rendcommon.c 10.0 KB

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  1. /* Copyright 2004 Roger Dingledine */
  2. /* See LICENSE for licensing information */
  3. /* $Id$ */
  4. /**
  5. * \file rendcommon.c
  6. * \brief Rendezvous implementation: shared code between
  7. * introducers, services, clients, and rendezvous points.
  8. **/
  9. #include "or.h"
  10. /** Return 0 if one and two are the same service ids, else -1 or 1 */
  11. int rend_cmp_service_ids(const char *one, const char *two) {
  12. return strcasecmp(one,two);
  13. }
  14. /** Free the storage held by the service descriptor <b>desc</b>.
  15. */
  16. void rend_service_descriptor_free(rend_service_descriptor_t *desc)
  17. {
  18. int i;
  19. if (desc->pk)
  20. crypto_free_pk_env(desc->pk);
  21. if (desc->intro_points) {
  22. for (i=0; i < desc->n_intro_points; ++i) {
  23. tor_free(desc->intro_points[i]);
  24. }
  25. tor_free(desc->intro_points);
  26. }
  27. tor_free(desc);
  28. }
  29. /** Encode a service descriptor for <b>desc</b>, and sign it with
  30. * <b>key</b>. Store the descriptor in *<b>str_out</b>, and set
  31. * *<b>len_out</b> to its length.
  32. */
  33. int
  34. rend_encode_service_descriptor(rend_service_descriptor_t *desc,
  35. crypto_pk_env_t *key,
  36. char **str_out, int *len_out)
  37. {
  38. char *buf, *cp, *ipoint;
  39. int i, keylen, asn1len;
  40. keylen = crypto_pk_keysize(desc->pk);
  41. buf = tor_malloc(keylen*2); /* Too long, but that's okay. */
  42. asn1len = crypto_pk_asn1_encode(desc->pk, buf, keylen*2);
  43. if (asn1len<0) {
  44. tor_free(buf);
  45. return -1;
  46. }
  47. *len_out = 2 + asn1len + 4 + 2 + keylen;
  48. for (i = 0; i < desc->n_intro_points; ++i) {
  49. *len_out += strlen(desc->intro_points[i]) + 1;
  50. }
  51. cp = *str_out = tor_malloc(*len_out);
  52. set_uint16(cp, htons((uint16_t)asn1len));
  53. cp += 2;
  54. memcpy(cp, buf, asn1len);
  55. tor_free(buf);
  56. cp += asn1len;
  57. set_uint32(cp, htonl((uint32_t)desc->timestamp));
  58. cp += 4;
  59. set_uint16(cp, htons((uint16_t)desc->n_intro_points));
  60. cp += 2;
  61. for (i=0; i < desc->n_intro_points; ++i) {
  62. ipoint = (char*)desc->intro_points[i];
  63. strcpy(cp, ipoint);
  64. cp += strlen(ipoint)+1;
  65. }
  66. i = crypto_pk_private_sign_digest(key, *str_out, cp-*str_out, cp);
  67. if (i<0) {
  68. tor_free(*str_out);
  69. return -1;
  70. }
  71. cp += i;
  72. tor_assert(*len_out == (cp-*str_out));
  73. return 0;
  74. }
  75. /** Parse a service descriptor at <b>str</b> (<b>len</b> bytes). On
  76. * success, return a newly alloced service_descriptor_t. On failure,
  77. * return NULL.
  78. */
  79. rend_service_descriptor_t *rend_parse_service_descriptor(
  80. const char *str, int len)
  81. {
  82. rend_service_descriptor_t *result = NULL;
  83. int keylen, asn1len, i;
  84. const char *end, *cp, *eos;
  85. result = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  86. cp = str;
  87. end = str+len;
  88. if (end-cp < 2) goto truncated;
  89. asn1len = ntohs(get_uint16(cp));
  90. cp += 2;
  91. if (end-cp < asn1len) goto truncated;
  92. result->pk = crypto_pk_asn1_decode(cp, asn1len);
  93. if (!result->pk) goto truncated;
  94. cp += asn1len;
  95. if (end-cp < 4) goto truncated;
  96. result->timestamp = (time_t) ntohl(get_uint32(cp));
  97. cp += 4;
  98. if (end-cp < 2) goto truncated;
  99. result->n_intro_points = ntohs(get_uint16(cp));
  100. result->intro_points = tor_malloc_zero(sizeof(char*)*result->n_intro_points);
  101. cp += 2;
  102. for (i=0;i<result->n_intro_points;++i) {
  103. if (end-cp < 2) goto truncated;
  104. eos = (const char *)memchr(cp,'\0',end-cp);
  105. if (!eos) goto truncated;
  106. result->intro_points[i] = tor_strdup(cp);
  107. cp = eos+1;
  108. }
  109. keylen = crypto_pk_keysize(result->pk);
  110. if (end-cp < keylen) goto truncated;
  111. if (end-cp > keylen) {
  112. log_fn(LOG_WARN, "Signature too long on service descriptor");
  113. goto error;
  114. }
  115. if (crypto_pk_public_checksig_digest(result->pk,
  116. (char*)str,cp-str, /* data */
  117. (char*)cp,end-cp /* signature*/
  118. )<0) {
  119. log_fn(LOG_WARN, "Bad signature on service descriptor");
  120. goto error;
  121. }
  122. return result;
  123. truncated:
  124. log_fn(LOG_WARN, "Truncated service descriptor");
  125. error:
  126. rend_service_descriptor_free(result);
  127. return NULL;
  128. }
  129. /** Sets <b>out</b> to the first 10 bytes of the digest of <b>pk</b>,
  130. * base32 encoded. NUL-terminates out. (We use this string to
  131. * identify services in directory requests and .onion URLs.)
  132. */
  133. int rend_get_service_id(crypto_pk_env_t *pk, char *out)
  134. {
  135. char buf[DIGEST_LEN];
  136. tor_assert(pk);
  137. if (crypto_pk_get_digest(pk, buf) < 0)
  138. return -1;
  139. base32_encode(out, REND_SERVICE_ID_LEN+1, buf, 10);
  140. return 0;
  141. }
  142. /* ==== Rendezvous service descriptor cache. */
  143. #define REND_CACHE_MAX_AGE (24*60*60)
  144. #define REND_CACHE_MAX_SKEW (90*60)
  145. /** Map from service id (as generated by rend_get_service_id) to
  146. * rend_cache_entry_t. */
  147. static strmap_t *rend_cache = NULL;
  148. /** Initializes the service descriptor cache.
  149. */
  150. void rend_cache_init(void)
  151. {
  152. rend_cache = strmap_new();
  153. }
  154. /** Removes all old entries from the service descriptor cache.
  155. */
  156. void rend_cache_clean(void)
  157. {
  158. strmap_iter_t *iter;
  159. const char *key;
  160. void *val;
  161. rend_cache_entry_t *ent;
  162. time_t cutoff;
  163. cutoff = time(NULL) - REND_CACHE_MAX_AGE;
  164. for (iter = strmap_iter_init(rend_cache); !strmap_iter_done(iter); ) {
  165. strmap_iter_get(iter, &key, &val);
  166. ent = (rend_cache_entry_t*)val;
  167. if (ent->parsed->timestamp < cutoff) {
  168. iter = strmap_iter_next_rmv(rend_cache, iter);
  169. rend_service_descriptor_free(ent->parsed);
  170. tor_free(ent->desc);
  171. tor_free(ent);
  172. } else {
  173. iter = strmap_iter_next(rend_cache, iter);
  174. }
  175. }
  176. }
  177. /** Return true iff <b>query</b> is a syntactically valid service ID (as
  178. * generated by rend_get_service_id). */
  179. int rend_valid_service_id(const char *query) {
  180. if(strlen(query) != REND_SERVICE_ID_LEN)
  181. return 0;
  182. if (strspn(query, BASE32_CHARS) != REND_SERVICE_ID_LEN)
  183. return 0;
  184. return 1;
  185. }
  186. /** If we have a cached rend_cache_entry_t for the service ID <b>query</b>, set
  187. * *<b>e</b> to that entry and return 1. Else return 0.
  188. */
  189. int rend_cache_lookup_entry(const char *query, rend_cache_entry_t **e)
  190. {
  191. tor_assert(rend_cache);
  192. if (!rend_valid_service_id(query))
  193. return -1;
  194. *e = strmap_get_lc(rend_cache, query);
  195. if (!*e)
  196. return 0;
  197. return 1;
  198. }
  199. /** <b>query</b> is a base-32'ed service id. If it's malformed, return -1.
  200. * Else look it up.
  201. * - If it is found, point *desc to it, and write its length into
  202. * *desc_len, and return 1.
  203. * - If it is not found, return 0.
  204. * Note: calls to rend_cache_clean or rend_cache_store may invalidate
  205. * *desc.
  206. */
  207. int rend_cache_lookup_desc(const char *query, const char **desc, int *desc_len)
  208. {
  209. rend_cache_entry_t *e;
  210. int r;
  211. r = rend_cache_lookup_entry(query,&e);
  212. if (r <= 0) return r;
  213. *desc = e->desc;
  214. *desc_len = e->len;
  215. return 1;
  216. }
  217. /** Parse *desc, calculate its service id, and store it in the cache.
  218. * If we have a newer descriptor with the same ID, ignore this one.
  219. * If we have an older descriptor with the same ID, replace it.
  220. * Returns -1 if it's malformed or otherwise rejected, else return 0.
  221. */
  222. int rend_cache_store(const char *desc, int desc_len)
  223. {
  224. rend_cache_entry_t *e;
  225. rend_service_descriptor_t *parsed;
  226. char query[REND_SERVICE_ID_LEN+1];
  227. time_t now;
  228. tor_assert(rend_cache);
  229. parsed = rend_parse_service_descriptor(desc,desc_len);
  230. if (!parsed) {
  231. log_fn(LOG_WARN,"Couldn't parse service descriptor");
  232. return -1;
  233. }
  234. if (rend_get_service_id(parsed->pk, query)<0) {
  235. log_fn(LOG_WARN,"Couldn't compute service ID");
  236. rend_service_descriptor_free(parsed);
  237. return -1;
  238. }
  239. now = time(NULL);
  240. if (parsed->timestamp < now-REND_CACHE_MAX_AGE) {
  241. log_fn(LOG_WARN,"Service descriptor %s is too old", query);
  242. rend_service_descriptor_free(parsed);
  243. return -1;
  244. }
  245. if (parsed->timestamp > now+REND_CACHE_MAX_SKEW) {
  246. log_fn(LOG_WARN,"Service descriptor %s is too far in the future", query);
  247. rend_service_descriptor_free(parsed);
  248. return -1;
  249. }
  250. e = (rend_cache_entry_t*) strmap_get_lc(rend_cache, query);
  251. if (e && e->parsed->timestamp > parsed->timestamp) {
  252. log_fn(LOG_INFO,"We already have a newer service descriptor %s with the same ID", query);
  253. rend_service_descriptor_free(parsed);
  254. return 0;
  255. }
  256. if (e && e->len == desc_len && !memcmp(desc,e->desc,desc_len)) {
  257. log_fn(LOG_INFO,"We already have this service descriptor %s", query);
  258. e->received = time(NULL);
  259. rend_service_descriptor_free(parsed);
  260. return 0;
  261. }
  262. if (!e) {
  263. e = tor_malloc_zero(sizeof(rend_cache_entry_t));
  264. strmap_set_lc(rend_cache, query, e);
  265. } else {
  266. rend_service_descriptor_free(e->parsed);
  267. tor_free(e->desc);
  268. }
  269. e->received = time(NULL);
  270. e->parsed = parsed;
  271. e->len = desc_len;
  272. e->desc = tor_malloc(desc_len);
  273. memcpy(e->desc, desc, desc_len);
  274. log_fn(LOG_INFO,"Successfully stored rend desc '%s', len %d", query, desc_len);
  275. return 0;
  276. }
  277. /** Called when we get a rendezvous-related relay cell on circuit
  278. * <b>circ</b>. Dispatch on rendezvous relay command. */
  279. void rend_process_relay_cell(circuit_t *circ, int command, int length,
  280. const char *payload)
  281. {
  282. int r;
  283. switch(command) {
  284. case RELAY_COMMAND_ESTABLISH_INTRO:
  285. r = rend_mid_establish_intro(circ,payload,length);
  286. break;
  287. case RELAY_COMMAND_ESTABLISH_RENDEZVOUS:
  288. r = rend_mid_establish_rendezvous(circ,payload,length);
  289. break;
  290. case RELAY_COMMAND_INTRODUCE1:
  291. r = rend_mid_introduce(circ,payload,length);
  292. break;
  293. case RELAY_COMMAND_INTRODUCE2:
  294. r = rend_service_introduce(circ,payload,length);
  295. break;
  296. case RELAY_COMMAND_INTRODUCE_ACK:
  297. r = rend_client_introduction_acked(circ,payload,length);
  298. break;
  299. case RELAY_COMMAND_RENDEZVOUS1:
  300. r = rend_mid_rendezvous(circ,payload,length);
  301. break;
  302. case RELAY_COMMAND_RENDEZVOUS2:
  303. r = rend_client_receive_rendezvous(circ,payload,length);
  304. break;
  305. case RELAY_COMMAND_INTRO_ESTABLISHED:
  306. r = rend_service_intro_established(circ,payload,length);
  307. break;
  308. case RELAY_COMMAND_RENDEZVOUS_ESTABLISHED:
  309. r = rend_client_rendezvous_acked(circ,payload,length);
  310. break;
  311. default:
  312. tor_assert(0);
  313. }
  314. }
  315. /*
  316. Local Variables:
  317. mode:c
  318. indent-tabs-mode:nil
  319. c-basic-offset:2
  320. End:
  321. */