microdesc.c 25 KB

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  1. /* Copyright (c) 2009-2012, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. #include "or.h"
  4. #include "circuitbuild.h"
  5. #include "config.h"
  6. #include "directory.h"
  7. #include "dirserv.h"
  8. #include "microdesc.h"
  9. #include "networkstatus.h"
  10. #include "nodelist.h"
  11. #include "policies.h"
  12. #include "router.h"
  13. #include "routerlist.h"
  14. #include "routerparse.h"
  15. /** A data structure to hold a bunch of cached microdescriptors. There are
  16. * two active files in the cache: a "cache file" that we mmap, and a "journal
  17. * file" that we append to. Periodically, we rebuild the cache file to hold
  18. * only the microdescriptors that we want to keep */
  19. struct microdesc_cache_t {
  20. /** Map from sha256-digest to microdesc_t for every microdesc_t in the
  21. * cache. */
  22. HT_HEAD(microdesc_map, microdesc_t) map;
  23. /** Name of the cache file. */
  24. char *cache_fname;
  25. /** Name of the journal file. */
  26. char *journal_fname;
  27. /** Mmap'd contents of the cache file, or NULL if there is none. */
  28. tor_mmap_t *cache_content;
  29. /** Number of bytes used in the journal file. */
  30. size_t journal_len;
  31. /** Number of bytes in descriptors removed as too old. */
  32. size_t bytes_dropped;
  33. /** Total bytes of microdescriptor bodies we have added to this cache */
  34. uint64_t total_len_seen;
  35. /** Total number of microdescriptors we have added to this cache */
  36. unsigned n_seen;
  37. };
  38. /** Helper: computes a hash of <b>md</b> to place it in a hash table. */
  39. static INLINE unsigned int
  40. _microdesc_hash(microdesc_t *md)
  41. {
  42. unsigned *d = (unsigned*)md->digest;
  43. #if SIZEOF_INT == 4
  44. return d[0] ^ d[1] ^ d[2] ^ d[3] ^ d[4] ^ d[5] ^ d[6] ^ d[7];
  45. #else
  46. return d[0] ^ d[1] ^ d[2] ^ d[3];
  47. #endif
  48. }
  49. /** Helper: compares <b>a</b> and </b> for equality for hash-table purposes. */
  50. static INLINE int
  51. _microdesc_eq(microdesc_t *a, microdesc_t *b)
  52. {
  53. return tor_memeq(a->digest, b->digest, DIGEST256_LEN);
  54. }
  55. HT_PROTOTYPE(microdesc_map, microdesc_t, node,
  56. _microdesc_hash, _microdesc_eq);
  57. HT_GENERATE(microdesc_map, microdesc_t, node,
  58. _microdesc_hash, _microdesc_eq, 0.6,
  59. malloc, realloc, free);
  60. /** Write the body of <b>md</b> into <b>f</b>, with appropriate annotations.
  61. * On success, return the total number of bytes written, and set
  62. * *<b>annotation_len_out</b> to the number of bytes written as
  63. * annotations. */
  64. static ssize_t
  65. dump_microdescriptor(FILE *f, microdesc_t *md, size_t *annotation_len_out)
  66. {
  67. ssize_t r = 0;
  68. size_t written;
  69. /* XXXX drops unkown annotations. */
  70. if (md->last_listed) {
  71. char buf[ISO_TIME_LEN+1];
  72. char annotation[ISO_TIME_LEN+32];
  73. format_iso_time(buf, md->last_listed);
  74. tor_snprintf(annotation, sizeof(annotation), "@last-listed %s\n", buf);
  75. if (fputs(annotation, f) < 0) {
  76. log_warn(LD_DIR,
  77. "Couldn't write microdescriptor annotation: %s",
  78. strerror(ferror(f)));
  79. return -1;
  80. }
  81. r += strlen(annotation);
  82. *annotation_len_out = r;
  83. } else {
  84. *annotation_len_out = 0;
  85. }
  86. md->off = (off_t) ftell(f);
  87. written = fwrite(md->body, 1, md->bodylen, f);
  88. if (written != md->bodylen) {
  89. log_warn(LD_DIR,
  90. "Couldn't dump microdescriptor (wrote %lu out of %lu): %s",
  91. (unsigned long)written, (unsigned long)md->bodylen,
  92. strerror(ferror(f)));
  93. return -1;
  94. }
  95. r += md->bodylen;
  96. return r;
  97. }
  98. /** Holds a pointer to the current microdesc_cache_t object, or NULL if no
  99. * such object has been allocated. */
  100. static microdesc_cache_t *the_microdesc_cache = NULL;
  101. /** Return a pointer to the microdescriptor cache, loading it if necessary. */
  102. microdesc_cache_t *
  103. get_microdesc_cache(void)
  104. {
  105. if (PREDICT_UNLIKELY(the_microdesc_cache==NULL)) {
  106. microdesc_cache_t *cache = tor_malloc_zero(sizeof(microdesc_cache_t));
  107. HT_INIT(microdesc_map, &cache->map);
  108. cache->cache_fname = get_datadir_fname("cached-microdescs");
  109. cache->journal_fname = get_datadir_fname("cached-microdescs.new");
  110. microdesc_cache_reload(cache);
  111. the_microdesc_cache = cache;
  112. }
  113. return the_microdesc_cache;
  114. }
  115. /* There are three sources of microdescriptors:
  116. 1) Generated by us while acting as a directory authority.
  117. 2) Loaded from the cache on disk.
  118. 3) Downloaded.
  119. */
  120. /** Decode the microdescriptors from the string starting at <b>s</b> and
  121. * ending at <b>eos</b>, and store them in <b>cache</b>. If <b>no-save</b>,
  122. * mark them as non-writable to disk. If <b>where</b> is SAVED_IN_CACHE,
  123. * leave their bodies as pointers to the mmap'd cache. If where is
  124. * <b>SAVED_NOWHERE</b>, do not allow annotations. If listed_at is positive,
  125. * set the last_listed field of every microdesc to listed_at. If
  126. * requested_digests is non-null, then it contains a list of digests we mean
  127. * to allow, so we should reject any non-requested microdesc with a different
  128. * digest, and alter the list to contain only the digests of those microdescs
  129. * we didn't find.
  130. * Return a newly allocated list of the added microdescriptors, or NULL */
  131. smartlist_t *
  132. microdescs_add_to_cache(microdesc_cache_t *cache,
  133. const char *s, const char *eos, saved_location_t where,
  134. int no_save, time_t listed_at,
  135. smartlist_t *requested_digests256)
  136. {
  137. smartlist_t *descriptors, *added;
  138. const int allow_annotations = (where != SAVED_NOWHERE);
  139. descriptors = microdescs_parse_from_string(s, eos,
  140. allow_annotations,
  141. where);
  142. if (listed_at > 0) {
  143. SMARTLIST_FOREACH(descriptors, microdesc_t *, md,
  144. md->last_listed = listed_at);
  145. }
  146. if (requested_digests256) {
  147. digestmap_t *requested; /* XXXX actuqlly we should just use a
  148. digest256map */
  149. requested = digestmap_new();
  150. SMARTLIST_FOREACH(requested_digests256, const char *, cp,
  151. digestmap_set(requested, cp, (void*)1));
  152. SMARTLIST_FOREACH_BEGIN(descriptors, microdesc_t *, md) {
  153. if (digestmap_get(requested, md->digest)) {
  154. digestmap_set(requested, md->digest, (void*)2);
  155. } else {
  156. log_fn(LOG_PROTOCOL_WARN, LD_DIR, "Received non-requested microcdesc");
  157. microdesc_free(md);
  158. SMARTLIST_DEL_CURRENT(descriptors, md);
  159. }
  160. } SMARTLIST_FOREACH_END(md);
  161. SMARTLIST_FOREACH_BEGIN(requested_digests256, char *, cp) {
  162. if (digestmap_get(requested, cp) == (void*)2) {
  163. tor_free(cp);
  164. SMARTLIST_DEL_CURRENT(requested_digests256, cp);
  165. }
  166. } SMARTLIST_FOREACH_END(cp);
  167. digestmap_free(requested, NULL);
  168. }
  169. added = microdescs_add_list_to_cache(cache, descriptors, where, no_save);
  170. smartlist_free(descriptors);
  171. return added;
  172. }
  173. /** As microdescs_add_to_cache, but takes a list of micrdescriptors instead of
  174. * a string to decode. Frees any members of <b>descriptors</b> that it does
  175. * not add. */
  176. smartlist_t *
  177. microdescs_add_list_to_cache(microdesc_cache_t *cache,
  178. smartlist_t *descriptors, saved_location_t where,
  179. int no_save)
  180. {
  181. smartlist_t *added;
  182. open_file_t *open_file = NULL;
  183. FILE *f = NULL;
  184. // int n_added = 0;
  185. ssize_t size = 0;
  186. if (where == SAVED_NOWHERE && !no_save) {
  187. f = start_writing_to_stdio_file(cache->journal_fname,
  188. OPEN_FLAGS_APPEND|O_BINARY,
  189. 0600, &open_file);
  190. if (!f) {
  191. log_warn(LD_DIR, "Couldn't append to journal in %s: %s",
  192. cache->journal_fname, strerror(errno));
  193. return NULL;
  194. }
  195. }
  196. added = smartlist_new();
  197. SMARTLIST_FOREACH_BEGIN(descriptors, microdesc_t *, md) {
  198. microdesc_t *md2;
  199. md2 = HT_FIND(microdesc_map, &cache->map, md);
  200. if (md2) {
  201. /* We already had this one. */
  202. if (md2->last_listed < md->last_listed)
  203. md2->last_listed = md->last_listed;
  204. microdesc_free(md);
  205. if (where != SAVED_NOWHERE)
  206. cache->bytes_dropped += size;
  207. continue;
  208. }
  209. /* Okay, it's a new one. */
  210. if (f) {
  211. size_t annotation_len;
  212. size = dump_microdescriptor(f, md, &annotation_len);
  213. if (size < 0) {
  214. /* we already warned in dump_microdescriptor; */
  215. abort_writing_to_file(open_file);
  216. smartlist_clear(added);
  217. return added;
  218. }
  219. md->saved_location = SAVED_IN_JOURNAL;
  220. cache->journal_len += size;
  221. } else {
  222. md->saved_location = where;
  223. }
  224. md->no_save = no_save;
  225. HT_INSERT(microdesc_map, &cache->map, md);
  226. md->held_in_map = 1;
  227. smartlist_add(added, md);
  228. ++cache->n_seen;
  229. cache->total_len_seen += md->bodylen;
  230. } SMARTLIST_FOREACH_END(md);
  231. if (f)
  232. finish_writing_to_file(open_file); /*XXX Check me.*/
  233. {
  234. networkstatus_t *ns = networkstatus_get_latest_consensus();
  235. if (ns && ns->flavor == FLAV_MICRODESC)
  236. SMARTLIST_FOREACH(added, microdesc_t *, md, nodelist_add_microdesc(md));
  237. }
  238. if (smartlist_len(added))
  239. router_dir_info_changed();
  240. return added;
  241. }
  242. /** Remove every microdescriptor in <b>cache</b>. */
  243. void
  244. microdesc_cache_clear(microdesc_cache_t *cache)
  245. {
  246. microdesc_t **entry, **next;
  247. for (entry = HT_START(microdesc_map, &cache->map); entry; entry = next) {
  248. microdesc_t *md = *entry;
  249. next = HT_NEXT_RMV(microdesc_map, &cache->map, entry);
  250. md->held_in_map = 0;
  251. microdesc_free(md);
  252. }
  253. HT_CLEAR(microdesc_map, &cache->map);
  254. if (cache->cache_content) {
  255. tor_munmap_file(cache->cache_content);
  256. cache->cache_content = NULL;
  257. }
  258. cache->total_len_seen = 0;
  259. cache->n_seen = 0;
  260. cache->bytes_dropped = 0;
  261. }
  262. /** Reload the contents of <b>cache</b> from disk. If it is empty, load it
  263. * for the first time. Return 0 on success, -1 on failure. */
  264. int
  265. microdesc_cache_reload(microdesc_cache_t *cache)
  266. {
  267. struct stat st;
  268. char *journal_content;
  269. smartlist_t *added;
  270. tor_mmap_t *mm;
  271. int total = 0;
  272. microdesc_cache_clear(cache);
  273. mm = cache->cache_content = tor_mmap_file(cache->cache_fname);
  274. if (mm) {
  275. added = microdescs_add_to_cache(cache, mm->data, mm->data+mm->size,
  276. SAVED_IN_CACHE, 0, -1, NULL);
  277. if (added) {
  278. total += smartlist_len(added);
  279. smartlist_free(added);
  280. }
  281. }
  282. journal_content = read_file_to_str(cache->journal_fname,
  283. RFTS_IGNORE_MISSING, &st);
  284. if (journal_content) {
  285. cache->journal_len = (size_t) st.st_size;
  286. added = microdescs_add_to_cache(cache, journal_content,
  287. journal_content+st.st_size,
  288. SAVED_IN_JOURNAL, 0, -1, NULL);
  289. if (added) {
  290. total += smartlist_len(added);
  291. smartlist_free(added);
  292. }
  293. tor_free(journal_content);
  294. }
  295. log_notice(LD_DIR, "Reloaded microdescriptor cache. Found %d descriptors.",
  296. total);
  297. microdesc_cache_rebuild(cache, 0 /* don't force */);
  298. return 0;
  299. }
  300. /** By default, we remove any microdescriptors that have gone at least this
  301. * long without appearing in a current consensus. */
  302. #define TOLERATE_MICRODESC_AGE (7*24*60*60)
  303. /** Remove all microdescriptors from <b>cache</b> that haven't been listed for
  304. * a long time. Does not rebuild the cache on disk. If <b>cutoff</b> is
  305. * positive, specifically remove microdescriptors that have been unlisted
  306. * since <b>cutoff</b>. If <b>force</b> is true, remove microdescriptors even
  307. * if we have no current live microdescriptor consensus.
  308. */
  309. void
  310. microdesc_cache_clean(microdesc_cache_t *cache, time_t cutoff, int force)
  311. {
  312. microdesc_t **mdp, *victim;
  313. int dropped=0, kept=0;
  314. size_t bytes_dropped = 0;
  315. time_t now = time(NULL);
  316. /* If we don't know a live consensus, don't believe last_listed values: we
  317. * might be starting up after being down for a while. */
  318. if (! force &&
  319. ! networkstatus_get_reasonably_live_consensus(now, FLAV_MICRODESC))
  320. return;
  321. if (cutoff <= 0)
  322. cutoff = now - TOLERATE_MICRODESC_AGE;
  323. for (mdp = HT_START(microdesc_map, &cache->map); mdp != NULL; ) {
  324. if ((*mdp)->last_listed < cutoff) {
  325. ++dropped;
  326. victim = *mdp;
  327. mdp = HT_NEXT_RMV(microdesc_map, &cache->map, mdp);
  328. victim->held_in_map = 0;
  329. bytes_dropped += victim->bodylen;
  330. microdesc_free(victim);
  331. } else {
  332. ++kept;
  333. mdp = HT_NEXT(microdesc_map, &cache->map, mdp);
  334. }
  335. }
  336. if (dropped) {
  337. log_info(LD_DIR, "Removed %d/%d microdescriptors as old.",
  338. dropped,dropped+kept);
  339. cache->bytes_dropped += bytes_dropped;
  340. }
  341. }
  342. static int
  343. should_rebuild_md_cache(microdesc_cache_t *cache)
  344. {
  345. const size_t old_len =
  346. cache->cache_content ? cache->cache_content->size : 0;
  347. const size_t journal_len = cache->journal_len;
  348. const size_t dropped = cache->bytes_dropped;
  349. if (journal_len < 16384)
  350. return 0; /* Don't bother, not enough has happened yet. */
  351. if (dropped > (journal_len + old_len) / 3)
  352. return 1; /* We could save 1/3 or more of the currently used space. */
  353. if (journal_len > old_len / 2)
  354. return 1; /* We should append to the regular file */
  355. return 0;
  356. }
  357. /** Regenerate the main cache file for <b>cache</b>, clear the journal file,
  358. * and update every microdesc_t in the cache with pointers to its new
  359. * location. If <b>force</b> is true, do this unconditionally. If
  360. * <b>force</b> is false, do it only if we expect to save space on disk. */
  361. int
  362. microdesc_cache_rebuild(microdesc_cache_t *cache, int force)
  363. {
  364. open_file_t *open_file;
  365. FILE *f;
  366. microdesc_t **mdp;
  367. smartlist_t *wrote;
  368. ssize_t size;
  369. off_t off = 0;
  370. int orig_size, new_size;
  371. if (cache == NULL) {
  372. cache = the_microdesc_cache;
  373. if (cache == NULL)
  374. return 0;
  375. }
  376. /* Remove dead descriptors */
  377. microdesc_cache_clean(cache, 0/*cutoff*/, 0/*force*/);
  378. if (!force && !should_rebuild_md_cache(cache))
  379. return 0;
  380. log_info(LD_DIR, "Rebuilding the microdescriptor cache...");
  381. orig_size = (int)(cache->cache_content ? cache->cache_content->size : 0);
  382. orig_size += (int)cache->journal_len;
  383. f = start_writing_to_stdio_file(cache->cache_fname,
  384. OPEN_FLAGS_REPLACE|O_BINARY,
  385. 0600, &open_file);
  386. if (!f)
  387. return -1;
  388. wrote = smartlist_new();
  389. HT_FOREACH(mdp, microdesc_map, &cache->map) {
  390. microdesc_t *md = *mdp;
  391. size_t annotation_len;
  392. if (md->no_save)
  393. continue;
  394. size = dump_microdescriptor(f, md, &annotation_len);
  395. if (size < 0) {
  396. /* XXX handle errors from dump_microdescriptor() */
  397. /* log? return -1? die? coredump the universe? */
  398. continue;
  399. }
  400. tor_assert(((size_t)size) == annotation_len + md->bodylen);
  401. md->off = off + annotation_len;
  402. off += size;
  403. if (md->saved_location != SAVED_IN_CACHE) {
  404. tor_free(md->body);
  405. md->saved_location = SAVED_IN_CACHE;
  406. }
  407. smartlist_add(wrote, md);
  408. }
  409. if (cache->cache_content)
  410. tor_munmap_file(cache->cache_content);
  411. finish_writing_to_file(open_file); /*XXX Check me.*/
  412. cache->cache_content = tor_mmap_file(cache->cache_fname);
  413. if (!cache->cache_content && smartlist_len(wrote)) {
  414. log_err(LD_DIR, "Couldn't map file that we just wrote to %s!",
  415. cache->cache_fname);
  416. smartlist_free(wrote);
  417. return -1;
  418. }
  419. SMARTLIST_FOREACH_BEGIN(wrote, microdesc_t *, md) {
  420. tor_assert(md->saved_location == SAVED_IN_CACHE);
  421. md->body = (char*)cache->cache_content->data + md->off;
  422. if (PREDICT_UNLIKELY(
  423. md->bodylen < 9 || fast_memneq(md->body, "onion-key", 9) != 0)) {
  424. /* XXXX once bug 2022 is solved, we can kill this block and turn it
  425. * into just the tor_assert(!memcmp) */
  426. off_t avail = cache->cache_content->size - md->off;
  427. char *bad_str;
  428. tor_assert(avail >= 0);
  429. bad_str = tor_strndup(md->body, MIN(128, (size_t)avail));
  430. log_err(LD_BUG, "After rebuilding microdesc cache, offsets seem wrong. "
  431. " At offset %d, I expected to find a microdescriptor starting "
  432. " with \"onion-key\". Instead I got %s.",
  433. (int)md->off, escaped(bad_str));
  434. tor_free(bad_str);
  435. tor_assert(fast_memeq(md->body, "onion-key", 9));
  436. }
  437. } SMARTLIST_FOREACH_END(md);
  438. smartlist_free(wrote);
  439. write_str_to_file(cache->journal_fname, "", 1);
  440. cache->journal_len = 0;
  441. cache->bytes_dropped = 0;
  442. new_size = cache->cache_content ? (int)cache->cache_content->size : 0;
  443. log_info(LD_DIR, "Done rebuilding microdesc cache. "
  444. "Saved %d bytes; %d still used.",
  445. orig_size-new_size, new_size);
  446. return 0;
  447. }
  448. /** Make sure that the reference count of every microdescriptor in cache is
  449. * accurate. */
  450. void
  451. microdesc_check_counts(void)
  452. {
  453. microdesc_t **mdp;
  454. if (!the_microdesc_cache)
  455. return;
  456. HT_FOREACH(mdp, microdesc_map, &the_microdesc_cache->map) {
  457. microdesc_t *md = *mdp;
  458. unsigned int found=0;
  459. const smartlist_t *nodes = nodelist_get_list();
  460. SMARTLIST_FOREACH(nodes, node_t *, node, {
  461. if (node->md == md) {
  462. ++found;
  463. }
  464. });
  465. tor_assert(found == md->held_by_nodes);
  466. }
  467. }
  468. /** Deallocate a single microdescriptor. Note: the microdescriptor MUST have
  469. * previously been removed from the cache if it had ever been inserted. */
  470. void
  471. microdesc_free(microdesc_t *md)
  472. {
  473. if (!md)
  474. return;
  475. /* Make sure that the microdesc was really removed from the appropriate data
  476. structures. */
  477. if (md->held_in_map) {
  478. microdesc_cache_t *cache = get_microdesc_cache();
  479. microdesc_t *md2 = HT_FIND(microdesc_map, &cache->map, md);
  480. if (md2 == md) {
  481. log_warn(LD_BUG, "microdesc_free() called, but md was still in "
  482. "microdesc_map");
  483. HT_REMOVE(microdesc_map, &cache->map, md);
  484. } else {
  485. log_warn(LD_BUG, "microdesc_free() called with held_in_map set, but "
  486. "microdesc was not in the map.");
  487. }
  488. tor_fragile_assert();
  489. }
  490. if (md->held_by_nodes) {
  491. int found=0;
  492. const smartlist_t *nodes = nodelist_get_list();
  493. SMARTLIST_FOREACH(nodes, node_t *, node, {
  494. if (node->md == md) {
  495. ++found;
  496. node->md = NULL;
  497. }
  498. });
  499. if (found) {
  500. log_warn(LD_BUG, "microdesc_free() called, but md was still referenced "
  501. "%d node(s); held_by_nodes == %u", found, md->held_by_nodes);
  502. } else {
  503. log_warn(LD_BUG, "microdesc_free() called with held_by_nodes set to %u, "
  504. "but md was not referenced by any nodes", md->held_by_nodes);
  505. }
  506. tor_fragile_assert();
  507. }
  508. //tor_assert(md->held_in_map == 0);
  509. //tor_assert(md->held_by_nodes == 0);
  510. if (md->onion_pkey)
  511. crypto_pk_free(md->onion_pkey);
  512. if (md->body && md->saved_location != SAVED_IN_CACHE)
  513. tor_free(md->body);
  514. if (md->family) {
  515. SMARTLIST_FOREACH(md->family, char *, cp, tor_free(cp));
  516. smartlist_free(md->family);
  517. }
  518. short_policy_free(md->exit_policy);
  519. tor_free(md);
  520. }
  521. /** Free all storage held in the microdesc.c module. */
  522. void
  523. microdesc_free_all(void)
  524. {
  525. if (the_microdesc_cache) {
  526. microdesc_cache_clear(the_microdesc_cache);
  527. tor_free(the_microdesc_cache->cache_fname);
  528. tor_free(the_microdesc_cache->journal_fname);
  529. tor_free(the_microdesc_cache);
  530. }
  531. }
  532. /** If there is a microdescriptor in <b>cache</b> whose sha256 digest is
  533. * <b>d</b>, return it. Otherwise return NULL. */
  534. microdesc_t *
  535. microdesc_cache_lookup_by_digest256(microdesc_cache_t *cache, const char *d)
  536. {
  537. microdesc_t *md, search;
  538. if (!cache)
  539. cache = get_microdesc_cache();
  540. memcpy(search.digest, d, DIGEST256_LEN);
  541. md = HT_FIND(microdesc_map, &cache->map, &search);
  542. return md;
  543. }
  544. /** Return the mean size of decriptors added to <b>cache</b> since it was last
  545. * cleared. Used to estimate the size of large downloads. */
  546. size_t
  547. microdesc_average_size(microdesc_cache_t *cache)
  548. {
  549. if (!cache)
  550. cache = get_microdesc_cache();
  551. if (!cache->n_seen)
  552. return 512;
  553. return (size_t)(cache->total_len_seen / cache->n_seen);
  554. }
  555. /** Return a smartlist of all the sha256 digest of the microdescriptors that
  556. * are listed in <b>ns</b> but not present in <b>cache</b>. Returns pointers
  557. * to internals of <b>ns</b>; you should not free the members of the resulting
  558. * smartlist. Omit all microdescriptors whose digest appear in <b>skip</b>. */
  559. smartlist_t *
  560. microdesc_list_missing_digest256(networkstatus_t *ns, microdesc_cache_t *cache,
  561. int downloadable_only, digestmap_t *skip)
  562. {
  563. smartlist_t *result = smartlist_new();
  564. time_t now = time(NULL);
  565. tor_assert(ns->flavor == FLAV_MICRODESC);
  566. SMARTLIST_FOREACH_BEGIN(ns->routerstatus_list, routerstatus_t *, rs) {
  567. if (microdesc_cache_lookup_by_digest256(cache, rs->descriptor_digest))
  568. continue;
  569. if (downloadable_only &&
  570. !download_status_is_ready(&rs->dl_status, now,
  571. MAX_MICRODESC_DOWNLOAD_FAILURES))
  572. continue;
  573. if (skip && digestmap_get(skip, rs->descriptor_digest))
  574. continue;
  575. if (tor_mem_is_zero(rs->descriptor_digest, DIGEST256_LEN))
  576. continue;
  577. /* XXXX Also skip if we're a noncache and wouldn't use this router.
  578. * XXXX NM Microdesc
  579. */
  580. smartlist_add(result, rs->descriptor_digest);
  581. } SMARTLIST_FOREACH_END(rs);
  582. return result;
  583. }
  584. /** Launch download requests for microdescriptors as appropriate.
  585. *
  586. * Specifically, we should launch download requests if we are configured to
  587. * download mirodescriptors, and there are some microdescriptors listed the
  588. * current microdesc consensus that we don't have, and either we never asked
  589. * for them, or we failed to download them but we're willing to retry.
  590. */
  591. void
  592. update_microdesc_downloads(time_t now)
  593. {
  594. const or_options_t *options = get_options();
  595. networkstatus_t *consensus;
  596. smartlist_t *missing;
  597. digestmap_t *pending;
  598. if (should_delay_dir_fetches(options))
  599. return;
  600. if (directory_too_idle_to_fetch_descriptors(options, now))
  601. return;
  602. consensus = networkstatus_get_reasonably_live_consensus(now, FLAV_MICRODESC);
  603. if (!consensus)
  604. return;
  605. if (!we_fetch_microdescriptors(options))
  606. return;
  607. pending = digestmap_new();
  608. list_pending_microdesc_downloads(pending);
  609. missing = microdesc_list_missing_digest256(consensus,
  610. get_microdesc_cache(),
  611. 1,
  612. pending);
  613. digestmap_free(pending, NULL);
  614. launch_descriptor_downloads(DIR_PURPOSE_FETCH_MICRODESC,
  615. missing, NULL, now);
  616. smartlist_free(missing);
  617. }
  618. /** For every microdescriptor listed in the current microdecriptor consensus,
  619. * update its last_listed field to be at least as recent as the publication
  620. * time of the current microdescriptor consensus.
  621. */
  622. void
  623. update_microdescs_from_networkstatus(time_t now)
  624. {
  625. microdesc_cache_t *cache = get_microdesc_cache();
  626. microdesc_t *md;
  627. networkstatus_t *ns =
  628. networkstatus_get_reasonably_live_consensus(now, FLAV_MICRODESC);
  629. if (! ns)
  630. return;
  631. tor_assert(ns->flavor == FLAV_MICRODESC);
  632. SMARTLIST_FOREACH_BEGIN(ns->routerstatus_list, routerstatus_t *, rs) {
  633. md = microdesc_cache_lookup_by_digest256(cache, rs->descriptor_digest);
  634. if (md && ns->valid_after > md->last_listed)
  635. md->last_listed = ns->valid_after;
  636. } SMARTLIST_FOREACH_END(rs);
  637. }
  638. /** Return true iff we should prefer to use microdescriptors rather than
  639. * routerdescs for building circuits. */
  640. int
  641. we_use_microdescriptors_for_circuits(const or_options_t *options)
  642. {
  643. int ret = options->UseMicrodescriptors;
  644. if (ret == -1) {
  645. /* UseMicrodescriptors is "auto"; we need to decide: */
  646. /* If we are configured to use bridges and one of our bridges doesn't
  647. * know what a microdescriptor is, the answer is no. */
  648. if (options->UseBridges && any_bridges_dont_support_microdescriptors())
  649. return 0;
  650. /* Otherwise, we decide that we'll use microdescriptors iff we are
  651. * not a server, and we're not autofetching everything. */
  652. /* XXX023 what does not being a server have to do with it? also there's
  653. * a partitioning issue here where bridges differ from clients. */
  654. ret = !server_mode(options) && !options->FetchUselessDescriptors;
  655. }
  656. return ret;
  657. }
  658. /** Return true iff we should try to download microdescriptors at all. */
  659. int
  660. we_fetch_microdescriptors(const or_options_t *options)
  661. {
  662. if (directory_caches_dir_info(options))
  663. return 1;
  664. if (options->FetchUselessDescriptors)
  665. return 1;
  666. return we_use_microdescriptors_for_circuits(options);
  667. }
  668. /** Return true iff we should try to download router descriptors at all. */
  669. int
  670. we_fetch_router_descriptors(const or_options_t *options)
  671. {
  672. if (directory_caches_dir_info(options))
  673. return 1;
  674. if (options->FetchUselessDescriptors)
  675. return 1;
  676. return ! we_use_microdescriptors_for_circuits(options);
  677. }
  678. /** Return the consensus flavor we actually want to use to build circuits. */
  679. int
  680. usable_consensus_flavor(void)
  681. {
  682. if (we_use_microdescriptors_for_circuits(get_options())) {
  683. return FLAV_MICRODESC;
  684. } else {
  685. return FLAV_NS;
  686. }
  687. }