connection.c 26 KB

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  1. /* Copyright 2001,2002 Roger Dingledine, Matej Pfajfar. */
  2. /* See LICENSE for licensing information */
  3. /* $Id$ */
  4. #include "or.h"
  5. /********* START VARIABLES **********/
  6. extern or_options_t options; /* command-line and config-file options */
  7. char *conn_type_to_string[] = {
  8. "", /* 0 */
  9. "OP listener", /* 1 */
  10. "OP", /* 2 */
  11. "OR listener", /* 3 */
  12. "OR", /* 4 */
  13. "Exit", /* 5 */
  14. "App listener",/* 6 */
  15. "App", /* 7 */
  16. "Dir listener",/* 8 */
  17. "Dir", /* 9 */
  18. "DNS master", /* 10 */
  19. };
  20. char *conn_state_to_string[][15] = {
  21. { }, /* no type associated with 0 */
  22. { "ready" }, /* op listener, 0 */
  23. { "awaiting keys", /* op, 0 */
  24. "open", /* 1 */
  25. "close", /* 2 */
  26. "close_wait" }, /* 3 */
  27. { "ready" }, /* or listener, 0 */
  28. { "connecting (as OP)", /* or, 0 */
  29. "sending keys (as OP)", /* 1 */
  30. "connecting (as client)", /* 2 */
  31. "sending auth (as client)", /* 3 */
  32. "waiting for auth (as client)", /* 4 */
  33. "sending nonce (as client)", /* 5 */
  34. "waiting for auth (as server)", /* 6 */
  35. "sending auth (as server)", /* 7 */
  36. "waiting for nonce (as server)",/* 8 */
  37. "open" }, /* 9 */
  38. { "waiting for dest info", /* exit, 0 */
  39. "connecting", /* 1 */
  40. "open" }, /* 2 */
  41. { "ready" }, /* app listener, 0 */
  42. { "", /* 0 */
  43. "", /* 1 */
  44. "", /* 2 */
  45. "awaiting dest info", /* app, 3 */
  46. "waiting for OR connection", /* 4 */
  47. "open" }, /* 5 */
  48. { "ready" }, /* dir listener, 0 */
  49. { "connecting", /* 0 */
  50. "sending command", /* 1 */
  51. "reading", /* 2 */
  52. "awaiting command", /* 3 */
  53. "writing" }, /* 4 */
  54. { "open" }, /* dns master, 0 */
  55. };
  56. /********* END VARIABLES ************/
  57. /**************************************************************/
  58. connection_t *connection_new(int type) {
  59. connection_t *conn;
  60. struct timeval now;
  61. my_gettimeofday(&now);
  62. conn = (connection_t *)tor_malloc(sizeof(connection_t));
  63. memset(conn,0,sizeof(connection_t)); /* zero it out to start */
  64. conn->type = type;
  65. if(buf_new(&conn->inbuf, &conn->inbuflen, &conn->inbuf_datalen) < 0 ||
  66. buf_new(&conn->outbuf, &conn->outbuflen, &conn->outbuf_datalen) < 0)
  67. return NULL;
  68. conn->receiver_bucket = 10240; /* should be enough to do the handshake */
  69. conn->bandwidth = conn->receiver_bucket / 10; /* give it a default */
  70. conn->timestamp_created = now.tv_sec;
  71. conn->timestamp_lastread = now.tv_sec;
  72. conn->timestamp_lastwritten = now.tv_sec;
  73. if (connection_speaks_cells(conn)) {
  74. conn->f_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_3DES);
  75. if (!conn->f_crypto) {
  76. free((void *)conn);
  77. return NULL;
  78. }
  79. conn->b_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_3DES);
  80. if (!conn->b_crypto) {
  81. crypto_free_cipher_env(conn->f_crypto);
  82. free((void *)conn);
  83. return NULL;
  84. }
  85. }
  86. #ifdef USE_ZLIB
  87. if (type == CONN_TYPE_AP || type == CONN_TYPE_EXIT) {
  88. if (buf_new(&conn->z_outbuf, &conn->z_outbuflen, &conn->z_outbuf_datalen) < 0)
  89. return NULL;
  90. if (! (conn->compression = compression_new()))
  91. return NULL;
  92. if (! (conn->decompression = decompression_new()))
  93. return NULL;
  94. } else {
  95. conn->compression = conn->decompression = NULL;
  96. }
  97. #endif
  98. conn->done_sending = conn->done_receiving = 0;
  99. return conn;
  100. }
  101. void connection_free(connection_t *conn) {
  102. assert(conn);
  103. buf_free(conn->inbuf);
  104. buf_free(conn->outbuf);
  105. if(conn->address)
  106. free(conn->address);
  107. if(conn->dest_addr)
  108. free(conn->dest_addr);
  109. if(connection_speaks_cells(conn)) {
  110. if (conn->f_crypto)
  111. crypto_free_cipher_env(conn->f_crypto);
  112. if (conn->b_crypto)
  113. crypto_free_cipher_env(conn->b_crypto);
  114. }
  115. if (conn->pkey)
  116. crypto_free_pk_env(conn->pkey);
  117. if(conn->s > 0) {
  118. log(LOG_INFO,"connection_free(): closing fd %d.",conn->s);
  119. close(conn->s);
  120. }
  121. if(conn->type == CONN_TYPE_OR) {
  122. directory_set_dirty();
  123. }
  124. #ifdef USE_ZLIB
  125. if (conn->compression) {
  126. decompression_free(conn->decompression);
  127. compression_free(conn->compression);
  128. buf_free(conn->z_outbuf);
  129. }
  130. #endif
  131. free(conn);
  132. }
  133. int connection_create_listener(struct sockaddr_in *bindaddr, int type) {
  134. connection_t *conn;
  135. int s;
  136. int one=1;
  137. s = socket(PF_INET,SOCK_STREAM,IPPROTO_TCP);
  138. if (s < 0)
  139. {
  140. log(LOG_ERR,"connection_create_listener(): Socket creation failed.");
  141. return -1;
  142. }
  143. setsockopt(s, SOL_SOCKET, SO_REUSEADDR, &one, sizeof(one));
  144. if(bind(s,(struct sockaddr *)bindaddr,sizeof(*bindaddr)) < 0) {
  145. perror("bind ");
  146. log(LOG_ERR,"Could not bind to port %u.",ntohs(bindaddr->sin_port));
  147. return -1;
  148. }
  149. if(listen(s,SOMAXCONN) < 0) {
  150. log(LOG_ERR,"Could not listen on port %u.",ntohs(bindaddr->sin_port));
  151. return -1;
  152. }
  153. fcntl(s, F_SETFL, O_NONBLOCK); /* set s to non-blocking */
  154. conn = connection_new(type);
  155. if(!conn) {
  156. log(LOG_DEBUG,"connection_create_listener(): connection_new failed. Giving up.");
  157. return -1;
  158. }
  159. conn->s = s;
  160. if(connection_add(conn) < 0) { /* no space, forget it */
  161. log(LOG_DEBUG,"connection_create_listener(): connection_add failed. Giving up.");
  162. connection_free(conn);
  163. return -1;
  164. }
  165. log(LOG_DEBUG,"connection_create_listener(): Listening on port %u.",ntohs(bindaddr->sin_port));
  166. conn->state = LISTENER_STATE_READY;
  167. connection_start_reading(conn);
  168. return 0;
  169. }
  170. int connection_handle_listener_read(connection_t *conn, int new_type, int new_state) {
  171. int news; /* the new socket */
  172. connection_t *newconn;
  173. struct sockaddr_in remote; /* information about the remote peer when connecting to other routers */
  174. int remotelen = sizeof(struct sockaddr_in); /* length of the remote address */
  175. news = accept(conn->s,(struct sockaddr *)&remote,&remotelen);
  176. if (news == -1) { /* accept() error */
  177. if(errno==EAGAIN)
  178. return 0; /* he hung up before we could accept(). that's fine. */
  179. /* else there was a real error. */
  180. log(LOG_ERR,"connection_handle_listener_read(): accept() failed. Closing.");
  181. return -1;
  182. }
  183. log(LOG_INFO,"Connection accepted on socket %d (child of fd %d).",news, conn->s);
  184. fcntl(news, F_SETFL, O_NONBLOCK); /* set news to non-blocking */
  185. newconn = connection_new(new_type);
  186. newconn->s = news;
  187. if(!connection_speaks_cells(newconn)) {
  188. newconn->receiver_bucket = -1;
  189. newconn->bandwidth = -1;
  190. }
  191. newconn->address = strdup(inet_ntoa(remote.sin_addr)); /* remember the remote address */
  192. newconn->addr = ntohl(remote.sin_addr.s_addr);
  193. newconn->port = ntohs(remote.sin_port);
  194. if(connection_add(newconn) < 0) { /* no space, forget it */
  195. connection_free(newconn);
  196. return 0; /* no need to tear down the parent */
  197. }
  198. log(LOG_DEBUG,"connection_handle_listener_read(): socket %d entered state %d.",newconn->s, new_state);
  199. newconn->state = new_state;
  200. connection_start_reading(newconn);
  201. return 0;
  202. }
  203. int retry_all_connections(uint16_t or_listenport,
  204. uint16_t op_listenport, uint16_t ap_listenport, uint16_t dir_listenport) {
  205. /* start all connections that should be up but aren't */
  206. struct sockaddr_in bindaddr; /* where to bind */
  207. if(or_listenport) {
  208. router_retry_connections();
  209. }
  210. memset(&bindaddr,0,sizeof(struct sockaddr_in));
  211. bindaddr.sin_family = AF_INET;
  212. bindaddr.sin_addr.s_addr = htonl(INADDR_ANY); /* anyone can connect */
  213. if(or_listenport) {
  214. bindaddr.sin_port = htons(or_listenport);
  215. if(!connection_get_by_type(CONN_TYPE_OR_LISTENER)) {
  216. connection_or_create_listener(&bindaddr);
  217. }
  218. }
  219. if(op_listenport) {
  220. bindaddr.sin_port = htons(op_listenport);
  221. if(!connection_get_by_type(CONN_TYPE_OP_LISTENER)) {
  222. connection_op_create_listener(&bindaddr);
  223. }
  224. }
  225. if(dir_listenport) {
  226. bindaddr.sin_port = htons(dir_listenport);
  227. if(!connection_get_by_type(CONN_TYPE_DIR_LISTENER)) {
  228. connection_dir_create_listener(&bindaddr);
  229. }
  230. }
  231. if(ap_listenport) {
  232. bindaddr.sin_port = htons(ap_listenport);
  233. inet_aton("127.0.0.1", &(bindaddr.sin_addr)); /* the AP listens only on localhost! */
  234. /* XXX inet_aton is missing on solaris. use something simpler? */
  235. if(!connection_get_by_type(CONN_TYPE_AP_LISTENER)) {
  236. connection_ap_create_listener(&bindaddr);
  237. }
  238. }
  239. return 0;
  240. }
  241. int connection_read_to_buf(connection_t *conn) {
  242. int read_result;
  243. struct timeval now;
  244. if(connection_speaks_cells(conn)) {
  245. assert(conn->receiver_bucket >= 0);
  246. }
  247. if(!connection_speaks_cells(conn)) {
  248. assert(conn->receiver_bucket < 0);
  249. }
  250. my_gettimeofday(&now);
  251. conn->timestamp_lastread = now.tv_sec;
  252. read_result = read_to_buf(conn->s, conn->receiver_bucket, &conn->inbuf, &conn->inbuflen,
  253. &conn->inbuf_datalen, &conn->inbuf_reached_eof);
  254. // log(LOG_DEBUG,"connection_read_to_buf(): read_to_buf returned %d.",read_result);
  255. if(read_result >= 0 && connection_speaks_cells(conn)) {
  256. // log(LOG_DEBUG,"connection_read_to_buf(): Read %d, bucket now %d.",read_result,conn->receiver_bucket);
  257. conn->receiver_bucket -= read_result;
  258. if(conn->receiver_bucket <= 0) {
  259. // log(LOG_DEBUG,"connection_read_to_buf() stopping reading, receiver bucket full.");
  260. connection_stop_reading(conn);
  261. /* If we're not in 'open' state here, then we're never going to finish the
  262. * handshake, because we'll never increment the receiver_bucket. But we
  263. * can't check for that here, because the buf we just read might have enough
  264. * on it to finish the handshake. So we check for that in check_conn_read().
  265. */
  266. }
  267. }
  268. return read_result;
  269. }
  270. int connection_fetch_from_buf(char *string, int len, connection_t *conn) {
  271. return fetch_from_buf(string, len, &conn->inbuf, &conn->inbuflen, &conn->inbuf_datalen);
  272. }
  273. #ifdef USE_ZLIB
  274. int connection_compress_from_buf(char *string, int len, connection_t *conn,
  275. int flush) {
  276. return compress_from_buf(string, len,
  277. &conn->inbuf, &conn->inbuflen, &conn->inbuf_datalen,
  278. conn->compression, flush);
  279. }
  280. int connection_decompress_to_buf(char *string, int len, connection_t *conn,
  281. int flush) {
  282. int n;
  283. struct timeval now;
  284. assert(conn);
  285. if (len) {
  286. if (write_to_buf(string, len,
  287. &conn->z_outbuf, &conn->z_outbuflen, &conn->z_outbuf_datalen) < 0)
  288. return -1;
  289. }
  290. /* If we have more that 10 payloads worth of data waiting in outbuf,
  291. * don't uncompress any more; queue this data in z_outbuf.
  292. *
  293. * This check should may be different.
  294. */
  295. if (connection_outbuf_too_full(conn))
  296. return 0;
  297. n = decompress_buf_to_buf(
  298. &conn->z_outbuf, &conn->z_outbuflen, &conn->z_outbuf_datalen,
  299. &conn->outbuf, &conn->outbuflen, &conn->outbuf_datalen,
  300. conn->decompression, flush);
  301. if (n < 0)
  302. return -1;
  303. my_gettimeofday(&now,NULL);
  304. if(!n)
  305. return 0;
  306. if(conn->marked_for_close)
  307. return 0;
  308. conn->timestamp_lastwritten = now.tv_sec;
  309. conn->outbuf_flushlen += n;
  310. return n;
  311. }
  312. #endif
  313. int connection_find_on_inbuf(char *string, int len, connection_t *conn) {
  314. return find_on_inbuf(string, len, conn->inbuf, conn->inbuf_datalen);
  315. }
  316. int connection_wants_to_flush(connection_t *conn) {
  317. return conn->outbuf_flushlen;
  318. }
  319. int connection_outbuf_too_full(connection_t *conn) {
  320. return (conn->outbuf_flushlen > 10*CELL_PAYLOAD_SIZE);
  321. }
  322. int connection_flush_buf(connection_t *conn) {
  323. return flush_buf(conn->s, &conn->outbuf, &conn->outbuflen, &conn->outbuf_flushlen, &conn->outbuf_datalen);
  324. }
  325. int connection_write_to_buf(char *string, int len, connection_t *conn) {
  326. struct timeval now;
  327. my_gettimeofday(&now);
  328. if(!len)
  329. return 0;
  330. if(conn->marked_for_close)
  331. return 0;
  332. conn->timestamp_lastwritten = now.tv_sec;
  333. if( (!connection_speaks_cells(conn)) ||
  334. (!connection_state_is_open(conn)) ||
  335. (options.LinkPadding == 0) ) {
  336. /* connection types other than or and op, or or/op not in 'open' state, should flush immediately */
  337. /* also flush immediately if we're not doing LinkPadding, since otherwise it will never flush */
  338. connection_start_writing(conn);
  339. conn->outbuf_flushlen += len;
  340. }
  341. return write_to_buf(string, len, &conn->outbuf, &conn->outbuflen, &conn->outbuf_datalen);
  342. }
  343. int connection_receiver_bucket_should_increase(connection_t *conn) {
  344. assert(conn);
  345. if(!connection_speaks_cells(conn))
  346. return 0; /* edge connections don't use receiver_buckets */
  347. if(conn->receiver_bucket > 10*conn->bandwidth)
  348. return 0;
  349. return 1;
  350. }
  351. void connection_increment_receiver_bucket(connection_t *conn) {
  352. assert(conn);
  353. if(connection_receiver_bucket_should_increase(conn)) {
  354. /* yes, the receiver_bucket can become overfull here. But not by much. */
  355. conn->receiver_bucket += conn->bandwidth*1.1;
  356. // log(LOG_DEBUG,"connection_increment_receiver_bucket(): Bucket now %d.",conn->receiver_bucket);
  357. if(connection_state_is_open(conn)) {
  358. /* if we're in state 'open', then start reading again */
  359. connection_start_reading(conn);
  360. }
  361. }
  362. }
  363. int connection_speaks_cells(connection_t *conn) {
  364. assert(conn);
  365. if(conn->type == CONN_TYPE_OR || conn->type == CONN_TYPE_OP)
  366. return 1;
  367. return 0;
  368. }
  369. int connection_is_listener(connection_t *conn) {
  370. if(conn->type == CONN_TYPE_OP_LISTENER ||
  371. conn->type == CONN_TYPE_OR_LISTENER ||
  372. conn->type == CONN_TYPE_AP_LISTENER ||
  373. conn->type == CONN_TYPE_DIR_LISTENER)
  374. return 1;
  375. return 0;
  376. }
  377. int connection_state_is_open(connection_t *conn) {
  378. assert(conn);
  379. if((conn->type == CONN_TYPE_OR && conn->state == OR_CONN_STATE_OPEN) ||
  380. (conn->type == CONN_TYPE_OP && conn->state == OP_CONN_STATE_OPEN) ||
  381. (conn->type == CONN_TYPE_AP && conn->state == AP_CONN_STATE_OPEN) ||
  382. (conn->type == CONN_TYPE_EXIT && conn->state == EXIT_CONN_STATE_OPEN))
  383. return 1;
  384. return 0;
  385. }
  386. void connection_send_cell(connection_t *conn) {
  387. cell_t cell;
  388. int bytes_in_full_flushlen;
  389. /* this function only gets called if options.LinkPadding is 1 */
  390. assert(options.LinkPadding == 1);
  391. assert(conn);
  392. if(!connection_speaks_cells(conn)) {
  393. /* this conn doesn't speak cells. do nothing. */
  394. return;
  395. }
  396. if(!connection_state_is_open(conn)) {
  397. /* it's not in 'open' state, all data should already be waiting to be flushed */
  398. assert(conn->outbuf_datalen == conn->outbuf_flushlen);
  399. return;
  400. }
  401. #if 0 /* use to send evenly spaced cells, but not padding */
  402. if(conn->outbuf_datalen - conn->outbuf_flushlen >= sizeof(cell_t)) {
  403. conn->outbuf_flushlen += sizeof(cell_t); /* instruct it to send a cell */
  404. connection_start_writing(conn);
  405. }
  406. #endif
  407. connection_increment_send_timeval(conn); /* update when we'll send the next cell */
  408. bytes_in_full_flushlen = conn->bandwidth / 100; /* 10ms worth */
  409. if(bytes_in_full_flushlen < 10*sizeof(cell_t))
  410. bytes_in_full_flushlen = 10*sizeof(cell_t); /* but at least 10 cells worth */
  411. if(conn->outbuf_flushlen > bytes_in_full_flushlen - sizeof(cell_t)) {
  412. /* if we would exceed bytes_in_full_flushlen by adding a new cell */
  413. return;
  414. }
  415. if(conn->outbuf_datalen - conn->outbuf_flushlen < sizeof(cell_t)) {
  416. /* we need to queue a padding cell first */
  417. memset(&cell,0,sizeof(cell_t));
  418. cell.command = CELL_PADDING;
  419. connection_write_cell_to_buf(&cell, conn);
  420. }
  421. /* ???? If we might not have added a cell above, why are we
  422. * ???? increasing outbuf_flushlen? -NM */
  423. /* The connection_write_cell_to_buf() call doesn't increase the flushlen
  424. * (if link padding is on). So if there isn't a whole cell waiting-but-
  425. * not-yet-flushed, we add a padding cell. Thus in any case the gap between
  426. * outbuf_datalen and outbuf_flushlen is at least sizeof(cell_t). -RD
  427. */
  428. /* XXXX actually, there are some subtle bugs lurking in here. They
  429. * have to do with the fact that we don't handle connection failure
  430. * cleanly. Sometimes we mark things to be closed later. Inside
  431. * connection_write_cell_to_buf, it returns successfully without
  432. * writing if the connection has been marked for close. We need to
  433. * look at all our failure cases more carefully and make sure they do
  434. * the right thing.
  435. */
  436. conn->outbuf_flushlen += sizeof(cell_t); /* instruct it to send a cell */
  437. connection_start_writing(conn);
  438. }
  439. void connection_increment_send_timeval(connection_t *conn) {
  440. /* add "1000000 * sizeof(cell_t) / conn->bandwidth" microseconds to conn->send_timeval */
  441. /* FIXME should perhaps use ceil() of this. For now I simply add 1. */
  442. tv_addms(&conn->send_timeval, 1+1000 * sizeof(cell_t) / conn->bandwidth);
  443. }
  444. void connection_init_timeval(connection_t *conn) {
  445. assert(conn);
  446. my_gettimeofday(&conn->send_timeval);
  447. connection_increment_send_timeval(conn);
  448. }
  449. int connection_send_destroy(aci_t aci, connection_t *conn) {
  450. cell_t cell;
  451. assert(conn);
  452. if(!connection_speaks_cells(conn)) {
  453. log(LOG_INFO,"connection_send_destroy(): Aci %d: At an edge. Marking connection for close.", aci);
  454. conn->marked_for_close = 1;
  455. return 0;
  456. }
  457. memset(&cell, 0, sizeof(cell_t));
  458. cell.aci = aci;
  459. cell.command = CELL_DESTROY;
  460. log(LOG_INFO,"connection_send_destroy(): Sending destroy (aci %d).",aci);
  461. return connection_write_cell_to_buf(&cell, conn);
  462. }
  463. int connection_write_cell_to_buf(const cell_t *cellp, connection_t *conn) {
  464. char networkcell[CELL_NETWORK_SIZE];
  465. char *n = networkcell;
  466. cell_pack(n, cellp);
  467. if(connection_encrypt_cell(n,conn)<0) {
  468. return -1;
  469. }
  470. return connection_write_to_buf(n, CELL_NETWORK_SIZE, conn);
  471. }
  472. int connection_encrypt_cell(char *cellp, connection_t *conn) {
  473. char cryptcell[CELL_NETWORK_SIZE];
  474. #if 0
  475. int x;
  476. char *px;
  477. printf("Sending: Cell header plaintext: ");
  478. px = (char *)cellp;
  479. for(x=0;x<8;x++) {
  480. printf("%u ",px[x]);
  481. }
  482. printf("\n");
  483. #endif
  484. assert(conn);
  485. if(crypto_cipher_encrypt(conn->f_crypto, cellp, CELL_NETWORK_SIZE, cryptcell)) {
  486. log(LOG_ERR,"Could not encrypt cell for connection %s:%u.",conn->address,conn->port);
  487. return -1;
  488. }
  489. #if 0
  490. printf("Sending: Cell header crypttext: ");
  491. px = (char *)&newcell;
  492. for(x=0;x<8;x++) {
  493. printf("%u ",px[x]);
  494. }
  495. printf("\n");
  496. #endif
  497. memcpy(cellp,cryptcell,CELL_NETWORK_SIZE);
  498. return 0;
  499. }
  500. int connection_process_inbuf(connection_t *conn) {
  501. assert(conn);
  502. switch(conn->type) {
  503. case CONN_TYPE_OP:
  504. return connection_op_process_inbuf(conn);
  505. case CONN_TYPE_OR:
  506. return connection_or_process_inbuf(conn);
  507. case CONN_TYPE_EXIT:
  508. case CONN_TYPE_AP:
  509. return connection_edge_process_inbuf(conn);
  510. case CONN_TYPE_DIR:
  511. return connection_dir_process_inbuf(conn);
  512. case CONN_TYPE_DNSMASTER:
  513. return connection_dns_process_inbuf(conn);
  514. default:
  515. log(LOG_DEBUG,"connection_process_inbuf() got unexpected conn->type.");
  516. return -1;
  517. }
  518. }
  519. int connection_package_raw_inbuf(connection_t *conn) {
  520. int amount_to_process, len;
  521. cell_t cell;
  522. circuit_t *circ;
  523. assert(conn);
  524. assert(!connection_speaks_cells(conn));
  525. /* this function should never get called if either package_window is 0 */
  526. repeat_connection_package_raw_inbuf:
  527. amount_to_process = conn->inbuf_datalen;
  528. if(!amount_to_process)
  529. return 0;
  530. /* Initialize the cell with 0's */
  531. memset(&cell, 0, sizeof(cell_t));
  532. #ifdef USE_ZLIB
  533. /* This compression logic is not necessarily optimal:
  534. * 1) Maybe we should try to read as much as we can onto the inbuf before
  535. * compressing.
  536. * 2)
  537. */
  538. len = connection_compress_from_buf(cell.payload+RELAY_HEADER_SIZE,
  539. CELL_PAYLOAD_SIZE - RELAY_HEADER_SIZE,
  540. conn, Z_SYNC_FLUSH);
  541. if (len < 0)
  542. return -1;
  543. cell.length = len;
  544. #else
  545. if(amount_to_process > CELL_PAYLOAD_SIZE - RELAY_HEADER_SIZE) {
  546. cell.length = CELL_PAYLOAD_SIZE - RELAY_HEADER_SIZE;
  547. } else {
  548. cell.length = amount_to_process;
  549. }
  550. if(connection_fetch_from_buf(cell.payload+RELAY_HEADER_SIZE,
  551. cell.length, conn) < 0)
  552. return -1;
  553. #endif
  554. circ = circuit_get_by_conn(conn);
  555. if(!circ) {
  556. log(LOG_DEBUG,"connection_package_raw_inbuf(): conn has no circuits!");
  557. return -1;
  558. }
  559. log(LOG_DEBUG,"connection_package_raw_inbuf(): (%d) Packaging %d bytes (%d waiting).",conn->s,cell.length, conn->inbuf_datalen);
  560. cell.command = CELL_RELAY;
  561. SET_CELL_RELAY_COMMAND(cell, RELAY_COMMAND_DATA);
  562. SET_CELL_STREAM_ID(cell, conn->stream_id);
  563. cell.length += RELAY_HEADER_SIZE;
  564. if(conn->type == CONN_TYPE_EXIT) {
  565. cell.aci = circ->p_aci;
  566. if(circuit_deliver_relay_cell_from_edge(&cell, circ, EDGE_EXIT, NULL) < 0) {
  567. log(LOG_DEBUG,"connection_package_raw_inbuf(): circuit_deliver_relay_cell_from_edge (backward) failed. Closing.");
  568. circuit_close(circ);
  569. return 0;
  570. }
  571. assert(circ->package_window > 0);
  572. circ->package_window--;
  573. } else { /* send it forward. we're an AP */
  574. assert(conn->type == CONN_TYPE_AP);
  575. cell.aci = circ->n_aci;
  576. if(circuit_deliver_relay_cell_from_edge(&cell, circ, EDGE_AP, conn->cpath_layer) < 0) {
  577. log(LOG_DEBUG,"connection_package_raw_inbuf(): circuit_deliver_relay_cell_from_edge (forward) failed. Closing.");
  578. circuit_close(circ);
  579. return 0;
  580. }
  581. assert(conn->cpath_layer->package_window > 0);
  582. conn->cpath_layer->package_window--;
  583. }
  584. if(circuit_consider_stop_edge_reading(circ,
  585. conn->type == CONN_TYPE_EXIT ? EDGE_EXIT : EDGE_AP, conn->cpath_layer))
  586. return 0;
  587. assert(conn->package_window > 0);
  588. if(--conn->package_window <= 0) { /* is it 0 after decrement? */
  589. connection_stop_reading(conn);
  590. log(LOG_DEBUG,"connection_package_raw_inbuf(): conn->package_window reached 0.");
  591. return 0; /* don't process the inbuf any more */
  592. }
  593. log(LOG_DEBUG,"connection_package_raw_inbuf(): conn->package_window is %d",conn->package_window);
  594. /* handle more if there's more, or return 0 if there isn't */
  595. goto repeat_connection_package_raw_inbuf;
  596. }
  597. int connection_consider_sending_sendme(connection_t *conn, int edge_type) {
  598. circuit_t *circ;
  599. cell_t cell;
  600. if(connection_outbuf_too_full(conn))
  601. return 0;
  602. circ = circuit_get_by_conn(conn);
  603. if(!circ) {
  604. /* this can legitimately happen if the destroy has already arrived and torn down the circuit */
  605. log(LOG_DEBUG,"connection_consider_sending_sendme(): No circuit associated with conn. Skipping.");
  606. return 0;
  607. }
  608. memset(&cell, 0, sizeof(cell_t));
  609. cell.command = CELL_RELAY;
  610. SET_CELL_RELAY_COMMAND(cell, RELAY_COMMAND_SENDME);
  611. SET_CELL_STREAM_ID(cell, conn->stream_id);
  612. cell.length += RELAY_HEADER_SIZE;
  613. if(edge_type == EDGE_EXIT)
  614. cell.aci = circ->p_aci;
  615. else
  616. cell.aci = circ->n_aci;
  617. while(conn->deliver_window < STREAMWINDOW_START - STREAMWINDOW_INCREMENT) {
  618. log(LOG_DEBUG,"connection_consider_sending_sendme(): Outbuf %d, Queueing stream sendme.", conn->outbuf_flushlen);
  619. conn->deliver_window += STREAMWINDOW_INCREMENT;
  620. if(circuit_deliver_relay_cell_from_edge(&cell, circ, edge_type, conn->cpath_layer) < 0) {
  621. log(LOG_DEBUG,"connection_consider_sending_sendme(): circuit_deliver_relay_cell_from_edge failed. Closing.");
  622. circuit_close(circ);
  623. return 0;
  624. }
  625. }
  626. return 0;
  627. }
  628. int connection_finished_flushing(connection_t *conn) {
  629. assert(conn);
  630. // log(LOG_DEBUG,"connection_finished_flushing() entered. Socket %u.", conn->s);
  631. switch(conn->type) {
  632. case CONN_TYPE_OP:
  633. return connection_op_finished_flushing(conn);
  634. case CONN_TYPE_OR:
  635. return connection_or_finished_flushing(conn);
  636. case CONN_TYPE_AP:
  637. case CONN_TYPE_EXIT:
  638. return connection_edge_finished_flushing(conn);
  639. case CONN_TYPE_DIR:
  640. return connection_dir_finished_flushing(conn);
  641. case CONN_TYPE_DNSMASTER:
  642. return connection_dns_finished_flushing(conn);
  643. default:
  644. log(LOG_DEBUG,"connection_finished_flushing() got unexpected conn->type.");
  645. return -1;
  646. }
  647. }
  648. int connection_process_cell_from_inbuf(connection_t *conn) {
  649. /* check if there's a whole cell there.
  650. * if yes, pull it off, decrypt it, and process it.
  651. */
  652. char crypted[CELL_NETWORK_SIZE];
  653. char outbuf[1024];
  654. // int x;
  655. cell_t cell;
  656. if(conn->inbuf_datalen < CELL_NETWORK_SIZE) /* entire response available? */
  657. return 0; /* not yet */
  658. if(connection_fetch_from_buf(crypted,CELL_NETWORK_SIZE,conn) < 0) {
  659. return -1;
  660. }
  661. #if 0
  662. printf("Cell header crypttext: ");
  663. for(x=0;x<8;x++) {
  664. printf("%u ",crypted[x]);
  665. }
  666. printf("\n");
  667. #endif
  668. /* decrypt */
  669. if(crypto_cipher_decrypt(conn->b_crypto,crypted,CELL_NETWORK_SIZE,outbuf)) {
  670. log(LOG_ERR,"connection_process_cell_from_inbuf(): Decryption failed, dropping.");
  671. return connection_process_inbuf(conn); /* process the remainder of the buffer */
  672. }
  673. // log(LOG_DEBUG,"connection_process_cell_from_inbuf(): Cell decrypted (%d bytes).",outlen);
  674. #if 0
  675. printf("Cell header plaintext: ");
  676. for(x=0;x<8;x++) {
  677. printf("%u ",outbuf[x]);
  678. }
  679. printf("\n");
  680. #endif
  681. /* retrieve cell info from outbuf (create the host-order struct from the network-order string) */
  682. cell_unpack(&cell, outbuf);
  683. // log(LOG_DEBUG,"connection_process_cell_from_inbuf(): Decrypted cell is of type %u (ACI %u).",cellp->command,cellp->aci);
  684. command_process_cell(&cell, conn);
  685. return connection_process_inbuf(conn); /* process the remainder of the buffer */
  686. }
  687. void
  688. cell_pack(char *dest, const cell_t *src)
  689. {
  690. *(uint16_t*)dest = htons(src->aci);
  691. *(uint8_t*)(dest+2) = src->command;
  692. *(uint8_t*)(dest+3) = src->length;
  693. *(uint32_t*)(dest+4) = 0; /* Reserved */
  694. memcpy(dest+8, src->payload, CELL_PAYLOAD_SIZE);
  695. }
  696. void
  697. cell_unpack(cell_t *dest, const char *src)
  698. {
  699. dest->aci = ntohs(*(uint16_t*)(src));
  700. dest->command = *(uint8_t*)(src+2);
  701. dest->length = *(uint8_t*)(src+3);
  702. dest->seq = ntohl(*(uint32_t*)(src+4));
  703. memcpy(dest->payload, src+8, CELL_PAYLOAD_SIZE);
  704. }
  705. /*
  706. Local Variables:
  707. mode:c
  708. indent-tabs-mode:nil
  709. c-basic-offset:2
  710. End:
  711. */