* Create our objects and populate them with the node information.
  1870. * We don't care if the intro's link auth is compatible with us, because
  1871. * we are sending the ed25519 key to a remote client via the descriptor. */
  1872. ip = service_intro_point_new(info, !node_supports_ed25519_hs_intro(node),
  1873. node_supports_ed25519_link_authentication(node,
  1874. 0));
  1875. if (ip == NULL) {
  1876. goto err;
  1877. }
  1878. log_info(LD_REND, "Picked intro point: %s", extend_info_describe(info));
  1879. extend_info_free(info);
  1880. return ip;
  1881. err:
  1882. service_intro_point_free(ip);
  1883. extend_info_free(info);
  1884. return NULL;
  1885. }
  1886. /* For a given descriptor from the given service, pick any needed intro points
  1887. * and update the current map with those newly picked intro points. Return the
  1888. * number node that might have been added to the descriptor current map. */
  1889. static unsigned int
  1890. pick_needed_intro_points(hs_service_t *service,
  1891. hs_service_descriptor_t *desc)
  1892. {
  1893. int i = 0, num_needed_ip;
  1894. smartlist_t *exclude_nodes = smartlist_new();
  1895. tor_assert(service);
  1896. tor_assert(desc);
  1897. /* Compute how many intro points we actually need to open. */
  1898. num_needed_ip = service->config.num_intro_points -
  1899. digest256map_size(desc->intro_points.map);
  1900. if (BUG(num_needed_ip < 0)) {
  1901. /* Let's not make tor freak out here and just skip this. */
  1902. goto done;
  1903. }
  1904. /* We want to end up with config.num_intro_points intro points, but if we
  1905. * have no intro points at all (chances are they all cycled or we are
  1906. * starting up), we launch get_intro_point_num_extra() extra circuits and
  1907. * use the first config.num_intro_points that complete. See proposal #155,
  1908. * section 4 for the rationale of this which is purely for performance.
  1909. *
  1910. * The ones after the first config.num_intro_points will be converted to
  1911. * 'General' internal circuits and then we'll drop them from the list of
  1912. * intro points. */
  1913. if (digest256map_size(desc->intro_points.map) == 0) {
  1914. num_needed_ip += get_intro_point_num_extra();
  1915. }
  1916. /* Build an exclude list of nodes of our intro point(s). The expiring intro
  1917. * points are OK to pick again because this is afterall a concept of round
  1918. * robin so they are considered valid nodes to pick again. */
  1919. DIGEST256MAP_FOREACH(desc->intro_points.map, key,
  1920. hs_service_intro_point_t *, ip) {
  1921. const node_t *intro_node = get_node_from_intro_point(ip);
  1922. if (intro_node) {
  1923. smartlist_add(exclude_nodes, (void*)intro_node);
  1924. }
  1925. } DIGEST256MAP_FOREACH_END;
  1926. /* Also, add the failing intro points that our descriptor encounteered in
  1927. * the exclude node list. */
  1928. setup_intro_point_exclude_list(desc, exclude_nodes);
  1929. for (i = 0; i < num_needed_ip; i++) {
  1930. hs_service_intro_point_t *ip;
  1931. /* This function will add the picked intro point node to the exclude nodes
  1932. * list so we don't pick the same one at the next iteration. */
  1933. ip = pick_intro_point(service->config.is_single_onion, exclude_nodes);
  1934. if (ip == NULL) {
  1935. /* If we end up unable to pick an introduction point it is because we
  1936. * can't find suitable node and calling this again is highly unlikely to
  1937. * give us a valid node all of the sudden. */
  1938. log_info(LD_REND, "Unable to find a suitable node to be an "
  1939. "introduction point for service %s.",
  1940. safe_str_client(service->onion_address));
  1941. goto done;
  1942. }
  1943. /* Valid intro point object, add it to the descriptor current map. */
  1944. service_intro_point_add(desc->intro_points.map, ip);
  1945. }
  1946. /* We've successfully picked all our needed intro points thus none are
  1947. * missing which will tell our upload process to expect the number of
  1948. * circuits to be the number of configured intro points circuits and not the
  1949. * number of intro points object that we have. */
  1950. desc->missing_intro_points = 0;
  1951. /* Success. */
  1952. done:
  1953. /* We don't have ownership of the node_t object in this list. */
  1954. smartlist_free(exclude_nodes);
  1955. return i;
  1956. }
  1957. /** Clear previous cached HSDirs in <b>desc</b>. */
  1958. static void
  1959. service_desc_clear_previous_hsdirs(hs_service_descriptor_t *desc)
  1960. {
  1961. if (BUG(!desc->previous_hsdirs)) {
  1962. return;
  1963. }
  1964. SMARTLIST_FOREACH(desc->previous_hsdirs, char*, s, tor_free(s));
  1965. smartlist_clear(desc->previous_hsdirs);
  1966. }
  1967. /** Note that we attempted to upload <b>desc</b> to <b>hsdir</b>. */
  1968. static void
  1969. service_desc_note_upload(hs_service_descriptor_t *desc, const node_t *hsdir)
  1970. {
  1971. char b64_digest[BASE64_DIGEST_LEN+1] = {0};
  1972. digest_to_base64(b64_digest, hsdir->identity);
  1973. if (BUG(!desc->previous_hsdirs)) {
  1974. return;
  1975. }
  1976. if (!smartlist_contains_string(desc->previous_hsdirs, b64_digest)) {
  1977. smartlist_add_strdup(desc->previous_hsdirs, b64_digest);
  1978. }
  1979. }
  1980. /** Schedule an upload of <b>desc</b>. If <b>descriptor_changed</b> is set, it
  1981. * means that this descriptor is dirty. */
  1982. STATIC void
  1983. service_desc_schedule_upload(hs_service_descriptor_t *desc,
  1984. time_t now,
  1985. int descriptor_changed)
  1986. {
  1987. desc->next_upload_time = now;
  1988. /* If the descriptor changed, clean up the old HSDirs list. We want to
  1989. * re-upload no matter what. */
  1990. if (descriptor_changed) {
  1991. service_desc_clear_previous_hsdirs(desc);
  1992. }
  1993. }
  1994. /* Update the given descriptor from the given service. The possible update
  1995. * actions includes:
  1996. * - Picking missing intro points if needed.
  1997. */
  1998. static void
  1999. update_service_descriptor(hs_service_t *service,
  2000. hs_service_descriptor_t *desc, time_t now)
  2001. {
  2002. unsigned int num_intro_points;
  2003. tor_assert(service);
  2004. tor_assert(desc);
  2005. tor_assert(desc->desc);
  2006. num_intro_points = digest256map_size(desc->intro_points.map);
  2007. /* Pick any missing introduction point(s). */
  2008. if (num_intro_points < service->config.num_intro_points) {
  2009. unsigned int num_new_intro_points = pick_needed_intro_points(service,
  2010. desc);
  2011. if (num_new_intro_points != 0) {
  2012. log_info(LD_REND, "Service %s just picked %u intro points and wanted "
  2013. "%u for %s descriptor. It currently has %d intro "
  2014. "points. Launching ESTABLISH_INTRO circuit shortly.",
  2015. safe_str_client(service->onion_address),
  2016. num_new_intro_points,
  2017. service->config.num_intro_points - num_intro_points,
  2018. (desc == service->desc_current) ? "current" : "next",
  2019. num_intro_points);
  2020. /* We'll build those introduction point into the descriptor once we have
  2021. * confirmation that the circuits are opened and ready. However,
  2022. * indicate that this descriptor should be uploaded from now on. */
  2023. service_desc_schedule_upload(desc, now, 1);
  2024. }
  2025. /* Were we able to pick all the intro points we needed? If not, we'll
  2026. * flag the descriptor that it's missing intro points because it
  2027. * couldn't pick enough which will trigger a descriptor upload. */
  2028. if ((num_new_intro_points + num_intro_points) <
  2029. service->config.num_intro_points) {
  2030. desc->missing_intro_points = 1;
  2031. }
  2032. }
  2033. }
  2034. /* Update descriptors for each service if needed. */
  2035. STATIC void
  2036. update_all_descriptors(time_t now)
  2037. {
  2038. FOR_EACH_SERVICE_BEGIN(service) {
  2039. /* We'll try to update each descriptor that is if certain conditions apply
  2040. * in order for the descriptor to be updated. */
  2041. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  2042. update_service_descriptor(service, desc, now);
  2043. } FOR_EACH_DESCRIPTOR_END;
  2044. } FOR_EACH_SERVICE_END;
  2045. }
  2046. /* Return true iff the given intro point has expired that is it has been used
  2047. * for too long or we've reached our max seen INTRODUCE2 cell. */
  2048. STATIC int
  2049. intro_point_should_expire(const hs_service_intro_point_t *ip,
  2050. time_t now)
  2051. {
  2052. tor_assert(ip);
  2053. if (ip->introduce2_count >= ip->introduce2_max) {
  2054. goto expired;
  2055. }
  2056. if (ip->time_to_expire <= now) {
  2057. goto expired;
  2058. }
  2059. /* Not expiring. */
  2060. return 0;
  2061. expired:
  2062. return 1;
  2063. }
  2064. /* Go over the given set of intro points for each service and remove any
  2065. * invalid ones. The conditions for removal are:
  2066. *
  2067. * - The node doesn't exists anymore (not in consensus)
  2068. * OR
  2069. * - The intro point maximum circuit retry count has been reached and no
  2070. * circuit can be found associated with it.
  2071. * OR
  2072. * - The intro point has expired and we should pick a new one.
  2073. *
  2074. * If an intro point is removed, the circuit (if any) is immediately close.
  2075. * If a circuit can't be found, the intro point is kept if it hasn't reached
  2076. * its maximum circuit retry value and thus should be retried. */
  2077. static void
  2078. cleanup_intro_points(hs_service_t *service, time_t now)
  2079. {
  2080. /* List of intro points to close. We can't mark the intro circuits for close
  2081. * in the modify loop because doing so calls
  2082. * hs_service_intro_circ_has_closed() which does a digest256map_get() on the
  2083. * intro points map (that we are iterating over). This can't be done in a
  2084. * single iteration after a MAP_DEL_CURRENT, the object will still be
  2085. * returned leading to a use-after-free. So, we close the circuits and free
  2086. * the intro points after the loop if any. */
  2087. smartlist_t *ips_to_free = smartlist_new();
  2088. tor_assert(service);
  2089. /* For both descriptors, cleanup the intro points. */
  2090. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  2091. /* Go over the current intro points we have, make sure they are still
  2092. * valid and remove any of them that aren't. */
  2093. DIGEST256MAP_FOREACH_MODIFY(desc->intro_points.map, key,
  2094. hs_service_intro_point_t *, ip) {
  2095. const node_t *node = get_node_from_intro_point(ip);
  2096. int has_expired = intro_point_should_expire(ip, now);
  2097. /* We cleanup an intro point if it has expired or if we do not know the
  2098. * node_t anymore (removed from our latest consensus) or if we've
  2099. * reached the maximum number of retry with a non existing circuit. */
  2100. if (has_expired || node == NULL ||
  2101. ip->circuit_retries > MAX_INTRO_POINT_CIRCUIT_RETRIES) {
  2102. log_info(LD_REND, "Intro point %s%s (retried: %u times). "
  2103. "Removing it.",
  2104. describe_intro_point(ip),
  2105. has_expired ? " has expired" :
  2106. (node == NULL) ? " fell off the consensus" : "",
  2107. ip->circuit_retries);
  2108. /* We've retried too many times, remember it as a failed intro point
  2109. * so we don't pick it up again for INTRO_CIRC_RETRY_PERIOD sec. */
  2110. if (ip->circuit_retries > MAX_INTRO_POINT_CIRCUIT_RETRIES) {
  2111. remember_failing_intro_point(ip, desc, approx_time());
  2112. }
  2113. /* Remove intro point from descriptor map and add it to the list of
  2114. * ips to free for which we'll also try to close the intro circuit. */
  2115. MAP_DEL_CURRENT(key);
  2116. smartlist_add(ips_to_free, ip);
  2117. }
  2118. } DIGEST256MAP_FOREACH_END;
  2119. } FOR_EACH_DESCRIPTOR_END;
  2120. /* Go over the intro points to free and close their circuit if any. */
  2121. SMARTLIST_FOREACH_BEGIN(ips_to_free, hs_service_intro_point_t *, ip) {
  2122. /* See if we need to close the intro point circuit as well */
  2123. /* XXX: Legacy code does NOT close circuits like this: it keeps the circuit
  2124. * open until a new descriptor is uploaded and then closed all expiring
  2125. * intro point circuit. Here, we close immediately and because we just
  2126. * discarded the intro point, a new one will be selected, a new descriptor
  2127. * created and uploaded. There is no difference to an attacker between the
  2128. * timing of a new consensus and intro point rotation (possibly?). */
  2129. origin_circuit_t *ocirc = hs_circ_service_get_intro_circ(ip);
  2130. if (ocirc && !TO_CIRCUIT(ocirc)->marked_for_close) {
  2131. circuit_mark_for_close(TO_CIRCUIT(ocirc), END_CIRC_REASON_FINISHED);
  2132. }
  2133. /* Cleanup the intro point */
  2134. service_intro_point_free(ip);
  2135. } SMARTLIST_FOREACH_END(ip);
  2136. smartlist_free(ips_to_free);
  2137. }
  2138. /* Set the next rotation time of the descriptors for the given service for the
  2139. * time now. */
  2140. static void
  2141. set_rotation_time(hs_service_t *service)
  2142. {
  2143. tor_assert(service);
  2144. service->state.next_rotation_time =
  2145. sr_state_get_start_time_of_current_protocol_run() +
  2146. sr_state_get_protocol_run_duration();
  2147. {
  2148. char fmt_time[ISO_TIME_LEN + 1];
  2149. format_local_iso_time(fmt_time, service->state.next_rotation_time);
  2150. log_info(LD_REND, "Next descriptor rotation time set to %s for %s",
  2151. fmt_time, safe_str_client(service->onion_address));
  2152. }
  2153. }
  2154. /* Return true iff the service should rotate its descriptor. The time now is
  2155. * only used to fetch the live consensus and if none can be found, this
  2156. * returns false. */
  2157. static unsigned int
  2158. should_rotate_descriptors(hs_service_t *service, time_t now)
  2159. {
  2160. const networkstatus_t *ns;
  2161. tor_assert(service);
  2162. ns = networkstatus_get_live_consensus(now);
  2163. if (ns == NULL) {
  2164. goto no_rotation;
  2165. }
  2166. if (ns->valid_after >= service->state.next_rotation_time) {
  2167. /* In theory, we should never get here with no descriptors. We can never
  2168. * have a NULL current descriptor except when tor starts up. The next
  2169. * descriptor can be NULL after a rotation but we build a new one right
  2170. * after.
  2171. *
  2172. * So, when tor starts, the next rotation time is set to the start of the
  2173. * next SRV period using the consensus valid after time so it should
  2174. * always be set to a future time value. This means that we should never
  2175. * reach this point at bootup that is this check safeguards tor in never
  2176. * allowing a rotation if the valid after time is smaller than the next
  2177. * rotation time.
  2178. *
  2179. * This is all good in theory but we've had a NULL descriptor issue here
  2180. * so this is why we BUG() on both with extra logging to try to understand
  2181. * how this can possibly happens. We'll simply ignore and tor should
  2182. * recover from this by skipping rotation and building the missing
  2183. * descriptors just after this. */
  2184. if (BUG(service->desc_current == NULL || service->desc_next == NULL)) {
  2185. log_warn(LD_BUG, "Service descriptor is NULL (%p/%p). Next rotation "
  2186. "time is %ld (now: %ld). Valid after time from "
  2187. "consensus is %ld",
  2188. service->desc_current, service->desc_next,
  2189. (long)service->state.next_rotation_time,
  2190. (long)now,
  2191. (long)ns->valid_after);
  2192. goto no_rotation;
  2193. }
  2194. goto rotation;
  2195. }
  2196. no_rotation:
  2197. return 0;
  2198. rotation:
  2199. return 1;
  2200. }
  2201. /* Rotate the service descriptors of the given service. The current descriptor
  2202. * will be freed, the next one put in as the current and finally the next
  2203. * descriptor pointer is NULLified. */
  2204. static void
  2205. rotate_service_descriptors(hs_service_t *service)
  2206. {
  2207. if (service->desc_current) {
  2208. /* Close all IP circuits for the descriptor. */
  2209. close_intro_circuits(&service->desc_current->intro_points);
  2210. /* We don't need this one anymore, we won't serve any clients coming with
  2211. * this service descriptor. */
  2212. service_descriptor_free(service->desc_current);
  2213. }
  2214. /* The next one become the current one and emptying the next will trigger
  2215. * a descriptor creation for it. */
  2216. service->desc_current = service->desc_next;
  2217. service->desc_next = NULL;
  2218. /* We've just rotated, set the next time for the rotation. */
  2219. set_rotation_time(service);
  2220. }
  2221. /* Rotate descriptors for each service if needed. A non existing current
  2222. * descriptor will trigger a descriptor build for the next time period. */
  2223. STATIC void
  2224. rotate_all_descriptors(time_t now)
  2225. {
  2226. /* XXX We rotate all our service descriptors at once. In the future it might
  2227. * be wise, to rotate service descriptors independently to hide that all
  2228. * those descriptors are on the same tor instance */
  2229. FOR_EACH_SERVICE_BEGIN(service) {
  2230. /* Note for a service booting up: Both descriptors are NULL in that case
  2231. * so this function might return true if we are in the timeframe for a
  2232. * rotation leading to basically swapping two NULL pointers which is
  2233. * harmless. However, the side effect is that triggering a rotation will
  2234. * update the service state and avoid doing anymore rotations after the
  2235. * two descriptors have been built. */
  2236. if (!should_rotate_descriptors(service, now)) {
  2237. continue;
  2238. }
  2239. log_info(LD_REND, "Time to rotate our descriptors (%p / %p) for %s",
  2240. service->desc_current, service->desc_next,
  2241. safe_str_client(service->onion_address));
  2242. rotate_service_descriptors(service);
  2243. } FOR_EACH_SERVICE_END;
  2244. }
  2245. /* Scheduled event run from the main loop. Make sure all our services are up
  2246. * to date and ready for the other scheduled events. This includes looking at
  2247. * the introduction points status and descriptor rotation time. */
  2248. STATIC void
  2249. run_housekeeping_event(time_t now)
  2250. {
  2251. /* Note that nothing here opens circuit(s) nor uploads descriptor(s). We are
  2252. * simply moving things around or removing unneeded elements. */
  2253. FOR_EACH_SERVICE_BEGIN(service) {
  2254. /* If the service is starting off, set the rotation time. We can't do that
  2255. * at configure time because the get_options() needs to be set for setting
  2256. * that time that uses the voting interval. */
  2257. if (service->state.next_rotation_time == 0) {
  2258. /* Set the next rotation time of the descriptors. If it's Oct 25th
  2259. * 23:47:00, the next rotation time is when the next SRV is computed
  2260. * which is at Oct 26th 00:00:00 that is in 13 minutes. */
  2261. set_rotation_time(service);
  2262. }
  2263. /* Cleanup invalid intro points from the service descriptor. */
  2264. cleanup_intro_points(service, now);
  2265. /* Remove expired failing intro point from the descriptor failed list. We
  2266. * reset them at each INTRO_CIRC_RETRY_PERIOD. */
  2267. remove_expired_failing_intro(service, now);
  2268. /* At this point, the service is now ready to go through the scheduled
  2269. * events guaranteeing a valid state. Intro points might be missing from
  2270. * the descriptors after the cleanup but the update/build process will
  2271. * make sure we pick those missing ones. */
  2272. } FOR_EACH_SERVICE_END;
  2273. }
  2274. /* Scheduled event run from the main loop. Make sure all descriptors are up to
  2275. * date. Once this returns, each service descriptor needs to be considered for
  2276. * new introduction circuits and then for upload. */
  2277. static void
  2278. run_build_descriptor_event(time_t now)
  2279. {
  2280. /* For v2 services, this step happens in the upload event. */
  2281. /* Run v3+ events. */
  2282. /* We start by rotating the descriptors only if needed. */
  2283. rotate_all_descriptors(now);
  2284. /* Then, we'll try to build new descriptors that we might need. The
  2285. * condition is that the next descriptor is non existing because it has
  2286. * been rotated or we just started up. */
  2287. build_all_descriptors(now);
  2288. /* Finally, we'll check if we should update the descriptors. Missing
  2289. * introduction points will be picked in this function which is useful for
  2290. * newly built descriptors. */
  2291. update_all_descriptors(now);
  2292. }
  2293. /* For the given service, launch any intro point circuits that could be
  2294. * needed. This considers every descriptor of the service. */
  2295. static void
  2296. launch_intro_point_circuits(hs_service_t *service)
  2297. {
  2298. tor_assert(service);
  2299. /* For both descriptors, try to launch any missing introduction point
  2300. * circuits using the current map. */
  2301. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  2302. /* Keep a ref on if we need a direct connection. We use this often. */
  2303. unsigned int direct_conn = service->config.is_single_onion;
  2304. DIGEST256MAP_FOREACH_MODIFY(desc->intro_points.map, key,
  2305. hs_service_intro_point_t *, ip) {
  2306. extend_info_t *ei;
  2307. /* Skip the intro point that already has an existing circuit
  2308. * (established or not). */
  2309. if (hs_circ_service_get_intro_circ(ip)) {
  2310. continue;
  2311. }
  2312. ei = get_extend_info_from_intro_point(ip, direct_conn);
  2313. if (ei == NULL) {
  2314. /* This is possible if we can get a node_t but not the extend info out
  2315. * of it. In this case, we remove the intro point and a new one will
  2316. * be picked at the next main loop callback. */
  2317. MAP_DEL_CURRENT(key);
  2318. service_intro_point_free(ip);
  2319. continue;
  2320. }
  2321. /* Launch a circuit to the intro point. */
  2322. ip->circuit_retries++;
  2323. if (hs_circ_launch_intro_point(service, ip, ei) < 0) {
  2324. log_info(LD_REND, "Unable to launch intro circuit to node %s "
  2325. "for service %s.",
  2326. safe_str_client(extend_info_describe(ei)),
  2327. safe_str_client(service->onion_address));
  2328. /* Intro point will be retried if possible after this. */
  2329. }
  2330. extend_info_free(ei);
  2331. } DIGEST256MAP_FOREACH_END;
  2332. } FOR_EACH_DESCRIPTOR_END;
  2333. }
  2334. /* Don't try to build more than this many circuits before giving up for a
  2335. * while. Dynamically calculated based on the configured number of intro
  2336. * points for the given service and how many descriptor exists. The default
  2337. * use case of 3 introduction points and two descriptors will allow 28
  2338. * circuits for a retry period (((3 + 2) + (3 * 3)) * 2). */
  2339. static unsigned int
  2340. get_max_intro_circ_per_period(const hs_service_t *service)
  2341. {
  2342. unsigned int count = 0;
  2343. unsigned int multiplier = 0;
  2344. unsigned int num_wanted_ip;
  2345. tor_assert(service);
  2346. tor_assert(service->config.num_intro_points <=
  2347. HS_CONFIG_V3_MAX_INTRO_POINTS);
  2348. /* For a testing network, allow to do it for the maximum amount so circuit
  2349. * creation and rotation and so on can actually be tested without limit. */
  2350. #define MAX_INTRO_POINT_CIRCUIT_RETRIES_TESTING -1
  2351. if (get_options()->TestingTorNetwork) {
  2352. return MAX_INTRO_POINT_CIRCUIT_RETRIES_TESTING;
  2353. }
  2354. num_wanted_ip = service->config.num_intro_points;
  2355. /* The calculation is as follow. We have a number of intro points that we
  2356. * want configured as a torrc option (num_intro_points). We then add an
  2357. * extra value so we can launch multiple circuits at once and pick the
  2358. * quickest ones. For instance, we want 3 intros, we add 2 extra so we'll
  2359. * pick 5 intros and launch 5 circuits. */
  2360. count += (num_wanted_ip + get_intro_point_num_extra());
  2361. /* Then we add the number of retries that is possible to do for each intro
  2362. * point. If we want 3 intros, we'll allow 3 times the number of possible
  2363. * retry. */
  2364. count += (num_wanted_ip * MAX_INTRO_POINT_CIRCUIT_RETRIES);
  2365. /* Then, we multiply by a factor of 2 if we have both descriptor or 0 if we
  2366. * have none. */
  2367. multiplier += (service->desc_current) ? 1 : 0;
  2368. multiplier += (service->desc_next) ? 1 : 0;
  2369. return (count * multiplier);
  2370. }
  2371. /* For the given service, return 1 if the service is allowed to launch more
  2372. * introduction circuits else 0 if the maximum has been reached for the retry
  2373. * period of INTRO_CIRC_RETRY_PERIOD. */
  2374. STATIC int
  2375. can_service_launch_intro_circuit(hs_service_t *service, time_t now)
  2376. {
  2377. tor_assert(service);
  2378. /* Consider the intro circuit retry period of the service. */
  2379. if (now > (service->state.intro_circ_retry_started_time +
  2380. INTRO_CIRC_RETRY_PERIOD)) {
  2381. service->state.intro_circ_retry_started_time = now;
  2382. service->state.num_intro_circ_launched = 0;
  2383. goto allow;
  2384. }
  2385. /* Check if we can still launch more circuits in this period. */
  2386. if (service->state.num_intro_circ_launched <=
  2387. get_max_intro_circ_per_period(service)) {
  2388. goto allow;
  2389. }
  2390. /* Rate limit log that we've reached our circuit creation limit. */
  2391. {
  2392. char *msg;
  2393. time_t elapsed_time = now - service->state.intro_circ_retry_started_time;
  2394. static ratelim_t rlimit = RATELIM_INIT(INTRO_CIRC_RETRY_PERIOD);
  2395. if ((msg = rate_limit_log(&rlimit, now))) {
  2396. log_info(LD_REND, "Hidden service %s exceeded its circuit launch limit "
  2397. "of %u per %d seconds. It launched %u circuits in "
  2398. "the last %ld seconds. Will retry in %ld seconds.",
  2399. safe_str_client(service->onion_address),
  2400. get_max_intro_circ_per_period(service),
  2401. INTRO_CIRC_RETRY_PERIOD,
  2402. service->state.num_intro_circ_launched,
  2403. (long int) elapsed_time,
  2404. (long int) (INTRO_CIRC_RETRY_PERIOD - elapsed_time));
  2405. tor_free(msg);
  2406. }
  2407. }
  2408. /* Not allow. */
  2409. return 0;
  2410. allow:
  2411. return 1;
  2412. }
  2413. /* Scheduled event run from the main loop. Make sure we have all the circuits
  2414. * we need for each service. */
  2415. static void
  2416. run_build_circuit_event(time_t now)
  2417. {
  2418. /* Make sure we can actually have enough information or able to build
  2419. * internal circuits as required by services. */
  2420. if (router_have_consensus_path() == CONSENSUS_PATH_UNKNOWN ||
  2421. !have_completed_a_circuit()) {
  2422. return;
  2423. }
  2424. /* Run v2 check. */
  2425. if (rend_num_services() > 0) {
  2426. rend_consider_services_intro_points(now);
  2427. }
  2428. /* Run v3+ check. */
  2429. FOR_EACH_SERVICE_BEGIN(service) {
  2430. /* For introduction circuit, we need to make sure we don't stress too much
  2431. * circuit creation so make sure this service is respecting that limit. */
  2432. if (can_service_launch_intro_circuit(service, now)) {
  2433. /* Launch intro point circuits if needed. */
  2434. launch_intro_point_circuits(service);
  2435. /* Once the circuits have opened, we'll make sure to update the
  2436. * descriptor intro point list and cleanup any extraneous. */
  2437. }
  2438. } FOR_EACH_SERVICE_END;
  2439. }
  2440. /* Encode and sign the service descriptor desc and upload it to the given
  2441. * hidden service directory. This does nothing if PublishHidServDescriptors
  2442. * is false. */
  2443. static void
  2444. upload_descriptor_to_hsdir(const hs_service_t *service,
  2445. hs_service_descriptor_t *desc, const node_t *hsdir)
  2446. {
  2447. char *encoded_desc = NULL;
  2448. tor_assert(service);
  2449. tor_assert(desc);
  2450. tor_assert(hsdir);
  2451. /* Let's avoid doing that if tor is configured to not publish. */
  2452. if (!get_options()->PublishHidServDescriptors) {
  2453. log_info(LD_REND, "Service %s not publishing descriptor. "
  2454. "PublishHidServDescriptors is set to 1.",
  2455. safe_str_client(service->onion_address));
  2456. goto end;
  2457. }
  2458. /* First of all, we'll encode the descriptor. This should NEVER fail but
  2459. * just in case, let's make sure we have an actual usable descriptor. */
  2460. if (BUG(service_encode_descriptor(service, desc, &desc->signing_kp,
  2461. &encoded_desc) < 0)) {
  2462. goto end;
  2463. }
  2464. /* Time to upload the descriptor to the directory. */
  2465. hs_service_upload_desc_to_dir(encoded_desc, service->config.version,
  2466. &service->keys.identity_pk,
  2467. &desc->blinded_kp.pubkey, hsdir->rs);
  2468. /* Add this node to previous_hsdirs list */
  2469. service_desc_note_upload(desc, hsdir);
  2470. /* Logging so we know where it was sent. */
  2471. {
  2472. int is_next_desc = (service->desc_next == desc);
  2473. const uint8_t *idx = (is_next_desc) ? hsdir->hsdir_index.store_second:
  2474. hsdir->hsdir_index.store_first;
  2475. char *blinded_pubkey_log_str =
  2476. tor_strdup(hex_str((char*)&desc->blinded_kp.pubkey.pubkey, 32));
  2477. log_info(LD_REND, "Service %s %s descriptor of revision %" PRIu64
  2478. " initiated upload request to %s with index %s (%s)",
  2479. safe_str_client(service->onion_address),
  2480. (is_next_desc) ? "next" : "current",
  2481. desc->desc->plaintext_data.revision_counter,
  2482. safe_str_client(node_describe(hsdir)),
  2483. safe_str_client(hex_str((const char *) idx, 32)),
  2484. safe_str_client(blinded_pubkey_log_str));
  2485. tor_free(blinded_pubkey_log_str);
  2486. /* Fire a UPLOAD control port event. */
  2487. hs_control_desc_event_upload(service->onion_address, hsdir->identity,
  2488. &desc->blinded_kp.pubkey, idx);
  2489. }
  2490. end:
  2491. tor_free(encoded_desc);
  2492. return;
  2493. }
  2494. /** Set the revision counter in <b>hs_desc</b>. We do this by encrypting a
  2495. * timestamp using an OPE scheme and using the ciphertext as our revision
  2496. * counter.
  2497. *
  2498. * If <b>is_current</b> is true, then this is the current HS descriptor,
  2499. * otherwise it's the next one. */
  2500. static void
  2501. set_descriptor_revision_counter(hs_service_descriptor_t *hs_desc, time_t now,
  2502. bool is_current)
  2503. {
  2504. uint64_t rev_counter = 0;
  2505. /* Get current time */
  2506. time_t srv_start = 0;
  2507. /* As our revision counter plaintext value, we use the seconds since the
  2508. * start of the SR protocol run that is relevant to this descriptor. This is
  2509. * guaranteed to be a positive value since we need the SRV to start making a
  2510. * descriptor (so that we know where to upload it).
  2511. *
  2512. * Depending on whether we are building the current or the next descriptor,
  2513. * services use a different SRV value. See [SERVICEUPLOAD] in
  2514. * rend-spec-v3.txt:
  2515. *
  2516. * In particular, for the current descriptor (aka first descriptor), Tor
  2517. * always uses the previous SRV for uploading the descriptor, and hence we
  2518. * should use the start time of the previous protocol run here.
  2519. *
  2520. * Whereas for the next descriptor (aka second descriptor), Tor always uses
  2521. * the current SRV for uploading the descriptor. and hence we use the start
  2522. * time of the current protocol run.
  2523. */
  2524. if (is_current) {
  2525. srv_start = sr_state_get_start_time_of_previous_protocol_run();
  2526. } else {
  2527. srv_start = sr_state_get_start_time_of_current_protocol_run();
  2528. }
  2529. log_info(LD_REND, "Setting rev counter for TP #%u: "
  2530. "SRV started at %d, now %d (%s)",
  2531. (unsigned) hs_desc->time_period_num, (int)srv_start,
  2532. (int)now, is_current ? "current" : "next");
  2533. tor_assert_nonfatal(now >= srv_start);
  2534. /* Compute seconds elapsed since the start of the time period. That's the
  2535. * number of seconds of how long this blinded key has been active. */
  2536. time_t seconds_since_start_of_srv = now - srv_start;
  2537. /* Increment by one so that we are definitely sure this is strictly
  2538. * positive and not zero. */
  2539. seconds_since_start_of_srv++;
  2540. /* Check for too big inputs. */
  2541. if (BUG(seconds_since_start_of_srv > OPE_INPUT_MAX)) {
  2542. seconds_since_start_of_srv = OPE_INPUT_MAX;
  2543. }
  2544. /* Now we compute the final revision counter value by encrypting the
  2545. plaintext using our OPE cipher: */
  2546. tor_assert(hs_desc->ope_cipher);
  2547. rev_counter = crypto_ope_encrypt(hs_desc->ope_cipher,
  2548. (int) seconds_since_start_of_srv);
  2549. /* The OPE module returns CRYPTO_OPE_ERROR in case of errors. */
  2550. tor_assert_nonfatal(rev_counter < CRYPTO_OPE_ERROR);
  2551. log_info(LD_REND, "Encrypted revision counter %d to %ld",
  2552. (int) seconds_since_start_of_srv, (long int) rev_counter);
  2553. hs_desc->desc->plaintext_data.revision_counter = rev_counter;
  2554. }
  2555. /* Encode and sign the service descriptor desc and upload it to the
  2556. * responsible hidden service directories. If for_next_period is true, the set
  2557. * of directories are selected using the next hsdir_index. This does nothing
  2558. * if PublishHidServDescriptors is false. */
  2559. STATIC void
  2560. upload_descriptor_to_all(const hs_service_t *service,
  2561. hs_service_descriptor_t *desc)
  2562. {
  2563. smartlist_t *responsible_dirs = NULL;
  2564. tor_assert(service);
  2565. tor_assert(desc);
  2566. /* We'll first cancel any directory request that are ongoing for this
  2567. * descriptor. It is possible that we can trigger multiple uploads in a
  2568. * short time frame which can lead to a race where the second upload arrives
  2569. * before the first one leading to a 400 malformed descriptor response from
  2570. * the directory. Closing all pending requests avoids that. */
  2571. close_directory_connections(service, desc);
  2572. /* Get our list of responsible HSDir. */
  2573. responsible_dirs = smartlist_new();
  2574. /* The parameter 0 means that we aren't a client so tell the function to use
  2575. * the spread store consensus paremeter. */
  2576. hs_get_responsible_hsdirs(&desc->blinded_kp.pubkey, desc->time_period_num,
  2577. service->desc_next == desc, 0, responsible_dirs);
  2578. /** Clear list of previous hsdirs since we are about to upload to a new
  2579. * list. Let's keep it up to date. */
  2580. service_desc_clear_previous_hsdirs(desc);
  2581. /* For each responsible HSDir we have, initiate an upload command. */
  2582. SMARTLIST_FOREACH_BEGIN(responsible_dirs, const routerstatus_t *,
  2583. hsdir_rs) {
  2584. const node_t *hsdir_node = node_get_by_id(hsdir_rs->identity_digest);
  2585. /* Getting responsible hsdir implies that the node_t object exists for the
  2586. * routerstatus_t found in the consensus else we have a problem. */
  2587. tor_assert(hsdir_node);
  2588. /* Upload this descriptor to the chosen directory. */
  2589. upload_descriptor_to_hsdir(service, desc, hsdir_node);
  2590. } SMARTLIST_FOREACH_END(hsdir_rs);
  2591. /* Set the next upload time for this descriptor. Even if we are configured
  2592. * to not upload, we still want to follow the right cycle of life for this
  2593. * descriptor. */
  2594. desc->next_upload_time =
  2595. (time(NULL) + crypto_rand_int_range(HS_SERVICE_NEXT_UPLOAD_TIME_MIN,
  2596. HS_SERVICE_NEXT_UPLOAD_TIME_MAX));
  2597. {
  2598. char fmt_next_time[ISO_TIME_LEN+1];
  2599. format_local_iso_time(fmt_next_time, desc->next_upload_time);
  2600. log_debug(LD_REND, "Service %s set to upload a descriptor at %s",
  2601. safe_str_client(service->onion_address), fmt_next_time);
  2602. }
  2603. smartlist_free(responsible_dirs);
  2604. return;
  2605. }
  2606. /** The set of HSDirs have changed: check if the change affects our descriptor
  2607. * HSDir placement, and if it does, reupload the desc. */
  2608. STATIC int
  2609. service_desc_hsdirs_changed(const hs_service_t *service,
  2610. const hs_service_descriptor_t *desc)
  2611. {
  2612. int should_reupload = 0;
  2613. smartlist_t *responsible_dirs = smartlist_new();
  2614. /* No desc upload has happened yet: it will happen eventually */
  2615. if (!desc->previous_hsdirs || !smartlist_len(desc->previous_hsdirs)) {
  2616. goto done;
  2617. }
  2618. /* Get list of responsible hsdirs */
  2619. hs_get_responsible_hsdirs(&desc->blinded_kp.pubkey, desc->time_period_num,
  2620. service->desc_next == desc, 0, responsible_dirs);
  2621. /* Check if any new hsdirs have been added to the responsible hsdirs set:
  2622. * Iterate over the list of new hsdirs, and reupload if any of them is not
  2623. * present in the list of previous hsdirs.
  2624. */
  2625. SMARTLIST_FOREACH_BEGIN(responsible_dirs, const routerstatus_t *, hsdir_rs) {
  2626. char b64_digest[BASE64_DIGEST_LEN+1] = {0};
  2627. digest_to_base64(b64_digest, hsdir_rs->identity_digest);
  2628. if (!smartlist_contains_string(desc->previous_hsdirs, b64_digest)) {
  2629. should_reupload = 1;
  2630. break;
  2631. }
  2632. } SMARTLIST_FOREACH_END(hsdir_rs);
  2633. done:
  2634. smartlist_free(responsible_dirs);
  2635. return should_reupload;
  2636. }
  2637. /* Return 1 if the given descriptor from the given service can be uploaded
  2638. * else return 0 if it can not. */
  2639. static int
  2640. should_service_upload_descriptor(const hs_service_t *service,
  2641. const hs_service_descriptor_t *desc, time_t now)
  2642. {
  2643. unsigned int num_intro_points;
  2644. tor_assert(service);
  2645. tor_assert(desc);
  2646. /* If this descriptors has missing intro points that is that it couldn't get
  2647. * them all when it was time to pick them, it means that we should upload
  2648. * instead of waiting an arbitrary amount of time breaking the service.
  2649. * Else, if we have no missing intro points, we use the value taken from the
  2650. * service configuration. */
  2651. if (desc->missing_intro_points) {
  2652. num_intro_points = digest256map_size(desc->intro_points.map);
  2653. } else {
  2654. num_intro_points = service->config.num_intro_points;
  2655. }
  2656. /* This means we tried to pick intro points but couldn't get any so do not
  2657. * upload descriptor in this case. We need at least one for the service to
  2658. * be reachable. */
  2659. if (desc->missing_intro_points && num_intro_points == 0) {
  2660. goto cannot;
  2661. }
  2662. /* Check if all our introduction circuit have been established for all the
  2663. * intro points we have selected. */
  2664. if (count_desc_circuit_established(desc) != num_intro_points) {
  2665. goto cannot;
  2666. }
  2667. /* Is it the right time to upload? */
  2668. if (desc->next_upload_time > now) {
  2669. goto cannot;
  2670. }
  2671. /* Don't upload desc if we don't have a live consensus */
  2672. if (!networkstatus_get_live_consensus(now)) {
  2673. goto cannot;
  2674. }
  2675. /* Do we know enough router descriptors to have adequate vision of the HSDir
  2676. hash ring? */
  2677. if (!router_have_minimum_dir_info()) {
  2678. goto cannot;
  2679. }
  2680. /* Can upload! */
  2681. return 1;
  2682. cannot:
  2683. return 0;
  2684. }
  2685. /* Scheduled event run from the main loop. Try to upload the descriptor for
  2686. * each service. */
  2687. STATIC void
  2688. run_upload_descriptor_event(time_t now)
  2689. {
  2690. /* v2 services use the same function for descriptor creation and upload so
  2691. * we do everything here because the intro circuits were checked before. */
  2692. if (rend_num_services() > 0) {
  2693. rend_consider_services_upload(now);
  2694. rend_consider_descriptor_republication();
  2695. }
  2696. /* Run v3+ check. */
  2697. FOR_EACH_SERVICE_BEGIN(service) {
  2698. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  2699. /* If we were asked to re-examine the hash ring, and it changed, then
  2700. schedule an upload */
  2701. if (consider_republishing_hs_descriptors &&
  2702. service_desc_hsdirs_changed(service, desc)) {
  2703. service_desc_schedule_upload(desc, now, 0);
  2704. }
  2705. /* Can this descriptor be uploaded? */
  2706. if (!should_service_upload_descriptor(service, desc, now)) {
  2707. continue;
  2708. }
  2709. log_info(LD_REND, "Initiating upload for hidden service %s descriptor "
  2710. "for service %s with %u/%u introduction points%s.",
  2711. (desc == service->desc_current) ? "current" : "next",
  2712. safe_str_client(service->onion_address),
  2713. digest256map_size(desc->intro_points.map),
  2714. service->config.num_intro_points,
  2715. (desc->missing_intro_points) ? " (couldn't pick more)" : "");
  2716. /* At this point, we have to upload the descriptor so start by building
  2717. * the intro points descriptor section which we are now sure to be
  2718. * accurate because all circuits have been established. */
  2719. build_desc_intro_points(service, desc, now);
  2720. /* Set the desc revision counter right before uploading */
  2721. set_descriptor_revision_counter(desc, approx_time(),
  2722. service->desc_current == desc);
  2723. upload_descriptor_to_all(service, desc);
  2724. } FOR_EACH_DESCRIPTOR_END;
  2725. } FOR_EACH_SERVICE_END;
  2726. /* We are done considering whether to republish rend descriptors */
  2727. consider_republishing_hs_descriptors = 0;
  2728. }
  2729. /* Called when the introduction point circuit is done building and ready to be
  2730. * used. */
  2731. static void
  2732. service_intro_circ_has_opened(origin_circuit_t *circ)
  2733. {
  2734. hs_service_t *service = NULL;
  2735. hs_service_intro_point_t *ip = NULL;
  2736. hs_service_descriptor_t *desc = NULL;
  2737. tor_assert(circ);
  2738. /* Let's do some basic sanity checking of the circ state */
  2739. if (BUG(!circ->cpath)) {
  2740. return;
  2741. }
  2742. if (BUG(TO_CIRCUIT(circ)->purpose != CIRCUIT_PURPOSE_S_ESTABLISH_INTRO)) {
  2743. return;
  2744. }
  2745. if (BUG(!circ->hs_ident)) {
  2746. return;
  2747. }
  2748. /* Get the corresponding service and intro point. */
  2749. get_objects_from_ident(circ->hs_ident, &service, &ip, &desc);
  2750. if (service == NULL) {
  2751. log_warn(LD_REND, "Unknown service identity key %s on the introduction "
  2752. "circuit %u. Can't find onion service.",
  2753. safe_str_client(ed25519_fmt(&circ->hs_ident->identity_pk)),
  2754. TO_CIRCUIT(circ)->n_circ_id);
  2755. goto err;
  2756. }
  2757. if (ip == NULL) {
  2758. log_warn(LD_REND, "Unknown introduction point auth key on circuit %u "
  2759. "for service %s",
  2760. TO_CIRCUIT(circ)->n_circ_id,
  2761. safe_str_client(service->onion_address));
  2762. goto err;
  2763. }
  2764. /* We can't have an IP object without a descriptor. */
  2765. tor_assert(desc);
  2766. if (hs_circ_service_intro_has_opened(service, ip, desc, circ)) {
  2767. /* Getting here means that the circuit has been re-purposed because we
  2768. * have enough intro circuit opened. Remove the IP from the service. */
  2769. service_intro_point_remove(service, ip);
  2770. service_intro_point_free(ip);
  2771. }
  2772. goto done;
  2773. err:
  2774. /* Close circuit, we can't use it. */
  2775. circuit_mark_for_close(TO_CIRCUIT(circ), END_CIRC_REASON_NOSUCHSERVICE);
  2776. done:
  2777. return;
  2778. }
  2779. /* Called when a rendezvous circuit is done building and ready to be used. */
  2780. static void
  2781. service_rendezvous_circ_has_opened(origin_circuit_t *circ)
  2782. {
  2783. hs_service_t *service = NULL;
  2784. tor_assert(circ);
  2785. tor_assert(circ->cpath);
  2786. /* Getting here means this is a v3 rendezvous circuit. */
  2787. tor_assert(circ->hs_ident);
  2788. tor_assert(TO_CIRCUIT(circ)->purpose == CIRCUIT_PURPOSE_S_CONNECT_REND);
  2789. /* Declare the circuit dirty to avoid reuse, and for path-bias. We set the
  2790. * timestamp regardless of its content because that circuit could have been
  2791. * cannibalized so in any cases, we are about to use that circuit more. */
  2792. TO_CIRCUIT(circ)->timestamp_dirty = time(NULL);
  2793. pathbias_count_use_attempt(circ);
  2794. /* Get the corresponding service and intro point. */
  2795. get_objects_from_ident(circ->hs_ident, &service, NULL, NULL);
  2796. if (service == NULL) {
  2797. log_warn(LD_REND, "Unknown service identity key %s on the rendezvous "
  2798. "circuit %u with cookie %s. Can't find onion service.",
  2799. safe_str_client(ed25519_fmt(&circ->hs_ident->identity_pk)),
  2800. TO_CIRCUIT(circ)->n_circ_id,
  2801. hex_str((const char *) circ->hs_ident->rendezvous_cookie,
  2802. REND_COOKIE_LEN));
  2803. goto err;
  2804. }
  2805. /* If the cell can't be sent, the circuit will be closed within this
  2806. * function. */
  2807. hs_circ_service_rp_has_opened(service, circ);
  2808. goto done;
  2809. err:
  2810. circuit_mark_for_close(TO_CIRCUIT(circ), END_CIRC_REASON_NOSUCHSERVICE);
  2811. done:
  2812. return;
  2813. }
  2814. /* We've been expecting an INTRO_ESTABLISHED cell on this circuit and it just
  2815. * arrived. Handle the INTRO_ESTABLISHED cell arriving on the given
  2816. * introduction circuit. Return 0 on success else a negative value. */
  2817. static int
  2818. service_handle_intro_established(origin_circuit_t *circ,
  2819. const uint8_t *payload,
  2820. size_t payload_len)
  2821. {
  2822. hs_service_t *service = NULL;
  2823. hs_service_intro_point_t *ip = NULL;
  2824. tor_assert(circ);
  2825. tor_assert(payload);
  2826. tor_assert(TO_CIRCUIT(circ)->purpose == CIRCUIT_PURPOSE_S_ESTABLISH_INTRO);
  2827. /* We need the service and intro point for this cell. */
  2828. get_objects_from_ident(circ->hs_ident, &service, &ip, NULL);
  2829. /* Get service object from the circuit identifier. */
  2830. if (service == NULL) {
  2831. log_warn(LD_REND, "Unknown service identity key %s on the introduction "
  2832. "circuit %u. Can't find onion service.",
  2833. safe_str_client(ed25519_fmt(&circ->hs_ident->identity_pk)),
  2834. TO_CIRCUIT(circ)->n_circ_id);
  2835. goto err;
  2836. }
  2837. if (ip == NULL) {
  2838. /* We don't recognize the key. */
  2839. log_warn(LD_REND, "Introduction circuit established without an intro "
  2840. "point object on circuit %u for service %s",
  2841. TO_CIRCUIT(circ)->n_circ_id,
  2842. safe_str_client(service->onion_address));
  2843. goto err;
  2844. }
  2845. /* Try to parse the payload into a cell making sure we do actually have a
  2846. * valid cell. On success, the ip object and circuit purpose is updated to
  2847. * reflect the fact that the introduction circuit is established. */
  2848. if (hs_circ_handle_intro_established(service, ip, circ, payload,
  2849. payload_len) < 0) {
  2850. goto err;
  2851. }
  2852. /* Flag that we have an established circuit for this intro point. This value
  2853. * is what indicates the upload scheduled event if we are ready to build the
  2854. * intro point into the descriptor and upload. */
  2855. ip->circuit_established = 1;
  2856. log_info(LD_REND, "Successfully received an INTRO_ESTABLISHED cell "
  2857. "on circuit %u for service %s",
  2858. TO_CIRCUIT(circ)->n_circ_id,
  2859. safe_str_client(service->onion_address));
  2860. return 0;
  2861. err:
  2862. return -1;
  2863. }
  2864. /* We just received an INTRODUCE2 cell on the established introduction circuit
  2865. * circ. Handle the cell and return 0 on success else a negative value. */
  2866. static int
  2867. service_handle_introduce2(origin_circuit_t *circ, const uint8_t *payload,
  2868. size_t payload_len)
  2869. {
  2870. hs_service_t *service = NULL;
  2871. hs_service_intro_point_t *ip = NULL;
  2872. hs_service_descriptor_t *desc = NULL;
  2873. tor_assert(circ);
  2874. tor_assert(payload);
  2875. tor_assert(TO_CIRCUIT(circ)->purpose == CIRCUIT_PURPOSE_S_INTRO);
  2876. /* We'll need every object associated with this circuit. */
  2877. get_objects_from_ident(circ->hs_ident, &service, &ip, &desc);
  2878. /* Get service object from the circuit identifier. */
  2879. if (service == NULL) {
  2880. log_warn(LD_BUG, "Unknown service identity key %s when handling "
  2881. "an INTRODUCE2 cell on circuit %u",
  2882. safe_str_client(ed25519_fmt(&circ->hs_ident->identity_pk)),
  2883. TO_CIRCUIT(circ)->n_circ_id);
  2884. goto err;
  2885. }
  2886. if (ip == NULL) {
  2887. /* We don't recognize the key. */
  2888. log_warn(LD_BUG, "Unknown introduction auth key when handling "
  2889. "an INTRODUCE2 cell on circuit %u for service %s",
  2890. TO_CIRCUIT(circ)->n_circ_id,
  2891. safe_str_client(service->onion_address));
  2892. goto err;
  2893. }
  2894. /* If we have an IP object, we MUST have a descriptor object. */
  2895. tor_assert(desc);
  2896. /* The following will parse, decode and launch the rendezvous point circuit.
  2897. * Both current and legacy cells are handled. */
  2898. if (hs_circ_handle_introduce2(service, circ, ip, desc->desc->subcredential,
  2899. payload, payload_len) < 0) {
  2900. goto err;
  2901. }
  2902. return 0;
  2903. err:
  2904. return -1;
  2905. }
  2906. /* Add to list every filename used by service. This is used by the sandbox
  2907. * subsystem. */
  2908. static void
  2909. service_add_fnames_to_list(const hs_service_t *service, smartlist_t *list)
  2910. {
  2911. const char *s_dir;
  2912. char fname[128] = {0};
  2913. tor_assert(service);
  2914. tor_assert(list);
  2915. /* Ease our life. */
  2916. s_dir = service->config.directory_path;
  2917. /* The hostname file. */
  2918. smartlist_add(list, hs_path_from_filename(s_dir, fname_hostname));
  2919. /* The key files splitted in two. */
  2920. tor_snprintf(fname, sizeof(fname), "%s_secret_key", fname_keyfile_prefix);
  2921. smartlist_add(list, hs_path_from_filename(s_dir, fname));
  2922. tor_snprintf(fname, sizeof(fname), "%s_public_key", fname_keyfile_prefix);
  2923. smartlist_add(list, hs_path_from_filename(s_dir, fname));
  2924. }
  2925. /* Return true iff the given service identity key is present on disk. */
  2926. static int
  2927. service_key_on_disk(const char *directory_path)
  2928. {
  2929. int ret = 0;
  2930. char *fname;
  2931. ed25519_keypair_t *kp = NULL;
  2932. tor_assert(directory_path);
  2933. /* Build the v3 key path name and then try to load it. */
  2934. fname = hs_path_from_filename(directory_path, fname_keyfile_prefix);
  2935. kp = ed_key_init_from_file(fname, INIT_ED_KEY_SPLIT,
  2936. LOG_DEBUG, NULL, 0, 0, 0, NULL, NULL);
  2937. if (kp) {
  2938. ret = 1;
  2939. }
  2940. ed25519_keypair_free(kp);
  2941. tor_free(fname);
  2942. return ret;
  2943. }
  2944. /* This is a proxy function before actually calling hs_desc_encode_descriptor
  2945. * because we need some preprocessing here */
  2946. static int
  2947. service_encode_descriptor(const hs_service_t *service,
  2948. const hs_service_descriptor_t *desc,
  2949. const ed25519_keypair_t *signing_kp,
  2950. char **encoded_out)
  2951. {
  2952. int ret;
  2953. const uint8_t *descriptor_cookie = NULL;
  2954. tor_assert(service);
  2955. tor_assert(desc);
  2956. tor_assert(encoded_out);
  2957. /* If the client authorization is enabled, send the descriptor cookie to
  2958. * hs_desc_encode_descriptor. Otherwise, send NULL */
  2959. if (service->config.is_client_auth_enabled) {
  2960. descriptor_cookie = desc->descriptor_cookie;
  2961. }
  2962. ret = hs_desc_encode_descriptor(desc->desc, signing_kp,
  2963. descriptor_cookie, encoded_out);
  2964. return ret;
  2965. }
  2966. /* ========== */
  2967. /* Public API */
  2968. /* ========== */
  2969. /* This is called everytime the service map (v2 or v3) changes that is if an
  2970. * element is added or removed. */
  2971. void
  2972. hs_service_map_has_changed(void)
  2973. {
  2974. /* If we now have services where previously we had not, we need to enable
  2975. * the HS service main loop event. If we changed to having no services, we
  2976. * need to disable the event. */
  2977. rescan_periodic_events(get_options());
  2978. }
  2979. /* Upload an encoded descriptor in encoded_desc of the given version. This
  2980. * descriptor is for the service identity_pk and blinded_pk used to setup the
  2981. * directory connection identifier. It is uploaded to the directory hsdir_rs
  2982. * routerstatus_t object.
  2983. *
  2984. * NOTE: This function does NOT check for PublishHidServDescriptors because it
  2985. * is only used by the control port command HSPOST outside of this subsystem.
  2986. * Inside this code, upload_descriptor_to_hsdir() should be used. */
  2987. void
  2988. hs_service_upload_desc_to_dir(const char *encoded_desc,
  2989. const uint8_t version,
  2990. const ed25519_public_key_t *identity_pk,
  2991. const ed25519_public_key_t *blinded_pk,
  2992. const routerstatus_t *hsdir_rs)
  2993. {
  2994. char version_str[4] = {0};
  2995. directory_request_t *dir_req;
  2996. hs_ident_dir_conn_t ident;
  2997. tor_assert(encoded_desc);
  2998. tor_assert(identity_pk);
  2999. tor_assert(blinded_pk);
  3000. tor_assert(hsdir_rs);
  3001. /* Setup the connection identifier. */
  3002. memset(&ident, 0, sizeof(ident));
  3003. hs_ident_dir_conn_init(identity_pk, blinded_pk, &ident);
  3004. /* This is our resource when uploading which is used to construct the URL
  3005. * with the version number: "/tor/hs/<version>/publish". */
  3006. tor_snprintf(version_str, sizeof(version_str), "%u", version);
  3007. /* Build the directory request for this HSDir. */
  3008. dir_req = directory_request_new(DIR_PURPOSE_UPLOAD_HSDESC);
  3009. directory_request_set_routerstatus(dir_req, hsdir_rs);
  3010. directory_request_set_indirection(dir_req, DIRIND_ANONYMOUS);
  3011. directory_request_set_resource(dir_req, version_str);
  3012. directory_request_set_payload(dir_req, encoded_desc,
  3013. strlen(encoded_desc));
  3014. /* The ident object is copied over the directory connection object once
  3015. * the directory request is initiated. */
  3016. directory_request_upload_set_hs_ident(dir_req, &ident);
  3017. /* Initiate the directory request to the hsdir.*/
  3018. directory_initiate_request(dir_req);
  3019. directory_request_free(dir_req);
  3020. }
  3021. /* Add the ephemeral service using the secret key sk and ports. Both max
  3022. * streams parameter will be set in the newly created service.
  3023. *
  3024. * Ownership of sk and ports is passed to this routine. Regardless of
  3025. * success/failure, callers should not touch these values after calling this
  3026. * routine, and may assume that correct cleanup has been done on failure.
  3027. *
  3028. * Return an appropriate hs_service_add_ephemeral_status_t. */
  3029. hs_service_add_ephemeral_status_t
  3030. hs_service_add_ephemeral(ed25519_secret_key_t *sk, smartlist_t *ports,
  3031. int max_streams_per_rdv_circuit,
  3032. int max_streams_close_circuit, char **address_out)
  3033. {
  3034. hs_service_add_ephemeral_status_t ret;
  3035. hs_service_t *service = NULL;
  3036. tor_assert(sk);
  3037. tor_assert(ports);
  3038. tor_assert(address_out);
  3039. service = hs_service_new(get_options());
  3040. /* Setup the service configuration with specifics. A default service is
  3041. * HS_VERSION_TWO so explicitly set it. */
  3042. service->config.version = HS_VERSION_THREE;
  3043. service->config.max_streams_per_rdv_circuit = max_streams_per_rdv_circuit;
  3044. service->config.max_streams_close_circuit = !!max_streams_close_circuit;
  3045. service->config.is_ephemeral = 1;
  3046. smartlist_free(service->config.ports);
  3047. service->config.ports = ports;
  3048. /* Handle the keys. */
  3049. memcpy(&service->keys.identity_sk, sk, sizeof(service->keys.identity_sk));
  3050. if (ed25519_public_key_generate(&service->keys.identity_pk,
  3051. &service->keys.identity_sk) < 0) {
  3052. log_warn(LD_CONFIG, "Unable to generate ed25519 public key"
  3053. "for v3 service.");
  3054. ret = RSAE_BADPRIVKEY;
  3055. goto err;
  3056. }
  3057. /* Make sure we have at least one port. */
  3058. if (smartlist_len(service->config.ports) == 0) {
  3059. log_warn(LD_CONFIG, "At least one VIRTPORT/TARGET must be specified "
  3060. "for v3 service.");
  3061. ret = RSAE_BADVIRTPORT;
  3062. goto err;
  3063. }
  3064. /* Build the onion address for logging purposes but also the control port
  3065. * uses it for the HS_DESC event. */
  3066. hs_build_address(&service->keys.identity_pk,
  3067. (uint8_t) service->config.version,
  3068. service->onion_address);
  3069. /* The only way the registration can fail is if the service public key
  3070. * already exists. */
  3071. if (BUG(register_service(hs_service_map, service) < 0)) {
  3072. log_warn(LD_CONFIG, "Onion Service private key collides with an "
  3073. "existing v3 service.");
  3074. ret = RSAE_ADDREXISTS;
  3075. goto err;
  3076. }
  3077. log_info(LD_CONFIG, "Added ephemeral v3 onion service: %s",
  3078. safe_str_client(service->onion_address));
  3079. *address_out = tor_strdup(service->onion_address);
  3080. ret = RSAE_OKAY;
  3081. goto end;
  3082. err:
  3083. hs_service_free(service);
  3084. end:
  3085. memwipe(sk, 0, sizeof(ed25519_secret_key_t));
  3086. tor_free(sk);
  3087. return ret;
  3088. }
  3089. /* For the given onion address, delete the ephemeral service. Return 0 on
  3090. * success else -1 on error. */
  3091. int
  3092. hs_service_del_ephemeral(const char *address)
  3093. {
  3094. uint8_t version;
  3095. ed25519_public_key_t pk;
  3096. hs_service_t *service = NULL;
  3097. tor_assert(address);
  3098. if (hs_parse_address(address, &pk, NULL, &version) < 0) {
  3099. log_warn(LD_CONFIG, "Requested malformed v3 onion address for removal.");
  3100. goto err;
  3101. }
  3102. if (version != HS_VERSION_THREE) {
  3103. log_warn(LD_CONFIG, "Requested version of onion address for removal "
  3104. "is not supported.");
  3105. goto err;
  3106. }
  3107. service = find_service(hs_service_map, &pk);
  3108. if (service == NULL) {
  3109. log_warn(LD_CONFIG, "Requested non-existent v3 hidden service for "
  3110. "removal.");
  3111. goto err;
  3112. }
  3113. if (!service->config.is_ephemeral) {
  3114. log_warn(LD_CONFIG, "Requested non-ephemeral v3 hidden service for "
  3115. "removal.");
  3116. goto err;
  3117. }
  3118. /* Close circuits, remove from map and finally free. */
  3119. close_service_circuits(service);
  3120. remove_service(hs_service_map, service);
  3121. hs_service_free(service);
  3122. log_info(LD_CONFIG, "Removed ephemeral v3 hidden service: %s",
  3123. safe_str_client(address));
  3124. return 0;
  3125. err:
  3126. return -1;
  3127. }
  3128. /* Using the ed25519 public key pk, find a service for that key and return the
  3129. * current encoded descriptor as a newly allocated string or NULL if not
  3130. * found. This is used by the control port subsystem. */
  3131. char *
  3132. hs_service_lookup_current_desc(const ed25519_public_key_t *pk)
  3133. {
  3134. const hs_service_t *service;
  3135. tor_assert(pk);
  3136. service = find_service(hs_service_map, pk);
  3137. if (service && service->desc_current) {
  3138. char *encoded_desc = NULL;
  3139. /* No matter what is the result (which should never be a failure), return
  3140. * the encoded variable, if success it will contain the right thing else
  3141. * it will be NULL. */
  3142. service_encode_descriptor(service,
  3143. service->desc_current,
  3144. &service->desc_current->signing_kp,
  3145. &encoded_desc);
  3146. return encoded_desc;
  3147. }
  3148. return NULL;
  3149. }
  3150. /* Return the number of service we have configured and usable. */
  3151. unsigned int
  3152. hs_service_get_num_services(void)
  3153. {
  3154. if (hs_service_map == NULL) {
  3155. return 0;
  3156. }
  3157. return HT_SIZE(hs_service_map);
  3158. }
  3159. /* Called once an introduction circuit is closed. If the circuit doesn't have
  3160. * a v3 identifier, it is ignored. */
  3161. void
  3162. hs_service_intro_circ_has_closed(origin_circuit_t *circ)
  3163. {
  3164. hs_service_t *service = NULL;
  3165. hs_service_intro_point_t *ip = NULL;
  3166. hs_service_descriptor_t *desc = NULL;
  3167. tor_assert(circ);
  3168. if (circ->hs_ident == NULL) {
  3169. /* This is not a v3 circuit, ignore. */
  3170. goto end;
  3171. }
  3172. get_objects_from_ident(circ->hs_ident, &service, &ip, &desc);
  3173. if (service == NULL) {
  3174. /* This is possible if the circuits are closed and the service is
  3175. * immediately deleted. */
  3176. log_info(LD_REND, "Unable to find any hidden service associated "
  3177. "identity key %s on intro circuit %u.",
  3178. ed25519_fmt(&circ->hs_ident->identity_pk),
  3179. TO_CIRCUIT(circ)->n_circ_id);
  3180. goto end;
  3181. }
  3182. if (ip == NULL) {
  3183. /* The introduction point object has already been removed probably by our
  3184. * cleanup process so ignore. */
  3185. goto end;
  3186. }
  3187. /* Can't have an intro point object without a descriptor. */
  3188. tor_assert(desc);
  3189. /* Circuit disappeared so make sure the intro point is updated. By
  3190. * keeping the object in the descriptor, we'll be able to retry. */
  3191. ip->circuit_established = 0;
  3192. end:
  3193. return;
  3194. }
  3195. /* Given conn, a rendezvous edge connection acting as an exit stream, look up
  3196. * the hidden service for the circuit circ, and look up the port and address
  3197. * based on the connection port. Assign the actual connection address.
  3198. *
  3199. * Return 0 on success. Return -1 on failure and the caller should NOT close
  3200. * the circuit. Return -2 on failure and the caller MUST close the circuit for
  3201. * security reasons. */
  3202. int
  3203. hs_service_set_conn_addr_port(const origin_circuit_t *circ,
  3204. edge_connection_t *conn)
  3205. {
  3206. hs_service_t *service = NULL;
  3207. tor_assert(circ);
  3208. tor_assert(conn);
  3209. tor_assert(TO_CIRCUIT(circ)->purpose == CIRCUIT_PURPOSE_S_REND_JOINED);
  3210. tor_assert(circ->hs_ident);
  3211. get_objects_from_ident(circ->hs_ident, &service, NULL, NULL);
  3212. if (service == NULL) {
  3213. log_warn(LD_REND, "Unable to find any hidden service associated "
  3214. "identity key %s on rendezvous circuit %u.",
  3215. ed25519_fmt(&circ->hs_ident->identity_pk),
  3216. TO_CIRCUIT(circ)->n_circ_id);
  3217. /* We want the caller to close the circuit because it's not a valid
  3218. * service so no danger. Attempting to bruteforce the entire key space by
  3219. * opening circuits to learn which service is being hosted here is
  3220. * impractical. */
  3221. goto err_close;
  3222. }
  3223. /* Enforce the streams-per-circuit limit, and refuse to provide a mapping if
  3224. * this circuit will exceed the limit. */
  3225. if (service->config.max_streams_per_rdv_circuit > 0 &&
  3226. (circ->hs_ident->num_rdv_streams >=
  3227. service->config.max_streams_per_rdv_circuit)) {
  3228. #define MAX_STREAM_WARN_INTERVAL 600
  3229. static struct ratelim_t stream_ratelim =
  3230. RATELIM_INIT(MAX_STREAM_WARN_INTERVAL);
  3231. log_fn_ratelim(&stream_ratelim, LOG_WARN, LD_REND,
  3232. "Maximum streams per circuit limit reached on "
  3233. "rendezvous circuit %u for service %s. Circuit has "
  3234. "%" PRIu64 " out of %" PRIu64 " streams. %s.",
  3235. TO_CIRCUIT(circ)->n_circ_id,
  3236. service->onion_address,
  3237. circ->hs_ident->num_rdv_streams,
  3238. service->config.max_streams_per_rdv_circuit,
  3239. service->config.max_streams_close_circuit ?
  3240. "Closing circuit" : "Ignoring open stream request");
  3241. if (service->config.max_streams_close_circuit) {
  3242. /* Service explicitly configured to close immediately. */
  3243. goto err_close;
  3244. }
  3245. /* Exceeding the limit makes tor silently ignore the stream creation
  3246. * request and keep the circuit open. */
  3247. goto err_no_close;
  3248. }
  3249. /* Find a virtual port of that service mathcing the one in the connection if
  3250. * successful, set the address in the connection. */
  3251. if (hs_set_conn_addr_port(service->config.ports, conn) < 0) {
  3252. log_info(LD_REND, "No virtual port mapping exists for port %d for "
  3253. "hidden service %s.",
  3254. TO_CONN(conn)->port, service->onion_address);
  3255. if (service->config.allow_unknown_ports) {
  3256. /* Service explicitly allow connection to unknown ports so close right
  3257. * away because we do not care about port mapping. */
  3258. goto err_close;
  3259. }
  3260. /* If the service didn't explicitly allow it, we do NOT close the circuit
  3261. * here to raise the bar in terms of performance for port mapping. */
  3262. goto err_no_close;
  3263. }
  3264. /* Success. */
  3265. return 0;
  3266. err_close:
  3267. /* Indicate the caller that the circuit should be closed. */
  3268. return -2;
  3269. err_no_close:
  3270. /* Indicate the caller to NOT close the circuit. */
  3271. return -1;
  3272. }
  3273. /** Does the service with identity pubkey <b>pk</b> export the circuit IDs of
  3274. * its clients? */
  3275. hs_circuit_id_protocol_t
  3276. hs_service_exports_circuit_id(const ed25519_public_key_t *pk)
  3277. {
  3278. hs_service_t *service = find_service(hs_service_map, pk);
  3279. if (!service) {
  3280. return HS_CIRCUIT_ID_PROTOCOL_NONE;
  3281. }
  3282. return service->config.circuit_id_protocol;
  3283. }
  3284. /* Add to file_list every filename used by a configured hidden service, and to
  3285. * dir_list every directory path used by a configured hidden service. This is
  3286. * used by the sandbox subsystem to whitelist those. */
  3287. void
  3288. hs_service_lists_fnames_for_sandbox(smartlist_t *file_list,
  3289. smartlist_t *dir_list)
  3290. {
  3291. tor_assert(file_list);
  3292. tor_assert(dir_list);
  3293. /* Add files and dirs for legacy services. */
  3294. rend_services_add_filenames_to_lists(file_list, dir_list);
  3295. /* Add files and dirs for v3+. */
  3296. FOR_EACH_SERVICE_BEGIN(service) {
  3297. /* Skip ephemeral service, they don't touch the disk. */
  3298. if (service->config.is_ephemeral) {
  3299. continue;
  3300. }
  3301. service_add_fnames_to_list(service, file_list);
  3302. smartlist_add_strdup(dir_list, service->config.directory_path);
  3303. smartlist_add_strdup(dir_list, dname_client_pubkeys);
  3304. } FOR_EACH_DESCRIPTOR_END;
  3305. }
  3306. /* Called when our internal view of the directory has changed. We might have
  3307. * received a new batch of descriptors which might affect the shape of the
  3308. * HSDir hash ring. Signal that we should reexamine the hash ring and
  3309. * re-upload our HS descriptors if needed. */
  3310. void
  3311. hs_service_dir_info_changed(void)
  3312. {
  3313. if (hs_service_get_num_services() > 0) {
  3314. /* New directory information usually goes every consensus so rate limit
  3315. * every 30 minutes to not be too conservative. */
  3316. static struct ratelim_t dir_info_changed_ratelim = RATELIM_INIT(30 * 60);
  3317. log_fn_ratelim(&dir_info_changed_ratelim, LOG_INFO, LD_REND,
  3318. "New dirinfo arrived: consider reuploading descriptor");
  3319. consider_republishing_hs_descriptors = 1;
  3320. }
  3321. }
  3322. /* Called when we get an INTRODUCE2 cell on the circ. Respond to the cell and
  3323. * launch a circuit to the rendezvous point. */
  3324. int
  3325. hs_service_receive_introduce2(origin_circuit_t *circ, const uint8_t *payload,
  3326. size_t payload_len)
  3327. {
  3328. int ret = -1;
  3329. tor_assert(circ);
  3330. tor_assert(payload);
  3331. /* Do some initial validation and logging before we parse the cell */
  3332. if (TO_CIRCUIT(circ)->purpose != CIRCUIT_PURPOSE_S_INTRO) {
  3333. log_warn(LD_PROTOCOL, "Received an INTRODUCE2 cell on a "
  3334. "non introduction circuit of purpose %d",
  3335. TO_CIRCUIT(circ)->purpose);
  3336. goto done;
  3337. }
  3338. if (circ->hs_ident) {
  3339. ret = service_handle_introduce2(circ, payload, payload_len);
  3340. hs_stats_note_introduce2_cell(1);
  3341. } else {
  3342. ret = rend_service_receive_introduction(circ, payload, payload_len);
  3343. hs_stats_note_introduce2_cell(0);
  3344. }
  3345. done:
  3346. return ret;
  3347. }
  3348. /* Called when we get an INTRO_ESTABLISHED cell. Mark the circuit as an
  3349. * established introduction point. Return 0 on success else a negative value
  3350. * and the circuit is closed. */
  3351. int
  3352. hs_service_receive_intro_established(origin_circuit_t *circ,
  3353. const uint8_t *payload,
  3354. size_t payload_len)
  3355. {
  3356. int ret = -1;
  3357. tor_assert(circ);
  3358. tor_assert(payload);
  3359. if (TO_CIRCUIT(circ)->purpose != CIRCUIT_PURPOSE_S_ESTABLISH_INTRO) {
  3360. log_warn(LD_PROTOCOL, "Received an INTRO_ESTABLISHED cell on a "
  3361. "non introduction circuit of purpose %d",
  3362. TO_CIRCUIT(circ)->purpose);
  3363. goto err;
  3364. }
  3365. /* Handle both version. v2 uses rend_data and v3 uses the hs circuit
  3366. * identifier hs_ident. Can't be both. */
  3367. if (circ->hs_ident) {
  3368. ret = service_handle_intro_established(circ, payload, payload_len);
  3369. } else {
  3370. ret = rend_service_intro_established(circ, payload, payload_len);
  3371. }
  3372. if (ret < 0) {
  3373. goto err;
  3374. }
  3375. return 0;
  3376. err:
  3377. circuit_mark_for_close(TO_CIRCUIT(circ), END_CIRC_REASON_TORPROTOCOL);
  3378. return -1;
  3379. }
  3380. /* Called when any kind of hidden service circuit is done building thus
  3381. * opened. This is the entry point from the circuit subsystem. */
  3382. void
  3383. hs_service_circuit_has_opened(origin_circuit_t *circ)
  3384. {
  3385. tor_assert(circ);
  3386. /* Handle both version. v2 uses rend_data and v3 uses the hs circuit
  3387. * identifier hs_ident. Can't be both. */
  3388. switch (TO_CIRCUIT(circ)->purpose) {
  3389. case CIRCUIT_PURPOSE_S_ESTABLISH_INTRO:
  3390. if (circ->hs_ident) {
  3391. service_intro_circ_has_opened(circ);
  3392. } else {
  3393. rend_service_intro_has_opened(circ);
  3394. }
  3395. break;
  3396. case CIRCUIT_PURPOSE_S_CONNECT_REND:
  3397. if (circ->hs_ident) {
  3398. service_rendezvous_circ_has_opened(circ);
  3399. } else {
  3400. rend_service_rendezvous_has_opened(circ);
  3401. }
  3402. break;
  3403. default:
  3404. tor_assert(0);
  3405. }
  3406. }
  3407. /* Return the service version by looking at the key in the service directory.
  3408. * If the key is not found or unrecognized, -1 is returned. Else, the service
  3409. * version is returned. */
  3410. int
  3411. hs_service_get_version_from_key(const hs_service_t *service)
  3412. {
  3413. int version = -1; /* Unknown version. */
  3414. const char *directory_path;
  3415. tor_assert(service);
  3416. /* We'll try to load the key for version 3. If not found, we'll try version
  3417. * 2 and if not found, we'll send back an unknown version (-1). */
  3418. directory_path = service->config.directory_path;
  3419. /* Version 3 check. */
  3420. if (service_key_on_disk(directory_path)) {
  3421. version = HS_VERSION_THREE;
  3422. goto end;
  3423. }
  3424. /* Version 2 check. */
  3425. if (rend_service_key_on_disk(directory_path)) {
  3426. version = HS_VERSION_TWO;
  3427. goto end;
  3428. }
  3429. end:
  3430. return version;
  3431. }
  3432. /* Load and/or generate keys for all onion services including the client
  3433. * authorization if any. Return 0 on success, -1 on failure. */
  3434. int
  3435. hs_service_load_all_keys(void)
  3436. {
  3437. /* Load v2 service keys if we have v2. */
  3438. if (rend_num_services() != 0) {
  3439. if (rend_service_load_all_keys(NULL) < 0) {
  3440. goto err;
  3441. }
  3442. }
  3443. /* Load or/and generate them for v3+. */
  3444. SMARTLIST_FOREACH_BEGIN(hs_service_staging_list, hs_service_t *, service) {
  3445. /* Ignore ephemeral service, they already have their keys set. */
  3446. if (service->config.is_ephemeral) {
  3447. continue;
  3448. }
  3449. log_info(LD_REND, "Loading v3 onion service keys from %s",
  3450. service_escaped_dir(service));
  3451. if (load_service_keys(service) < 0) {
  3452. goto err;
  3453. }
  3454. } SMARTLIST_FOREACH_END(service);
  3455. /* Final step, the staging list contains service in a quiescent state that
  3456. * is ready to be used. Register them to the global map. Once this is over,
  3457. * the staging list will be cleaned up. */
  3458. register_all_services();
  3459. /* All keys have been loaded successfully. */
  3460. return 0;
  3461. err:
  3462. return -1;
  3463. }
  3464. /* Put all service object in the given service list. After this, the caller
  3465. * looses ownership of every elements in the list and responsible to free the
  3466. * list pointer. */
  3467. void
  3468. hs_service_stage_services(const smartlist_t *service_list)
  3469. {
  3470. tor_assert(service_list);
  3471. /* This list is freed at registration time but this function can be called
  3472. * multiple time. */
  3473. if (hs_service_staging_list == NULL) {
  3474. hs_service_staging_list = smartlist_new();
  3475. }
  3476. /* Add all service object to our staging list. Caller is responsible for
  3477. * freeing the service_list. */
  3478. smartlist_add_all(hs_service_staging_list, service_list);
  3479. }
  3480. /* Allocate and initilize a service object. The service configuration will
  3481. * contain the default values. Return the newly allocated object pointer. This
  3482. * function can't fail. */
  3483. hs_service_t *
  3484. hs_service_new(const or_options_t *options)
  3485. {
  3486. hs_service_t *service = tor_malloc_zero(sizeof(hs_service_t));
  3487. /* Set default configuration value. */
  3488. set_service_default_config(&service->config, options);
  3489. /* Set the default service version. */
  3490. service->config.version = HS_SERVICE_DEFAULT_VERSION;
  3491. /* Allocate the CLIENT_PK replay cache in service state. */
  3492. service->state.replay_cache_rend_cookie =
  3493. replaycache_new(REND_REPLAY_TIME_INTERVAL, REND_REPLAY_TIME_INTERVAL);
  3494. return service;
  3495. }
  3496. /* Free the given <b>service</b> object and all its content. This function
  3497. * also takes care of wiping service keys from memory. It is safe to pass a
  3498. * NULL pointer. */
  3499. void
  3500. hs_service_free_(hs_service_t *service)
  3501. {
  3502. if (service == NULL) {
  3503. return;
  3504. }
  3505. /* Free descriptors. Go over both descriptor with this loop. */
  3506. FOR_EACH_DESCRIPTOR_BEGIN(service, desc) {
  3507. service_descriptor_free(desc);
  3508. } FOR_EACH_DESCRIPTOR_END;
  3509. /* Free service configuration. */
  3510. service_clear_config(&service->config);
  3511. /* Free replay cache from state. */
  3512. if (service->state.replay_cache_rend_cookie) {
  3513. replaycache_free(service->state.replay_cache_rend_cookie);
  3514. }
  3515. /* Wipe service keys. */
  3516. memwipe(&service->keys.identity_sk, 0, sizeof(service->keys.identity_sk));
  3517. tor_free(service);
  3518. }
  3519. /* Periodic callback. Entry point from the main loop to the HS service
  3520. * subsystem. This is call every second. This is skipped if tor can't build a
  3521. * circuit or the network is disabled. */
  3522. void
  3523. hs_service_run_scheduled_events(time_t now)
  3524. {
  3525. /* First thing we'll do here is to make sure our services are in a
  3526. * quiescent state for the scheduled events. */
  3527. run_housekeeping_event(now);
  3528. /* Order matters here. We first make sure the descriptor object for each
  3529. * service contains the latest data. Once done, we check if we need to open
  3530. * new introduction circuit. Finally, we try to upload the descriptor for
  3531. * each service. */
  3532. /* Make sure descriptors are up to date. */
  3533. run_build_descriptor_event(now);
  3534. /* Make sure services have enough circuits. */
  3535. run_build_circuit_event(now);
  3536. /* Upload the descriptors if needed/possible. */
  3537. run_upload_descriptor_event(now);
  3538. }
  3539. /* Initialize the service HS subsystem. */
  3540. void
  3541. hs_service_init(void)
  3542. {
  3543. /* Should never be called twice. */
  3544. tor_assert(!hs_service_map);
  3545. tor_assert(!hs_service_staging_list);
  3546. /* v2 specific. */
  3547. rend_service_init();
  3548. hs_service_map = tor_malloc_zero(sizeof(struct hs_service_ht));
  3549. HT_INIT(hs_service_ht, hs_service_map);
  3550. hs_service_staging_list = smartlist_new();
  3551. }
  3552. /* Release all global storage of the hidden service subsystem. */
  3553. void
  3554. hs_service_free_all(void)
  3555. {
  3556. rend_service_free_all();
  3557. service_free_all();
  3558. }
  3559. #ifdef TOR_UNIT_TESTS
  3560. /* Return the global service map size. Only used by unit test. */
  3561. STATIC unsigned int
  3562. get_hs_service_map_size(void)
  3563. {
  3564. return HT_SIZE(hs_service_map);
  3565. }
  3566. /* Return the staging list size. Only used by unit test. */
  3567. STATIC int
  3568. get_hs_service_staging_list_size(void)
  3569. {
  3570. return smartlist_len(hs_service_staging_list);
  3571. }
  3572. STATIC hs_service_ht *
  3573. get_hs_service_map(void)
  3574. {
  3575. return hs_service_map;
  3576. }
  3577. STATIC hs_service_t *
  3578. get_first_service(void)
  3579. {
  3580. hs_service_t **obj = HT_START(hs_service_ht, hs_service_map);
  3581. if (obj == NULL) {
  3582. return NULL;
  3583. }
  3584. return *obj;
  3585. }
  3586. #endif /* defined(TOR_UNIT_TESTS) */