routerparse.c 42 KB

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  1. /* Copyright 2001-2003 Roger Dingledine, Matej Pfajfar. */
  2. /* See LICENSE for licensing information */
  3. /* $Id$ */
  4. /**
  5. * \file routerparse.c
  6. *
  7. * \brief Code to parse and validate router descriptors and directories.
  8. **/
  9. /* This is required on rh7 to make strptime not complain.
  10. */
  11. #define _GNU_SOURCE
  12. #include "or.h"
  13. /****************************************************************************/
  14. /** Enumeration of possible token types. The ones starting with K_
  15. * correspond to directory 'keywords'. _UNRECOGNIZED is for an
  16. * unrecognized keyword; _ERR is an error in the tokenizing process,
  17. * _EOF is an end-of-file marker, and _NIL is used to encode
  18. * not-a-token.
  19. */
  20. typedef enum {
  21. K_ACCEPT,
  22. K_DIRECTORY_SIGNATURE,
  23. K_RECOMMENDED_SOFTWARE,
  24. K_REJECT,
  25. K_ROUTER,
  26. K_SIGNED_DIRECTORY,
  27. K_SIGNING_KEY,
  28. K_ONION_KEY,
  29. K_LINK_KEY, /* XXXX obsolete; remove in June. */
  30. K_ROUTER_SIGNATURE,
  31. K_PUBLISHED,
  32. K_RUNNING_ROUTERS,
  33. K_PLATFORM,
  34. K_OPT,
  35. K_BANDWIDTH,
  36. K_PORTS,
  37. K_DIRCACHEPORT,
  38. K_CONTACT,
  39. K_NETWORK_STATUS,
  40. _UNRECOGNIZED,
  41. _ERR,
  42. _EOF,
  43. _NIL
  44. } directory_keyword;
  45. /** Structure to hold a single directory token.
  46. *
  47. * We parse a directory by breaking it into "tokens", each consisting
  48. * of a keyword, a line full of arguments, and a binary object. The
  49. * arguments and object are both optional, depending on the keyword
  50. * type.
  51. */
  52. typedef struct directory_token_t {
  53. directory_keyword tp; /**< Type of the token. */
  54. int n_args; /**< Number of elements in args */
  55. char **args; /**< Array of arguments from keyword line. */
  56. char *object_type; /**< -----BEGIN [object_type]-----*/
  57. int object_size; /**< Bytes in object_body */
  58. char *object_body; /**< Contents of object, base64-decoded. */
  59. crypto_pk_env_t *key; /**< For public keys only. */
  60. char *error; /**< For _ERR tokens only. */
  61. } directory_token_t;
  62. /* ********************************************************************** */
  63. /** We use a table of rules to decide how to parse each token type. */
  64. /** Rules for how many arguments a keyword can take. */
  65. typedef enum {
  66. NO_ARGS, /**< (1) no arguments, ever */
  67. ARGS, /**< (2) a list of arguments separated by spaces */
  68. CONCAT_ARGS, /**< or (3) the rest of the line, treated as a single argument. */
  69. } arg_syntax;
  70. /** Rules for whether the keyword needs an object. */
  71. typedef enum {
  72. NO_OBJ, /**< (1) no object, ever */
  73. NEED_OBJ, /**< (2) object is required */
  74. NEED_KEY, /**< (3) object is required, and must be a public key. */
  75. OBJ_OK, /**< or (4) object is optional. */
  76. } obj_syntax;
  77. /** Rules for where a keyword can appear. */
  78. typedef enum {
  79. ANY = 0, /**< Appears in router descriptor or in directory sections. */
  80. DIR_ONLY, /**< Appears only in directory. */
  81. RTR_ONLY, /**< Appears only in router descriptor or runningrouters */
  82. } where_syntax;
  83. /** Table mapping keywords to token value and to argument rules. */
  84. static struct {
  85. char *t; int v; arg_syntax s; obj_syntax os; where_syntax ws;
  86. } token_table[] = {
  87. { "accept", K_ACCEPT, ARGS, NO_OBJ, RTR_ONLY },
  88. { "directory-signature", K_DIRECTORY_SIGNATURE, ARGS, NEED_OBJ,DIR_ONLY},
  89. { "reject", K_REJECT, ARGS, NO_OBJ, RTR_ONLY },
  90. { "router", K_ROUTER, ARGS, NO_OBJ, RTR_ONLY },
  91. { "recommended-software",K_RECOMMENDED_SOFTWARE,ARGS, NO_OBJ, DIR_ONLY },
  92. { "signed-directory", K_SIGNED_DIRECTORY, NO_ARGS, NO_OBJ, DIR_ONLY },
  93. { "signing-key", K_SIGNING_KEY, NO_ARGS, NEED_KEY,RTR_ONLY },
  94. { "onion-key", K_ONION_KEY, NO_ARGS, NEED_KEY,RTR_ONLY },
  95. { "link-key", K_LINK_KEY, NO_ARGS, NEED_KEY,RTR_ONLY },
  96. { "router-signature", K_ROUTER_SIGNATURE, NO_ARGS, NEED_OBJ,RTR_ONLY },
  97. { "running-routers", K_RUNNING_ROUTERS, ARGS, NO_OBJ, DIR_ONLY },
  98. { "ports", K_PORTS, ARGS, NO_OBJ, RTR_ONLY },
  99. { "bandwidth", K_BANDWIDTH, ARGS, NO_OBJ, RTR_ONLY },
  100. { "platform", K_PLATFORM, CONCAT_ARGS, NO_OBJ, RTR_ONLY },
  101. { "published", K_PUBLISHED, CONCAT_ARGS, NO_OBJ, ANY },
  102. { "opt", K_OPT, CONCAT_ARGS, OBJ_OK, ANY },
  103. { "dircacheport", K_DIRCACHEPORT, ARGS, NO_OBJ, RTR_ONLY },
  104. { "contact", K_CONTACT, CONCAT_ARGS, NO_OBJ, ANY },
  105. { "network-status", K_NETWORK_STATUS, NO_ARGS, NO_OBJ, DIR_ONLY },
  106. { NULL, -1 }
  107. };
  108. /* static function prototypes */
  109. static int router_add_exit_policy(routerinfo_t *router,directory_token_t *tok);
  110. static struct exit_policy_t *router_parse_exit_policy(directory_token_t *tok);
  111. static int router_get_hash_impl(const char *s, char *digest,
  112. const char *start_str, const char *end_str);
  113. static void token_free(directory_token_t *tok);
  114. static smartlist_t *find_all_exitpolicy(smartlist_t *s);
  115. static directory_token_t *find_first_by_keyword(smartlist_t *s,
  116. directory_keyword keyword);
  117. static int tokenize_string(const char *start, const char *end,
  118. smartlist_t *out, int is_dir);
  119. static directory_token_t *get_next_token(const char **s, where_syntax where);
  120. static int check_directory_signature(const char *digest,
  121. directory_token_t *tok,
  122. crypto_pk_env_t *pkey);
  123. /** Set <b>digest</b> to the SHA-1 digest of the hash of the directory in
  124. * <b>s</b>. Return 0 on success, nonzero on failure.
  125. */
  126. int router_get_dir_hash(const char *s, char *digest)
  127. {
  128. return router_get_hash_impl(s,digest,
  129. "signed-directory","directory-signature");
  130. }
  131. /** Set <b>digest</b> to the SHA-1 digest of the hash of the first router in
  132. * <b>s</b>. Return 0 on success, nonzero on failure.
  133. */
  134. int router_get_router_hash(const char *s, char *digest)
  135. {
  136. return router_get_hash_impl(s,digest,
  137. "router ","router-signature");
  138. }
  139. /** Set <b>digest</b> to the SHA-1 digest of the hash of the running-routers
  140. * string in <b>s</b>. Return 0 on success, nonzero on failure.
  141. */
  142. int router_get_runningrouters_hash(const char *s, char *digest)
  143. {
  144. return router_get_hash_impl(s,digest,
  145. "network-status ","directory-signature");
  146. }
  147. /** Parse a date of the format "YYYY-MM-DD hh:mm:ss" and store the result into
  148. * *<b>t</b>.
  149. */
  150. /* XXX this should go in util.c, yes? -RD */
  151. static int parse_time(const char *cp, time_t *t)
  152. {
  153. struct tm st_tm;
  154. #ifdef HAVE_STRPTIME
  155. if (!strptime(cp, "%Y-%m-%d %H:%M:%S", &st_tm)) {
  156. log_fn(LOG_WARN, "Published time was unparseable"); return -1;
  157. }
  158. #else
  159. unsigned int year=0, month=0, day=0, hour=100, minute=100, second=100;
  160. if (sscanf(cp, "%u-%u-%u %u:%u:%u", &year, &month,
  161. &day, &hour, &minute, &second) < 6) {
  162. log_fn(LOG_WARN, "Published time was unparseable"); return -1;
  163. }
  164. if (year < 1970 || month < 1 || month > 12 || day < 1 || day > 31 ||
  165. hour > 23 || minute > 59 || second > 61) {
  166. log_fn(LOG_WARN, "Published time was nonsensical"); return -1;
  167. }
  168. st_tm.tm_year = year;
  169. st_tm.tm_mon = month-1;
  170. st_tm.tm_mday = day;
  171. st_tm.tm_hour = hour;
  172. st_tm.tm_min = minute;
  173. st_tm.tm_sec = second;
  174. #endif
  175. *t = tor_timegm(&st_tm);
  176. return 0;
  177. }
  178. /**
  179. * Find the first instance of "recommended-software ...\n" at the start of
  180. * a line; return a newly allocated string containing the "..." portion.
  181. * Return NULL if no such instance was found.
  182. */
  183. static char *
  184. get_recommended_software_from_directory(const char *str)
  185. {
  186. #define REC "recommended-software "
  187. const char *cp = str, *eol;
  188. int len = strlen(REC);
  189. cp = str;
  190. if (strncmp(str, REC, len)==0) {
  191. cp += len;
  192. } else {
  193. cp = strstr(str, "\n"REC);
  194. if (!cp)
  195. return NULL;
  196. cp += len+1;
  197. }
  198. eol = strchr(cp, '\n');
  199. if (!eol)
  200. return NULL;
  201. return tor_strndup(cp, eol-cp);
  202. #undef REC
  203. }
  204. /** Return 1 if <b>myversion</b> is not in <b>versionlist</b>, and if at least
  205. * one version of Tor on <b>versionlist</b> is newer than <b>myversion</b>.
  206. * Otherwise return 0.
  207. * (versionlist is a comma-separated list of version strings,
  208. * optionally prefixed with "Tor". Versions that can't be parsed are
  209. * ignored.) */
  210. /* static */ int is_obsolete_version(const char *myversion,
  211. const char *versionlist) {
  212. char *version, *comma, *cp;
  213. tor_version_t mine, other;
  214. int found_newer = 0, r;
  215. log_fn(LOG_DEBUG,"checking '%s' in '%s'.", myversion, versionlist);
  216. if (tor_version_parse(myversion, &mine)) {
  217. log_fn(LOG_ERR, "I couldn't parse my own version (%s)", myversion);
  218. tor_assert(0);
  219. }
  220. for(;;) {
  221. comma = strchr(versionlist, ',');
  222. version = tor_strndup(versionlist,
  223. comma?(comma-versionlist):strlen(versionlist));
  224. cp = version;
  225. while (isspace(*cp))
  226. ++cp;
  227. if (!strncmp(cp, "Tor ", 4))
  228. cp += 4;
  229. if (tor_version_parse(cp, &other)) {
  230. /* Couldn't parse other; it can't be a match. */
  231. } else {
  232. r = tor_version_compare(&mine, &other);
  233. if (r==0) {
  234. tor_free(version);
  235. return 0; /* It's a match. */
  236. } else if (r<0) {
  237. found_newer = 1;
  238. }
  239. }
  240. tor_free(version);
  241. if (comma)
  242. versionlist = comma+1;
  243. else
  244. break;
  245. }
  246. if (!found_newer) {
  247. log_fn(LOG_WARN, "This version of Tor (%s) is newer than any on the recommended list (%s)",
  248. myversion, versionlist);
  249. return 0;
  250. } else {
  251. return 1;
  252. }
  253. }
  254. /* Return 0 if myversion is supported; else log a message and return
  255. * -1 (or exit if ignoreversions is false) */
  256. int check_software_version_against_directory(const char *directory,
  257. int ignoreversion)
  258. {
  259. char *v;
  260. v = get_recommended_software_from_directory(directory);
  261. if (!v) {
  262. log_fn(LOG_WARN, "No recommended-versions string found in directory");
  263. return -1;
  264. }
  265. if (!is_obsolete_version(VERSION, v)) {
  266. tor_free(v);
  267. return 0;
  268. }
  269. log(ignoreversion ? LOG_WARN : LOG_ERR,
  270. "You are running Tor version %s, which will not work with this network.\n"
  271. "Please use %s%s.",
  272. VERSION, strchr(v,',') ? "one of " : "", v);
  273. tor_free(v);
  274. if(ignoreversion) {
  275. log(LOG_WARN, "IgnoreVersion is set. If it breaks, we told you so.");
  276. return -1;
  277. } else {
  278. fflush(0);
  279. tor_cleanup();
  280. exit(0);
  281. return -1; /* never reached */
  282. }
  283. }
  284. /** Parse a directory from <b>str</b> and, when done, store the
  285. * resulting routerlist in *<b>dest</b>, freeing the old value if necessary.
  286. * If <b>pkey</b> is provided, we check the directory signature with pkey.
  287. */
  288. int /* Should be static; exposed for unit tests */
  289. router_parse_routerlist_from_directory(const char *str,
  290. routerlist_t **dest,
  291. crypto_pk_env_t *pkey)
  292. {
  293. directory_token_t *tok;
  294. char digest[DIGEST_LEN];
  295. routerlist_t *new_dir = NULL;
  296. char *versions = NULL;
  297. smartlist_t *good_nickname_list = NULL;
  298. time_t published_on;
  299. int i, r;
  300. const char *end;
  301. smartlist_t *tokens = NULL;
  302. if (router_get_dir_hash(str, digest)) {
  303. log_fn(LOG_WARN, "Unable to compute digest of directory");
  304. goto err;
  305. }
  306. log_fn(LOG_DEBUG,"Received directory hashes to %s",hex_str(digest,4));
  307. if ((end = strstr(str,"\nrouter "))) {
  308. ++end;
  309. } else if ((end = strstr(str, "\ndirectory-signature"))) {
  310. ++end;
  311. } else {
  312. end = str + strlen(str);
  313. }
  314. tokens = smartlist_create();
  315. if (tokenize_string(str,end,tokens,1)) {
  316. log_fn(LOG_WARN, "Error tokenizing directory"); goto err;
  317. }
  318. if (smartlist_len(tokens) < 1) {
  319. log_fn(LOG_WARN, "Impossibly short directory header"); goto err;
  320. }
  321. if ((tok = find_first_by_keyword(tokens, _UNRECOGNIZED))) {
  322. log_fn(LOG_WARN, "Unrecognized keyword in \"%s\"; can't parse directory.",
  323. tok->args[0]);
  324. goto err;
  325. }
  326. tok = smartlist_get(tokens,0);
  327. if (tok->tp != K_SIGNED_DIRECTORY) {
  328. log_fn(LOG_WARN, "Directory doesn't start with signed-directory.");
  329. goto err;
  330. }
  331. if (!(tok = find_first_by_keyword(tokens, K_PUBLISHED))) {
  332. log_fn(LOG_WARN, "Missing published time on directory.");
  333. goto err;
  334. }
  335. tor_assert(tok->n_args == 1);
  336. if (parse_time(tok->args[0], &published_on) < 0) {
  337. goto err;
  338. }
  339. if (!(tok = find_first_by_keyword(tokens, K_RECOMMENDED_SOFTWARE))) {
  340. log_fn(LOG_WARN, "Missing recommended-software line from directory.");
  341. goto err;
  342. }
  343. if (tok->n_args != 1) {
  344. log_fn(LOG_WARN, "Invalid recommended-software line"); goto err;
  345. }
  346. versions = tor_strdup(tok->args[0]);
  347. if (!(tok = find_first_by_keyword(tokens, K_RUNNING_ROUTERS))) {
  348. log_fn(LOG_WARN, "Missing running-routers line from directory.");
  349. goto err;
  350. }
  351. good_nickname_list = smartlist_create();
  352. for (i=0; i<tok->n_args; ++i) {
  353. smartlist_add(good_nickname_list, tok->args[i]);
  354. }
  355. tok->n_args = 0; /* Don't free the strings in good_nickname_lst yet. */
  356. /* Read the router list from s, advancing s up past the end of the last
  357. * router. */
  358. str = end;
  359. if (router_parse_list_from_string(&str, &new_dir,
  360. good_nickname_list, published_on)) {
  361. log_fn(LOG_WARN, "Error reading routers from directory");
  362. goto err;
  363. }
  364. new_dir->software_versions = versions; versions = NULL;
  365. new_dir->published_on = published_on;
  366. SMARTLIST_FOREACH(tokens, directory_token_t *, tok, token_free(tok));
  367. smartlist_free(tokens);
  368. tokens = smartlist_create();
  369. if (tokenize_string(str,str+strlen(str),tokens,1)<0) {
  370. log_fn(LOG_WARN, "Error tokenizing signature"); goto err;
  371. }
  372. if (smartlist_len(tokens) != 1 ||
  373. (!(tok=smartlist_get(tokens,0))) || /* always succeeds */
  374. (tok->tp != K_DIRECTORY_SIGNATURE)) {
  375. log_fn(LOG_WARN,"Expected a single directory signature"); goto err;
  376. }
  377. if (check_directory_signature(digest, smartlist_get(tokens,0), pkey)<0) {
  378. goto err;
  379. }
  380. /* Determine if my routerinfo is considered verified. */
  381. {
  382. static int have_warned_about_unverified_status = 0;
  383. routerinfo_t *me = router_get_my_routerinfo();
  384. if(me) {
  385. router_update_status_from_smartlist(me, published_on,
  386. good_nickname_list);
  387. if(me->is_verified == 0 && !have_warned_about_unverified_status) {
  388. log_fn(LOG_WARN,"Dirserver %s lists your server as unverified. Please consider sending your identity fingerprint to the tor-ops.", "");
  389. /* XXX008 can we print the name of the dirserver above? how to get it */
  390. have_warned_about_unverified_status = 1;
  391. }
  392. }
  393. }
  394. if (*dest)
  395. routerlist_free(*dest);
  396. *dest = new_dir;
  397. r = 0;
  398. goto done;
  399. err:
  400. r = -1;
  401. if (new_dir)
  402. routerlist_free(new_dir);
  403. tor_free(versions);
  404. done:
  405. if (tokens) {
  406. SMARTLIST_FOREACH(tokens, directory_token_t *, tok, token_free(tok));
  407. smartlist_free(tokens);
  408. }
  409. if (good_nickname_list) {
  410. SMARTLIST_FOREACH(good_nickname_list, char *, n, tor_free(n));
  411. smartlist_free(good_nickname_list);
  412. }
  413. return r;
  414. }
  415. running_routers_t *
  416. router_parse_runningrouters(const char *str)
  417. {
  418. char digest[DIGEST_LEN];
  419. running_routers_t *new_list = NULL;
  420. directory_token_t *tok;
  421. time_t published_on;
  422. int i;
  423. smartlist_t *tokens = NULL;
  424. if (router_get_runningrouters_hash(str, digest)) {
  425. log_fn(LOG_WARN, "Unable to compute digest of directory");
  426. goto err;
  427. }
  428. tokens = smartlist_create();
  429. if (tokenize_string(str,str+strlen(str),tokens,1)) {
  430. log_fn(LOG_WARN, "Error tokenizing directory"); goto err;
  431. }
  432. if ((tok = find_first_by_keyword(tokens, _UNRECOGNIZED))) {
  433. log_fn(LOG_WARN, "Unrecognized keyword in \"%s\"; can't parse directory.",
  434. tok->args[0]);
  435. goto err;
  436. }
  437. tok = smartlist_get(tokens,0);
  438. if (tok->tp != K_NETWORK_STATUS) {
  439. log_fn(LOG_WARN, "Network-status starts with wrong token");
  440. goto err;
  441. }
  442. if (!(tok = find_first_by_keyword(tokens, K_PUBLISHED))) {
  443. log_fn(LOG_WARN, "Missing published time on directory.");
  444. goto err;
  445. }
  446. tor_assert(tok->n_args == 1);
  447. if (parse_time(tok->args[0], &published_on) < 0) {
  448. goto err;
  449. }
  450. if (!(tok = find_first_by_keyword(tokens, K_RUNNING_ROUTERS))) {
  451. log_fn(LOG_WARN, "Missing running-routers line from directory.");
  452. goto err;
  453. }
  454. new_list = tor_malloc_zero(sizeof(running_routers_t));
  455. new_list->published_on = published_on;
  456. new_list->running_routers = smartlist_create();
  457. for (i=0;i<tok->n_args;++i) {
  458. smartlist_add(new_list->running_routers, tok->args[i]);
  459. }
  460. if (!(tok = find_first_by_keyword(tokens, K_DIRECTORY_SIGNATURE))) {
  461. log_fn(LOG_WARN, "Missing signature on directory");
  462. goto err;
  463. }
  464. if (check_directory_signature(digest, tok, NULL)<0) {
  465. goto err;
  466. }
  467. goto done;
  468. err:
  469. running_routers_free(new_list);
  470. new_list = NULL;
  471. done:
  472. if (tokens) {
  473. SMARTLIST_FOREACH(tokens, directory_token_t *, tok, token_free(tok));
  474. smartlist_free(tokens);
  475. }
  476. return new_list;
  477. }
  478. static int check_directory_signature(const char *digest,
  479. directory_token_t *tok,
  480. crypto_pk_env_t *pkey)
  481. {
  482. char signed_digest[PK_BYTES];
  483. if (tok->n_args == 1) {
  484. routerinfo_t *r = router_get_by_nickname(tok->args[0]);
  485. log_fn(LOG_DEBUG, "Got directory signed by %s", tok->args[0]);
  486. if (r && r->is_trusted_dir) {
  487. pkey = r->identity_pkey;
  488. } else if (!r && pkey) {
  489. /* pkey provided for debugging purposes. */
  490. } else if (!r) {
  491. log_fn(LOG_WARN, "Directory was signed by unrecognized server %s",
  492. tok->args[0]);
  493. return -1;
  494. } else if (r && !r->is_trusted_dir) {
  495. log_fn(LOG_WARN, "Directory was signed by non-trusted server %s",
  496. tok->args[0]);
  497. return -1;
  498. }
  499. } else if (tok->n_args > 1) {
  500. log_fn(LOG_WARN, "Too many arguments to directory-signature");
  501. return -1;
  502. }
  503. if (strcmp(tok->object_type, "SIGNATURE") || tok->object_size != 128) {
  504. log_fn(LOG_WARN, "Bad object type or length on directory signature");
  505. return -1;
  506. }
  507. if (pkey) {
  508. if (crypto_pk_public_checksig(pkey, tok->object_body, 128, signed_digest)
  509. != 20) {
  510. log_fn(LOG_WARN, "Error reading directory: invalid signature.");
  511. return -1;
  512. }
  513. log(LOG_DEBUG,"Signed directory hash starts %s", hex_str(signed_digest,4));
  514. if (memcmp(digest, signed_digest, 20)) {
  515. log_fn(LOG_WARN, "Error reading directory: signature does not match.");
  516. return -1;
  517. }
  518. } else {
  519. /* XXXX008 freak out, unless testing. */
  520. }
  521. return 0;
  522. }
  523. /** Given a string *<b>s</b> containing a concatenated sequence of router
  524. * descriptors, parses them and stores the result in *<b>dest</b>. If
  525. * good_nickname_list is provided, then routers are marked as
  526. * running/nonrunning and verified/unverified based on their status in the
  527. * list. Otherwise, all routers are marked running and verified. Advances
  528. * *s to a point immediately following the last router entry. Returns 0 on
  529. * success and -1 on failure.
  530. */
  531. int
  532. router_parse_list_from_string(const char **s, routerlist_t **dest,
  533. smartlist_t *good_nickname_list,
  534. time_t published_on)
  535. {
  536. routerinfo_t *router;
  537. smartlist_t *routers;
  538. const char *end;
  539. tor_assert(s && *s);
  540. routers = smartlist_create();
  541. while (1) {
  542. *s = eat_whitespace(*s);
  543. /* Don't start parsing the rest of *s unless it contains a router. */
  544. if (strncmp(*s, "router ", 7)!=0)
  545. break;
  546. if ((end = strstr(*s+1, "\nrouter "))) {
  547. end++;
  548. } else if ((end = strstr(*s+1, "\ndirectory-signature"))) {
  549. end++;
  550. } else {
  551. end = *s+strlen(*s);
  552. }
  553. router = router_parse_entry_from_string(*s, end);
  554. *s = end;
  555. if (!router) {
  556. log_fn(LOG_WARN, "Error reading router; skipping");
  557. continue;
  558. }
  559. if (good_nickname_list) {
  560. router_update_status_from_smartlist(router, published_on,
  561. good_nickname_list);
  562. } else {
  563. router->is_running = 1; /* start out assuming all dirservers are up */
  564. router->is_verified = 1;
  565. router->status_set_at = time(NULL);
  566. }
  567. smartlist_add(routers, router);
  568. log_fn(LOG_DEBUG,"just added router #%d.",smartlist_len(routers));
  569. }
  570. if (*dest)
  571. routerlist_free(*dest);
  572. *dest = tor_malloc(sizeof(routerlist_t));
  573. (*dest)->routers = routers;
  574. (*dest)->software_versions = NULL;
  575. return 0;
  576. }
  577. /** Helper function: reads a single router entry from *<b>s</b> ...
  578. * *<b>end</b>. Mallocs a new router and returns it if all goes well, else
  579. * returns NULL.
  580. */
  581. routerinfo_t *router_parse_entry_from_string(const char *s,
  582. const char *end) {
  583. routerinfo_t *router = NULL;
  584. char signed_digest[128];
  585. char digest[128];
  586. smartlist_t *tokens = NULL, *exit_policy_tokens = NULL;
  587. directory_token_t *tok;
  588. int t;
  589. int ports_set, bw_set;
  590. if (!end) {
  591. end = s + strlen(s);
  592. }
  593. if (router_get_router_hash(s, digest) < 0) {
  594. log_fn(LOG_WARN, "Couldn't compute router hash.");
  595. return NULL;
  596. }
  597. tokens = smartlist_create();
  598. if (tokenize_string(s,end,tokens,0)) {
  599. log_fn(LOG_WARN, "Error tokeninzing router descriptor."); goto err;
  600. }
  601. if (smartlist_len(tokens) < 2) {
  602. log_fn(LOG_WARN, "Impossibly short router descriptor.");
  603. goto err;
  604. }
  605. if ((tok = find_first_by_keyword(tokens, _UNRECOGNIZED))) {
  606. log_fn(LOG_WARN, "Unrecognized keyword in \"%s\"; skipping descriptor.",
  607. tok->args[0]);
  608. goto err;
  609. }
  610. tok = smartlist_get(tokens,0);
  611. if (tok->tp != K_ROUTER) {
  612. log_fn(LOG_WARN,"Entry does not start with \"router\"");
  613. goto err;
  614. }
  615. router = tor_malloc_zero(sizeof(routerinfo_t));
  616. router->onion_pkey = router->identity_pkey = NULL;
  617. ports_set = bw_set = 0;
  618. if (tok->n_args == 2 || tok->n_args == 5 || tok->n_args == 6) {
  619. router->nickname = tor_strdup(tok->args[0]);
  620. if (strlen(router->nickname) > MAX_NICKNAME_LEN) {
  621. log_fn(LOG_WARN,"Router nickname too long.");
  622. goto err;
  623. }
  624. if (strspn(router->nickname, LEGAL_NICKNAME_CHARACTERS) !=
  625. strlen(router->nickname)) {
  626. log_fn(LOG_WARN, "Router nickname contains illegal characters.");
  627. goto err;
  628. }
  629. router->address = tor_strdup(tok->args[1]);
  630. router->addr = 0;
  631. if (tok->n_args >= 5) {
  632. router->or_port = atoi(tok->args[2]);
  633. router->socks_port = atoi(tok->args[3]);
  634. router->dir_port = atoi(tok->args[4]);
  635. ports_set = 1;
  636. }
  637. } else {
  638. log_fn(LOG_WARN,"Wrong # of arguments to \"router\" (%d)",tok->n_args);
  639. goto err;
  640. }
  641. tok = find_first_by_keyword(tokens, K_PORTS);
  642. if (tok && ports_set) {
  643. log_fn(LOG_WARN,"Redundant ports line");
  644. goto err;
  645. } else if (tok) {
  646. if (tok->n_args != 3) {
  647. log_fn(LOG_WARN,"Wrong # of arguments to \"ports\"");
  648. goto err;
  649. }
  650. router->or_port = atoi(tok->args[0]);
  651. router->socks_port = atoi(tok->args[1]);
  652. router->dir_port = atoi(tok->args[2]);
  653. ports_set = 1;
  654. }
  655. tok = find_first_by_keyword(tokens, K_DIRCACHEPORT);
  656. if (tok) {
  657. if (router->dir_port)
  658. log_fn(LOG_WARN,"Redundant dircacheport line");
  659. if (tok->n_args != 1) {
  660. log_fn(LOG_WARN,"Wrong # of arguments to \"dircacheport\"");
  661. goto err;
  662. }
  663. router->dir_port = atoi(tok->args[0]);
  664. }
  665. tok = find_first_by_keyword(tokens, K_BANDWIDTH);
  666. if (tok && bw_set) {
  667. log_fn(LOG_WARN,"Redundant bandwidth line");
  668. goto err;
  669. } else if (tok) {
  670. /* XXX set this to "< 3" once 0.0.7 is obsolete */
  671. if (tok->n_args < 2) {
  672. log_fn(LOG_WARN,"Not enough arguments to \"bandwidth\"");
  673. goto err;
  674. }
  675. router->bandwidthrate = atoi(tok->args[0]);
  676. router->bandwidthburst = atoi(tok->args[1]);
  677. if(tok->n_args > 2)
  678. router->advertisedbandwidth = atoi(tok->args[2]);
  679. bw_set = 1;
  680. }
  681. if (!(tok = find_first_by_keyword(tokens, K_PUBLISHED))) {
  682. log_fn(LOG_WARN, "Missing published time"); goto err;
  683. }
  684. tor_assert(tok->n_args == 1);
  685. if (parse_time(tok->args[0], &router->published_on) < 0)
  686. goto err;
  687. if (!(tok = find_first_by_keyword(tokens, K_ONION_KEY))) {
  688. log_fn(LOG_WARN, "Missing onion key"); goto err;
  689. }
  690. /* XXX Check key length */
  691. router->onion_pkey = tok->key;
  692. tok->key = NULL; /* Prevent free */
  693. if ((tok = find_first_by_keyword(tokens, K_LINK_KEY))) {
  694. log_fn(LOG_INFO, "Skipping obsolete link-key");
  695. }
  696. if (!(tok = find_first_by_keyword(tokens, K_SIGNING_KEY))) {
  697. log_fn(LOG_WARN, "Missing identity key"); goto err;
  698. }
  699. /* XXX Check key length */
  700. router->identity_pkey = tok->key;
  701. tok->key = NULL; /* Prevent free */
  702. if (crypto_pk_get_digest(router->identity_pkey,router->identity_digest)){
  703. log_fn(LOG_WARN, "Couldn't calculate key digest"); goto err;
  704. }
  705. if ((tok = find_first_by_keyword(tokens, K_PLATFORM))) {
  706. router->platform = tor_strdup(tok->args[0]);
  707. }
  708. exit_policy_tokens = find_all_exitpolicy(tokens);
  709. SMARTLIST_FOREACH(exit_policy_tokens, directory_token_t *, t,
  710. if (router_add_exit_policy(router,t)<0) {
  711. log_fn(LOG_WARN,"Error in exit policy"); goto err;}
  712. );
  713. if (!(tok = find_first_by_keyword(tokens, K_ROUTER_SIGNATURE))) {
  714. log_fn(LOG_WARN, "Missing router signature"); goto err;
  715. }
  716. if (strcmp(tok->object_type, "SIGNATURE") || tok->object_size != 128) {
  717. log_fn(LOG_WARN, "Bad object type or length on router signature");
  718. goto err;
  719. }
  720. if ((t=crypto_pk_public_checksig(router->identity_pkey, tok->object_body,
  721. 128, signed_digest)) != 20) {
  722. log_fn(LOG_WARN, "Invalid signature %d",t); goto err;
  723. }
  724. if (memcmp(digest, signed_digest, 20)) {
  725. log_fn(LOG_WARN, "Mismatched signature"); goto err;
  726. }
  727. if (!ports_set) {
  728. log_fn(LOG_WARN,"No ports declared; failing."); goto err;
  729. }
  730. if (!bw_set) {
  731. log_fn(LOG_WARN,"No bandwidth declared; failing."); goto err;
  732. }
  733. if(!router->or_port) {
  734. log_fn(LOG_WARN,"or_port unreadable or 0. Failing.");
  735. goto err;
  736. }
  737. if (!router->bandwidthrate) {
  738. log_fn(LOG_WARN,"bandwidthrate unreadable or 0. Failing.");
  739. goto err;
  740. }
  741. if (!router->platform) {
  742. router->platform = tor_strdup("<unknown>");
  743. }
  744. log_fn(LOG_DEBUG,"or_port %d, socks_port %d, dir_port %d, bandwidthrate %u, bandwidthburst %u.",
  745. router->or_port, router->socks_port, router->dir_port,
  746. (unsigned) router->bandwidthrate, (unsigned) router->bandwidthburst);
  747. goto done;
  748. return router;
  749. err:
  750. routerinfo_free(router);
  751. router = NULL;
  752. done:
  753. if (tokens) {
  754. SMARTLIST_FOREACH(tokens, directory_token_t *, tok, token_free(tok));
  755. smartlist_free(tokens);
  756. }
  757. if (exit_policy_tokens) {
  758. smartlist_free(exit_policy_tokens);
  759. }
  760. return router;
  761. }
  762. /** Parse the exit policy in the string <b>s</b> and return it.
  763. */
  764. struct exit_policy_t *
  765. router_parse_exit_policy_from_string(const char *s)
  766. {
  767. directory_token_t *tok = NULL;
  768. const char *cp;
  769. char *tmp;
  770. struct exit_policy_t *r;
  771. int len, idx;
  772. /* *s might not end with \n, so we need to extend it with one. */
  773. len = strlen(s);
  774. cp = tmp = tor_malloc(len+2);
  775. for (idx = 0; idx < len; ++idx) {
  776. tmp[idx] = tolower(s[idx]);
  777. }
  778. tmp[len]='\n';
  779. tmp[len+1]='\0';
  780. tok = get_next_token(&cp, RTR_ONLY);
  781. if (tok->tp == _ERR) {
  782. log_fn(LOG_WARN, "Error reading exit policy: %s", tok->error);
  783. goto err;
  784. }
  785. if (tok->tp != K_ACCEPT && tok->tp != K_REJECT) {
  786. log_fn(LOG_WARN, "Expected 'accept' or 'reject'.");
  787. goto err;
  788. }
  789. /* Now that we've gotten an exit policy, add it to the router. */
  790. r = router_parse_exit_policy(tok);
  791. goto done;
  792. err:
  793. r = NULL;
  794. done:
  795. free(tmp);
  796. token_free(tok);
  797. return r;
  798. }
  799. int router_add_exit_policy_from_string(routerinfo_t *router, const char *s)
  800. {
  801. struct exit_policy_t *newe, *tmpe;
  802. newe = router_parse_exit_policy_from_string(s);
  803. if (!newe)
  804. return -1;
  805. for (tmpe = router->exit_policy; tmpe; tmpe=tmpe->next)
  806. ;
  807. tmpe->next = newe;
  808. return 0;
  809. }
  810. static int router_add_exit_policy(routerinfo_t *router,directory_token_t *tok)
  811. {
  812. struct exit_policy_t *newe, **tmpe;
  813. newe = router_parse_exit_policy(tok);
  814. if (!newe)
  815. return -1;
  816. for (tmpe = &router->exit_policy; *tmpe; tmpe=&((*tmpe)->next))
  817. ;
  818. *tmpe = newe;
  819. return 0;
  820. }
  821. /** Given a K_ACCEPT or K_REJECT token and a router, create a new exit_policy_t
  822. * corresponding to the token, and add it to <b>router</b> */
  823. static struct exit_policy_t *
  824. router_parse_exit_policy(directory_token_t *tok) {
  825. struct exit_policy_t*newe;
  826. struct in_addr in;
  827. char *arg, *address, *mask, *port, *endptr;
  828. int bits;
  829. tor_assert(tok->tp == K_REJECT || tok->tp == K_ACCEPT);
  830. if (tok->n_args != 1)
  831. return NULL;
  832. arg = tok->args[0];
  833. newe = tor_malloc_zero(sizeof(struct exit_policy_t));
  834. newe->string = tor_malloc(8+strlen(arg));
  835. if (tok->tp == K_REJECT) {
  836. strcpy(newe->string, "reject ");
  837. newe->policy_type = EXIT_POLICY_REJECT;
  838. } else {
  839. strcpy(newe->string, "accept ");
  840. newe->policy_type = EXIT_POLICY_ACCEPT;
  841. }
  842. strcat(newe->string, arg); /* can't overflow */
  843. address = arg;
  844. mask = strchr(arg,'/');
  845. port = strchr(mask?mask:arg,':');
  846. /* Break 'arg' into separate strings. 'arg' was already strdup'd by
  847. * _router_get_next_token, so it's safe to modify.
  848. */
  849. if (mask)
  850. *mask++ = 0;
  851. if (port)
  852. *port++ = 0;
  853. if (strcmp(address, "*") == 0) {
  854. newe->addr = 0;
  855. } else if (tor_inet_aton(address, &in) != 0) {
  856. newe->addr = ntohl(in.s_addr);
  857. } else {
  858. log_fn(LOG_WARN, "Malformed IP %s in exit policy; rejecting.",
  859. address);
  860. goto policy_read_failed;
  861. }
  862. if (!mask) {
  863. if (strcmp(address, "*") == 0)
  864. newe->msk = 0;
  865. else
  866. newe->msk = 0xFFFFFFFFu;
  867. } else {
  868. endptr = NULL;
  869. bits = (int) strtol(mask, &endptr, 10);
  870. if (!*endptr) {
  871. /* strtol handled the whole mask. */
  872. newe->msk = ~((1<<(32-bits))-1);
  873. } else if (tor_inet_aton(mask, &in) != 0) {
  874. newe->msk = ntohl(in.s_addr);
  875. } else {
  876. log_fn(LOG_WARN, "Malformed mask %s on exit policy; rejecting.",
  877. mask);
  878. goto policy_read_failed;
  879. }
  880. }
  881. if (!port || strcmp(port, "*") == 0) {
  882. newe->prt_min = 0;
  883. newe->prt_max = 65535;
  884. } else {
  885. endptr = NULL;
  886. newe->prt_min = (uint16_t) strtol(port, &endptr, 10);
  887. if (*endptr == '-') {
  888. port = endptr+1;
  889. endptr = NULL;
  890. newe->prt_max = (uint16_t) strtol(port, &endptr, 10);
  891. if (*endptr) {
  892. log_fn(LOG_WARN, "Malformed port %s on exit policy; rejecting.",
  893. port);
  894. }
  895. } else if (*endptr) {
  896. log_fn(LOG_WARN, "Malformed port %s on exit policy; rejecting.",
  897. port);
  898. goto policy_read_failed;
  899. } else {
  900. newe->prt_max = newe->prt_min;
  901. }
  902. }
  903. in.s_addr = htonl(newe->addr);
  904. address = tor_strdup(inet_ntoa(in));
  905. in.s_addr = htonl(newe->msk);
  906. log_fn(LOG_DEBUG,"%s %s/%s:%d-%d",
  907. newe->policy_type == EXIT_POLICY_REJECT ? "reject" : "accept",
  908. address, inet_ntoa(in), newe->prt_min, newe->prt_max);
  909. tor_free(address);
  910. newe->next = NULL;
  911. return newe;
  912. policy_read_failed:
  913. tor_assert(newe->string);
  914. log_fn(LOG_WARN,"Couldn't parse line '%s'. Dropping", newe->string);
  915. tor_free(newe->string);
  916. free(newe);
  917. return NULL;
  918. }
  919. /*
  920. * Low-level tokenizer for router descriptors and directories.
  921. */
  922. /** Free all resources allocated for <b>tok</b> */
  923. static void
  924. token_free(directory_token_t *tok)
  925. {
  926. int i;
  927. tor_assert(tok);
  928. if (tok->args) {
  929. for (i = 0; i < tok->n_args; ++i) {
  930. tor_free(tok->args[i]);
  931. }
  932. tor_free(tok->args);
  933. }
  934. tor_free(tok->object_type);
  935. tor_free(tok->object_body);
  936. if (tok->key)
  937. crypto_free_pk_env(tok->key);
  938. tor_free(tok);
  939. }
  940. /** Helper function: read the next token from *s, advance *s to the end
  941. * of the token, and return the parsed token. If 'where' is DIR_ONLY
  942. * or RTR_ONLY, reject all tokens of the wrong type.
  943. */
  944. static directory_token_t *
  945. get_next_token(const char **s, where_syntax where) {
  946. const char *next, *obstart;
  947. int i, done, allocated, is_opt;
  948. directory_token_t *tok;
  949. arg_syntax a_syn;
  950. obj_syntax o_syn = NO_OBJ;
  951. #define RET_ERR(msg) \
  952. do { if (tok) token_free(tok); \
  953. tok = tor_malloc_zero(sizeof(directory_token_t));\
  954. tok->tp = _ERR; \
  955. tok->error = msg; \
  956. goto done_tokenizing; } while (0)
  957. tok = tor_malloc_zero(sizeof(directory_token_t));
  958. tok->tp = _ERR;
  959. *s = eat_whitespace(*s);
  960. if (!**s) {
  961. tok->tp = _EOF;
  962. return tok;
  963. }
  964. next = find_whitespace(*s);
  965. if (!next) {
  966. tok->error = "Unexpected EOF"; return tok;
  967. }
  968. /* It's a keyword... but which one? */
  969. is_opt = !strncmp("opt", *s, next-*s);
  970. if (is_opt) {
  971. *s = eat_whitespace(next);
  972. next = NULL;
  973. if (**s)
  974. next = find_whitespace(*s);
  975. if (!**s || !next) {
  976. RET_ERR("opt without keyword");
  977. }
  978. }
  979. for (i = 0; token_table[i].t ; ++i) {
  980. if (!strncmp(token_table[i].t, *s, next-*s)) {
  981. /* We've found the keyword. */
  982. tok->tp = token_table[i].v;
  983. a_syn = token_table[i].s;
  984. o_syn = token_table[i].os;
  985. if (token_table[i].ws != ANY && token_table[i].ws != where) {
  986. if (where == DIR_ONLY) {
  987. RET_ERR("Found a router-only token in a directory section");
  988. } else {
  989. RET_ERR("Found a directory-only token in a router descriptor");
  990. }
  991. }
  992. if (a_syn == ARGS) {
  993. /* This keyword takes multiple arguments. */
  994. i = 0;
  995. done = (*next == '\n');
  996. allocated = 32;
  997. tok->args = tor_malloc(sizeof(char*)*32);
  998. *s = eat_whitespace_no_nl(next);
  999. while (**s != '\n' && !done) {
  1000. next = find_whitespace(*s);
  1001. if (*next == '\n')
  1002. done = 1;
  1003. if (i == allocated) {
  1004. allocated *= 2;
  1005. tok->args = tor_realloc(tok->args,sizeof(char*)*allocated);
  1006. }
  1007. tok->args[i++] = tor_strndup(*s,next-*s);
  1008. *s = eat_whitespace_no_nl(next+1);
  1009. }
  1010. tok->n_args = i;
  1011. } else if (a_syn == CONCAT_ARGS) {
  1012. /* The keyword takes the line as a single argument */
  1013. *s = eat_whitespace_no_nl(next);
  1014. next = strchr(*s, '\n');
  1015. if (!next)
  1016. RET_ERR("Unexpected EOF");
  1017. tok->args = tor_malloc(sizeof(char*));
  1018. tok->args[0] = tor_strndup(*s,next-*s);
  1019. tok->n_args = 1;
  1020. *s = eat_whitespace_no_nl(next+1);
  1021. } else {
  1022. /* The keyword takes no arguments. */
  1023. tor_assert(a_syn == NO_ARGS);
  1024. *s = eat_whitespace_no_nl(next);
  1025. if (**s != '\n') {
  1026. RET_ERR("Unexpected arguments");
  1027. }
  1028. tok->n_args = 0;
  1029. *s = eat_whitespace_no_nl(*s+1);
  1030. }
  1031. break;
  1032. }
  1033. }
  1034. if (tok->tp == _ERR) {
  1035. if (is_opt) {
  1036. tok->tp = K_OPT;
  1037. *s = eat_whitespace_no_nl(next);
  1038. next = strchr(*s,'\n');
  1039. if (!next)
  1040. RET_ERR("Unexpected EOF");
  1041. tok->args = tor_malloc(sizeof(char*));
  1042. tok->args[0] = tor_strndup(*s,next-*s);
  1043. tok->n_args = 1;
  1044. *s = eat_whitespace_no_nl(next+1);
  1045. a_syn = OBJ_OK;
  1046. } else {
  1047. tok->tp = _UNRECOGNIZED;
  1048. next = strchr(*s, '\n');
  1049. if (!next) {
  1050. RET_ERR("Unexpected EOF");
  1051. }
  1052. tok->args = tor_malloc(sizeof(char*));
  1053. tok->args[0] = tor_strndup(*s,next-*s);
  1054. tok->n_args = 1;
  1055. *s = next+1;
  1056. o_syn = OBJ_OK;
  1057. }
  1058. }
  1059. *s = eat_whitespace(*s);
  1060. if (strncmp(*s, "-----BEGIN ", 11)) {
  1061. goto done_tokenizing;
  1062. }
  1063. obstart = *s;
  1064. *s += 11; /* length of "-----BEGIN ". */
  1065. next = strchr(*s, '\n');
  1066. if (next-*s < 6 || strncmp(next-5, "-----\n", 6)) {
  1067. RET_ERR("Malformed object: bad begin line");
  1068. }
  1069. tok->object_type = tor_strndup(*s, next-*s-5);
  1070. *s = next+1;
  1071. next = strstr(*s, "-----END ");
  1072. if (!next) {
  1073. RET_ERR("Malformed object: missing end line");
  1074. }
  1075. if (!strcmp(tok->object_type, "RSA PUBLIC KEY")) {
  1076. if (strncmp(next, "-----END RSA PUBLIC KEY-----\n", 29))
  1077. RET_ERR("Malformed object: mismatched end line");
  1078. next = strchr(next,'\n')+1;
  1079. tok->key = crypto_new_pk_env();
  1080. if (crypto_pk_read_public_key_from_string(tok->key, obstart, next-obstart))
  1081. RET_ERR("Couldn't parse public key.");
  1082. *s = next;
  1083. } else {
  1084. tok->object_body = tor_malloc(next-*s); /* really, this is too much RAM. */
  1085. i = base64_decode(tok->object_body, 256, *s, next-*s);
  1086. if (i<0) {
  1087. RET_ERR("Malformed object: bad base64-encoded data");
  1088. }
  1089. tok->object_size = i;
  1090. *s = next + 9; /* length of "-----END ". */
  1091. i = strlen(tok->object_type);
  1092. if (strncmp(*s, tok->object_type, i) || strncmp(*s+i, "-----\n", 6)) {
  1093. RET_ERR("Malformed object: mismatched end tag");
  1094. }
  1095. *s += i+6;
  1096. }
  1097. switch(o_syn)
  1098. {
  1099. case NO_OBJ:
  1100. if (tok->object_body)
  1101. RET_ERR("Unexpected object for keyword");
  1102. if (tok->key)
  1103. RET_ERR("Unexpected public key for keyword");
  1104. break;
  1105. case NEED_OBJ:
  1106. if (!tok->object_body)
  1107. RET_ERR("Missing object for keyword");
  1108. break;
  1109. case NEED_KEY:
  1110. if (!tok->key)
  1111. RET_ERR("Missing publid key for keyword");
  1112. break;
  1113. case OBJ_OK:
  1114. break;
  1115. }
  1116. done_tokenizing:
  1117. #if 0
  1118. for (i = 0; token_table[i].t ; ++i) {
  1119. if (token_table[i].v == tok->tp) {
  1120. fputs(token_table[i].t, stdout);
  1121. break;
  1122. i = -1;
  1123. }
  1124. }
  1125. if (i) {
  1126. if (tok->tp == _UNRECOGNIZED) fputs("UNRECOGNIZED", stdout);
  1127. if (tok->tp == _ERR) fputs("ERR",stdout);
  1128. if (tok->tp == _EOF) fputs("EOF",stdout);
  1129. if (tok->tp == _NIL) fputs("_NIL",stdout);
  1130. }
  1131. for(i = 0; i < tok->n_args; ++i) {
  1132. fprintf(stdout," \"%s\"", tok->args[i]);
  1133. }
  1134. if (tok->error) { fprintf(stdout," *%s*", tok->error); }
  1135. fputs("\n",stdout);
  1136. #endif
  1137. return tok;
  1138. #undef RET_ERR
  1139. }
  1140. /** Read all tokens from a string between <b>start</b> and <b>end</b>, and add
  1141. * them to <b>out</b>. If <b>is_dir</b> is true, reject all non-directory
  1142. * tokens; else reject all non-routerdescriptor tokens.
  1143. */
  1144. static int
  1145. tokenize_string(const char *start, const char *end, smartlist_t *out,
  1146. int is_dir)
  1147. {
  1148. const char **s;
  1149. directory_token_t *tok = NULL;
  1150. where_syntax where = is_dir ? DIR_ONLY : RTR_ONLY;
  1151. s = &start;
  1152. while (*s < end && (!tok || tok->tp != _EOF)) {
  1153. tok = get_next_token(s, where);
  1154. if (tok->tp == _ERR) {
  1155. log_fn(LOG_WARN, "parse error: %s", tok->error);
  1156. return -1;
  1157. }
  1158. smartlist_add(out, tok);
  1159. *s = eat_whitespace(*s);
  1160. }
  1161. return 0;
  1162. }
  1163. /** Find the first token in <b>s</b> whose keyword is <b>keyword</b>; return
  1164. * NULL if no such keyword is found.
  1165. */
  1166. static directory_token_t *
  1167. find_first_by_keyword(smartlist_t *s, directory_keyword keyword)
  1168. {
  1169. SMARTLIST_FOREACH(s, directory_token_t *, t, if (t->tp == keyword) return t);
  1170. return NULL;
  1171. }
  1172. /** Return a newly allocated smartlist of all accept or reject tokens in
  1173. * <b>s</b>.
  1174. */
  1175. static smartlist_t *
  1176. find_all_exitpolicy(smartlist_t *s)
  1177. {
  1178. smartlist_t *out = smartlist_create();
  1179. SMARTLIST_FOREACH(s, directory_token_t *, t,
  1180. if (t->tp == K_ACCEPT || t->tp == K_REJECT)
  1181. smartlist_add(out,t));
  1182. return out;
  1183. }
  1184. /** Compute the SHA digest of the substring of <b>s</b> taken from the first
  1185. * occurrence of <b>start_str</b> through the first newline after the first
  1186. * subsequent occurrence of <b>end_str</b>; store the 20-byte result in
  1187. * <b>digest</b>; return 0 on success.
  1188. *
  1189. * If no such substring exists, return -1.
  1190. */
  1191. static int router_get_hash_impl(const char *s, char *digest,
  1192. const char *start_str,
  1193. const char *end_str)
  1194. {
  1195. char *start, *end;
  1196. start = strstr(s, start_str);
  1197. if (!start) {
  1198. log_fn(LOG_WARN,"couldn't find \"%s\"",start_str);
  1199. return -1;
  1200. }
  1201. end = strstr(start+strlen(start_str), end_str);
  1202. if (!end) {
  1203. log_fn(LOG_WARN,"couldn't find \"%s\"",end_str);
  1204. return -1;
  1205. }
  1206. end = strchr(end, '\n');
  1207. if (!end) {
  1208. log_fn(LOG_WARN,"couldn't find EOL");
  1209. return -1;
  1210. }
  1211. ++end;
  1212. if (crypto_digest(start, end-start, digest)) {
  1213. log_fn(LOG_WARN,"couldn't compute digest");
  1214. return -1;
  1215. }
  1216. return 0;
  1217. }
  1218. int tor_version_parse(const char *s, tor_version_t *out)
  1219. {
  1220. char *eos=NULL, *cp=NULL;
  1221. /* Format is:
  1222. * NUM dot NUM dot NUM [ ( pre | rc | dot ) NUM [ -cvs ] ]
  1223. */
  1224. tor_assert(s && out);
  1225. memset(out, 0, sizeof(tor_version_t));
  1226. /* Get major. */
  1227. out->major = strtol(s,&eos,10);
  1228. if (!eos || eos==s || *eos != '.') return -1;
  1229. cp = eos+1;
  1230. /* Get minor */
  1231. out->minor = strtol(cp,&eos,10);
  1232. if (!eos || eos==cp || *eos != '.') return -1;
  1233. cp = eos+1;
  1234. /* Get micro */
  1235. out->micro = strtol(cp,&eos,10);
  1236. if (!eos || eos==cp) return -1;
  1237. if (!*eos) {
  1238. out->status = VER_RELEASE;
  1239. out->patchlevel = 0;
  1240. out->cvs = IS_NOT_CVS;
  1241. return 0;
  1242. }
  1243. cp = eos;
  1244. /* Get status */
  1245. if (*cp == '.') {
  1246. out->status = VER_RELEASE;
  1247. ++cp;
  1248. } else if (0==strncmp(cp, "pre", 3)) {
  1249. out->status = VER_PRE;
  1250. cp += 3;
  1251. } else if (0==strncmp(cp, "rc", 2)) {
  1252. out->status = VER_RC;
  1253. cp += 2;
  1254. } else {
  1255. return -1;
  1256. }
  1257. /* Get patchlevel */
  1258. out->patchlevel = strtol(cp,&eos,10);
  1259. if (!eos || eos==cp) return -1;
  1260. cp = eos;
  1261. /* Get cvs status. */
  1262. if (!*eos) {
  1263. out->cvs = IS_NOT_CVS;
  1264. } else if (0==strcmp(cp, "-cvs")) {
  1265. out->cvs = IS_CVS;
  1266. } else {
  1267. return -1;
  1268. }
  1269. return 0;
  1270. }
  1271. /** Compare two tor versions; Return <0 if a < b; 0 if a ==b, >0 if a >
  1272. * b. */
  1273. int tor_version_compare(tor_version_t *a, tor_version_t *b)
  1274. {
  1275. int i;
  1276. tor_assert(a && b);
  1277. if ((i = a->major - b->major))
  1278. return i;
  1279. else if ((i = a->minor - b->minor))
  1280. return i;
  1281. else if ((i = a->micro - b->micro))
  1282. return i;
  1283. else if ((i = a->status - b->status))
  1284. return i;
  1285. else if ((i = a->patchlevel - b->patchlevel))
  1286. return i;
  1287. else if ((i = a->cvs - b->cvs))
  1288. return i;
  1289. else
  1290. return 0;
  1291. }
  1292. /*
  1293. Local Variables:
  1294. mode:c
  1295. indent-tabs-mode:nil
  1296. c-basic-offset:2
  1297. End:
  1298. */