or.h 172 KB

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  1. /* Copyright (c) 2001 Matej Pfajfar.
  2. * Copyright (c) 2001-2004, Roger Dingledine.
  3. * Copyright (c) 2004-2007, Roger Dingledine, Nick Mathewson. */
  4. /* See LICENSE for licensing information */
  5. /* $Id$ */
  6. /**
  7. * \file or.h
  8. * \brief Master header file for Tor-specific functionality.
  9. **/
  10. #ifndef __OR_H
  11. #define __OR_H
  12. #define OR_H_ID "$Id$"
  13. #include "orconfig.h"
  14. #ifdef MS_WINDOWS
  15. #define WIN32_WINNT 0x400
  16. #define _WIN32_WINNT 0x400
  17. #define WIN32_LEAN_AND_MEAN
  18. #endif
  19. #ifdef HAVE_UNISTD_H
  20. #include <unistd.h>
  21. #endif
  22. #ifdef HAVE_SIGNAL_H
  23. #include <signal.h>
  24. #endif
  25. #ifdef HAVE_NETDB_H
  26. #include <netdb.h>
  27. #endif
  28. #ifdef HAVE_SYS_PARAM_H
  29. #include <sys/param.h> /* FreeBSD needs this to know what version it is */
  30. #endif
  31. #include "torint.h"
  32. #ifdef HAVE_SYS_WAIT_H
  33. #include <sys/wait.h>
  34. #endif
  35. #ifdef HAVE_SYS_FCNTL_H
  36. #include <sys/fcntl.h>
  37. #endif
  38. #ifdef HAVE_FCNTL_H
  39. #include <fcntl.h>
  40. #endif
  41. #ifdef HAVE_SYS_IOCTL_H
  42. #include <sys/ioctl.h>
  43. #endif
  44. #ifdef HAVE_SYS_UN_H
  45. #include <sys/un.h>
  46. #endif
  47. #ifdef HAVE_SYS_STAT_H
  48. #include <sys/stat.h>
  49. #endif
  50. #ifdef HAVE_ARPA_INET_H
  51. #include <arpa/inet.h>
  52. #endif
  53. #ifdef HAVE_ERRNO_H
  54. #include <errno.h>
  55. #endif
  56. #ifdef HAVE_ASSERT_H
  57. #include <assert.h>
  58. #endif
  59. #ifdef HAVE_TIME_H
  60. #include <time.h>
  61. #endif
  62. /** Upper bound on maximum simultaneous connections; can be lowered by
  63. * config file. */
  64. #if defined(CYGWIN) || defined(__CYGWIN__)
  65. /* http://archives.seul.org/or/talk/Aug-2006/msg00210.html */
  66. #define MAXCONNECTIONS 3200
  67. #else
  68. /* very high by default. "nobody should need more than this..." */
  69. #define MAXCONNECTIONS 15000
  70. #endif
  71. #ifdef MS_WINDOWS
  72. #include <io.h>
  73. #include <process.h>
  74. #include <direct.h>
  75. #include <windows.h>
  76. #define snprintf _snprintf
  77. #endif
  78. #include "crypto.h"
  79. #include "tortls.h"
  80. #include "log.h"
  81. #include "compat.h"
  82. #include "container.h"
  83. #include "util.h"
  84. #include "torgzip.h"
  85. #include <event.h>
  86. /* These signals are defined to help control_signal_act work.
  87. */
  88. #ifndef SIGHUP
  89. #define SIGHUP 1
  90. #endif
  91. #ifndef SIGINT
  92. #define SIGINT 2
  93. #endif
  94. #ifndef SIGUSR1
  95. #define SIGUSR1 10
  96. #endif
  97. #ifndef SIGUSR2
  98. #define SIGUSR2 12
  99. #endif
  100. #ifndef SIGTERM
  101. #define SIGTERM 15
  102. #endif
  103. /* Controller signals start at a high number so we don't
  104. * conflict with system-defined signals. */
  105. #define SIGNEWNYM 129
  106. #define SIGCLEARDNSCACHE 130
  107. #if (SIZEOF_CELL_T != 0)
  108. /* On Irix, stdlib.h defines a cell_t type, so we need to make sure
  109. * that our stuff always calls cell_t something different. */
  110. #define cell_t tor_cell_t
  111. #endif
  112. /** Length of longest allowable configured nickname. */
  113. #define MAX_NICKNAME_LEN 19
  114. /** Length of a router identity encoded as a hexadecimal digest, plus
  115. * possible dollar sign. */
  116. #define MAX_HEX_NICKNAME_LEN (HEX_DIGEST_LEN+1)
  117. /** Maximum length of verbose router identifier: dollar sign, hex ID digest,
  118. * equal sign or tilde, nickname. */
  119. #define MAX_VERBOSE_NICKNAME_LEN (1+HEX_DIGEST_LEN+1+MAX_NICKNAME_LEN)
  120. /** Maximum size, in bytes, for resized buffers. */
  121. #define MAX_BUF_SIZE ((1<<24)-1) /* 16MB-1 */
  122. /** Maximum size, in bytes, for any directory object that we've downloaded. */
  123. #define MAX_DIR_DL_SIZE MAX_BUF_SIZE
  124. /** For http parsing: Maximum number of bytes we'll accept in the headers
  125. * of an HTTP request or response. */
  126. #define MAX_HEADERS_SIZE 50000
  127. /** Maximum size, in bytes, for any directory object that we're accepting
  128. * as an upload. */
  129. #define MAX_DIR_UL_SIZE 500000
  130. /** How long do we keep DNS cache entries before purging them (regardless of
  131. * their TTL)? */
  132. #define MAX_DNS_ENTRY_AGE (30*60)
  133. /** How long do we cache/tell clients to cache DNS records when no TTL is
  134. * known? */
  135. #define DEFAULT_DNS_TTL (30*60)
  136. /** How long can a TTL be before we stop believing it? */
  137. #define MAX_DNS_TTL (3*60*60)
  138. /** How small can a TTL be before we stop believing it? Provides rudimentary
  139. * pinning. */
  140. #define MIN_DNS_TTL (60)
  141. /** How often do we rotate onion keys? */
  142. #define MIN_ONION_KEY_LIFETIME (7*24*60*60)
  143. /** How often do we rotate TLS contexts? */
  144. #define MAX_SSL_KEY_LIFETIME (2*60*60)
  145. /** How old do we allow a router to get before removing it
  146. * from the router list? In seconds. */
  147. #define ROUTER_MAX_AGE (60*60*48)
  148. /** How old can a router get before we (as a server) will no longer
  149. * consider it live? In seconds. */
  150. #define ROUTER_MAX_AGE_TO_PUBLISH (60*60*20)
  151. /** How old do we let a saved descriptor get before force-removing it? */
  152. #define OLD_ROUTER_DESC_MAX_AGE (60*60*24*5)
  153. /** Possible rules for generating circuit IDs on an OR connection. */
  154. typedef enum {
  155. CIRC_ID_TYPE_LOWER=0, /**< Pick from 0..1<<15-1. */
  156. CIRC_ID_TYPE_HIGHER=1, /**< Pick from 1<<15..1<<16-1. */
  157. /** The other side of a connection is an OP: never create circuits to it,
  158. * and let it use any circuit ID it wants. */
  159. CIRC_ID_TYPE_NEITHER=2
  160. } circ_id_type_t;
  161. #define _CONN_TYPE_MIN 3
  162. /** Type for sockets listening for OR connections. */
  163. #define CONN_TYPE_OR_LISTENER 3
  164. /** A bidirectional TLS connection transmitting a sequence of cells.
  165. * May be from an OR to an OR, or from an OP to an OR. */
  166. #define CONN_TYPE_OR 4
  167. /** A TCP connection from an onion router to a stream's destination. */
  168. #define CONN_TYPE_EXIT 5
  169. /** Type for sockets listening for SOCKS connections. */
  170. #define CONN_TYPE_AP_LISTENER 6
  171. /** A SOCKS proxy connection from the user application to the onion
  172. * proxy. */
  173. #define CONN_TYPE_AP 7
  174. /** Type for sockets listening for HTTP connections to the directory server. */
  175. #define CONN_TYPE_DIR_LISTENER 8
  176. /** Type for HTTP connections to the directory server. */
  177. #define CONN_TYPE_DIR 9
  178. /** Connection from the main process to a CPU worker process. */
  179. #define CONN_TYPE_CPUWORKER 10
  180. /** Type for listening for connections from user interface process. */
  181. #define CONN_TYPE_CONTROL_LISTENER 11
  182. /** Type for connections from user interface process. */
  183. #define CONN_TYPE_CONTROL 12
  184. /** Type for sockets listening for transparent connections redirected by pf or
  185. * netfilter. */
  186. #define CONN_TYPE_AP_TRANS_LISTENER 13
  187. /** Type for sockets listening for transparent connections redirected by
  188. * natd. */
  189. #define CONN_TYPE_AP_NATD_LISTENER 14
  190. /** Type for sockets listening for DNS requests. */
  191. #define CONN_TYPE_AP_DNS_LISTENER 15
  192. #define _CONN_TYPE_MAX 15
  193. /* !!!! If _CONN_TYPE_MAX is ever over 15, we must grow the type field in
  194. * connection_t. */
  195. #define CONN_IS_EDGE(x) \
  196. ((x)->type == CONN_TYPE_EXIT || (x)->type == CONN_TYPE_AP)
  197. /** State for any listener connection. */
  198. #define LISTENER_STATE_READY 0
  199. #define _CPUWORKER_STATE_MIN 1
  200. /** State for a connection to a cpuworker process that's idle. */
  201. #define CPUWORKER_STATE_IDLE 1
  202. /** State for a connection to a cpuworker process that's processing a
  203. * handshake. */
  204. #define CPUWORKER_STATE_BUSY_ONION 2
  205. #define _CPUWORKER_STATE_MAX 2
  206. #define CPUWORKER_TASK_ONION CPUWORKER_STATE_BUSY_ONION
  207. #define _OR_CONN_STATE_MIN 1
  208. /** State for a connection to an OR: waiting for connect() to finish. */
  209. #define OR_CONN_STATE_CONNECTING 1
  210. /** State for a connection to an OR: waiting for proxy command to flush. */
  211. #define OR_CONN_STATE_PROXY_FLUSHING 2
  212. /** State for a connection to an OR: waiting for proxy response. */
  213. #define OR_CONN_STATE_PROXY_READING 3
  214. /** State for a connection to an OR: SSL is handshaking, not done yet. */
  215. #define OR_CONN_STATE_TLS_HANDSHAKING 4
  216. /** State for a connection to an OR: We're done with our SSL handshake, but we
  217. * haven't yet negotiated link protocol versions and finished authenticating.
  218. */
  219. #define OR_CONN_STATE_OR_HANDSHAKING 5
  220. /** State for a connection to an OR: Ready to send/receive cells. */
  221. #define OR_CONN_STATE_OPEN 6
  222. #define _OR_CONN_STATE_MAX 6
  223. #define _EXIT_CONN_STATE_MIN 1
  224. /** State for an exit connection: waiting for response from dns farm. */
  225. #define EXIT_CONN_STATE_RESOLVING 1
  226. /** State for an exit connection: waiting for connect() to finish. */
  227. #define EXIT_CONN_STATE_CONNECTING 2
  228. /** State for an exit connection: open and ready to transmit data. */
  229. #define EXIT_CONN_STATE_OPEN 3
  230. /** State for an exit connection: waiting to be removed. */
  231. #define EXIT_CONN_STATE_RESOLVEFAILED 4
  232. #define _EXIT_CONN_STATE_MAX 4
  233. /* The AP state values must be disjoint from the EXIT state values. */
  234. #define _AP_CONN_STATE_MIN 5
  235. /** State for a SOCKS connection: waiting for SOCKS request. */
  236. #define AP_CONN_STATE_SOCKS_WAIT 5
  237. /** State for a SOCKS connection: got a y.onion URL; waiting to receive
  238. * rendezvous descriptor. */
  239. #define AP_CONN_STATE_RENDDESC_WAIT 6
  240. /** The controller will attach this connection to a circuit; it isn't our
  241. * job to do so. */
  242. #define AP_CONN_STATE_CONTROLLER_WAIT 7
  243. /** State for a SOCKS connection: waiting for a completed circuit. */
  244. #define AP_CONN_STATE_CIRCUIT_WAIT 8
  245. /** State for a SOCKS connection: sent BEGIN, waiting for CONNECTED. */
  246. #define AP_CONN_STATE_CONNECT_WAIT 9
  247. /** State for a SOCKS connection: sent RESOLVE, waiting for RESOLVED. */
  248. #define AP_CONN_STATE_RESOLVE_WAIT 10
  249. /** State for a SOCKS connection: ready to send and receive. */
  250. #define AP_CONN_STATE_OPEN 11
  251. /** State for a transparent natd connection: waiting for original
  252. * destination. */
  253. #define AP_CONN_STATE_NATD_WAIT 12
  254. #define _AP_CONN_STATE_MAX 12
  255. /** True iff the AP_CONN_STATE_* value <b>s</b> means that the corresponding
  256. * edge connection is not attached to any circuit. */
  257. #define AP_CONN_STATE_IS_UNATTACHED(s) \
  258. ((s) <= AP_CONN_STATE_CIRCUIT_WAIT || (s) == AP_CONN_STATE_NATD_WAIT)
  259. #define _DIR_CONN_STATE_MIN 1
  260. /** State for connection to directory server: waiting for connect(). */
  261. #define DIR_CONN_STATE_CONNECTING 1
  262. /** State for connection to directory server: sending HTTP request. */
  263. #define DIR_CONN_STATE_CLIENT_SENDING 2
  264. /** State for connection to directory server: reading HTTP response. */
  265. #define DIR_CONN_STATE_CLIENT_READING 3
  266. /** State for connection to directory server: happy and finished. */
  267. #define DIR_CONN_STATE_CLIENT_FINISHED 4
  268. /** State for connection at directory server: waiting for HTTP request. */
  269. #define DIR_CONN_STATE_SERVER_COMMAND_WAIT 5
  270. /** State for connection at directory server: sending HTTP response. */
  271. #define DIR_CONN_STATE_SERVER_WRITING 6
  272. #define _DIR_CONN_STATE_MAX 6
  273. /** True iff the purpose of <b>conn</b> means that it's a server-side
  274. * directory connection. */
  275. #define DIR_CONN_IS_SERVER(conn) ((conn)->purpose == DIR_PURPOSE_SERVER)
  276. #define _CONTROL_CONN_STATE_MIN 1
  277. /** State for a control connection: Authenticated and accepting v1 commands. */
  278. #define CONTROL_CONN_STATE_OPEN 1
  279. /** State for a control connection: Waiting for authentication; speaking
  280. * protocol v1. */
  281. #define CONTROL_CONN_STATE_NEEDAUTH 2
  282. #define _CONTROL_CONN_STATE_MAX 2
  283. #define _DIR_PURPOSE_MIN 1
  284. /** A connection to a directory server: download a directory. */
  285. #define DIR_PURPOSE_FETCH_DIR 1
  286. /** A connection to a directory server: download just the list
  287. * of running routers. */
  288. #define DIR_PURPOSE_FETCH_RUNNING_LIST 2
  289. /** A connection to a directory server: download a rendezvous
  290. * descriptor. */
  291. #define DIR_PURPOSE_FETCH_RENDDESC 3
  292. /** A connection to a directory server: set after a rendezvous
  293. * descriptor is downloaded. */
  294. #define DIR_PURPOSE_HAS_FETCHED_RENDDESC 4
  295. /** A connection to a directory server: download one or more network-status
  296. * objects */
  297. #define DIR_PURPOSE_FETCH_NETWORKSTATUS 5
  298. /** A connection to a directory server: download one or more server
  299. * descriptors. */
  300. #define DIR_PURPOSE_FETCH_SERVERDESC 6
  301. /** A connection to a directory server: download one or more extra-info
  302. * documents. */
  303. #define DIR_PURPOSE_FETCH_EXTRAINFO 7
  304. /** A connection to a directory server: upload a server descriptor. */
  305. #define DIR_PURPOSE_UPLOAD_DIR 8
  306. /** A connection to a directory server: upload a rendezvous
  307. * descriptor. */
  308. #define DIR_PURPOSE_UPLOAD_RENDDESC 9
  309. /** A connection to a directory server: upload a v3 networkstatus vote. */
  310. #define DIR_PURPOSE_UPLOAD_VOTE 10
  311. /** A connection to a directory server: upload a v3 consensus signature */
  312. #define DIR_PURPOSE_UPLOAD_SIGNATURES 11
  313. /** A connection to a directory server: download one or more network-status
  314. * objects */
  315. #define DIR_PURPOSE_FETCH_STATUS_VOTE 12
  316. /** A connection to a directory server: download one or more network-status
  317. * objects */
  318. #define DIR_PURPOSE_FETCH_DETACHED_SIGNATURES 13
  319. /** A connection to a directory server: download one or more network-status
  320. * objects */
  321. #define DIR_PURPOSE_FETCH_CONSENSUS 14
  322. /** A connection to a directory server: download one or more network-status
  323. * objects */
  324. #define DIR_PURPOSE_FETCH_CERTIFICATE 15
  325. /** Purpose for connection at a directory server. */
  326. #define DIR_PURPOSE_SERVER 16
  327. /** A connection to a hidden service directory server: upload a v2 rendezvous
  328. * descriptor. */
  329. #define DIR_PURPOSE_UPLOAD_RENDDESC_V2 17
  330. /** A connection to a hidden service directory server: download a v2 rendezvous
  331. * descriptor. */
  332. #define DIR_PURPOSE_FETCH_RENDDESC_V2 18
  333. #define _DIR_PURPOSE_MAX 18
  334. #define _EXIT_PURPOSE_MIN 1
  335. /** This exit stream wants to do an ordinary connect. */
  336. #define EXIT_PURPOSE_CONNECT 1
  337. /** This exit stream wants to do a resolve (either normal or reverse). */
  338. #define EXIT_PURPOSE_RESOLVE 2
  339. #define _EXIT_PURPOSE_MAX 2
  340. /* !!!! If any connection purpose is ever over over 31, we must grow the type
  341. * field in connection_t. */
  342. /** Circuit state: I'm the origin, still haven't done all my handshakes. */
  343. #define CIRCUIT_STATE_BUILDING 0
  344. /** Circuit state: Waiting to process the onionskin. */
  345. #define CIRCUIT_STATE_ONIONSKIN_PENDING 1
  346. /** Circuit state: I'd like to deliver a create, but my n_conn is still
  347. * connecting. */
  348. #define CIRCUIT_STATE_OR_WAIT 2
  349. /** Circuit state: onionskin(s) processed, ready to send/receive cells. */
  350. #define CIRCUIT_STATE_OPEN 3
  351. #define _CIRCUIT_PURPOSE_MIN 1
  352. /* these circuits were initiated elsewhere */
  353. #define _CIRCUIT_PURPOSE_OR_MIN 1
  354. /** OR-side circuit purpose: normal circuit, at OR. */
  355. #define CIRCUIT_PURPOSE_OR 1
  356. /** OR-side circuit purpose: At OR, from Bob, waiting for intro from Alices. */
  357. #define CIRCUIT_PURPOSE_INTRO_POINT 2
  358. /** OR-side circuit purpose: At OR, from Alice, waiting for Bob. */
  359. #define CIRCUIT_PURPOSE_REND_POINT_WAITING 3
  360. /** OR-side circuit purpose: At OR, both circuits have this purpose. */
  361. #define CIRCUIT_PURPOSE_REND_ESTABLISHED 4
  362. #define _CIRCUIT_PURPOSE_OR_MAX 4
  363. /* these circuits originate at this node */
  364. /* here's how circ client-side purposes work:
  365. * normal circuits are C_GENERAL.
  366. * circuits that are c_introducing are either on their way to
  367. * becoming open, or they are open and waiting for a
  368. * suitable rendcirc before they send the intro.
  369. * circuits that are c_introduce_ack_wait have sent the intro,
  370. * but haven't gotten a response yet.
  371. * circuits that are c_establish_rend are either on their way
  372. * to becoming open, or they are open and have sent the
  373. * establish_rendezvous cell but haven't received an ack.
  374. * circuits that are c_rend_ready are open and have received a
  375. * rend ack, but haven't heard from bob yet. if they have a
  376. * buildstate->pending_final_cpath then they're expecting a
  377. * cell from bob, else they're not.
  378. * circuits that are c_rend_ready_intro_acked are open, and
  379. * some intro circ has sent its intro and received an ack.
  380. * circuits that are c_rend_joined are open, have heard from
  381. * bob, and are talking to him.
  382. */
  383. /** Client-side circuit purpose: Normal circuit, with cpath. */
  384. #define CIRCUIT_PURPOSE_C_GENERAL 5
  385. /** Client-side circuit purpose: at Alice, connecting to intro point. */
  386. #define CIRCUIT_PURPOSE_C_INTRODUCING 6
  387. /** Client-side circuit purpose: at Alice, sent INTRODUCE1 to intro point,
  388. * waiting for ACK/NAK. */
  389. #define CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT 7
  390. /** Client-side circuit purpose: at Alice, introduced and acked, closing. */
  391. #define CIRCUIT_PURPOSE_C_INTRODUCE_ACKED 8
  392. /** Client-side circuit purpose: at Alice, waiting for ack. */
  393. #define CIRCUIT_PURPOSE_C_ESTABLISH_REND 9
  394. /** Client-side circuit purpose: at Alice, waiting for Bob. */
  395. #define CIRCUIT_PURPOSE_C_REND_READY 10
  396. /** Client-side circuit purpose: at Alice, waiting for Bob, INTRODUCE
  397. * has been acknowledged. */
  398. #define CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED 11
  399. /** Client-side circuit purpose: at Alice, rendezvous established. */
  400. #define CIRCUIT_PURPOSE_C_REND_JOINED 12
  401. /** Hidden-service-side circuit purpose: at Bob, waiting for introductions. */
  402. #define CIRCUIT_PURPOSE_S_ESTABLISH_INTRO 13
  403. /** Hidden-service-side circuit purpose: at Bob, successfully established
  404. * intro. */
  405. #define CIRCUIT_PURPOSE_S_INTRO 14
  406. /** Hidden-service-side circuit purpose: at Bob, connecting to rend point. */
  407. #define CIRCUIT_PURPOSE_S_CONNECT_REND 15
  408. /** Hidden-service-side circuit purpose: at Bob, rendezvous established. */
  409. #define CIRCUIT_PURPOSE_S_REND_JOINED 16
  410. /** A testing circuit; not meant to be used for actual traffic. */
  411. #define CIRCUIT_PURPOSE_TESTING 17
  412. /** A controller made this circuit and Tor should not use it. */
  413. #define CIRCUIT_PURPOSE_CONTROLLER 18
  414. #define _CIRCUIT_PURPOSE_MAX 18
  415. /** A catch-all for unrecognized purposes. Currently we don't expect
  416. * to make or see any circuits with this purpose. */
  417. #define CIRCUIT_PURPOSE_UNKNOWN 255
  418. /** True iff the circuit purpose <b>p</b> is for a circuit that
  419. * originated at this node. */
  420. #define CIRCUIT_PURPOSE_IS_ORIGIN(p) ((p)>_CIRCUIT_PURPOSE_OR_MAX)
  421. #define CIRCUIT_IS_ORIGIN(c) (CIRCUIT_PURPOSE_IS_ORIGIN((c)->purpose))
  422. /** How many circuits do we want simultaneously in-progress to handle
  423. * a given stream? */
  424. #define MIN_CIRCUITS_HANDLING_STREAM 2
  425. #define RELAY_COMMAND_BEGIN 1
  426. #define RELAY_COMMAND_DATA 2
  427. #define RELAY_COMMAND_END 3
  428. #define RELAY_COMMAND_CONNECTED 4
  429. #define RELAY_COMMAND_SENDME 5
  430. #define RELAY_COMMAND_EXTEND 6
  431. #define RELAY_COMMAND_EXTENDED 7
  432. #define RELAY_COMMAND_TRUNCATE 8
  433. #define RELAY_COMMAND_TRUNCATED 9
  434. #define RELAY_COMMAND_DROP 10
  435. #define RELAY_COMMAND_RESOLVE 11
  436. #define RELAY_COMMAND_RESOLVED 12
  437. #define RELAY_COMMAND_BEGIN_DIR 13
  438. #define RELAY_COMMAND_ESTABLISH_INTRO 32
  439. #define RELAY_COMMAND_ESTABLISH_RENDEZVOUS 33
  440. #define RELAY_COMMAND_INTRODUCE1 34
  441. #define RELAY_COMMAND_INTRODUCE2 35
  442. #define RELAY_COMMAND_RENDEZVOUS1 36
  443. #define RELAY_COMMAND_RENDEZVOUS2 37
  444. #define RELAY_COMMAND_INTRO_ESTABLISHED 38
  445. #define RELAY_COMMAND_RENDEZVOUS_ESTABLISHED 39
  446. #define RELAY_COMMAND_INTRODUCE_ACK 40
  447. /* Reasons why an OR connection is closed */
  448. #define END_OR_CONN_REASON_DONE 1
  449. #define END_OR_CONN_REASON_TCP_REFUSED 2
  450. #define END_OR_CONN_REASON_OR_IDENTITY 3
  451. #define END_OR_CONN_REASON_TLS_CONNRESET 4 /* tls connection reset by peer */
  452. #define END_OR_CONN_REASON_TLS_TIMEOUT 5
  453. #define END_OR_CONN_REASON_TLS_NO_ROUTE 6 /* no route to host/net */
  454. #define END_OR_CONN_REASON_TLS_IO_ERROR 7 /* tls read/write error */
  455. #define END_OR_CONN_REASON_TLS_MISC 8
  456. /* Reasons why we (or a remote OR) might close a stream. See tor-spec.txt for
  457. * documentation of these. */
  458. #define END_STREAM_REASON_MISC 1
  459. #define END_STREAM_REASON_RESOLVEFAILED 2
  460. #define END_STREAM_REASON_CONNECTREFUSED 3
  461. #define END_STREAM_REASON_EXITPOLICY 4
  462. #define END_STREAM_REASON_DESTROY 5
  463. #define END_STREAM_REASON_DONE 6
  464. #define END_STREAM_REASON_TIMEOUT 7
  465. /* 8 is unallocated for historical reasons. */
  466. #define END_STREAM_REASON_HIBERNATING 9
  467. #define END_STREAM_REASON_INTERNAL 10
  468. #define END_STREAM_REASON_RESOURCELIMIT 11
  469. #define END_STREAM_REASON_CONNRESET 12
  470. #define END_STREAM_REASON_TORPROTOCOL 13
  471. #define END_STREAM_REASON_NOTDIRECTORY 14
  472. /* These high-numbered end reasons are not part of the official spec,
  473. * and are not intended to be put in relay end cells. They are here
  474. * to be more informative when sending back socks replies to the
  475. * application. */
  476. /* XXXX 256 is no longer used; feel free to reuse it. */
  477. /** We were unable to attach the connection to any circuit at all. */
  478. /* XXXX the ways we use this one don't make a lot of sense. */
  479. #define END_STREAM_REASON_CANT_ATTACH 257
  480. /** We can't connect to any directories at all, so we killed our streams
  481. * before they can time out. */
  482. #define END_STREAM_REASON_NET_UNREACHABLE 258
  483. /** This is a SOCKS connection, and the client used (or misused) the SOCKS
  484. * protocol in a way we couldn't handle. */
  485. #define END_STREAM_REASON_SOCKSPROTOCOL 259
  486. /** This is a transparent proxy connection, but we can't extract the original
  487. * target address:port. */
  488. #define END_STREAM_REASON_CANT_FETCH_ORIG_DEST 260
  489. /** This is a connection on the NATD port, and the destination IP:Port was
  490. * either ill-formed or out-of-range. */
  491. #define END_STREAM_REASON_INVALID_NATD_DEST 261
  492. /** Bitwise-and this value with endreason to mask out all flags. */
  493. #define END_STREAM_REASON_MASK 511
  494. /** Bitwise-or this with the argument to control_event_stream_status
  495. * to indicate that the reason came from an END cell. */
  496. #define END_STREAM_REASON_FLAG_REMOTE 512
  497. /** Bitwise-or this with the argument to control_event_stream_status
  498. * to indicate that we already sent a CLOSED stream event. */
  499. #define END_STREAM_REASON_FLAG_ALREADY_SENT_CLOSED 1024
  500. /** Bitwise-or this with endreason to indicate that we already sent
  501. * a socks reply, and no further reply needs to be sent from
  502. * connection_mark_unattached_ap(). */
  503. #define END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED 2048
  504. /** Reason for remapping an AP connection's address: we have a cached
  505. * answer. */
  506. #define REMAP_STREAM_SOURCE_CACHE 1
  507. /** Reason for remapping an AP connection's address: the exit node told us an
  508. * answer. */
  509. #define REMAP_STREAM_SOURCE_EXIT 2
  510. /* 'type' values to use in RESOLVED cells. Specified in tor-spec.txt. */
  511. #define RESOLVED_TYPE_HOSTNAME 0
  512. #define RESOLVED_TYPE_IPV4 4
  513. #define RESOLVED_TYPE_IPV6 6
  514. #define RESOLVED_TYPE_ERROR_TRANSIENT 0xF0
  515. #define RESOLVED_TYPE_ERROR 0xF1
  516. /* Negative reasons are internal: we never send them in a DESTROY or TRUNCATE
  517. * call; they only go to the controller for tracking */
  518. /** We couldn't build a path for this circuit. */
  519. #define END_CIRC_REASON_NOPATH -2
  520. /** Catch-all "other" reason for closing origin circuits. */
  521. #define END_CIRC_AT_ORIGIN -1
  522. /* Reasons why we (or a remote OR) might close a circuit. See tor-spec.txt for
  523. * documentation of these. */
  524. #define _END_CIRC_REASON_MIN 0
  525. #define END_CIRC_REASON_NONE 0
  526. #define END_CIRC_REASON_TORPROTOCOL 1
  527. #define END_CIRC_REASON_INTERNAL 2
  528. #define END_CIRC_REASON_REQUESTED 3
  529. #define END_CIRC_REASON_HIBERNATING 4
  530. #define END_CIRC_REASON_RESOURCELIMIT 5
  531. #define END_CIRC_REASON_CONNECTFAILED 6
  532. #define END_CIRC_REASON_OR_IDENTITY 7
  533. #define END_CIRC_REASON_OR_CONN_CLOSED 8
  534. #define END_CIRC_REASON_FINISHED 9
  535. #define END_CIRC_REASON_TIMEOUT 10
  536. #define END_CIRC_REASON_DESTROYED 11
  537. #define END_CIRC_REASON_NOSUCHSERVICE 12
  538. #define _END_CIRC_REASON_MAX 12
  539. /** Bitwise-OR this with the argument to circuit_mark_for_close() or
  540. * control_event_circuit_status() to indicate that the reason was
  541. * passed through from a destroy or truncate cell. */
  542. #define END_CIRC_REASON_FLAG_REMOTE 512
  543. /** Length of 'y' portion of 'y.onion' URL. */
  544. #define REND_SERVICE_ID_LEN 16
  545. /** Time period for which a v2 descriptor will be valid. */
  546. #define REND_TIME_PERIOD_V2_DESC_VALIDITY (24*60*60)
  547. /** Time period within which two sets of v2 descriptors will be uploaded in
  548. * parallel. */
  549. #define REND_TIME_PERIOD_OVERLAPPING_V2_DESCS (60*60)
  550. /** Number of non-consecutive replicas (i.e. distributed somewhere
  551. * in the ring) for a descriptor. */
  552. #define REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS 2
  553. /** Maximum time that an onion router may not respond unless taken
  554. * from the list of hidden service directories. */
  555. #define REND_HS_DIR_REACHABLE_TIMEOUT (45*60)
  556. /** Number of consecutive replicas for a descriptor. */
  557. #define REND_NUMBER_OF_CONSECUTIVE_REPLICAS 3
  558. /** Length of v2 descriptor ID (32 base32 chars = 160 bits). */
  559. #define REND_DESC_ID_V2_LEN_BASE32 32
  560. /** Length of the base32-encoded secret ID part of versioned hidden service
  561. * descriptors. */
  562. #define REND_SECRET_ID_PART_LEN_BASE32 32
  563. /** Length of the base32-encoded hash of an introduction point's
  564. * identity key. */
  565. #define REND_INTRO_POINT_ID_LEN_BASE32 32
  566. #define CELL_DIRECTION_IN 1
  567. #define CELL_DIRECTION_OUT 2
  568. #ifdef TOR_PERF
  569. #define CIRCWINDOW_START 10000
  570. #define CIRCWINDOW_INCREMENT 1000
  571. #define STREAMWINDOW_START 5000
  572. #define STREAMWINDOW_INCREMENT 500
  573. #else
  574. /** Initial value for both sides of a circuit transmission window when the
  575. * circuit is initialized. Measured in cells. */
  576. #define CIRCWINDOW_START 1000
  577. /** Amount to increment a circuit window when we get a circuit SENDME. */
  578. #define CIRCWINDOW_INCREMENT 100
  579. /** Initial value on both sides of a stream transmission window when the
  580. * stream is initialized. Measured in cells. */
  581. #define STREAMWINDOW_START 500
  582. /** Amount to increment a stream window when we get a stream SENDME. */
  583. #define STREAMWINDOW_INCREMENT 50
  584. #endif
  585. /* cell commands */
  586. #define CELL_PADDING 0
  587. #define CELL_CREATE 1
  588. #define CELL_CREATED 2
  589. #define CELL_RELAY 3
  590. #define CELL_DESTROY 4
  591. #define CELL_CREATE_FAST 5
  592. #define CELL_CREATED_FAST 6
  593. #define CELL_VERSIONS 7
  594. #define CELL_NETINFO 8
  595. #define CELL_CERT 9
  596. #define CELL_LINK_AUTH 10
  597. /** How long to test reachability before complaining to the user. */
  598. #define TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT (20*60)
  599. /** Legal characters in a nickname. */
  600. #define LEGAL_NICKNAME_CHARACTERS \
  601. "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
  602. /** Name to use in client TLS certificates if no nickname is given. */
  603. #define DEFAULT_CLIENT_NICKNAME "client"
  604. /** Number of bytes in a SOCKS4 header. */
  605. #define SOCKS4_NETWORK_LEN 8
  606. /** Specified SOCKS5 status codes. */
  607. typedef enum {
  608. SOCKS5_SUCCEEDED = 0x00,
  609. SOCKS5_GENERAL_ERROR = 0x01,
  610. SOCKS5_NOT_ALLOWED = 0x02,
  611. SOCKS5_NET_UNREACHABLE = 0x03,
  612. SOCKS5_HOST_UNREACHABLE = 0x04,
  613. SOCKS5_CONNECTION_REFUSED = 0x05,
  614. SOCKS5_TTL_EXPIRED = 0x06,
  615. SOCKS5_COMMAND_NOT_SUPPORTED = 0x07,
  616. SOCKS5_ADDRESS_TYPE_NOT_SUPPORTED = 0x08,
  617. } socks5_reply_status_t;
  618. /*
  619. * Relay payload:
  620. * Relay command [1 byte]
  621. * Recognized [2 bytes]
  622. * Stream ID [2 bytes]
  623. * Partial SHA-1 [4 bytes]
  624. * Length [2 bytes]
  625. * Relay payload [498 bytes]
  626. */
  627. /** Number of bytes in a cell, minus cell header. */
  628. #define CELL_PAYLOAD_SIZE 509
  629. /** Number of bytes in a cell transmitted over the network. */
  630. #define CELL_NETWORK_SIZE 512
  631. /** Number of bytes in a relay cell's header (not including general cell
  632. * header). */
  633. #define RELAY_HEADER_SIZE (1+2+2+4+2)
  634. /** Largest number of bytes that can fit in a relay cell payload. */
  635. #define RELAY_PAYLOAD_SIZE (CELL_PAYLOAD_SIZE-RELAY_HEADER_SIZE)
  636. typedef struct cell_t cell_t;
  637. /** Parsed onion routing cell. All communication between nodes
  638. * is via cells. */
  639. struct cell_t {
  640. uint16_t circ_id; /**< Circuit which received the cell. */
  641. uint8_t command; /**< Type of the cell: one of PADDING, CREATE, RELAY,
  642. * or DESTROY. */
  643. char payload[CELL_PAYLOAD_SIZE]; /**< Cell body. */
  644. };
  645. typedef struct packed_cell_t packed_cell_t;
  646. /** A cell as packed for writing to the network. */
  647. struct packed_cell_t {
  648. struct packed_cell_t *next; /**< Next cell queued on this circuit. */
  649. char body[CELL_NETWORK_SIZE]; /**< Cell as packed for network. */
  650. };
  651. /** A queue of cells on a circuit, waiting to be added to the
  652. * or_connection_t's outbuf. */
  653. typedef struct cell_queue_t {
  654. packed_cell_t *head; /**< The first cell, or NULL if the queue is empty. */
  655. packed_cell_t *tail; /**< The last cell, or NULL if the queue is empty. */
  656. int n; /**< The number of cells in the queue. */
  657. } cell_queue_t;
  658. /** Beginning of a RELAY cell payload. */
  659. typedef struct {
  660. uint8_t command; /**< The end-to-end relay command. */
  661. uint16_t recognized; /**< Used to tell whether cell is for us. */
  662. uint16_t stream_id; /**< Which stream is this cell associated with? */
  663. char integrity[4]; /**< Used to tell whether cell is corrupted. */
  664. uint16_t length; /**< How long is the payload body? */
  665. } relay_header_t;
  666. typedef struct buf_t buf_t;
  667. typedef struct socks_request_t socks_request_t;
  668. /* Values for connection_t.magic: used to make sure that downcasts (casts from
  669. * connection_t to foo_connection_t) are safe. */
  670. #define BASE_CONNECTION_MAGIC 0x7C3C304Eu
  671. #define OR_CONNECTION_MAGIC 0x7D31FF03u
  672. #define EDGE_CONNECTION_MAGIC 0xF0374013u
  673. #define DIR_CONNECTION_MAGIC 0x9988ffeeu
  674. #define CONTROL_CONNECTION_MAGIC 0x8abc765du
  675. /** Description of a connection to another host or process, and associated
  676. * data.
  677. *
  678. * A connection is named based on what it's connected to -- an "OR
  679. * connection" has a Tor node on the other end, an "exit
  680. * connection" has a website or other server on the other end, and an
  681. * "AP connection" has an application proxy (and thus a user) on the
  682. * other end.
  683. *
  684. * Every connection has a type and a state. Connections never change
  685. * their type, but can go through many state changes in their lifetime.
  686. *
  687. * Every connection has two associated input and output buffers.
  688. * Listeners don't use them. For non-listener connections, incoming
  689. * data is appended to conn->inbuf, and outgoing data is taken from
  690. * conn->outbuf. Connections differ primarily in the functions called
  691. * to fill and drain these buffers.
  692. */
  693. typedef struct connection_t {
  694. uint32_t magic; /**< For memory debugging: must equal one of
  695. * *_CONNECTION_MAGIC. */
  696. uint8_t state; /**< Current state of this connection. */
  697. uint8_t type:4; /**< What kind of connection is this? */
  698. uint8_t purpose:5; /**< Only used for DIR and EXIT types currently. */
  699. /* The next fields are all one-bit booleans. Some are only applicable to
  700. * connection subtypes, but we hold them here anyway, to save space.
  701. */
  702. unsigned read_blocked_on_bw:1; /**< Boolean: should we start reading again
  703. * once the bandwidth throttler allows it? */
  704. unsigned write_blocked_on_bw:1; /**< Boolean: should we start writing again
  705. * once the bandwidth throttler allows reads? */
  706. unsigned hold_open_until_flushed:1; /**< Despite this connection's being
  707. * marked for close, do we flush it
  708. * before closing it? */
  709. unsigned int inbuf_reached_eof:1; /**< Boolean: did read() return 0 on this
  710. * conn? */
  711. unsigned int edge_has_sent_end:1; /**< For debugging; only used on edge
  712. * connections. Set once we've set the stream end,
  713. * and check in connection_about_to_close_connection().
  714. */
  715. /** Edge connections only: true if we've blocked writing until the
  716. * circuit has fewer queued cells. */
  717. unsigned int edge_blocked_on_circ:1;
  718. /** Used for OR conns that shouldn't get any new circs attached to them. */
  719. unsigned int or_is_obsolete:1;
  720. /** For AP connections only. If 1, and we fail to reach the chosen exit,
  721. * stop requiring it. */
  722. unsigned int chosen_exit_optional:1;
  723. /** Set to 1 when we're inside connection_flushed_some to keep us from
  724. * calling connection_handle_write() recursively. */
  725. unsigned int in_flushed_some:1;
  726. /* For linked connections:
  727. */
  728. unsigned int linked:1; /**< True if there is, or has been, a linked_conn. */
  729. /** True iff we'd like to be notified about read events from the
  730. * linked conn. */
  731. unsigned int reading_from_linked_conn:1;
  732. /** True iff we're willing to write to the linked conn. */
  733. unsigned int writing_to_linked_conn:1;
  734. /** True iff we're currently able to read on the linked conn, and our
  735. * read_event should be made active with libevent. */
  736. unsigned int active_on_link:1;
  737. /** True iff we've called connection_close_immediate() on this linked
  738. * connection. */
  739. unsigned int linked_conn_is_closed:1;
  740. int s; /**< Our socket; -1 if this connection is closed, or has no
  741. * socket. */
  742. int conn_array_index; /**< Index into the global connection array. */
  743. struct event *read_event; /**< Libevent event structure. */
  744. struct event *write_event; /**< Libevent event structure. */
  745. buf_t *inbuf; /**< Buffer holding data read over this connection. */
  746. buf_t *outbuf; /**< Buffer holding data to write over this connection. */
  747. size_t outbuf_flushlen; /**< How much data should we try to flush from the
  748. * outbuf? */
  749. time_t timestamp_lastread; /**< When was the last time libevent said we could
  750. * read? */
  751. time_t timestamp_lastwritten; /**< When was the last time libevent said we
  752. * could write? */
  753. time_t timestamp_created; /**< When was this connection_t created? */
  754. /* XXXX020 make this ipv6-capable */
  755. int socket_family; /**< Address family of this connection's socket. Usually
  756. * AF_INET, but it can also be AF_UNIX, or in the future
  757. * AF_INET6 */
  758. uint32_t addr; /**< IP of the other side of the connection; used to identify
  759. * routers, along with port. */
  760. uint16_t port; /**< If non-zero, port on the other end
  761. * of the connection. */
  762. uint16_t marked_for_close; /**< Should we close this conn on the next
  763. * iteration of the main loop? (If true, holds
  764. * the line number where this connection was
  765. * marked.) */
  766. const char *marked_for_close_file; /**< For debugging: in which file were
  767. * we marked for close? */
  768. char *address; /**< FQDN (or IP) of the guy on the other end.
  769. * strdup into this, because free_connection frees it. */
  770. /** Annother connection that's connected to this one in lieu of a socket. */
  771. struct connection_t *linked_conn;
  772. /* XXXX020 move this into a subtype!!! */
  773. struct evdns_server_port *dns_server_port;
  774. } connection_t;
  775. /** DOCDOC */
  776. typedef struct or_handshake_state_t {
  777. time_t sent_versions_at;
  778. unsigned int started_here : 1;
  779. unsigned int received_versions : 1;
  780. unsigned int received_netinfo : 1;
  781. unsigned int received_certs : 1;
  782. unsigned int authenticated : 1;
  783. /* from tls */
  784. char client_random[TOR_TLS_RANDOM_LEN];
  785. char server_random[TOR_TLS_RANDOM_LEN];
  786. char client_cert_digest[DIGEST_LEN]; /* may also be set by netinfo */
  787. char server_cert_digest[DIGEST_LEN];
  788. /* from netinfo */
  789. long apparent_skew;
  790. uint32_t my_apparent_addr;
  791. unsigned int apparently_canonical;
  792. /* from certs */
  793. char cert_id_digest[DIGEST_LEN];
  794. crypto_pk_env_t *signing_key;
  795. } or_handshake_state_t;
  796. /** Subtype of connection_t for an "OR connection" -- that is, one that speaks
  797. * cells over TLS. */
  798. typedef struct or_connection_t {
  799. connection_t _base;
  800. /** Hash of the public RSA key for the other side's identity key, or zeroes
  801. * if the other side hasn't shown us a valid identity key. */
  802. char identity_digest[DIGEST_LEN];
  803. char *nickname; /**< Nickname of OR on other side (if any). */
  804. tor_tls_t *tls; /**< TLS connection state. */
  805. int tls_error; /**< Last tor_tls error code. */
  806. /** When we last used this conn for any client traffic. If not
  807. * recent, we can rate limit it further. */
  808. time_t client_used;
  809. uint32_t real_addr; /**DOCDOC */
  810. circ_id_type_t circ_id_type:2; /**< When we send CREATE cells along this
  811. * connection, which half of the space should
  812. * we use? */
  813. unsigned int is_canonical:1; /**< DOCDOC */
  814. uint8_t link_proto; /**< What protocol version are we using? 0 for
  815. * "none negotiated yet." */
  816. uint16_t next_circ_id; /**< Which circ_id do we try to use next on
  817. * this connection? This is always in the
  818. * range 0..1<<15-1. */
  819. or_handshake_state_t *handshake_state;/**< DOCDOC */
  820. time_t timestamp_lastempty; /**< When was the outbuf last completely empty?*/
  821. /* bandwidth* and read_bucket only used by ORs in OPEN state: */
  822. int bandwidthrate; /**< Bytes/s added to the bucket. (OPEN ORs only.) */
  823. int bandwidthburst; /**< Max bucket size for this conn. (OPEN ORs only.) */
  824. int read_bucket; /**< When this hits 0, stop receiving. Every second we
  825. * add 'bandwidthrate' to this, capping it at
  826. * bandwidthburst. (OPEN ORs only) */
  827. int n_circuits; /**< How many circuits use this connection as p_conn or
  828. * n_conn ? */
  829. /** Double-linked ring of circuits with queued cells waiting for room to
  830. * free up on this connection's outbuf. Every time we pull cells from a
  831. * circuit, we advance this pointer to the next circuit in the ring. */
  832. struct circuit_t *active_circuits;
  833. struct or_connection_t *next_with_same_id; /**< Next connection with same
  834. * identity digest as this one. */
  835. } or_connection_t;
  836. /** Subtype of connection_t for an "edge connection" -- that is, a socks (ap)
  837. * connection, or an exit. */
  838. typedef struct edge_connection_t {
  839. connection_t _base;
  840. struct edge_connection_t *next_stream; /**< Points to the next stream at this
  841. * edge, if any */
  842. struct crypt_path_t *cpath_layer; /**< A pointer to which node in the circ
  843. * this conn exits at. */
  844. int package_window; /**< How many more relay cells can I send into the
  845. * circuit? */
  846. int deliver_window; /**< How many more relay cells can end at me? */
  847. /** Nickname of planned exit node -- used with .exit support. */
  848. char *chosen_exit_name;
  849. socks_request_t *socks_request; /**< SOCKS structure describing request (AP
  850. * only.) */
  851. struct circuit_t *on_circuit; /**< The circuit (if any) that this edge
  852. * connection is using. */
  853. uint32_t address_ttl; /**< TTL for address-to-addr mapping on exit
  854. * connection. Exit connections only. */
  855. uint16_t stream_id; /**< The stream ID used for this edge connection on its
  856. * circuit */
  857. /** The reason why this connection is closing; passed to the controller. */
  858. uint16_t end_reason;
  859. /** Quasi-global identifier for this connection; used for control.c */
  860. /* XXXX NM This can get re-used after 2**32 streams */
  861. uint32_t global_identifier;
  862. /** Bytes read since last call to control_event_stream_bandwidth_used() */
  863. uint32_t n_read;
  864. /** Bytes written since last call to control_event_stream_bandwidth_used() */
  865. uint32_t n_written;
  866. char rend_query[REND_SERVICE_ID_LEN+1]; /**< What rendezvous service are we
  867. * querying for? (AP only) */
  868. /** Number of times we've reassigned this application connection to
  869. * a new circuit. We keep track because the timeout is longer if we've
  870. * already retried several times. */
  871. uint8_t num_socks_retries;
  872. /** True iff this connection is for a dns request only. */
  873. unsigned int is_dns_request : 1;
  874. /** True iff this stream must attach to a one-hop circuit (e.g. for
  875. * begin_dir). */
  876. int want_onehop:1;
  877. /** True iff this stream should use a BEGIN_DIR relay command to establish
  878. * itself rather than BEGIN (either via onehop or via a whole circuit). */
  879. int use_begindir:1;
  880. /** If this is a DNSPort connection, this field holds the pending DNS
  881. * request that we're going to try to answer. */
  882. struct evdns_server_request *dns_server_request;
  883. } edge_connection_t;
  884. /** Subtype of connection_t for an "directory connection" -- that is, an HTTP
  885. * connection to retrieve or serve directory material. */
  886. typedef struct dir_connection_t {
  887. connection_t _base;
  888. char *requested_resource; /**< Which 'resource' did we ask the directory
  889. * for? */
  890. unsigned int dirconn_direct:1; /**< Is this dirconn direct, or via Tor? */
  891. /* Used only for server sides of some dir connections, to implement
  892. * "spooling" of directory material to the outbuf. Otherwise, we'd have
  893. * to append everything to the outbuf in one enormous chunk. */
  894. /** What exactly are we spooling right now? */
  895. enum {
  896. DIR_SPOOL_NONE=0, DIR_SPOOL_SERVER_BY_DIGEST, DIR_SPOOL_SERVER_BY_FP,
  897. DIR_SPOOL_EXTRA_BY_DIGEST, DIR_SPOOL_EXTRA_BY_FP,
  898. DIR_SPOOL_CACHED_DIR, DIR_SPOOL_NETWORKSTATUS
  899. } dir_spool_src : 3;
  900. /** If we're fetching descriptors, what router purpose shall we assign
  901. * to them? */
  902. uint8_t router_purpose;
  903. /** List of fingerprints for networkstatuses or desriptors to be spooled. */
  904. smartlist_t *fingerprint_stack;
  905. /** A cached_dir_t object that we're currently spooling out */
  906. struct cached_dir_t *cached_dir;
  907. /** The current offset into cached_dir. */
  908. off_t cached_dir_offset;
  909. /** The zlib object doing on-the-fly compression for spooled data. */
  910. tor_zlib_state_t *zlib_state;
  911. char rend_query[REND_SERVICE_ID_LEN+1]; /**< What rendezvous service are we
  912. * querying for? */
  913. char identity_digest[DIGEST_LEN]; /**< Hash of the public RSA key for
  914. * the directory server's signing key. */
  915. } dir_connection_t;
  916. /** Subtype of connection_t for an connection to a controller. */
  917. typedef struct control_connection_t {
  918. connection_t _base;
  919. uint32_t event_mask; /**< Bitfield: which events does this controller
  920. * care about? */
  921. unsigned int use_long_names:1; /**< True if we should use long nicknames
  922. * on this (v1) connection. Only settable
  923. * via v1 controllers. */
  924. /** For control connections only. If set, we send extended info with control
  925. * events as appropriate. */
  926. unsigned int use_extended_events:1;
  927. /** True if we have sent a protocolinfo reply on this connection. */
  928. unsigned int have_sent_protocolinfo:1;
  929. uint32_t incoming_cmd_len;
  930. uint32_t incoming_cmd_cur_len;
  931. char *incoming_cmd;
  932. /* Used only by control v0 connections */
  933. uint16_t incoming_cmd_type;
  934. } control_connection_t;
  935. /** Cast a connection_t subtype pointer to a connection_t **/
  936. #define TO_CONN(c) (&(((c)->_base)))
  937. /** Helper macro: Given a pointer to to._base, of type from*, return &to. */
  938. #define DOWNCAST(to, ptr) ((to*)SUBTYPE_P(ptr, to, _base))
  939. /** Convert a connection_t* to an or_connection_t*; assert if the cast is
  940. * invalid. */
  941. static or_connection_t *TO_OR_CONN(connection_t *);
  942. /** Convert a connection_t* to a dir_connection_t*; assert if the cast is
  943. * invalid. */
  944. static dir_connection_t *TO_DIR_CONN(connection_t *);
  945. /** Convert a connection_t* to an edge_connection_t*; assert if the cast is
  946. * invalid. */
  947. static edge_connection_t *TO_EDGE_CONN(connection_t *);
  948. /** Convert a connection_t* to an control_connection_t*; assert if the cast is
  949. * invalid. */
  950. static control_connection_t *TO_CONTROL_CONN(connection_t *);
  951. static INLINE or_connection_t *TO_OR_CONN(connection_t *c)
  952. {
  953. tor_assert(c->magic == OR_CONNECTION_MAGIC);
  954. return DOWNCAST(or_connection_t, c);
  955. }
  956. static INLINE dir_connection_t *TO_DIR_CONN(connection_t *c)
  957. {
  958. tor_assert(c->magic == DIR_CONNECTION_MAGIC);
  959. return DOWNCAST(dir_connection_t, c);
  960. }
  961. static INLINE edge_connection_t *TO_EDGE_CONN(connection_t *c)
  962. {
  963. tor_assert(c->magic == EDGE_CONNECTION_MAGIC);
  964. return DOWNCAST(edge_connection_t, c);
  965. }
  966. static INLINE control_connection_t *TO_CONTROL_CONN(connection_t *c)
  967. {
  968. tor_assert(c->magic == CONTROL_CONNECTION_MAGIC);
  969. return DOWNCAST(control_connection_t, c);
  970. }
  971. typedef enum {
  972. ADDR_POLICY_ACCEPT=1,
  973. ADDR_POLICY_REJECT=2,
  974. } addr_policy_action_t;
  975. /** A linked list of policy rules */
  976. typedef struct addr_policy_t {
  977. addr_policy_action_t policy_type; /**< What to do when the policy matches.*/
  978. char *string; /**< String representation of this rule. */
  979. /* XXXX020 make this ipv6-capable */
  980. uint32_t addr; /**< Base address to accept or reject. */
  981. maskbits_t maskbits; /**< Accept/reject all addresses <b>a</b> such that the
  982. * first <b>maskbits</b> bits of <b>a</b> match
  983. * <b>addr</b>. */
  984. uint16_t prt_min; /**< Lowest port number to accept/reject. */
  985. uint16_t prt_max; /**< Highest port number to accept/reject. */
  986. struct addr_policy_t *next; /**< Next rule in list. */
  987. } addr_policy_t;
  988. /** A cached_dir_t represents a cacheable directory object, along with its
  989. * compressed form. */
  990. typedef struct cached_dir_t {
  991. char *dir; /**< Contents of this object */
  992. char *dir_z; /**< Compressed contents of this object. */
  993. size_t dir_len; /**< Length of <b>dir</b> */
  994. size_t dir_z_len; /**< Length of <b>dir_z</b> */
  995. time_t published; /**< When was this object published */
  996. int refcnt; /**< Reference count for this cached_dir_t. */
  997. } cached_dir_t;
  998. /** Enum used to remember where a signed_descriptor_t is stored and how to
  999. * manage the memory for signed_descriptor_body. */
  1000. typedef enum {
  1001. /** The descriptor isn't stored on disk at all: the copy in memory is
  1002. * canonical; the saved_offset field is meaningless. */
  1003. SAVED_NOWHERE=0,
  1004. /** The descriptor is stored in the cached_routers file: the
  1005. * signed_descriptor_body is meaningless; the signed_descriptor_len and
  1006. * saved_offset are used to index into the mmaped cache file. */
  1007. SAVED_IN_CACHE,
  1008. /** The descriptor is stored in the cached_routers.new file: the
  1009. * signed_descriptor_body and saved_offset fields are both set. */
  1010. /* FFFF (We could also mmap the file and grow the mmap as needed, or
  1011. * lazy-load the descriptor text by using seek and read. We don't, for
  1012. * now.)
  1013. */
  1014. SAVED_IN_JOURNAL
  1015. } saved_location_t;
  1016. /** DOCDOC */
  1017. typedef enum {
  1018. DL_SCHED_GENERIC = 0,
  1019. DL_SCHED_CONSENSUS = 1,
  1020. } download_schedule_t;
  1021. /** Information about our plans for retrying downloads for a downloadable
  1022. * object. */
  1023. typedef struct download_status_t {
  1024. time_t next_attempt_at; /**< When should we try downloading this descriptor
  1025. * again? */
  1026. uint8_t n_download_failures; /**< Number of failures trying to download the
  1027. * most recent descriptor. */
  1028. download_schedule_t schedule : 1;
  1029. } download_status_t;
  1030. /** Information need to cache an onion router's descriptor. */
  1031. typedef struct signed_descriptor_t {
  1032. /** Pointer to the raw server descriptor, preceeded by annotatinos. Not
  1033. * necessarily NUL-terminated. If saved_location is SAVED_IN_CACHE, this
  1034. * pointer is null. */
  1035. char *signed_descriptor_body;
  1036. /** Length of the annotations preceeding the server descriptor. */
  1037. size_t annotations_len;
  1038. /** Length of the server descriptor. */
  1039. size_t signed_descriptor_len;
  1040. /** Digest of the server descriptor, computed as specified in dir-spec.txt */
  1041. char signed_descriptor_digest[DIGEST_LEN];
  1042. /** Identity digest of the router. */
  1043. char identity_digest[DIGEST_LEN];
  1044. /** Declared publication time of the descriptor */
  1045. time_t published_on;
  1046. /** For routerdescs only: digest of the corresponding extrainfo. */
  1047. char extra_info_digest[DIGEST_LEN];
  1048. /** For routerdescs only: Status of downloading the corresponding
  1049. * extrainfo. */
  1050. download_status_t ei_dl_status;
  1051. /** Where is the descriptor saved? */
  1052. saved_location_t saved_location;
  1053. /** If saved_location is SAVED_IN_CACHE or SAVED_IN_JOURNAL, the offset of
  1054. * this descriptor in the corresponding file. */
  1055. off_t saved_offset;
  1056. /** The valid-until time of the most recent consensus that listed this
  1057. * descriptor. 0 for "never listed in a consensus, so far as we know." */
  1058. time_t last_listed_as_valid_until;
  1059. /* If true, we do not ever try to save this object in the cache. */
  1060. unsigned int do_not_cache : 1;
  1061. /* If true, this item is meant to represent an extrainfo. */
  1062. unsigned int is_extrainfo : 1;
  1063. /* If true, we got an extrainfo for this item, and the digest was right,
  1064. * but it was incompatible. */
  1065. unsigned int extrainfo_is_bogus : 1;
  1066. } signed_descriptor_t;
  1067. /** Information about another onion router in the network. */
  1068. typedef struct {
  1069. signed_descriptor_t cache_info;
  1070. char *address; /**< Location of OR: either a hostname or an IP address. */
  1071. char *nickname; /**< Human-readable OR name. */
  1072. uint32_t addr; /**< IPv4 address of OR, in host order. */
  1073. uint16_t or_port; /**< Port for TLS connections. */
  1074. uint16_t dir_port; /**< Port for HTTP directory connections. */
  1075. crypto_pk_env_t *onion_pkey; /**< Public RSA key for onions. */
  1076. crypto_pk_env_t *identity_pkey; /**< Public RSA key for signing. */
  1077. char *platform; /**< What software/operating system is this OR using? */
  1078. /* link info */
  1079. uint32_t bandwidthrate; /**< How many bytes does this OR add to its token
  1080. * bucket per second? */
  1081. uint32_t bandwidthburst; /**< How large is this OR's token bucket? */
  1082. /** How many bytes/s is this router known to handle? */
  1083. uint32_t bandwidthcapacity;
  1084. addr_policy_t *exit_policy; /**< What streams will this OR permit
  1085. * to exit? */
  1086. long uptime; /**< How many seconds the router claims to have been up */
  1087. smartlist_t *declared_family; /**< Nicknames of router which this router
  1088. * claims are its family. */
  1089. char *contact_info; /**< Declared contact info for this router. */
  1090. unsigned int is_hibernating:1; /**< Whether the router claims to be
  1091. * hibernating */
  1092. unsigned int has_old_dnsworkers:1; /**< Whether the router is using
  1093. * dnsworker code. */
  1094. unsigned int caches_extra_info:1; /**< Whether the router caches and serves
  1095. * extrainfo documents. */
  1096. /* local info */
  1097. unsigned int is_running:1; /**< As far as we know, is this OR currently
  1098. * running? */
  1099. unsigned int is_valid:1; /**< Has a trusted dirserver validated this OR?
  1100. * (For Authdir: Have we validated this OR?)
  1101. */
  1102. unsigned int is_named:1; /**< Do we believe the nickname that this OR gives
  1103. * us? */
  1104. unsigned int is_fast:1; /** Do we think this is a fast OR? */
  1105. unsigned int is_stable:1; /** Do we think this is a stable OR? */
  1106. unsigned int is_possible_guard:1; /**< Do we think this is an OK guard? */
  1107. unsigned int is_exit:1; /**< Do we think this is an OK exit? */
  1108. unsigned int is_bad_exit:1; /**< Do we think this exit is censored, borked,
  1109. * or otherwise nasty? */
  1110. unsigned int wants_to_be_hs_dir:1; /**< True iff this router claims to be
  1111. * a hidden service directory. */
  1112. unsigned int is_hs_dir:1; /**< True iff this router is a hidden service
  1113. * directory according to the authorities. */
  1114. /** Tor can use this router for general positions in circuits. */
  1115. #define ROUTER_PURPOSE_GENERAL 0
  1116. /** Tor should avoid using this router for circuit-building. */
  1117. #define ROUTER_PURPOSE_CONTROLLER 1
  1118. /** Tor should use this router only for bridge positions in circuits. */
  1119. #define ROUTER_PURPOSE_BRIDGE 2
  1120. /** Tor should not use this router; it was marked in cached-descriptors with
  1121. * a purpose we didn't recognize. */
  1122. #define ROUTER_PURPOSE_UNKNOWN 255
  1123. uint8_t purpose; /** What positions in a circuit is this router good for? */
  1124. /* The below items are used only by authdirservers for
  1125. * reachability testing. */
  1126. /** When was the last time we could reach this OR? */
  1127. time_t last_reachable;
  1128. /** When did we start testing reachability for this OR? */
  1129. time_t testing_since;
  1130. /** What position is this descriptor within routerlist->routers? -1 for
  1131. * none. */
  1132. int routerlist_index;
  1133. } routerinfo_t;
  1134. /** Information needed to keep and cache a signed extra-info document. */
  1135. typedef struct extrainfo_t {
  1136. signed_descriptor_t cache_info;
  1137. /** The router's nickname. */
  1138. char nickname[MAX_NICKNAME_LEN+1];
  1139. /** True iff we found the right key for this extra-info, verified the
  1140. * signature, and found it to be bad. */
  1141. unsigned int bad_sig : 1;
  1142. /** If present, we didn't have the right key to verify this extra-info,
  1143. * so this is a copy of the signature in the document. */
  1144. char *pending_sig;
  1145. /** Length of pending_sig. */
  1146. size_t pending_sig_len;
  1147. } extrainfo_t;
  1148. /** Contents of a single router entry in a network status object.
  1149. */
  1150. typedef struct routerstatus_t {
  1151. time_t published_on; /**< When was this router published? */
  1152. char nickname[MAX_NICKNAME_LEN+1]; /**< The nickname this router says it
  1153. * has. */
  1154. char identity_digest[DIGEST_LEN]; /**< Digest of the router's identity
  1155. * key. */
  1156. char descriptor_digest[DIGEST_LEN]; /**< Digest of the router's most recent
  1157. * descriptor. */
  1158. uint32_t addr; /**< IPv4 address for this router. */
  1159. uint16_t or_port; /**< OR port for this router. */
  1160. uint16_t dir_port; /**< Directory port for this router. */
  1161. unsigned int is_authority:1; /**< True iff this router is an authority. */
  1162. unsigned int is_exit:1; /**< True iff this router is a good exit. */
  1163. unsigned int is_stable:1; /**< True iff this router stays up a long time. */
  1164. unsigned int is_fast:1; /**< True iff this router has good bandwidth. */
  1165. unsigned int is_running:1; /**< True iff this router is up. */
  1166. unsigned int is_named:1; /**< True iff "nickname" belongs to this router. */
  1167. unsigned int is_unnamed:1; /**< True iff "nickname" belongs to another
  1168. * router. */
  1169. unsigned int is_valid:1; /**< True iff this router is validated. */
  1170. unsigned int is_v2_dir:1; /**< True iff this router can serve directory
  1171. * information with v2 of the directory
  1172. * protocol. (All directory caches cache v1
  1173. * directories.) */
  1174. unsigned int is_possible_guard:1; /**< True iff this router would be a good
  1175. * choice as an entry guard. */
  1176. unsigned int is_bad_exit:1; /**< True iff this node is a bad choice for
  1177. * an exit node. */
  1178. unsigned int is_bad_directory:1; /**< Do we think this directory is junky,
  1179. * underpowered, or otherwise useless? */
  1180. unsigned int is_hs_dir:1; /** True iff this router is a hidden service
  1181. * directory. */
  1182. /** True iff we know version info for this router. (i.e., a "v" entry was
  1183. * included.) We'll replace all these with a big tor_version_t or a char[]
  1184. * if the number of traits we care about ever becomes incredibly big. */
  1185. unsigned int version_known:1;
  1186. /** True iff this router is a version that supports BEGIN_DIR cells. */
  1187. unsigned int version_supports_begindir:1;
  1188. /** True iff this router is a version that we can post extrainfo docs to. */
  1189. unsigned int version_supports_extrainfo_upload:1;
  1190. /** True iff this router is a version that, if it caches directory info,
  1191. * we can get v3 downloads from. */
  1192. unsigned int version_supports_v3_dir:1;
  1193. /* ---- The fields below aren't derived from the networkstatus; they
  1194. * hold local information only. */
  1195. /** True if we, as a directory mirror, want to download the corresponding
  1196. * routerinfo from the authority who gave us this routerstatus. (That is,
  1197. * if we don't have the routerinfo, and if we haven't already tried to get it
  1198. * from this authority.) Applies in v2 networkstatus document only.
  1199. */
  1200. unsigned int need_to_mirror:1;
  1201. unsigned int name_lookup_warned:1; /**< Have we warned the user for referring
  1202. * to this (unnamed) router by nickname?
  1203. */
  1204. time_t last_dir_503_at; /**< When did this router last tell us that it
  1205. * was too busy to serve directory info? */
  1206. download_status_t dl_status;
  1207. } routerstatus_t;
  1208. /** How many times will we try to download a router's descriptor before giving
  1209. * up? */
  1210. #define MAX_ROUTERDESC_DOWNLOAD_FAILURES 8
  1211. /** Contents of a v2 (non-consensus, non-vote) network status object. */
  1212. typedef struct networkstatus_v2_t {
  1213. /** When did we receive the network-status document? */
  1214. time_t received_on;
  1215. /** What was the digest of the document? */
  1216. char networkstatus_digest[DIGEST_LEN];
  1217. unsigned int is_recent; /**< Is this recent enough to influence running
  1218. * status? */
  1219. /* These fields come from the actual network-status document.*/
  1220. time_t published_on; /**< Declared publication date. */
  1221. char *source_address; /**< Canonical directory server hostname. */
  1222. uint32_t source_addr; /**< Canonical directory server IP. */
  1223. uint16_t source_dirport; /**< Canonical directory server dirport. */
  1224. unsigned int binds_names:1; /**< True iff this directory server binds
  1225. * names. */
  1226. unsigned int recommends_versions:1; /**< True iff this directory server
  1227. * recommends client and server software
  1228. * versions. */
  1229. unsigned int lists_bad_exits:1; /**< True iff this directory server marks
  1230. * malfunctioning exits as bad. */
  1231. /** True iff this directory server marks malfunctioning directories as
  1232. * bad. */
  1233. unsigned int lists_bad_directories:1;
  1234. char identity_digest[DIGEST_LEN]; /**< Digest of signing key. */
  1235. char *contact; /**< How to contact directory admin? (may be NULL). */
  1236. crypto_pk_env_t *signing_key; /**< Key used to sign this directory. */
  1237. char *client_versions; /**< comma-separated list of recommended client
  1238. * versions. */
  1239. char *server_versions; /**< comma-separated list of recommended server
  1240. * versions. */
  1241. smartlist_t *entries; /**< List of routerstatus_t*. This list is kept
  1242. * sorted by identity_digest. */
  1243. } networkstatus_v2_t;
  1244. /** The claim about a single router, make in a vote. */
  1245. typedef struct vote_routerstatus_t {
  1246. routerstatus_t status; /**< Underlying 'status' object for this router.
  1247. * Flags are redundant. */
  1248. uint64_t flags; /**< Bit-field for all recognized flags; index into
  1249. * networkstatus_vote_t.known_flags. */
  1250. char *version; /**< The version that the authority says this router is
  1251. * running. */
  1252. } vote_routerstatus_t;
  1253. /* Information about a single voter in a vote or a consensus. */
  1254. typedef struct networkstatus_voter_info_t {
  1255. char *nickname; /**< Nickname of this voter */
  1256. char identity_digest[DIGEST_LEN]; /**< Digest of this voter's identity key */
  1257. char *address; /**< Address of this voter, in string format. */
  1258. uint32_t addr; /**< Address of this voter, in IPv4, in host order. */
  1259. uint16_t dir_port; /**< Directory port of this voter */
  1260. uint16_t or_port; /**< OR port of this voter */
  1261. char *contact; /**< Contact information for this voter. */
  1262. char vote_digest[DIGEST_LEN]; /**< Digest of this voter's vote, as signed. */
  1263. /* DOCDOC */
  1264. char signing_key_digest[DIGEST_LEN]; /* This part is _not_ signed. */
  1265. char *signature;
  1266. int signature_len;
  1267. unsigned int bad_signature : 1;
  1268. unsigned int good_signature : 1;
  1269. } networkstatus_voter_info_t;
  1270. /** A common structure to hold a v2 network status vote, or a v2 network
  1271. * status consensus. */
  1272. /* XXXX020 rename to networkstatus_t once it replaces networkstatus_t in
  1273. * functionality. */
  1274. typedef struct networkstatus_vote_t {
  1275. int is_vote; /**< True if this is a vote; false if it is a consensus. */
  1276. time_t published; /**< Vote only: Tiem when vote was written. */
  1277. time_t valid_after; /**< Time after which this vote or consensus applies. */
  1278. time_t fresh_until; /**< Time before which this is the most recent vote or
  1279. * consensus. */
  1280. time_t valid_until; /**< Time after which this vote or consensus should not
  1281. * be used. */
  1282. /** Consensus only: what method was used to produce this consensus? */
  1283. int consensus_method;
  1284. /** Vote only: what methods is this voter willing to use? */
  1285. smartlist_t *supported_methods;
  1286. /** How long does this vote/consensus claim that authorities take to
  1287. * distribute their votes to one another? */
  1288. int vote_seconds;
  1289. /** How long does this vote/consensus claim that authorites take to
  1290. * distribute their consensus signatures to one another? */
  1291. int dist_seconds;
  1292. /** Comma-separated list of recommended client software, or NULL if this
  1293. * voter has no opinion. */
  1294. char *client_versions;
  1295. char *server_versions;
  1296. /** List of flags that this vote/consensus applies to routers. If a flag is
  1297. * not listed here, the voter has no opinion on what its value should be. */
  1298. smartlist_t *known_flags;
  1299. /** List of networkstatus_voter_info_t. For a vote, only one element
  1300. * is included. For a consensus, one element is included for every voter
  1301. * whose vote contributed to the consensus. */
  1302. smartlist_t *voters;
  1303. struct authority_cert_t *cert; /**< Vote only: the voter's certificate. */
  1304. /** Digest of this document, as signed. */
  1305. char networkstatus_digest[DIGEST_LEN];
  1306. /** List of router statuses, sorted by identity digest. For a vote,
  1307. * the elements are vote_routerstatus_t; for a consensus, the elements
  1308. * are routerstatus_t. */
  1309. smartlist_t *routerstatus_list;
  1310. /** If present, a map from descriptor digest to elements of
  1311. * routerstatus_list. */
  1312. digestmap_t *desc_digest_map;
  1313. } networkstatus_vote_t;
  1314. /** A set of signatures for a networkstatus consensus. All fields are as for
  1315. * networkstatus_vote_t. */
  1316. typedef struct ns_detached_signatures_t {
  1317. time_t valid_after;
  1318. time_t fresh_until;
  1319. time_t valid_until;
  1320. char networkstatus_digest[DIGEST_LEN];
  1321. smartlist_t *signatures; /* list of networkstatus_voter_info_t */
  1322. } ns_detached_signatures_t;
  1323. /** Allowable types of desc_store_t. */
  1324. typedef enum store_type_t {
  1325. ROUTER_STORE = 0,
  1326. EXTRAINFO_STORE = 1
  1327. } store_type_t;
  1328. /** A 'store' is a set of descriptors saved on disk, with accompanying
  1329. * journal, mmaped as needed, rebuilt as needed. */
  1330. typedef struct desc_store_t {
  1331. /** Filename (within DataDir) for the store. We append .tmp to this
  1332. * filename for a temporary file when rebuilding the store, and .new to this
  1333. * filename for the journal. */
  1334. const char *fname_base;
  1335. /** Alternative (obsolete) value for fname_base: if the file named by
  1336. * fname_base isn't present, we read from here instead, but we never write
  1337. * here. */
  1338. const char *fname_alt_base;
  1339. /** Human-readable description of what this store contains. */
  1340. const char *description;
  1341. tor_mmap_t *mmap; /**< A mmap for the main file in the store. */
  1342. store_type_t type; /**< What's stored in this store? */
  1343. /** The size of the router log, in bytes. */
  1344. size_t journal_len;
  1345. /** The size of the router store, in bytes. */
  1346. size_t store_len;
  1347. /** Total bytes dropped since last rebuild: this is space currently
  1348. * used in the cache and the journal that could be freed by a rebuild. */
  1349. size_t bytes_dropped;
  1350. } desc_store_t;
  1351. /** Contents of a directory of onion routers. */
  1352. typedef struct {
  1353. /** Map from server identity digest to a member of routers. */
  1354. struct digest_ri_map_t *identity_map;
  1355. /** Map from server descriptor digest to a signed_descriptor_t from
  1356. * routers or old_routers. */
  1357. struct digest_sd_map_t *desc_digest_map;
  1358. /** Map from extra-info digest to an extrainfo_t. Only exists for
  1359. * routers in routers or old_routers. */
  1360. struct digest_ei_map_t *extra_info_map;
  1361. /** Map from extra-info digests to a signed_descriptor_t for a router
  1362. * descriptor having that extra-info digest. Only exists for
  1363. * routers in routers or old_routers. */
  1364. struct digest_sd_map_t *desc_by_eid_map;
  1365. /** List of routerinfo_t for all currently live routers we know. */
  1366. smartlist_t *routers;
  1367. /** List of signed_descriptor_t for older router descriptors we're
  1368. * caching. */
  1369. smartlist_t *old_routers;
  1370. /** Store holding server descriptors. If present, any router whose
  1371. * cache_info.saved_location == SAVED_IN_CACHE is stored in this file
  1372. * starting at cache_info.saved_offset */
  1373. desc_store_t desc_store;
  1374. /** Store holding extra-info documents. */
  1375. desc_store_t extrainfo_store;
  1376. } routerlist_t;
  1377. /** Information on router used when extending a circuit. We don't need a
  1378. * full routerinfo_t to extend: we only need addr:port:keyid to build an OR
  1379. * connection, and onion_key to create the onionskin. Note that for onehop
  1380. * general-purpose tunnels, the onion_key is NULL. */
  1381. typedef struct extend_info_t {
  1382. char nickname[MAX_HEX_NICKNAME_LEN+1]; /**< This router's nickname for
  1383. * display. */
  1384. char identity_digest[DIGEST_LEN]; /**< Hash of this router's identity key. */
  1385. uint16_t port; /**< OR port. */
  1386. uint32_t addr; /**< IP address in host order. */
  1387. crypto_pk_env_t *onion_key; /**< Current onionskin key. */
  1388. } extend_info_t;
  1389. /** Certificate for v3 directory protocol: binds long-term authority identity
  1390. * keys to medium-term authority signing keys. */
  1391. typedef struct authority_cert_t {
  1392. signed_descriptor_t cache_info;
  1393. crypto_pk_env_t *identity_key;
  1394. crypto_pk_env_t *signing_key;
  1395. char signing_key_digest[DIGEST_LEN];
  1396. time_t expires;
  1397. uint32_t addr;
  1398. uint16_t dir_port;
  1399. } authority_cert_t;
  1400. /** Bitfield enum type listing types of directory authority/directory
  1401. * server. */
  1402. typedef enum {
  1403. NO_AUTHORITY = 0,
  1404. V1_AUTHORITY = 1 << 0,
  1405. V2_AUTHORITY = 1 << 1,
  1406. V3_AUTHORITY = 1 << 2,
  1407. HIDSERV_AUTHORITY = 1 << 3,
  1408. BRIDGE_AUTHORITY = 1 << 4,
  1409. EXTRAINFO_CACHE = 1 << 5, /* not precisely an authority type. */
  1410. } authority_type_t;
  1411. #define CRYPT_PATH_MAGIC 0x70127012u
  1412. /** Holds accounting information for a single step in the layered encryption
  1413. * performed by a circuit. Used only at the client edge of a circuit. */
  1414. typedef struct crypt_path_t {
  1415. uint32_t magic;
  1416. /* crypto environments */
  1417. /** Encryption key and counter for cells heading towards the OR at this
  1418. * step. */
  1419. crypto_cipher_env_t *f_crypto;
  1420. /** Encryption key and counter for cells heading back from the OR at this
  1421. * step. */
  1422. crypto_cipher_env_t *b_crypto;
  1423. /** Digest state for cells heading towards the OR at this step. */
  1424. crypto_digest_env_t *f_digest; /* for integrity checking */
  1425. /** Digest state for cells heading away from the OR at this step. */
  1426. crypto_digest_env_t *b_digest;
  1427. /** Current state of Diffie-Hellman key negotiation with the OR at this
  1428. * step. */
  1429. crypto_dh_env_t *dh_handshake_state;
  1430. /** Current state of 'fast' (non-PK) key negotiation with the OR at this
  1431. * step. Used to save CPU when TLS is already providing all the
  1432. * authentication, secrecy, and integrity we need, and we're already
  1433. * distinguishable from an OR.
  1434. */
  1435. char fast_handshake_state[DIGEST_LEN];
  1436. /** Negotiated key material shared with the OR at this step. */
  1437. char handshake_digest[DIGEST_LEN];/* KH in tor-spec.txt */
  1438. /** Information to extend to the OR at this step. */
  1439. extend_info_t *extend_info;
  1440. /** Is the circuit built to this step? Must be one of:
  1441. * - CPATH_STATE_CLOSED (The circuit has not been extended to this step)
  1442. * - CPATH_STATE_AWAITING_KEYS (We have sent an EXTEND/CREATE to this step
  1443. * and not received an EXTENDED/CREATED)
  1444. * - CPATH_STATE_OPEN (The circuit has been extended to this step) */
  1445. uint8_t state;
  1446. #define CPATH_STATE_CLOSED 0
  1447. #define CPATH_STATE_AWAITING_KEYS 1
  1448. #define CPATH_STATE_OPEN 2
  1449. struct crypt_path_t *next; /**< Link to next crypt_path_t in the circuit.
  1450. * (The list is circular, so the last node
  1451. * links to the first.) */
  1452. struct crypt_path_t *prev; /**< Link to previous crypt_path_t in the
  1453. * circuit. */
  1454. int package_window; /**< How many bytes are we allowed to originate ending
  1455. * at this step? */
  1456. int deliver_window; /**< How many bytes are we willing to deliver originating
  1457. * at this step? */
  1458. } crypt_path_t;
  1459. #define CPATH_KEY_MATERIAL_LEN (20*2+16*2)
  1460. #define DH_KEY_LEN DH_BYTES
  1461. #define ONIONSKIN_CHALLENGE_LEN (PKCS1_OAEP_PADDING_OVERHEAD+\
  1462. CIPHER_KEY_LEN+\
  1463. DH_KEY_LEN)
  1464. #define ONIONSKIN_REPLY_LEN (DH_KEY_LEN+DIGEST_LEN)
  1465. #define REND_COOKIE_LEN DIGEST_LEN
  1466. /** Information used to build a circuit. */
  1467. typedef struct {
  1468. /** Intended length of the final circuit. */
  1469. int desired_path_len;
  1470. /** How to extend to the planned exit node. */
  1471. extend_info_t *chosen_exit;
  1472. /** Whether every node in the circ must have adequate uptime. */
  1473. int need_uptime;
  1474. /** Whether every node in the circ must have adequate capacity. */
  1475. int need_capacity;
  1476. /** Whether the last hop was picked with exiting in mind. */
  1477. int is_internal;
  1478. /** Did we pick this as a one-hop tunnel (not safe for other conns)?
  1479. * These are for encrypted connections that exit to this router, not
  1480. * for arbitrary exits from the circuit. */
  1481. int onehop_tunnel;
  1482. /** The crypt_path_t to append after rendezvous: used for rendezvous. */
  1483. crypt_path_t *pending_final_cpath;
  1484. /** How many times has building a circuit for this task failed? */
  1485. int failure_count;
  1486. /** At what time should we give up on this task? */
  1487. time_t expiry_time;
  1488. } cpath_build_state_t;
  1489. #define ORIGIN_CIRCUIT_MAGIC 0x35315243u
  1490. #define OR_CIRCUIT_MAGIC 0x98ABC04Fu
  1491. typedef uint16_t circid_t;
  1492. /**
  1493. * A circuit is a path over the onion routing
  1494. * network. Applications can connect to one end of the circuit, and can
  1495. * create exit connections at the other end of the circuit. AP and exit
  1496. * connections have only one circuit associated with them (and thus these
  1497. * connection types are closed when the circuit is closed), whereas
  1498. * OR connections multiplex many circuits at once, and stay standing even
  1499. * when there are no circuits running over them.
  1500. *
  1501. * A circuit_t structure can fill one of two roles. First, a or_circuit_t
  1502. * links two connections together: either an edge connection and an OR
  1503. * connection, or two OR connections. (When joined to an OR connection, a
  1504. * circuit_t affects only cells sent to a particular circID on that
  1505. * connection. When joined to an edge connection, a circuit_t affects all
  1506. * data.)
  1507. * Second, an origin_circuit_t holds the cipher keys and state for sending data
  1508. * along a given circuit. At the OP, it has a sequence of ciphers, each
  1509. * of which is shared with a single OR along the circuit. Separate
  1510. * ciphers are used for data going "forward" (away from the OP) and
  1511. * "backward" (towards the OP). At the OR, a circuit has only two stream
  1512. * ciphers: one for data going forward, and one for data going backward.
  1513. */
  1514. typedef struct circuit_t {
  1515. uint32_t magic; /**< For memory and type debugging: must equal
  1516. * ORIGIN_CIRCUIT_MAGIC or OR_CIRCUIT_MAGIC. */
  1517. /** Queue of cells waiting to be transmitted on n_conn. */
  1518. cell_queue_t n_conn_cells;
  1519. /** The OR connection that is next in this circuit. */
  1520. or_connection_t *n_conn;
  1521. /** The identity hash of n_conn. */
  1522. char n_conn_id_digest[DIGEST_LEN];
  1523. /** The circuit_id used in the next (forward) hop of this circuit. */
  1524. uint16_t n_circ_id;
  1525. /** The port for the OR that is next in this circuit. */
  1526. uint16_t n_port;
  1527. /** The IPv4 address of the OR that is next in this circuit. */
  1528. uint32_t n_addr;
  1529. /** True iff we are waiting for n_conn_cells to become less full before
  1530. * allowing p_streams to add any more cells. (Origin circuit only.) */
  1531. unsigned int streams_blocked_on_n_conn : 1;
  1532. /** True iff we are waiting for p_conn_cells to become less full before
  1533. * allowing n_streams to add any more cells. (OR circuit only.) */
  1534. unsigned int streams_blocked_on_p_conn : 1;
  1535. uint8_t state; /**< Current status of this circuit. */
  1536. uint8_t purpose; /**< Why are we creating this circuit? */
  1537. /** How many relay data cells can we package (read from edge streams)
  1538. * on this circuit before we receive a circuit-level sendme cell asking
  1539. * for more? */
  1540. int package_window;
  1541. /** How many relay data cells will we deliver (write to edge streams)
  1542. * on this circuit? When deliver_window gets low, we send some
  1543. * circuit-level sendme cells to indicate that we're willing to accept
  1544. * more. */
  1545. int deliver_window;
  1546. /** For storage while passing to cpuworker (state
  1547. * CIRCUIT_STATE_ONIONSKIN_PENDING), or while n_conn is pending
  1548. * (state CIRCUIT_STATE_OR_WAIT). When defined, it is always
  1549. * length ONIONSKIN_CHALLENGE_LEN. */
  1550. char *onionskin;
  1551. time_t timestamp_created; /**< When was this circuit created? */
  1552. time_t timestamp_dirty; /**< When the circuit was first used, or 0 if the
  1553. * circuit is clean. */
  1554. uint16_t marked_for_close; /**< Should we close this circuit at the end of
  1555. * the main loop? (If true, holds the line number
  1556. * where this circuit was marked.) */
  1557. const char *marked_for_close_file; /**< For debugging: in which file was this
  1558. * circuit marked for close? */
  1559. /** Next circuit in the doubly-linked ring of circuits waiting to add
  1560. * cells to n_conn. NULL if we have no cells pending, or if we're not
  1561. * linked to an OR connection. */
  1562. struct circuit_t *next_active_on_n_conn;
  1563. /** Previous circuit in the doubly-linked ring of circuits waiting to add
  1564. * cells to n_conn. NULL if we have no cells pending, or if we're not
  1565. * linked to an OR connection. */
  1566. struct circuit_t *prev_active_on_n_conn;
  1567. struct circuit_t *next; /**< Next circuit in linked list of all circuits. */
  1568. } circuit_t;
  1569. /** An origin_circuit_t holds data necessary to build and use a circuit.
  1570. */
  1571. typedef struct origin_circuit_t {
  1572. circuit_t _base;
  1573. /** Linked list of AP streams (or EXIT streams if hidden service)
  1574. * associated with this circuit. */
  1575. edge_connection_t *p_streams;
  1576. /** Build state for this circuit. It includes the intended path
  1577. * length, the chosen exit router, rendezvous information, etc.
  1578. */
  1579. cpath_build_state_t *build_state;
  1580. /** The doubly-linked list of crypt_path_t entries, one per hop,
  1581. * for this circuit. This includes ciphers for each hop,
  1582. * integrity-checking digests for each hop, and package/delivery
  1583. * windows for each hop.
  1584. */
  1585. crypt_path_t *cpath;
  1586. /** The rend_pk_digest field holds a hash of location-hidden service's
  1587. * PK if purpose is S_ESTABLISH_INTRO or S_RENDEZVOUSING.
  1588. */
  1589. char rend_pk_digest[DIGEST_LEN];
  1590. /** Holds rendezvous cookie if purpose is C_ESTABLISH_REND. Filled with
  1591. * zeroes otherwise.
  1592. */
  1593. char rend_cookie[REND_COOKIE_LEN];
  1594. /**
  1595. * The rend_query field holds the y portion of y.onion (nul-terminated)
  1596. * if purpose is C_INTRODUCING or C_ESTABLISH_REND, or is a C_GENERAL
  1597. * for a hidden service, or is S_*.
  1598. */
  1599. char rend_query[REND_SERVICE_ID_LEN+1];
  1600. /** Stores the rendezvous descriptor version if purpose is S_*. Used to
  1601. * distinguish introduction and rendezvous points belonging to the same
  1602. * rendezvous service ID, but different descriptor versions.
  1603. * XXXX020 I believe this is a bitmap, but the doc doesn't say so. If so,
  1604. * why? A circuit can't be using two different rendezvous decriptors. -NM
  1605. * Yes, it is a bitmap. The reason is that it might turn out that a version
  1606. * 3 _can_ use the same introduction point as version 2; only version 0
  1607. * is incompatible. Would it be clearer to switch to a single version number
  1608. * for now and switch back to a bitmap, when the above becomes true? -KL
  1609. * Yes. "YAGNI." -NM
  1610. */
  1611. uint8_t rend_desc_version;
  1612. /* The intro key replaces the hidden service's public key if purpose is
  1613. * S_ESTABLISH_INTRO or S_INTRO, provided that no unversioned rendezvous
  1614. * descriptor is used. */
  1615. crypto_pk_env_t *intro_key;
  1616. /** The next stream_id that will be tried when we're attempting to
  1617. * construct a new AP stream originating at this circuit. */
  1618. uint16_t next_stream_id;
  1619. /** Quasi-global identifier for this circuit; used for control.c */
  1620. /* XXXX NM This can get re-used after 2**32 circuits. */
  1621. uint32_t global_identifier;
  1622. } origin_circuit_t;
  1623. /** An or_circuit_t holds information needed to implement a circuit at an
  1624. * OR. */
  1625. typedef struct or_circuit_t {
  1626. circuit_t _base;
  1627. /** Next circuit in the doubly-linked ring of circuits waiting to add
  1628. * cells to p_conn. NULL if we have no cells pending, or if we're not
  1629. * linked to an OR connection. */
  1630. struct circuit_t *next_active_on_p_conn;
  1631. /** Previous circuit in the doubly-linked ring of circuits waiting to add
  1632. * cells to p_conn. NULL if we have no cells pending, or if we're not
  1633. * linked to an OR connection. */
  1634. struct circuit_t *prev_active_on_p_conn;
  1635. /** The circuit_id used in the previous (backward) hop of this circuit. */
  1636. circid_t p_circ_id;
  1637. /** Queue of cells waiting to be transmitted on p_conn. */
  1638. cell_queue_t p_conn_cells;
  1639. /** The OR connection that is previous in this circuit. */
  1640. or_connection_t *p_conn;
  1641. /** Linked list of Exit streams associated with this circuit. */
  1642. edge_connection_t *n_streams;
  1643. /** Linked list of Exit streams associated with this circuit that are
  1644. * still being resolved. */
  1645. edge_connection_t *resolving_streams;
  1646. /** The cipher used by intermediate hops for cells heading toward the
  1647. * OP. */
  1648. crypto_cipher_env_t *p_crypto;
  1649. /** The cipher used by intermediate hops for cells heading away from
  1650. * the OP. */
  1651. crypto_cipher_env_t *n_crypto;
  1652. /** The integrity-checking digest used by intermediate hops, for
  1653. * cells packaged here and heading towards the OP.
  1654. */
  1655. crypto_digest_env_t *p_digest;
  1656. /** The integrity-checking digest used by intermediate hops, for
  1657. * cells packaged at the OP and arriving here.
  1658. */
  1659. crypto_digest_env_t *n_digest;
  1660. /** Points to spliced circuit if purpose is REND_ESTABLISHED, and circuit
  1661. * is not marked for close. */
  1662. struct or_circuit_t *rend_splice;
  1663. #if REND_COOKIE_LEN >= DIGEST_LEN
  1664. #define REND_TOKEN_LEN REND_COOKIE_LEN
  1665. #else
  1666. #define REND_TOKEN_LEN DIGEST_LEN
  1667. #endif
  1668. /** A hash of location-hidden service's PK if purpose is INTRO_POINT, or a
  1669. * rendezvous cookie if purpose is REND_POINT_WAITING. Filled with zeroes
  1670. * otherwise.
  1671. * ???? move to a subtype or adjunct structure? Wastes 20 bytes. -NM
  1672. */
  1673. char rend_token[REND_TOKEN_LEN];
  1674. /* ???? move to a subtype or adjunct structure? Wastes 20 bytes -NM */
  1675. char handshake_digest[DIGEST_LEN]; /**< Stores KH for the handshake. */
  1676. /** True iff this circuit was made with a CREATE_FAST cell. */
  1677. unsigned int is_first_hop : 1;
  1678. } or_circuit_t;
  1679. /** Convert a circuit subtype to a circuit_t.*/
  1680. #define TO_CIRCUIT(x) (&((x)->_base))
  1681. /** Convert a circuit_t* to a pointer to the enclosing or_circuit_t. Asserts
  1682. * if the cast is impossible. */
  1683. static or_circuit_t *TO_OR_CIRCUIT(circuit_t *);
  1684. /** Convert a circuit_t* to a pointer to the enclosing origin_circuit_t.
  1685. * Asserts if the cast is impossible. */
  1686. static origin_circuit_t *TO_ORIGIN_CIRCUIT(circuit_t *);
  1687. static INLINE or_circuit_t *TO_OR_CIRCUIT(circuit_t *x)
  1688. {
  1689. tor_assert(x->magic == OR_CIRCUIT_MAGIC);
  1690. return DOWNCAST(or_circuit_t, x);
  1691. }
  1692. static INLINE origin_circuit_t *TO_ORIGIN_CIRCUIT(circuit_t *x)
  1693. {
  1694. tor_assert(x->magic == ORIGIN_CIRCUIT_MAGIC);
  1695. return DOWNCAST(origin_circuit_t, x);
  1696. }
  1697. #define ALLOW_INVALID_ENTRY 1
  1698. #define ALLOW_INVALID_EXIT 2
  1699. #define ALLOW_INVALID_MIDDLE 4
  1700. #define ALLOW_INVALID_RENDEZVOUS 8
  1701. #define ALLOW_INVALID_INTRODUCTION 16
  1702. /** An entry specifying a set of addresses and ports that should be remapped
  1703. * to another address and port before exiting this exit node. */
  1704. typedef struct exit_redirect_t {
  1705. /* XXXX020 make this whole mess ipv6-capable. (Does anybody use it? */
  1706. uint32_t addr;
  1707. uint16_t port_min;
  1708. uint16_t port_max;
  1709. maskbits_t maskbits;
  1710. uint32_t addr_dest;
  1711. uint16_t port_dest;
  1712. unsigned is_redirect:1;
  1713. } exit_redirect_t;
  1714. /* limits for TCP send and recv buffer size used for constrained sockets */
  1715. #define MIN_CONSTRAINED_TCP_BUFFER 2048
  1716. #define MAX_CONSTRAINED_TCP_BUFFER 262144 /* 256k */
  1717. /** A linked list of lines in a config file. */
  1718. typedef struct config_line_t {
  1719. char *key;
  1720. char *value;
  1721. struct config_line_t *next;
  1722. } config_line_t;
  1723. /** Configuration options for a Tor process. */
  1724. typedef struct {
  1725. uint32_t _magic;
  1726. /** What should the tor process actually do? */
  1727. enum {
  1728. CMD_RUN_TOR=0, CMD_LIST_FINGERPRINT, CMD_HASH_PASSWORD,
  1729. CMD_VERIFY_CONFIG, CMD_RUN_UNITTESTS
  1730. } command;
  1731. const char *command_arg; /**< Argument for command-line option. */
  1732. config_line_t *Logs; /**< New-style list of configuration lines
  1733. * for logs */
  1734. char *DebugLogFile; /**< Where to send verbose log messages. */
  1735. char *DataDirectory; /**< OR only: where to store long-term data. */
  1736. char *Nickname; /**< OR only: nickname of this onion router. */
  1737. char *Address; /**< OR only: configured address for this onion router. */
  1738. char *PidFile; /**< Where to store PID of Tor process. */
  1739. char *ExitNodes; /**< Comma-separated list of nicknames of ORs to consider
  1740. * as exits. */
  1741. char *EntryNodes; /**< Comma-separated list of nicknames of ORs to consider
  1742. * as entry points. */
  1743. int StrictExitNodes; /**< Boolean: When none of our ExitNodes are up, do we
  1744. * stop building circuits? */
  1745. int StrictEntryNodes; /**< Boolean: When none of our EntryNodes are up, do we
  1746. * stop building circuits? */
  1747. char *ExcludeNodes; /**< Comma-separated list of nicknames of ORs not to
  1748. * use in circuits. */
  1749. char *RendNodes; /**< Comma-separated list of nicknames used as introduction
  1750. * points. */
  1751. char *RendExcludeNodes; /**< Comma-separated list of nicknames not to use
  1752. * as introduction points. */
  1753. /** List of "entry", "middle", "exit", "introduction", "rendezvous". */
  1754. smartlist_t *AllowInvalidNodes;
  1755. int _AllowInvalid; /**< Bitmask; derived from AllowInvalidNodes. */
  1756. config_line_t *ExitPolicy; /**< Lists of exit policy components. */
  1757. int ExitPolicyRejectPrivate; /**< Should we not exit to local addresses? */
  1758. config_line_t *SocksPolicy; /**< Lists of socks policy components */
  1759. config_line_t *DirPolicy; /**< Lists of dir policy components */
  1760. /** Addresses to bind for listening for SOCKS connections. */
  1761. config_line_t *SocksListenAddress;
  1762. /** Addresses to bind for listening for transparent pf/nefilter
  1763. * connections. */
  1764. config_line_t *TransListenAddress;
  1765. /** Addresses to bind for listening for transparent natd connections */
  1766. config_line_t *NatdListenAddress;
  1767. /** Addresses to bind for listening for SOCKS connections. */
  1768. config_line_t *DNSListenAddress;
  1769. /** Addresses to bind for listening for OR connections. */
  1770. config_line_t *ORListenAddress;
  1771. /** Addresses to bind for listening for directory connections. */
  1772. config_line_t *DirListenAddress;
  1773. /** Addresses to bind for listening for control connections. */
  1774. config_line_t *ControlListenAddress;
  1775. /** Local address to bind outbound sockets */
  1776. char *OutboundBindAddress;
  1777. /** Directory server only: which versions of
  1778. * Tor should we tell users to run? */
  1779. config_line_t *RecommendedVersions;
  1780. config_line_t *RecommendedClientVersions;
  1781. config_line_t *RecommendedServerVersions;
  1782. /** Whether dirservers refuse router descriptors with private IPs. */
  1783. int DirAllowPrivateAddresses;
  1784. char *User; /**< Name of user to run Tor as. */
  1785. char *Group; /**< Name of group to run Tor as. */
  1786. int ORPort; /**< Port to listen on for OR connections. */
  1787. int SocksPort; /**< Port to listen on for SOCKS connections. */
  1788. /** Port to listen on for transparent pf/netfilter connections. */
  1789. int TransPort;
  1790. int NatdPort; /**< Port to listen on for transparent natd connections. */
  1791. int ControlPort; /**< Port to listen on for control connections. */
  1792. config_line_t *ControlSocket; /**< List of Unix Domain Sockets to listen on
  1793. * for control connections. */
  1794. int DirPort; /**< Port to listen on for directory connections. */
  1795. int DNSPort; /**< Port to listen on for DNS requests. */
  1796. int AssumeReachable; /**< Whether to publish our descriptor regardless. */
  1797. int AuthoritativeDir; /**< Boolean: is this an authoritative directory? */
  1798. int V1AuthoritativeDir; /**< Boolean: is this an authoritative directory
  1799. * for version 1 directories? */
  1800. int V2AuthoritativeDir; /**< Boolean: is this an authoritative directory
  1801. * for version 2 directories? */
  1802. int V3AuthoritativeDir; /**< Boolean: is this an authoritative directory
  1803. * for version 3 directories? */
  1804. int HSAuthoritativeDir; /**< Boolean: does this an authoritative directory
  1805. * handle hidden service requests? */
  1806. int HSAuthorityRecordStats; /**< Boolean: does this HS authoritative
  1807. * directory record statistics? */
  1808. int NamingAuthoritativeDir; /**< Boolean: is this an authoritative directory
  1809. * that's willing to bind names? */
  1810. int VersioningAuthoritativeDir; /**< Boolean: is this an authoritative
  1811. * directory that's willing to recommend
  1812. * versions? */
  1813. int BridgeAuthoritativeDir; /**< Boolean: is this an authoritative directory
  1814. * that aggregates bridge descriptors? */
  1815. int UseBridges; /**< Boolean: should we start all circuits with a bridge? */
  1816. config_line_t *Bridges; /**< List of bootstrap bridge addresses. */
  1817. /** Boolean: if we know the bridge's digest, should we get new
  1818. * descriptors from the bridge authorities or from the bridge itself? */
  1819. int UpdateBridgesFromAuthority;
  1820. int AvoidDiskWrites; /**< Boolean: should we never cache things to disk?
  1821. * Not used yet. */
  1822. int ClientOnly; /**< Boolean: should we never evolve into a server role? */
  1823. /** Boolean: should we never publish a descriptor? Deprecated. */
  1824. int NoPublish;
  1825. /** To what authority types do we publish our descriptor? Choices are
  1826. * "v1", "v2", "bridge", or "". */
  1827. smartlist_t *PublishServerDescriptor;
  1828. /** An authority type, derived from PublishServerDescriptor. */
  1829. authority_type_t _PublishServerDescriptor;
  1830. /** Boolean: do we publish hidden service descriptors to the HS auths? */
  1831. int PublishHidServDescriptors;
  1832. int FetchServerDescriptors; /**< Do we fetch server descriptors as normal? */
  1833. int FetchHidServDescriptors; /** and hidden service descriptors? */
  1834. int HidServDirectoryV2; /**< Do we act as hs dir? */
  1835. /*XXXX020 maybe remove these next two testing options. DEFINITELY rename
  1836. * them at some point, since I think C says that identifiers beginning with
  1837. * __ are implementation-reserved or something. */
  1838. int __MinUptimeHidServDirectoryV2; /**< Accept hs dirs after what time? */
  1839. int __ConsiderAllRoutersAsHidServDirectories; /**< Consider all routers as
  1840. * hidden service dirs? */
  1841. int FetchUselessDescriptors; /**< Do we fetch non-running descriptors too? */
  1842. int AllDirActionsPrivate; /**< Should every directory action be sent
  1843. * through a Tor circuit? */
  1844. int ConnLimit; /**< Demanded minimum number of simultaneous connections. */
  1845. int _ConnLimit; /**< Maximum allowed number of simultaneous connections. */
  1846. int RunAsDaemon; /**< If true, run in the background. (Unix only) */
  1847. int FascistFirewall; /**< Whether to prefer ORs reachable on open ports. */
  1848. smartlist_t *FirewallPorts; /**< Which ports our firewall allows
  1849. * (strings). */
  1850. config_line_t *ReachableAddresses; /**< IP:ports our firewall allows. */
  1851. config_line_t *ReachableORAddresses; /**< IP:ports for OR conns. */
  1852. config_line_t *ReachableDirAddresses; /**< IP:ports for Dir conns. */
  1853. int ConstrainedSockets; /**< Shrink xmit and recv socket buffers. */
  1854. uint64_t ConstrainedSockSize; /**< Size of constrained buffers. */
  1855. /** Application ports that require all nodes in circ to have sufficient
  1856. * uptime. */
  1857. smartlist_t *LongLivedPorts;
  1858. /** Should we try to reuse the same exit node for a given host */
  1859. smartlist_t *TrackHostExits;
  1860. int TrackHostExitsExpire; /**< Number of seconds until we expire an
  1861. * addressmap */
  1862. config_line_t *AddressMap; /**< List of address map directives. */
  1863. int AutomapHostsOnResolve; /**< If true, when we get a resolve request for a
  1864. * hostname ending with one of the suffixes in
  1865. * <b>AutomapHostsSuffixes</b>, map it to a
  1866. * virtual address. */
  1867. smartlist_t *AutomapHostsSuffixes; /**< List of suffixes for
  1868. * <b>AutomapHostsOnResolve</b>. */
  1869. int RendPostPeriod; /**< How often do we post each rendezvous service
  1870. * descriptor? Remember to publish them independently. */
  1871. int KeepalivePeriod; /**< How often do we send padding cells to keep
  1872. * connections alive? */
  1873. int SocksTimeout; /**< How long do we let a socks connection wait
  1874. * unattached before we fail it? */
  1875. int CircuitBuildTimeout; /**< Cull non-open circuits that were born
  1876. * at least this many seconds ago. */
  1877. int CircuitIdleTimeout; /**< Cull open clean circuits that were born
  1878. * at least this many seconds ago. */
  1879. int MaxOnionsPending; /**< How many circuit CREATE requests do we allow
  1880. * to wait simultaneously before we start dropping
  1881. * them? */
  1882. int NewCircuitPeriod; /**< How long do we use a circuit before building
  1883. * a new one? */
  1884. int MaxCircuitDirtiness; /**< Never use circs that were first used more than
  1885. this interval ago. */
  1886. uint64_t BandwidthRate; /**< How much bandwidth, on average, are we willing
  1887. * to use in a second? */
  1888. uint64_t BandwidthBurst; /**< How much bandwidth, at maximum, are we willing
  1889. * to use in a second? */
  1890. uint64_t MaxAdvertisedBandwidth; /**< How much bandwidth are we willing to
  1891. * tell people we have? */
  1892. uint64_t RelayBandwidthRate; /**< How much bandwidth, on average, are we
  1893. * willing to use for all relayed conns? */
  1894. uint64_t RelayBandwidthBurst; /**< How much bandwidth, at maximum, will we
  1895. * use in a second for all relayed conns? */
  1896. int NumCpus; /**< How many CPUs should we try to use? */
  1897. int RunTesting; /**< If true, create testing circuits to measure how well the
  1898. * other ORs are running. */
  1899. char *TestVia; /**< When reachability testing, use these as middle hop. */
  1900. config_line_t *RendConfigLines; /**< List of configuration lines
  1901. * for rendezvous services. */
  1902. char *ContactInfo; /**< Contact info to be published in the directory */
  1903. char *HttpProxy; /**< hostname[:port] to use as http proxy, if any */
  1904. uint32_t HttpProxyAddr; /**< Parsed IPv4 addr for http proxy, if any */
  1905. uint16_t HttpProxyPort; /**< Parsed port for http proxy, if any */
  1906. char *HttpProxyAuthenticator; /**< username:password string, if any */
  1907. char *HttpsProxy; /**< hostname[:port] to use as https proxy, if any */
  1908. uint32_t HttpsProxyAddr; /**< Parsed IPv4 addr for https proxy, if any */
  1909. uint16_t HttpsProxyPort; /**< Parsed port for https proxy, if any */
  1910. char *HttpsProxyAuthenticator; /**< username:password string, if any */
  1911. config_line_t *DirServers; /**< List of configuration lines
  1912. * for directory servers. */
  1913. char *MyFamily; /**< Declared family for this OR. */
  1914. config_line_t *NodeFamilies; /**< List of config lines for
  1915. * node families */
  1916. config_line_t *RedirectExit; /**< List of config lines for simple
  1917. * addr/port redirection */
  1918. smartlist_t *RedirectExitList; /**< List of exit_redirect_t */
  1919. config_line_t *AuthDirBadExit; /**< Address policy for descriptors to
  1920. * mark as bad exits. */
  1921. config_line_t *AuthDirReject; /**< Address policy for descriptors to
  1922. * reject. */
  1923. config_line_t *AuthDirInvalid; /**< Address policy for descriptors to
  1924. * never mark as valid. */
  1925. int AuthDirListBadExits; /**< True iff we should list bad exits,
  1926. * and vote for all other exits as good. */
  1927. int AuthDirRejectUnlisted; /**< Boolean: do we reject all routers that
  1928. * aren't named in our fingerprint file? */
  1929. char *AccountingStart; /**< How long is the accounting interval, and when
  1930. * does it start? */
  1931. uint64_t AccountingMax; /**< How many bytes do we allow per accounting
  1932. * interval before hibernation? 0 for "never
  1933. * hibernate." */
  1934. char *HashedControlPassword; /**< Base64-encoded hash of a password for
  1935. * the control system. */
  1936. int CookieAuthentication; /**< Boolean: do we enable cookie-based auth for
  1937. * the control system? */
  1938. char *CookieAuthFile; /**< Location of a cookie authentication file. */
  1939. int CookieAuthFileGroupReadable; /**< Boolean: Is the CookieAuthFile g+r? */
  1940. int LeaveStreamsUnattached; /**< Boolean: Does Tor attach new streams to
  1941. * circuits itself (0), or does it expect a controller
  1942. * to cope? (1) */
  1943. int DisablePredictedCircuits; /**< Boolean: does Tor preemptively
  1944. * make circuits in the background (0),
  1945. * or not (1)? */
  1946. int ShutdownWaitLength; /**< When we get a SIGINT and we're a server, how
  1947. * long do we wait before exiting? */
  1948. int SafeLogging; /**< Boolean: are we allowed to log sensitive strings
  1949. * such as addresses (0), or do we scrub them first (1)? */
  1950. int SafeSocks; /**< Boolean: should we outright refuse application
  1951. * connections that use socks4 or socks5-with-local-dns? */
  1952. #define LOG_PROTOCOL_WARN (get_options()->ProtocolWarnings ? \
  1953. LOG_WARN : LOG_INFO)
  1954. int ProtocolWarnings; /**< Boolean: when other parties screw up the Tor
  1955. * protocol, is it a warn or an info in our logs? */
  1956. int TestSocks; /**< Boolean: when we get a socks connection, do we loudly
  1957. * log whether it was DNS-leaking or not? */
  1958. int HardwareAccel; /**< Boolean: Should we enable OpenSSL hardware
  1959. * acceleration where available? */
  1960. int UseEntryGuards; /**< Boolean: Do we try to enter from a smallish number
  1961. * of fixed nodes? */
  1962. int NumEntryGuards; /**< How many entry guards do we try to establish? */
  1963. int RephistTrackTime; /**< How many seconds do we keep rephist info? */
  1964. int FastFirstHopPK; /**< If Tor believes it is safe, should we save a third
  1965. * of our PK time by sending CREATE_FAST cells? */
  1966. addr_policy_t *reachable_addr_policy; /**< Parsed from ReachableAddresses */
  1967. char *VirtualAddrNetwork; /**< Address and mask to hand out for virtual
  1968. * MAPADDRESS requests. */
  1969. int ServerDNSSearchDomains; /**< Boolean: If set, we don't force exit
  1970. * addresses to be FQDNs, but rather search for them in
  1971. * the local domains. */
  1972. int ServerDNSDetectHijacking; /**< Boolean: If true, check for DNS failure
  1973. * hijacking. */
  1974. char *ServerDNSResolvConfFile; /**< If provided, we configure our internal
  1975. * resolver from the file here rather than from
  1976. * /etc/resolv.conf (Unix) or the registry (Windows). */
  1977. smartlist_t *ServerDNSTestAddresses; /**< A list of addresses that definitely
  1978. * should be resolveable. Used for
  1979. * testing our DNS server. */
  1980. int EnforceDistinctSubnets; /**< If true, don't allow multiple routers in the
  1981. * same network zone in the same circuit. */
  1982. int TunnelDirConns; /**< If true, use BEGIN_DIR rather than BEGIN when
  1983. * possible. */
  1984. int PreferTunneledDirConns; /**< If true, avoid dirservers that don't
  1985. * support BEGIN_DIR, when possible. */
  1986. int AllowNonRFC953Hostnames; /**< If true, we allow connections to hostnames
  1987. * with weird characters. */
  1988. /** If true, we try resolving hostnames with weird characters. */
  1989. int ServerDNSAllowNonRFC953Hostnames;
  1990. /** If true, we try to download extra-info documents (and we serve them,
  1991. * if we are a cache). For authorities, this is always true. */
  1992. int DownloadExtraInfo;
  1993. /** If true, do not believe anybody who tells us that a domain resolves
  1994. * to an internal address, or that an internal address has a PTR mapping.
  1995. * Helps avoid some cross-site attacks. */
  1996. int ClientDNSRejectInternalAddresses;
  1997. /** The length of time that we think a consensus should be fresh. */
  1998. int V3AuthVotingInterval;
  1999. /** The length of time we think it will take to distribute votes */
  2000. int V3AuthVoteDelay;
  2001. /** The length of time we think it will take to distribute signatures */
  2002. int V3AuthDistDelay;
  2003. /** The number of intervals we think a consensus should be valid. */
  2004. int V3AuthNIntervalsValid;
  2005. /** DOCDOC here and in tor.1 */
  2006. char *FallbackNetworkstatusFile;
  2007. /** DOCDOC here and in tor.1 */
  2008. int LearnAuthorityAddrFromCerts;
  2009. } or_options_t;
  2010. /** Persistent state for an onion router, as saved to disk. */
  2011. typedef struct {
  2012. uint32_t _magic;
  2013. /** The time at which we next plan to write the state to the disk. Equal to
  2014. * TIME_MAX if there are no saveable changes, 0 if there are changes that
  2015. * should be saved right away. */
  2016. time_t next_write;
  2017. /** When was the state last written to disk? */
  2018. time_t LastWritten;
  2019. /** Fields for accounting bandwidth use. */
  2020. time_t AccountingIntervalStart;
  2021. uint64_t AccountingBytesReadInInterval;
  2022. uint64_t AccountingBytesWrittenInInterval;
  2023. int AccountingSecondsActive;
  2024. uint64_t AccountingExpectedUsage;
  2025. /** A list of Entry Guard-related configuration lines. */
  2026. config_line_t *EntryGuards;
  2027. /** These fields hold information on the history of bandwidth usage for
  2028. * servers. The "Ends" fields hold the time when we last updated the
  2029. * bandwidth usage. The "Interval" fields hold the granularity, in seconds,
  2030. * of the entries of Values. The "Values" lists hold decimal string
  2031. * representations of the number of bytes read or written in each
  2032. * interval. */
  2033. time_t BWHistoryReadEnds;
  2034. int BWHistoryReadInterval;
  2035. smartlist_t *BWHistoryReadValues;
  2036. time_t BWHistoryWriteEnds;
  2037. int BWHistoryWriteInterval;
  2038. smartlist_t *BWHistoryWriteValues;
  2039. /** What version of Tor wrote this state file? */
  2040. char *TorVersion;
  2041. /** Holds any unrecognized values we found in the state file, in the order
  2042. * in which we found them. */
  2043. config_line_t *ExtraLines;
  2044. /** When did we last rotate our onion key? "0" for 'no idea'. */
  2045. time_t LastRotatedOnionKey;
  2046. } or_state_t;
  2047. /** Change the next_write time of <b>state</b> to <b>when</b>, unless the
  2048. * state is already scheduled to be written to disk earlier than <b>when</b>.
  2049. */
  2050. static INLINE void or_state_mark_dirty(or_state_t *state, time_t when)
  2051. {
  2052. if (state->next_write > when)
  2053. state->next_write = when;
  2054. }
  2055. #define MAX_SOCKS_REPLY_LEN 1024
  2056. #define MAX_SOCKS_ADDR_LEN 256
  2057. /** Please open a TCP connection to this addr:port. */
  2058. #define SOCKS_COMMAND_CONNECT 0x01
  2059. /** Please turn this FQDN into an IP address, privately. */
  2060. #define SOCKS_COMMAND_RESOLVE 0xF0
  2061. /** Please turn this IP address into an FQDN, privately. */
  2062. #define SOCKS_COMMAND_RESOLVE_PTR 0xF1
  2063. #define SOCKS_COMMAND_IS_CONNECT(c) ((c)==SOCKS_COMMAND_CONNECT)
  2064. #define SOCKS_COMMAND_IS_RESOLVE(c) ((c)==SOCKS_COMMAND_RESOLVE || \
  2065. (c)==SOCKS_COMMAND_RESOLVE_PTR)
  2066. /** State of a SOCKS request from a user to an OP. Also used to encode other
  2067. * information for non-socks user request (such as those on TransPort and
  2068. * DNSPort) */
  2069. struct socks_request_t {
  2070. /** Which version of SOCKS did the client use? One of "0, 4, 5" -- where
  2071. * 0 means that no socks handshake ever took place, and this is just a
  2072. * stub connection (e.g. see connection_ap_make_link()). */
  2073. char socks_version;
  2074. int command; /**< What is this stream's goal? One from the above list. */
  2075. size_t replylen; /**< Length of <b>reply</b>. */
  2076. char reply[MAX_SOCKS_REPLY_LEN]; /**< Write an entry into this string if
  2077. * we want to specify our own socks reply,
  2078. * rather than using the default socks4 or
  2079. * socks5 socks reply. We use this for the
  2080. * two-stage socks5 handshake.
  2081. */
  2082. char address[MAX_SOCKS_ADDR_LEN]; /**< What address did the client ask to
  2083. connect to/resolve? */
  2084. uint16_t port; /**< What port did the client ask to connect to? */
  2085. unsigned has_finished : 1; /**< Has the SOCKS handshake finished? Used to
  2086. * make sure we send back a socks reply for
  2087. * every connection. */
  2088. };
  2089. /* all the function prototypes go here */
  2090. /********************************* buffers.c ***************************/
  2091. buf_t *buf_new(void);
  2092. buf_t *buf_new_with_capacity(size_t size);
  2093. void buf_free(buf_t *buf);
  2094. void buf_clear(buf_t *buf);
  2095. void buf_shrink(buf_t *buf);
  2096. void buf_shrink_freelists(int free_all);
  2097. void buf_dump_freelist_sizes(int severity);
  2098. size_t buf_datalen(const buf_t *buf);
  2099. size_t buf_capacity(const buf_t *buf);
  2100. const char *_buf_peek_raw_buffer(const buf_t *buf);
  2101. int read_to_buf(int s, size_t at_most, buf_t *buf, int *reached_eof);
  2102. int read_to_buf_tls(tor_tls_t *tls, size_t at_most, buf_t *buf);
  2103. int flush_buf(int s, buf_t *buf, size_t sz, size_t *buf_flushlen);
  2104. int flush_buf_tls(tor_tls_t *tls, buf_t *buf, size_t sz, size_t *buf_flushlen);
  2105. int write_to_buf(const char *string, size_t string_len, buf_t *buf);
  2106. int write_to_buf_zlib(buf_t *buf, tor_zlib_state_t *state,
  2107. const char *data, size_t data_len, int done);
  2108. int move_buf_to_buf(buf_t *buf_out, buf_t *buf_in, size_t *buf_flushlen);
  2109. int fetch_from_buf(char *string, size_t string_len, buf_t *buf);
  2110. int fetch_from_buf_http(buf_t *buf,
  2111. char **headers_out, size_t max_headerlen,
  2112. char **body_out, size_t *body_used, size_t max_bodylen,
  2113. int force_complete);
  2114. int fetch_from_buf_socks(buf_t *buf, socks_request_t *req,
  2115. int log_sockstype, int safe_socks);
  2116. int fetch_from_buf_line(buf_t *buf, char *data_out, size_t *data_len);
  2117. int peek_buf_has_control0_command(buf_t *buf);
  2118. void assert_buf_ok(buf_t *buf);
  2119. /********************************* circuitbuild.c **********************/
  2120. char *circuit_list_path(origin_circuit_t *circ, int verbose);
  2121. char *circuit_list_path_for_controller(origin_circuit_t *circ);
  2122. void circuit_log_path(int severity, unsigned int domain,
  2123. origin_circuit_t *circ);
  2124. void circuit_rep_hist_note_result(origin_circuit_t *circ);
  2125. origin_circuit_t *origin_circuit_init(uint8_t purpose, int onehop_tunnel,
  2126. int need_uptime,
  2127. int need_capacity, int internal);
  2128. origin_circuit_t *circuit_establish_circuit(uint8_t purpose,
  2129. int onehop_tunnel, extend_info_t *exit,
  2130. int need_uptime, int need_capacity,
  2131. int internal);
  2132. int circuit_handle_first_hop(origin_circuit_t *circ);
  2133. void circuit_n_conn_done(or_connection_t *or_conn, int status);
  2134. int inform_testing_reachability(void);
  2135. int circuit_send_next_onion_skin(origin_circuit_t *circ);
  2136. void circuit_note_clock_jumped(int seconds_elapsed);
  2137. int circuit_extend(cell_t *cell, circuit_t *circ);
  2138. int circuit_init_cpath_crypto(crypt_path_t *cpath, const char *key_data,
  2139. int reverse);
  2140. int circuit_finish_handshake(origin_circuit_t *circ, uint8_t cell_type,
  2141. const char *reply);
  2142. int circuit_truncated(origin_circuit_t *circ, crypt_path_t *layer);
  2143. int onionskin_answer(or_circuit_t *circ, uint8_t cell_type,
  2144. const char *payload, const char *keys);
  2145. int circuit_all_predicted_ports_handled(time_t now, int *need_uptime,
  2146. int *need_capacity);
  2147. int circuit_append_new_exit(origin_circuit_t *circ, extend_info_t *info);
  2148. int circuit_extend_to_new_exit(origin_circuit_t *circ, extend_info_t *info);
  2149. void onion_append_to_cpath(crypt_path_t **head_ptr, crypt_path_t *new_hop);
  2150. extend_info_t *extend_info_alloc(const char *nickname, const char *digest,
  2151. crypto_pk_env_t *onion_key,
  2152. uint32_t addr, uint16_t port);
  2153. extend_info_t *extend_info_from_router(routerinfo_t *r);
  2154. extend_info_t *extend_info_dup(extend_info_t *info);
  2155. void extend_info_free(extend_info_t *info);
  2156. routerinfo_t *build_state_get_exit_router(cpath_build_state_t *state);
  2157. const char *build_state_get_exit_nickname(cpath_build_state_t *state);
  2158. void entry_guards_compute_status(void);
  2159. int entry_guard_register_connect_status(const char *digest, int succeeded,
  2160. time_t now);
  2161. void entry_nodes_should_be_added(void);
  2162. routerinfo_t *choose_random_entry(cpath_build_state_t *state);
  2163. int entry_guards_parse_state(or_state_t *state, int set, char **msg);
  2164. void entry_guards_update_state(or_state_t *state);
  2165. int getinfo_helper_entry_guards(control_connection_t *conn,
  2166. const char *question, char **answer);
  2167. void clear_bridge_list(void);
  2168. int routerinfo_is_a_configured_bridge(routerinfo_t *ri);
  2169. void bridge_add_from_config(uint32_t addr, uint16_t port, char *digest);
  2170. void retry_bridge_descriptor_fetch_directly(char *digest);
  2171. void fetch_bridge_descriptors(time_t now);
  2172. void learned_bridge_descriptor(routerinfo_t *ri);
  2173. int any_bridge_descriptors_known(void);
  2174. int bridges_should_be_retried(void);
  2175. void bridges_retry_all(void);
  2176. void entry_guards_free_all(void);
  2177. /********************************* circuitlist.c ***********************/
  2178. circuit_t * _circuit_get_global_list(void);
  2179. const char *circuit_state_to_string(int state);
  2180. void circuit_dump_by_conn(connection_t *conn, int severity);
  2181. void circuit_set_p_circid_orconn(or_circuit_t *circ, uint16_t id,
  2182. or_connection_t *conn);
  2183. void circuit_set_n_circid_orconn(circuit_t *circ, uint16_t id,
  2184. or_connection_t *conn);
  2185. void circuit_set_state(circuit_t *circ, int state);
  2186. void circuit_close_all_marked(void);
  2187. origin_circuit_t *origin_circuit_new(void);
  2188. or_circuit_t *or_circuit_new(uint16_t p_circ_id, or_connection_t *p_conn);
  2189. circuit_t *circuit_get_by_circid_orconn(uint16_t circ_id,
  2190. or_connection_t *conn);
  2191. circuit_t *circuit_get_by_edge_conn(edge_connection_t *conn);
  2192. void circuit_unlink_all_from_or_conn(or_connection_t *conn, int reason);
  2193. origin_circuit_t *circuit_get_by_global_id(uint32_t id);
  2194. origin_circuit_t *circuit_get_by_rend_query_and_purpose(const char *rend_query,
  2195. uint8_t purpose);
  2196. origin_circuit_t *circuit_get_next_by_pk_and_purpose(origin_circuit_t *start,
  2197. const char *digest, uint8_t purpose);
  2198. or_circuit_t *circuit_get_rendezvous(const char *cookie);
  2199. or_circuit_t *circuit_get_intro_point(const char *digest);
  2200. origin_circuit_t *circuit_find_to_cannibalize(uint8_t purpose,
  2201. extend_info_t *info,
  2202. int need_uptime,
  2203. int need_capacity, int internal);
  2204. void circuit_mark_all_unused_circs(void);
  2205. void circuit_expire_all_dirty_circs(void);
  2206. void _circuit_mark_for_close(circuit_t *circ, int reason,
  2207. int line, const char *file);
  2208. int circuit_get_cpath_len(origin_circuit_t *circ);
  2209. crypt_path_t *circuit_get_cpath_hop(origin_circuit_t *circ, int hopnum);
  2210. void circuit_get_all_pending_on_or_conn(smartlist_t *out,
  2211. or_connection_t *or_conn);
  2212. int circuit_count_pending_on_or_conn(or_connection_t *or_conn);
  2213. #define circuit_mark_for_close(c, reason) \
  2214. _circuit_mark_for_close((c), (reason), __LINE__, _SHORT_FILE_)
  2215. void assert_cpath_layer_ok(const crypt_path_t *cp);
  2216. void assert_circuit_ok(const circuit_t *c);
  2217. void circuit_free_all(void);
  2218. /********************************* circuituse.c ************************/
  2219. void circuit_expire_building(time_t now);
  2220. void circuit_remove_handled_ports(smartlist_t *needed_ports);
  2221. int circuit_stream_is_being_handled(edge_connection_t *conn, uint16_t port,
  2222. int min);
  2223. void circuit_build_needed_circs(time_t now);
  2224. void circuit_detach_stream(circuit_t *circ, edge_connection_t *conn);
  2225. void reset_bandwidth_test(void);
  2226. int circuit_enough_testing_circs(void);
  2227. void circuit_has_opened(origin_circuit_t *circ);
  2228. void circuit_build_failed(origin_circuit_t *circ);
  2229. origin_circuit_t *circuit_launch_by_nickname(uint8_t purpose,
  2230. int onehop_tunnel,
  2231. const char *exit_nickname,
  2232. int need_uptime, int need_capacity,
  2233. int is_internal);
  2234. origin_circuit_t *circuit_launch_by_extend_info(uint8_t purpose,
  2235. int onehop_tunnel,
  2236. extend_info_t *info,
  2237. int need_uptime, int need_capacity,
  2238. int is_internal);
  2239. origin_circuit_t *circuit_launch_by_router(uint8_t purpose,
  2240. int onehop_tunnel,
  2241. routerinfo_t *exit,
  2242. int need_uptime, int need_capacity,
  2243. int is_internal);
  2244. void circuit_reset_failure_count(int timeout);
  2245. int connection_ap_handshake_attach_chosen_circuit(edge_connection_t *conn,
  2246. origin_circuit_t *circ,
  2247. crypt_path_t *cpath);
  2248. int connection_ap_handshake_attach_circuit(edge_connection_t *conn);
  2249. /********************************* command.c ***************************/
  2250. void command_process_cell(cell_t *cell, or_connection_t *conn);
  2251. void connection_or_act_on_netinfo(or_connection_t *conn);
  2252. extern uint64_t stats_n_padding_cells_processed;
  2253. extern uint64_t stats_n_create_cells_processed;
  2254. extern uint64_t stats_n_created_cells_processed;
  2255. extern uint64_t stats_n_relay_cells_processed;
  2256. extern uint64_t stats_n_destroy_cells_processed;
  2257. /********************************* config.c ***************************/
  2258. or_options_t *get_options(void);
  2259. int set_options(or_options_t *new_val, char **msg);
  2260. void config_free_all(void);
  2261. const char *safe_str(const char *address);
  2262. const char *escaped_safe_str(const char *address);
  2263. const char *get_version(void);
  2264. int config_get_lines(char *string, config_line_t **result);
  2265. void config_free_lines(config_line_t *front);
  2266. int options_trial_assign(config_line_t *list, int use_defaults,
  2267. int clear_first, char **msg);
  2268. int resolve_my_address(int warn_severity, or_options_t *options,
  2269. uint32_t *addr, char **hostname_out);
  2270. int is_local_IP(uint32_t ip) ATTR_PURE;
  2271. void options_init(or_options_t *options);
  2272. int options_init_from_torrc(int argc, char **argv);
  2273. int option_is_recognized(const char *key);
  2274. const char *option_get_canonical_name(const char *key);
  2275. config_line_t *option_get_assignment(or_options_t *options,
  2276. const char *key);
  2277. int options_save_current(void);
  2278. const char *get_torrc_fname(void);
  2279. char *get_datadir_fname2_suffix(const char *sub1, const char *sub2,
  2280. const char *suffix);
  2281. /**DOCDOC*/
  2282. #define get_datadir_fname(sub1) get_datadir_fname2_suffix((sub1), NULL, NULL)
  2283. #define get_datadir_fname2(sub1,sub2) \
  2284. get_datadir_fname2_suffix((sub1), (sub2), NULL)
  2285. #define get_datadir_fname_suffix(sub1, suffix) \
  2286. get_datadir_fname2_suffix((sub1), NULL, (suffix))
  2287. or_state_t *get_or_state(void);
  2288. int or_state_save(time_t now);
  2289. int getinfo_helper_config(control_connection_t *conn,
  2290. const char *question, char **answer);
  2291. #ifdef CONFIG_PRIVATE
  2292. /* Used only by config.c and test.c */
  2293. or_options_t *options_new(void);
  2294. #endif
  2295. /********************************* connection.c ***************************/
  2296. const char *conn_type_to_string(int type);
  2297. const char *conn_state_to_string(int type, int state);
  2298. connection_t *connection_new(int type, int socket_family);
  2299. void connection_link_connections(connection_t *conn_a, connection_t *conn_b);
  2300. void connection_unregister_events(connection_t *conn);
  2301. void connection_free(connection_t *conn);
  2302. void connection_free_all(void);
  2303. void connection_about_to_close_connection(connection_t *conn);
  2304. void connection_close_immediate(connection_t *conn);
  2305. void _connection_mark_for_close(connection_t *conn,int line, const char *file);
  2306. #define connection_mark_for_close(c) \
  2307. _connection_mark_for_close((c), __LINE__, _SHORT_FILE_)
  2308. void connection_expire_held_open(void);
  2309. int connection_connect(connection_t *conn, const char *address, uint32_t addr,
  2310. uint16_t port);
  2311. int retry_all_listeners(smartlist_t *replaced_conns,
  2312. smartlist_t *new_conns);
  2313. int connection_bucket_write_limit(connection_t *conn, time_t now);
  2314. int global_write_bucket_low(connection_t *conn, size_t attempt, int priority);
  2315. void connection_bucket_init(void);
  2316. void connection_bucket_refill(int seconds_elapsed, time_t now);
  2317. int connection_handle_read(connection_t *conn);
  2318. int connection_fetch_from_buf(char *string, size_t len, connection_t *conn);
  2319. int connection_wants_to_flush(connection_t *conn);
  2320. int connection_outbuf_too_full(connection_t *conn);
  2321. int connection_handle_write(connection_t *conn, int force);
  2322. void _connection_write_to_buf_impl(const char *string, size_t len,
  2323. connection_t *conn, int zlib);
  2324. static void connection_write_to_buf(const char *string, size_t len,
  2325. connection_t *conn);
  2326. static void connection_write_to_buf_zlib(const char *string, size_t len,
  2327. dir_connection_t *conn, int done);
  2328. static INLINE void
  2329. connection_write_to_buf(const char *string, size_t len, connection_t *conn)
  2330. {
  2331. _connection_write_to_buf_impl(string, len, conn, 0);
  2332. }
  2333. static INLINE void
  2334. connection_write_to_buf_zlib(const char *string, size_t len,
  2335. dir_connection_t *conn, int done)
  2336. {
  2337. _connection_write_to_buf_impl(string, len, TO_CONN(conn), done ? -1 : 1);
  2338. }
  2339. or_connection_t *connection_or_exact_get_by_addr_port(uint32_t addr,
  2340. uint16_t port);
  2341. edge_connection_t *connection_get_by_global_id(uint32_t id);
  2342. connection_t *connection_get_by_type(int type);
  2343. connection_t *connection_get_by_type_purpose(int type, int purpose);
  2344. connection_t *connection_get_by_type_addr_port_purpose(int type, uint32_t addr,
  2345. uint16_t port, int purpose);
  2346. connection_t *connection_get_by_type_state(int type, int state);
  2347. #if 0
  2348. connection_t *connection_get_by_type_state_lastwritten(int type, int state);
  2349. #endif
  2350. connection_t *connection_get_by_type_state_rendquery(int type, int state,
  2351. const char *rendquery);
  2352. #define connection_speaks_cells(conn) ((conn)->type == CONN_TYPE_OR)
  2353. int connection_is_listener(connection_t *conn);
  2354. int connection_state_is_open(connection_t *conn);
  2355. int connection_state_is_connecting(connection_t *conn);
  2356. char *alloc_http_authenticator(const char *authenticator);
  2357. void assert_connection_ok(connection_t *conn, time_t now);
  2358. int connection_or_nonopen_was_started_here(or_connection_t *conn);
  2359. void connection_dump_buffer_mem_stats(int severity);
  2360. void remove_file_if_very_old(const char *fname, time_t now);
  2361. /********************************* connection_edge.c *************************/
  2362. #define connection_mark_unattached_ap(conn, endreason) \
  2363. _connection_mark_unattached_ap((conn), (endreason), __LINE__, _SHORT_FILE_)
  2364. void _connection_mark_unattached_ap(edge_connection_t *conn, int endreason,
  2365. int line, const char *file);
  2366. int connection_edge_reached_eof(edge_connection_t *conn);
  2367. int connection_edge_process_inbuf(edge_connection_t *conn,
  2368. int package_partial);
  2369. int connection_edge_destroy(uint16_t circ_id, edge_connection_t *conn);
  2370. int connection_edge_end(edge_connection_t *conn, char reason);
  2371. int connection_edge_end_errno(edge_connection_t *conn);
  2372. int connection_edge_finished_flushing(edge_connection_t *conn);
  2373. int connection_edge_finished_connecting(edge_connection_t *conn);
  2374. int connection_ap_handshake_send_begin(edge_connection_t *ap_conn);
  2375. int connection_ap_handshake_send_resolve(edge_connection_t *ap_conn);
  2376. edge_connection_t *connection_ap_make_link(char *address, uint16_t port,
  2377. const char *digest,
  2378. int use_begindir, int want_onehop);
  2379. void connection_ap_handshake_socks_reply(edge_connection_t *conn, char *reply,
  2380. size_t replylen,
  2381. int endreason);
  2382. void connection_ap_handshake_socks_resolved(edge_connection_t *conn,
  2383. int answer_type,
  2384. size_t answer_len,
  2385. const char *answer,
  2386. int ttl,
  2387. time_t expires);
  2388. int connection_exit_begin_conn(cell_t *cell, circuit_t *circ);
  2389. int connection_exit_begin_resolve(cell_t *cell, or_circuit_t *circ);
  2390. void connection_exit_connect(edge_connection_t *conn);
  2391. int connection_edge_is_rendezvous_stream(edge_connection_t *conn);
  2392. int connection_ap_can_use_exit(edge_connection_t *conn, routerinfo_t *exit);
  2393. void connection_ap_expire_beginning(void);
  2394. void connection_ap_attach_pending(void);
  2395. void circuit_discard_optional_exit_enclaves(extend_info_t *info);
  2396. int connection_ap_detach_retriable(edge_connection_t *conn,
  2397. origin_circuit_t *circ,
  2398. int reason);
  2399. int connection_ap_process_transparent(edge_connection_t *conn);
  2400. int address_is_invalid_destination(const char *address, int client);
  2401. void addressmap_init(void);
  2402. void addressmap_clean(time_t now);
  2403. void addressmap_clear_configured(void);
  2404. void addressmap_clear_transient(void);
  2405. void addressmap_free_all(void);
  2406. int addressmap_rewrite(char *address, size_t maxlen, time_t *expires_out);
  2407. int addressmap_have_mapping(const char *address);
  2408. void addressmap_register(const char *address, char *new_address,
  2409. time_t expires);
  2410. int parse_virtual_addr_network(const char *val, int validate_only,
  2411. char **msg);
  2412. int client_dns_incr_failures(const char *address);
  2413. void client_dns_clear_failures(const char *address);
  2414. void client_dns_set_addressmap(const char *address, uint32_t val,
  2415. const char *exitname, int ttl);
  2416. const char *addressmap_register_virtual_address(int type, char *new_address);
  2417. void addressmap_get_mappings(smartlist_t *sl, time_t min_expires,
  2418. time_t max_expires, int want_expiry);
  2419. int connection_ap_handshake_rewrite_and_attach(edge_connection_t *conn,
  2420. origin_circuit_t *circ,
  2421. crypt_path_t *cpath);
  2422. int hostname_is_noconnect_address(const char *address);
  2423. void set_exit_redirects(smartlist_t *lst);
  2424. typedef enum hostname_type_t {
  2425. NORMAL_HOSTNAME, ONION_HOSTNAME, EXIT_HOSTNAME, BAD_HOSTNAME
  2426. } hostname_type_t;
  2427. hostname_type_t parse_extended_hostname(char *address);
  2428. /********************************* connection_or.c ***************************/
  2429. void connection_or_remove_from_identity_map(or_connection_t *conn);
  2430. void connection_or_clear_identity_map(void);
  2431. or_connection_t *connection_or_get_by_identity_digest(const char *digest);
  2432. int connection_or_reached_eof(or_connection_t *conn);
  2433. int connection_or_process_inbuf(or_connection_t *conn);
  2434. int connection_or_flushed_some(or_connection_t *conn);
  2435. int connection_or_finished_flushing(or_connection_t *conn);
  2436. int connection_or_finished_connecting(or_connection_t *conn);
  2437. or_connection_t *connection_or_connect(uint32_t addr, uint16_t port,
  2438. const char *id_digest);
  2439. int connection_tls_start_handshake(or_connection_t *conn, int receiving);
  2440. int connection_tls_continue_handshake(or_connection_t *conn);
  2441. void or_handshake_state_free(or_handshake_state_t *state);
  2442. int connection_or_set_state_open(or_connection_t *conn);
  2443. void connection_or_write_cell_to_buf(const cell_t *cell,
  2444. or_connection_t *conn);
  2445. int connection_or_send_destroy(uint16_t circ_id, or_connection_t *conn,
  2446. int reason);
  2447. int connection_or_send_netinfo(or_connection_t *conn);
  2448. int connection_or_send_certs(or_connection_t *conn);
  2449. int connection_or_send_link_auth(or_connection_t *conn);
  2450. int connection_or_compute_link_auth_hmac(or_connection_t *conn,
  2451. char *hmac_out);
  2452. void cell_pack(packed_cell_t *dest, const cell_t *src);
  2453. /********************************* control.c ***************************/
  2454. typedef enum circuit_status_event_t {
  2455. CIRC_EVENT_LAUNCHED = 0,
  2456. CIRC_EVENT_BUILT = 1,
  2457. CIRC_EVENT_EXTENDED = 2,
  2458. CIRC_EVENT_FAILED = 3,
  2459. CIRC_EVENT_CLOSED = 4,
  2460. } circuit_status_event_t;
  2461. typedef enum stream_status_event_t {
  2462. STREAM_EVENT_SENT_CONNECT = 0,
  2463. STREAM_EVENT_SENT_RESOLVE = 1,
  2464. STREAM_EVENT_SUCCEEDED = 2,
  2465. STREAM_EVENT_FAILED = 3,
  2466. STREAM_EVENT_CLOSED = 4,
  2467. STREAM_EVENT_NEW = 5,
  2468. STREAM_EVENT_NEW_RESOLVE = 6,
  2469. STREAM_EVENT_FAILED_RETRIABLE = 7,
  2470. STREAM_EVENT_REMAP = 8
  2471. } stream_status_event_t;
  2472. typedef enum or_conn_status_event_t {
  2473. OR_CONN_EVENT_LAUNCHED = 0,
  2474. OR_CONN_EVENT_CONNECTED = 1,
  2475. OR_CONN_EVENT_FAILED = 2,
  2476. OR_CONN_EVENT_CLOSED = 3,
  2477. OR_CONN_EVENT_NEW = 4,
  2478. } or_conn_status_event_t;
  2479. void control_update_global_event_mask(void);
  2480. void control_adjust_event_log_severity(void);
  2481. /** Execute the statement <b>stmt</b>, which may log events concerning the
  2482. * connection <b>conn</b>. To prevent infinite loops, disable log messages
  2483. * being sent to controllers if <b>conn</b> is a control connection.
  2484. *
  2485. * Stmt must not contain any return or goto statements.
  2486. */
  2487. #define CONN_LOG_PROTECT(conn, stmt) \
  2488. STMT_BEGIN \
  2489. int _log_conn_is_control = (conn && conn->type == CONN_TYPE_CONTROL); \
  2490. if (_log_conn_is_control) \
  2491. disable_control_logging(); \
  2492. STMT_BEGIN stmt; STMT_END; \
  2493. if (_log_conn_is_control) \
  2494. enable_control_logging(); \
  2495. STMT_END
  2496. /** Log information about the connection <b>conn</b>, protecting it as with
  2497. * CONN_LOG_PROTECT. Example:
  2498. *
  2499. * LOG_FN_CONN(conn, (LOG_DEBUG, "Socket %d wants to write", conn->s));
  2500. **/
  2501. #define LOG_FN_CONN(conn, args) \
  2502. CONN_LOG_PROTECT(conn, log_fn args)
  2503. int connection_control_finished_flushing(control_connection_t *conn);
  2504. int connection_control_reached_eof(control_connection_t *conn);
  2505. int connection_control_process_inbuf(control_connection_t *conn);
  2506. #define EVENT_AUTHDIR_NEWDESCS 0x000D
  2507. int control_event_is_interesting(int event);
  2508. int control_event_circuit_status(origin_circuit_t *circ,
  2509. circuit_status_event_t e, int reason);
  2510. int control_event_stream_status(edge_connection_t *conn,
  2511. stream_status_event_t e,
  2512. int reason);
  2513. int control_tls_error_to_reason(int e);
  2514. int control_event_or_conn_status(or_connection_t *conn,
  2515. or_conn_status_event_t e, int reason);
  2516. int control_event_bandwidth_used(uint32_t n_read, uint32_t n_written);
  2517. int control_event_stream_bandwidth_used(void);
  2518. void control_event_logmsg(int severity, unsigned int domain, const char *msg);
  2519. int control_event_descriptors_changed(smartlist_t *routers);
  2520. int control_event_address_mapped(const char *from, const char *to,
  2521. time_t expires, const char *error);
  2522. int control_event_or_authdir_new_descriptor(const char *action,
  2523. const char *desc,
  2524. size_t desclen,
  2525. const char *msg);
  2526. int control_event_my_descriptor_changed(void);
  2527. int control_event_networkstatus_changed(smartlist_t *statuses);
  2528. int control_event_networkstatus_changed_single(routerstatus_t *rs);
  2529. int control_event_general_status(int severity, const char *format, ...)
  2530. CHECK_PRINTF(2,3);
  2531. int control_event_client_status(int severity, const char *format, ...)
  2532. CHECK_PRINTF(2,3);
  2533. int control_event_server_status(int severity, const char *format, ...)
  2534. CHECK_PRINTF(2,3);
  2535. int control_event_guard(const char *nickname, const char *digest,
  2536. const char *status);
  2537. int init_cookie_authentication(int enabled);
  2538. int decode_hashed_password(char *buf, const char *hashed);
  2539. void disable_control_logging(void);
  2540. void enable_control_logging(void);
  2541. #ifdef CONTROL_PRIVATE
  2542. /* Used only by control.c and test.c */
  2543. size_t write_escaped_data(const char *data, size_t len, char **out);
  2544. size_t read_escaped_data(const char *data, size_t len, char **out);
  2545. #endif
  2546. /********************************* cpuworker.c *****************************/
  2547. void cpu_init(void);
  2548. void cpuworkers_rotate(void);
  2549. int connection_cpu_finished_flushing(connection_t *conn);
  2550. int connection_cpu_reached_eof(connection_t *conn);
  2551. int connection_cpu_process_inbuf(connection_t *conn);
  2552. int assign_to_cpuworker(connection_t *cpuworker, uint8_t question_type,
  2553. void *task);
  2554. /********************************* directory.c ***************************/
  2555. int directories_have_accepted_server_descriptor(void);
  2556. char *authority_type_to_string(authority_type_t auth);
  2557. void directory_post_to_dirservers(uint8_t dir_purpose, uint8_t router_purpose,
  2558. authority_type_t type, const char *payload,
  2559. size_t payload_len, size_t extrainfo_len);
  2560. void directory_get_from_dirserver(uint8_t dir_purpose, uint8_t router_purpose,
  2561. const char *resource,
  2562. int retry_if_no_servers);
  2563. void directory_get_from_all_authorities(uint8_t dir_purpose,
  2564. uint8_t router_purpose,
  2565. const char *resource);
  2566. void directory_initiate_command_routerstatus(routerstatus_t *status,
  2567. uint8_t dir_purpose,
  2568. uint8_t router_purpose,
  2569. int anonymized_connection,
  2570. const char *resource,
  2571. const char *payload,
  2572. size_t payload_len,
  2573. time_t if_modified_since);
  2574. int parse_http_response(const char *headers, int *code, time_t *date,
  2575. compress_method_t *compression, char **response);
  2576. int connection_dir_reached_eof(dir_connection_t *conn);
  2577. int connection_dir_process_inbuf(dir_connection_t *conn);
  2578. int connection_dir_finished_flushing(dir_connection_t *conn);
  2579. int connection_dir_finished_connecting(dir_connection_t *conn);
  2580. void connection_dir_request_failed(dir_connection_t *conn);
  2581. void directory_initiate_command(const char *address, uint32_t addr,
  2582. uint16_t or_port, uint16_t dir_port,
  2583. int supports_begindir, const char *digest,
  2584. uint8_t dir_purpose, uint8_t router_purpose,
  2585. int anonymized_connection,
  2586. const char *resource,
  2587. const char *payload, size_t payload_len,
  2588. time_t if_modified_since);
  2589. int dir_split_resource_into_fingerprints(const char *resource,
  2590. smartlist_t *fp_out, int *compresseed_out,
  2591. int decode_hex, int sort_uniq);
  2592. char *directory_dump_request_log(void);
  2593. int router_supports_extrainfo(const char *identity_digest, int is_authority);
  2594. void directory_post_to_hs_dir(smartlist_t *desc_ids, smartlist_t *descs,
  2595. const char *service_id, int seconds_valid);
  2596. void directory_get_from_hs_dir(const char *desc_id, const char *query);
  2597. time_t download_status_increment_failure(download_status_t *dls,
  2598. int status_code, const char *item,
  2599. int server, time_t now);
  2600. #define download_status_failed(dls, sc) \
  2601. download_status_increment_failure((dls), (sc), NULL, \
  2602. get_options()->DirPort, time(NULL))
  2603. void download_status_reset(download_status_t *dls);
  2604. /** DOCDOC */
  2605. static int download_status_is_ready(download_status_t *dls, time_t now,
  2606. int max_failures);
  2607. static INLINE int
  2608. download_status_is_ready(download_status_t *dls, time_t now,
  2609. int max_failures)
  2610. {
  2611. return (dls->n_download_failures <= max_failures
  2612. && dls->next_attempt_at <= now);
  2613. }
  2614. /********************************* dirserv.c ***************************/
  2615. #define UNNAMED_ROUTER_NICKNAME "Unnamed"
  2616. int connection_dirserv_flushed_some(dir_connection_t *conn);
  2617. int dirserv_add_own_fingerprint(const char *nickname, crypto_pk_env_t *pk);
  2618. int dirserv_load_fingerprint_file(void);
  2619. void dirserv_free_fingerprint_list(void);
  2620. const char *dirserv_get_nickname_by_digest(const char *digest);
  2621. int dirserv_add_multiple_descriptors(const char *desc, uint8_t purpose,
  2622. const char *source,
  2623. const char **msg);
  2624. int dirserv_add_descriptor(routerinfo_t *ri, const char **msg);
  2625. int getinfo_helper_dirserv_unregistered(control_connection_t *conn,
  2626. const char *question, char **answer);
  2627. void dirserv_free_descriptors(void);
  2628. int list_server_status(smartlist_t *routers, char **router_status_out,
  2629. int for_controller);
  2630. int dirserv_dump_directory_to_string(char **dir_out,
  2631. crypto_pk_env_t *private_key);
  2632. void directory_set_dirty(void);
  2633. cached_dir_t *dirserv_get_directory(void);
  2634. cached_dir_t *dirserv_get_runningrouters(void);
  2635. cached_dir_t *dirserv_get_consensus(void);
  2636. void dirserv_set_cached_directory(const char *directory, time_t when,
  2637. int is_running_routers);
  2638. void dirserv_set_cached_networkstatus_v2(const char *directory,
  2639. const char *identity,
  2640. time_t published);
  2641. void dirserv_set_cached_networkstatus_v3(const char *consensus,
  2642. time_t published);
  2643. void dirserv_clear_old_networkstatuses(time_t cutoff);
  2644. void dirserv_clear_old_v1_info(time_t now);
  2645. void dirserv_get_networkstatus_v2(smartlist_t *result, const char *key);
  2646. void dirserv_get_networkstatus_v2_fingerprints(smartlist_t *result,
  2647. const char *key);
  2648. int dirserv_get_routerdesc_fingerprints(smartlist_t *fps_out, const char *key,
  2649. const char **msg);
  2650. int dirserv_get_routerdescs(smartlist_t *descs_out, const char *key,
  2651. const char **msg);
  2652. void dirserv_orconn_tls_done(const char *address,
  2653. uint16_t or_port,
  2654. const char *digest_rcvd,
  2655. int as_advertised);
  2656. void dirserv_test_reachability(time_t now, int try_all);
  2657. int authdir_wants_to_reject_router(routerinfo_t *ri, const char **msg,
  2658. int complain);
  2659. int dirserv_would_reject_router(routerstatus_t *rs);
  2660. int dirserv_remove_old_statuses(smartlist_t *fps, time_t cutoff);
  2661. int dirserv_have_any_serverdesc(smartlist_t *fps, int spool_src);
  2662. size_t dirserv_estimate_data_size(smartlist_t *fps, int is_serverdescs,
  2663. int compressed);
  2664. int routerstatus_format_entry(char *buf, size_t buf_len,
  2665. routerstatus_t *rs, const char *platform,
  2666. int first_line_only);
  2667. void dirserv_free_all(void);
  2668. void cached_dir_decref(cached_dir_t *d);
  2669. cached_dir_t *new_cached_dir(char *s, time_t published);
  2670. /********************************* dirvote.c ************************/
  2671. /** Lowest allowable value for VoteSeconds. */
  2672. #define MIN_VOTE_SECONDS 20
  2673. /** Lowest allowable value for DistSeconds. */
  2674. #define MIN_DIST_SECONDS 20
  2675. /** Smallest allowable voting interval. */
  2676. #define MIN_VOTE_INTERVAL 300
  2677. /** If there is no consensus, what interval do we default to? */
  2678. #define DEFAULT_VOTING_INTERVAL_WHEN_NO_CONSENSUS (30*60)
  2679. void dirvote_free_all(void);
  2680. /* vote manipulation */
  2681. char *networkstatus_compute_consensus(smartlist_t *votes,
  2682. int total_authorities,
  2683. crypto_pk_env_t *identity_key,
  2684. crypto_pk_env_t *signing_key);
  2685. int networkstatus_add_detached_signatures(networkstatus_vote_t *target,
  2686. ns_detached_signatures_t *sigs,
  2687. const char **msg_out);
  2688. char *networkstatus_get_detached_signatures(networkstatus_vote_t *consensus);
  2689. void ns_detached_signatures_free(ns_detached_signatures_t *s);
  2690. /* cert manipulation */
  2691. authority_cert_t *authority_cert_dup(authority_cert_t *cert);
  2692. /** Describes the schedule by which votes should be generated. */
  2693. typedef struct vote_timing_t {
  2694. int vote_interval;
  2695. int n_intervals_valid;
  2696. int vote_delay;
  2697. int dist_delay;
  2698. } vote_timing_t;
  2699. /* vote scheduling */
  2700. void dirvote_get_preferred_voting_intervals(vote_timing_t *timing_out);
  2701. time_t dirvote_get_start_of_next_interval(time_t now, int interval);
  2702. void dirvote_recalculate_timing(or_options_t *options, time_t now);
  2703. void dirvote_act(or_options_t *options, time_t now);
  2704. /* invoked on timers and by outside triggers. */
  2705. struct pending_vote_t * dirvote_add_vote(const char *vote_body,
  2706. const char **msg_out,
  2707. int *status_out);
  2708. int dirvote_add_signatures(const char *detached_signatures_body,
  2709. const char **msg_out);
  2710. /* Item access */
  2711. const char *dirvote_get_pending_consensus(void);
  2712. const char *dirvote_get_pending_detached_signatures(void);
  2713. #define DGV_BY_ID 1
  2714. #define DGV_INCLUDE_PENDING 2
  2715. #define DGV_INCLUDE_PREVIOUS 4
  2716. const cached_dir_t *dirvote_get_vote(const char *fp, int flags);
  2717. networkstatus_vote_t *
  2718. dirserv_generate_networkstatus_vote_obj(crypto_pk_env_t *private_key,
  2719. authority_cert_t *cert);
  2720. #ifdef DIRVOTE_PRIVATE
  2721. char *
  2722. format_networkstatus_vote(crypto_pk_env_t *private_key,
  2723. networkstatus_vote_t *v3_ns);
  2724. #endif
  2725. /********************************* dns.c ***************************/
  2726. int dns_init(void);
  2727. void dns_free_all(void);
  2728. uint32_t dns_clip_ttl(uint32_t ttl);
  2729. int dns_reset(void);
  2730. void connection_dns_remove(edge_connection_t *conn);
  2731. void assert_connection_edge_not_dns_pending(edge_connection_t *conn);
  2732. void assert_all_pending_dns_resolves_ok(void);
  2733. void dns_cancel_pending_resolve(const char *question);
  2734. int dns_resolve(edge_connection_t *exitconn);
  2735. void dns_launch_correctness_checks(void);
  2736. int dns_seems_to_be_broken(void);
  2737. void dns_reset_correctness_checks(void);
  2738. /********************************* dnsserv.c ************************/
  2739. void dnsserv_configure_listener(connection_t *conn);
  2740. void dnsserv_close_listener(connection_t *conn);
  2741. void dnsserv_resolved(edge_connection_t *conn,
  2742. int answer_type,
  2743. size_t answer_len,
  2744. const char *answer,
  2745. int ttl);
  2746. void dnsserv_reject_request(edge_connection_t *conn);
  2747. void dnsserv_launch_request(const char *name, int is_reverse);
  2748. /********************************* hibernate.c **********************/
  2749. int accounting_parse_options(or_options_t *options, int validate_only);
  2750. int accounting_is_enabled(or_options_t *options);
  2751. void configure_accounting(time_t now);
  2752. void accounting_run_housekeeping(time_t now);
  2753. void accounting_add_bytes(size_t n_read, size_t n_written, int seconds);
  2754. int accounting_record_bandwidth_usage(time_t now, or_state_t *state);
  2755. void hibernate_begin_shutdown(void);
  2756. int we_are_hibernating(void);
  2757. void consider_hibernation(time_t now);
  2758. int getinfo_helper_accounting(control_connection_t *conn,
  2759. const char *question, char **answer);
  2760. void accounting_set_bandwidth_usage_from_state(or_state_t *state);
  2761. /********************************* main.c ***************************/
  2762. extern int has_completed_circuit;
  2763. int connection_add(connection_t *conn);
  2764. int connection_remove(connection_t *conn);
  2765. int connection_in_array(connection_t *conn);
  2766. void add_connection_to_closeable_list(connection_t *conn);
  2767. int connection_is_on_closeable_list(connection_t *conn);
  2768. smartlist_t *get_connection_array(void);
  2769. void connection_watch_events(connection_t *conn, short events);
  2770. int connection_is_reading(connection_t *conn);
  2771. void connection_stop_reading(connection_t *conn);
  2772. void connection_start_reading(connection_t *conn);
  2773. int connection_is_writing(connection_t *conn);
  2774. void connection_stop_writing(connection_t *conn);
  2775. void connection_start_writing(connection_t *conn);
  2776. void connection_stop_reading_from_linked_conn(connection_t *conn);
  2777. void directory_all_unreachable(time_t now);
  2778. void directory_info_has_arrived(time_t now, int from_cache);
  2779. void ip_address_changed(int at_interface);
  2780. void dns_servers_relaunch_checks(void);
  2781. void control_signal_act(int the_signal);
  2782. void handle_signals(int is_parent);
  2783. void tor_cleanup(void);
  2784. void tor_free_all(int postfork);
  2785. int tor_main(int argc, char *argv[]);
  2786. #ifdef MAIN_PRIVATE
  2787. int do_main_loop(void);
  2788. int do_list_fingerprint(void);
  2789. void do_hash_password(void);
  2790. int tor_init(int argc, char **argv);
  2791. #endif
  2792. /********************************* networkstatus.c *********************/
  2793. /** How old do we allow a v2 network-status to get before removing it
  2794. * completely? */
  2795. #define MAX_NETWORKSTATUS_AGE (10*24*60*60)
  2796. typedef enum {
  2797. NS_FROM_CACHE, NS_FROM_DIR_BY_FP, NS_FROM_DIR_ALL, NS_GENERATED
  2798. } networkstatus_source_t;
  2799. typedef enum version_status_t {
  2800. VS_RECOMMENDED=0, /**< This version is listed as recommended. */
  2801. VS_OLD=1, /**< This version is older than any recommended version. */
  2802. VS_NEW=2, /**< This version is newer than any recommended version. */
  2803. VS_NEW_IN_SERIES=3, /**< This version is newer than any recommended version
  2804. * in its series, but later recommended versions exist.
  2805. */
  2806. VS_UNRECOMMENDED=4, /**< This version is not recommended (general case). */
  2807. VS_UNKNOWN, /**< We have no idea. */
  2808. } version_status_t;
  2809. void networkstatus_reset_warnings(void);
  2810. void networkstatus_reset_download_failures(void);
  2811. int router_reload_v2_networkstatus(void);
  2812. int router_reload_consensus_networkstatus(void);
  2813. void routerstatus_free(routerstatus_t *rs);
  2814. void networkstatus_v2_free(networkstatus_v2_t *ns);
  2815. void networkstatus_vote_free(networkstatus_vote_t *ns);
  2816. networkstatus_voter_info_t *networkstatus_get_voter_by_id(
  2817. networkstatus_vote_t *vote,
  2818. const char *identity);
  2819. int networkstatus_check_consensus_signature(networkstatus_vote_t *consensus,
  2820. int warn);
  2821. int networkstatus_check_voter_signature(networkstatus_vote_t *consensus,
  2822. networkstatus_voter_info_t *voter,
  2823. authority_cert_t *cert);
  2824. char *networkstatus_get_cache_filename(const char *identity_digest);
  2825. int router_set_networkstatus_v2(const char *s, time_t arrived_at,
  2826. networkstatus_source_t source,
  2827. smartlist_t *requested_fingerprints);
  2828. void networkstatus_v2_list_clean(time_t now);
  2829. routerstatus_t *networkstatus_v2_find_entry(networkstatus_v2_t *ns,
  2830. const char *digest);
  2831. routerstatus_t *networkstatus_vote_find_entry(networkstatus_vote_t *ns,
  2832. const char *digest);
  2833. int networkstatus_vote_find_entry_idx(networkstatus_vote_t *ns,
  2834. const char *digest, int *found_out);
  2835. const smartlist_t *networkstatus_get_v2_list(void);
  2836. download_status_t *router_get_dl_status_by_descriptor_digest(const char *d);
  2837. routerstatus_t *router_get_consensus_status_by_id(const char *digest);
  2838. routerstatus_t *router_get_consensus_status_by_descriptor_digest(
  2839. const char *digest);
  2840. routerstatus_t *router_get_consensus_status_by_nickname(const char *nickname,
  2841. int warn_if_unnamed);
  2842. const char *networkstatus_get_router_digest_by_nickname(const char *nickname);
  2843. int networkstatus_nickname_is_unnamed(const char *nickname);
  2844. void networkstatus_consensus_download_failed(int status_code);
  2845. void update_consensus_networkstatus_fetch_time(time_t now);
  2846. int should_delay_dir_fetches(or_options_t *options);
  2847. void update_networkstatus_downloads(time_t now);
  2848. void update_certificate_downloads(time_t now);
  2849. networkstatus_v2_t *networkstatus_v2_get_by_digest(const char *digest);
  2850. networkstatus_vote_t *networkstatus_get_latest_consensus(void);
  2851. networkstatus_vote_t *networkstatus_get_live_consensus(time_t now);
  2852. networkstatus_vote_t *networkstatus_get_reasonably_live_consensus(time_t now);
  2853. int networkstatus_set_current_consensus(const char *consensus, int from_cache,
  2854. int was_waiting_for_certs);
  2855. void networkstatus_note_certs_arrived(void);
  2856. void routers_update_all_from_networkstatus(time_t now);
  2857. void routerstatus_list_update_from_consensus_networkstatus(time_t now);
  2858. void routers_update_status_from_consensus_networkstatus(smartlist_t *routers,
  2859. int reset_failures);
  2860. void signed_descs_update_status_from_consensus_networkstatus(
  2861. smartlist_t *descs);
  2862. char *networkstatus_getinfo_helper_single(routerstatus_t *rs);
  2863. int getinfo_helper_networkstatus(control_connection_t *conn,
  2864. const char *question, char **answer);
  2865. void networkstatus_free_all(void);
  2866. /********************************* ntmain.c ***************************/
  2867. #ifdef MS_WINDOWS
  2868. #define NT_SERVICE
  2869. #endif
  2870. #ifdef NT_SERVICE
  2871. int nt_service_parse_options(int argc, char **argv, int *should_exit);
  2872. int nt_service_is_stopping(void);
  2873. void nt_service_set_state(DWORD state);
  2874. #else
  2875. #define nt_service_is_stopping() (0)
  2876. #endif
  2877. /********************************* onion.c ***************************/
  2878. int onion_pending_add(or_circuit_t *circ);
  2879. or_circuit_t *onion_next_task(void);
  2880. void onion_pending_remove(or_circuit_t *circ);
  2881. int onion_skin_create(crypto_pk_env_t *router_key,
  2882. crypto_dh_env_t **handshake_state_out,
  2883. char *onion_skin_out);
  2884. int onion_skin_server_handshake(const char *onion_skin,
  2885. crypto_pk_env_t *private_key,
  2886. crypto_pk_env_t *prev_private_key,
  2887. char *handshake_reply_out,
  2888. char *key_out,
  2889. size_t key_out_len);
  2890. int onion_skin_client_handshake(crypto_dh_env_t *handshake_state,
  2891. const char *handshake_reply,
  2892. char *key_out,
  2893. size_t key_out_len);
  2894. int fast_server_handshake(const char *key_in,
  2895. char *handshake_reply_out,
  2896. char *key_out,
  2897. size_t key_out_len);
  2898. int fast_client_handshake(const char *handshake_state,
  2899. const char *handshake_reply_out,
  2900. char *key_out,
  2901. size_t key_out_len);
  2902. void clear_pending_onions(void);
  2903. /********************************* policies.c ************************/
  2904. /* (length of "accept 255.255.255.255/255.255.255.255:65535-65535\n" plus a
  2905. * nul.)
  2906. */
  2907. #define POLICY_BUF_LEN 52
  2908. typedef enum {
  2909. ADDR_POLICY_ACCEPTED=0,
  2910. ADDR_POLICY_REJECTED=-1,
  2911. ADDR_POLICY_PROBABLY_ACCEPTED=1,
  2912. ADDR_POLICY_PROBABLY_REJECTED=2
  2913. } addr_policy_result_t;
  2914. int firewall_is_fascist_or(void);
  2915. int fascist_firewall_allows_address_or(uint32_t addr, uint16_t port);
  2916. int fascist_firewall_allows_address_dir(uint32_t addr, uint16_t port);
  2917. int dir_policy_permits_address(uint32_t addr);
  2918. int socks_policy_permits_address(uint32_t addr);
  2919. int authdir_policy_permits_address(uint32_t addr, uint16_t port);
  2920. int authdir_policy_valid_address(uint32_t addr, uint16_t port);
  2921. int authdir_policy_badexit_address(uint32_t addr, uint16_t port);
  2922. int validate_addr_policies(or_options_t *options, char **msg);
  2923. void policies_parse_from_options(or_options_t *options);
  2924. int cmp_addr_policies(addr_policy_t *a, addr_policy_t *b);
  2925. addr_policy_result_t compare_addr_to_addr_policy(uint32_t addr,
  2926. uint16_t port, addr_policy_t *policy);
  2927. int policies_parse_exit_policy(config_line_t *cfg,
  2928. addr_policy_t **dest,
  2929. int rejectprivate);
  2930. int exit_policy_is_general_exit(addr_policy_t *policy);
  2931. int policy_is_reject_star(addr_policy_t *policy);
  2932. int getinfo_helper_policies(control_connection_t *conn,
  2933. const char *question, char **answer);
  2934. int policy_write_item(char *buf, size_t buflen, addr_policy_t *policy);
  2935. void addr_policy_free(addr_policy_t *p);
  2936. void policies_free_all(void);
  2937. /********************************* relay.c ***************************/
  2938. extern uint64_t stats_n_relay_cells_relayed;
  2939. extern uint64_t stats_n_relay_cells_delivered;
  2940. int circuit_receive_relay_cell(cell_t *cell, circuit_t *circ,
  2941. int cell_direction);
  2942. void relay_header_pack(char *dest, const relay_header_t *src);
  2943. void relay_header_unpack(relay_header_t *dest, const char *src);
  2944. int relay_send_command_from_edge(uint16_t stream_id, circuit_t *circ,
  2945. int relay_command, const char *payload,
  2946. size_t payload_len, crypt_path_t *cpath_layer);
  2947. int connection_edge_send_command(edge_connection_t *fromconn,
  2948. int relay_command, const char *payload,
  2949. size_t payload_len);
  2950. int connection_edge_package_raw_inbuf(edge_connection_t *conn,
  2951. int package_partial);
  2952. void connection_edge_consider_sending_sendme(edge_connection_t *conn);
  2953. socks5_reply_status_t connection_edge_end_reason_socks5_response(int reason);
  2954. int errno_to_end_reason(int e);
  2955. extern uint64_t stats_n_data_cells_packaged;
  2956. extern uint64_t stats_n_data_bytes_packaged;
  2957. extern uint64_t stats_n_data_cells_received;
  2958. extern uint64_t stats_n_data_bytes_received;
  2959. void init_cell_pool(void);
  2960. void free_cell_pool(void);
  2961. void clean_cell_pool(void);
  2962. void dump_cell_pool_usage(int severity);
  2963. void cell_queue_clear(cell_queue_t *queue);
  2964. void cell_queue_append(cell_queue_t *queue, packed_cell_t *cell);
  2965. void cell_queue_append_packed_copy(cell_queue_t *queue, const cell_t *cell);
  2966. void append_cell_to_circuit_queue(circuit_t *circ, or_connection_t *orconn,
  2967. cell_t *cell, int direction);
  2968. void connection_or_unlink_all_active_circs(or_connection_t *conn);
  2969. int connection_or_flush_from_first_active_circuit(or_connection_t *conn,
  2970. int max);
  2971. void assert_active_circuits_ok(or_connection_t *orconn);
  2972. void make_circuit_inactive_on_conn(circuit_t *circ, or_connection_t *conn);
  2973. void make_circuit_active_on_conn(circuit_t *circ, or_connection_t *conn);
  2974. void circuit_clear_cell_queue(circuit_t *circ, or_connection_t *orconn);
  2975. /********************************* rephist.c ***************************/
  2976. void rep_hist_init(void);
  2977. void rep_hist_note_connect_failed(const char* nickname, time_t when);
  2978. void rep_hist_note_connect_succeeded(const char* nickname, time_t when);
  2979. void rep_hist_note_disconnect(const char* nickname, time_t when);
  2980. void rep_hist_note_connection_died(const char* nickname, time_t when);
  2981. void rep_hist_note_extend_succeeded(const char *from_name,
  2982. const char *to_name);
  2983. void rep_hist_note_extend_failed(const char *from_name, const char *to_name);
  2984. void rep_hist_dump_stats(time_t now, int severity);
  2985. void rep_hist_note_bytes_read(int num_bytes, time_t when);
  2986. void rep_hist_note_bytes_written(int num_bytes, time_t when);
  2987. int rep_hist_bandwidth_assess(void);
  2988. char *rep_hist_get_bandwidth_lines(int for_extrainfo);
  2989. void rep_hist_update_state(or_state_t *state);
  2990. int rep_hist_load_state(or_state_t *state, char **err);
  2991. void rep_history_clean(time_t before);
  2992. void rep_hist_note_router_reachable(const char *id, time_t when);
  2993. void rep_hist_note_router_unreachable(const char *id, time_t when);
  2994. int rep_hist_record_mtbf_data(void);
  2995. int rep_hist_load_mtbf_data(time_t now);
  2996. time_t rep_hist_downrate_old_runs(time_t now);
  2997. double rep_hist_get_stability(const char *id, time_t when);
  2998. double rep_hist_get_weighted_fractional_uptime(const char *id, time_t when);
  2999. int rep_hist_have_measured_enough_stability(void);
  3000. void rep_hist_note_used_port(uint16_t port, time_t now);
  3001. smartlist_t *rep_hist_get_predicted_ports(time_t now);
  3002. void rep_hist_note_used_resolve(time_t now);
  3003. void rep_hist_note_used_internal(time_t now, int need_uptime,
  3004. int need_capacity);
  3005. int rep_hist_get_predicted_internal(time_t now, int *need_uptime,
  3006. int *need_capacity);
  3007. int any_predicted_circuits(time_t now);
  3008. int rep_hist_circbuilding_dormant(time_t now);
  3009. /** Possible public/private key operations in Tor: used to keep track of where
  3010. * we're spending our time. */
  3011. typedef enum {
  3012. SIGN_DIR, SIGN_RTR,
  3013. VERIFY_DIR, VERIFY_RTR,
  3014. ENC_ONIONSKIN, DEC_ONIONSKIN,
  3015. TLS_HANDSHAKE_C, TLS_HANDSHAKE_S,
  3016. REND_CLIENT, REND_MID, REND_SERVER,
  3017. } pk_op_t;
  3018. void note_crypto_pk_op(pk_op_t operation);
  3019. void dump_pk_ops(int severity);
  3020. void rep_hist_free_all(void);
  3021. /* for hidden service usage statistics */
  3022. void hs_usage_note_publish_total(const char *service_id, time_t now);
  3023. void hs_usage_note_publish_novel(const char *service_id, time_t now);
  3024. void hs_usage_note_fetch_total(const char *service_id, time_t now);
  3025. void hs_usage_note_fetch_successful(const char *service_id, time_t now);
  3026. void hs_usage_write_statistics_to_file(time_t now);
  3027. void hs_usage_free_all(void);
  3028. /********************************* rendclient.c ***************************/
  3029. void rend_client_introcirc_has_opened(origin_circuit_t *circ);
  3030. void rend_client_rendcirc_has_opened(origin_circuit_t *circ);
  3031. int rend_client_introduction_acked(origin_circuit_t *circ, const char *request,
  3032. size_t request_len);
  3033. void rend_client_refetch_renddesc(const char *query);
  3034. void rend_client_refetch_v2_renddesc(const char *query);
  3035. int rend_client_remove_intro_point(extend_info_t *failed_intro,
  3036. const char *query);
  3037. int rend_client_rendezvous_acked(origin_circuit_t *circ, const char *request,
  3038. size_t request_len);
  3039. int rend_client_receive_rendezvous(origin_circuit_t *circ, const char *request,
  3040. size_t request_len);
  3041. void rend_client_desc_here(const char *query);
  3042. extend_info_t *rend_client_get_random_intro(const char *query);
  3043. int rend_client_send_introduction(origin_circuit_t *introcirc,
  3044. origin_circuit_t *rendcirc);
  3045. /********************************* rendcommon.c ***************************/
  3046. /** Information used to connect to a hidden service. */
  3047. typedef struct rend_service_descriptor_t {
  3048. crypto_pk_env_t *pk; /**< This service's public key. */
  3049. int version; /**< Version of the descriptor format: 0 or 2. */
  3050. time_t timestamp; /**< Time when the descriptor was generated. */
  3051. uint16_t protocols; /**< Bitmask: which rendezvous protocols are supported?
  3052. * (We allow bits '0', '1', and '2' to be set.) */
  3053. int n_intro_points; /**< Number of introduction points. */
  3054. /** Array of n_intro_points elements for this service's introduction points'
  3055. * nicknames. Elements are removed from this array if introduction attempts
  3056. * fail. */
  3057. char **intro_points;
  3058. /** Array of n_intro_points elements for this service's introduction points'
  3059. * extend_infos, or NULL if this descriptor is V0. Elements are removed
  3060. * from this array if introduction attempts fail. If this array is present,
  3061. * its elements correspond to the elements of intro_points. */
  3062. extend_info_t **intro_point_extend_info;
  3063. strmap_t *intro_keys; /**< map from intro node hexdigest to key; only
  3064. * used for versioned hidden service descriptors. */
  3065. /* XXXX020 Refactor n_intro_points, intro_points, intro_point_extend_info,
  3066. * and intro_keys into a list of intro points. */
  3067. } rend_service_descriptor_t;
  3068. int rend_cmp_service_ids(const char *one, const char *two);
  3069. void rend_process_relay_cell(circuit_t *circ, int command, size_t length,
  3070. const char *payload);
  3071. void rend_service_descriptor_free(rend_service_descriptor_t *desc);
  3072. int rend_encode_service_descriptor(rend_service_descriptor_t *desc,
  3073. crypto_pk_env_t *key,
  3074. char **str_out,
  3075. size_t *len_out);
  3076. rend_service_descriptor_t *rend_parse_service_descriptor(const char *str,
  3077. size_t len);
  3078. int rend_get_service_id(crypto_pk_env_t *pk, char *out);
  3079. /** A cached rendezvous descriptor. */
  3080. typedef struct rend_cache_entry_t {
  3081. size_t len; /**< Length of <b>desc</b> */
  3082. time_t received; /**< When was the descriptor received? */
  3083. char *desc; /**< Service descriptor */
  3084. rend_service_descriptor_t *parsed; /**< Parsed value of 'desc' */
  3085. } rend_cache_entry_t;
  3086. void rend_cache_init(void);
  3087. void rend_cache_clean(void);
  3088. void rend_cache_clean_v2_descs_as_dir(void);
  3089. void rend_cache_free_all(void);
  3090. int rend_valid_service_id(const char *query);
  3091. int rend_cache_lookup_desc(const char *query, int version, const char **desc,
  3092. size_t *desc_len);
  3093. int rend_cache_lookup_entry(const char *query, int version,
  3094. rend_cache_entry_t **entry_out);
  3095. int rend_cache_lookup_v2_desc_as_dir(const char *query, const char **desc);
  3096. int rend_cache_store(const char *desc, size_t desc_len, int published);
  3097. int rend_cache_store_v2_desc_as_client(const char *desc,
  3098. const char *descriptor_cookie);
  3099. int rend_cache_store_v2_desc_as_dir(const char *desc);
  3100. int rend_cache_size(void);
  3101. int rend_encode_v2_descriptors(smartlist_t *desc_strs_out,
  3102. smartlist_t *desc_ids_out,
  3103. rend_service_descriptor_t *desc, time_t now,
  3104. const char *descriptor_cookie, uint8_t period);
  3105. int rend_compute_v2_desc_id(char *desc_id_out, const char *service_id,
  3106. const char *descriptor_cookie,
  3107. time_t now, uint8_t replica);
  3108. int rend_id_is_in_interval(const char *a, const char *b, const char *c);
  3109. void rend_get_descriptor_id_bytes(char *descriptor_id_out,
  3110. const char *service_id,
  3111. const char *secret_id_part);
  3112. /********************************* rendservice.c ***************************/
  3113. int num_rend_services(void);
  3114. int rend_config_services(or_options_t *options, int validate_only);
  3115. int rend_service_load_keys(void);
  3116. void rend_services_init(void);
  3117. void rend_services_introduce(void);
  3118. void rend_consider_services_upload(time_t now);
  3119. void rend_service_intro_has_opened(origin_circuit_t *circuit);
  3120. int rend_service_intro_established(origin_circuit_t *circuit,
  3121. const char *request,
  3122. size_t request_len);
  3123. void rend_service_rendezvous_has_opened(origin_circuit_t *circuit);
  3124. int rend_service_introduce(origin_circuit_t *circuit, const char *request,
  3125. size_t request_len);
  3126. void rend_service_relaunch_rendezvous(origin_circuit_t *oldcirc);
  3127. int rend_service_set_connection_addr_port(edge_connection_t *conn,
  3128. origin_circuit_t *circ);
  3129. void rend_service_dump_stats(int severity);
  3130. void rend_service_free_all(void);
  3131. /********************************* rendmid.c *******************************/
  3132. int rend_mid_establish_intro(or_circuit_t *circ, const char *request,
  3133. size_t request_len);
  3134. int rend_mid_introduce(or_circuit_t *circ, const char *request,
  3135. size_t request_len);
  3136. int rend_mid_establish_rendezvous(or_circuit_t *circ, const char *request,
  3137. size_t request_len);
  3138. int rend_mid_rendezvous(or_circuit_t *circ, const char *request,
  3139. size_t request_len);
  3140. /********************************* router.c ***************************/
  3141. crypto_pk_env_t *get_onion_key(void);
  3142. time_t get_onion_key_set_at(void);
  3143. void set_identity_key(crypto_pk_env_t *k);
  3144. crypto_pk_env_t *get_identity_key(void);
  3145. int identity_key_is_set(void);
  3146. authority_cert_t *get_my_v3_authority_cert(void);
  3147. crypto_pk_env_t *get_my_v3_authority_signing_key(void);
  3148. void dup_onion_keys(crypto_pk_env_t **key, crypto_pk_env_t **last);
  3149. void rotate_onion_key(void);
  3150. crypto_pk_env_t *init_key_from_file(const char *fname, int generate,
  3151. int severity);
  3152. void v3_authority_check_key_expiry(void);
  3153. int init_keys(void);
  3154. int check_whether_orport_reachable(void);
  3155. int check_whether_dirport_reachable(void);
  3156. void consider_testing_reachability(int test_or, int test_dir);
  3157. void router_orport_found_reachable(void);
  3158. void router_dirport_found_reachable(void);
  3159. void router_perform_bandwidth_test(int num_circs, time_t now);
  3160. int authdir_mode(or_options_t *options);
  3161. int authdir_mode_v1(or_options_t *options);
  3162. int authdir_mode_v2(or_options_t *options);
  3163. int authdir_mode_v3(or_options_t *options);
  3164. int authdir_mode_handles_descs(or_options_t *options);
  3165. int authdir_mode_publishes_statuses(or_options_t *options);
  3166. int authdir_mode_tests_reachability(or_options_t *options);
  3167. int authdir_mode_bridge(or_options_t *options);
  3168. int authdir_mode_any_nonbridge(or_options_t *options);
  3169. int clique_mode(or_options_t *options);
  3170. int dirserver_mode(or_options_t *options);
  3171. int server_mode(or_options_t *options);
  3172. int advertised_server_mode(void);
  3173. int proxy_mode(or_options_t *options);
  3174. void consider_publishable_server(int force);
  3175. int router_is_clique_mode(routerinfo_t *router);
  3176. void router_upload_dir_desc_to_dirservers(int force);
  3177. void mark_my_descriptor_dirty_if_older_than(time_t when);
  3178. void mark_my_descriptor_dirty(void);
  3179. void check_descriptor_bandwidth_changed(time_t now);
  3180. void check_descriptor_ipaddress_changed(time_t now);
  3181. void router_new_address_suggestion(const char *suggestion);
  3182. int router_compare_to_my_exit_policy(edge_connection_t *conn);
  3183. routerinfo_t *router_get_my_routerinfo(void);
  3184. extrainfo_t *router_get_my_extrainfo(void);
  3185. const char *router_get_my_descriptor(void);
  3186. int router_digest_is_me(const char *digest);
  3187. int router_is_me(routerinfo_t *router);
  3188. int router_fingerprint_is_me(const char *fp);
  3189. int router_pick_published_address(or_options_t *options, uint32_t *addr);
  3190. int router_rebuild_descriptor(int force);
  3191. int router_dump_router_to_string(char *s, size_t maxlen, routerinfo_t *router,
  3192. crypto_pk_env_t *ident_key);
  3193. int extrainfo_dump_to_string(char *s, size_t maxlen, extrainfo_t *extrainfo,
  3194. crypto_pk_env_t *ident_key);
  3195. int is_legal_nickname(const char *s);
  3196. int is_legal_nickname_or_hexdigest(const char *s);
  3197. int is_legal_hexdigest(const char *s);
  3198. void router_get_verbose_nickname(char *buf, routerinfo_t *router);
  3199. void router_reset_warnings(void);
  3200. void router_reset_reachability(void);
  3201. void router_free_all(void);
  3202. const char *router_purpose_to_string(uint8_t p);
  3203. uint8_t router_purpose_from_string(const char *s);
  3204. #ifdef ROUTER_PRIVATE
  3205. /* Used only by router.c and test.c */
  3206. void get_platform_str(char *platform, size_t len);
  3207. #endif
  3208. /********************************* routerlist.c ***************************/
  3209. /** Represents information about a single trusted directory server. */
  3210. typedef struct trusted_dir_server_t {
  3211. char *description;
  3212. char *nickname;
  3213. char *address; /**< Hostname. */
  3214. uint32_t addr; /**< IPv4 address. */
  3215. uint16_t dir_port; /**< Directory port. */
  3216. uint16_t or_port; /**< OR port: Used for tunneling connections. */
  3217. char digest[DIGEST_LEN]; /**< Digest of identity key. */
  3218. char v3_identity_digest[DIGEST_LEN]; /**< Digest of v3 (authority only,
  3219. * high-security) identity key. */
  3220. unsigned int is_running:1; /**< True iff we think this server is running. */
  3221. /** True iff this server has accepted the most recent server descriptor
  3222. * we tried to upload to it. */
  3223. unsigned int has_accepted_serverdesc:1;
  3224. /** What kind of authority is this? (Bitfield.) */
  3225. authority_type_t type;
  3226. smartlist_t *v3_certs; /**< V3 key certificates for this authority */
  3227. download_status_t cert_dl_status; /**< Status of downloading this server's
  3228. * latest certificate. */
  3229. download_status_t v2_ns_dl_status; /**< Status of downloading this server's
  3230. * v2 network status. */
  3231. time_t addr_current_at; /**< When was the document that we derived the
  3232. * address information from published? */
  3233. routerstatus_t fake_status; /**< Used when we need to pass this trusted
  3234. * dir_server_t to directory_initiate_command_*
  3235. * as a routerstatus_t. Not updated by the
  3236. * router-status management code!
  3237. **/
  3238. } trusted_dir_server_t;
  3239. #define ROUTER_REQUIRED_MIN_BANDWIDTH 10000
  3240. #define ROUTER_MAX_DECLARED_BANDWIDTH INT32_MAX
  3241. int get_n_authorities(authority_type_t type);
  3242. int trusted_dirs_reload_certs(void);
  3243. int trusted_dirs_load_certs_from_string(const char *contents, int from_store);
  3244. void trusted_dirs_flush_certs_to_disk(void);
  3245. authority_cert_t *authority_cert_get_newest_by_id(const char *id_digest);
  3246. authority_cert_t *authority_cert_get_by_sk_digest(const char *sk_digest);
  3247. authority_cert_t *authority_cert_get_by_digests(const char *id_digest,
  3248. const char *sk_digest);
  3249. void authority_certs_fetch_missing(networkstatus_vote_t *status, time_t now);
  3250. int router_reload_router_list(void);
  3251. smartlist_t *router_get_trusted_dir_servers(void);
  3252. /* Flags for pick_directory_server and pick_trusteddirserver. */
  3253. #define PDS_ALLOW_SELF (1<<0)
  3254. #define PDS_RETRY_IF_NO_SERVERS (1<<1)
  3255. #define PDS_IGNORE_FASCISTFIREWALL (1<<2)
  3256. #define _PDS_PREFER_TUNNELED_DIR_CONNS (1<<16)
  3257. routerstatus_t *router_pick_directory_server(authority_type_t type, int flags);
  3258. trusted_dir_server_t *router_get_trusteddirserver_by_digest(const char *d);
  3259. trusted_dir_server_t *trusteddirserver_get_by_v3_auth_digest(const char *d);
  3260. routerstatus_t *router_pick_trusteddirserver(authority_type_t type, int flags);
  3261. void router_reset_status_download_failures(void);
  3262. void routerlist_add_family(smartlist_t *sl, routerinfo_t *router);
  3263. int routers_in_same_family(routerinfo_t *r1, routerinfo_t *r2);
  3264. void add_nickname_list_to_smartlist(smartlist_t *sl, const char *list,
  3265. int must_be_running);
  3266. int router_nickname_is_in_list(routerinfo_t *router, const char *list);
  3267. routerinfo_t *routerlist_find_my_routerinfo(void);
  3268. routerinfo_t *router_find_exact_exit_enclave(const char *address,
  3269. uint16_t port);
  3270. int router_is_unreliable(routerinfo_t *router, int need_uptime,
  3271. int need_capacity, int need_guard);
  3272. uint32_t router_get_advertised_bandwidth(routerinfo_t *router);
  3273. typedef enum {
  3274. NO_WEIGHTING, WEIGHT_FOR_EXIT, WEIGHT_FOR_GUARD
  3275. } bandwidth_weight_rule_t;
  3276. routerinfo_t *routerlist_sl_choose_by_bandwidth(smartlist_t *sl,
  3277. bandwidth_weight_rule_t rule);
  3278. routerstatus_t *routerstatus_sl_choose_by_bandwidth(smartlist_t *sl);
  3279. routerinfo_t *router_choose_random_node(const char *preferred,
  3280. const char *excluded,
  3281. smartlist_t *excludedsmartlist,
  3282. int need_uptime, int need_capacity,
  3283. int need_guard,
  3284. int allow_invalid, int strict,
  3285. int weight_for_exit);
  3286. routerinfo_t *router_get_by_nickname(const char *nickname,
  3287. int warn_if_unnamed);
  3288. int router_digest_version_as_new_as(const char *digest, const char *cutoff);
  3289. int router_digest_is_trusted_dir_type(const char *digest,
  3290. authority_type_t type);
  3291. #define router_digest_is_trusted_dir(d) \
  3292. router_digest_is_trusted_dir_type((d), 0)
  3293. int router_addr_is_trusted_dir(uint32_t addr);
  3294. int hexdigest_to_digest(const char *hexdigest, char *digest);
  3295. routerinfo_t *router_get_by_hexdigest(const char *hexdigest);
  3296. routerinfo_t *router_get_by_digest(const char *digest);
  3297. signed_descriptor_t *router_get_by_descriptor_digest(const char *digest);
  3298. signed_descriptor_t *router_get_by_extrainfo_digest(const char *digest);
  3299. signed_descriptor_t *extrainfo_get_by_descriptor_digest(const char *digest);
  3300. const char *signed_descriptor_get_body(signed_descriptor_t *desc);
  3301. routerlist_t *router_get_routerlist(void);
  3302. void routerinfo_free(routerinfo_t *router);
  3303. void extrainfo_free(extrainfo_t *extrainfo);
  3304. void routerlist_free(routerlist_t *rl);
  3305. void dump_routerlist_mem_usage(int severity);
  3306. void routerlist_remove(routerlist_t *rl, routerinfo_t *ri, int make_old);
  3307. void routerlist_free_all(void);
  3308. void routerlist_reset_warnings(void);
  3309. void router_set_status(const char *digest, int up);
  3310. int router_add_to_routerlist(routerinfo_t *router, const char **msg,
  3311. int from_cache, int from_fetch);
  3312. int router_add_extrainfo_to_routerlist(extrainfo_t *ei, const char **msg,
  3313. int from_cache, int from_fetch);
  3314. void routerlist_remove_old_routers(void);
  3315. int router_load_single_router(const char *s, uint8_t purpose, int cache,
  3316. const char **msg);
  3317. void router_load_routers_from_string(const char *s, const char *eos,
  3318. saved_location_t saved_location,
  3319. smartlist_t *requested_fingerprints,
  3320. int descriptor_digests,
  3321. const char *prepend_annotations);
  3322. void router_load_extrainfo_from_string(const char *s, const char *eos,
  3323. saved_location_t saved_location,
  3324. smartlist_t *requested_fingerprints,
  3325. int descriptor_digests);
  3326. void routerlist_retry_directory_downloads(time_t now);
  3327. int router_exit_policy_all_routers_reject(uint32_t addr, uint16_t port,
  3328. int need_uptime);
  3329. int router_exit_policy_rejects_all(routerinfo_t *router);
  3330. void add_trusted_dir_server(const char *nickname, const char *address,
  3331. uint16_t dir_port, uint16_t or_port,
  3332. const char *digest, const char *v3_auth_digest,
  3333. authority_type_t type);
  3334. void authority_cert_free(authority_cert_t *cert);
  3335. void clear_trusted_dir_servers(void);
  3336. int any_trusted_dir_is_v1_authority(void);
  3337. void update_router_descriptor_downloads(time_t now);
  3338. void update_extrainfo_downloads(time_t now);
  3339. int router_have_minimum_dir_info(void);
  3340. void router_dir_info_changed(void);
  3341. const char *get_dir_info_status_string(void);
  3342. void router_reset_descriptor_download_failures(void);
  3343. int router_differences_are_cosmetic(routerinfo_t *r1, routerinfo_t *r2);
  3344. int routerinfo_incompatible_with_extrainfo(routerinfo_t *ri, extrainfo_t *ei,
  3345. signed_descriptor_t *sd,
  3346. const char **msg);
  3347. void routerlist_assert_ok(routerlist_t *rl);
  3348. const char *esc_router_info(routerinfo_t *router);
  3349. void routers_sort_by_identity(smartlist_t *routers);
  3350. smartlist_t *hid_serv_create_routing_table_st(void);
  3351. int hid_serv_have_enough_directories(const smartlist_t *hs_dirs);
  3352. int hid_serv_get_responsible_directories(smartlist_t *responsible_dirs,
  3353. const char *id);
  3354. #if 0
  3355. routerinfo_t *hid_serv_next_directory(const char *id,
  3356. const smartlist_t *hs_dirs);
  3357. routerinfo_t *hid_serv_previous_directory(const char *id,
  3358. const smartlist_t *hs_dirs);
  3359. #endif
  3360. int hid_serv_acting_as_directory(void);
  3361. int hid_serv_responsible_for_desc_id(const char *id);
  3362. /********************************* routerparse.c ************************/
  3363. #define MAX_STATUS_TAG_LEN 32
  3364. /** Structure to hold parsed Tor versions. This is a little messier
  3365. * than we would like it to be, because we changed version schemes with 0.1.0.
  3366. *
  3367. * See version-spec.txt for the whole business.
  3368. */
  3369. typedef struct tor_version_t {
  3370. int major;
  3371. int minor;
  3372. int micro;
  3373. /** Release status. For version in the post-0.1 format, this is always
  3374. * VER_RELEASE. */
  3375. enum { VER_PRE=0, VER_RC=1, VER_RELEASE=2, } status;
  3376. int patchlevel;
  3377. char status_tag[MAX_STATUS_TAG_LEN];
  3378. int svn_revision;
  3379. } tor_version_t;
  3380. int router_get_router_hash(const char *s, char *digest);
  3381. int router_get_dir_hash(const char *s, char *digest);
  3382. int router_get_runningrouters_hash(const char *s, char *digest);
  3383. int router_get_networkstatus_v2_hash(const char *s, char *digest);
  3384. int router_get_networkstatus_v3_hash(const char *s, char *digest);
  3385. int router_get_extrainfo_hash(const char *s, char *digest);
  3386. int router_append_dirobj_signature(char *buf, size_t buf_len,
  3387. const char *digest,
  3388. crypto_pk_env_t *private_key);
  3389. int router_parse_list_from_string(const char **s, const char *eos,
  3390. smartlist_t *dest,
  3391. saved_location_t saved_location,
  3392. int is_extrainfo,
  3393. int allow_annotations,
  3394. const char *prepend_annotations);
  3395. int router_parse_routerlist_from_directory(const char *s,
  3396. routerlist_t **dest,
  3397. crypto_pk_env_t *pkey,
  3398. int check_version,
  3399. int write_to_cache);
  3400. int router_parse_runningrouters(const char *str);
  3401. int router_parse_directory(const char *str);
  3402. routerinfo_t *router_parse_entry_from_string(const char *s, const char *end,
  3403. int cache_copy,
  3404. int allow_annotations,
  3405. const char *prepend_annotations);
  3406. extrainfo_t *extrainfo_parse_entry_from_string(const char *s, const char *end,
  3407. int cache_copy, struct digest_ri_map_t *routermap);
  3408. addr_policy_t *router_parse_addr_policy_from_string(const char *s,
  3409. int assume_action);
  3410. version_status_t tor_version_is_obsolete(const char *myversion,
  3411. const char *versionlist);
  3412. int tor_version_parse(const char *s, tor_version_t *out);
  3413. int tor_version_as_new_as(const char *platform, const char *cutoff);
  3414. int tor_version_compare(tor_version_t *a, tor_version_t *b);
  3415. void sort_version_list(smartlist_t *lst, int remove_duplicates);
  3416. void assert_addr_policy_ok(addr_policy_t *t);
  3417. void dump_distinct_digest_count(int severity);
  3418. networkstatus_v2_t *networkstatus_v2_parse_from_string(const char *s);
  3419. networkstatus_vote_t *networkstatus_parse_vote_from_string(const char *s,
  3420. const char **eos_out,
  3421. int is_vote);
  3422. ns_detached_signatures_t *networkstatus_parse_detached_signatures(
  3423. const char *s, const char *eos);
  3424. authority_cert_t *authority_cert_parse_from_string(const char *s,
  3425. const char **end_of_string);
  3426. int rend_parse_v2_service_descriptor(rend_service_descriptor_t **parsed_out,
  3427. char *desc_id_out,
  3428. char **intro_points_encrypted_out,
  3429. size_t *intro_points_encrypted_size_out,
  3430. size_t *encoded_size_out,
  3431. const char **next_out, const char *desc);
  3432. int rend_decrypt_introduction_points(rend_service_descriptor_t *parsed,
  3433. const char *descriptor_cookie,
  3434. const char *intro_content,
  3435. size_t intro_size);
  3436. #endif