routerlist.c 202 KB

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  1. /* Copyright (c) 2001 Matej Pfajfar.
  2. * Copyright (c) 2001-2004, Roger Dingledine.
  3. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  4. * Copyright (c) 2007-2017, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file routerlist.c
  8. * \brief Code to
  9. * maintain and access the global list of routerinfos for known
  10. * servers.
  11. *
  12. * A "routerinfo_t" object represents a single self-signed router
  13. * descriptor, as generated by a Tor relay in order to tell the rest of
  14. * the world about its keys, address, and capabilities. An
  15. * "extrainfo_t" object represents an adjunct "extra-info" object,
  16. * certified by a corresponding router descriptor, reporting more
  17. * information about the relay that nearly all users will not need.
  18. *
  19. * Most users will not use router descriptors for most relays. Instead,
  20. * they use the information in microdescriptors and in the consensus
  21. * networkstatus.
  22. *
  23. * Right now, routerinfo_t objects are used in these ways:
  24. * <ul>
  25. * <li>By clients, in order to learn about bridge keys and capabilities.
  26. * (Bridges aren't listed in the consensus networkstatus, so they
  27. * can't have microdescriptors.)
  28. * <li>By relays, since relays want more information about other relays
  29. * than they can learn from microdescriptors. (TODO: Is this still true?)
  30. * <li>By authorities, which receive them and use them to generate the
  31. * consensus and the microdescriptors.
  32. * <li>By all directory caches, which download them in case somebody
  33. * else wants them.
  34. * </ul>
  35. *
  36. * Routerinfos are mostly created by parsing them from a string, in
  37. * routerparse.c. We store them to disk on receiving them, and
  38. * periodically discard the ones we don't need. On restarting, we
  39. * re-read them from disk. (This also applies to extrainfo documents, if
  40. * we are configured to fetch them.)
  41. *
  42. * In order to keep our list of routerinfos up-to-date, we periodically
  43. * check whether there are any listed in the latest consensus (or in the
  44. * votes from other authorities, if we are an authority) that we don't
  45. * have. (This also applies to extrainfo documents, if we are
  46. * configured to fetch them.)
  47. *
  48. * Almost nothing in Tor should use a routerinfo_t to refer directly to
  49. * a relay; instead, almost everything should use node_t (implemented in
  50. * nodelist.c), which provides a common interface to routerinfo_t,
  51. * routerstatus_t, and microdescriptor_t.
  52. *
  53. * <br>
  54. *
  55. * This module also has some of the functions used for choosing random
  56. * nodes according to different rules and weights. Historically, they
  57. * were all in this module. Now, they are spread across this module,
  58. * nodelist.c, and networkstatus.c. (TODO: Fix that.)
  59. *
  60. * <br>
  61. *
  62. * (For historical reasons) this module also contains code for handling
  63. * the list of fallback directories, the list of directory authorities,
  64. * and the list of authority certificates.
  65. *
  66. * For the directory authorities, we have a list containing the public
  67. * identity key, and contact points, for each authority. The
  68. * authorities receive descriptors from relays, and publish consensuses,
  69. * descriptors, and microdescriptors. This list is pre-configured.
  70. *
  71. * Fallback directories are well-known, stable, but untrusted directory
  72. * caches that clients which have not yet bootstrapped can use to get
  73. * their first networkstatus consensus, in order to find out where the
  74. * Tor network really is. This list is pre-configured in
  75. * fallback_dirs.inc. Every authority also serves as a fallback.
  76. *
  77. * Both fallback directories and directory authorities are are
  78. * represented by a dir_server_t.
  79. *
  80. * Authority certificates are signed with authority identity keys; they
  81. * are used to authenticate shorter-term authority signing keys. We
  82. * fetch them when we find a consensus or a vote that has been signed
  83. * with a signing key we don't recognize. We cache them on disk and
  84. * load them on startup. Authority operators generate them with the
  85. * "tor-gencert" utility.
  86. *
  87. * TODO: Authority certificates should be a separate module.
  88. *
  89. * TODO: dir_server_t stuff should be in a separate module.
  90. **/
  91. #define ROUTERLIST_PRIVATE
  92. #include "or.h"
  93. #include "backtrace.h"
  94. #include "bridges.h"
  95. #include "crypto_ed25519.h"
  96. #include "circuitstats.h"
  97. #include "config.h"
  98. #include "connection.h"
  99. #include "control.h"
  100. #include "crypto_rand.h"
  101. #include "directory.h"
  102. #include "dirserv.h"
  103. #include "entrynodes.h"
  104. #include "fp_pair.h"
  105. #include "geoip.h"
  106. #include "hibernate.h"
  107. #include "main.h"
  108. #include "microdesc.h"
  109. #include "networkstatus.h"
  110. #include "nodelist.h"
  111. #include "policies.h"
  112. #include "reasons.h"
  113. #include "rendcommon.h"
  114. #include "rendservice.h"
  115. #include "rephist.h"
  116. #include "router.h"
  117. #include "routerlist.h"
  118. #include "routerparse.h"
  119. #include "routerset.h"
  120. #include "sandbox.h"
  121. #include "torcert.h"
  122. #include "dirauth/dirvote.h"
  123. #include "dirauth/mode.h"
  124. #include "dir_connection_st.h"
  125. #include "dir_server_st.h"
  126. #include "node_st.h"
  127. // #define DEBUG_ROUTERLIST
  128. /****************************************************************************/
  129. /* Typed wrappers for different digestmap types; used to avoid type
  130. * confusion. */
  131. DECLARE_TYPED_DIGESTMAP_FNS(sdmap_, digest_sd_map_t, signed_descriptor_t)
  132. DECLARE_TYPED_DIGESTMAP_FNS(rimap_, digest_ri_map_t, routerinfo_t)
  133. DECLARE_TYPED_DIGESTMAP_FNS(eimap_, digest_ei_map_t, extrainfo_t)
  134. DECLARE_TYPED_DIGESTMAP_FNS(dsmap_, digest_ds_map_t, download_status_t)
  135. #define SDMAP_FOREACH(map, keyvar, valvar) \
  136. DIGESTMAP_FOREACH(sdmap_to_digestmap(map), keyvar, signed_descriptor_t *, \
  137. valvar)
  138. #define RIMAP_FOREACH(map, keyvar, valvar) \
  139. DIGESTMAP_FOREACH(rimap_to_digestmap(map), keyvar, routerinfo_t *, valvar)
  140. #define EIMAP_FOREACH(map, keyvar, valvar) \
  141. DIGESTMAP_FOREACH(eimap_to_digestmap(map), keyvar, extrainfo_t *, valvar)
  142. #define DSMAP_FOREACH(map, keyvar, valvar) \
  143. DIGESTMAP_FOREACH(dsmap_to_digestmap(map), keyvar, download_status_t *, \
  144. valvar)
  145. #define eimap_free(map, fn) MAP_FREE_AND_NULL(eimap, (map), (fn))
  146. #define rimap_free(map, fn) MAP_FREE_AND_NULL(rimap, (map), (fn))
  147. #define dsmap_free(map, fn) MAP_FREE_AND_NULL(dsmap, (map), (fn))
  148. #define sdmap_free(map, fn) MAP_FREE_AND_NULL(sdmap, (map), (fn))
  149. /* Forward declaration for cert_list_t */
  150. typedef struct cert_list_t cert_list_t;
  151. /* static function prototypes */
  152. static int compute_weighted_bandwidths(const smartlist_t *sl,
  153. bandwidth_weight_rule_t rule,
  154. double **bandwidths_out,
  155. double *total_bandwidth_out);
  156. static const routerstatus_t *router_pick_trusteddirserver_impl(
  157. const smartlist_t *sourcelist, dirinfo_type_t auth,
  158. int flags, int *n_busy_out);
  159. static const routerstatus_t *router_pick_dirserver_generic(
  160. smartlist_t *sourcelist,
  161. dirinfo_type_t type, int flags);
  162. static void mark_all_dirservers_up(smartlist_t *server_list);
  163. static int signed_desc_digest_is_recognized(signed_descriptor_t *desc);
  164. static const char *signed_descriptor_get_body_impl(
  165. const signed_descriptor_t *desc,
  166. int with_annotations);
  167. static void list_pending_downloads(digestmap_t *result,
  168. digest256map_t *result256,
  169. int purpose, const char *prefix);
  170. static void list_pending_fpsk_downloads(fp_pair_map_t *result);
  171. static void launch_dummy_descriptor_download_as_needed(time_t now,
  172. const or_options_t *options);
  173. static void download_status_reset_by_sk_in_cl(cert_list_t *cl,
  174. const char *digest);
  175. static int download_status_is_ready_by_sk_in_cl(cert_list_t *cl,
  176. const char *digest,
  177. time_t now);
  178. /****************************************************************************/
  179. /** Global list of a dir_server_t object for each directory
  180. * authority. */
  181. static smartlist_t *trusted_dir_servers = NULL;
  182. /** Global list of dir_server_t objects for all directory authorities
  183. * and all fallback directory servers. */
  184. static smartlist_t *fallback_dir_servers = NULL;
  185. /** List of certificates for a single authority, and download status for
  186. * latest certificate.
  187. */
  188. struct cert_list_t {
  189. /*
  190. * The keys of download status map are cert->signing_key_digest for pending
  191. * downloads by (identity digest/signing key digest) pair; functions such
  192. * as authority_cert_get_by_digest() already assume these are unique.
  193. */
  194. struct digest_ds_map_t *dl_status_map;
  195. /* There is also a dlstatus for the download by identity key only */
  196. download_status_t dl_status_by_id;
  197. smartlist_t *certs;
  198. };
  199. /** Map from v3 identity key digest to cert_list_t. */
  200. static digestmap_t *trusted_dir_certs = NULL;
  201. /** True iff any key certificate in at least one member of
  202. * <b>trusted_dir_certs</b> has changed since we last flushed the
  203. * certificates to disk. */
  204. static int trusted_dir_servers_certs_changed = 0;
  205. /** Global list of all of the routers that we know about. */
  206. static routerlist_t *routerlist = NULL;
  207. /** List of strings for nicknames we've already warned about and that are
  208. * still unknown / unavailable. */
  209. static smartlist_t *warned_nicknames = NULL;
  210. /** The last time we tried to download any routerdesc, or 0 for "never". We
  211. * use this to rate-limit download attempts when the number of routerdescs to
  212. * download is low. */
  213. static time_t last_descriptor_download_attempted = 0;
  214. /** Return the number of directory authorities whose type matches some bit set
  215. * in <b>type</b> */
  216. int
  217. get_n_authorities(dirinfo_type_t type)
  218. {
  219. int n = 0;
  220. if (!trusted_dir_servers)
  221. return 0;
  222. SMARTLIST_FOREACH(trusted_dir_servers, dir_server_t *, ds,
  223. if (ds->type & type)
  224. ++n);
  225. return n;
  226. }
  227. /** Initialise schedule, want_authority, and increment_on in the download
  228. * status dlstatus, then call download_status_reset() on it.
  229. * It is safe to call this function or download_status_reset() multiple times
  230. * on a new dlstatus. But it should *not* be called after a dlstatus has been
  231. * used to count download attempts or failures. */
  232. static void
  233. download_status_cert_init(download_status_t *dlstatus)
  234. {
  235. dlstatus->schedule = DL_SCHED_CONSENSUS;
  236. dlstatus->want_authority = DL_WANT_ANY_DIRSERVER;
  237. dlstatus->increment_on = DL_SCHED_INCREMENT_FAILURE;
  238. dlstatus->last_backoff_position = 0;
  239. dlstatus->last_delay_used = 0;
  240. /* Use the new schedule to set next_attempt_at */
  241. download_status_reset(dlstatus);
  242. }
  243. /** Reset the download status of a specified element in a dsmap */
  244. static void
  245. download_status_reset_by_sk_in_cl(cert_list_t *cl, const char *digest)
  246. {
  247. download_status_t *dlstatus = NULL;
  248. tor_assert(cl);
  249. tor_assert(digest);
  250. /* Make sure we have a dsmap */
  251. if (!(cl->dl_status_map)) {
  252. cl->dl_status_map = dsmap_new();
  253. }
  254. /* Look for a download_status_t in the map with this digest */
  255. dlstatus = dsmap_get(cl->dl_status_map, digest);
  256. /* Got one? */
  257. if (!dlstatus) {
  258. /* Insert before we reset */
  259. dlstatus = tor_malloc_zero(sizeof(*dlstatus));
  260. dsmap_set(cl->dl_status_map, digest, dlstatus);
  261. download_status_cert_init(dlstatus);
  262. }
  263. tor_assert(dlstatus);
  264. /* Go ahead and reset it */
  265. download_status_reset(dlstatus);
  266. }
  267. /**
  268. * Return true if the download for this signing key digest in cl is ready
  269. * to be re-attempted.
  270. */
  271. static int
  272. download_status_is_ready_by_sk_in_cl(cert_list_t *cl,
  273. const char *digest,
  274. time_t now)
  275. {
  276. int rv = 0;
  277. download_status_t *dlstatus = NULL;
  278. tor_assert(cl);
  279. tor_assert(digest);
  280. /* Make sure we have a dsmap */
  281. if (!(cl->dl_status_map)) {
  282. cl->dl_status_map = dsmap_new();
  283. }
  284. /* Look for a download_status_t in the map with this digest */
  285. dlstatus = dsmap_get(cl->dl_status_map, digest);
  286. /* Got one? */
  287. if (dlstatus) {
  288. /* Use download_status_is_ready() */
  289. rv = download_status_is_ready(dlstatus, now);
  290. } else {
  291. /*
  292. * If we don't know anything about it, return 1, since we haven't
  293. * tried this one before. We need to create a new entry here,
  294. * too.
  295. */
  296. dlstatus = tor_malloc_zero(sizeof(*dlstatus));
  297. download_status_cert_init(dlstatus);
  298. dsmap_set(cl->dl_status_map, digest, dlstatus);
  299. rv = 1;
  300. }
  301. return rv;
  302. }
  303. /** Helper: Return the cert_list_t for an authority whose authority ID is
  304. * <b>id_digest</b>, allocating a new list if necessary. */
  305. static cert_list_t *
  306. get_cert_list(const char *id_digest)
  307. {
  308. cert_list_t *cl;
  309. if (!trusted_dir_certs)
  310. trusted_dir_certs = digestmap_new();
  311. cl = digestmap_get(trusted_dir_certs, id_digest);
  312. if (!cl) {
  313. cl = tor_malloc_zero(sizeof(cert_list_t));
  314. download_status_cert_init(&cl->dl_status_by_id);
  315. cl->certs = smartlist_new();
  316. cl->dl_status_map = dsmap_new();
  317. digestmap_set(trusted_dir_certs, id_digest, cl);
  318. }
  319. return cl;
  320. }
  321. /** Return a list of authority ID digests with potentially enumerable lists
  322. * of download_status_t objects; used by controller GETINFO queries.
  323. */
  324. MOCK_IMPL(smartlist_t *,
  325. list_authority_ids_with_downloads, (void))
  326. {
  327. smartlist_t *ids = smartlist_new();
  328. digestmap_iter_t *i;
  329. const char *digest;
  330. char *tmp;
  331. void *cl;
  332. if (trusted_dir_certs) {
  333. for (i = digestmap_iter_init(trusted_dir_certs);
  334. !(digestmap_iter_done(i));
  335. i = digestmap_iter_next(trusted_dir_certs, i)) {
  336. /*
  337. * We always have at least dl_status_by_id to query, so no need to
  338. * probe deeper than the existence of a cert_list_t.
  339. */
  340. digestmap_iter_get(i, &digest, &cl);
  341. tmp = tor_malloc(DIGEST_LEN);
  342. memcpy(tmp, digest, DIGEST_LEN);
  343. smartlist_add(ids, tmp);
  344. }
  345. }
  346. /* else definitely no downloads going since nothing even has a cert list */
  347. return ids;
  348. }
  349. /** Given an authority ID digest, return a pointer to the default download
  350. * status, or NULL if there is no such entry in trusted_dir_certs */
  351. MOCK_IMPL(download_status_t *,
  352. id_only_download_status_for_authority_id, (const char *digest))
  353. {
  354. download_status_t *dl = NULL;
  355. cert_list_t *cl;
  356. if (trusted_dir_certs) {
  357. cl = digestmap_get(trusted_dir_certs, digest);
  358. if (cl) {
  359. dl = &(cl->dl_status_by_id);
  360. }
  361. }
  362. return dl;
  363. }
  364. /** Given an authority ID digest, return a smartlist of signing key digests
  365. * for which download_status_t is potentially queryable, or NULL if no such
  366. * authority ID digest is known. */
  367. MOCK_IMPL(smartlist_t *,
  368. list_sk_digests_for_authority_id, (const char *digest))
  369. {
  370. smartlist_t *sks = NULL;
  371. cert_list_t *cl;
  372. dsmap_iter_t *i;
  373. const char *sk_digest;
  374. char *tmp;
  375. download_status_t *dl;
  376. if (trusted_dir_certs) {
  377. cl = digestmap_get(trusted_dir_certs, digest);
  378. if (cl) {
  379. sks = smartlist_new();
  380. if (cl->dl_status_map) {
  381. for (i = dsmap_iter_init(cl->dl_status_map);
  382. !(dsmap_iter_done(i));
  383. i = dsmap_iter_next(cl->dl_status_map, i)) {
  384. /* Pull the digest out and add it to the list */
  385. dsmap_iter_get(i, &sk_digest, &dl);
  386. tmp = tor_malloc(DIGEST_LEN);
  387. memcpy(tmp, sk_digest, DIGEST_LEN);
  388. smartlist_add(sks, tmp);
  389. }
  390. }
  391. }
  392. }
  393. return sks;
  394. }
  395. /** Given an authority ID digest and a signing key digest, return the
  396. * download_status_t or NULL if none exists. */
  397. MOCK_IMPL(download_status_t *,
  398. download_status_for_authority_id_and_sk,(const char *id_digest,
  399. const char *sk_digest))
  400. {
  401. download_status_t *dl = NULL;
  402. cert_list_t *cl = NULL;
  403. if (trusted_dir_certs) {
  404. cl = digestmap_get(trusted_dir_certs, id_digest);
  405. if (cl && cl->dl_status_map) {
  406. dl = dsmap_get(cl->dl_status_map, sk_digest);
  407. }
  408. }
  409. return dl;
  410. }
  411. #define cert_list_free(val) \
  412. FREE_AND_NULL(cert_list_t, cert_list_free_, (val))
  413. /** Release all space held by a cert_list_t */
  414. static void
  415. cert_list_free_(cert_list_t *cl)
  416. {
  417. if (!cl)
  418. return;
  419. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, cert,
  420. authority_cert_free(cert));
  421. smartlist_free(cl->certs);
  422. dsmap_free(cl->dl_status_map, tor_free_);
  423. tor_free(cl);
  424. }
  425. /** Wrapper for cert_list_free so we can pass it to digestmap_free */
  426. static void
  427. cert_list_free_void(void *cl)
  428. {
  429. cert_list_free_(cl);
  430. }
  431. /** Reload the cached v3 key certificates from the cached-certs file in
  432. * the data directory. Return 0 on success, -1 on failure. */
  433. int
  434. trusted_dirs_reload_certs(void)
  435. {
  436. char *filename;
  437. char *contents;
  438. int r;
  439. filename = get_cachedir_fname("cached-certs");
  440. contents = read_file_to_str(filename, RFTS_IGNORE_MISSING, NULL);
  441. tor_free(filename);
  442. if (!contents)
  443. return 0;
  444. r = trusted_dirs_load_certs_from_string(
  445. contents,
  446. TRUSTED_DIRS_CERTS_SRC_FROM_STORE, 1, NULL);
  447. tor_free(contents);
  448. return r;
  449. }
  450. /** Helper: return true iff we already have loaded the exact cert
  451. * <b>cert</b>. */
  452. static inline int
  453. already_have_cert(authority_cert_t *cert)
  454. {
  455. cert_list_t *cl = get_cert_list(cert->cache_info.identity_digest);
  456. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, c,
  457. {
  458. if (tor_memeq(c->cache_info.signed_descriptor_digest,
  459. cert->cache_info.signed_descriptor_digest,
  460. DIGEST_LEN))
  461. return 1;
  462. });
  463. return 0;
  464. }
  465. /** Load a bunch of new key certificates from the string <b>contents</b>. If
  466. * <b>source</b> is TRUSTED_DIRS_CERTS_SRC_FROM_STORE, the certificates are
  467. * from the cache, and we don't need to flush them to disk. If we are a
  468. * dirauth loading our own cert, source is TRUSTED_DIRS_CERTS_SRC_SELF.
  469. * Otherwise, source is download type: TRUSTED_DIRS_CERTS_SRC_DL_BY_ID_DIGEST
  470. * or TRUSTED_DIRS_CERTS_SRC_DL_BY_ID_SK_DIGEST. If <b>flush</b> is true, we
  471. * need to flush any changed certificates to disk now. Return 0 on success,
  472. * -1 if any certs fail to parse.
  473. *
  474. * If source_dir is non-NULL, it's the identity digest for a directory that
  475. * we've just successfully retrieved certificates from, so try it first to
  476. * fetch any missing certificates.
  477. */
  478. int
  479. trusted_dirs_load_certs_from_string(const char *contents, int source,
  480. int flush, const char *source_dir)
  481. {
  482. dir_server_t *ds;
  483. const char *s, *eos;
  484. int failure_code = 0;
  485. int from_store = (source == TRUSTED_DIRS_CERTS_SRC_FROM_STORE);
  486. int added_trusted_cert = 0;
  487. for (s = contents; *s; s = eos) {
  488. authority_cert_t *cert = authority_cert_parse_from_string(s, &eos);
  489. cert_list_t *cl;
  490. if (!cert) {
  491. failure_code = -1;
  492. break;
  493. }
  494. ds = trusteddirserver_get_by_v3_auth_digest(
  495. cert->cache_info.identity_digest);
  496. log_debug(LD_DIR, "Parsed certificate for %s",
  497. ds ? ds->nickname : "unknown authority");
  498. if (already_have_cert(cert)) {
  499. /* we already have this one. continue. */
  500. log_info(LD_DIR, "Skipping %s certificate for %s that we "
  501. "already have.",
  502. from_store ? "cached" : "downloaded",
  503. ds ? ds->nickname : "an old or new authority");
  504. /*
  505. * A duplicate on download should be treated as a failure, so we call
  506. * authority_cert_dl_failed() to reset the download status to make sure
  507. * we can't try again. Since we've implemented the fp-sk mechanism
  508. * to download certs by signing key, this should be much rarer than it
  509. * was and is perhaps cause for concern.
  510. */
  511. if (!from_store) {
  512. if (authdir_mode(get_options())) {
  513. log_warn(LD_DIR,
  514. "Got a certificate for %s, but we already have it. "
  515. "Maybe they haven't updated it. Waiting for a while.",
  516. ds ? ds->nickname : "an old or new authority");
  517. } else {
  518. log_info(LD_DIR,
  519. "Got a certificate for %s, but we already have it. "
  520. "Maybe they haven't updated it. Waiting for a while.",
  521. ds ? ds->nickname : "an old or new authority");
  522. }
  523. /*
  524. * This is where we care about the source; authority_cert_dl_failed()
  525. * needs to know whether the download was by fp or (fp,sk) pair to
  526. * twiddle the right bit in the download map.
  527. */
  528. if (source == TRUSTED_DIRS_CERTS_SRC_DL_BY_ID_DIGEST) {
  529. authority_cert_dl_failed(cert->cache_info.identity_digest,
  530. NULL, 404);
  531. } else if (source == TRUSTED_DIRS_CERTS_SRC_DL_BY_ID_SK_DIGEST) {
  532. authority_cert_dl_failed(cert->cache_info.identity_digest,
  533. cert->signing_key_digest, 404);
  534. }
  535. }
  536. authority_cert_free(cert);
  537. continue;
  538. }
  539. if (ds) {
  540. added_trusted_cert = 1;
  541. log_info(LD_DIR, "Adding %s certificate for directory authority %s with "
  542. "signing key %s", from_store ? "cached" : "downloaded",
  543. ds->nickname, hex_str(cert->signing_key_digest,DIGEST_LEN));
  544. } else {
  545. int adding = we_want_to_fetch_unknown_auth_certs(get_options());
  546. log_info(LD_DIR, "%s %s certificate for unrecognized directory "
  547. "authority with signing key %s",
  548. adding ? "Adding" : "Not adding",
  549. from_store ? "cached" : "downloaded",
  550. hex_str(cert->signing_key_digest,DIGEST_LEN));
  551. if (!adding) {
  552. authority_cert_free(cert);
  553. continue;
  554. }
  555. }
  556. cl = get_cert_list(cert->cache_info.identity_digest);
  557. smartlist_add(cl->certs, cert);
  558. if (ds && cert->cache_info.published_on > ds->addr_current_at) {
  559. /* Check to see whether we should update our view of the authority's
  560. * address. */
  561. if (cert->addr && cert->dir_port &&
  562. (ds->addr != cert->addr ||
  563. ds->dir_port != cert->dir_port)) {
  564. char *a = tor_dup_ip(cert->addr);
  565. log_notice(LD_DIR, "Updating address for directory authority %s "
  566. "from %s:%d to %s:%d based on certificate.",
  567. ds->nickname, ds->address, (int)ds->dir_port,
  568. a, cert->dir_port);
  569. tor_free(a);
  570. ds->addr = cert->addr;
  571. ds->dir_port = cert->dir_port;
  572. }
  573. ds->addr_current_at = cert->cache_info.published_on;
  574. }
  575. if (!from_store)
  576. trusted_dir_servers_certs_changed = 1;
  577. }
  578. if (flush)
  579. trusted_dirs_flush_certs_to_disk();
  580. /* call this even if failure_code is <0, since some certs might have
  581. * succeeded, but only pass source_dir if there were no failures,
  582. * and at least one more authority certificate was added to the store.
  583. * This avoids retrying a directory that's serving bad or entirely duplicate
  584. * certificates. */
  585. if (failure_code == 0 && added_trusted_cert) {
  586. networkstatus_note_certs_arrived(source_dir);
  587. } else {
  588. networkstatus_note_certs_arrived(NULL);
  589. }
  590. return failure_code;
  591. }
  592. /** Save all v3 key certificates to the cached-certs file. */
  593. void
  594. trusted_dirs_flush_certs_to_disk(void)
  595. {
  596. char *filename;
  597. smartlist_t *chunks;
  598. if (!trusted_dir_servers_certs_changed || !trusted_dir_certs)
  599. return;
  600. chunks = smartlist_new();
  601. DIGESTMAP_FOREACH(trusted_dir_certs, key, cert_list_t *, cl) {
  602. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, cert,
  603. {
  604. sized_chunk_t *c = tor_malloc(sizeof(sized_chunk_t));
  605. c->bytes = cert->cache_info.signed_descriptor_body;
  606. c->len = cert->cache_info.signed_descriptor_len;
  607. smartlist_add(chunks, c);
  608. });
  609. } DIGESTMAP_FOREACH_END;
  610. filename = get_cachedir_fname("cached-certs");
  611. if (write_chunks_to_file(filename, chunks, 0, 0)) {
  612. log_warn(LD_FS, "Error writing certificates to disk.");
  613. }
  614. tor_free(filename);
  615. SMARTLIST_FOREACH(chunks, sized_chunk_t *, c, tor_free(c));
  616. smartlist_free(chunks);
  617. trusted_dir_servers_certs_changed = 0;
  618. }
  619. static int
  620. compare_certs_by_pubdates(const void **_a, const void **_b)
  621. {
  622. const authority_cert_t *cert1 = *_a, *cert2=*_b;
  623. if (cert1->cache_info.published_on < cert2->cache_info.published_on)
  624. return -1;
  625. else if (cert1->cache_info.published_on > cert2->cache_info.published_on)
  626. return 1;
  627. else
  628. return 0;
  629. }
  630. /** Remove all expired v3 authority certificates that have been superseded for
  631. * more than 48 hours or, if not expired, that were published more than 7 days
  632. * before being superseded. (If the most recent cert was published more than 48
  633. * hours ago, then we aren't going to get any consensuses signed with older
  634. * keys.) */
  635. static void
  636. trusted_dirs_remove_old_certs(void)
  637. {
  638. time_t now = time(NULL);
  639. #define DEAD_CERT_LIFETIME (2*24*60*60)
  640. #define SUPERSEDED_CERT_LIFETIME (2*24*60*60)
  641. if (!trusted_dir_certs)
  642. return;
  643. DIGESTMAP_FOREACH(trusted_dir_certs, key, cert_list_t *, cl) {
  644. /* Sort the list from first-published to last-published */
  645. smartlist_sort(cl->certs, compare_certs_by_pubdates);
  646. SMARTLIST_FOREACH_BEGIN(cl->certs, authority_cert_t *, cert) {
  647. if (cert_sl_idx == smartlist_len(cl->certs) - 1) {
  648. /* This is the most recently published cert. Keep it. */
  649. continue;
  650. }
  651. authority_cert_t *next_cert = smartlist_get(cl->certs, cert_sl_idx+1);
  652. const time_t next_cert_published = next_cert->cache_info.published_on;
  653. if (next_cert_published > now) {
  654. /* All later certs are published in the future. Keep everything
  655. * we didn't discard. */
  656. break;
  657. }
  658. int should_remove = 0;
  659. if (cert->expires + DEAD_CERT_LIFETIME < now) {
  660. /* Certificate has been expired for at least DEAD_CERT_LIFETIME.
  661. * Remove it. */
  662. should_remove = 1;
  663. } else if (next_cert_published + SUPERSEDED_CERT_LIFETIME < now) {
  664. /* Certificate has been superseded for OLD_CERT_LIFETIME.
  665. * Remove it.
  666. */
  667. should_remove = 1;
  668. }
  669. if (should_remove) {
  670. SMARTLIST_DEL_CURRENT_KEEPORDER(cl->certs, cert);
  671. authority_cert_free(cert);
  672. trusted_dir_servers_certs_changed = 1;
  673. }
  674. } SMARTLIST_FOREACH_END(cert);
  675. } DIGESTMAP_FOREACH_END;
  676. #undef DEAD_CERT_LIFETIME
  677. #undef OLD_CERT_LIFETIME
  678. trusted_dirs_flush_certs_to_disk();
  679. }
  680. /** Return the newest v3 authority certificate whose v3 authority identity key
  681. * has digest <b>id_digest</b>. Return NULL if no such authority is known,
  682. * or it has no certificate. */
  683. authority_cert_t *
  684. authority_cert_get_newest_by_id(const char *id_digest)
  685. {
  686. cert_list_t *cl;
  687. authority_cert_t *best = NULL;
  688. if (!trusted_dir_certs ||
  689. !(cl = digestmap_get(trusted_dir_certs, id_digest)))
  690. return NULL;
  691. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, cert,
  692. {
  693. if (!best || cert->cache_info.published_on > best->cache_info.published_on)
  694. best = cert;
  695. });
  696. return best;
  697. }
  698. /** Return the newest v3 authority certificate whose directory signing key has
  699. * digest <b>sk_digest</b>. Return NULL if no such certificate is known.
  700. */
  701. authority_cert_t *
  702. authority_cert_get_by_sk_digest(const char *sk_digest)
  703. {
  704. authority_cert_t *c;
  705. if (!trusted_dir_certs)
  706. return NULL;
  707. if ((c = get_my_v3_authority_cert()) &&
  708. tor_memeq(c->signing_key_digest, sk_digest, DIGEST_LEN))
  709. return c;
  710. if ((c = get_my_v3_legacy_cert()) &&
  711. tor_memeq(c->signing_key_digest, sk_digest, DIGEST_LEN))
  712. return c;
  713. DIGESTMAP_FOREACH(trusted_dir_certs, key, cert_list_t *, cl) {
  714. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, cert,
  715. {
  716. if (tor_memeq(cert->signing_key_digest, sk_digest, DIGEST_LEN))
  717. return cert;
  718. });
  719. } DIGESTMAP_FOREACH_END;
  720. return NULL;
  721. }
  722. /** Return the v3 authority certificate with signing key matching
  723. * <b>sk_digest</b>, for the authority with identity digest <b>id_digest</b>.
  724. * Return NULL if no such authority is known. */
  725. authority_cert_t *
  726. authority_cert_get_by_digests(const char *id_digest,
  727. const char *sk_digest)
  728. {
  729. cert_list_t *cl;
  730. if (!trusted_dir_certs ||
  731. !(cl = digestmap_get(trusted_dir_certs, id_digest)))
  732. return NULL;
  733. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, cert,
  734. if (tor_memeq(cert->signing_key_digest, sk_digest, DIGEST_LEN))
  735. return cert; );
  736. return NULL;
  737. }
  738. /** Add every known authority_cert_t to <b>certs_out</b>. */
  739. void
  740. authority_cert_get_all(smartlist_t *certs_out)
  741. {
  742. tor_assert(certs_out);
  743. if (!trusted_dir_certs)
  744. return;
  745. DIGESTMAP_FOREACH(trusted_dir_certs, key, cert_list_t *, cl) {
  746. SMARTLIST_FOREACH(cl->certs, authority_cert_t *, c,
  747. smartlist_add(certs_out, c));
  748. } DIGESTMAP_FOREACH_END;
  749. }
  750. /** Called when an attempt to download a certificate with the authority with
  751. * ID <b>id_digest</b> and, if not NULL, signed with key signing_key_digest
  752. * fails with HTTP response code <b>status</b>: remember the failure, so we
  753. * don't try again immediately. */
  754. void
  755. authority_cert_dl_failed(const char *id_digest,
  756. const char *signing_key_digest, int status)
  757. {
  758. cert_list_t *cl;
  759. download_status_t *dlstatus = NULL;
  760. char id_digest_str[2*DIGEST_LEN+1];
  761. char sk_digest_str[2*DIGEST_LEN+1];
  762. if (!trusted_dir_certs ||
  763. !(cl = digestmap_get(trusted_dir_certs, id_digest)))
  764. return;
  765. /*
  766. * Are we noting a failed download of the latest cert for the id digest,
  767. * or of a download by (id, signing key) digest pair?
  768. */
  769. if (!signing_key_digest) {
  770. /* Just by id digest */
  771. download_status_failed(&cl->dl_status_by_id, status);
  772. } else {
  773. /* Reset by (id, signing key) digest pair
  774. *
  775. * Look for a download_status_t in the map with this digest
  776. */
  777. dlstatus = dsmap_get(cl->dl_status_map, signing_key_digest);
  778. /* Got one? */
  779. if (dlstatus) {
  780. download_status_failed(dlstatus, status);
  781. } else {
  782. /*
  783. * Do this rather than hex_str(), since hex_str clobbers
  784. * old results and we call twice in the param list.
  785. */
  786. base16_encode(id_digest_str, sizeof(id_digest_str),
  787. id_digest, DIGEST_LEN);
  788. base16_encode(sk_digest_str, sizeof(sk_digest_str),
  789. signing_key_digest, DIGEST_LEN);
  790. log_warn(LD_BUG,
  791. "Got failure for cert fetch with (fp,sk) = (%s,%s), with "
  792. "status %d, but knew nothing about the download.",
  793. id_digest_str, sk_digest_str, status);
  794. }
  795. }
  796. }
  797. static const char *BAD_SIGNING_KEYS[] = {
  798. "09CD84F751FD6E955E0F8ADB497D5401470D697E", // Expires 2015-01-11 16:26:31
  799. "0E7E9C07F0969D0468AD741E172A6109DC289F3C", // Expires 2014-08-12 10:18:26
  800. "57B85409891D3FB32137F642FDEDF8B7F8CDFDCD", // Expires 2015-02-11 17:19:09
  801. "87326329007AF781F587AF5B594E540B2B6C7630", // Expires 2014-07-17 11:10:09
  802. "98CC82342DE8D298CF99D3F1A396475901E0D38E", // Expires 2014-11-10 13:18:56
  803. "9904B52336713A5ADCB13E4FB14DC919E0D45571", // Expires 2014-04-20 20:01:01
  804. "9DCD8E3F1DD1597E2AD476BBA28A1A89F3095227", // Expires 2015-01-16 03:52:30
  805. "A61682F34B9BB9694AC98491FE1ABBFE61923941", // Expires 2014-06-11 09:25:09
  806. "B59F6E99C575113650C99F1C425BA7B20A8C071D", // Expires 2014-07-31 13:22:10
  807. "D27178388FA75B96D37FA36E0B015227DDDBDA51", // Expires 2014-08-04 04:01:57
  808. NULL,
  809. };
  810. /** Return true iff <b>cert</b> authenticates some atuhority signing key
  811. * which, because of the old openssl heartbleed vulnerability, should
  812. * never be trusted. */
  813. int
  814. authority_cert_is_blacklisted(const authority_cert_t *cert)
  815. {
  816. char hex_digest[HEX_DIGEST_LEN+1];
  817. int i;
  818. base16_encode(hex_digest, sizeof(hex_digest),
  819. cert->signing_key_digest, sizeof(cert->signing_key_digest));
  820. for (i = 0; BAD_SIGNING_KEYS[i]; ++i) {
  821. if (!strcasecmp(hex_digest, BAD_SIGNING_KEYS[i])) {
  822. return 1;
  823. }
  824. }
  825. return 0;
  826. }
  827. /** Return true iff when we've been getting enough failures when trying to
  828. * download the certificate with ID digest <b>id_digest</b> that we're willing
  829. * to start bugging the user about it. */
  830. int
  831. authority_cert_dl_looks_uncertain(const char *id_digest)
  832. {
  833. #define N_AUTH_CERT_DL_FAILURES_TO_BUG_USER 2
  834. cert_list_t *cl;
  835. int n_failures;
  836. if (!trusted_dir_certs ||
  837. !(cl = digestmap_get(trusted_dir_certs, id_digest)))
  838. return 0;
  839. n_failures = download_status_get_n_failures(&cl->dl_status_by_id);
  840. return n_failures >= N_AUTH_CERT_DL_FAILURES_TO_BUG_USER;
  841. }
  842. /* Fetch the authority certificates specified in resource.
  843. * If we are a bridge client, and node is a configured bridge, fetch from node
  844. * using dir_hint as the fingerprint. Otherwise, if rs is not NULL, fetch from
  845. * rs. Otherwise, fetch from a random directory mirror. */
  846. static void
  847. authority_certs_fetch_resource_impl(const char *resource,
  848. const char *dir_hint,
  849. const node_t *node,
  850. const routerstatus_t *rs)
  851. {
  852. const or_options_t *options = get_options();
  853. int get_via_tor = purpose_needs_anonymity(DIR_PURPOSE_FETCH_CERTIFICATE, 0,
  854. resource);
  855. /* Make sure bridge clients never connect to anything but a bridge */
  856. if (options->UseBridges) {
  857. if (node && !node_is_a_configured_bridge(node)) {
  858. /* If we're using bridges, and node is not a bridge, use a 3-hop path. */
  859. get_via_tor = 1;
  860. } else if (!node) {
  861. /* If we're using bridges, and there's no node, use a 3-hop path. */
  862. get_via_tor = 1;
  863. }
  864. }
  865. const dir_indirection_t indirection = get_via_tor ? DIRIND_ANONYMOUS
  866. : DIRIND_ONEHOP;
  867. directory_request_t *req = NULL;
  868. /* If we've just downloaded a consensus from a bridge, re-use that
  869. * bridge */
  870. if (options->UseBridges && node && node->ri && !get_via_tor) {
  871. /* clients always make OR connections to bridges */
  872. tor_addr_port_t or_ap;
  873. /* we are willing to use a non-preferred address if we need to */
  874. fascist_firewall_choose_address_node(node, FIREWALL_OR_CONNECTION, 0,
  875. &or_ap);
  876. req = directory_request_new(DIR_PURPOSE_FETCH_CERTIFICATE);
  877. directory_request_set_or_addr_port(req, &or_ap);
  878. if (dir_hint)
  879. directory_request_set_directory_id_digest(req, dir_hint);
  880. } else if (rs) {
  881. /* And if we've just downloaded a consensus from a directory, re-use that
  882. * directory */
  883. req = directory_request_new(DIR_PURPOSE_FETCH_CERTIFICATE);
  884. directory_request_set_routerstatus(req, rs);
  885. }
  886. if (req) {
  887. /* We've set up a request object -- fill in the other request fields, and
  888. * send the request. */
  889. directory_request_set_indirection(req, indirection);
  890. directory_request_set_resource(req, resource);
  891. directory_initiate_request(req);
  892. directory_request_free(req);
  893. return;
  894. }
  895. /* Otherwise, we want certs from a random fallback or directory
  896. * mirror, because they will almost always succeed. */
  897. directory_get_from_dirserver(DIR_PURPOSE_FETCH_CERTIFICATE, 0,
  898. resource, PDS_RETRY_IF_NO_SERVERS,
  899. DL_WANT_ANY_DIRSERVER);
  900. }
  901. /** Try to download any v3 authority certificates that we may be missing. If
  902. * <b>status</b> is provided, try to get all the ones that were used to sign
  903. * <b>status</b>. Additionally, try to have a non-expired certificate for
  904. * every V3 authority in trusted_dir_servers. Don't fetch certificates we
  905. * already have.
  906. *
  907. * If dir_hint is non-NULL, it's the identity digest for a directory that
  908. * we've just successfully retrieved a consensus or certificates from, so try
  909. * it first to fetch any missing certificates.
  910. **/
  911. void
  912. authority_certs_fetch_missing(networkstatus_t *status, time_t now,
  913. const char *dir_hint)
  914. {
  915. /*
  916. * The pending_id digestmap tracks pending certificate downloads by
  917. * identity digest; the pending_cert digestmap tracks pending downloads
  918. * by (identity digest, signing key digest) pairs.
  919. */
  920. digestmap_t *pending_id;
  921. fp_pair_map_t *pending_cert;
  922. /*
  923. * The missing_id_digests smartlist will hold a list of id digests
  924. * we want to fetch the newest cert for; the missing_cert_digests
  925. * smartlist will hold a list of fp_pair_t with an identity and
  926. * signing key digest.
  927. */
  928. smartlist_t *missing_cert_digests, *missing_id_digests;
  929. char *resource = NULL;
  930. cert_list_t *cl;
  931. const or_options_t *options = get_options();
  932. const int keep_unknown = we_want_to_fetch_unknown_auth_certs(options);
  933. fp_pair_t *fp_tmp = NULL;
  934. char id_digest_str[2*DIGEST_LEN+1];
  935. char sk_digest_str[2*DIGEST_LEN+1];
  936. if (should_delay_dir_fetches(options, NULL))
  937. return;
  938. pending_cert = fp_pair_map_new();
  939. pending_id = digestmap_new();
  940. missing_cert_digests = smartlist_new();
  941. missing_id_digests = smartlist_new();
  942. /*
  943. * First, we get the lists of already pending downloads so we don't
  944. * duplicate effort.
  945. */
  946. list_pending_downloads(pending_id, NULL,
  947. DIR_PURPOSE_FETCH_CERTIFICATE, "fp/");
  948. list_pending_fpsk_downloads(pending_cert);
  949. /*
  950. * Now, we download any trusted authority certs we don't have by
  951. * identity digest only. This gets the latest cert for that authority.
  952. */
  953. SMARTLIST_FOREACH_BEGIN(trusted_dir_servers, dir_server_t *, ds) {
  954. int found = 0;
  955. if (!(ds->type & V3_DIRINFO))
  956. continue;
  957. if (smartlist_contains_digest(missing_id_digests,
  958. ds->v3_identity_digest))
  959. continue;
  960. cl = get_cert_list(ds->v3_identity_digest);
  961. SMARTLIST_FOREACH_BEGIN(cl->certs, authority_cert_t *, cert) {
  962. if (now < cert->expires) {
  963. /* It's not expired, and we weren't looking for something to
  964. * verify a consensus with. Call it done. */
  965. download_status_reset(&(cl->dl_status_by_id));
  966. /* No sense trying to download it specifically by signing key hash */
  967. download_status_reset_by_sk_in_cl(cl, cert->signing_key_digest);
  968. found = 1;
  969. break;
  970. }
  971. } SMARTLIST_FOREACH_END(cert);
  972. if (!found &&
  973. download_status_is_ready(&(cl->dl_status_by_id), now) &&
  974. !digestmap_get(pending_id, ds->v3_identity_digest)) {
  975. log_info(LD_DIR,
  976. "No current certificate known for authority %s "
  977. "(ID digest %s); launching request.",
  978. ds->nickname, hex_str(ds->v3_identity_digest, DIGEST_LEN));
  979. smartlist_add(missing_id_digests, ds->v3_identity_digest);
  980. }
  981. } SMARTLIST_FOREACH_END(ds);
  982. /*
  983. * Next, if we have a consensus, scan through it and look for anything
  984. * signed with a key from a cert we don't have. Those get downloaded
  985. * by (fp,sk) pair, but if we don't know any certs at all for the fp
  986. * (identity digest), and it's one of the trusted dir server certs
  987. * we started off above or a pending download in pending_id, don't
  988. * try to get it yet. Most likely, the one we'll get for that will
  989. * have the right signing key too, and we'd just be downloading
  990. * redundantly.
  991. */
  992. if (status) {
  993. SMARTLIST_FOREACH_BEGIN(status->voters, networkstatus_voter_info_t *,
  994. voter) {
  995. if (!smartlist_len(voter->sigs))
  996. continue; /* This authority never signed this consensus, so don't
  997. * go looking for a cert with key digest 0000000000. */
  998. if (!keep_unknown &&
  999. !trusteddirserver_get_by_v3_auth_digest(voter->identity_digest))
  1000. continue; /* We don't want unknown certs, and we don't know this
  1001. * authority.*/
  1002. /*
  1003. * If we don't know *any* cert for this authority, and a download by ID
  1004. * is pending or we added it to missing_id_digests above, skip this
  1005. * one for now to avoid duplicate downloads.
  1006. */
  1007. cl = get_cert_list(voter->identity_digest);
  1008. if (smartlist_len(cl->certs) == 0) {
  1009. /* We have no certs at all for this one */
  1010. /* Do we have a download of one pending? */
  1011. if (digestmap_get(pending_id, voter->identity_digest))
  1012. continue;
  1013. /*
  1014. * Are we about to launch a download of one due to the trusted
  1015. * dir server check above?
  1016. */
  1017. if (smartlist_contains_digest(missing_id_digests,
  1018. voter->identity_digest))
  1019. continue;
  1020. }
  1021. SMARTLIST_FOREACH_BEGIN(voter->sigs, document_signature_t *, sig) {
  1022. authority_cert_t *cert =
  1023. authority_cert_get_by_digests(voter->identity_digest,
  1024. sig->signing_key_digest);
  1025. if (cert) {
  1026. if (now < cert->expires)
  1027. download_status_reset_by_sk_in_cl(cl, sig->signing_key_digest);
  1028. continue;
  1029. }
  1030. if (download_status_is_ready_by_sk_in_cl(
  1031. cl, sig->signing_key_digest, now) &&
  1032. !fp_pair_map_get_by_digests(pending_cert,
  1033. voter->identity_digest,
  1034. sig->signing_key_digest)) {
  1035. /*
  1036. * Do this rather than hex_str(), since hex_str clobbers
  1037. * old results and we call twice in the param list.
  1038. */
  1039. base16_encode(id_digest_str, sizeof(id_digest_str),
  1040. voter->identity_digest, DIGEST_LEN);
  1041. base16_encode(sk_digest_str, sizeof(sk_digest_str),
  1042. sig->signing_key_digest, DIGEST_LEN);
  1043. if (voter->nickname) {
  1044. log_info(LD_DIR,
  1045. "We're missing a certificate from authority %s "
  1046. "(ID digest %s) with signing key %s: "
  1047. "launching request.",
  1048. voter->nickname, id_digest_str, sk_digest_str);
  1049. } else {
  1050. log_info(LD_DIR,
  1051. "We're missing a certificate from authority ID digest "
  1052. "%s with signing key %s: launching request.",
  1053. id_digest_str, sk_digest_str);
  1054. }
  1055. /* Allocate a new fp_pair_t to append */
  1056. fp_tmp = tor_malloc(sizeof(*fp_tmp));
  1057. memcpy(fp_tmp->first, voter->identity_digest, sizeof(fp_tmp->first));
  1058. memcpy(fp_tmp->second, sig->signing_key_digest,
  1059. sizeof(fp_tmp->second));
  1060. smartlist_add(missing_cert_digests, fp_tmp);
  1061. }
  1062. } SMARTLIST_FOREACH_END(sig);
  1063. } SMARTLIST_FOREACH_END(voter);
  1064. }
  1065. /* Bridge clients look up the node for the dir_hint */
  1066. const node_t *node = NULL;
  1067. /* All clients, including bridge clients, look up the routerstatus for the
  1068. * dir_hint */
  1069. const routerstatus_t *rs = NULL;
  1070. /* If we still need certificates, try the directory that just successfully
  1071. * served us a consensus or certificates.
  1072. * As soon as the directory fails to provide additional certificates, we try
  1073. * another, randomly selected directory. This avoids continual retries.
  1074. * (We only ever have one outstanding request per certificate.)
  1075. */
  1076. if (dir_hint) {
  1077. if (options->UseBridges) {
  1078. /* Bridge clients try the nodelist. If the dir_hint is from an authority,
  1079. * or something else fetched over tor, we won't find the node here, but
  1080. * we will find the rs. */
  1081. node = node_get_by_id(dir_hint);
  1082. }
  1083. /* All clients try the consensus routerstatus, then the fallback
  1084. * routerstatus */
  1085. rs = router_get_consensus_status_by_id(dir_hint);
  1086. if (!rs) {
  1087. /* This will also find authorities */
  1088. const dir_server_t *ds = router_get_fallback_dirserver_by_digest(
  1089. dir_hint);
  1090. if (ds) {
  1091. rs = &ds->fake_status;
  1092. }
  1093. }
  1094. if (!node && !rs) {
  1095. log_warn(LD_BUG, "Directory %s delivered a consensus, but %s"
  1096. "no routerstatus could be found for it.",
  1097. options->UseBridges ? "no node and " : "",
  1098. hex_str(dir_hint, DIGEST_LEN));
  1099. }
  1100. }
  1101. /* Do downloads by identity digest */
  1102. if (smartlist_len(missing_id_digests) > 0) {
  1103. int need_plus = 0;
  1104. smartlist_t *fps = smartlist_new();
  1105. smartlist_add_strdup(fps, "fp/");
  1106. SMARTLIST_FOREACH_BEGIN(missing_id_digests, const char *, d) {
  1107. char *fp = NULL;
  1108. if (digestmap_get(pending_id, d))
  1109. continue;
  1110. base16_encode(id_digest_str, sizeof(id_digest_str),
  1111. d, DIGEST_LEN);
  1112. if (need_plus) {
  1113. tor_asprintf(&fp, "+%s", id_digest_str);
  1114. } else {
  1115. /* No need for tor_asprintf() in this case; first one gets no '+' */
  1116. fp = tor_strdup(id_digest_str);
  1117. need_plus = 1;
  1118. }
  1119. smartlist_add(fps, fp);
  1120. } SMARTLIST_FOREACH_END(d);
  1121. if (smartlist_len(fps) > 1) {
  1122. resource = smartlist_join_strings(fps, "", 0, NULL);
  1123. /* node and rs are directories that just gave us a consensus or
  1124. * certificates */
  1125. authority_certs_fetch_resource_impl(resource, dir_hint, node, rs);
  1126. tor_free(resource);
  1127. }
  1128. /* else we didn't add any: they were all pending */
  1129. SMARTLIST_FOREACH(fps, char *, cp, tor_free(cp));
  1130. smartlist_free(fps);
  1131. }
  1132. /* Do downloads by identity digest/signing key pair */
  1133. if (smartlist_len(missing_cert_digests) > 0) {
  1134. int need_plus = 0;
  1135. smartlist_t *fp_pairs = smartlist_new();
  1136. smartlist_add_strdup(fp_pairs, "fp-sk/");
  1137. SMARTLIST_FOREACH_BEGIN(missing_cert_digests, const fp_pair_t *, d) {
  1138. char *fp_pair = NULL;
  1139. if (fp_pair_map_get(pending_cert, d))
  1140. continue;
  1141. /* Construct string encodings of the digests */
  1142. base16_encode(id_digest_str, sizeof(id_digest_str),
  1143. d->first, DIGEST_LEN);
  1144. base16_encode(sk_digest_str, sizeof(sk_digest_str),
  1145. d->second, DIGEST_LEN);
  1146. /* Now tor_asprintf() */
  1147. if (need_plus) {
  1148. tor_asprintf(&fp_pair, "+%s-%s", id_digest_str, sk_digest_str);
  1149. } else {
  1150. /* First one in the list doesn't get a '+' */
  1151. tor_asprintf(&fp_pair, "%s-%s", id_digest_str, sk_digest_str);
  1152. need_plus = 1;
  1153. }
  1154. /* Add it to the list of pairs to request */
  1155. smartlist_add(fp_pairs, fp_pair);
  1156. } SMARTLIST_FOREACH_END(d);
  1157. if (smartlist_len(fp_pairs) > 1) {
  1158. resource = smartlist_join_strings(fp_pairs, "", 0, NULL);
  1159. /* node and rs are directories that just gave us a consensus or
  1160. * certificates */
  1161. authority_certs_fetch_resource_impl(resource, dir_hint, node, rs);
  1162. tor_free(resource);
  1163. }
  1164. /* else they were all pending */
  1165. SMARTLIST_FOREACH(fp_pairs, char *, p, tor_free(p));
  1166. smartlist_free(fp_pairs);
  1167. }
  1168. smartlist_free(missing_id_digests);
  1169. SMARTLIST_FOREACH(missing_cert_digests, fp_pair_t *, p, tor_free(p));
  1170. smartlist_free(missing_cert_digests);
  1171. digestmap_free(pending_id, NULL);
  1172. fp_pair_map_free(pending_cert, NULL);
  1173. }
  1174. /* Router descriptor storage.
  1175. *
  1176. * Routerdescs are stored in a big file, named "cached-descriptors". As new
  1177. * routerdescs arrive, we append them to a journal file named
  1178. * "cached-descriptors.new".
  1179. *
  1180. * From time to time, we replace "cached-descriptors" with a new file
  1181. * containing only the live, non-superseded descriptors, and clear
  1182. * cached-routers.new.
  1183. *
  1184. * On startup, we read both files.
  1185. */
  1186. /** Helper: return 1 iff the router log is so big we want to rebuild the
  1187. * store. */
  1188. static int
  1189. router_should_rebuild_store(desc_store_t *store)
  1190. {
  1191. if (store->store_len > (1<<16))
  1192. return (store->journal_len > store->store_len / 2 ||
  1193. store->bytes_dropped > store->store_len / 2);
  1194. else
  1195. return store->journal_len > (1<<15);
  1196. }
  1197. /** Return the desc_store_t in <b>rl</b> that should be used to store
  1198. * <b>sd</b>. */
  1199. static inline desc_store_t *
  1200. desc_get_store(routerlist_t *rl, const signed_descriptor_t *sd)
  1201. {
  1202. if (sd->is_extrainfo)
  1203. return &rl->extrainfo_store;
  1204. else
  1205. return &rl->desc_store;
  1206. }
  1207. /** Add the signed_descriptor_t in <b>desc</b> to the router
  1208. * journal; change its saved_location to SAVED_IN_JOURNAL and set its
  1209. * offset appropriately. */
  1210. static int
  1211. signed_desc_append_to_journal(signed_descriptor_t *desc,
  1212. desc_store_t *store)
  1213. {
  1214. char *fname = get_cachedir_fname_suffix(store->fname_base, ".new");
  1215. const char *body = signed_descriptor_get_body_impl(desc,1);
  1216. size_t len = desc->signed_descriptor_len + desc->annotations_len;
  1217. if (append_bytes_to_file(fname, body, len, 1)) {
  1218. log_warn(LD_FS, "Unable to store router descriptor");
  1219. tor_free(fname);
  1220. return -1;
  1221. }
  1222. desc->saved_location = SAVED_IN_JOURNAL;
  1223. tor_free(fname);
  1224. desc->saved_offset = store->journal_len;
  1225. store->journal_len += len;
  1226. return 0;
  1227. }
  1228. /** Sorting helper: return &lt;0, 0, or &gt;0 depending on whether the
  1229. * signed_descriptor_t* in *<b>a</b> is older, the same age as, or newer than
  1230. * the signed_descriptor_t* in *<b>b</b>. */
  1231. static int
  1232. compare_signed_descriptors_by_age_(const void **_a, const void **_b)
  1233. {
  1234. const signed_descriptor_t *r1 = *_a, *r2 = *_b;
  1235. return (int)(r1->published_on - r2->published_on);
  1236. }
  1237. #define RRS_FORCE 1
  1238. #define RRS_DONT_REMOVE_OLD 2
  1239. /** If the journal of <b>store</b> is too long, or if RRS_FORCE is set in
  1240. * <b>flags</b>, then atomically replace the saved router store with the
  1241. * routers currently in our routerlist, and clear the journal. Unless
  1242. * RRS_DONT_REMOVE_OLD is set in <b>flags</b>, delete expired routers before
  1243. * rebuilding the store. Return 0 on success, -1 on failure.
  1244. */
  1245. static int
  1246. router_rebuild_store(int flags, desc_store_t *store)
  1247. {
  1248. smartlist_t *chunk_list = NULL;
  1249. char *fname = NULL, *fname_tmp = NULL;
  1250. int r = -1;
  1251. off_t offset = 0;
  1252. smartlist_t *signed_descriptors = NULL;
  1253. int nocache=0;
  1254. size_t total_expected_len = 0;
  1255. int had_any;
  1256. int force = flags & RRS_FORCE;
  1257. if (!force && !router_should_rebuild_store(store)) {
  1258. r = 0;
  1259. goto done;
  1260. }
  1261. if (!routerlist) {
  1262. r = 0;
  1263. goto done;
  1264. }
  1265. if (store->type == EXTRAINFO_STORE)
  1266. had_any = !eimap_isempty(routerlist->extra_info_map);
  1267. else
  1268. had_any = (smartlist_len(routerlist->routers)+
  1269. smartlist_len(routerlist->old_routers))>0;
  1270. /* Don't save deadweight. */
  1271. if (!(flags & RRS_DONT_REMOVE_OLD))
  1272. routerlist_remove_old_routers();
  1273. log_info(LD_DIR, "Rebuilding %s cache", store->description);
  1274. fname = get_cachedir_fname(store->fname_base);
  1275. fname_tmp = get_cachedir_fname_suffix(store->fname_base, ".tmp");
  1276. chunk_list = smartlist_new();
  1277. /* We sort the routers by age to enhance locality on disk. */
  1278. signed_descriptors = smartlist_new();
  1279. if (store->type == EXTRAINFO_STORE) {
  1280. eimap_iter_t *iter;
  1281. for (iter = eimap_iter_init(routerlist->extra_info_map);
  1282. !eimap_iter_done(iter);
  1283. iter = eimap_iter_next(routerlist->extra_info_map, iter)) {
  1284. const char *key;
  1285. extrainfo_t *ei;
  1286. eimap_iter_get(iter, &key, &ei);
  1287. smartlist_add(signed_descriptors, &ei->cache_info);
  1288. }
  1289. } else {
  1290. SMARTLIST_FOREACH(routerlist->old_routers, signed_descriptor_t *, sd,
  1291. smartlist_add(signed_descriptors, sd));
  1292. SMARTLIST_FOREACH(routerlist->routers, routerinfo_t *, ri,
  1293. smartlist_add(signed_descriptors, &ri->cache_info));
  1294. }
  1295. smartlist_sort(signed_descriptors, compare_signed_descriptors_by_age_);
  1296. /* Now, add the appropriate members to chunk_list */
  1297. SMARTLIST_FOREACH_BEGIN(signed_descriptors, signed_descriptor_t *, sd) {
  1298. sized_chunk_t *c;
  1299. const char *body = signed_descriptor_get_body_impl(sd, 1);
  1300. if (!body) {
  1301. log_warn(LD_BUG, "No descriptor available for router.");
  1302. goto done;
  1303. }
  1304. if (sd->do_not_cache) {
  1305. ++nocache;
  1306. continue;
  1307. }
  1308. c = tor_malloc(sizeof(sized_chunk_t));
  1309. c->bytes = body;
  1310. c->len = sd->signed_descriptor_len + sd->annotations_len;
  1311. total_expected_len += c->len;
  1312. smartlist_add(chunk_list, c);
  1313. } SMARTLIST_FOREACH_END(sd);
  1314. if (write_chunks_to_file(fname_tmp, chunk_list, 1, 1)<0) {
  1315. log_warn(LD_FS, "Error writing router store to disk.");
  1316. goto done;
  1317. }
  1318. /* Our mmap is now invalid. */
  1319. if (store->mmap) {
  1320. int res = tor_munmap_file(store->mmap);
  1321. store->mmap = NULL;
  1322. if (res != 0) {
  1323. log_warn(LD_FS, "Unable to munmap route store in %s", fname);
  1324. }
  1325. }
  1326. if (replace_file(fname_tmp, fname)<0) {
  1327. log_warn(LD_FS, "Error replacing old router store: %s", strerror(errno));
  1328. goto done;
  1329. }
  1330. errno = 0;
  1331. store->mmap = tor_mmap_file(fname);
  1332. if (! store->mmap) {
  1333. if (errno == ERANGE) {
  1334. /* empty store.*/
  1335. if (total_expected_len) {
  1336. log_warn(LD_FS, "We wrote some bytes to a new descriptor file at '%s',"
  1337. " but when we went to mmap it, it was empty!", fname);
  1338. } else if (had_any) {
  1339. log_info(LD_FS, "We just removed every descriptor in '%s'. This is "
  1340. "okay if we're just starting up after a long time. "
  1341. "Otherwise, it's a bug.", fname);
  1342. }
  1343. } else {
  1344. log_warn(LD_FS, "Unable to mmap new descriptor file at '%s'.",fname);
  1345. }
  1346. }
  1347. log_info(LD_DIR, "Reconstructing pointers into cache");
  1348. offset = 0;
  1349. SMARTLIST_FOREACH_BEGIN(signed_descriptors, signed_descriptor_t *, sd) {
  1350. if (sd->do_not_cache)
  1351. continue;
  1352. sd->saved_location = SAVED_IN_CACHE;
  1353. if (store->mmap) {
  1354. tor_free(sd->signed_descriptor_body); // sets it to null
  1355. sd->saved_offset = offset;
  1356. }
  1357. offset += sd->signed_descriptor_len + sd->annotations_len;
  1358. signed_descriptor_get_body(sd); /* reconstruct and assert */
  1359. } SMARTLIST_FOREACH_END(sd);
  1360. tor_free(fname);
  1361. fname = get_cachedir_fname_suffix(store->fname_base, ".new");
  1362. write_str_to_file(fname, "", 1);
  1363. r = 0;
  1364. store->store_len = (size_t) offset;
  1365. store->journal_len = 0;
  1366. store->bytes_dropped = 0;
  1367. done:
  1368. smartlist_free(signed_descriptors);
  1369. tor_free(fname);
  1370. tor_free(fname_tmp);
  1371. if (chunk_list) {
  1372. SMARTLIST_FOREACH(chunk_list, sized_chunk_t *, c, tor_free(c));
  1373. smartlist_free(chunk_list);
  1374. }
  1375. return r;
  1376. }
  1377. /** Helper: Reload a cache file and its associated journal, setting metadata
  1378. * appropriately. If <b>extrainfo</b> is true, reload the extrainfo store;
  1379. * else reload the router descriptor store. */
  1380. static int
  1381. router_reload_router_list_impl(desc_store_t *store)
  1382. {
  1383. char *fname = NULL, *contents = NULL;
  1384. struct stat st;
  1385. int extrainfo = (store->type == EXTRAINFO_STORE);
  1386. store->journal_len = store->store_len = 0;
  1387. fname = get_cachedir_fname(store->fname_base);
  1388. if (store->mmap) {
  1389. /* get rid of it first */
  1390. int res = tor_munmap_file(store->mmap);
  1391. store->mmap = NULL;
  1392. if (res != 0) {
  1393. log_warn(LD_FS, "Failed to munmap %s", fname);
  1394. tor_free(fname);
  1395. return -1;
  1396. }
  1397. }
  1398. store->mmap = tor_mmap_file(fname);
  1399. if (store->mmap) {
  1400. store->store_len = store->mmap->size;
  1401. if (extrainfo)
  1402. router_load_extrainfo_from_string(store->mmap->data,
  1403. store->mmap->data+store->mmap->size,
  1404. SAVED_IN_CACHE, NULL, 0);
  1405. else
  1406. router_load_routers_from_string(store->mmap->data,
  1407. store->mmap->data+store->mmap->size,
  1408. SAVED_IN_CACHE, NULL, 0, NULL);
  1409. }
  1410. tor_free(fname);
  1411. fname = get_cachedir_fname_suffix(store->fname_base, ".new");
  1412. /* don't load empty files - we wouldn't get any data, even if we tried */
  1413. if (file_status(fname) == FN_FILE)
  1414. contents = read_file_to_str(fname, RFTS_BIN|RFTS_IGNORE_MISSING, &st);
  1415. if (contents) {
  1416. if (extrainfo)
  1417. router_load_extrainfo_from_string(contents, NULL,SAVED_IN_JOURNAL,
  1418. NULL, 0);
  1419. else
  1420. router_load_routers_from_string(contents, NULL, SAVED_IN_JOURNAL,
  1421. NULL, 0, NULL);
  1422. store->journal_len = (size_t) st.st_size;
  1423. tor_free(contents);
  1424. }
  1425. tor_free(fname);
  1426. if (store->journal_len) {
  1427. /* Always clear the journal on startup.*/
  1428. router_rebuild_store(RRS_FORCE, store);
  1429. } else if (!extrainfo) {
  1430. /* Don't cache expired routers. (This is in an else because
  1431. * router_rebuild_store() also calls remove_old_routers().) */
  1432. routerlist_remove_old_routers();
  1433. }
  1434. return 0;
  1435. }
  1436. /** Load all cached router descriptors and extra-info documents from the
  1437. * store. Return 0 on success and -1 on failure.
  1438. */
  1439. int
  1440. router_reload_router_list(void)
  1441. {
  1442. routerlist_t *rl = router_get_routerlist();
  1443. if (router_reload_router_list_impl(&rl->desc_store))
  1444. return -1;
  1445. if (router_reload_router_list_impl(&rl->extrainfo_store))
  1446. return -1;
  1447. return 0;
  1448. }
  1449. /** Return a smartlist containing a list of dir_server_t * for all
  1450. * known trusted dirservers. Callers must not modify the list or its
  1451. * contents.
  1452. */
  1453. const smartlist_t *
  1454. router_get_trusted_dir_servers(void)
  1455. {
  1456. if (!trusted_dir_servers)
  1457. trusted_dir_servers = smartlist_new();
  1458. return trusted_dir_servers;
  1459. }
  1460. const smartlist_t *
  1461. router_get_fallback_dir_servers(void)
  1462. {
  1463. if (!fallback_dir_servers)
  1464. fallback_dir_servers = smartlist_new();
  1465. return fallback_dir_servers;
  1466. }
  1467. /** Try to find a running dirserver that supports operations of <b>type</b>.
  1468. *
  1469. * If there are no running dirservers in our routerlist and the
  1470. * <b>PDS_RETRY_IF_NO_SERVERS</b> flag is set, set all the fallback ones
  1471. * (including authorities) as running again, and pick one.
  1472. *
  1473. * If the <b>PDS_IGNORE_FASCISTFIREWALL</b> flag is set, then include
  1474. * dirservers that we can't reach.
  1475. *
  1476. * If the <b>PDS_ALLOW_SELF</b> flag is not set, then don't include ourself
  1477. * (if we're a dirserver).
  1478. *
  1479. * Don't pick a fallback directory mirror if any non-fallback is viable;
  1480. * (the fallback directory mirrors include the authorities)
  1481. * try to avoid using servers that have returned 503 recently.
  1482. */
  1483. const routerstatus_t *
  1484. router_pick_directory_server(dirinfo_type_t type, int flags)
  1485. {
  1486. int busy = 0;
  1487. const routerstatus_t *choice;
  1488. if (!routerlist)
  1489. return NULL;
  1490. choice = router_pick_directory_server_impl(type, flags, &busy);
  1491. if (choice || !(flags & PDS_RETRY_IF_NO_SERVERS))
  1492. return choice;
  1493. if (busy) {
  1494. /* If the reason that we got no server is that servers are "busy",
  1495. * we must be excluding good servers because we already have serverdesc
  1496. * fetches with them. Do not mark down servers up because of this. */
  1497. tor_assert((flags & (PDS_NO_EXISTING_SERVERDESC_FETCH|
  1498. PDS_NO_EXISTING_MICRODESC_FETCH)));
  1499. return NULL;
  1500. }
  1501. log_info(LD_DIR,
  1502. "No reachable router entries for dirservers. "
  1503. "Trying them all again.");
  1504. /* mark all fallback directory mirrors as up again */
  1505. mark_all_dirservers_up(fallback_dir_servers);
  1506. /* try again */
  1507. choice = router_pick_directory_server_impl(type, flags, NULL);
  1508. return choice;
  1509. }
  1510. /** Return the dir_server_t for the directory authority whose identity
  1511. * key hashes to <b>digest</b>, or NULL if no such authority is known.
  1512. */
  1513. dir_server_t *
  1514. router_get_trusteddirserver_by_digest(const char *digest)
  1515. {
  1516. if (!trusted_dir_servers)
  1517. return NULL;
  1518. SMARTLIST_FOREACH(trusted_dir_servers, dir_server_t *, ds,
  1519. {
  1520. if (tor_memeq(ds->digest, digest, DIGEST_LEN))
  1521. return ds;
  1522. });
  1523. return NULL;
  1524. }
  1525. /** Return the dir_server_t for the fallback dirserver whose identity
  1526. * key hashes to <b>digest</b>, or NULL if no such fallback is in the list of
  1527. * fallback_dir_servers. (fallback_dir_servers is affected by the FallbackDir
  1528. * and UseDefaultFallbackDirs torrc options.)
  1529. * The list of fallback directories includes the list of authorities.
  1530. */
  1531. dir_server_t *
  1532. router_get_fallback_dirserver_by_digest(const char *digest)
  1533. {
  1534. if (!fallback_dir_servers)
  1535. return NULL;
  1536. if (!digest)
  1537. return NULL;
  1538. SMARTLIST_FOREACH(fallback_dir_servers, dir_server_t *, ds,
  1539. {
  1540. if (tor_memeq(ds->digest, digest, DIGEST_LEN))
  1541. return ds;
  1542. });
  1543. return NULL;
  1544. }
  1545. /** Return 1 if any fallback dirserver's identity key hashes to <b>digest</b>,
  1546. * or 0 if no such fallback is in the list of fallback_dir_servers.
  1547. * (fallback_dir_servers is affected by the FallbackDir and
  1548. * UseDefaultFallbackDirs torrc options.)
  1549. * The list of fallback directories includes the list of authorities.
  1550. */
  1551. int
  1552. router_digest_is_fallback_dir(const char *digest)
  1553. {
  1554. return (router_get_fallback_dirserver_by_digest(digest) != NULL);
  1555. }
  1556. /** Return the dir_server_t for the directory authority whose
  1557. * v3 identity key hashes to <b>digest</b>, or NULL if no such authority
  1558. * is known.
  1559. */
  1560. MOCK_IMPL(dir_server_t *,
  1561. trusteddirserver_get_by_v3_auth_digest, (const char *digest))
  1562. {
  1563. if (!trusted_dir_servers)
  1564. return NULL;
  1565. SMARTLIST_FOREACH(trusted_dir_servers, dir_server_t *, ds,
  1566. {
  1567. if (tor_memeq(ds->v3_identity_digest, digest, DIGEST_LEN) &&
  1568. (ds->type & V3_DIRINFO))
  1569. return ds;
  1570. });
  1571. return NULL;
  1572. }
  1573. /** Try to find a running directory authority. Flags are as for
  1574. * router_pick_directory_server.
  1575. */
  1576. const routerstatus_t *
  1577. router_pick_trusteddirserver(dirinfo_type_t type, int flags)
  1578. {
  1579. return router_pick_dirserver_generic(trusted_dir_servers, type, flags);
  1580. }
  1581. /** Try to find a running fallback directory. Flags are as for
  1582. * router_pick_directory_server.
  1583. */
  1584. const routerstatus_t *
  1585. router_pick_fallback_dirserver(dirinfo_type_t type, int flags)
  1586. {
  1587. return router_pick_dirserver_generic(fallback_dir_servers, type, flags);
  1588. }
  1589. /** Try to find a running fallback directory. Flags are as for
  1590. * router_pick_directory_server.
  1591. */
  1592. static const routerstatus_t *
  1593. router_pick_dirserver_generic(smartlist_t *sourcelist,
  1594. dirinfo_type_t type, int flags)
  1595. {
  1596. const routerstatus_t *choice;
  1597. int busy = 0;
  1598. choice = router_pick_trusteddirserver_impl(sourcelist, type, flags, &busy);
  1599. if (choice || !(flags & PDS_RETRY_IF_NO_SERVERS))
  1600. return choice;
  1601. if (busy) {
  1602. /* If the reason that we got no server is that servers are "busy",
  1603. * we must be excluding good servers because we already have serverdesc
  1604. * fetches with them. Do not mark down servers up because of this. */
  1605. tor_assert((flags & (PDS_NO_EXISTING_SERVERDESC_FETCH|
  1606. PDS_NO_EXISTING_MICRODESC_FETCH)));
  1607. return NULL;
  1608. }
  1609. log_info(LD_DIR,
  1610. "No dirservers are reachable. Trying them all again.");
  1611. mark_all_dirservers_up(sourcelist);
  1612. return router_pick_trusteddirserver_impl(sourcelist, type, flags, NULL);
  1613. }
  1614. /* Check if we already have a directory fetch from ap, for serverdesc
  1615. * (including extrainfo) or microdesc documents.
  1616. * If so, return 1, if not, return 0.
  1617. * Also returns 0 if addr is NULL, tor_addr_is_null(addr), or dir_port is 0.
  1618. */
  1619. STATIC int
  1620. router_is_already_dir_fetching(const tor_addr_port_t *ap, int serverdesc,
  1621. int microdesc)
  1622. {
  1623. if (!ap || tor_addr_is_null(&ap->addr) || !ap->port) {
  1624. return 0;
  1625. }
  1626. /* XX/teor - we're not checking tunnel connections here, see #17848
  1627. */
  1628. if (serverdesc && (
  1629. connection_get_by_type_addr_port_purpose(
  1630. CONN_TYPE_DIR, &ap->addr, ap->port, DIR_PURPOSE_FETCH_SERVERDESC)
  1631. || connection_get_by_type_addr_port_purpose(
  1632. CONN_TYPE_DIR, &ap->addr, ap->port, DIR_PURPOSE_FETCH_EXTRAINFO))) {
  1633. return 1;
  1634. }
  1635. if (microdesc && (
  1636. connection_get_by_type_addr_port_purpose(
  1637. CONN_TYPE_DIR, &ap->addr, ap->port, DIR_PURPOSE_FETCH_MICRODESC))) {
  1638. return 1;
  1639. }
  1640. return 0;
  1641. }
  1642. /* Check if we already have a directory fetch from the ipv4 or ipv6
  1643. * router, for serverdesc (including extrainfo) or microdesc documents.
  1644. * If so, return 1, if not, return 0.
  1645. */
  1646. static int
  1647. router_is_already_dir_fetching_(uint32_t ipv4_addr,
  1648. const tor_addr_t *ipv6_addr,
  1649. uint16_t dir_port,
  1650. int serverdesc,
  1651. int microdesc)
  1652. {
  1653. tor_addr_port_t ipv4_dir_ap, ipv6_dir_ap;
  1654. /* Assume IPv6 DirPort is the same as IPv4 DirPort */
  1655. tor_addr_from_ipv4h(&ipv4_dir_ap.addr, ipv4_addr);
  1656. ipv4_dir_ap.port = dir_port;
  1657. tor_addr_copy(&ipv6_dir_ap.addr, ipv6_addr);
  1658. ipv6_dir_ap.port = dir_port;
  1659. return (router_is_already_dir_fetching(&ipv4_dir_ap, serverdesc, microdesc)
  1660. || router_is_already_dir_fetching(&ipv6_dir_ap, serverdesc, microdesc));
  1661. }
  1662. #ifndef LOG_FALSE_POSITIVES_DURING_BOOTSTRAP
  1663. #define LOG_FALSE_POSITIVES_DURING_BOOTSTRAP 0
  1664. #endif
  1665. /* Log a message if rs is not found or not a preferred address */
  1666. static void
  1667. router_picked_poor_directory_log(const routerstatus_t *rs)
  1668. {
  1669. const networkstatus_t *usable_consensus;
  1670. usable_consensus = networkstatus_get_reasonably_live_consensus(time(NULL),
  1671. usable_consensus_flavor());
  1672. #if !LOG_FALSE_POSITIVES_DURING_BOOTSTRAP
  1673. /* Don't log early in the bootstrap process, it's normal to pick from a
  1674. * small pool of nodes. Of course, this won't help if we're trying to
  1675. * diagnose bootstrap issues. */
  1676. if (!smartlist_len(nodelist_get_list()) || !usable_consensus
  1677. || !router_have_minimum_dir_info()) {
  1678. return;
  1679. }
  1680. #endif /* !LOG_FALSE_POSITIVES_DURING_BOOTSTRAP */
  1681. /* We couldn't find a node, or the one we have doesn't fit our preferences.
  1682. * Sometimes this is normal, sometimes it can be a reachability issue. */
  1683. if (!rs) {
  1684. /* This happens a lot, so it's at debug level */
  1685. log_debug(LD_DIR, "Wanted to make an outgoing directory connection, but "
  1686. "we couldn't find a directory that fit our criteria. "
  1687. "Perhaps we will succeed next time with less strict criteria.");
  1688. } else if (!fascist_firewall_allows_rs(rs, FIREWALL_OR_CONNECTION, 1)
  1689. && !fascist_firewall_allows_rs(rs, FIREWALL_DIR_CONNECTION, 1)
  1690. ) {
  1691. /* This is rare, and might be interesting to users trying to diagnose
  1692. * connection issues on dual-stack machines. */
  1693. log_info(LD_DIR, "Selected a directory %s with non-preferred OR and Dir "
  1694. "addresses for launching an outgoing connection: "
  1695. "IPv4 %s OR %d Dir %d IPv6 %s OR %d Dir %d",
  1696. routerstatus_describe(rs),
  1697. fmt_addr32(rs->addr), rs->or_port,
  1698. rs->dir_port, fmt_addr(&rs->ipv6_addr),
  1699. rs->ipv6_orport, rs->dir_port);
  1700. }
  1701. }
  1702. #undef LOG_FALSE_POSITIVES_DURING_BOOTSTRAP
  1703. /** How long do we avoid using a directory server after it's given us a 503? */
  1704. #define DIR_503_TIMEOUT (60*60)
  1705. /* Common retry code for router_pick_directory_server_impl and
  1706. * router_pick_trusteddirserver_impl. Retry with the non-preferred IP version.
  1707. * Must be called before RETRY_WITHOUT_EXCLUDE().
  1708. *
  1709. * If we got no result, and we are applying IP preferences, and we are a
  1710. * client that could use an alternate IP version, try again with the
  1711. * opposite preferences. */
  1712. #define RETRY_ALTERNATE_IP_VERSION(retry_label) \
  1713. STMT_BEGIN \
  1714. if (result == NULL && try_ip_pref && options->ClientUseIPv4 \
  1715. && fascist_firewall_use_ipv6(options) && !server_mode(options) \
  1716. && !n_busy) { \
  1717. n_excluded = 0; \
  1718. n_busy = 0; \
  1719. try_ip_pref = 0; \
  1720. goto retry_label; \
  1721. } \
  1722. STMT_END \
  1723. /* Common retry code for router_pick_directory_server_impl and
  1724. * router_pick_trusteddirserver_impl. Retry without excluding nodes, but with
  1725. * the preferred IP version. Must be called after RETRY_ALTERNATE_IP_VERSION().
  1726. *
  1727. * If we got no result, and we are excluding nodes, and StrictNodes is
  1728. * not set, try again without excluding nodes. */
  1729. #define RETRY_WITHOUT_EXCLUDE(retry_label) \
  1730. STMT_BEGIN \
  1731. if (result == NULL && try_excluding && !options->StrictNodes \
  1732. && n_excluded && !n_busy) { \
  1733. try_excluding = 0; \
  1734. n_excluded = 0; \
  1735. n_busy = 0; \
  1736. try_ip_pref = 1; \
  1737. goto retry_label; \
  1738. } \
  1739. STMT_END
  1740. /* Common code used in the loop within router_pick_directory_server_impl and
  1741. * router_pick_trusteddirserver_impl.
  1742. *
  1743. * Check if the given <b>identity</b> supports extrainfo. If not, skip further
  1744. * checks.
  1745. */
  1746. #define SKIP_MISSING_TRUSTED_EXTRAINFO(type, identity) \
  1747. STMT_BEGIN \
  1748. int is_trusted_extrainfo = router_digest_is_trusted_dir_type( \
  1749. (identity), EXTRAINFO_DIRINFO); \
  1750. if (((type) & EXTRAINFO_DIRINFO) && \
  1751. !router_supports_extrainfo((identity), is_trusted_extrainfo)) \
  1752. continue; \
  1753. STMT_END
  1754. /* When iterating through the routerlist, can OR address/port preference
  1755. * and reachability checks be skipped?
  1756. */
  1757. int
  1758. router_skip_or_reachability(const or_options_t *options, int try_ip_pref)
  1759. {
  1760. /* Servers always have and prefer IPv4.
  1761. * And if clients are checking against the firewall for reachability only,
  1762. * but there's no firewall, don't bother checking */
  1763. return server_mode(options) || (!try_ip_pref && !firewall_is_fascist_or());
  1764. }
  1765. /* When iterating through the routerlist, can Dir address/port preference
  1766. * and reachability checks be skipped?
  1767. */
  1768. static int
  1769. router_skip_dir_reachability(const or_options_t *options, int try_ip_pref)
  1770. {
  1771. /* Servers always have and prefer IPv4.
  1772. * And if clients are checking against the firewall for reachability only,
  1773. * but there's no firewall, don't bother checking */
  1774. return server_mode(options) || (!try_ip_pref && !firewall_is_fascist_dir());
  1775. }
  1776. /** Pick a random running valid directory server/mirror from our
  1777. * routerlist. Arguments are as for router_pick_directory_server(), except:
  1778. *
  1779. * If <b>n_busy_out</b> is provided, set *<b>n_busy_out</b> to the number of
  1780. * directories that we excluded for no other reason than
  1781. * PDS_NO_EXISTING_SERVERDESC_FETCH or PDS_NO_EXISTING_MICRODESC_FETCH.
  1782. */
  1783. STATIC const routerstatus_t *
  1784. router_pick_directory_server_impl(dirinfo_type_t type, int flags,
  1785. int *n_busy_out)
  1786. {
  1787. const or_options_t *options = get_options();
  1788. const node_t *result;
  1789. smartlist_t *direct, *tunnel;
  1790. smartlist_t *trusted_direct, *trusted_tunnel;
  1791. smartlist_t *overloaded_direct, *overloaded_tunnel;
  1792. time_t now = time(NULL);
  1793. const networkstatus_t *consensus = networkstatus_get_latest_consensus();
  1794. const int requireother = ! (flags & PDS_ALLOW_SELF);
  1795. const int fascistfirewall = ! (flags & PDS_IGNORE_FASCISTFIREWALL);
  1796. const int no_serverdesc_fetching =(flags & PDS_NO_EXISTING_SERVERDESC_FETCH);
  1797. const int no_microdesc_fetching = (flags & PDS_NO_EXISTING_MICRODESC_FETCH);
  1798. int try_excluding = 1, n_excluded = 0, n_busy = 0;
  1799. int try_ip_pref = 1;
  1800. if (!consensus)
  1801. return NULL;
  1802. retry_search:
  1803. direct = smartlist_new();
  1804. tunnel = smartlist_new();
  1805. trusted_direct = smartlist_new();
  1806. trusted_tunnel = smartlist_new();
  1807. overloaded_direct = smartlist_new();
  1808. overloaded_tunnel = smartlist_new();
  1809. const int skip_or_fw = router_skip_or_reachability(options, try_ip_pref);
  1810. const int skip_dir_fw = router_skip_dir_reachability(options, try_ip_pref);
  1811. const int must_have_or = directory_must_use_begindir(options);
  1812. /* Find all the running dirservers we know about. */
  1813. SMARTLIST_FOREACH_BEGIN(nodelist_get_list(), const node_t *, node) {
  1814. int is_trusted;
  1815. int is_overloaded;
  1816. const routerstatus_t *status = node->rs;
  1817. const country_t country = node->country;
  1818. if (!status)
  1819. continue;
  1820. if (!node->is_running || !node_is_dir(node) || !node->is_valid)
  1821. continue;
  1822. if (requireother && router_digest_is_me(node->identity))
  1823. continue;
  1824. SKIP_MISSING_TRUSTED_EXTRAINFO(type, node->identity);
  1825. if (try_excluding &&
  1826. routerset_contains_routerstatus(options->ExcludeNodes, status,
  1827. country)) {
  1828. ++n_excluded;
  1829. continue;
  1830. }
  1831. if (router_is_already_dir_fetching_(status->addr,
  1832. &status->ipv6_addr,
  1833. status->dir_port,
  1834. no_serverdesc_fetching,
  1835. no_microdesc_fetching)) {
  1836. ++n_busy;
  1837. continue;
  1838. }
  1839. is_overloaded = status->last_dir_503_at + DIR_503_TIMEOUT > now;
  1840. is_trusted = router_digest_is_trusted_dir(node->identity);
  1841. /* Clients use IPv6 addresses if the server has one and the client
  1842. * prefers IPv6.
  1843. * Add the router if its preferred address and port are reachable.
  1844. * If we don't get any routers, we'll try again with the non-preferred
  1845. * address for each router (if any). (To ensure correct load-balancing
  1846. * we try routers that only have one address both times.)
  1847. */
  1848. if (!fascistfirewall || skip_or_fw ||
  1849. fascist_firewall_allows_node(node, FIREWALL_OR_CONNECTION,
  1850. try_ip_pref))
  1851. smartlist_add(is_trusted ? trusted_tunnel :
  1852. is_overloaded ? overloaded_tunnel : tunnel, (void*)node);
  1853. else if (!must_have_or && (skip_dir_fw ||
  1854. fascist_firewall_allows_node(node, FIREWALL_DIR_CONNECTION,
  1855. try_ip_pref)))
  1856. smartlist_add(is_trusted ? trusted_direct :
  1857. is_overloaded ? overloaded_direct : direct, (void*)node);
  1858. } SMARTLIST_FOREACH_END(node);
  1859. if (smartlist_len(tunnel)) {
  1860. result = node_sl_choose_by_bandwidth(tunnel, WEIGHT_FOR_DIR);
  1861. } else if (smartlist_len(overloaded_tunnel)) {
  1862. result = node_sl_choose_by_bandwidth(overloaded_tunnel,
  1863. WEIGHT_FOR_DIR);
  1864. } else if (smartlist_len(trusted_tunnel)) {
  1865. /* FFFF We don't distinguish between trusteds and overloaded trusteds
  1866. * yet. Maybe one day we should. */
  1867. /* FFFF We also don't load balance over authorities yet. I think this
  1868. * is a feature, but it could easily be a bug. -RD */
  1869. result = smartlist_choose(trusted_tunnel);
  1870. } else if (smartlist_len(direct)) {
  1871. result = node_sl_choose_by_bandwidth(direct, WEIGHT_FOR_DIR);
  1872. } else if (smartlist_len(overloaded_direct)) {
  1873. result = node_sl_choose_by_bandwidth(overloaded_direct,
  1874. WEIGHT_FOR_DIR);
  1875. } else {
  1876. result = smartlist_choose(trusted_direct);
  1877. }
  1878. smartlist_free(direct);
  1879. smartlist_free(tunnel);
  1880. smartlist_free(trusted_direct);
  1881. smartlist_free(trusted_tunnel);
  1882. smartlist_free(overloaded_direct);
  1883. smartlist_free(overloaded_tunnel);
  1884. RETRY_ALTERNATE_IP_VERSION(retry_search);
  1885. RETRY_WITHOUT_EXCLUDE(retry_search);
  1886. if (n_busy_out)
  1887. *n_busy_out = n_busy;
  1888. router_picked_poor_directory_log(result ? result->rs : NULL);
  1889. return result ? result->rs : NULL;
  1890. }
  1891. /** Pick a random element from a list of dir_server_t, weighting by their
  1892. * <b>weight</b> field. */
  1893. static const dir_server_t *
  1894. dirserver_choose_by_weight(const smartlist_t *servers, double authority_weight)
  1895. {
  1896. int n = smartlist_len(servers);
  1897. int i;
  1898. double *weights_dbl;
  1899. uint64_t *weights_u64;
  1900. const dir_server_t *ds;
  1901. weights_dbl = tor_calloc(n, sizeof(double));
  1902. weights_u64 = tor_calloc(n, sizeof(uint64_t));
  1903. for (i = 0; i < n; ++i) {
  1904. ds = smartlist_get(servers, i);
  1905. weights_dbl[i] = ds->weight;
  1906. if (ds->is_authority)
  1907. weights_dbl[i] *= authority_weight;
  1908. }
  1909. scale_array_elements_to_u64(weights_u64, weights_dbl, n, NULL);
  1910. i = choose_array_element_by_weight(weights_u64, n);
  1911. tor_free(weights_dbl);
  1912. tor_free(weights_u64);
  1913. return (i < 0) ? NULL : smartlist_get(servers, i);
  1914. }
  1915. /** Choose randomly from among the dir_server_ts in sourcelist that
  1916. * are up. Flags are as for router_pick_directory_server_impl().
  1917. */
  1918. static const routerstatus_t *
  1919. router_pick_trusteddirserver_impl(const smartlist_t *sourcelist,
  1920. dirinfo_type_t type, int flags,
  1921. int *n_busy_out)
  1922. {
  1923. const or_options_t *options = get_options();
  1924. smartlist_t *direct, *tunnel;
  1925. smartlist_t *overloaded_direct, *overloaded_tunnel;
  1926. const routerinfo_t *me = router_get_my_routerinfo();
  1927. const routerstatus_t *result = NULL;
  1928. time_t now = time(NULL);
  1929. const int requireother = ! (flags & PDS_ALLOW_SELF);
  1930. const int fascistfirewall = ! (flags & PDS_IGNORE_FASCISTFIREWALL);
  1931. const int no_serverdesc_fetching =(flags & PDS_NO_EXISTING_SERVERDESC_FETCH);
  1932. const int no_microdesc_fetching =(flags & PDS_NO_EXISTING_MICRODESC_FETCH);
  1933. const double auth_weight = (sourcelist == fallback_dir_servers) ?
  1934. options->DirAuthorityFallbackRate : 1.0;
  1935. smartlist_t *pick_from;
  1936. int n_busy = 0;
  1937. int try_excluding = 1, n_excluded = 0;
  1938. int try_ip_pref = 1;
  1939. if (!sourcelist)
  1940. return NULL;
  1941. retry_search:
  1942. direct = smartlist_new();
  1943. tunnel = smartlist_new();
  1944. overloaded_direct = smartlist_new();
  1945. overloaded_tunnel = smartlist_new();
  1946. const int skip_or_fw = router_skip_or_reachability(options, try_ip_pref);
  1947. const int skip_dir_fw = router_skip_dir_reachability(options, try_ip_pref);
  1948. const int must_have_or = directory_must_use_begindir(options);
  1949. SMARTLIST_FOREACH_BEGIN(sourcelist, const dir_server_t *, d)
  1950. {
  1951. int is_overloaded =
  1952. d->fake_status.last_dir_503_at + DIR_503_TIMEOUT > now;
  1953. if (!d->is_running) continue;
  1954. if ((type & d->type) == 0)
  1955. continue;
  1956. SKIP_MISSING_TRUSTED_EXTRAINFO(type, d->digest);
  1957. if (requireother && me && router_digest_is_me(d->digest))
  1958. continue;
  1959. if (try_excluding &&
  1960. routerset_contains_routerstatus(options->ExcludeNodes,
  1961. &d->fake_status, -1)) {
  1962. ++n_excluded;
  1963. continue;
  1964. }
  1965. if (router_is_already_dir_fetching_(d->addr,
  1966. &d->ipv6_addr,
  1967. d->dir_port,
  1968. no_serverdesc_fetching,
  1969. no_microdesc_fetching)) {
  1970. ++n_busy;
  1971. continue;
  1972. }
  1973. /* Clients use IPv6 addresses if the server has one and the client
  1974. * prefers IPv6.
  1975. * Add the router if its preferred address and port are reachable.
  1976. * If we don't get any routers, we'll try again with the non-preferred
  1977. * address for each router (if any). (To ensure correct load-balancing
  1978. * we try routers that only have one address both times.)
  1979. */
  1980. if (!fascistfirewall || skip_or_fw ||
  1981. fascist_firewall_allows_dir_server(d, FIREWALL_OR_CONNECTION,
  1982. try_ip_pref))
  1983. smartlist_add(is_overloaded ? overloaded_tunnel : tunnel, (void*)d);
  1984. else if (!must_have_or && (skip_dir_fw ||
  1985. fascist_firewall_allows_dir_server(d, FIREWALL_DIR_CONNECTION,
  1986. try_ip_pref)))
  1987. smartlist_add(is_overloaded ? overloaded_direct : direct, (void*)d);
  1988. }
  1989. SMARTLIST_FOREACH_END(d);
  1990. if (smartlist_len(tunnel)) {
  1991. pick_from = tunnel;
  1992. } else if (smartlist_len(overloaded_tunnel)) {
  1993. pick_from = overloaded_tunnel;
  1994. } else if (smartlist_len(direct)) {
  1995. pick_from = direct;
  1996. } else {
  1997. pick_from = overloaded_direct;
  1998. }
  1999. {
  2000. const dir_server_t *selection =
  2001. dirserver_choose_by_weight(pick_from, auth_weight);
  2002. if (selection)
  2003. result = &selection->fake_status;
  2004. }
  2005. smartlist_free(direct);
  2006. smartlist_free(tunnel);
  2007. smartlist_free(overloaded_direct);
  2008. smartlist_free(overloaded_tunnel);
  2009. RETRY_ALTERNATE_IP_VERSION(retry_search);
  2010. RETRY_WITHOUT_EXCLUDE(retry_search);
  2011. router_picked_poor_directory_log(result);
  2012. if (n_busy_out)
  2013. *n_busy_out = n_busy;
  2014. return result;
  2015. }
  2016. /** Mark as running every dir_server_t in <b>server_list</b>. */
  2017. static void
  2018. mark_all_dirservers_up(smartlist_t *server_list)
  2019. {
  2020. if (server_list) {
  2021. SMARTLIST_FOREACH_BEGIN(server_list, dir_server_t *, dir) {
  2022. routerstatus_t *rs;
  2023. node_t *node;
  2024. dir->is_running = 1;
  2025. node = node_get_mutable_by_id(dir->digest);
  2026. if (node)
  2027. node->is_running = 1;
  2028. rs = router_get_mutable_consensus_status_by_id(dir->digest);
  2029. if (rs) {
  2030. rs->last_dir_503_at = 0;
  2031. control_event_networkstatus_changed_single(rs);
  2032. }
  2033. } SMARTLIST_FOREACH_END(dir);
  2034. }
  2035. router_dir_info_changed();
  2036. }
  2037. /** Return true iff r1 and r2 have the same address and OR port. */
  2038. int
  2039. routers_have_same_or_addrs(const routerinfo_t *r1, const routerinfo_t *r2)
  2040. {
  2041. return r1->addr == r2->addr && r1->or_port == r2->or_port &&
  2042. tor_addr_eq(&r1->ipv6_addr, &r2->ipv6_addr) &&
  2043. r1->ipv6_orport == r2->ipv6_orport;
  2044. }
  2045. /** Reset all internal variables used to count failed downloads of network
  2046. * status objects. */
  2047. void
  2048. router_reset_status_download_failures(void)
  2049. {
  2050. mark_all_dirservers_up(fallback_dir_servers);
  2051. }
  2052. /** Given a <b>router</b>, add every node_t in its family (including the
  2053. * node itself!) to <b>sl</b>.
  2054. *
  2055. * Note the type mismatch: This function takes a routerinfo, but adds nodes
  2056. * to the smartlist!
  2057. */
  2058. static void
  2059. routerlist_add_node_and_family(smartlist_t *sl, const routerinfo_t *router)
  2060. {
  2061. /* XXXX MOVE ? */
  2062. node_t fake_node;
  2063. const node_t *node = node_get_by_id(router->cache_info.identity_digest);
  2064. if (node == NULL) {
  2065. memset(&fake_node, 0, sizeof(fake_node));
  2066. fake_node.ri = (routerinfo_t *)router;
  2067. memcpy(fake_node.identity, router->cache_info.identity_digest, DIGEST_LEN);
  2068. node = &fake_node;
  2069. }
  2070. nodelist_add_node_and_family(sl, node);
  2071. }
  2072. /** Add every suitable node from our nodelist to <b>sl</b>, so that
  2073. * we can pick a node for a circuit.
  2074. */
  2075. void
  2076. router_add_running_nodes_to_smartlist(smartlist_t *sl, int need_uptime,
  2077. int need_capacity, int need_guard,
  2078. int need_desc, int pref_addr,
  2079. int direct_conn)
  2080. {
  2081. const int check_reach = !router_skip_or_reachability(get_options(),
  2082. pref_addr);
  2083. /* XXXX MOVE */
  2084. SMARTLIST_FOREACH_BEGIN(nodelist_get_list(), const node_t *, node) {
  2085. if (!node->is_running || !node->is_valid)
  2086. continue;
  2087. if (need_desc && !node_has_preferred_descriptor(node, direct_conn))
  2088. continue;
  2089. if (node->ri && node->ri->purpose != ROUTER_PURPOSE_GENERAL)
  2090. continue;
  2091. if (node_is_unreliable(node, need_uptime, need_capacity, need_guard))
  2092. continue;
  2093. /* Don't choose nodes if we are certain they can't do EXTEND2 cells */
  2094. if (node->rs && !routerstatus_version_supports_extend2_cells(node->rs, 1))
  2095. continue;
  2096. /* Don't choose nodes if we are certain they can't do ntor. */
  2097. if ((node->ri || node->md) && !node_has_curve25519_onion_key(node))
  2098. continue;
  2099. /* Choose a node with an OR address that matches the firewall rules */
  2100. if (direct_conn && check_reach &&
  2101. !fascist_firewall_allows_node(node,
  2102. FIREWALL_OR_CONNECTION,
  2103. pref_addr))
  2104. continue;
  2105. smartlist_add(sl, (void *)node);
  2106. } SMARTLIST_FOREACH_END(node);
  2107. }
  2108. /** Look through the routerlist until we find a router that has my key.
  2109. Return it. */
  2110. const routerinfo_t *
  2111. routerlist_find_my_routerinfo(void)
  2112. {
  2113. if (!routerlist)
  2114. return NULL;
  2115. SMARTLIST_FOREACH(routerlist->routers, routerinfo_t *, router,
  2116. {
  2117. if (router_is_me(router))
  2118. return router;
  2119. });
  2120. return NULL;
  2121. }
  2122. /** Return the smaller of the router's configured BandwidthRate
  2123. * and its advertised capacity. */
  2124. uint32_t
  2125. router_get_advertised_bandwidth(const routerinfo_t *router)
  2126. {
  2127. if (router->bandwidthcapacity < router->bandwidthrate)
  2128. return router->bandwidthcapacity;
  2129. return router->bandwidthrate;
  2130. }
  2131. /** Do not weight any declared bandwidth more than this much when picking
  2132. * routers by bandwidth. */
  2133. #define DEFAULT_MAX_BELIEVABLE_BANDWIDTH 10000000 /* 10 MB/sec */
  2134. /** Return the smaller of the router's configured BandwidthRate
  2135. * and its advertised capacity, capped by max-believe-bw. */
  2136. uint32_t
  2137. router_get_advertised_bandwidth_capped(const routerinfo_t *router)
  2138. {
  2139. uint32_t result = router->bandwidthcapacity;
  2140. if (result > router->bandwidthrate)
  2141. result = router->bandwidthrate;
  2142. if (result > DEFAULT_MAX_BELIEVABLE_BANDWIDTH)
  2143. result = DEFAULT_MAX_BELIEVABLE_BANDWIDTH;
  2144. return result;
  2145. }
  2146. /** Given an array of double/uint64_t unions that are currently being used as
  2147. * doubles, convert them to uint64_t, and try to scale them linearly so as to
  2148. * much of the range of uint64_t. If <b>total_out</b> is provided, set it to
  2149. * the sum of all elements in the array _before_ scaling. */
  2150. STATIC void
  2151. scale_array_elements_to_u64(uint64_t *entries_out, const double *entries_in,
  2152. int n_entries,
  2153. uint64_t *total_out)
  2154. {
  2155. double total = 0.0;
  2156. double scale_factor = 0.0;
  2157. int i;
  2158. for (i = 0; i < n_entries; ++i)
  2159. total += entries_in[i];
  2160. if (total > 0.0) {
  2161. scale_factor = ((double)INT64_MAX) / total;
  2162. scale_factor /= 4.0; /* make sure we're very far away from overflowing */
  2163. }
  2164. for (i = 0; i < n_entries; ++i)
  2165. entries_out[i] = tor_llround(entries_in[i] * scale_factor);
  2166. if (total_out)
  2167. *total_out = (uint64_t) total;
  2168. }
  2169. /** Pick a random element of <b>n_entries</b>-element array <b>entries</b>,
  2170. * choosing each element with a probability proportional to its (uint64_t)
  2171. * value, and return the index of that element. If all elements are 0, choose
  2172. * an index at random. Return -1 on error.
  2173. */
  2174. STATIC int
  2175. choose_array_element_by_weight(const uint64_t *entries, int n_entries)
  2176. {
  2177. int i;
  2178. uint64_t rand_val;
  2179. uint64_t total = 0;
  2180. for (i = 0; i < n_entries; ++i)
  2181. total += entries[i];
  2182. if (n_entries < 1)
  2183. return -1;
  2184. if (total == 0)
  2185. return crypto_rand_int(n_entries);
  2186. tor_assert(total < INT64_MAX);
  2187. rand_val = crypto_rand_uint64(total);
  2188. return select_array_member_cumulative_timei(
  2189. entries, n_entries, total, rand_val);
  2190. }
  2191. /** When weighting bridges, enforce these values as lower and upper
  2192. * bound for believable bandwidth, because there is no way for us
  2193. * to verify a bridge's bandwidth currently. */
  2194. #define BRIDGE_MIN_BELIEVABLE_BANDWIDTH 20000 /* 20 kB/sec */
  2195. #define BRIDGE_MAX_BELIEVABLE_BANDWIDTH 100000 /* 100 kB/sec */
  2196. /** Return the smaller of the router's configured BandwidthRate
  2197. * and its advertised capacity, making sure to stay within the
  2198. * interval between bridge-min-believe-bw and
  2199. * bridge-max-believe-bw. */
  2200. static uint32_t
  2201. bridge_get_advertised_bandwidth_bounded(routerinfo_t *router)
  2202. {
  2203. uint32_t result = router->bandwidthcapacity;
  2204. if (result > router->bandwidthrate)
  2205. result = router->bandwidthrate;
  2206. if (result > BRIDGE_MAX_BELIEVABLE_BANDWIDTH)
  2207. result = BRIDGE_MAX_BELIEVABLE_BANDWIDTH;
  2208. else if (result < BRIDGE_MIN_BELIEVABLE_BANDWIDTH)
  2209. result = BRIDGE_MIN_BELIEVABLE_BANDWIDTH;
  2210. return result;
  2211. }
  2212. /** Return bw*1000, unless bw*1000 would overflow, in which case return
  2213. * INT32_MAX. */
  2214. static inline int32_t
  2215. kb_to_bytes(uint32_t bw)
  2216. {
  2217. return (bw > (INT32_MAX/1000)) ? INT32_MAX : bw*1000;
  2218. }
  2219. /** Helper function:
  2220. * choose a random element of smartlist <b>sl</b> of nodes, weighted by
  2221. * the advertised bandwidth of each element using the consensus
  2222. * bandwidth weights.
  2223. *
  2224. * If <b>rule</b>==WEIGHT_FOR_EXIT. we're picking an exit node: consider all
  2225. * nodes' bandwidth equally regardless of their Exit status, since there may
  2226. * be some in the list because they exit to obscure ports. If
  2227. * <b>rule</b>==NO_WEIGHTING, we're picking a non-exit node: weight
  2228. * exit-node's bandwidth less depending on the smallness of the fraction of
  2229. * Exit-to-total bandwidth. If <b>rule</b>==WEIGHT_FOR_GUARD, we're picking a
  2230. * guard node: consider all guard's bandwidth equally. Otherwise, weight
  2231. * guards proportionally less.
  2232. */
  2233. static const node_t *
  2234. smartlist_choose_node_by_bandwidth_weights(const smartlist_t *sl,
  2235. bandwidth_weight_rule_t rule)
  2236. {
  2237. double *bandwidths_dbl=NULL;
  2238. uint64_t *bandwidths_u64=NULL;
  2239. if (compute_weighted_bandwidths(sl, rule, &bandwidths_dbl, NULL) < 0)
  2240. return NULL;
  2241. bandwidths_u64 = tor_calloc(smartlist_len(sl), sizeof(uint64_t));
  2242. scale_array_elements_to_u64(bandwidths_u64, bandwidths_dbl,
  2243. smartlist_len(sl), NULL);
  2244. {
  2245. int idx = choose_array_element_by_weight(bandwidths_u64,
  2246. smartlist_len(sl));
  2247. tor_free(bandwidths_dbl);
  2248. tor_free(bandwidths_u64);
  2249. return idx < 0 ? NULL : smartlist_get(sl, idx);
  2250. }
  2251. }
  2252. /** Given a list of routers and a weighting rule as in
  2253. * smartlist_choose_node_by_bandwidth_weights, compute weighted bandwidth
  2254. * values for each node and store them in a freshly allocated
  2255. * *<b>bandwidths_out</b> of the same length as <b>sl</b>, and holding results
  2256. * as doubles. If <b>total_bandwidth_out</b> is non-NULL, set it to the total
  2257. * of all the bandwidths.
  2258. * Return 0 on success, -1 on failure. */
  2259. static int
  2260. compute_weighted_bandwidths(const smartlist_t *sl,
  2261. bandwidth_weight_rule_t rule,
  2262. double **bandwidths_out,
  2263. double *total_bandwidth_out)
  2264. {
  2265. int64_t weight_scale;
  2266. double Wg = -1, Wm = -1, We = -1, Wd = -1;
  2267. double Wgb = -1, Wmb = -1, Web = -1, Wdb = -1;
  2268. guardfraction_bandwidth_t guardfraction_bw;
  2269. double *bandwidths = NULL;
  2270. double total_bandwidth = 0.0;
  2271. tor_assert(sl);
  2272. tor_assert(bandwidths_out);
  2273. /* Can't choose exit and guard at same time */
  2274. tor_assert(rule == NO_WEIGHTING ||
  2275. rule == WEIGHT_FOR_EXIT ||
  2276. rule == WEIGHT_FOR_GUARD ||
  2277. rule == WEIGHT_FOR_MID ||
  2278. rule == WEIGHT_FOR_DIR);
  2279. *bandwidths_out = NULL;
  2280. if (total_bandwidth_out) {
  2281. *total_bandwidth_out = 0.0;
  2282. }
  2283. if (smartlist_len(sl) == 0) {
  2284. log_info(LD_CIRC,
  2285. "Empty routerlist passed in to consensus weight node "
  2286. "selection for rule %s",
  2287. bandwidth_weight_rule_to_string(rule));
  2288. return -1;
  2289. }
  2290. weight_scale = networkstatus_get_weight_scale_param(NULL);
  2291. if (rule == WEIGHT_FOR_GUARD) {
  2292. Wg = networkstatus_get_bw_weight(NULL, "Wgg", -1);
  2293. Wm = networkstatus_get_bw_weight(NULL, "Wgm", -1); /* Bridges */
  2294. We = 0;
  2295. Wd = networkstatus_get_bw_weight(NULL, "Wgd", -1);
  2296. Wgb = networkstatus_get_bw_weight(NULL, "Wgb", -1);
  2297. Wmb = networkstatus_get_bw_weight(NULL, "Wmb", -1);
  2298. Web = networkstatus_get_bw_weight(NULL, "Web", -1);
  2299. Wdb = networkstatus_get_bw_weight(NULL, "Wdb", -1);
  2300. } else if (rule == WEIGHT_FOR_MID) {
  2301. Wg = networkstatus_get_bw_weight(NULL, "Wmg", -1);
  2302. Wm = networkstatus_get_bw_weight(NULL, "Wmm", -1);
  2303. We = networkstatus_get_bw_weight(NULL, "Wme", -1);
  2304. Wd = networkstatus_get_bw_weight(NULL, "Wmd", -1);
  2305. Wgb = networkstatus_get_bw_weight(NULL, "Wgb", -1);
  2306. Wmb = networkstatus_get_bw_weight(NULL, "Wmb", -1);
  2307. Web = networkstatus_get_bw_weight(NULL, "Web", -1);
  2308. Wdb = networkstatus_get_bw_weight(NULL, "Wdb", -1);
  2309. } else if (rule == WEIGHT_FOR_EXIT) {
  2310. // Guards CAN be exits if they have weird exit policies
  2311. // They are d then I guess...
  2312. We = networkstatus_get_bw_weight(NULL, "Wee", -1);
  2313. Wm = networkstatus_get_bw_weight(NULL, "Wem", -1); /* Odd exit policies */
  2314. Wd = networkstatus_get_bw_weight(NULL, "Wed", -1);
  2315. Wg = networkstatus_get_bw_weight(NULL, "Weg", -1); /* Odd exit policies */
  2316. Wgb = networkstatus_get_bw_weight(NULL, "Wgb", -1);
  2317. Wmb = networkstatus_get_bw_weight(NULL, "Wmb", -1);
  2318. Web = networkstatus_get_bw_weight(NULL, "Web", -1);
  2319. Wdb = networkstatus_get_bw_weight(NULL, "Wdb", -1);
  2320. } else if (rule == WEIGHT_FOR_DIR) {
  2321. We = networkstatus_get_bw_weight(NULL, "Wbe", -1);
  2322. Wm = networkstatus_get_bw_weight(NULL, "Wbm", -1);
  2323. Wd = networkstatus_get_bw_weight(NULL, "Wbd", -1);
  2324. Wg = networkstatus_get_bw_weight(NULL, "Wbg", -1);
  2325. Wgb = Wmb = Web = Wdb = weight_scale;
  2326. } else if (rule == NO_WEIGHTING) {
  2327. Wg = Wm = We = Wd = weight_scale;
  2328. Wgb = Wmb = Web = Wdb = weight_scale;
  2329. }
  2330. if (Wg < 0 || Wm < 0 || We < 0 || Wd < 0 || Wgb < 0 || Wmb < 0 || Wdb < 0
  2331. || Web < 0) {
  2332. log_debug(LD_CIRC,
  2333. "Got negative bandwidth weights. Defaulting to naive selection"
  2334. " algorithm.");
  2335. Wg = Wm = We = Wd = weight_scale;
  2336. Wgb = Wmb = Web = Wdb = weight_scale;
  2337. }
  2338. Wg /= weight_scale;
  2339. Wm /= weight_scale;
  2340. We /= weight_scale;
  2341. Wd /= weight_scale;
  2342. Wgb /= weight_scale;
  2343. Wmb /= weight_scale;
  2344. Web /= weight_scale;
  2345. Wdb /= weight_scale;
  2346. bandwidths = tor_calloc(smartlist_len(sl), sizeof(double));
  2347. // Cycle through smartlist and total the bandwidth.
  2348. static int warned_missing_bw = 0;
  2349. SMARTLIST_FOREACH_BEGIN(sl, const node_t *, node) {
  2350. int is_exit = 0, is_guard = 0, is_dir = 0, this_bw = 0;
  2351. double weight = 1;
  2352. double weight_without_guard_flag = 0; /* Used for guardfraction */
  2353. double final_weight = 0;
  2354. is_exit = node->is_exit && ! node->is_bad_exit;
  2355. is_guard = node->is_possible_guard;
  2356. is_dir = node_is_dir(node);
  2357. if (node->rs) {
  2358. if (!node->rs->has_bandwidth) {
  2359. /* This should never happen, unless all the authorities downgrade
  2360. * to 0.2.0 or rogue routerstatuses get inserted into our consensus. */
  2361. if (! warned_missing_bw) {
  2362. log_warn(LD_BUG,
  2363. "Consensus is missing some bandwidths. Using a naive "
  2364. "router selection algorithm");
  2365. warned_missing_bw = 1;
  2366. }
  2367. this_bw = 30000; /* Chosen arbitrarily */
  2368. } else {
  2369. this_bw = kb_to_bytes(node->rs->bandwidth_kb);
  2370. }
  2371. } else if (node->ri) {
  2372. /* bridge or other descriptor not in our consensus */
  2373. this_bw = bridge_get_advertised_bandwidth_bounded(node->ri);
  2374. } else {
  2375. /* We can't use this one. */
  2376. continue;
  2377. }
  2378. if (is_guard && is_exit) {
  2379. weight = (is_dir ? Wdb*Wd : Wd);
  2380. weight_without_guard_flag = (is_dir ? Web*We : We);
  2381. } else if (is_guard) {
  2382. weight = (is_dir ? Wgb*Wg : Wg);
  2383. weight_without_guard_flag = (is_dir ? Wmb*Wm : Wm);
  2384. } else if (is_exit) {
  2385. weight = (is_dir ? Web*We : We);
  2386. } else { // middle
  2387. weight = (is_dir ? Wmb*Wm : Wm);
  2388. }
  2389. /* These should be impossible; but overflows here would be bad, so let's
  2390. * make sure. */
  2391. if (this_bw < 0)
  2392. this_bw = 0;
  2393. if (weight < 0.0)
  2394. weight = 0.0;
  2395. if (weight_without_guard_flag < 0.0)
  2396. weight_without_guard_flag = 0.0;
  2397. /* If guardfraction information is available in the consensus, we
  2398. * want to calculate this router's bandwidth according to its
  2399. * guardfraction. Quoting from proposal236:
  2400. *
  2401. * Let Wpf denote the weight from the 'bandwidth-weights' line a
  2402. * client would apply to N for position p if it had the guard
  2403. * flag, Wpn the weight if it did not have the guard flag, and B the
  2404. * measured bandwidth of N in the consensus. Then instead of choosing
  2405. * N for position p proportionally to Wpf*B or Wpn*B, clients should
  2406. * choose N proportionally to F*Wpf*B + (1-F)*Wpn*B.
  2407. */
  2408. if (node->rs && node->rs->has_guardfraction && rule != WEIGHT_FOR_GUARD) {
  2409. /* XXX The assert should actually check for is_guard. However,
  2410. * that crashes dirauths because of #13297. This should be
  2411. * equivalent: */
  2412. tor_assert(node->rs->is_possible_guard);
  2413. guard_get_guardfraction_bandwidth(&guardfraction_bw,
  2414. this_bw,
  2415. node->rs->guardfraction_percentage);
  2416. /* Calculate final_weight = F*Wpf*B + (1-F)*Wpn*B */
  2417. final_weight =
  2418. guardfraction_bw.guard_bw * weight +
  2419. guardfraction_bw.non_guard_bw * weight_without_guard_flag;
  2420. log_debug(LD_GENERAL, "%s: Guardfraction weight %f instead of %f (%s)",
  2421. node->rs->nickname, final_weight, weight*this_bw,
  2422. bandwidth_weight_rule_to_string(rule));
  2423. } else { /* no guardfraction information. calculate the weight normally. */
  2424. final_weight = weight*this_bw;
  2425. }
  2426. bandwidths[node_sl_idx] = final_weight;
  2427. total_bandwidth += final_weight;
  2428. } SMARTLIST_FOREACH_END(node);
  2429. log_debug(LD_CIRC, "Generated weighted bandwidths for rule %s based "
  2430. "on weights "
  2431. "Wg=%f Wm=%f We=%f Wd=%f with total bw %f",
  2432. bandwidth_weight_rule_to_string(rule),
  2433. Wg, Wm, We, Wd, total_bandwidth);
  2434. *bandwidths_out = bandwidths;
  2435. if (total_bandwidth_out) {
  2436. *total_bandwidth_out = total_bandwidth;
  2437. }
  2438. return 0;
  2439. }
  2440. /** For all nodes in <b>sl</b>, return the fraction of those nodes, weighted
  2441. * by their weighted bandwidths with rule <b>rule</b>, for which we have
  2442. * descriptors. */
  2443. double
  2444. frac_nodes_with_descriptors(const smartlist_t *sl,
  2445. bandwidth_weight_rule_t rule)
  2446. {
  2447. double *bandwidths = NULL;
  2448. double total, present;
  2449. if (smartlist_len(sl) == 0)
  2450. return 0.0;
  2451. if (compute_weighted_bandwidths(sl, rule, &bandwidths, &total) < 0 ||
  2452. total <= 0.0) {
  2453. int n_with_descs = 0;
  2454. SMARTLIST_FOREACH(sl, const node_t *, node, {
  2455. if (node_has_any_descriptor(node))
  2456. n_with_descs++;
  2457. });
  2458. return ((double)n_with_descs) / smartlist_len(sl);
  2459. }
  2460. present = 0.0;
  2461. SMARTLIST_FOREACH_BEGIN(sl, const node_t *, node) {
  2462. if (node_has_any_descriptor(node))
  2463. present += bandwidths[node_sl_idx];
  2464. } SMARTLIST_FOREACH_END(node);
  2465. tor_free(bandwidths);
  2466. return present / total;
  2467. }
  2468. /** Choose a random element of status list <b>sl</b>, weighted by
  2469. * the advertised bandwidth of each node */
  2470. const node_t *
  2471. node_sl_choose_by_bandwidth(const smartlist_t *sl,
  2472. bandwidth_weight_rule_t rule)
  2473. { /*XXXX MOVE */
  2474. return smartlist_choose_node_by_bandwidth_weights(sl, rule);
  2475. }
  2476. /** Return a random running node from the nodelist. Never
  2477. * pick a node that is in
  2478. * <b>excludedsmartlist</b>, or which matches <b>excludedset</b>,
  2479. * even if they are the only nodes available.
  2480. * If <b>CRN_NEED_UPTIME</b> is set in flags and any router has more than
  2481. * a minimum uptime, return one of those.
  2482. * If <b>CRN_NEED_CAPACITY</b> is set in flags, weight your choice by the
  2483. * advertised capacity of each router.
  2484. * If <b>CRN_NEED_GUARD</b> is set in flags, consider only Guard routers.
  2485. * If <b>CRN_WEIGHT_AS_EXIT</b> is set in flags, we weight bandwidths as if
  2486. * picking an exit node, otherwise we weight bandwidths for picking a relay
  2487. * node (that is, possibly discounting exit nodes).
  2488. * If <b>CRN_NEED_DESC</b> is set in flags, we only consider nodes that
  2489. * have a routerinfo or microdescriptor -- that is, enough info to be
  2490. * used to build a circuit.
  2491. * If <b>CRN_PREF_ADDR</b> is set in flags, we only consider nodes that
  2492. * have an address that is preferred by the ClientPreferIPv6ORPort setting
  2493. * (regardless of this flag, we exclude nodes that aren't allowed by the
  2494. * firewall, including ClientUseIPv4 0 and fascist_firewall_use_ipv6() == 0).
  2495. */
  2496. const node_t *
  2497. router_choose_random_node(smartlist_t *excludedsmartlist,
  2498. routerset_t *excludedset,
  2499. router_crn_flags_t flags)
  2500. { /* XXXX MOVE */
  2501. const int need_uptime = (flags & CRN_NEED_UPTIME) != 0;
  2502. const int need_capacity = (flags & CRN_NEED_CAPACITY) != 0;
  2503. const int need_guard = (flags & CRN_NEED_GUARD) != 0;
  2504. const int weight_for_exit = (flags & CRN_WEIGHT_AS_EXIT) != 0;
  2505. const int need_desc = (flags & CRN_NEED_DESC) != 0;
  2506. const int pref_addr = (flags & CRN_PREF_ADDR) != 0;
  2507. const int direct_conn = (flags & CRN_DIRECT_CONN) != 0;
  2508. const int rendezvous_v3 = (flags & CRN_RENDEZVOUS_V3) != 0;
  2509. smartlist_t *sl=smartlist_new(),
  2510. *excludednodes=smartlist_new();
  2511. const node_t *choice = NULL;
  2512. const routerinfo_t *r;
  2513. bandwidth_weight_rule_t rule;
  2514. tor_assert(!(weight_for_exit && need_guard));
  2515. rule = weight_for_exit ? WEIGHT_FOR_EXIT :
  2516. (need_guard ? WEIGHT_FOR_GUARD : WEIGHT_FOR_MID);
  2517. SMARTLIST_FOREACH_BEGIN(nodelist_get_list(), node_t *, node) {
  2518. if (node_allows_single_hop_exits(node)) {
  2519. /* Exclude relays that allow single hop exit circuits. This is an
  2520. * obsolete option since 0.2.9.2-alpha and done by default in
  2521. * 0.3.1.0-alpha. */
  2522. smartlist_add(excludednodes, node);
  2523. } else if (rendezvous_v3 &&
  2524. !node_supports_v3_rendezvous_point(node)) {
  2525. /* Exclude relays that do not support to rendezvous for a hidden service
  2526. * version 3. */
  2527. smartlist_add(excludednodes, node);
  2528. }
  2529. } SMARTLIST_FOREACH_END(node);
  2530. /* If the node_t is not found we won't be to exclude ourself but we
  2531. * won't be able to pick ourself in router_choose_random_node() so
  2532. * this is fine to at least try with our routerinfo_t object. */
  2533. if ((r = router_get_my_routerinfo()))
  2534. routerlist_add_node_and_family(excludednodes, r);
  2535. router_add_running_nodes_to_smartlist(sl, need_uptime, need_capacity,
  2536. need_guard, need_desc, pref_addr,
  2537. direct_conn);
  2538. log_debug(LD_CIRC,
  2539. "We found %d running nodes.",
  2540. smartlist_len(sl));
  2541. smartlist_subtract(sl,excludednodes);
  2542. log_debug(LD_CIRC,
  2543. "We removed %d excludednodes, leaving %d nodes.",
  2544. smartlist_len(excludednodes),
  2545. smartlist_len(sl));
  2546. if (excludedsmartlist) {
  2547. smartlist_subtract(sl,excludedsmartlist);
  2548. log_debug(LD_CIRC,
  2549. "We removed %d excludedsmartlist, leaving %d nodes.",
  2550. smartlist_len(excludedsmartlist),
  2551. smartlist_len(sl));
  2552. }
  2553. if (excludedset) {
  2554. routerset_subtract_nodes(sl,excludedset);
  2555. log_debug(LD_CIRC,
  2556. "We removed excludedset, leaving %d nodes.",
  2557. smartlist_len(sl));
  2558. }
  2559. // Always weight by bandwidth
  2560. choice = node_sl_choose_by_bandwidth(sl, rule);
  2561. smartlist_free(sl);
  2562. if (!choice && (need_uptime || need_capacity || need_guard || pref_addr)) {
  2563. /* try once more -- recurse but with fewer restrictions. */
  2564. log_info(LD_CIRC,
  2565. "We couldn't find any live%s%s%s routers; falling back "
  2566. "to list of all routers.",
  2567. need_capacity?", fast":"",
  2568. need_uptime?", stable":"",
  2569. need_guard?", guard":"");
  2570. flags &= ~ (CRN_NEED_UPTIME|CRN_NEED_CAPACITY|CRN_NEED_GUARD|
  2571. CRN_PREF_ADDR);
  2572. choice = router_choose_random_node(
  2573. excludedsmartlist, excludedset, flags);
  2574. }
  2575. smartlist_free(excludednodes);
  2576. if (!choice) {
  2577. log_warn(LD_CIRC,
  2578. "No available nodes when trying to choose node. Failing.");
  2579. }
  2580. return choice;
  2581. }
  2582. /** Helper: given an extended nickname in <b>hexdigest</b> try to decode it.
  2583. * Return 0 on success, -1 on failure. Store the result into the
  2584. * DIGEST_LEN-byte buffer at <b>digest_out</b>, the single character at
  2585. * <b>nickname_qualifier_char_out</b>, and the MAXNICKNAME_LEN+1-byte buffer
  2586. * at <b>nickname_out</b>.
  2587. *
  2588. * The recognized format is:
  2589. * HexName = Dollar? HexDigest NamePart?
  2590. * Dollar = '?'
  2591. * HexDigest = HexChar*20
  2592. * HexChar = 'a'..'f' | 'A'..'F' | '0'..'9'
  2593. * NamePart = QualChar Name
  2594. * QualChar = '=' | '~'
  2595. * Name = NameChar*(1..MAX_NICKNAME_LEN)
  2596. * NameChar = Any ASCII alphanumeric character
  2597. */
  2598. int
  2599. hex_digest_nickname_decode(const char *hexdigest,
  2600. char *digest_out,
  2601. char *nickname_qualifier_char_out,
  2602. char *nickname_out)
  2603. {
  2604. size_t len;
  2605. tor_assert(hexdigest);
  2606. if (hexdigest[0] == '$')
  2607. ++hexdigest;
  2608. len = strlen(hexdigest);
  2609. if (len < HEX_DIGEST_LEN) {
  2610. return -1;
  2611. } else if (len > HEX_DIGEST_LEN && (hexdigest[HEX_DIGEST_LEN] == '=' ||
  2612. hexdigest[HEX_DIGEST_LEN] == '~') &&
  2613. len <= HEX_DIGEST_LEN+1+MAX_NICKNAME_LEN) {
  2614. *nickname_qualifier_char_out = hexdigest[HEX_DIGEST_LEN];
  2615. strlcpy(nickname_out, hexdigest+HEX_DIGEST_LEN+1 , MAX_NICKNAME_LEN+1);
  2616. } else if (len == HEX_DIGEST_LEN) {
  2617. ;
  2618. } else {
  2619. return -1;
  2620. }
  2621. if (base16_decode(digest_out, DIGEST_LEN,
  2622. hexdigest, HEX_DIGEST_LEN) != DIGEST_LEN)
  2623. return -1;
  2624. return 0;
  2625. }
  2626. /** Helper: Return true iff the <b>identity_digest</b> and <b>nickname</b>
  2627. * combination of a router, encoded in hexadecimal, matches <b>hexdigest</b>
  2628. * (which is optionally prefixed with a single dollar sign). Return false if
  2629. * <b>hexdigest</b> is malformed, or it doesn't match. */
  2630. int
  2631. hex_digest_nickname_matches(const char *hexdigest, const char *identity_digest,
  2632. const char *nickname)
  2633. {
  2634. char digest[DIGEST_LEN];
  2635. char nn_char='\0';
  2636. char nn_buf[MAX_NICKNAME_LEN+1];
  2637. if (hex_digest_nickname_decode(hexdigest, digest, &nn_char, nn_buf) == -1)
  2638. return 0;
  2639. if (nn_char == '=') {
  2640. return 0;
  2641. }
  2642. if (nn_char == '~') {
  2643. if (!nickname) // XXX This seems wrong. -NM
  2644. return 0;
  2645. if (strcasecmp(nn_buf, nickname))
  2646. return 0;
  2647. }
  2648. return tor_memeq(digest, identity_digest, DIGEST_LEN);
  2649. }
  2650. /** Return true iff <b>digest</b> is the digest of the identity key of a
  2651. * trusted directory matching at least one bit of <b>type</b>. If <b>type</b>
  2652. * is zero (NO_DIRINFO), or ALL_DIRINFO, any authority is okay. */
  2653. int
  2654. router_digest_is_trusted_dir_type(const char *digest, dirinfo_type_t type)
  2655. {
  2656. if (!trusted_dir_servers)
  2657. return 0;
  2658. if (authdir_mode(get_options()) && router_digest_is_me(digest))
  2659. return 1;
  2660. SMARTLIST_FOREACH(trusted_dir_servers, dir_server_t *, ent,
  2661. if (tor_memeq(digest, ent->digest, DIGEST_LEN)) {
  2662. return (!type) || ((type & ent->type) != 0);
  2663. });
  2664. return 0;
  2665. }
  2666. /** If hexdigest is correctly formed, base16_decode it into
  2667. * digest, which must have DIGEST_LEN space in it.
  2668. * Return 0 on success, -1 on failure.
  2669. */
  2670. int
  2671. hexdigest_to_digest(const char *hexdigest, char *digest)
  2672. {
  2673. if (hexdigest[0]=='$')
  2674. ++hexdigest;
  2675. if (strlen(hexdigest) < HEX_DIGEST_LEN ||
  2676. base16_decode(digest,DIGEST_LEN,hexdigest,HEX_DIGEST_LEN) != DIGEST_LEN)
  2677. return -1;
  2678. return 0;
  2679. }
  2680. /** As router_get_by_id_digest,but return a pointer that you're allowed to
  2681. * modify */
  2682. routerinfo_t *
  2683. router_get_mutable_by_digest(const char *digest)
  2684. {
  2685. tor_assert(digest);
  2686. if (!routerlist) return NULL;
  2687. // routerlist_assert_ok(routerlist);
  2688. return rimap_get(routerlist->identity_map, digest);
  2689. }
  2690. /** Return the router in our routerlist whose 20-byte key digest
  2691. * is <b>digest</b>. Return NULL if no such router is known. */
  2692. const routerinfo_t *
  2693. router_get_by_id_digest(const char *digest)
  2694. {
  2695. return router_get_mutable_by_digest(digest);
  2696. }
  2697. /** Return the router in our routerlist whose 20-byte descriptor
  2698. * is <b>digest</b>. Return NULL if no such router is known. */
  2699. signed_descriptor_t *
  2700. router_get_by_descriptor_digest(const char *digest)
  2701. {
  2702. tor_assert(digest);
  2703. if (!routerlist) return NULL;
  2704. return sdmap_get(routerlist->desc_digest_map, digest);
  2705. }
  2706. /** Return the signed descriptor for the router in our routerlist whose
  2707. * 20-byte extra-info digest is <b>digest</b>. Return NULL if no such router
  2708. * is known. */
  2709. MOCK_IMPL(signed_descriptor_t *,
  2710. router_get_by_extrainfo_digest,(const char *digest))
  2711. {
  2712. tor_assert(digest);
  2713. if (!routerlist) return NULL;
  2714. return sdmap_get(routerlist->desc_by_eid_map, digest);
  2715. }
  2716. /** Return the signed descriptor for the extrainfo_t in our routerlist whose
  2717. * extra-info-digest is <b>digest</b>. Return NULL if no such extra-info
  2718. * document is known. */
  2719. MOCK_IMPL(signed_descriptor_t *,
  2720. extrainfo_get_by_descriptor_digest,(const char *digest))
  2721. {
  2722. extrainfo_t *ei;
  2723. tor_assert(digest);
  2724. if (!routerlist) return NULL;
  2725. ei = eimap_get(routerlist->extra_info_map, digest);
  2726. return ei ? &ei->cache_info : NULL;
  2727. }
  2728. /** Return a pointer to the signed textual representation of a descriptor.
  2729. * The returned string is not guaranteed to be NUL-terminated: the string's
  2730. * length will be in desc-\>signed_descriptor_len.
  2731. *
  2732. * If <b>with_annotations</b> is set, the returned string will include
  2733. * the annotations
  2734. * (if any) preceding the descriptor. This will increase the length of the
  2735. * string by desc-\>annotations_len.
  2736. *
  2737. * The caller must not free the string returned.
  2738. */
  2739. static const char *
  2740. signed_descriptor_get_body_impl(const signed_descriptor_t *desc,
  2741. int with_annotations)
  2742. {
  2743. const char *r = NULL;
  2744. size_t len = desc->signed_descriptor_len;
  2745. off_t offset = desc->saved_offset;
  2746. if (with_annotations)
  2747. len += desc->annotations_len;
  2748. else
  2749. offset += desc->annotations_len;
  2750. tor_assert(len > 32);
  2751. if (desc->saved_location == SAVED_IN_CACHE && routerlist) {
  2752. desc_store_t *store = desc_get_store(router_get_routerlist(), desc);
  2753. if (store && store->mmap) {
  2754. tor_assert(desc->saved_offset + len <= store->mmap->size);
  2755. r = store->mmap->data + offset;
  2756. } else if (store) {
  2757. log_err(LD_DIR, "We couldn't read a descriptor that is supposedly "
  2758. "mmaped in our cache. Is another process running in our data "
  2759. "directory? Exiting.");
  2760. exit(1); // XXXX bad exit: should recover.
  2761. }
  2762. }
  2763. if (!r) /* no mmap, or not in cache. */
  2764. r = desc->signed_descriptor_body +
  2765. (with_annotations ? 0 : desc->annotations_len);
  2766. tor_assert(r);
  2767. if (!with_annotations) {
  2768. if (fast_memcmp("router ", r, 7) && fast_memcmp("extra-info ", r, 11)) {
  2769. char *cp = tor_strndup(r, 64);
  2770. log_err(LD_DIR, "descriptor at %p begins with unexpected string %s. "
  2771. "Is another process running in our data directory? Exiting.",
  2772. desc, escaped(cp));
  2773. exit(1); // XXXX bad exit: should recover.
  2774. }
  2775. }
  2776. return r;
  2777. }
  2778. /** Return a pointer to the signed textual representation of a descriptor.
  2779. * The returned string is not guaranteed to be NUL-terminated: the string's
  2780. * length will be in desc-\>signed_descriptor_len.
  2781. *
  2782. * The caller must not free the string returned.
  2783. */
  2784. const char *
  2785. signed_descriptor_get_body(const signed_descriptor_t *desc)
  2786. {
  2787. return signed_descriptor_get_body_impl(desc, 0);
  2788. }
  2789. /** As signed_descriptor_get_body(), but points to the beginning of the
  2790. * annotations section rather than the beginning of the descriptor. */
  2791. const char *
  2792. signed_descriptor_get_annotations(const signed_descriptor_t *desc)
  2793. {
  2794. return signed_descriptor_get_body_impl(desc, 1);
  2795. }
  2796. /** Return the current list of all known routers. */
  2797. routerlist_t *
  2798. router_get_routerlist(void)
  2799. {
  2800. if (PREDICT_UNLIKELY(!routerlist)) {
  2801. routerlist = tor_malloc_zero(sizeof(routerlist_t));
  2802. routerlist->routers = smartlist_new();
  2803. routerlist->old_routers = smartlist_new();
  2804. routerlist->identity_map = rimap_new();
  2805. routerlist->desc_digest_map = sdmap_new();
  2806. routerlist->desc_by_eid_map = sdmap_new();
  2807. routerlist->extra_info_map = eimap_new();
  2808. routerlist->desc_store.fname_base = "cached-descriptors";
  2809. routerlist->extrainfo_store.fname_base = "cached-extrainfo";
  2810. routerlist->desc_store.type = ROUTER_STORE;
  2811. routerlist->extrainfo_store.type = EXTRAINFO_STORE;
  2812. routerlist->desc_store.description = "router descriptors";
  2813. routerlist->extrainfo_store.description = "extra-info documents";
  2814. }
  2815. return routerlist;
  2816. }
  2817. /** Free all storage held by <b>router</b>. */
  2818. void
  2819. routerinfo_free_(routerinfo_t *router)
  2820. {
  2821. if (!router)
  2822. return;
  2823. tor_free(router->cache_info.signed_descriptor_body);
  2824. tor_free(router->nickname);
  2825. tor_free(router->platform);
  2826. tor_free(router->protocol_list);
  2827. tor_free(router->contact_info);
  2828. if (router->onion_pkey)
  2829. crypto_pk_free(router->onion_pkey);
  2830. tor_free(router->onion_curve25519_pkey);
  2831. if (router->identity_pkey)
  2832. crypto_pk_free(router->identity_pkey);
  2833. tor_cert_free(router->cache_info.signing_key_cert);
  2834. if (router->declared_family) {
  2835. SMARTLIST_FOREACH(router->declared_family, char *, s, tor_free(s));
  2836. smartlist_free(router->declared_family);
  2837. }
  2838. addr_policy_list_free(router->exit_policy);
  2839. short_policy_free(router->ipv6_exit_policy);
  2840. memset(router, 77, sizeof(routerinfo_t));
  2841. tor_free(router);
  2842. }
  2843. /** Release all storage held by <b>extrainfo</b> */
  2844. void
  2845. extrainfo_free_(extrainfo_t *extrainfo)
  2846. {
  2847. if (!extrainfo)
  2848. return;
  2849. tor_cert_free(extrainfo->cache_info.signing_key_cert);
  2850. tor_free(extrainfo->cache_info.signed_descriptor_body);
  2851. tor_free(extrainfo->pending_sig);
  2852. memset(extrainfo, 88, sizeof(extrainfo_t)); /* debug bad memory usage */
  2853. tor_free(extrainfo);
  2854. }
  2855. #define signed_descriptor_free(val) \
  2856. FREE_AND_NULL(signed_descriptor_t, signed_descriptor_free_, (val))
  2857. /** Release storage held by <b>sd</b>. */
  2858. static void
  2859. signed_descriptor_free_(signed_descriptor_t *sd)
  2860. {
  2861. if (!sd)
  2862. return;
  2863. tor_free(sd->signed_descriptor_body);
  2864. tor_cert_free(sd->signing_key_cert);
  2865. memset(sd, 99, sizeof(signed_descriptor_t)); /* Debug bad mem usage */
  2866. tor_free(sd);
  2867. }
  2868. /** Reset the given signed descriptor <b>sd</b> by freeing the allocated
  2869. * memory inside the object and by zeroing its content. */
  2870. static void
  2871. signed_descriptor_reset(signed_descriptor_t *sd)
  2872. {
  2873. tor_assert(sd);
  2874. tor_free(sd->signed_descriptor_body);
  2875. tor_cert_free(sd->signing_key_cert);
  2876. memset(sd, 0, sizeof(*sd));
  2877. }
  2878. /** Copy src into dest, and steal all references inside src so that when
  2879. * we free src, we don't mess up dest. */
  2880. static void
  2881. signed_descriptor_move(signed_descriptor_t *dest,
  2882. signed_descriptor_t *src)
  2883. {
  2884. tor_assert(dest != src);
  2885. /* Cleanup destination object before overwriting it.*/
  2886. signed_descriptor_reset(dest);
  2887. memcpy(dest, src, sizeof(signed_descriptor_t));
  2888. src->signed_descriptor_body = NULL;
  2889. src->signing_key_cert = NULL;
  2890. dest->routerlist_index = -1;
  2891. }
  2892. /** Extract a signed_descriptor_t from a general routerinfo, and free the
  2893. * routerinfo.
  2894. */
  2895. static signed_descriptor_t *
  2896. signed_descriptor_from_routerinfo(routerinfo_t *ri)
  2897. {
  2898. signed_descriptor_t *sd;
  2899. tor_assert(ri->purpose == ROUTER_PURPOSE_GENERAL);
  2900. sd = tor_malloc_zero(sizeof(signed_descriptor_t));
  2901. signed_descriptor_move(sd, &ri->cache_info);
  2902. routerinfo_free(ri);
  2903. return sd;
  2904. }
  2905. /** Helper: free the storage held by the extrainfo_t in <b>e</b>. */
  2906. static void
  2907. extrainfo_free_void(void *e)
  2908. {
  2909. extrainfo_free_(e);
  2910. }
  2911. /** Free all storage held by a routerlist <b>rl</b>. */
  2912. void
  2913. routerlist_free_(routerlist_t *rl)
  2914. {
  2915. if (!rl)
  2916. return;
  2917. rimap_free(rl->identity_map, NULL);
  2918. sdmap_free(rl->desc_digest_map, NULL);
  2919. sdmap_free(rl->desc_by_eid_map, NULL);
  2920. eimap_free(rl->extra_info_map, extrainfo_free_void);
  2921. SMARTLIST_FOREACH(rl->routers, routerinfo_t *, r,
  2922. routerinfo_free(r));
  2923. SMARTLIST_FOREACH(rl->old_routers, signed_descriptor_t *, sd,
  2924. signed_descriptor_free(sd));
  2925. smartlist_free(rl->routers);
  2926. smartlist_free(rl->old_routers);
  2927. if (rl->desc_store.mmap) {
  2928. int res = tor_munmap_file(routerlist->desc_store.mmap);
  2929. if (res != 0) {
  2930. log_warn(LD_FS, "Failed to munmap routerlist->desc_store.mmap");
  2931. }
  2932. }
  2933. if (rl->extrainfo_store.mmap) {
  2934. int res = tor_munmap_file(routerlist->extrainfo_store.mmap);
  2935. if (res != 0) {
  2936. log_warn(LD_FS, "Failed to munmap routerlist->extrainfo_store.mmap");
  2937. }
  2938. }
  2939. tor_free(rl);
  2940. router_dir_info_changed();
  2941. }
  2942. /** Log information about how much memory is being used for routerlist,
  2943. * at log level <b>severity</b>. */
  2944. void
  2945. dump_routerlist_mem_usage(int severity)
  2946. {
  2947. uint64_t livedescs = 0;
  2948. uint64_t olddescs = 0;
  2949. if (!routerlist)
  2950. return;
  2951. SMARTLIST_FOREACH(routerlist->routers, routerinfo_t *, r,
  2952. livedescs += r->cache_info.signed_descriptor_len);
  2953. SMARTLIST_FOREACH(routerlist->old_routers, signed_descriptor_t *, sd,
  2954. olddescs += sd->signed_descriptor_len);
  2955. tor_log(severity, LD_DIR,
  2956. "In %d live descriptors: "U64_FORMAT" bytes. "
  2957. "In %d old descriptors: "U64_FORMAT" bytes.",
  2958. smartlist_len(routerlist->routers), U64_PRINTF_ARG(livedescs),
  2959. smartlist_len(routerlist->old_routers), U64_PRINTF_ARG(olddescs));
  2960. }
  2961. /** Debugging helper: If <b>idx</b> is nonnegative, assert that <b>ri</b> is
  2962. * in <b>sl</b> at position <b>idx</b>. Otherwise, search <b>sl</b> for
  2963. * <b>ri</b>. Return the index of <b>ri</b> in <b>sl</b>, or -1 if <b>ri</b>
  2964. * is not in <b>sl</b>. */
  2965. static inline int
  2966. routerlist_find_elt_(smartlist_t *sl, void *ri, int idx)
  2967. {
  2968. if (idx < 0) {
  2969. idx = -1;
  2970. SMARTLIST_FOREACH(sl, routerinfo_t *, r,
  2971. if (r == ri) {
  2972. idx = r_sl_idx;
  2973. break;
  2974. });
  2975. } else {
  2976. tor_assert(idx < smartlist_len(sl));
  2977. tor_assert(smartlist_get(sl, idx) == ri);
  2978. };
  2979. return idx;
  2980. }
  2981. /** Insert an item <b>ri</b> into the routerlist <b>rl</b>, updating indices
  2982. * as needed. There must be no previous member of <b>rl</b> with the same
  2983. * identity digest as <b>ri</b>: If there is, call routerlist_replace
  2984. * instead.
  2985. */
  2986. static void
  2987. routerlist_insert(routerlist_t *rl, routerinfo_t *ri)
  2988. {
  2989. routerinfo_t *ri_old;
  2990. signed_descriptor_t *sd_old;
  2991. {
  2992. const routerinfo_t *ri_generated = router_get_my_routerinfo();
  2993. tor_assert(ri_generated != ri);
  2994. }
  2995. tor_assert(ri->cache_info.routerlist_index == -1);
  2996. ri_old = rimap_set(rl->identity_map, ri->cache_info.identity_digest, ri);
  2997. tor_assert(!ri_old);
  2998. sd_old = sdmap_set(rl->desc_digest_map,
  2999. ri->cache_info.signed_descriptor_digest,
  3000. &(ri->cache_info));
  3001. if (sd_old) {
  3002. int idx = sd_old->routerlist_index;
  3003. sd_old->routerlist_index = -1;
  3004. smartlist_del(rl->old_routers, idx);
  3005. if (idx < smartlist_len(rl->old_routers)) {
  3006. signed_descriptor_t *d = smartlist_get(rl->old_routers, idx);
  3007. d->routerlist_index = idx;
  3008. }
  3009. rl->desc_store.bytes_dropped += sd_old->signed_descriptor_len;
  3010. sdmap_remove(rl->desc_by_eid_map, sd_old->extra_info_digest);
  3011. signed_descriptor_free(sd_old);
  3012. }
  3013. if (!tor_digest_is_zero(ri->cache_info.extra_info_digest))
  3014. sdmap_set(rl->desc_by_eid_map, ri->cache_info.extra_info_digest,
  3015. &ri->cache_info);
  3016. smartlist_add(rl->routers, ri);
  3017. ri->cache_info.routerlist_index = smartlist_len(rl->routers) - 1;
  3018. nodelist_set_routerinfo(ri, NULL);
  3019. router_dir_info_changed();
  3020. #ifdef DEBUG_ROUTERLIST
  3021. routerlist_assert_ok(rl);
  3022. #endif
  3023. }
  3024. /** Adds the extrainfo_t <b>ei</b> to the routerlist <b>rl</b>, if there is a
  3025. * corresponding router in rl-\>routers or rl-\>old_routers. Return the status
  3026. * of inserting <b>ei</b>. Free <b>ei</b> if it isn't inserted. */
  3027. MOCK_IMPL(STATIC was_router_added_t,
  3028. extrainfo_insert,(routerlist_t *rl, extrainfo_t *ei, int warn_if_incompatible))
  3029. {
  3030. was_router_added_t r;
  3031. const char *compatibility_error_msg;
  3032. routerinfo_t *ri = rimap_get(rl->identity_map,
  3033. ei->cache_info.identity_digest);
  3034. signed_descriptor_t *sd =
  3035. sdmap_get(rl->desc_by_eid_map, ei->cache_info.signed_descriptor_digest);
  3036. extrainfo_t *ei_tmp;
  3037. const int severity = warn_if_incompatible ? LOG_WARN : LOG_INFO;
  3038. {
  3039. extrainfo_t *ei_generated = router_get_my_extrainfo();
  3040. tor_assert(ei_generated != ei);
  3041. }
  3042. if (!ri) {
  3043. /* This router is unknown; we can't even verify the signature. Give up.*/
  3044. r = ROUTER_NOT_IN_CONSENSUS;
  3045. goto done;
  3046. }
  3047. if (! sd) {
  3048. /* The extrainfo router doesn't have a known routerdesc to attach it to.
  3049. * This just won't work. */;
  3050. static ratelim_t no_sd_ratelim = RATELIM_INIT(1800);
  3051. r = ROUTER_BAD_EI;
  3052. log_fn_ratelim(&no_sd_ratelim, severity, LD_BUG,
  3053. "No entry found in extrainfo map.");
  3054. goto done;
  3055. }
  3056. if (tor_memneq(ei->cache_info.signed_descriptor_digest,
  3057. sd->extra_info_digest, DIGEST_LEN)) {
  3058. static ratelim_t digest_mismatch_ratelim = RATELIM_INIT(1800);
  3059. /* The sd we got from the map doesn't match the digest we used to look
  3060. * it up. This makes no sense. */
  3061. r = ROUTER_BAD_EI;
  3062. log_fn_ratelim(&digest_mismatch_ratelim, severity, LD_BUG,
  3063. "Mismatch in digest in extrainfo map.");
  3064. goto done;
  3065. }
  3066. if (routerinfo_incompatible_with_extrainfo(ri->identity_pkey, ei, sd,
  3067. &compatibility_error_msg)) {
  3068. char d1[HEX_DIGEST_LEN+1], d2[HEX_DIGEST_LEN+1];
  3069. r = (ri->cache_info.extrainfo_is_bogus) ?
  3070. ROUTER_BAD_EI : ROUTER_NOT_IN_CONSENSUS;
  3071. base16_encode(d1, sizeof(d1), ri->cache_info.identity_digest, DIGEST_LEN);
  3072. base16_encode(d2, sizeof(d2), ei->cache_info.identity_digest, DIGEST_LEN);
  3073. log_fn(severity,LD_DIR,
  3074. "router info incompatible with extra info (ri id: %s, ei id %s, "
  3075. "reason: %s)", d1, d2, compatibility_error_msg);
  3076. goto done;
  3077. }
  3078. /* Okay, if we make it here, we definitely have a router corresponding to
  3079. * this extrainfo. */
  3080. ei_tmp = eimap_set(rl->extra_info_map,
  3081. ei->cache_info.signed_descriptor_digest,
  3082. ei);
  3083. r = ROUTER_ADDED_SUCCESSFULLY;
  3084. if (ei_tmp) {
  3085. rl->extrainfo_store.bytes_dropped +=
  3086. ei_tmp->cache_info.signed_descriptor_len;
  3087. extrainfo_free(ei_tmp);
  3088. }
  3089. done:
  3090. if (r != ROUTER_ADDED_SUCCESSFULLY)
  3091. extrainfo_free(ei);
  3092. #ifdef DEBUG_ROUTERLIST
  3093. routerlist_assert_ok(rl);
  3094. #endif
  3095. return r;
  3096. }
  3097. #define should_cache_old_descriptors() \
  3098. directory_caches_dir_info(get_options())
  3099. /** If we're a directory cache and routerlist <b>rl</b> doesn't have
  3100. * a copy of router <b>ri</b> yet, add it to the list of old (not
  3101. * recommended but still served) descriptors. Else free it. */
  3102. static void
  3103. routerlist_insert_old(routerlist_t *rl, routerinfo_t *ri)
  3104. {
  3105. {
  3106. const routerinfo_t *ri_generated = router_get_my_routerinfo();
  3107. tor_assert(ri_generated != ri);
  3108. }
  3109. tor_assert(ri->cache_info.routerlist_index == -1);
  3110. if (should_cache_old_descriptors() &&
  3111. ri->purpose == ROUTER_PURPOSE_GENERAL &&
  3112. !sdmap_get(rl->desc_digest_map,
  3113. ri->cache_info.signed_descriptor_digest)) {
  3114. signed_descriptor_t *sd = signed_descriptor_from_routerinfo(ri);
  3115. sdmap_set(rl->desc_digest_map, sd->signed_descriptor_digest, sd);
  3116. smartlist_add(rl->old_routers, sd);
  3117. sd->routerlist_index = smartlist_len(rl->old_routers)-1;
  3118. if (!tor_digest_is_zero(sd->extra_info_digest))
  3119. sdmap_set(rl->desc_by_eid_map, sd->extra_info_digest, sd);
  3120. } else {
  3121. routerinfo_free(ri);
  3122. }
  3123. #ifdef DEBUG_ROUTERLIST
  3124. routerlist_assert_ok(rl);
  3125. #endif
  3126. }
  3127. /** Remove an item <b>ri</b> from the routerlist <b>rl</b>, updating indices
  3128. * as needed. If <b>idx</b> is nonnegative and smartlist_get(rl-&gt;routers,
  3129. * idx) == ri, we don't need to do a linear search over the list to decide
  3130. * which to remove. We fill the gap in rl-&gt;routers with a later element in
  3131. * the list, if any exists. <b>ri</b> is freed.
  3132. *
  3133. * If <b>make_old</b> is true, instead of deleting the router, we try adding
  3134. * it to rl-&gt;old_routers. */
  3135. void
  3136. routerlist_remove(routerlist_t *rl, routerinfo_t *ri, int make_old, time_t now)
  3137. {
  3138. routerinfo_t *ri_tmp;
  3139. extrainfo_t *ei_tmp;
  3140. int idx = ri->cache_info.routerlist_index;
  3141. tor_assert(0 <= idx && idx < smartlist_len(rl->routers));
  3142. tor_assert(smartlist_get(rl->routers, idx) == ri);
  3143. nodelist_remove_routerinfo(ri);
  3144. /* make sure the rephist module knows that it's not running */
  3145. rep_hist_note_router_unreachable(ri->cache_info.identity_digest, now);
  3146. ri->cache_info.routerlist_index = -1;
  3147. smartlist_del(rl->routers, idx);
  3148. if (idx < smartlist_len(rl->routers)) {
  3149. routerinfo_t *r = smartlist_get(rl->routers, idx);
  3150. r->cache_info.routerlist_index = idx;
  3151. }
  3152. ri_tmp = rimap_remove(rl->identity_map, ri->cache_info.identity_digest);
  3153. router_dir_info_changed();
  3154. tor_assert(ri_tmp == ri);
  3155. if (make_old && should_cache_old_descriptors() &&
  3156. ri->purpose == ROUTER_PURPOSE_GENERAL) {
  3157. signed_descriptor_t *sd;
  3158. sd = signed_descriptor_from_routerinfo(ri);
  3159. smartlist_add(rl->old_routers, sd);
  3160. sd->routerlist_index = smartlist_len(rl->old_routers)-1;
  3161. sdmap_set(rl->desc_digest_map, sd->signed_descriptor_digest, sd);
  3162. if (!tor_digest_is_zero(sd->extra_info_digest))
  3163. sdmap_set(rl->desc_by_eid_map, sd->extra_info_digest, sd);
  3164. } else {
  3165. signed_descriptor_t *sd_tmp;
  3166. sd_tmp = sdmap_remove(rl->desc_digest_map,
  3167. ri->cache_info.signed_descriptor_digest);
  3168. tor_assert(sd_tmp == &(ri->cache_info));
  3169. rl->desc_store.bytes_dropped += ri->cache_info.signed_descriptor_len;
  3170. ei_tmp = eimap_remove(rl->extra_info_map,
  3171. ri->cache_info.extra_info_digest);
  3172. if (ei_tmp) {
  3173. rl->extrainfo_store.bytes_dropped +=
  3174. ei_tmp->cache_info.signed_descriptor_len;
  3175. extrainfo_free(ei_tmp);
  3176. }
  3177. if (!tor_digest_is_zero(ri->cache_info.extra_info_digest))
  3178. sdmap_remove(rl->desc_by_eid_map, ri->cache_info.extra_info_digest);
  3179. routerinfo_free(ri);
  3180. }
  3181. #ifdef DEBUG_ROUTERLIST
  3182. routerlist_assert_ok(rl);
  3183. #endif
  3184. }
  3185. /** Remove a signed_descriptor_t <b>sd</b> from <b>rl</b>-\>old_routers, and
  3186. * adjust <b>rl</b> as appropriate. <b>idx</b> is -1, or the index of
  3187. * <b>sd</b>. */
  3188. static void
  3189. routerlist_remove_old(routerlist_t *rl, signed_descriptor_t *sd, int idx)
  3190. {
  3191. signed_descriptor_t *sd_tmp;
  3192. extrainfo_t *ei_tmp;
  3193. desc_store_t *store;
  3194. if (idx == -1) {
  3195. idx = sd->routerlist_index;
  3196. }
  3197. tor_assert(0 <= idx && idx < smartlist_len(rl->old_routers));
  3198. /* XXXX edmanm's bridge relay triggered the following assert while
  3199. * running 0.2.0.12-alpha. If anybody triggers this again, see if we
  3200. * can get a backtrace. */
  3201. tor_assert(smartlist_get(rl->old_routers, idx) == sd);
  3202. tor_assert(idx == sd->routerlist_index);
  3203. sd->routerlist_index = -1;
  3204. smartlist_del(rl->old_routers, idx);
  3205. if (idx < smartlist_len(rl->old_routers)) {
  3206. signed_descriptor_t *d = smartlist_get(rl->old_routers, idx);
  3207. d->routerlist_index = idx;
  3208. }
  3209. sd_tmp = sdmap_remove(rl->desc_digest_map,
  3210. sd->signed_descriptor_digest);
  3211. tor_assert(sd_tmp == sd);
  3212. store = desc_get_store(rl, sd);
  3213. if (store)
  3214. store->bytes_dropped += sd->signed_descriptor_len;
  3215. ei_tmp = eimap_remove(rl->extra_info_map,
  3216. sd->extra_info_digest);
  3217. if (ei_tmp) {
  3218. rl->extrainfo_store.bytes_dropped +=
  3219. ei_tmp->cache_info.signed_descriptor_len;
  3220. extrainfo_free(ei_tmp);
  3221. }
  3222. if (!tor_digest_is_zero(sd->extra_info_digest))
  3223. sdmap_remove(rl->desc_by_eid_map, sd->extra_info_digest);
  3224. signed_descriptor_free(sd);
  3225. #ifdef DEBUG_ROUTERLIST
  3226. routerlist_assert_ok(rl);
  3227. #endif
  3228. }
  3229. /** Remove <b>ri_old</b> from the routerlist <b>rl</b>, and replace it with
  3230. * <b>ri_new</b>, updating all index info. If <b>idx</b> is nonnegative and
  3231. * smartlist_get(rl-&gt;routers, idx) == ri, we don't need to do a linear
  3232. * search over the list to decide which to remove. We put ri_new in the same
  3233. * index as ri_old, if possible. ri is freed as appropriate.
  3234. *
  3235. * If should_cache_descriptors() is true, instead of deleting the router,
  3236. * we add it to rl-&gt;old_routers. */
  3237. static void
  3238. routerlist_replace(routerlist_t *rl, routerinfo_t *ri_old,
  3239. routerinfo_t *ri_new)
  3240. {
  3241. int idx;
  3242. int same_descriptors;
  3243. routerinfo_t *ri_tmp;
  3244. extrainfo_t *ei_tmp;
  3245. {
  3246. const routerinfo_t *ri_generated = router_get_my_routerinfo();
  3247. tor_assert(ri_generated != ri_new);
  3248. }
  3249. tor_assert(ri_old != ri_new);
  3250. tor_assert(ri_new->cache_info.routerlist_index == -1);
  3251. idx = ri_old->cache_info.routerlist_index;
  3252. tor_assert(0 <= idx && idx < smartlist_len(rl->routers));
  3253. tor_assert(smartlist_get(rl->routers, idx) == ri_old);
  3254. {
  3255. routerinfo_t *ri_old_tmp=NULL;
  3256. nodelist_set_routerinfo(ri_new, &ri_old_tmp);
  3257. tor_assert(ri_old == ri_old_tmp);
  3258. }
  3259. router_dir_info_changed();
  3260. if (idx >= 0) {
  3261. smartlist_set(rl->routers, idx, ri_new);
  3262. ri_old->cache_info.routerlist_index = -1;
  3263. ri_new->cache_info.routerlist_index = idx;
  3264. /* Check that ri_old is not in rl->routers anymore: */
  3265. tor_assert( routerlist_find_elt_(rl->routers, ri_old, -1) == -1 );
  3266. } else {
  3267. log_warn(LD_BUG, "Appending entry from routerlist_replace.");
  3268. routerlist_insert(rl, ri_new);
  3269. return;
  3270. }
  3271. if (tor_memneq(ri_old->cache_info.identity_digest,
  3272. ri_new->cache_info.identity_digest, DIGEST_LEN)) {
  3273. /* digests don't match; digestmap_set won't replace */
  3274. rimap_remove(rl->identity_map, ri_old->cache_info.identity_digest);
  3275. }
  3276. ri_tmp = rimap_set(rl->identity_map,
  3277. ri_new->cache_info.identity_digest, ri_new);
  3278. tor_assert(!ri_tmp || ri_tmp == ri_old);
  3279. sdmap_set(rl->desc_digest_map,
  3280. ri_new->cache_info.signed_descriptor_digest,
  3281. &(ri_new->cache_info));
  3282. if (!tor_digest_is_zero(ri_new->cache_info.extra_info_digest)) {
  3283. sdmap_set(rl->desc_by_eid_map, ri_new->cache_info.extra_info_digest,
  3284. &ri_new->cache_info);
  3285. }
  3286. same_descriptors = tor_memeq(ri_old->cache_info.signed_descriptor_digest,
  3287. ri_new->cache_info.signed_descriptor_digest,
  3288. DIGEST_LEN);
  3289. if (should_cache_old_descriptors() &&
  3290. ri_old->purpose == ROUTER_PURPOSE_GENERAL &&
  3291. !same_descriptors) {
  3292. /* ri_old is going to become a signed_descriptor_t and go into
  3293. * old_routers */
  3294. signed_descriptor_t *sd = signed_descriptor_from_routerinfo(ri_old);
  3295. smartlist_add(rl->old_routers, sd);
  3296. sd->routerlist_index = smartlist_len(rl->old_routers)-1;
  3297. sdmap_set(rl->desc_digest_map, sd->signed_descriptor_digest, sd);
  3298. if (!tor_digest_is_zero(sd->extra_info_digest))
  3299. sdmap_set(rl->desc_by_eid_map, sd->extra_info_digest, sd);
  3300. } else {
  3301. /* We're dropping ri_old. */
  3302. if (!same_descriptors) {
  3303. /* digests don't match; The sdmap_set above didn't replace */
  3304. sdmap_remove(rl->desc_digest_map,
  3305. ri_old->cache_info.signed_descriptor_digest);
  3306. if (tor_memneq(ri_old->cache_info.extra_info_digest,
  3307. ri_new->cache_info.extra_info_digest, DIGEST_LEN)) {
  3308. ei_tmp = eimap_remove(rl->extra_info_map,
  3309. ri_old->cache_info.extra_info_digest);
  3310. if (ei_tmp) {
  3311. rl->extrainfo_store.bytes_dropped +=
  3312. ei_tmp->cache_info.signed_descriptor_len;
  3313. extrainfo_free(ei_tmp);
  3314. }
  3315. }
  3316. if (!tor_digest_is_zero(ri_old->cache_info.extra_info_digest)) {
  3317. sdmap_remove(rl->desc_by_eid_map,
  3318. ri_old->cache_info.extra_info_digest);
  3319. }
  3320. }
  3321. rl->desc_store.bytes_dropped += ri_old->cache_info.signed_descriptor_len;
  3322. routerinfo_free(ri_old);
  3323. }
  3324. #ifdef DEBUG_ROUTERLIST
  3325. routerlist_assert_ok(rl);
  3326. #endif
  3327. }
  3328. /** Extract the descriptor <b>sd</b> from old_routerlist, and re-parse
  3329. * it as a fresh routerinfo_t. */
  3330. static routerinfo_t *
  3331. routerlist_reparse_old(routerlist_t *rl, signed_descriptor_t *sd)
  3332. {
  3333. routerinfo_t *ri;
  3334. const char *body;
  3335. body = signed_descriptor_get_annotations(sd);
  3336. ri = router_parse_entry_from_string(body,
  3337. body+sd->signed_descriptor_len+sd->annotations_len,
  3338. 0, 1, NULL, NULL);
  3339. if (!ri)
  3340. return NULL;
  3341. signed_descriptor_move(&ri->cache_info, sd);
  3342. routerlist_remove_old(rl, sd, -1);
  3343. return ri;
  3344. }
  3345. /** Free all memory held by the routerlist module.
  3346. * Note: Calling routerlist_free_all() should always be paired with
  3347. * a call to nodelist_free_all(). These should only be called during
  3348. * cleanup.
  3349. */
  3350. void
  3351. routerlist_free_all(void)
  3352. {
  3353. routerlist_free(routerlist);
  3354. routerlist = NULL;
  3355. if (warned_nicknames) {
  3356. SMARTLIST_FOREACH(warned_nicknames, char *, cp, tor_free(cp));
  3357. smartlist_free(warned_nicknames);
  3358. warned_nicknames = NULL;
  3359. }
  3360. clear_dir_servers();
  3361. smartlist_free(trusted_dir_servers);
  3362. smartlist_free(fallback_dir_servers);
  3363. trusted_dir_servers = fallback_dir_servers = NULL;
  3364. if (trusted_dir_certs) {
  3365. digestmap_free(trusted_dir_certs, cert_list_free_void);
  3366. trusted_dir_certs = NULL;
  3367. }
  3368. }
  3369. /** Forget that we have issued any router-related warnings, so that we'll
  3370. * warn again if we see the same errors. */
  3371. void
  3372. routerlist_reset_warnings(void)
  3373. {
  3374. if (!warned_nicknames)
  3375. warned_nicknames = smartlist_new();
  3376. SMARTLIST_FOREACH(warned_nicknames, char *, cp, tor_free(cp));
  3377. smartlist_clear(warned_nicknames); /* now the list is empty. */
  3378. networkstatus_reset_warnings();
  3379. }
  3380. /** Return 1 if the signed descriptor of this router is older than
  3381. * <b>seconds</b> seconds. Otherwise return 0. */
  3382. MOCK_IMPL(int,
  3383. router_descriptor_is_older_than,(const routerinfo_t *router, int seconds))
  3384. {
  3385. return router->cache_info.published_on < approx_time() - seconds;
  3386. }
  3387. /** Add <b>router</b> to the routerlist, if we don't already have it. Replace
  3388. * older entries (if any) with the same key. Note: Callers should not hold
  3389. * their pointers to <b>router</b> if this function fails; <b>router</b>
  3390. * will either be inserted into the routerlist or freed. Similarly, even
  3391. * if this call succeeds, they should not hold their pointers to
  3392. * <b>router</b> after subsequent calls with other routerinfo's -- they
  3393. * might cause the original routerinfo to get freed.
  3394. *
  3395. * Returns the status for the operation. Might set *<b>msg</b> if it wants
  3396. * the poster of the router to know something.
  3397. *
  3398. * If <b>from_cache</b>, this descriptor came from our disk cache. If
  3399. * <b>from_fetch</b>, we received it in response to a request we made.
  3400. * (If both are false, that means it was uploaded to us as an auth dir
  3401. * server or via the controller.)
  3402. *
  3403. * This function should be called *after*
  3404. * routers_update_status_from_consensus_networkstatus; subsequently, you
  3405. * should call router_rebuild_store and routerlist_descriptors_added.
  3406. */
  3407. was_router_added_t
  3408. router_add_to_routerlist(routerinfo_t *router, const char **msg,
  3409. int from_cache, int from_fetch)
  3410. {
  3411. const char *id_digest;
  3412. const or_options_t *options = get_options();
  3413. int authdir = authdir_mode_handles_descs(options, router->purpose);
  3414. int authdir_believes_valid = 0;
  3415. routerinfo_t *old_router;
  3416. networkstatus_t *consensus =
  3417. networkstatus_get_latest_consensus_by_flavor(FLAV_NS);
  3418. int in_consensus = 0;
  3419. tor_assert(msg);
  3420. if (!routerlist)
  3421. router_get_routerlist();
  3422. id_digest = router->cache_info.identity_digest;
  3423. old_router = router_get_mutable_by_digest(id_digest);
  3424. /* Make sure that it isn't expired. */
  3425. if (router->cert_expiration_time < approx_time()) {
  3426. routerinfo_free(router);
  3427. *msg = "Some certs on this router are expired.";
  3428. return ROUTER_CERTS_EXPIRED;
  3429. }
  3430. /* Make sure that we haven't already got this exact descriptor. */
  3431. if (sdmap_get(routerlist->desc_digest_map,
  3432. router->cache_info.signed_descriptor_digest)) {
  3433. /* If we have this descriptor already and the new descriptor is a bridge
  3434. * descriptor, replace it. If we had a bridge descriptor before and the
  3435. * new one is not a bridge descriptor, don't replace it. */
  3436. /* Only members of routerlist->identity_map can be bridges; we don't
  3437. * put bridges in old_routers. */
  3438. const int was_bridge = old_router &&
  3439. old_router->purpose == ROUTER_PURPOSE_BRIDGE;
  3440. if (routerinfo_is_a_configured_bridge(router) &&
  3441. router->purpose == ROUTER_PURPOSE_BRIDGE &&
  3442. !was_bridge) {
  3443. log_info(LD_DIR, "Replacing non-bridge descriptor with bridge "
  3444. "descriptor for router %s",
  3445. router_describe(router));
  3446. } else {
  3447. log_info(LD_DIR,
  3448. "Dropping descriptor that we already have for router %s",
  3449. router_describe(router));
  3450. *msg = "Router descriptor was not new.";
  3451. routerinfo_free(router);
  3452. return ROUTER_IS_ALREADY_KNOWN;
  3453. }
  3454. }
  3455. if (authdir) {
  3456. if (authdir_wants_to_reject_router(router, msg,
  3457. !from_cache && !from_fetch,
  3458. &authdir_believes_valid)) {
  3459. tor_assert(*msg);
  3460. routerinfo_free(router);
  3461. return ROUTER_AUTHDIR_REJECTS;
  3462. }
  3463. } else if (from_fetch) {
  3464. /* Only check the descriptor digest against the network statuses when
  3465. * we are receiving in response to a fetch. */
  3466. if (!signed_desc_digest_is_recognized(&router->cache_info) &&
  3467. !routerinfo_is_a_configured_bridge(router)) {
  3468. /* We asked for it, so some networkstatus must have listed it when we
  3469. * did. Save it if we're a cache in case somebody else asks for it. */
  3470. log_info(LD_DIR,
  3471. "Received a no-longer-recognized descriptor for router %s",
  3472. router_describe(router));
  3473. *msg = "Router descriptor is not referenced by any network-status.";
  3474. /* Only journal this desc if we want to keep old descriptors */
  3475. if (!from_cache && should_cache_old_descriptors())
  3476. signed_desc_append_to_journal(&router->cache_info,
  3477. &routerlist->desc_store);
  3478. routerlist_insert_old(routerlist, router);
  3479. return ROUTER_NOT_IN_CONSENSUS_OR_NETWORKSTATUS;
  3480. }
  3481. }
  3482. /* We no longer need a router with this descriptor digest. */
  3483. if (consensus) {
  3484. routerstatus_t *rs = networkstatus_vote_find_mutable_entry(
  3485. consensus, id_digest);
  3486. if (rs && tor_memeq(rs->descriptor_digest,
  3487. router->cache_info.signed_descriptor_digest,
  3488. DIGEST_LEN)) {
  3489. in_consensus = 1;
  3490. }
  3491. }
  3492. if (router->purpose == ROUTER_PURPOSE_GENERAL &&
  3493. consensus && !in_consensus && !authdir) {
  3494. /* If it's a general router not listed in the consensus, then don't
  3495. * consider replacing the latest router with it. */
  3496. if (!from_cache && should_cache_old_descriptors())
  3497. signed_desc_append_to_journal(&router->cache_info,
  3498. &routerlist->desc_store);
  3499. routerlist_insert_old(routerlist, router);
  3500. *msg = "Skipping router descriptor: not in consensus.";
  3501. return ROUTER_NOT_IN_CONSENSUS;
  3502. }
  3503. /* If we're reading a bridge descriptor from our cache, and we don't
  3504. * recognize it as one of our currently configured bridges, drop the
  3505. * descriptor. Otherwise we could end up using it as one of our entry
  3506. * guards even if it isn't in our Bridge config lines. */
  3507. if (router->purpose == ROUTER_PURPOSE_BRIDGE && from_cache &&
  3508. !authdir_mode_bridge(options) &&
  3509. !routerinfo_is_a_configured_bridge(router)) {
  3510. log_info(LD_DIR, "Dropping bridge descriptor for %s because we have "
  3511. "no bridge configured at that address.",
  3512. safe_str_client(router_describe(router)));
  3513. *msg = "Router descriptor was not a configured bridge.";
  3514. routerinfo_free(router);
  3515. return ROUTER_WAS_NOT_WANTED;
  3516. }
  3517. /* If we have a router with the same identity key, choose the newer one. */
  3518. if (old_router) {
  3519. if (!in_consensus && (router->cache_info.published_on <=
  3520. old_router->cache_info.published_on)) {
  3521. /* Same key, but old. This one is not listed in the consensus. */
  3522. log_debug(LD_DIR, "Not-new descriptor for router %s",
  3523. router_describe(router));
  3524. /* Only journal this desc if we'll be serving it. */
  3525. if (!from_cache && should_cache_old_descriptors())
  3526. signed_desc_append_to_journal(&router->cache_info,
  3527. &routerlist->desc_store);
  3528. routerlist_insert_old(routerlist, router);
  3529. *msg = "Router descriptor was not new.";
  3530. return ROUTER_IS_ALREADY_KNOWN;
  3531. } else {
  3532. /* Same key, and either new, or listed in the consensus. */
  3533. log_debug(LD_DIR, "Replacing entry for router %s",
  3534. router_describe(router));
  3535. routerlist_replace(routerlist, old_router, router);
  3536. if (!from_cache) {
  3537. signed_desc_append_to_journal(&router->cache_info,
  3538. &routerlist->desc_store);
  3539. }
  3540. *msg = authdir_believes_valid ? "Valid server updated" :
  3541. ("Invalid server updated. (This dirserver is marking your "
  3542. "server as unapproved.)");
  3543. return ROUTER_ADDED_SUCCESSFULLY;
  3544. }
  3545. }
  3546. if (!in_consensus && from_cache &&
  3547. router_descriptor_is_older_than(router, OLD_ROUTER_DESC_MAX_AGE)) {
  3548. *msg = "Router descriptor was really old.";
  3549. routerinfo_free(router);
  3550. return ROUTER_WAS_TOO_OLD;
  3551. }
  3552. /* We haven't seen a router with this identity before. Add it to the end of
  3553. * the list. */
  3554. routerlist_insert(routerlist, router);
  3555. if (!from_cache) {
  3556. signed_desc_append_to_journal(&router->cache_info,
  3557. &routerlist->desc_store);
  3558. }
  3559. return ROUTER_ADDED_SUCCESSFULLY;
  3560. }
  3561. /** Insert <b>ei</b> into the routerlist, or free it. Other arguments are
  3562. * as for router_add_to_routerlist(). Return ROUTER_ADDED_SUCCESSFULLY iff
  3563. * we actually inserted it, ROUTER_BAD_EI otherwise.
  3564. */
  3565. was_router_added_t
  3566. router_add_extrainfo_to_routerlist(extrainfo_t *ei, const char **msg,
  3567. int from_cache, int from_fetch)
  3568. {
  3569. was_router_added_t inserted;
  3570. (void)from_fetch;
  3571. if (msg) *msg = NULL;
  3572. /*XXXX Do something with msg */
  3573. inserted = extrainfo_insert(router_get_routerlist(), ei, !from_cache);
  3574. if (WRA_WAS_ADDED(inserted) && !from_cache)
  3575. signed_desc_append_to_journal(&ei->cache_info,
  3576. &routerlist->extrainfo_store);
  3577. return inserted;
  3578. }
  3579. /** Sorting helper: return &lt;0, 0, or &gt;0 depending on whether the
  3580. * signed_descriptor_t* in *<b>a</b> has an identity digest preceding, equal
  3581. * to, or later than that of *<b>b</b>. */
  3582. static int
  3583. compare_old_routers_by_identity_(const void **_a, const void **_b)
  3584. {
  3585. int i;
  3586. const signed_descriptor_t *r1 = *_a, *r2 = *_b;
  3587. if ((i = fast_memcmp(r1->identity_digest, r2->identity_digest, DIGEST_LEN)))
  3588. return i;
  3589. return (int)(r1->published_on - r2->published_on);
  3590. }
  3591. /** Internal type used to represent how long an old descriptor was valid,
  3592. * where it appeared in the list of old descriptors, and whether it's extra
  3593. * old. Used only by routerlist_remove_old_cached_routers_with_id(). */
  3594. struct duration_idx_t {
  3595. int duration;
  3596. int idx;
  3597. int old;
  3598. };
  3599. /** Sorting helper: compare two duration_idx_t by their duration. */
  3600. static int
  3601. compare_duration_idx_(const void *_d1, const void *_d2)
  3602. {
  3603. const struct duration_idx_t *d1 = _d1;
  3604. const struct duration_idx_t *d2 = _d2;
  3605. return d1->duration - d2->duration;
  3606. }
  3607. /** The range <b>lo</b> through <b>hi</b> inclusive of routerlist->old_routers
  3608. * must contain routerinfo_t with the same identity and with publication time
  3609. * in ascending order. Remove members from this range until there are no more
  3610. * than max_descriptors_per_router() remaining. Start by removing the oldest
  3611. * members from before <b>cutoff</b>, then remove members which were current
  3612. * for the lowest amount of time. The order of members of old_routers at
  3613. * indices <b>lo</b> or higher may be changed.
  3614. */
  3615. static void
  3616. routerlist_remove_old_cached_routers_with_id(time_t now,
  3617. time_t cutoff, int lo, int hi,
  3618. digestset_t *retain)
  3619. {
  3620. int i, n = hi-lo+1;
  3621. unsigned n_extra, n_rmv = 0;
  3622. struct duration_idx_t *lifespans;
  3623. uint8_t *rmv, *must_keep;
  3624. smartlist_t *lst = routerlist->old_routers;
  3625. #if 1
  3626. const char *ident;
  3627. tor_assert(hi < smartlist_len(lst));
  3628. tor_assert(lo <= hi);
  3629. ident = ((signed_descriptor_t*)smartlist_get(lst, lo))->identity_digest;
  3630. for (i = lo+1; i <= hi; ++i) {
  3631. signed_descriptor_t *r = smartlist_get(lst, i);
  3632. tor_assert(tor_memeq(ident, r->identity_digest, DIGEST_LEN));
  3633. }
  3634. #endif /* 1 */
  3635. /* Check whether we need to do anything at all. */
  3636. {
  3637. int mdpr = directory_caches_dir_info(get_options()) ? 2 : 1;
  3638. if (n <= mdpr)
  3639. return;
  3640. n_extra = n - mdpr;
  3641. }
  3642. lifespans = tor_calloc(n, sizeof(struct duration_idx_t));
  3643. rmv = tor_calloc(n, sizeof(uint8_t));
  3644. must_keep = tor_calloc(n, sizeof(uint8_t));
  3645. /* Set lifespans to contain the lifespan and index of each server. */
  3646. /* Set rmv[i-lo]=1 if we're going to remove a server for being too old. */
  3647. for (i = lo; i <= hi; ++i) {
  3648. signed_descriptor_t *r = smartlist_get(lst, i);
  3649. signed_descriptor_t *r_next;
  3650. lifespans[i-lo].idx = i;
  3651. if (r->last_listed_as_valid_until >= now ||
  3652. (retain && digestset_contains(retain, r->signed_descriptor_digest))) {
  3653. must_keep[i-lo] = 1;
  3654. }
  3655. if (i < hi) {
  3656. r_next = smartlist_get(lst, i+1);
  3657. tor_assert(r->published_on <= r_next->published_on);
  3658. lifespans[i-lo].duration = (int)(r_next->published_on - r->published_on);
  3659. } else {
  3660. r_next = NULL;
  3661. lifespans[i-lo].duration = INT_MAX;
  3662. }
  3663. if (!must_keep[i-lo] && r->published_on < cutoff && n_rmv < n_extra) {
  3664. ++n_rmv;
  3665. lifespans[i-lo].old = 1;
  3666. rmv[i-lo] = 1;
  3667. }
  3668. }
  3669. if (n_rmv < n_extra) {
  3670. /**
  3671. * We aren't removing enough servers for being old. Sort lifespans by
  3672. * the duration of liveness, and remove the ones we're not already going to
  3673. * remove based on how long they were alive.
  3674. **/
  3675. qsort(lifespans, n, sizeof(struct duration_idx_t), compare_duration_idx_);
  3676. for (i = 0; i < n && n_rmv < n_extra; ++i) {
  3677. if (!must_keep[lifespans[i].idx-lo] && !lifespans[i].old) {
  3678. rmv[lifespans[i].idx-lo] = 1;
  3679. ++n_rmv;
  3680. }
  3681. }
  3682. }
  3683. i = hi;
  3684. do {
  3685. if (rmv[i-lo])
  3686. routerlist_remove_old(routerlist, smartlist_get(lst, i), i);
  3687. } while (--i >= lo);
  3688. tor_free(must_keep);
  3689. tor_free(rmv);
  3690. tor_free(lifespans);
  3691. }
  3692. /** Deactivate any routers from the routerlist that are more than
  3693. * ROUTER_MAX_AGE seconds old and not recommended by any networkstatuses;
  3694. * remove old routers from the list of cached routers if we have too many.
  3695. */
  3696. void
  3697. routerlist_remove_old_routers(void)
  3698. {
  3699. int i, hi=-1;
  3700. const char *cur_id = NULL;
  3701. time_t now = time(NULL);
  3702. time_t cutoff;
  3703. routerinfo_t *router;
  3704. signed_descriptor_t *sd;
  3705. digestset_t *retain;
  3706. const networkstatus_t *consensus = networkstatus_get_latest_consensus();
  3707. trusted_dirs_remove_old_certs();
  3708. if (!routerlist || !consensus)
  3709. return;
  3710. // routerlist_assert_ok(routerlist);
  3711. /* We need to guess how many router descriptors we will wind up wanting to
  3712. retain, so that we can be sure to allocate a large enough Bloom filter
  3713. to hold the digest set. Overestimating is fine; underestimating is bad.
  3714. */
  3715. {
  3716. /* We'll probably retain everything in the consensus. */
  3717. int n_max_retain = smartlist_len(consensus->routerstatus_list);
  3718. retain = digestset_new(n_max_retain);
  3719. }
  3720. cutoff = now - OLD_ROUTER_DESC_MAX_AGE;
  3721. /* Retain anything listed in the consensus. */
  3722. if (consensus) {
  3723. SMARTLIST_FOREACH(consensus->routerstatus_list, routerstatus_t *, rs,
  3724. if (rs->published_on >= cutoff)
  3725. digestset_add(retain, rs->descriptor_digest));
  3726. }
  3727. /* If we have a consensus, we should consider pruning current routers that
  3728. * are too old and that nobody recommends. (If we don't have a consensus,
  3729. * then we should get one before we decide to kill routers.) */
  3730. if (consensus) {
  3731. cutoff = now - ROUTER_MAX_AGE;
  3732. /* Remove too-old unrecommended members of routerlist->routers. */
  3733. for (i = 0; i < smartlist_len(routerlist->routers); ++i) {
  3734. router = smartlist_get(routerlist->routers, i);
  3735. if (router->cache_info.published_on <= cutoff &&
  3736. router->cache_info.last_listed_as_valid_until < now &&
  3737. !digestset_contains(retain,
  3738. router->cache_info.signed_descriptor_digest)) {
  3739. /* Too old: remove it. (If we're a cache, just move it into
  3740. * old_routers.) */
  3741. log_info(LD_DIR,
  3742. "Forgetting obsolete (too old) routerinfo for router %s",
  3743. router_describe(router));
  3744. routerlist_remove(routerlist, router, 1, now);
  3745. i--;
  3746. }
  3747. }
  3748. }
  3749. //routerlist_assert_ok(routerlist);
  3750. /* Remove far-too-old members of routerlist->old_routers. */
  3751. cutoff = now - OLD_ROUTER_DESC_MAX_AGE;
  3752. for (i = 0; i < smartlist_len(routerlist->old_routers); ++i) {
  3753. sd = smartlist_get(routerlist->old_routers, i);
  3754. if (sd->published_on <= cutoff &&
  3755. sd->last_listed_as_valid_until < now &&
  3756. !digestset_contains(retain, sd->signed_descriptor_digest)) {
  3757. /* Too old. Remove it. */
  3758. routerlist_remove_old(routerlist, sd, i--);
  3759. }
  3760. }
  3761. //routerlist_assert_ok(routerlist);
  3762. log_info(LD_DIR, "We have %d live routers and %d old router descriptors.",
  3763. smartlist_len(routerlist->routers),
  3764. smartlist_len(routerlist->old_routers));
  3765. /* Now we might have to look at routerlist->old_routers for extraneous
  3766. * members. (We'd keep all the members if we could, but we need to save
  3767. * space.) First, check whether we have too many router descriptors, total.
  3768. * We're okay with having too many for some given router, so long as the
  3769. * total number doesn't approach max_descriptors_per_router()*len(router).
  3770. */
  3771. if (smartlist_len(routerlist->old_routers) <
  3772. smartlist_len(routerlist->routers))
  3773. goto done;
  3774. /* Sort by identity, then fix indices. */
  3775. smartlist_sort(routerlist->old_routers, compare_old_routers_by_identity_);
  3776. /* Fix indices. */
  3777. for (i = 0; i < smartlist_len(routerlist->old_routers); ++i) {
  3778. signed_descriptor_t *r = smartlist_get(routerlist->old_routers, i);
  3779. r->routerlist_index = i;
  3780. }
  3781. /* Iterate through the list from back to front, so when we remove descriptors
  3782. * we don't mess up groups we haven't gotten to. */
  3783. for (i = smartlist_len(routerlist->old_routers)-1; i >= 0; --i) {
  3784. signed_descriptor_t *r = smartlist_get(routerlist->old_routers, i);
  3785. if (!cur_id) {
  3786. cur_id = r->identity_digest;
  3787. hi = i;
  3788. }
  3789. if (tor_memneq(cur_id, r->identity_digest, DIGEST_LEN)) {
  3790. routerlist_remove_old_cached_routers_with_id(now,
  3791. cutoff, i+1, hi, retain);
  3792. cur_id = r->identity_digest;
  3793. hi = i;
  3794. }
  3795. }
  3796. if (hi>=0)
  3797. routerlist_remove_old_cached_routers_with_id(now, cutoff, 0, hi, retain);
  3798. //routerlist_assert_ok(routerlist);
  3799. done:
  3800. digestset_free(retain);
  3801. router_rebuild_store(RRS_DONT_REMOVE_OLD, &routerlist->desc_store);
  3802. router_rebuild_store(RRS_DONT_REMOVE_OLD,&routerlist->extrainfo_store);
  3803. }
  3804. /** We just added a new set of descriptors. Take whatever extra steps
  3805. * we need. */
  3806. void
  3807. routerlist_descriptors_added(smartlist_t *sl, int from_cache)
  3808. {
  3809. tor_assert(sl);
  3810. control_event_descriptors_changed(sl);
  3811. SMARTLIST_FOREACH_BEGIN(sl, routerinfo_t *, ri) {
  3812. if (ri->purpose == ROUTER_PURPOSE_BRIDGE)
  3813. learned_bridge_descriptor(ri, from_cache);
  3814. if (ri->needs_retest_if_added) {
  3815. ri->needs_retest_if_added = 0;
  3816. dirserv_single_reachability_test(approx_time(), ri);
  3817. }
  3818. } SMARTLIST_FOREACH_END(ri);
  3819. }
  3820. /**
  3821. * Code to parse a single router descriptor and insert it into the
  3822. * routerlist. Return -1 if the descriptor was ill-formed; 0 if the
  3823. * descriptor was well-formed but could not be added; and 1 if the
  3824. * descriptor was added.
  3825. *
  3826. * If we don't add it and <b>msg</b> is not NULL, then assign to
  3827. * *<b>msg</b> a static string describing the reason for refusing the
  3828. * descriptor.
  3829. *
  3830. * This is used only by the controller.
  3831. */
  3832. int
  3833. router_load_single_router(const char *s, uint8_t purpose, int cache,
  3834. const char **msg)
  3835. {
  3836. routerinfo_t *ri;
  3837. was_router_added_t r;
  3838. smartlist_t *lst;
  3839. char annotation_buf[ROUTER_ANNOTATION_BUF_LEN];
  3840. tor_assert(msg);
  3841. *msg = NULL;
  3842. tor_snprintf(annotation_buf, sizeof(annotation_buf),
  3843. "@source controller\n"
  3844. "@purpose %s\n", router_purpose_to_string(purpose));
  3845. if (!(ri = router_parse_entry_from_string(s, NULL, 1, 0,
  3846. annotation_buf, NULL))) {
  3847. log_warn(LD_DIR, "Error parsing router descriptor; dropping.");
  3848. *msg = "Couldn't parse router descriptor.";
  3849. return -1;
  3850. }
  3851. tor_assert(ri->purpose == purpose);
  3852. if (router_is_me(ri)) {
  3853. log_warn(LD_DIR, "Router's identity key matches mine; dropping.");
  3854. *msg = "Router's identity key matches mine.";
  3855. routerinfo_free(ri);
  3856. return 0;
  3857. }
  3858. if (!cache) /* obey the preference of the controller */
  3859. ri->cache_info.do_not_cache = 1;
  3860. lst = smartlist_new();
  3861. smartlist_add(lst, ri);
  3862. routers_update_status_from_consensus_networkstatus(lst, 0);
  3863. r = router_add_to_routerlist(ri, msg, 0, 0);
  3864. if (!WRA_WAS_ADDED(r)) {
  3865. /* we've already assigned to *msg now, and ri is already freed */
  3866. tor_assert(*msg);
  3867. if (r == ROUTER_AUTHDIR_REJECTS)
  3868. log_warn(LD_DIR, "Couldn't add router to list: %s Dropping.", *msg);
  3869. smartlist_free(lst);
  3870. return 0;
  3871. } else {
  3872. routerlist_descriptors_added(lst, 0);
  3873. smartlist_free(lst);
  3874. log_debug(LD_DIR, "Added router to list");
  3875. return 1;
  3876. }
  3877. }
  3878. /** Given a string <b>s</b> containing some routerdescs, parse it and put the
  3879. * routers into our directory. If saved_location is SAVED_NOWHERE, the routers
  3880. * are in response to a query to the network: cache them by adding them to
  3881. * the journal.
  3882. *
  3883. * Return the number of routers actually added.
  3884. *
  3885. * If <b>requested_fingerprints</b> is provided, it must contain a list of
  3886. * uppercased fingerprints. Do not update any router whose
  3887. * fingerprint is not on the list; after updating a router, remove its
  3888. * fingerprint from the list.
  3889. *
  3890. * If <b>descriptor_digests</b> is non-zero, then the requested_fingerprints
  3891. * are descriptor digests. Otherwise they are identity digests.
  3892. */
  3893. int
  3894. router_load_routers_from_string(const char *s, const char *eos,
  3895. saved_location_t saved_location,
  3896. smartlist_t *requested_fingerprints,
  3897. int descriptor_digests,
  3898. const char *prepend_annotations)
  3899. {
  3900. smartlist_t *routers = smartlist_new(), *changed = smartlist_new();
  3901. char fp[HEX_DIGEST_LEN+1];
  3902. const char *msg;
  3903. int from_cache = (saved_location != SAVED_NOWHERE);
  3904. int allow_annotations = (saved_location != SAVED_NOWHERE);
  3905. int any_changed = 0;
  3906. smartlist_t *invalid_digests = smartlist_new();
  3907. router_parse_list_from_string(&s, eos, routers, saved_location, 0,
  3908. allow_annotations, prepend_annotations,
  3909. invalid_digests);
  3910. routers_update_status_from_consensus_networkstatus(routers, !from_cache);
  3911. log_info(LD_DIR, "%d elements to add", smartlist_len(routers));
  3912. SMARTLIST_FOREACH_BEGIN(routers, routerinfo_t *, ri) {
  3913. was_router_added_t r;
  3914. char d[DIGEST_LEN];
  3915. if (requested_fingerprints) {
  3916. base16_encode(fp, sizeof(fp), descriptor_digests ?
  3917. ri->cache_info.signed_descriptor_digest :
  3918. ri->cache_info.identity_digest,
  3919. DIGEST_LEN);
  3920. if (smartlist_contains_string(requested_fingerprints, fp)) {
  3921. smartlist_string_remove(requested_fingerprints, fp);
  3922. } else {
  3923. char *requested =
  3924. smartlist_join_strings(requested_fingerprints," ",0,NULL);
  3925. log_warn(LD_DIR,
  3926. "We received a router descriptor with a fingerprint (%s) "
  3927. "that we never requested. (We asked for: %s.) Dropping.",
  3928. fp, requested);
  3929. tor_free(requested);
  3930. routerinfo_free(ri);
  3931. continue;
  3932. }
  3933. }
  3934. memcpy(d, ri->cache_info.signed_descriptor_digest, DIGEST_LEN);
  3935. r = router_add_to_routerlist(ri, &msg, from_cache, !from_cache);
  3936. if (WRA_WAS_ADDED(r)) {
  3937. any_changed++;
  3938. smartlist_add(changed, ri);
  3939. routerlist_descriptors_added(changed, from_cache);
  3940. smartlist_clear(changed);
  3941. } else if (WRA_NEVER_DOWNLOADABLE(r)) {
  3942. download_status_t *dl_status;
  3943. dl_status = router_get_dl_status_by_descriptor_digest(d);
  3944. if (dl_status) {
  3945. log_info(LD_GENERAL, "Marking router %s as never downloadable",
  3946. hex_str(d, DIGEST_LEN));
  3947. download_status_mark_impossible(dl_status);
  3948. }
  3949. }
  3950. } SMARTLIST_FOREACH_END(ri);
  3951. SMARTLIST_FOREACH_BEGIN(invalid_digests, const uint8_t *, bad_digest) {
  3952. /* This digest is never going to be parseable. */
  3953. base16_encode(fp, sizeof(fp), (char*)bad_digest, DIGEST_LEN);
  3954. if (requested_fingerprints && descriptor_digests) {
  3955. if (! smartlist_contains_string(requested_fingerprints, fp)) {
  3956. /* But we didn't ask for it, so we should assume shennanegans. */
  3957. continue;
  3958. }
  3959. smartlist_string_remove(requested_fingerprints, fp);
  3960. }
  3961. download_status_t *dls;
  3962. dls = router_get_dl_status_by_descriptor_digest((char*)bad_digest);
  3963. if (dls) {
  3964. log_info(LD_GENERAL, "Marking router with descriptor %s as unparseable, "
  3965. "and therefore undownloadable", fp);
  3966. download_status_mark_impossible(dls);
  3967. }
  3968. } SMARTLIST_FOREACH_END(bad_digest);
  3969. SMARTLIST_FOREACH(invalid_digests, uint8_t *, d, tor_free(d));
  3970. smartlist_free(invalid_digests);
  3971. routerlist_assert_ok(routerlist);
  3972. if (any_changed)
  3973. router_rebuild_store(0, &routerlist->desc_store);
  3974. smartlist_free(routers);
  3975. smartlist_free(changed);
  3976. return any_changed;
  3977. }
  3978. /** Parse one or more extrainfos from <b>s</b> (ending immediately before
  3979. * <b>eos</b> if <b>eos</b> is present). Other arguments are as for
  3980. * router_load_routers_from_string(). */
  3981. void
  3982. router_load_extrainfo_from_string(const char *s, const char *eos,
  3983. saved_location_t saved_location,
  3984. smartlist_t *requested_fingerprints,
  3985. int descriptor_digests)
  3986. {
  3987. smartlist_t *extrainfo_list = smartlist_new();
  3988. const char *msg;
  3989. int from_cache = (saved_location != SAVED_NOWHERE);
  3990. smartlist_t *invalid_digests = smartlist_new();
  3991. router_parse_list_from_string(&s, eos, extrainfo_list, saved_location, 1, 0,
  3992. NULL, invalid_digests);
  3993. log_info(LD_DIR, "%d elements to add", smartlist_len(extrainfo_list));
  3994. SMARTLIST_FOREACH_BEGIN(extrainfo_list, extrainfo_t *, ei) {
  3995. uint8_t d[DIGEST_LEN];
  3996. memcpy(d, ei->cache_info.signed_descriptor_digest, DIGEST_LEN);
  3997. was_router_added_t added =
  3998. router_add_extrainfo_to_routerlist(ei, &msg, from_cache, !from_cache);
  3999. if (WRA_WAS_ADDED(added) && requested_fingerprints) {
  4000. char fp[HEX_DIGEST_LEN+1];
  4001. base16_encode(fp, sizeof(fp), descriptor_digests ?
  4002. ei->cache_info.signed_descriptor_digest :
  4003. ei->cache_info.identity_digest,
  4004. DIGEST_LEN);
  4005. smartlist_string_remove(requested_fingerprints, fp);
  4006. /* We silently let relays stuff us with extrainfos we didn't ask for,
  4007. * so long as we would have wanted them anyway. Since we always fetch
  4008. * all the extrainfos we want, and we never actually act on them
  4009. * inside Tor, this should be harmless. */
  4010. } else if (WRA_NEVER_DOWNLOADABLE(added)) {
  4011. signed_descriptor_t *sd = router_get_by_extrainfo_digest((char*)d);
  4012. if (sd) {
  4013. log_info(LD_GENERAL, "Marking extrainfo with descriptor %s as "
  4014. "unparseable, and therefore undownloadable",
  4015. hex_str((char*)d,DIGEST_LEN));
  4016. download_status_mark_impossible(&sd->ei_dl_status);
  4017. }
  4018. }
  4019. } SMARTLIST_FOREACH_END(ei);
  4020. SMARTLIST_FOREACH_BEGIN(invalid_digests, const uint8_t *, bad_digest) {
  4021. /* This digest is never going to be parseable. */
  4022. char fp[HEX_DIGEST_LEN+1];
  4023. base16_encode(fp, sizeof(fp), (char*)bad_digest, DIGEST_LEN);
  4024. if (requested_fingerprints) {
  4025. if (! smartlist_contains_string(requested_fingerprints, fp)) {
  4026. /* But we didn't ask for it, so we should assume shennanegans. */
  4027. continue;
  4028. }
  4029. smartlist_string_remove(requested_fingerprints, fp);
  4030. }
  4031. signed_descriptor_t *sd =
  4032. router_get_by_extrainfo_digest((char*)bad_digest);
  4033. if (sd) {
  4034. log_info(LD_GENERAL, "Marking extrainfo with descriptor %s as "
  4035. "unparseable, and therefore undownloadable", fp);
  4036. download_status_mark_impossible(&sd->ei_dl_status);
  4037. }
  4038. } SMARTLIST_FOREACH_END(bad_digest);
  4039. SMARTLIST_FOREACH(invalid_digests, uint8_t *, d, tor_free(d));
  4040. smartlist_free(invalid_digests);
  4041. routerlist_assert_ok(routerlist);
  4042. router_rebuild_store(0, &router_get_routerlist()->extrainfo_store);
  4043. smartlist_free(extrainfo_list);
  4044. }
  4045. /** Return true iff the latest ns-flavored consensus includes a descriptor
  4046. * whose digest is that of <b>desc</b>. */
  4047. static int
  4048. signed_desc_digest_is_recognized(signed_descriptor_t *desc)
  4049. {
  4050. const routerstatus_t *rs;
  4051. networkstatus_t *consensus = networkstatus_get_latest_consensus_by_flavor(
  4052. FLAV_NS);
  4053. if (consensus) {
  4054. rs = networkstatus_vote_find_entry(consensus, desc->identity_digest);
  4055. if (rs && tor_memeq(rs->descriptor_digest,
  4056. desc->signed_descriptor_digest, DIGEST_LEN))
  4057. return 1;
  4058. }
  4059. return 0;
  4060. }
  4061. /** Update downloads for router descriptors and/or microdescriptors as
  4062. * appropriate. */
  4063. void
  4064. update_all_descriptor_downloads(time_t now)
  4065. {
  4066. if (should_delay_dir_fetches(get_options(), NULL))
  4067. return;
  4068. update_router_descriptor_downloads(now);
  4069. update_microdesc_downloads(now);
  4070. launch_dummy_descriptor_download_as_needed(now, get_options());
  4071. }
  4072. /** Clear all our timeouts for fetching v3 directory stuff, and then
  4073. * give it all a try again. */
  4074. void
  4075. routerlist_retry_directory_downloads(time_t now)
  4076. {
  4077. (void)now;
  4078. log_debug(LD_GENERAL,
  4079. "In routerlist_retry_directory_downloads()");
  4080. router_reset_status_download_failures();
  4081. router_reset_descriptor_download_failures();
  4082. reschedule_directory_downloads();
  4083. }
  4084. /** Return true iff <b>router</b> does not permit exit streams.
  4085. */
  4086. int
  4087. router_exit_policy_rejects_all(const routerinfo_t *router)
  4088. {
  4089. return router->policy_is_reject_star;
  4090. }
  4091. /** Create a directory server at <b>address</b>:<b>port</b>, with OR identity
  4092. * key <b>digest</b> which has DIGEST_LEN bytes. If <b>address</b> is NULL,
  4093. * add ourself. If <b>is_authority</b>, this is a directory authority. Return
  4094. * the new directory server entry on success or NULL on failure. */
  4095. static dir_server_t *
  4096. dir_server_new(int is_authority,
  4097. const char *nickname,
  4098. const tor_addr_t *addr,
  4099. const char *hostname,
  4100. uint16_t dir_port, uint16_t or_port,
  4101. const tor_addr_port_t *addrport_ipv6,
  4102. const char *digest, const char *v3_auth_digest,
  4103. dirinfo_type_t type,
  4104. double weight)
  4105. {
  4106. dir_server_t *ent;
  4107. uint32_t a;
  4108. char *hostname_ = NULL;
  4109. tor_assert(digest);
  4110. if (weight < 0)
  4111. return NULL;
  4112. if (tor_addr_family(addr) == AF_INET)
  4113. a = tor_addr_to_ipv4h(addr);
  4114. else
  4115. return NULL;
  4116. if (!hostname)
  4117. hostname_ = tor_addr_to_str_dup(addr);
  4118. else
  4119. hostname_ = tor_strdup(hostname);
  4120. ent = tor_malloc_zero(sizeof(dir_server_t));
  4121. ent->nickname = nickname ? tor_strdup(nickname) : NULL;
  4122. ent->address = hostname_;
  4123. ent->addr = a;
  4124. ent->dir_port = dir_port;
  4125. ent->or_port = or_port;
  4126. ent->is_running = 1;
  4127. ent->is_authority = is_authority;
  4128. ent->type = type;
  4129. ent->weight = weight;
  4130. if (addrport_ipv6) {
  4131. if (tor_addr_family(&addrport_ipv6->addr) != AF_INET6) {
  4132. log_warn(LD_BUG, "Hey, I got a non-ipv6 addr as addrport_ipv6.");
  4133. tor_addr_make_unspec(&ent->ipv6_addr);
  4134. } else {
  4135. tor_addr_copy(&ent->ipv6_addr, &addrport_ipv6->addr);
  4136. ent->ipv6_orport = addrport_ipv6->port;
  4137. }
  4138. } else {
  4139. tor_addr_make_unspec(&ent->ipv6_addr);
  4140. }
  4141. memcpy(ent->digest, digest, DIGEST_LEN);
  4142. if (v3_auth_digest && (type & V3_DIRINFO))
  4143. memcpy(ent->v3_identity_digest, v3_auth_digest, DIGEST_LEN);
  4144. if (nickname)
  4145. tor_asprintf(&ent->description, "directory server \"%s\" at %s:%d",
  4146. nickname, hostname_, (int)dir_port);
  4147. else
  4148. tor_asprintf(&ent->description, "directory server at %s:%d",
  4149. hostname_, (int)dir_port);
  4150. ent->fake_status.addr = ent->addr;
  4151. tor_addr_copy(&ent->fake_status.ipv6_addr, &ent->ipv6_addr);
  4152. memcpy(ent->fake_status.identity_digest, digest, DIGEST_LEN);
  4153. if (nickname)
  4154. strlcpy(ent->fake_status.nickname, nickname,
  4155. sizeof(ent->fake_status.nickname));
  4156. else
  4157. ent->fake_status.nickname[0] = '\0';
  4158. ent->fake_status.dir_port = ent->dir_port;
  4159. ent->fake_status.or_port = ent->or_port;
  4160. ent->fake_status.ipv6_orport = ent->ipv6_orport;
  4161. return ent;
  4162. }
  4163. /** Create an authoritative directory server at
  4164. * <b>address</b>:<b>port</b>, with identity key <b>digest</b>. If
  4165. * <b>address</b> is NULL, add ourself. Return the new trusted directory
  4166. * server entry on success or NULL if we couldn't add it. */
  4167. dir_server_t *
  4168. trusted_dir_server_new(const char *nickname, const char *address,
  4169. uint16_t dir_port, uint16_t or_port,
  4170. const tor_addr_port_t *ipv6_addrport,
  4171. const char *digest, const char *v3_auth_digest,
  4172. dirinfo_type_t type, double weight)
  4173. {
  4174. uint32_t a;
  4175. tor_addr_t addr;
  4176. char *hostname=NULL;
  4177. dir_server_t *result;
  4178. if (!address) { /* The address is us; we should guess. */
  4179. if (resolve_my_address(LOG_WARN, get_options(),
  4180. &a, NULL, &hostname) < 0) {
  4181. log_warn(LD_CONFIG,
  4182. "Couldn't find a suitable address when adding ourself as a "
  4183. "trusted directory server.");
  4184. return NULL;
  4185. }
  4186. if (!hostname)
  4187. hostname = tor_dup_ip(a);
  4188. } else {
  4189. if (tor_lookup_hostname(address, &a)) {
  4190. log_warn(LD_CONFIG,
  4191. "Unable to lookup address for directory server at '%s'",
  4192. address);
  4193. return NULL;
  4194. }
  4195. hostname = tor_strdup(address);
  4196. }
  4197. tor_addr_from_ipv4h(&addr, a);
  4198. result = dir_server_new(1, nickname, &addr, hostname,
  4199. dir_port, or_port,
  4200. ipv6_addrport,
  4201. digest,
  4202. v3_auth_digest, type, weight);
  4203. tor_free(hostname);
  4204. return result;
  4205. }
  4206. /** Return a new dir_server_t for a fallback directory server at
  4207. * <b>addr</b>:<b>or_port</b>/<b>dir_port</b>, with identity key digest
  4208. * <b>id_digest</b> */
  4209. dir_server_t *
  4210. fallback_dir_server_new(const tor_addr_t *addr,
  4211. uint16_t dir_port, uint16_t or_port,
  4212. const tor_addr_port_t *addrport_ipv6,
  4213. const char *id_digest, double weight)
  4214. {
  4215. return dir_server_new(0, NULL, addr, NULL, dir_port, or_port,
  4216. addrport_ipv6,
  4217. id_digest,
  4218. NULL, ALL_DIRINFO, weight);
  4219. }
  4220. /** Add a directory server to the global list(s). */
  4221. void
  4222. dir_server_add(dir_server_t *ent)
  4223. {
  4224. if (!trusted_dir_servers)
  4225. trusted_dir_servers = smartlist_new();
  4226. if (!fallback_dir_servers)
  4227. fallback_dir_servers = smartlist_new();
  4228. if (ent->is_authority)
  4229. smartlist_add(trusted_dir_servers, ent);
  4230. smartlist_add(fallback_dir_servers, ent);
  4231. router_dir_info_changed();
  4232. }
  4233. /** Free storage held in <b>cert</b>. */
  4234. void
  4235. authority_cert_free_(authority_cert_t *cert)
  4236. {
  4237. if (!cert)
  4238. return;
  4239. tor_free(cert->cache_info.signed_descriptor_body);
  4240. crypto_pk_free(cert->signing_key);
  4241. crypto_pk_free(cert->identity_key);
  4242. tor_free(cert);
  4243. }
  4244. #define dir_server_free(val) \
  4245. FREE_AND_NULL(dir_server_t, dir_server_free_, (val))
  4246. /** Free storage held in <b>ds</b>. */
  4247. static void
  4248. dir_server_free_(dir_server_t *ds)
  4249. {
  4250. if (!ds)
  4251. return;
  4252. tor_free(ds->nickname);
  4253. tor_free(ds->description);
  4254. tor_free(ds->address);
  4255. tor_free(ds);
  4256. }
  4257. /** Remove all members from the list of dir servers. */
  4258. void
  4259. clear_dir_servers(void)
  4260. {
  4261. if (fallback_dir_servers) {
  4262. SMARTLIST_FOREACH(fallback_dir_servers, dir_server_t *, ent,
  4263. dir_server_free(ent));
  4264. smartlist_clear(fallback_dir_servers);
  4265. } else {
  4266. fallback_dir_servers = smartlist_new();
  4267. }
  4268. if (trusted_dir_servers) {
  4269. smartlist_clear(trusted_dir_servers);
  4270. } else {
  4271. trusted_dir_servers = smartlist_new();
  4272. }
  4273. router_dir_info_changed();
  4274. }
  4275. /** For every current directory connection whose purpose is <b>purpose</b>,
  4276. * and where the resource being downloaded begins with <b>prefix</b>, split
  4277. * rest of the resource into base16 fingerprints (or base64 fingerprints if
  4278. * purpose==DIR_PURPOSE_FETCH_MICRODESC), decode them, and set the
  4279. * corresponding elements of <b>result</b> to a nonzero value.
  4280. */
  4281. static void
  4282. list_pending_downloads(digestmap_t *result, digest256map_t *result256,
  4283. int purpose, const char *prefix)
  4284. {
  4285. const size_t p_len = strlen(prefix);
  4286. smartlist_t *tmp = smartlist_new();
  4287. smartlist_t *conns = get_connection_array();
  4288. int flags = DSR_HEX;
  4289. if (purpose == DIR_PURPOSE_FETCH_MICRODESC)
  4290. flags = DSR_DIGEST256|DSR_BASE64;
  4291. tor_assert(result || result256);
  4292. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  4293. if (conn->type == CONN_TYPE_DIR &&
  4294. conn->purpose == purpose &&
  4295. !conn->marked_for_close) {
  4296. const char *resource = TO_DIR_CONN(conn)->requested_resource;
  4297. if (!strcmpstart(resource, prefix))
  4298. dir_split_resource_into_fingerprints(resource + p_len,
  4299. tmp, NULL, flags);
  4300. }
  4301. } SMARTLIST_FOREACH_END(conn);
  4302. if (result) {
  4303. SMARTLIST_FOREACH(tmp, char *, d,
  4304. {
  4305. digestmap_set(result, d, (void*)1);
  4306. tor_free(d);
  4307. });
  4308. } else if (result256) {
  4309. SMARTLIST_FOREACH(tmp, uint8_t *, d,
  4310. {
  4311. digest256map_set(result256, d, (void*)1);
  4312. tor_free(d);
  4313. });
  4314. }
  4315. smartlist_free(tmp);
  4316. }
  4317. /** For every router descriptor (or extra-info document if <b>extrainfo</b> is
  4318. * true) we are currently downloading by descriptor digest, set result[d] to
  4319. * (void*)1. */
  4320. static void
  4321. list_pending_descriptor_downloads(digestmap_t *result, int extrainfo)
  4322. {
  4323. int purpose =
  4324. extrainfo ? DIR_PURPOSE_FETCH_EXTRAINFO : DIR_PURPOSE_FETCH_SERVERDESC;
  4325. list_pending_downloads(result, NULL, purpose, "d/");
  4326. }
  4327. /** For every microdescriptor we are currently downloading by descriptor
  4328. * digest, set result[d] to (void*)1.
  4329. */
  4330. void
  4331. list_pending_microdesc_downloads(digest256map_t *result)
  4332. {
  4333. list_pending_downloads(NULL, result, DIR_PURPOSE_FETCH_MICRODESC, "d/");
  4334. }
  4335. /** For every certificate we are currently downloading by (identity digest,
  4336. * signing key digest) pair, set result[fp_pair] to (void *1).
  4337. */
  4338. static void
  4339. list_pending_fpsk_downloads(fp_pair_map_t *result)
  4340. {
  4341. const char *pfx = "fp-sk/";
  4342. smartlist_t *tmp;
  4343. smartlist_t *conns;
  4344. const char *resource;
  4345. tor_assert(result);
  4346. tmp = smartlist_new();
  4347. conns = get_connection_array();
  4348. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  4349. if (conn->type == CONN_TYPE_DIR &&
  4350. conn->purpose == DIR_PURPOSE_FETCH_CERTIFICATE &&
  4351. !conn->marked_for_close) {
  4352. resource = TO_DIR_CONN(conn)->requested_resource;
  4353. if (!strcmpstart(resource, pfx))
  4354. dir_split_resource_into_fingerprint_pairs(resource + strlen(pfx),
  4355. tmp);
  4356. }
  4357. } SMARTLIST_FOREACH_END(conn);
  4358. SMARTLIST_FOREACH_BEGIN(tmp, fp_pair_t *, fp) {
  4359. fp_pair_map_set(result, fp, (void*)1);
  4360. tor_free(fp);
  4361. } SMARTLIST_FOREACH_END(fp);
  4362. smartlist_free(tmp);
  4363. }
  4364. /** Launch downloads for all the descriptors whose digests or digests256
  4365. * are listed as digests[i] for lo <= i < hi. (Lo and hi may be out of
  4366. * range.) If <b>source</b> is given, download from <b>source</b>;
  4367. * otherwise, download from an appropriate random directory server.
  4368. */
  4369. MOCK_IMPL(STATIC void,
  4370. initiate_descriptor_downloads,(const routerstatus_t *source,
  4371. int purpose, smartlist_t *digests,
  4372. int lo, int hi, int pds_flags))
  4373. {
  4374. char *resource, *cp;
  4375. int digest_len, enc_digest_len;
  4376. const char *sep;
  4377. int b64_256;
  4378. smartlist_t *tmp;
  4379. if (purpose == DIR_PURPOSE_FETCH_MICRODESC) {
  4380. /* Microdescriptors are downloaded by "-"-separated base64-encoded
  4381. * 256-bit digests. */
  4382. digest_len = DIGEST256_LEN;
  4383. enc_digest_len = BASE64_DIGEST256_LEN + 1;
  4384. sep = "-";
  4385. b64_256 = 1;
  4386. } else {
  4387. digest_len = DIGEST_LEN;
  4388. enc_digest_len = HEX_DIGEST_LEN + 1;
  4389. sep = "+";
  4390. b64_256 = 0;
  4391. }
  4392. if (lo < 0)
  4393. lo = 0;
  4394. if (hi > smartlist_len(digests))
  4395. hi = smartlist_len(digests);
  4396. if (hi-lo <= 0)
  4397. return;
  4398. tmp = smartlist_new();
  4399. for (; lo < hi; ++lo) {
  4400. cp = tor_malloc(enc_digest_len);
  4401. if (b64_256) {
  4402. digest256_to_base64(cp, smartlist_get(digests, lo));
  4403. } else {
  4404. base16_encode(cp, enc_digest_len, smartlist_get(digests, lo),
  4405. digest_len);
  4406. }
  4407. smartlist_add(tmp, cp);
  4408. }
  4409. cp = smartlist_join_strings(tmp, sep, 0, NULL);
  4410. tor_asprintf(&resource, "d/%s.z", cp);
  4411. SMARTLIST_FOREACH(tmp, char *, cp1, tor_free(cp1));
  4412. smartlist_free(tmp);
  4413. tor_free(cp);
  4414. if (source) {
  4415. /* We know which authority or directory mirror we want. */
  4416. directory_request_t *req = directory_request_new(purpose);
  4417. directory_request_set_routerstatus(req, source);
  4418. directory_request_set_resource(req, resource);
  4419. directory_initiate_request(req);
  4420. directory_request_free(req);
  4421. } else {
  4422. directory_get_from_dirserver(purpose, ROUTER_PURPOSE_GENERAL, resource,
  4423. pds_flags, DL_WANT_ANY_DIRSERVER);
  4424. }
  4425. tor_free(resource);
  4426. }
  4427. /** Return the max number of hashes to put in a URL for a given request.
  4428. */
  4429. static int
  4430. max_dl_per_request(const or_options_t *options, int purpose)
  4431. {
  4432. /* Since squid does not like URLs >= 4096 bytes we limit it to 96.
  4433. * 4096 - strlen(http://[ffff:ffff:ffff:ffff:ffff:ffff:ffff:ffff]:65535
  4434. * /tor/server/d/.z) == 4026
  4435. * 4026/41 (40 for the hash and 1 for the + that separates them) => 98
  4436. * So use 96 because it's a nice number.
  4437. *
  4438. * For microdescriptors, the calculation is
  4439. * 4096 - strlen(http://[ffff:ffff:ffff:ffff:ffff:ffff:ffff:ffff]:65535
  4440. * /tor/micro/d/.z) == 4027
  4441. * 4027/44 (43 for the hash and 1 for the - that separates them) => 91
  4442. * So use 90 because it's a nice number.
  4443. */
  4444. int max = 96;
  4445. if (purpose == DIR_PURPOSE_FETCH_MICRODESC) {
  4446. max = 90;
  4447. }
  4448. /* If we're going to tunnel our connections, we can ask for a lot more
  4449. * in a request. */
  4450. if (directory_must_use_begindir(options)) {
  4451. max = 500;
  4452. }
  4453. return max;
  4454. }
  4455. /** Don't split our requests so finely that we are requesting fewer than
  4456. * this number per server. (Grouping more than this at once leads to
  4457. * diminishing returns.) */
  4458. #define MIN_DL_PER_REQUEST 32
  4459. /** To prevent a single screwy cache from confusing us by selective reply,
  4460. * try to split our requests into at least this many requests. */
  4461. #define MIN_REQUESTS 3
  4462. /** If we want fewer than this many descriptors, wait until we
  4463. * want more, or until TestingClientMaxIntervalWithoutRequest has passed. */
  4464. #define MAX_DL_TO_DELAY 16
  4465. /** Given a <b>purpose</b> (FETCH_MICRODESC or FETCH_SERVERDESC) and a list of
  4466. * router descriptor digests or microdescriptor digest256s in
  4467. * <b>downloadable</b>, decide whether to delay fetching until we have more.
  4468. * If we don't want to delay, launch one or more requests to the appropriate
  4469. * directory authorities.
  4470. */
  4471. void
  4472. launch_descriptor_downloads(int purpose,
  4473. smartlist_t *downloadable,
  4474. const routerstatus_t *source, time_t now)
  4475. {
  4476. const or_options_t *options = get_options();
  4477. const char *descname;
  4478. const int fetch_microdesc = (purpose == DIR_PURPOSE_FETCH_MICRODESC);
  4479. int n_downloadable = smartlist_len(downloadable);
  4480. int i, n_per_request, max_dl_per_req;
  4481. const char *req_plural = "", *rtr_plural = "";
  4482. int pds_flags = PDS_RETRY_IF_NO_SERVERS;
  4483. tor_assert(fetch_microdesc || purpose == DIR_PURPOSE_FETCH_SERVERDESC);
  4484. descname = fetch_microdesc ? "microdesc" : "routerdesc";
  4485. if (!n_downloadable)
  4486. return;
  4487. if (!directory_fetches_dir_info_early(options)) {
  4488. if (n_downloadable >= MAX_DL_TO_DELAY) {
  4489. log_debug(LD_DIR,
  4490. "There are enough downloadable %ss to launch requests.",
  4491. descname);
  4492. } else if (! router_have_minimum_dir_info()) {
  4493. log_debug(LD_DIR,
  4494. "We are only missing %d %ss, but we'll fetch anyway, since "
  4495. "we don't yet have enough directory info.",
  4496. n_downloadable, descname);
  4497. } else {
  4498. /* should delay */
  4499. if ((last_descriptor_download_attempted +
  4500. options->TestingClientMaxIntervalWithoutRequest) > now)
  4501. return;
  4502. if (last_descriptor_download_attempted) {
  4503. log_info(LD_DIR,
  4504. "There are not many downloadable %ss, but we've "
  4505. "been waiting long enough (%d seconds). Downloading.",
  4506. descname,
  4507. (int)(now-last_descriptor_download_attempted));
  4508. } else {
  4509. log_info(LD_DIR,
  4510. "There are not many downloadable %ss, but we haven't "
  4511. "tried downloading descriptors recently. Downloading.",
  4512. descname);
  4513. }
  4514. }
  4515. }
  4516. if (!authdir_mode(options)) {
  4517. /* If we wind up going to the authorities, we want to only open one
  4518. * connection to each authority at a time, so that we don't overload
  4519. * them. We do this by setting PDS_NO_EXISTING_SERVERDESC_FETCH
  4520. * regardless of whether we're a cache or not.
  4521. *
  4522. * Setting this flag can make initiate_descriptor_downloads() ignore
  4523. * requests. We need to make sure that we do in fact call
  4524. * update_router_descriptor_downloads() later on, once the connections
  4525. * have succeeded or failed.
  4526. */
  4527. pds_flags |= fetch_microdesc ?
  4528. PDS_NO_EXISTING_MICRODESC_FETCH :
  4529. PDS_NO_EXISTING_SERVERDESC_FETCH;
  4530. }
  4531. n_per_request = CEIL_DIV(n_downloadable, MIN_REQUESTS);
  4532. max_dl_per_req = max_dl_per_request(options, purpose);
  4533. if (n_per_request > max_dl_per_req)
  4534. n_per_request = max_dl_per_req;
  4535. if (n_per_request < MIN_DL_PER_REQUEST) {
  4536. n_per_request = MIN(MIN_DL_PER_REQUEST, n_downloadable);
  4537. }
  4538. if (n_downloadable > n_per_request)
  4539. req_plural = rtr_plural = "s";
  4540. else if (n_downloadable > 1)
  4541. rtr_plural = "s";
  4542. log_info(LD_DIR,
  4543. "Launching %d request%s for %d %s%s, %d at a time",
  4544. CEIL_DIV(n_downloadable, n_per_request), req_plural,
  4545. n_downloadable, descname, rtr_plural, n_per_request);
  4546. smartlist_sort_digests(downloadable);
  4547. for (i=0; i < n_downloadable; i += n_per_request) {
  4548. initiate_descriptor_downloads(source, purpose,
  4549. downloadable, i, i+n_per_request,
  4550. pds_flags);
  4551. }
  4552. last_descriptor_download_attempted = now;
  4553. }
  4554. /** For any descriptor that we want that's currently listed in
  4555. * <b>consensus</b>, download it as appropriate. */
  4556. void
  4557. update_consensus_router_descriptor_downloads(time_t now, int is_vote,
  4558. networkstatus_t *consensus)
  4559. {
  4560. const or_options_t *options = get_options();
  4561. digestmap_t *map = NULL;
  4562. smartlist_t *no_longer_old = smartlist_new();
  4563. smartlist_t *downloadable = smartlist_new();
  4564. routerstatus_t *source = NULL;
  4565. int authdir = authdir_mode(options);
  4566. int n_delayed=0, n_have=0, n_would_reject=0, n_wouldnt_use=0,
  4567. n_inprogress=0, n_in_oldrouters=0;
  4568. if (directory_too_idle_to_fetch_descriptors(options, now))
  4569. goto done;
  4570. if (!consensus)
  4571. goto done;
  4572. if (is_vote) {
  4573. /* where's it from, so we know whom to ask for descriptors */
  4574. dir_server_t *ds;
  4575. networkstatus_voter_info_t *voter = smartlist_get(consensus->voters, 0);
  4576. tor_assert(voter);
  4577. ds = trusteddirserver_get_by_v3_auth_digest(voter->identity_digest);
  4578. if (ds)
  4579. source = &(ds->fake_status);
  4580. else
  4581. log_warn(LD_DIR, "couldn't lookup source from vote?");
  4582. }
  4583. map = digestmap_new();
  4584. list_pending_descriptor_downloads(map, 0);
  4585. SMARTLIST_FOREACH_BEGIN(consensus->routerstatus_list, void *, rsp) {
  4586. routerstatus_t *rs =
  4587. is_vote ? &(((vote_routerstatus_t *)rsp)->status) : rsp;
  4588. signed_descriptor_t *sd;
  4589. if ((sd = router_get_by_descriptor_digest(rs->descriptor_digest))) {
  4590. const routerinfo_t *ri;
  4591. ++n_have;
  4592. if (!(ri = router_get_by_id_digest(rs->identity_digest)) ||
  4593. tor_memneq(ri->cache_info.signed_descriptor_digest,
  4594. sd->signed_descriptor_digest, DIGEST_LEN)) {
  4595. /* We have a descriptor with this digest, but either there is no
  4596. * entry in routerlist with the same ID (!ri), or there is one,
  4597. * but the identity digest differs (memneq).
  4598. */
  4599. smartlist_add(no_longer_old, sd);
  4600. ++n_in_oldrouters; /* We have it in old_routers. */
  4601. }
  4602. continue; /* We have it already. */
  4603. }
  4604. if (digestmap_get(map, rs->descriptor_digest)) {
  4605. ++n_inprogress;
  4606. continue; /* We have an in-progress download. */
  4607. }
  4608. if (!download_status_is_ready(&rs->dl_status, now)) {
  4609. ++n_delayed; /* Not ready for retry. */
  4610. continue;
  4611. }
  4612. if (authdir && dirserv_would_reject_router(rs)) {
  4613. ++n_would_reject;
  4614. continue; /* We would throw it out immediately. */
  4615. }
  4616. if (!we_want_to_fetch_flavor(options, consensus->flavor) &&
  4617. !client_would_use_router(rs, now)) {
  4618. ++n_wouldnt_use;
  4619. continue; /* We would never use it ourself. */
  4620. }
  4621. if (is_vote && source) {
  4622. char time_bufnew[ISO_TIME_LEN+1];
  4623. char time_bufold[ISO_TIME_LEN+1];
  4624. const routerinfo_t *oldrouter;
  4625. oldrouter = router_get_by_id_digest(rs->identity_digest);
  4626. format_iso_time(time_bufnew, rs->published_on);
  4627. if (oldrouter)
  4628. format_iso_time(time_bufold, oldrouter->cache_info.published_on);
  4629. log_info(LD_DIR, "Learned about %s (%s vs %s) from %s's vote (%s)",
  4630. routerstatus_describe(rs),
  4631. time_bufnew,
  4632. oldrouter ? time_bufold : "none",
  4633. source->nickname, oldrouter ? "known" : "unknown");
  4634. }
  4635. smartlist_add(downloadable, rs->descriptor_digest);
  4636. } SMARTLIST_FOREACH_END(rsp);
  4637. if (!authdir_mode_v3(options)
  4638. && smartlist_len(no_longer_old)) {
  4639. routerlist_t *rl = router_get_routerlist();
  4640. log_info(LD_DIR, "%d router descriptors listed in consensus are "
  4641. "currently in old_routers; making them current.",
  4642. smartlist_len(no_longer_old));
  4643. SMARTLIST_FOREACH_BEGIN(no_longer_old, signed_descriptor_t *, sd) {
  4644. const char *msg;
  4645. was_router_added_t r;
  4646. time_t tmp_cert_expiration_time;
  4647. routerinfo_t *ri = routerlist_reparse_old(rl, sd);
  4648. if (!ri) {
  4649. log_warn(LD_BUG, "Failed to re-parse a router.");
  4650. continue;
  4651. }
  4652. /* need to remember for below, since add_to_routerlist may free. */
  4653. tmp_cert_expiration_time = ri->cert_expiration_time;
  4654. r = router_add_to_routerlist(ri, &msg, 1, 0);
  4655. if (WRA_WAS_OUTDATED(r)) {
  4656. log_warn(LD_DIR, "Couldn't add re-parsed router: %s. This isn't "
  4657. "usually a big deal, but you should make sure that your "
  4658. "clock and timezone are set correctly.",
  4659. msg?msg:"???");
  4660. if (r == ROUTER_CERTS_EXPIRED) {
  4661. char time_cons[ISO_TIME_LEN+1];
  4662. char time_cert_expires[ISO_TIME_LEN+1];
  4663. format_iso_time(time_cons, consensus->valid_after);
  4664. format_iso_time(time_cert_expires, tmp_cert_expiration_time);
  4665. log_warn(LD_DIR, " (I'm looking at a consensus from %s; This "
  4666. "router's certificates began expiring at %s.)",
  4667. time_cons, time_cert_expires);
  4668. }
  4669. }
  4670. } SMARTLIST_FOREACH_END(sd);
  4671. routerlist_assert_ok(rl);
  4672. }
  4673. log_info(LD_DIR,
  4674. "%d router descriptors downloadable. %d delayed; %d present "
  4675. "(%d of those were in old_routers); %d would_reject; "
  4676. "%d wouldnt_use; %d in progress.",
  4677. smartlist_len(downloadable), n_delayed, n_have, n_in_oldrouters,
  4678. n_would_reject, n_wouldnt_use, n_inprogress);
  4679. launch_descriptor_downloads(DIR_PURPOSE_FETCH_SERVERDESC,
  4680. downloadable, source, now);
  4681. digestmap_free(map, NULL);
  4682. done:
  4683. smartlist_free(downloadable);
  4684. smartlist_free(no_longer_old);
  4685. }
  4686. /** How often should we launch a server/authority request to be sure of getting
  4687. * a guess for our IP? */
  4688. /*XXXX+ this info should come from netinfo cells or something, or we should
  4689. * do this only when we aren't seeing incoming data. see bug 652. */
  4690. #define DUMMY_DOWNLOAD_INTERVAL (20*60)
  4691. /** As needed, launch a dummy router descriptor fetch to see if our
  4692. * address has changed. */
  4693. static void
  4694. launch_dummy_descriptor_download_as_needed(time_t now,
  4695. const or_options_t *options)
  4696. {
  4697. static time_t last_dummy_download = 0;
  4698. /* XXXX+ we could be smarter here; see notes on bug 652. */
  4699. /* If we're a server that doesn't have a configured address, we rely on
  4700. * directory fetches to learn when our address changes. So if we haven't
  4701. * tried to get any routerdescs in a long time, try a dummy fetch now. */
  4702. if (!options->Address &&
  4703. server_mode(options) &&
  4704. last_descriptor_download_attempted + DUMMY_DOWNLOAD_INTERVAL < now &&
  4705. last_dummy_download + DUMMY_DOWNLOAD_INTERVAL < now) {
  4706. last_dummy_download = now;
  4707. /* XX/teor - do we want an authority here, because they are less likely
  4708. * to give us the wrong address? (See #17782)
  4709. * I'm leaving the previous behaviour intact, because I don't like
  4710. * the idea of some relays contacting an authority every 20 minutes. */
  4711. directory_get_from_dirserver(DIR_PURPOSE_FETCH_SERVERDESC,
  4712. ROUTER_PURPOSE_GENERAL, "authority.z",
  4713. PDS_RETRY_IF_NO_SERVERS,
  4714. DL_WANT_ANY_DIRSERVER);
  4715. }
  4716. }
  4717. /** Launch downloads for router status as needed. */
  4718. void
  4719. update_router_descriptor_downloads(time_t now)
  4720. {
  4721. const or_options_t *options = get_options();
  4722. if (should_delay_dir_fetches(options, NULL))
  4723. return;
  4724. if (!we_fetch_router_descriptors(options))
  4725. return;
  4726. update_consensus_router_descriptor_downloads(now, 0,
  4727. networkstatus_get_reasonably_live_consensus(now, FLAV_NS));
  4728. }
  4729. /** Launch extrainfo downloads as needed. */
  4730. void
  4731. update_extrainfo_downloads(time_t now)
  4732. {
  4733. const or_options_t *options = get_options();
  4734. routerlist_t *rl;
  4735. smartlist_t *wanted;
  4736. digestmap_t *pending;
  4737. int old_routers, i, max_dl_per_req;
  4738. int n_no_ei = 0, n_pending = 0, n_have = 0, n_delay = 0, n_bogus[2] = {0,0};
  4739. if (! options->DownloadExtraInfo)
  4740. return;
  4741. if (should_delay_dir_fetches(options, NULL))
  4742. return;
  4743. if (!router_have_minimum_dir_info())
  4744. return;
  4745. pending = digestmap_new();
  4746. list_pending_descriptor_downloads(pending, 1);
  4747. rl = router_get_routerlist();
  4748. wanted = smartlist_new();
  4749. for (old_routers = 0; old_routers < 2; ++old_routers) {
  4750. smartlist_t *lst = old_routers ? rl->old_routers : rl->routers;
  4751. for (i = 0; i < smartlist_len(lst); ++i) {
  4752. signed_descriptor_t *sd;
  4753. char *d;
  4754. if (old_routers)
  4755. sd = smartlist_get(lst, i);
  4756. else
  4757. sd = &((routerinfo_t*)smartlist_get(lst, i))->cache_info;
  4758. if (sd->is_extrainfo)
  4759. continue; /* This should never happen. */
  4760. if (old_routers && !router_get_by_id_digest(sd->identity_digest))
  4761. continue; /* Couldn't check the signature if we got it. */
  4762. if (sd->extrainfo_is_bogus)
  4763. continue;
  4764. d = sd->extra_info_digest;
  4765. if (tor_digest_is_zero(d)) {
  4766. ++n_no_ei;
  4767. continue;
  4768. }
  4769. if (eimap_get(rl->extra_info_map, d)) {
  4770. ++n_have;
  4771. continue;
  4772. }
  4773. if (!download_status_is_ready(&sd->ei_dl_status, now)) {
  4774. ++n_delay;
  4775. continue;
  4776. }
  4777. if (digestmap_get(pending, d)) {
  4778. ++n_pending;
  4779. continue;
  4780. }
  4781. const signed_descriptor_t *sd2 = router_get_by_extrainfo_digest(d);
  4782. if (sd2 != sd) {
  4783. if (sd2 != NULL) {
  4784. char d1[HEX_DIGEST_LEN+1], d2[HEX_DIGEST_LEN+1];
  4785. char d3[HEX_DIGEST_LEN+1], d4[HEX_DIGEST_LEN+1];
  4786. base16_encode(d1, sizeof(d1), sd->identity_digest, DIGEST_LEN);
  4787. base16_encode(d2, sizeof(d2), sd2->identity_digest, DIGEST_LEN);
  4788. base16_encode(d3, sizeof(d3), d, DIGEST_LEN);
  4789. base16_encode(d4, sizeof(d3), sd2->extra_info_digest, DIGEST_LEN);
  4790. log_info(LD_DIR, "Found an entry in %s with mismatched "
  4791. "router_get_by_extrainfo_digest() value. This has ID %s "
  4792. "but the entry in the map has ID %s. This has EI digest "
  4793. "%s and the entry in the map has EI digest %s.",
  4794. old_routers?"old_routers":"routers",
  4795. d1, d2, d3, d4);
  4796. } else {
  4797. char d1[HEX_DIGEST_LEN+1], d2[HEX_DIGEST_LEN+1];
  4798. base16_encode(d1, sizeof(d1), sd->identity_digest, DIGEST_LEN);
  4799. base16_encode(d2, sizeof(d2), d, DIGEST_LEN);
  4800. log_info(LD_DIR, "Found an entry in %s with NULL "
  4801. "router_get_by_extrainfo_digest() value. This has ID %s "
  4802. "and EI digest %s.",
  4803. old_routers?"old_routers":"routers",
  4804. d1, d2);
  4805. }
  4806. ++n_bogus[old_routers];
  4807. continue;
  4808. }
  4809. smartlist_add(wanted, d);
  4810. }
  4811. }
  4812. digestmap_free(pending, NULL);
  4813. log_info(LD_DIR, "Extrainfo download status: %d router with no ei, %d "
  4814. "with present ei, %d delaying, %d pending, %d downloadable, %d "
  4815. "bogus in routers, %d bogus in old_routers",
  4816. n_no_ei, n_have, n_delay, n_pending, smartlist_len(wanted),
  4817. n_bogus[0], n_bogus[1]);
  4818. smartlist_shuffle(wanted);
  4819. max_dl_per_req = max_dl_per_request(options, DIR_PURPOSE_FETCH_EXTRAINFO);
  4820. for (i = 0; i < smartlist_len(wanted); i += max_dl_per_req) {
  4821. initiate_descriptor_downloads(NULL, DIR_PURPOSE_FETCH_EXTRAINFO,
  4822. wanted, i, i+max_dl_per_req,
  4823. PDS_RETRY_IF_NO_SERVERS|PDS_NO_EXISTING_SERVERDESC_FETCH);
  4824. }
  4825. smartlist_free(wanted);
  4826. }
  4827. /** Reset the consensus and extra-info download failure count on all routers.
  4828. * When we get a new consensus,
  4829. * routers_update_status_from_consensus_networkstatus() will reset the
  4830. * download statuses on the descriptors in that consensus.
  4831. */
  4832. void
  4833. router_reset_descriptor_download_failures(void)
  4834. {
  4835. log_debug(LD_GENERAL,
  4836. "In router_reset_descriptor_download_failures()");
  4837. networkstatus_reset_download_failures();
  4838. last_descriptor_download_attempted = 0;
  4839. if (!routerlist)
  4840. return;
  4841. /* We want to download *all* extra-info descriptors, not just those in
  4842. * the consensus we currently have (or are about to have) */
  4843. SMARTLIST_FOREACH(routerlist->routers, routerinfo_t *, ri,
  4844. {
  4845. download_status_reset(&ri->cache_info.ei_dl_status);
  4846. });
  4847. SMARTLIST_FOREACH(routerlist->old_routers, signed_descriptor_t *, sd,
  4848. {
  4849. download_status_reset(&sd->ei_dl_status);
  4850. });
  4851. }
  4852. /** Any changes in a router descriptor's publication time larger than this are
  4853. * automatically non-cosmetic. */
  4854. #define ROUTER_MAX_COSMETIC_TIME_DIFFERENCE (2*60*60)
  4855. /** We allow uptime to vary from how much it ought to be by this much. */
  4856. #define ROUTER_ALLOW_UPTIME_DRIFT (6*60*60)
  4857. /** Return true iff the only differences between r1 and r2 are such that
  4858. * would not cause a recent (post 0.1.1.6) dirserver to republish.
  4859. */
  4860. int
  4861. router_differences_are_cosmetic(const routerinfo_t *r1, const routerinfo_t *r2)
  4862. {
  4863. time_t r1pub, r2pub;
  4864. long time_difference;
  4865. tor_assert(r1 && r2);
  4866. /* r1 should be the one that was published first. */
  4867. if (r1->cache_info.published_on > r2->cache_info.published_on) {
  4868. const routerinfo_t *ri_tmp = r2;
  4869. r2 = r1;
  4870. r1 = ri_tmp;
  4871. }
  4872. /* If any key fields differ, they're different. */
  4873. if (r1->addr != r2->addr ||
  4874. strcasecmp(r1->nickname, r2->nickname) ||
  4875. r1->or_port != r2->or_port ||
  4876. !tor_addr_eq(&r1->ipv6_addr, &r2->ipv6_addr) ||
  4877. r1->ipv6_orport != r2->ipv6_orport ||
  4878. r1->dir_port != r2->dir_port ||
  4879. r1->purpose != r2->purpose ||
  4880. !crypto_pk_eq_keys(r1->onion_pkey, r2->onion_pkey) ||
  4881. !crypto_pk_eq_keys(r1->identity_pkey, r2->identity_pkey) ||
  4882. strcasecmp(r1->platform, r2->platform) ||
  4883. (r1->contact_info && !r2->contact_info) || /* contact_info is optional */
  4884. (!r1->contact_info && r2->contact_info) ||
  4885. (r1->contact_info && r2->contact_info &&
  4886. strcasecmp(r1->contact_info, r2->contact_info)) ||
  4887. r1->is_hibernating != r2->is_hibernating ||
  4888. ! addr_policies_eq(r1->exit_policy, r2->exit_policy) ||
  4889. (r1->supports_tunnelled_dir_requests !=
  4890. r2->supports_tunnelled_dir_requests))
  4891. return 0;
  4892. if ((r1->declared_family == NULL) != (r2->declared_family == NULL))
  4893. return 0;
  4894. if (r1->declared_family && r2->declared_family) {
  4895. int i, n;
  4896. if (smartlist_len(r1->declared_family)!=smartlist_len(r2->declared_family))
  4897. return 0;
  4898. n = smartlist_len(r1->declared_family);
  4899. for (i=0; i < n; ++i) {
  4900. if (strcasecmp(smartlist_get(r1->declared_family, i),
  4901. smartlist_get(r2->declared_family, i)))
  4902. return 0;
  4903. }
  4904. }
  4905. /* Did bandwidth change a lot? */
  4906. if ((r1->bandwidthcapacity < r2->bandwidthcapacity/2) ||
  4907. (r2->bandwidthcapacity < r1->bandwidthcapacity/2))
  4908. return 0;
  4909. /* Did the bandwidthrate or bandwidthburst change? */
  4910. if ((r1->bandwidthrate != r2->bandwidthrate) ||
  4911. (r1->bandwidthburst != r2->bandwidthburst))
  4912. return 0;
  4913. /* Did more than 12 hours pass? */
  4914. if (r1->cache_info.published_on + ROUTER_MAX_COSMETIC_TIME_DIFFERENCE
  4915. < r2->cache_info.published_on)
  4916. return 0;
  4917. /* Did uptime fail to increase by approximately the amount we would think,
  4918. * give or take some slop? */
  4919. r1pub = r1->cache_info.published_on;
  4920. r2pub = r2->cache_info.published_on;
  4921. time_difference = labs(r2->uptime - (r1->uptime + (r2pub - r1pub)));
  4922. if (time_difference > ROUTER_ALLOW_UPTIME_DRIFT &&
  4923. time_difference > r1->uptime * .05 &&
  4924. time_difference > r2->uptime * .05)
  4925. return 0;
  4926. /* Otherwise, the difference is cosmetic. */
  4927. return 1;
  4928. }
  4929. /** Check whether <b>sd</b> describes a router descriptor compatible with the
  4930. * extrainfo document <b>ei</b>.
  4931. *
  4932. * <b>identity_pkey</b> (which must also be provided) is RSA1024 identity key
  4933. * for the router. We use it to check the signature of the extrainfo document,
  4934. * if it has not already been checked.
  4935. *
  4936. * If no router is compatible with <b>ei</b>, <b>ei</b> should be
  4937. * dropped. Return 0 for "compatible", return 1 for "reject, and inform
  4938. * whoever uploaded <b>ei</b>, and return -1 for "reject silently.". If
  4939. * <b>msg</b> is present, set *<b>msg</b> to a description of the
  4940. * incompatibility (if any).
  4941. *
  4942. * Set the extrainfo_is_bogus field in <b>sd</b> if the digests matched
  4943. * but the extrainfo was nonetheless incompatible.
  4944. **/
  4945. int
  4946. routerinfo_incompatible_with_extrainfo(const crypto_pk_t *identity_pkey,
  4947. extrainfo_t *ei,
  4948. signed_descriptor_t *sd,
  4949. const char **msg)
  4950. {
  4951. int digest_matches, digest256_matches, r=1;
  4952. tor_assert(identity_pkey);
  4953. tor_assert(sd);
  4954. tor_assert(ei);
  4955. if (ei->bad_sig) {
  4956. if (msg) *msg = "Extrainfo signature was bad, or signed with wrong key.";
  4957. return 1;
  4958. }
  4959. digest_matches = tor_memeq(ei->cache_info.signed_descriptor_digest,
  4960. sd->extra_info_digest, DIGEST_LEN);
  4961. /* Set digest256_matches to 1 if the digest is correct, or if no
  4962. * digest256 was in the ri. */
  4963. digest256_matches = tor_memeq(ei->digest256,
  4964. sd->extra_info_digest256, DIGEST256_LEN);
  4965. digest256_matches |=
  4966. tor_mem_is_zero(sd->extra_info_digest256, DIGEST256_LEN);
  4967. /* The identity must match exactly to have been generated at the same time
  4968. * by the same router. */
  4969. if (tor_memneq(sd->identity_digest,
  4970. ei->cache_info.identity_digest,
  4971. DIGEST_LEN)) {
  4972. if (msg) *msg = "Extrainfo nickname or identity did not match routerinfo";
  4973. goto err; /* different servers */
  4974. }
  4975. if (! tor_cert_opt_eq(sd->signing_key_cert,
  4976. ei->cache_info.signing_key_cert)) {
  4977. if (msg) *msg = "Extrainfo signing key cert didn't match routerinfo";
  4978. goto err; /* different servers */
  4979. }
  4980. if (ei->pending_sig) {
  4981. char signed_digest[128];
  4982. if (crypto_pk_public_checksig(identity_pkey,
  4983. signed_digest, sizeof(signed_digest),
  4984. ei->pending_sig, ei->pending_sig_len) != DIGEST_LEN ||
  4985. tor_memneq(signed_digest, ei->cache_info.signed_descriptor_digest,
  4986. DIGEST_LEN)) {
  4987. ei->bad_sig = 1;
  4988. tor_free(ei->pending_sig);
  4989. if (msg) *msg = "Extrainfo signature bad, or signed with wrong key";
  4990. goto err; /* Bad signature, or no match. */
  4991. }
  4992. ei->cache_info.send_unencrypted = sd->send_unencrypted;
  4993. tor_free(ei->pending_sig);
  4994. }
  4995. if (ei->cache_info.published_on < sd->published_on) {
  4996. if (msg) *msg = "Extrainfo published time did not match routerdesc";
  4997. goto err;
  4998. } else if (ei->cache_info.published_on > sd->published_on) {
  4999. if (msg) *msg = "Extrainfo published time did not match routerdesc";
  5000. r = -1;
  5001. goto err;
  5002. }
  5003. if (!digest256_matches && !digest_matches) {
  5004. if (msg) *msg = "Neither digest256 or digest matched "
  5005. "digest from routerdesc";
  5006. goto err;
  5007. }
  5008. if (!digest256_matches) {
  5009. if (msg) *msg = "Extrainfo digest did not match digest256 from routerdesc";
  5010. goto err; /* Digest doesn't match declared value. */
  5011. }
  5012. if (!digest_matches) {
  5013. if (msg) *msg = "Extrainfo digest did not match value from routerdesc";
  5014. goto err; /* Digest doesn't match declared value. */
  5015. }
  5016. return 0;
  5017. err:
  5018. if (digest_matches) {
  5019. /* This signature was okay, and the digest was right: This is indeed the
  5020. * corresponding extrainfo. But insanely, it doesn't match the routerinfo
  5021. * that lists it. Don't try to fetch this one again. */
  5022. sd->extrainfo_is_bogus = 1;
  5023. }
  5024. return r;
  5025. }
  5026. /* Does ri have a valid ntor onion key?
  5027. * Valid ntor onion keys exist and have at least one non-zero byte. */
  5028. int
  5029. routerinfo_has_curve25519_onion_key(const routerinfo_t *ri)
  5030. {
  5031. if (!ri) {
  5032. return 0;
  5033. }
  5034. if (!ri->onion_curve25519_pkey) {
  5035. return 0;
  5036. }
  5037. if (tor_mem_is_zero((const char*)ri->onion_curve25519_pkey->public_key,
  5038. CURVE25519_PUBKEY_LEN)) {
  5039. return 0;
  5040. }
  5041. return 1;
  5042. }
  5043. /* Is rs running a tor version known to support EXTEND2 cells?
  5044. * If allow_unknown_versions is true, return true if we can't tell
  5045. * (from a versions line or a protocols line) whether it supports extend2
  5046. * cells.
  5047. * Otherwise, return false if the version is unknown. */
  5048. int
  5049. routerstatus_version_supports_extend2_cells(const routerstatus_t *rs,
  5050. int allow_unknown_versions)
  5051. {
  5052. if (!rs) {
  5053. return allow_unknown_versions;
  5054. }
  5055. if (!rs->pv.protocols_known) {
  5056. return allow_unknown_versions;
  5057. }
  5058. return rs->pv.supports_extend2_cells;
  5059. }
  5060. /** Assert that the internal representation of <b>rl</b> is
  5061. * self-consistent. */
  5062. void
  5063. routerlist_assert_ok(const routerlist_t *rl)
  5064. {
  5065. routerinfo_t *r2;
  5066. signed_descriptor_t *sd2;
  5067. if (!rl)
  5068. return;
  5069. SMARTLIST_FOREACH_BEGIN(rl->routers, routerinfo_t *, r) {
  5070. r2 = rimap_get(rl->identity_map, r->cache_info.identity_digest);
  5071. tor_assert(r == r2);
  5072. sd2 = sdmap_get(rl->desc_digest_map,
  5073. r->cache_info.signed_descriptor_digest);
  5074. tor_assert(&(r->cache_info) == sd2);
  5075. tor_assert(r->cache_info.routerlist_index == r_sl_idx);
  5076. /* XXXX
  5077. *
  5078. * Hoo boy. We need to fix this one, and the fix is a bit tricky, so
  5079. * commenting this out is just a band-aid.
  5080. *
  5081. * The problem is that, although well-behaved router descriptors
  5082. * should never have the same value for their extra_info_digest, it's
  5083. * possible for ill-behaved routers to claim whatever they like there.
  5084. *
  5085. * The real answer is to trash desc_by_eid_map and instead have
  5086. * something that indicates for a given extra-info digest we want,
  5087. * what its download status is. We'll do that as a part of routerlist
  5088. * refactoring once consensus directories are in. For now,
  5089. * this rep violation is probably harmless: an adversary can make us
  5090. * reset our retry count for an extrainfo, but that's not the end
  5091. * of the world. Changing the representation in 0.2.0.x would just
  5092. * destabilize the codebase.
  5093. if (!tor_digest_is_zero(r->cache_info.extra_info_digest)) {
  5094. signed_descriptor_t *sd3 =
  5095. sdmap_get(rl->desc_by_eid_map, r->cache_info.extra_info_digest);
  5096. tor_assert(sd3 == &(r->cache_info));
  5097. }
  5098. */
  5099. } SMARTLIST_FOREACH_END(r);
  5100. SMARTLIST_FOREACH_BEGIN(rl->old_routers, signed_descriptor_t *, sd) {
  5101. r2 = rimap_get(rl->identity_map, sd->identity_digest);
  5102. tor_assert(!r2 || sd != &(r2->cache_info));
  5103. sd2 = sdmap_get(rl->desc_digest_map, sd->signed_descriptor_digest);
  5104. tor_assert(sd == sd2);
  5105. tor_assert(sd->routerlist_index == sd_sl_idx);
  5106. /* XXXX see above.
  5107. if (!tor_digest_is_zero(sd->extra_info_digest)) {
  5108. signed_descriptor_t *sd3 =
  5109. sdmap_get(rl->desc_by_eid_map, sd->extra_info_digest);
  5110. tor_assert(sd3 == sd);
  5111. }
  5112. */
  5113. } SMARTLIST_FOREACH_END(sd);
  5114. RIMAP_FOREACH(rl->identity_map, d, r) {
  5115. tor_assert(tor_memeq(r->cache_info.identity_digest, d, DIGEST_LEN));
  5116. } DIGESTMAP_FOREACH_END;
  5117. SDMAP_FOREACH(rl->desc_digest_map, d, sd) {
  5118. tor_assert(tor_memeq(sd->signed_descriptor_digest, d, DIGEST_LEN));
  5119. } DIGESTMAP_FOREACH_END;
  5120. SDMAP_FOREACH(rl->desc_by_eid_map, d, sd) {
  5121. tor_assert(!tor_digest_is_zero(d));
  5122. tor_assert(sd);
  5123. tor_assert(tor_memeq(sd->extra_info_digest, d, DIGEST_LEN));
  5124. } DIGESTMAP_FOREACH_END;
  5125. EIMAP_FOREACH(rl->extra_info_map, d, ei) {
  5126. signed_descriptor_t *sd;
  5127. tor_assert(tor_memeq(ei->cache_info.signed_descriptor_digest,
  5128. d, DIGEST_LEN));
  5129. sd = sdmap_get(rl->desc_by_eid_map,
  5130. ei->cache_info.signed_descriptor_digest);
  5131. // tor_assert(sd); // XXXX see above
  5132. if (sd) {
  5133. tor_assert(tor_memeq(ei->cache_info.signed_descriptor_digest,
  5134. sd->extra_info_digest, DIGEST_LEN));
  5135. }
  5136. } DIGESTMAP_FOREACH_END;
  5137. }
  5138. /** Allocate and return a new string representing the contact info
  5139. * and platform string for <b>router</b>,
  5140. * surrounded by quotes and using standard C escapes.
  5141. *
  5142. * THIS FUNCTION IS NOT REENTRANT. Don't call it from outside the main
  5143. * thread. Also, each call invalidates the last-returned value, so don't
  5144. * try log_warn(LD_GENERAL, "%s %s", esc_router_info(a), esc_router_info(b));
  5145. *
  5146. * If <b>router</b> is NULL, it just frees its internal memory and returns.
  5147. */
  5148. const char *
  5149. esc_router_info(const routerinfo_t *router)
  5150. {
  5151. static char *info=NULL;
  5152. char *esc_contact, *esc_platform;
  5153. tor_free(info);
  5154. if (!router)
  5155. return NULL; /* we're exiting; just free the memory we use */
  5156. esc_contact = esc_for_log(router->contact_info);
  5157. esc_platform = esc_for_log(router->platform);
  5158. tor_asprintf(&info, "Contact %s, Platform %s", esc_contact, esc_platform);
  5159. tor_free(esc_contact);
  5160. tor_free(esc_platform);
  5161. return info;
  5162. }
  5163. /** Helper for sorting: compare two routerinfos by their identity
  5164. * digest. */
  5165. static int
  5166. compare_routerinfo_by_id_digest_(const void **a, const void **b)
  5167. {
  5168. routerinfo_t *first = *(routerinfo_t **)a, *second = *(routerinfo_t **)b;
  5169. return fast_memcmp(first->cache_info.identity_digest,
  5170. second->cache_info.identity_digest,
  5171. DIGEST_LEN);
  5172. }
  5173. /** Sort a list of routerinfo_t in ascending order of identity digest. */
  5174. void
  5175. routers_sort_by_identity(smartlist_t *routers)
  5176. {
  5177. smartlist_sort(routers, compare_routerinfo_by_id_digest_);
  5178. }
  5179. /** Called when we change a node set, or when we reload the geoip IPv4 list:
  5180. * recompute all country info in all configuration node sets and in the
  5181. * routerlist. */
  5182. void
  5183. refresh_all_country_info(void)
  5184. {
  5185. const or_options_t *options = get_options();
  5186. if (options->EntryNodes)
  5187. routerset_refresh_countries(options->EntryNodes);
  5188. if (options->ExitNodes)
  5189. routerset_refresh_countries(options->ExitNodes);
  5190. if (options->ExcludeNodes)
  5191. routerset_refresh_countries(options->ExcludeNodes);
  5192. if (options->ExcludeExitNodes)
  5193. routerset_refresh_countries(options->ExcludeExitNodes);
  5194. if (options->ExcludeExitNodesUnion_)
  5195. routerset_refresh_countries(options->ExcludeExitNodesUnion_);
  5196. nodelist_refresh_countries();
  5197. }