/* Copyright (c) 2001 Matej Pfajfar. * Copyright (c) 2001-2004, Roger Dingledine. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson. * Copyright (c) 2007-2012, The Tor Project, Inc. */ /* See LICENSE for licensing information */ /** * \file or.h * \brief Master header file for Tor-specific functionality. **/ #ifndef TOR_OR_H #define TOR_OR_H #include "orconfig.h" #ifdef __COVERITY__ /* If we're building for a static analysis, turn on all the off-by-default * features. */ #ifndef INSTRUMENT_DOWNLOADS #define INSTRUMENT_DOWNLOADS 1 #endif #endif #ifdef _WIN32 #ifndef _WIN32_WINNT #define _WIN32_WINNT 0x0501 #endif #define WIN32_LEAN_AND_MEAN #endif #ifdef HAVE_UNISTD_H #include #endif #ifdef HAVE_SIGNAL_H #include #endif #ifdef HAVE_NETDB_H #include #endif #ifdef HAVE_SYS_PARAM_H #include /* FreeBSD needs this to know what version it is */ #endif #include "torint.h" #ifdef HAVE_SYS_WAIT_H #include #endif #ifdef HAVE_SYS_FCNTL_H #include #endif #ifdef HAVE_FCNTL_H #include #endif #ifdef HAVE_SYS_IOCTL_H #include #endif #ifdef HAVE_SYS_UN_H #include #endif #ifdef HAVE_SYS_STAT_H #include #endif #ifdef HAVE_NETINET_IN_H #include #endif #ifdef HAVE_ARPA_INET_H #include #endif #ifdef HAVE_ERRNO_H #include #endif #ifdef HAVE_ASSERT_H #include #endif #ifdef HAVE_TIME_H #include #endif #ifdef _WIN32 #include #include #include #include #define snprintf _snprintf #endif #ifdef USE_BUFFEREVENTS #include #include #include #endif #include "crypto.h" #include "tortls.h" #include "../common/torlog.h" #include "container.h" #include "torgzip.h" #include "address.h" #include "compat_libevent.h" #include "ht.h" #include "replaycache.h" /* These signals are defined to help handle_control_signal work. */ #ifndef SIGHUP #define SIGHUP 1 #endif #ifndef SIGINT #define SIGINT 2 #endif #ifndef SIGUSR1 #define SIGUSR1 10 #endif #ifndef SIGUSR2 #define SIGUSR2 12 #endif #ifndef SIGTERM #define SIGTERM 15 #endif /* Controller signals start at a high number so we don't * conflict with system-defined signals. */ #define SIGNEWNYM 129 #define SIGCLEARDNSCACHE 130 #if (SIZEOF_CELL_T != 0) /* On Irix, stdlib.h defines a cell_t type, so we need to make sure * that our stuff always calls cell_t something different. */ #define cell_t tor_cell_t #endif #ifdef ENABLE_TOR2WEB_MODE #define NON_ANONYMOUS_MODE_ENABLED 1 #endif /** Length of longest allowable configured nickname. */ #define MAX_NICKNAME_LEN 19 /** Length of a router identity encoded as a hexadecimal digest, plus * possible dollar sign. */ #define MAX_HEX_NICKNAME_LEN (HEX_DIGEST_LEN+1) /** Maximum length of verbose router identifier: dollar sign, hex ID digest, * equal sign or tilde, nickname. */ #define MAX_VERBOSE_NICKNAME_LEN (1+HEX_DIGEST_LEN+1+MAX_NICKNAME_LEN) /** Maximum size, in bytes, for resized buffers. */ #define MAX_BUF_SIZE ((1<<24)-1) /* 16MB-1 */ /** Maximum size, in bytes, for any directory object that we've downloaded. */ #define MAX_DIR_DL_SIZE MAX_BUF_SIZE /** For HTTP parsing: Maximum number of bytes we'll accept in the headers * of an HTTP request or response. */ #define MAX_HEADERS_SIZE 50000 /** Maximum size, in bytes, for any directory object that we're accepting * as an upload. */ #define MAX_DIR_UL_SIZE MAX_BUF_SIZE /** Maximum size, in bytes, of a single router descriptor uploaded to us * as a directory authority. Caches and clients fetch whatever descriptors * the authorities tell them to fetch, and don't care about size. */ #define MAX_DESCRIPTOR_UPLOAD_SIZE 20000 /** Maximum size of a single extrainfo document, as above. */ #define MAX_EXTRAINFO_UPLOAD_SIZE 50000 /** How long do we keep DNS cache entries before purging them (regardless of * their TTL)? */ #define MAX_DNS_ENTRY_AGE (30*60) /** How long do we cache/tell clients to cache DNS records when no TTL is * known? */ #define DEFAULT_DNS_TTL (30*60) /** How long can a TTL be before we stop believing it? */ #define MAX_DNS_TTL (3*60*60) /** How small can a TTL be before we stop believing it? Provides rudimentary * pinning. */ #define MIN_DNS_TTL 60 /** How often do we rotate onion keys? */ #define MIN_ONION_KEY_LIFETIME (7*24*60*60) /** How often do we rotate TLS contexts? */ #define MAX_SSL_KEY_LIFETIME_INTERNAL (2*60*60) /** What expiry time shall we place on our SSL certs? */ #define MAX_SSL_KEY_LIFETIME_ADVERTISED (365*24*60*60) /** How old do we allow a router to get before removing it * from the router list? In seconds. */ #define ROUTER_MAX_AGE (60*60*48) /** How old can a router get before we (as a server) will no longer * consider it live? In seconds. */ #define ROUTER_MAX_AGE_TO_PUBLISH (60*60*24) /** How old do we let a saved descriptor get before force-removing it? */ #define OLD_ROUTER_DESC_MAX_AGE (60*60*24*5) /** Possible rules for generating circuit IDs on an OR connection. */ typedef enum { CIRC_ID_TYPE_LOWER=0, /**< Pick from 0..1<<15-1. */ CIRC_ID_TYPE_HIGHER=1, /**< Pick from 1<<15..1<<16-1. */ /** The other side of a connection is an OP: never create circuits to it, * and let it use any circuit ID it wants. */ CIRC_ID_TYPE_NEITHER=2 } circ_id_type_t; #define CONN_TYPE_MIN_ 3 /** Type for sockets listening for OR connections. */ #define CONN_TYPE_OR_LISTENER 3 /** A bidirectional TLS connection transmitting a sequence of cells. * May be from an OR to an OR, or from an OP to an OR. */ #define CONN_TYPE_OR 4 /** A TCP connection from an onion router to a stream's destination. */ #define CONN_TYPE_EXIT 5 /** Type for sockets listening for SOCKS connections. */ #define CONN_TYPE_AP_LISTENER 6 /** A SOCKS proxy connection from the user application to the onion * proxy. */ #define CONN_TYPE_AP 7 /** Type for sockets listening for HTTP connections to the directory server. */ #define CONN_TYPE_DIR_LISTENER 8 /** Type for HTTP connections to the directory server. */ #define CONN_TYPE_DIR 9 /** Connection from the main process to a CPU worker process. */ #define CONN_TYPE_CPUWORKER 10 /** Type for listening for connections from user interface process. */ #define CONN_TYPE_CONTROL_LISTENER 11 /** Type for connections from user interface process. */ #define CONN_TYPE_CONTROL 12 /** Type for sockets listening for transparent connections redirected by pf or * netfilter. */ #define CONN_TYPE_AP_TRANS_LISTENER 13 /** Type for sockets listening for transparent connections redirected by * natd. */ #define CONN_TYPE_AP_NATD_LISTENER 14 /** Type for sockets listening for DNS requests. */ #define CONN_TYPE_AP_DNS_LISTENER 15 #define CONN_TYPE_MAX_ 15 /* !!!! If CONN_TYPE_MAX_ is ever over 15, we must grow the type field in * connection_t. */ /* Proxy client types */ #define PROXY_NONE 0 #define PROXY_CONNECT 1 #define PROXY_SOCKS4 2 #define PROXY_SOCKS5 3 /* !!!! If there is ever a PROXY_* type over 2, we must grow the proxy_type * field in or_connection_t */ /* pluggable transports proxy type */ #define PROXY_PLUGGABLE 4 /* Proxy client handshake states */ /* We use a proxy but we haven't even connected to it yet. */ #define PROXY_INFANT 1 /* We use an HTTP proxy and we've sent the CONNECT command. */ #define PROXY_HTTPS_WANT_CONNECT_OK 2 /* We use a SOCKS4 proxy and we've sent the CONNECT command. */ #define PROXY_SOCKS4_WANT_CONNECT_OK 3 /* We use a SOCKS5 proxy and we try to negotiate without any authentication . */ #define PROXY_SOCKS5_WANT_AUTH_METHOD_NONE 4 /* We use a SOCKS5 proxy and we try to negotiate with Username/Password authentication . */ #define PROXY_SOCKS5_WANT_AUTH_METHOD_RFC1929 5 /* We use a SOCKS5 proxy and we just sent our credentials. */ #define PROXY_SOCKS5_WANT_AUTH_RFC1929_OK 6 /* We use a SOCKS5 proxy and we just sent our CONNECT command. */ #define PROXY_SOCKS5_WANT_CONNECT_OK 7 /* We use a proxy and we CONNECTed successfully!. */ #define PROXY_CONNECTED 8 /** True iff x is an edge connection. */ #define CONN_IS_EDGE(x) \ ((x)->type == CONN_TYPE_EXIT || (x)->type == CONN_TYPE_AP) /** State for any listener connection. */ #define LISTENER_STATE_READY 0 #define CPUWORKER_STATE_MIN_ 1 /** State for a connection to a cpuworker process that's idle. */ #define CPUWORKER_STATE_IDLE 1 /** State for a connection to a cpuworker process that's processing a * handshake. */ #define CPUWORKER_STATE_BUSY_ONION 2 #define CPUWORKER_STATE_MAX_ 2 #define CPUWORKER_TASK_ONION CPUWORKER_STATE_BUSY_ONION #define OR_CONN_STATE_MIN_ 1 /** State for a connection to an OR: waiting for connect() to finish. */ #define OR_CONN_STATE_CONNECTING 1 /** State for a connection to an OR: waiting for proxy handshake to complete */ #define OR_CONN_STATE_PROXY_HANDSHAKING 2 /** State for an OR connection client: SSL is handshaking, not done * yet. */ #define OR_CONN_STATE_TLS_HANDSHAKING 3 /** State for a connection to an OR: We're doing a second SSL handshake for * renegotiation purposes. (V2 handshake only.) */ #define OR_CONN_STATE_TLS_CLIENT_RENEGOTIATING 4 /** State for a connection at an OR: We're waiting for the client to * renegotiate (to indicate a v2 handshake) or send a versions cell (to * indicate a v3 handshake) */ #define OR_CONN_STATE_TLS_SERVER_RENEGOTIATING 5 /** State for an OR connection: We're done with our SSL handshake, we've done * renegotiation, but we haven't yet negotiated link protocol versions and * sent a netinfo cell. */ #define OR_CONN_STATE_OR_HANDSHAKING_V2 6 /** State for an OR connection: We're done with our SSL handshake, but we * haven't yet negotiated link protocol versions, done a V3 handshake, and * sent a netinfo cell. */ #define OR_CONN_STATE_OR_HANDSHAKING_V3 7 /** State for an OR connection: Ready to send/receive cells. */ #define OR_CONN_STATE_OPEN 8 #define OR_CONN_STATE_MAX_ 8 #define EXIT_CONN_STATE_MIN_ 1 /** State for an exit connection: waiting for response from DNS farm. */ #define EXIT_CONN_STATE_RESOLVING 1 /** State for an exit connection: waiting for connect() to finish. */ #define EXIT_CONN_STATE_CONNECTING 2 /** State for an exit connection: open and ready to transmit data. */ #define EXIT_CONN_STATE_OPEN 3 /** State for an exit connection: waiting to be removed. */ #define EXIT_CONN_STATE_RESOLVEFAILED 4 #define EXIT_CONN_STATE_MAX_ 4 /* The AP state values must be disjoint from the EXIT state values. */ #define AP_CONN_STATE_MIN_ 5 /** State for a SOCKS connection: waiting for SOCKS request. */ #define AP_CONN_STATE_SOCKS_WAIT 5 /** State for a SOCKS connection: got a y.onion URL; waiting to receive * rendezvous descriptor. */ #define AP_CONN_STATE_RENDDESC_WAIT 6 /** The controller will attach this connection to a circuit; it isn't our * job to do so. */ #define AP_CONN_STATE_CONTROLLER_WAIT 7 /** State for a SOCKS connection: waiting for a completed circuit. */ #define AP_CONN_STATE_CIRCUIT_WAIT 8 /** State for a SOCKS connection: sent BEGIN, waiting for CONNECTED. */ #define AP_CONN_STATE_CONNECT_WAIT 9 /** State for a SOCKS connection: sent RESOLVE, waiting for RESOLVED. */ #define AP_CONN_STATE_RESOLVE_WAIT 10 /** State for a SOCKS connection: ready to send and receive. */ #define AP_CONN_STATE_OPEN 11 /** State for a transparent natd connection: waiting for original * destination. */ #define AP_CONN_STATE_NATD_WAIT 12 #define AP_CONN_STATE_MAX_ 12 /** True iff the AP_CONN_STATE_* value s means that the corresponding * edge connection is not attached to any circuit. */ #define AP_CONN_STATE_IS_UNATTACHED(s) \ ((s) <= AP_CONN_STATE_CIRCUIT_WAIT || (s) == AP_CONN_STATE_NATD_WAIT) #define DIR_CONN_STATE_MIN_ 1 /** State for connection to directory server: waiting for connect(). */ #define DIR_CONN_STATE_CONNECTING 1 /** State for connection to directory server: sending HTTP request. */ #define DIR_CONN_STATE_CLIENT_SENDING 2 /** State for connection to directory server: reading HTTP response. */ #define DIR_CONN_STATE_CLIENT_READING 3 /** State for connection to directory server: happy and finished. */ #define DIR_CONN_STATE_CLIENT_FINISHED 4 /** State for connection at directory server: waiting for HTTP request. */ #define DIR_CONN_STATE_SERVER_COMMAND_WAIT 5 /** State for connection at directory server: sending HTTP response. */ #define DIR_CONN_STATE_SERVER_WRITING 6 #define DIR_CONN_STATE_MAX_ 6 /** True iff the purpose of conn means that it's a server-side * directory connection. */ #define DIR_CONN_IS_SERVER(conn) ((conn)->purpose == DIR_PURPOSE_SERVER) #define CONTROL_CONN_STATE_MIN_ 1 /** State for a control connection: Authenticated and accepting v1 commands. */ #define CONTROL_CONN_STATE_OPEN 1 /** State for a control connection: Waiting for authentication; speaking * protocol v1. */ #define CONTROL_CONN_STATE_NEEDAUTH 2 #define CONTROL_CONN_STATE_MAX_ 2 #define DIR_PURPOSE_MIN_ 3 /** A connection to a directory server: download a rendezvous * descriptor. */ #define DIR_PURPOSE_FETCH_RENDDESC 3 /** A connection to a directory server: set after a rendezvous * descriptor is downloaded. */ #define DIR_PURPOSE_HAS_FETCHED_RENDDESC 4 /** A connection to a directory server: download one or more v2 * network-status objects */ #define DIR_PURPOSE_FETCH_V2_NETWORKSTATUS 5 /** A connection to a directory server: download one or more server * descriptors. */ #define DIR_PURPOSE_FETCH_SERVERDESC 6 /** A connection to a directory server: download one or more extra-info * documents. */ #define DIR_PURPOSE_FETCH_EXTRAINFO 7 /** A connection to a directory server: upload a server descriptor. */ #define DIR_PURPOSE_UPLOAD_DIR 8 /** A connection to a directory server: upload a rendezvous * descriptor. */ #define DIR_PURPOSE_UPLOAD_RENDDESC 9 /** A connection to a directory server: upload a v3 networkstatus vote. */ #define DIR_PURPOSE_UPLOAD_VOTE 10 /** A connection to a directory server: upload a v3 consensus signature */ #define DIR_PURPOSE_UPLOAD_SIGNATURES 11 /** A connection to a directory server: download one or more v3 networkstatus * votes. */ #define DIR_PURPOSE_FETCH_STATUS_VOTE 12 /** A connection to a directory server: download a v3 detached signatures * object for a consensus. */ #define DIR_PURPOSE_FETCH_DETACHED_SIGNATURES 13 /** A connection to a directory server: download a v3 networkstatus * consensus. */ #define DIR_PURPOSE_FETCH_CONSENSUS 14 /** A connection to a directory server: download one or more directory * authority certificates. */ #define DIR_PURPOSE_FETCH_CERTIFICATE 15 /** Purpose for connection at a directory server. */ #define DIR_PURPOSE_SERVER 16 /** A connection to a hidden service directory server: upload a v2 rendezvous * descriptor. */ #define DIR_PURPOSE_UPLOAD_RENDDESC_V2 17 /** A connection to a hidden service directory server: download a v2 rendezvous * descriptor. */ #define DIR_PURPOSE_FETCH_RENDDESC_V2 18 /** A connection to a directory server: download a microdescriptor. */ #define DIR_PURPOSE_FETCH_MICRODESC 19 #define DIR_PURPOSE_MAX_ 19 /** True iff p is a purpose corresponding to uploading data to a * directory server. */ #define DIR_PURPOSE_IS_UPLOAD(p) \ ((p)==DIR_PURPOSE_UPLOAD_DIR || \ (p)==DIR_PURPOSE_UPLOAD_RENDDESC || \ (p)==DIR_PURPOSE_UPLOAD_VOTE || \ (p)==DIR_PURPOSE_UPLOAD_SIGNATURES) #define EXIT_PURPOSE_MIN_ 1 /** This exit stream wants to do an ordinary connect. */ #define EXIT_PURPOSE_CONNECT 1 /** This exit stream wants to do a resolve (either normal or reverse). */ #define EXIT_PURPOSE_RESOLVE 2 #define EXIT_PURPOSE_MAX_ 2 /* !!!! If any connection purpose is ever over 31, we must grow the type * field in connection_t. */ /** Circuit state: I'm the origin, still haven't done all my handshakes. */ #define CIRCUIT_STATE_BUILDING 0 /** Circuit state: Waiting to process the onionskin. */ #define CIRCUIT_STATE_ONIONSKIN_PENDING 1 /** Circuit state: I'd like to deliver a create, but my n_chan is still * connecting. */ #define CIRCUIT_STATE_CHAN_WAIT 2 /** Circuit state: onionskin(s) processed, ready to send/receive cells. */ #define CIRCUIT_STATE_OPEN 3 #define CIRCUIT_PURPOSE_MIN_ 1 /* these circuits were initiated elsewhere */ #define CIRCUIT_PURPOSE_OR_MIN_ 1 /** OR-side circuit purpose: normal circuit, at OR. */ #define CIRCUIT_PURPOSE_OR 1 /** OR-side circuit purpose: At OR, from Bob, waiting for intro from Alices. */ #define CIRCUIT_PURPOSE_INTRO_POINT 2 /** OR-side circuit purpose: At OR, from Alice, waiting for Bob. */ #define CIRCUIT_PURPOSE_REND_POINT_WAITING 3 /** OR-side circuit purpose: At OR, both circuits have this purpose. */ #define CIRCUIT_PURPOSE_REND_ESTABLISHED 4 #define CIRCUIT_PURPOSE_OR_MAX_ 4 /* these circuits originate at this node */ /* here's how circ client-side purposes work: * normal circuits are C_GENERAL. * circuits that are c_introducing are either on their way to * becoming open, or they are open and waiting for a * suitable rendcirc before they send the intro. * circuits that are c_introduce_ack_wait have sent the intro, * but haven't gotten a response yet. * circuits that are c_establish_rend are either on their way * to becoming open, or they are open and have sent the * establish_rendezvous cell but haven't received an ack. * circuits that are c_rend_ready are open and have received a * rend ack, but haven't heard from bob yet. if they have a * buildstate->pending_final_cpath then they're expecting a * cell from bob, else they're not. * circuits that are c_rend_ready_intro_acked are open, and * some intro circ has sent its intro and received an ack. * circuits that are c_rend_joined are open, have heard from * bob, and are talking to him. */ /** Client-side circuit purpose: Normal circuit, with cpath. */ #define CIRCUIT_PURPOSE_C_GENERAL 5 /** Client-side circuit purpose: at Alice, connecting to intro point. */ #define CIRCUIT_PURPOSE_C_INTRODUCING 6 /** Client-side circuit purpose: at Alice, sent INTRODUCE1 to intro point, * waiting for ACK/NAK. */ #define CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT 7 /** Client-side circuit purpose: at Alice, introduced and acked, closing. */ #define CIRCUIT_PURPOSE_C_INTRODUCE_ACKED 8 /** Client-side circuit purpose: at Alice, waiting for ack. */ #define CIRCUIT_PURPOSE_C_ESTABLISH_REND 9 /** Client-side circuit purpose: at Alice, waiting for Bob. */ #define CIRCUIT_PURPOSE_C_REND_READY 10 /** Client-side circuit purpose: at Alice, waiting for Bob, INTRODUCE * has been acknowledged. */ #define CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED 11 /** Client-side circuit purpose: at Alice, rendezvous established. */ #define CIRCUIT_PURPOSE_C_REND_JOINED 12 /** This circuit is used for build time measurement only */ #define CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT 13 #define CIRCUIT_PURPOSE_C_MAX_ 13 /** Hidden-service-side circuit purpose: at Bob, waiting for introductions. */ #define CIRCUIT_PURPOSE_S_ESTABLISH_INTRO 14 /** Hidden-service-side circuit purpose: at Bob, successfully established * intro. */ #define CIRCUIT_PURPOSE_S_INTRO 15 /** Hidden-service-side circuit purpose: at Bob, connecting to rend point. */ #define CIRCUIT_PURPOSE_S_CONNECT_REND 16 /** Hidden-service-side circuit purpose: at Bob, rendezvous established. */ #define CIRCUIT_PURPOSE_S_REND_JOINED 17 /** A testing circuit; not meant to be used for actual traffic. */ #define CIRCUIT_PURPOSE_TESTING 18 /** A controller made this circuit and Tor should not use it. */ #define CIRCUIT_PURPOSE_CONTROLLER 19 #define CIRCUIT_PURPOSE_MAX_ 19 /** A catch-all for unrecognized purposes. Currently we don't expect * to make or see any circuits with this purpose. */ #define CIRCUIT_PURPOSE_UNKNOWN 255 /** True iff the circuit purpose p is for a circuit that * originated at this node. */ #define CIRCUIT_PURPOSE_IS_ORIGIN(p) ((p)>CIRCUIT_PURPOSE_OR_MAX_) /** True iff the circuit purpose p is for a circuit that originated * here to serve as a client. (Hidden services don't count here.) */ #define CIRCUIT_PURPOSE_IS_CLIENT(p) \ ((p)> CIRCUIT_PURPOSE_OR_MAX_ && \ (p)<=CIRCUIT_PURPOSE_C_MAX_) /** True iff the circuit_t c is actually an origin_circuit_t. */ #define CIRCUIT_IS_ORIGIN(c) (CIRCUIT_PURPOSE_IS_ORIGIN((c)->purpose)) /** True iff the circuit purpose p is for an established rendezvous * circuit. */ #define CIRCUIT_PURPOSE_IS_ESTABLISHED_REND(p) \ ((p) == CIRCUIT_PURPOSE_C_REND_JOINED || \ (p) == CIRCUIT_PURPOSE_S_REND_JOINED) /** How many circuits do we want simultaneously in-progress to handle * a given stream? */ #define MIN_CIRCUITS_HANDLING_STREAM 2 /* These RELAY_COMMAND constants define values for relay cell commands, and * must match those defined in tor-spec.txt. */ #define RELAY_COMMAND_BEGIN 1 #define RELAY_COMMAND_DATA 2 #define RELAY_COMMAND_END 3 #define RELAY_COMMAND_CONNECTED 4 #define RELAY_COMMAND_SENDME 5 #define RELAY_COMMAND_EXTEND 6 #define RELAY_COMMAND_EXTENDED 7 #define RELAY_COMMAND_TRUNCATE 8 #define RELAY_COMMAND_TRUNCATED 9 #define RELAY_COMMAND_DROP 10 #define RELAY_COMMAND_RESOLVE 11 #define RELAY_COMMAND_RESOLVED 12 #define RELAY_COMMAND_BEGIN_DIR 13 #define RELAY_COMMAND_ESTABLISH_INTRO 32 #define RELAY_COMMAND_ESTABLISH_RENDEZVOUS 33 #define RELAY_COMMAND_INTRODUCE1 34 #define RELAY_COMMAND_INTRODUCE2 35 #define RELAY_COMMAND_RENDEZVOUS1 36 #define RELAY_COMMAND_RENDEZVOUS2 37 #define RELAY_COMMAND_INTRO_ESTABLISHED 38 #define RELAY_COMMAND_RENDEZVOUS_ESTABLISHED 39 #define RELAY_COMMAND_INTRODUCE_ACK 40 /* Reasons why an OR connection is closed. */ #define END_OR_CONN_REASON_DONE 1 #define END_OR_CONN_REASON_REFUSED 2 /* connection refused */ #define END_OR_CONN_REASON_OR_IDENTITY 3 #define END_OR_CONN_REASON_CONNRESET 4 /* connection reset by peer */ #define END_OR_CONN_REASON_TIMEOUT 5 #define END_OR_CONN_REASON_NO_ROUTE 6 /* no route to host/net */ #define END_OR_CONN_REASON_IO_ERROR 7 /* read/write error */ #define END_OR_CONN_REASON_RESOURCE_LIMIT 8 /* sockets, buffers, etc */ #define END_OR_CONN_REASON_MISC 9 /* Reasons why we (or a remote OR) might close a stream. See tor-spec.txt for * documentation of these. The values must match. */ #define END_STREAM_REASON_MISC 1 #define END_STREAM_REASON_RESOLVEFAILED 2 #define END_STREAM_REASON_CONNECTREFUSED 3 #define END_STREAM_REASON_EXITPOLICY 4 #define END_STREAM_REASON_DESTROY 5 #define END_STREAM_REASON_DONE 6 #define END_STREAM_REASON_TIMEOUT 7 #define END_STREAM_REASON_NOROUTE 8 #define END_STREAM_REASON_HIBERNATING 9 #define END_STREAM_REASON_INTERNAL 10 #define END_STREAM_REASON_RESOURCELIMIT 11 #define END_STREAM_REASON_CONNRESET 12 #define END_STREAM_REASON_TORPROTOCOL 13 #define END_STREAM_REASON_NOTDIRECTORY 14 #define END_STREAM_REASON_ENTRYPOLICY 15 /* These high-numbered end reasons are not part of the official spec, * and are not intended to be put in relay end cells. They are here * to be more informative when sending back socks replies to the * application. */ /* XXXX 256 is no longer used; feel free to reuse it. */ /** We were unable to attach the connection to any circuit at all. */ /* XXXX the ways we use this one don't make a lot of sense. */ #define END_STREAM_REASON_CANT_ATTACH 257 /** We can't connect to any directories at all, so we killed our streams * before they can time out. */ #define END_STREAM_REASON_NET_UNREACHABLE 258 /** This is a SOCKS connection, and the client used (or misused) the SOCKS * protocol in a way we couldn't handle. */ #define END_STREAM_REASON_SOCKSPROTOCOL 259 /** This is a transparent proxy connection, but we can't extract the original * target address:port. */ #define END_STREAM_REASON_CANT_FETCH_ORIG_DEST 260 /** This is a connection on the NATD port, and the destination IP:Port was * either ill-formed or out-of-range. */ #define END_STREAM_REASON_INVALID_NATD_DEST 261 /** The target address is in a private network (like 127.0.0.1 or 10.0.0.1); * you don't want to do that over a randomly chosen exit */ #define END_STREAM_REASON_PRIVATE_ADDR 262 /** Bitwise-and this value with endreason to mask out all flags. */ #define END_STREAM_REASON_MASK 511 /** Bitwise-or this with the argument to control_event_stream_status * to indicate that the reason came from an END cell. */ #define END_STREAM_REASON_FLAG_REMOTE 512 /** Bitwise-or this with the argument to control_event_stream_status * to indicate that we already sent a CLOSED stream event. */ #define END_STREAM_REASON_FLAG_ALREADY_SENT_CLOSED 1024 /** Bitwise-or this with endreason to indicate that we already sent * a socks reply, and no further reply needs to be sent from * connection_mark_unattached_ap(). */ #define END_STREAM_REASON_FLAG_ALREADY_SOCKS_REPLIED 2048 /** Reason for remapping an AP connection's address: we have a cached * answer. */ #define REMAP_STREAM_SOURCE_CACHE 1 /** Reason for remapping an AP connection's address: the exit node told us an * answer. */ #define REMAP_STREAM_SOURCE_EXIT 2 /* 'type' values to use in RESOLVED cells. Specified in tor-spec.txt. */ #define RESOLVED_TYPE_HOSTNAME 0 #define RESOLVED_TYPE_IPV4 4 #define RESOLVED_TYPE_IPV6 6 #define RESOLVED_TYPE_ERROR_TRANSIENT 0xF0 #define RESOLVED_TYPE_ERROR 0xF1 /* Negative reasons are internal: we never send them in a DESTROY or TRUNCATE * call; they only go to the controller for tracking */ /** Our post-timeout circuit time measurement period expired. * We must give up now */ #define END_CIRC_REASON_MEASUREMENT_EXPIRED -3 /** We couldn't build a path for this circuit. */ #define END_CIRC_REASON_NOPATH -2 /** Catch-all "other" reason for closing origin circuits. */ #define END_CIRC_AT_ORIGIN -1 /* Reasons why we (or a remote OR) might close a circuit. See tor-spec.txt for * documentation of these. */ #define END_CIRC_REASON_MIN_ 0 #define END_CIRC_REASON_NONE 0 #define END_CIRC_REASON_TORPROTOCOL 1 #define END_CIRC_REASON_INTERNAL 2 #define END_CIRC_REASON_REQUESTED 3 #define END_CIRC_REASON_HIBERNATING 4 #define END_CIRC_REASON_RESOURCELIMIT 5 #define END_CIRC_REASON_CONNECTFAILED 6 #define END_CIRC_REASON_OR_IDENTITY 7 #define END_CIRC_REASON_CHANNEL_CLOSED 8 #define END_CIRC_REASON_FINISHED 9 #define END_CIRC_REASON_TIMEOUT 10 #define END_CIRC_REASON_DESTROYED 11 #define END_CIRC_REASON_NOSUCHSERVICE 12 #define END_CIRC_REASON_MAX_ 12 /** Bitwise-OR this with the argument to circuit_mark_for_close() or * control_event_circuit_status() to indicate that the reason was * passed through from a destroy or truncate cell. */ #define END_CIRC_REASON_FLAG_REMOTE 512 /** Length of 'y' portion of 'y.onion' URL. */ #define REND_SERVICE_ID_LEN_BASE32 16 /** Length of 'y.onion' including '.onion' URL. */ #define REND_SERVICE_ADDRESS_LEN (16+1+5) /** Length of a binary-encoded rendezvous service ID. */ #define REND_SERVICE_ID_LEN 10 /** Time period for which a v2 descriptor will be valid. */ #define REND_TIME_PERIOD_V2_DESC_VALIDITY (24*60*60) /** Time period within which two sets of v2 descriptors will be uploaded in * parallel. */ #define REND_TIME_PERIOD_OVERLAPPING_V2_DESCS (60*60) /** Number of non-consecutive replicas (i.e. distributed somewhere * in the ring) for a descriptor. */ #define REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS 2 /** Number of consecutive replicas for a descriptor. */ #define REND_NUMBER_OF_CONSECUTIVE_REPLICAS 3 /** Length of v2 descriptor ID (32 base32 chars = 160 bits). */ #define REND_DESC_ID_V2_LEN_BASE32 32 /** Length of the base32-encoded secret ID part of versioned hidden service * descriptors. */ #define REND_SECRET_ID_PART_LEN_BASE32 32 /** Length of the base32-encoded hash of an introduction point's * identity key. */ #define REND_INTRO_POINT_ID_LEN_BASE32 32 /** Length of the descriptor cookie that is used for client authorization * to hidden services. */ #define REND_DESC_COOKIE_LEN 16 /** Length of the base64-encoded descriptor cookie that is used for * exchanging client authorization between hidden service and client. */ #define REND_DESC_COOKIE_LEN_BASE64 22 /** Length of client identifier in encrypted introduction points for hidden * service authorization type 'basic'. */ #define REND_BASIC_AUTH_CLIENT_ID_LEN 4 /** Multiple of the number of clients to which the real number of clients * is padded with fake clients for hidden service authorization type * 'basic'. */ #define REND_BASIC_AUTH_CLIENT_MULTIPLE 16 /** Length of client entry consisting of client identifier and encrypted * session key for hidden service authorization type 'basic'. */ #define REND_BASIC_AUTH_CLIENT_ENTRY_LEN (REND_BASIC_AUTH_CLIENT_ID_LEN \ + CIPHER_KEY_LEN) /** Maximum size of v2 hidden service descriptors. */ #define REND_DESC_MAX_SIZE (20 * 1024) /** Legal characters for use in authorized client names for a hidden * service. */ #define REND_LEGAL_CLIENTNAME_CHARACTERS \ "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789+-_" /** Maximum length of authorized client names for a hidden service. */ #define REND_CLIENTNAME_MAX_LEN 16 /** Length of the rendezvous cookie that is used to connect circuits at the * rendezvous point. */ #define REND_COOKIE_LEN DIGEST_LEN /** Client authorization type that a hidden service performs. */ typedef enum rend_auth_type_t { REND_NO_AUTH = 0, REND_BASIC_AUTH = 1, REND_STEALTH_AUTH = 2, } rend_auth_type_t; /** Client-side configuration of authorization for a hidden service. */ typedef struct rend_service_authorization_t { char descriptor_cookie[REND_DESC_COOKIE_LEN]; char onion_address[REND_SERVICE_ADDRESS_LEN+1]; rend_auth_type_t auth_type; } rend_service_authorization_t; /** Client- and server-side data that is used for hidden service connection * establishment. Not all fields contain data depending on where this struct * is used. */ typedef struct rend_data_t { /** Onion address (without the .onion part) that a client requests. */ char onion_address[REND_SERVICE_ID_LEN_BASE32+1]; /** (Optional) descriptor cookie that is used by a client. */ char descriptor_cookie[REND_DESC_COOKIE_LEN]; /** Authorization type for accessing a service used by a client. */ rend_auth_type_t auth_type; /** Hash of the hidden service's PK used by a service. */ char rend_pk_digest[DIGEST_LEN]; /** Rendezvous cookie used by both, client and service. */ char rend_cookie[REND_COOKIE_LEN]; } rend_data_t; /** Time interval for tracking replays of DH public keys received in * INTRODUCE2 cells. Used only to avoid launching multiple * simultaneous attempts to connect to the same rendezvous point. */ #define REND_REPLAY_TIME_INTERVAL (5 * 60) /** Used to indicate which way a cell is going on a circuit. */ typedef enum { CELL_DIRECTION_IN=1, /**< The cell is moving towards the origin. */ CELL_DIRECTION_OUT=2, /**< The cell is moving away from the origin. */ } cell_direction_t; /** Initial value for both sides of a circuit transmission window when the * circuit is initialized. Measured in cells. */ #define CIRCWINDOW_START 1000 #define CIRCWINDOW_START_MIN 100 #define CIRCWINDOW_START_MAX 1000 /** Amount to increment a circuit window when we get a circuit SENDME. */ #define CIRCWINDOW_INCREMENT 100 /** Initial value on both sides of a stream transmission window when the * stream is initialized. Measured in cells. */ #define STREAMWINDOW_START 500 /** Amount to increment a stream window when we get a stream SENDME. */ #define STREAMWINDOW_INCREMENT 50 /* Cell commands. These values are defined in tor-spec.txt. */ #define CELL_PADDING 0 #define CELL_CREATE 1 #define CELL_CREATED 2 #define CELL_RELAY 3 #define CELL_DESTROY 4 #define CELL_CREATE_FAST 5 #define CELL_CREATED_FAST 6 #define CELL_VERSIONS 7 #define CELL_NETINFO 8 #define CELL_RELAY_EARLY 9 #define CELL_VPADDING 128 #define CELL_CERTS 129 #define CELL_AUTH_CHALLENGE 130 #define CELL_AUTHENTICATE 131 #define CELL_AUTHORIZE 132 /** How long to test reachability before complaining to the user. */ #define TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT (20*60) /** Legal characters in a nickname. */ #define LEGAL_NICKNAME_CHARACTERS \ "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789" /** Name to use in client TLS certificates if no nickname is given. Once * Tor 0.1.2.x is obsolete, we can remove this. */ #define DEFAULT_CLIENT_NICKNAME "client" /** Name chosen by routers that don't configure nicknames */ #define UNNAMED_ROUTER_NICKNAME "Unnamed" /** Number of bytes in a SOCKS4 header. */ #define SOCKS4_NETWORK_LEN 8 /* * Relay payload: * Relay command [1 byte] * Recognized [2 bytes] * Stream ID [2 bytes] * Partial SHA-1 [4 bytes] * Length [2 bytes] * Relay payload [498 bytes] */ /** Number of bytes in a cell, minus cell header. */ #define CELL_PAYLOAD_SIZE 509 /** Number of bytes in a cell transmitted over the network. */ #define CELL_NETWORK_SIZE 512 /** Length of a header on a variable-length cell. */ #define VAR_CELL_HEADER_SIZE 5 /** Number of bytes in a relay cell's header (not including general cell * header). */ #define RELAY_HEADER_SIZE (1+2+2+4+2) /** Largest number of bytes that can fit in a relay cell payload. */ #define RELAY_PAYLOAD_SIZE (CELL_PAYLOAD_SIZE-RELAY_HEADER_SIZE) /** Identifies a circuit on an or_connection */ typedef uint16_t circid_t; /** Identifies a stream on a circuit */ typedef uint16_t streamid_t; /* channel_t typedef; struct channel_s is in channel.h */ typedef struct channel_s channel_t; /* channel_listener_t typedef; struct channel_listener_s is in channel.h */ typedef struct channel_listener_s channel_listener_t; /* channel states for channel_t */ typedef enum { /* * Closed state - channel is inactive * * Permitted transitions from: * - CHANNEL_STATE_CLOSING * Permitted transitions to: * - CHANNEL_STATE_OPENING */ CHANNEL_STATE_CLOSED = 0, /* * Opening state - channel is trying to connect * * Permitted transitions from: * - CHANNEL_STATE_CLOSED * Permitted transitions to: * - CHANNEL_STATE_CLOSING * - CHANNEL_STATE_ERROR * - CHANNEL_STATE_OPEN */ CHANNEL_STATE_OPENING, /* * Open state - channel is active and ready for use * * Permitted transitions from: * - CHANNEL_STATE_MAINT * - CHANNEL_STATE_OPENING * Permitted transitions to: * - CHANNEL_STATE_CLOSING * - CHANNEL_STATE_ERROR * - CHANNEL_STATE_MAINT */ CHANNEL_STATE_OPEN, /* * Maintenance state - channel is temporarily offline for subclass specific * maintenance activities such as TLS renegotiation. * * Permitted transitions from: * - CHANNEL_STATE_OPEN * Permitted transitions to: * - CHANNEL_STATE_CLOSING * - CHANNEL_STATE_ERROR * - CHANNEL_STATE_OPEN */ CHANNEL_STATE_MAINT, /* * Closing state - channel is shutting down * * Permitted transitions from: * - CHANNEL_STATE_MAINT * - CHANNEL_STATE_OPEN * Permitted transitions to: * - CHANNEL_STATE_CLOSED, * - CHANNEL_STATE_ERROR */ CHANNEL_STATE_CLOSING, /* * Error state - channel has experienced a permanent error * * Permitted transitions from: * - CHANNEL_STATE_CLOSING * - CHANNEL_STATE_MAINT * - CHANNEL_STATE_OPENING * - CHANNEL_STATE_OPEN * Permitted transitions to: * - None */ CHANNEL_STATE_ERROR, /* * Placeholder for maximum state value */ CHANNEL_STATE_LAST } channel_state_t; /* channel listener states for channel_listener_t */ typedef enum { /* * Closed state - channel listener is inactive * * Permitted transitions from: * - CHANNEL_LISTENER_STATE_CLOSING * Permitted transitions to: * - CHANNEL_LISTENER_STATE_LISTENING */ CHANNEL_LISTENER_STATE_CLOSED = 0, /* * Listening state - channel listener is listening for incoming * connections * * Permitted transitions from: * - CHANNEL_LISTENER_STATE_CLOSED * Permitted transitions to: * - CHANNEL_LISTENER_STATE_CLOSING * - CHANNEL_LISTENER_STATE_ERROR */ CHANNEL_LISTENER_STATE_LISTENING, /* * Closing state - channel listener is shutting down * * Permitted transitions from: * - CHANNEL_LISTENER_STATE_LISTENING * Permitted transitions to: * - CHANNEL_LISTENER_STATE_CLOSED, * - CHANNEL_LISTENER_STATE_ERROR */ CHANNEL_LISTENER_STATE_CLOSING, /* * Error state - channel listener has experienced a permanent error * * Permitted transitions from: * - CHANNEL_STATE_CLOSING * - CHANNEL_STATE_LISTENING * Permitted transitions to: * - None */ CHANNEL_LISTENER_STATE_ERROR, /* * Placeholder for maximum state value */ CHANNEL_LISTENER_STATE_LAST } channel_listener_state_t; /* TLS channel stuff */ typedef struct channel_tls_s channel_tls_t; /* circuitmux_t typedef; struct circuitmux_s is in circuitmux.h */ typedef struct circuitmux_s circuitmux_t; /** Parsed onion routing cell. All communication between nodes * is via cells. */ typedef struct cell_t { circid_t circ_id; /**< Circuit which received the cell. */ uint8_t command; /**< Type of the cell: one of CELL_PADDING, CELL_CREATE, * CELL_DESTROY, etc */ uint8_t payload[CELL_PAYLOAD_SIZE]; /**< Cell body. */ } cell_t; /** Parsed variable-length onion routing cell. */ typedef struct var_cell_t { /** Type of the cell: CELL_VERSIONS, etc. */ uint8_t command; /** Circuit thich received the cell */ circid_t circ_id; /** Number of bytes actually stored in payload */ uint16_t payload_len; /** Payload of this cell */ uint8_t payload[FLEXIBLE_ARRAY_MEMBER]; } var_cell_t; /** A cell as packed for writing to the network. */ typedef struct packed_cell_t { struct packed_cell_t *next; /**< Next cell queued on this circuit. */ char body[CELL_NETWORK_SIZE]; /**< Cell as packed for network. */ } packed_cell_t; /** Number of cells added to a circuit queue including their insertion * time on 10 millisecond detail; used for buffer statistics. */ typedef struct insertion_time_elem_t { struct insertion_time_elem_t *next; /**< Next element in queue. */ uint32_t insertion_time; /**< When were cells inserted (in 10 ms steps * starting at 0:00 of the current day)? */ unsigned counter; /**< How many cells were inserted? */ } insertion_time_elem_t; /** Queue of insertion times. */ typedef struct insertion_time_queue_t { struct insertion_time_elem_t *first; /**< First element in queue. */ struct insertion_time_elem_t *last; /**< Last element in queue. */ } insertion_time_queue_t; /** A queue of cells on a circuit, waiting to be added to the * or_connection_t's outbuf. */ typedef struct cell_queue_t { packed_cell_t *head; /**< The first cell, or NULL if the queue is empty. */ packed_cell_t *tail; /**< The last cell, or NULL if the queue is empty. */ int n; /**< The number of cells in the queue. */ insertion_time_queue_t *insertion_times; /**< Insertion times of cells. */ } cell_queue_t; /** Beginning of a RELAY cell payload. */ typedef struct { uint8_t command; /**< The end-to-end relay command. */ uint16_t recognized; /**< Used to tell whether cell is for us. */ streamid_t stream_id; /**< Which stream is this cell associated with? */ char integrity[4]; /**< Used to tell whether cell is corrupted. */ uint16_t length; /**< How long is the payload body? */ } relay_header_t; typedef struct buf_t buf_t; typedef struct socks_request_t socks_request_t; #ifdef USE_BUFFEREVENTS #define generic_buffer_t struct evbuffer #else #define generic_buffer_t buf_t #endif /* Values for connection_t.magic: used to make sure that downcasts (casts from * connection_t to foo_connection_t) are safe. */ #define BASE_CONNECTION_MAGIC 0x7C3C304Eu #define OR_CONNECTION_MAGIC 0x7D31FF03u #define EDGE_CONNECTION_MAGIC 0xF0374013u #define ENTRY_CONNECTION_MAGIC 0xbb4a5703 #define DIR_CONNECTION_MAGIC 0x9988ffeeu #define CONTROL_CONNECTION_MAGIC 0x8abc765du #define LISTENER_CONNECTION_MAGIC 0x1a1ac741u /** Description of a connection to another host or process, and associated * data. * * A connection is named based on what it's connected to -- an "OR * connection" has a Tor node on the other end, an "exit * connection" has a website or other server on the other end, and an * "AP connection" has an application proxy (and thus a user) on the * other end. * * Every connection has a type and a state. Connections never change * their type, but can go through many state changes in their lifetime. * * Every connection has two associated input and output buffers. * Listeners don't use them. For non-listener connections, incoming * data is appended to conn->inbuf, and outgoing data is taken from * conn->outbuf. Connections differ primarily in the functions called * to fill and drain these buffers. */ typedef struct connection_t { uint32_t magic; /**< For memory debugging: must equal one of * *_CONNECTION_MAGIC. */ uint8_t state; /**< Current state of this connection. */ unsigned int type:4; /**< What kind of connection is this? */ unsigned int purpose:5; /**< Only used for DIR and EXIT types currently. */ /* The next fields are all one-bit booleans. Some are only applicable to * connection subtypes, but we hold them here anyway, to save space. */ unsigned int read_blocked_on_bw:1; /**< Boolean: should we start reading * again once the bandwidth throttler allows it? */ unsigned int write_blocked_on_bw:1; /**< Boolean: should we start writing * again once the bandwidth throttler allows * writes? */ unsigned int hold_open_until_flushed:1; /**< Despite this connection's being * marked for close, do we flush it * before closing it? */ unsigned int inbuf_reached_eof:1; /**< Boolean: did read() return 0 on this * conn? */ /** Set to 1 when we're inside connection_flushed_some to keep us from * calling connection_handle_write() recursively. */ unsigned int in_flushed_some:1; /* For linked connections: */ unsigned int linked:1; /**< True if there is, or has been, a linked_conn. */ /** True iff we'd like to be notified about read events from the * linked conn. */ unsigned int reading_from_linked_conn:1; /** True iff we're willing to write to the linked conn. */ unsigned int writing_to_linked_conn:1; /** True iff we're currently able to read on the linked conn, and our * read_event should be made active with libevent. */ unsigned int active_on_link:1; /** True iff we've called connection_close_immediate() on this linked * connection. */ unsigned int linked_conn_is_closed:1; /** CONNECT/SOCKS proxy client handshake state (for outgoing connections). */ unsigned int proxy_state:4; /** Our socket; set to TOR_INVALID_SOCKET if this connection is closed, * or has no socket. */ tor_socket_t s; int conn_array_index; /**< Index into the global connection array. */ struct event *read_event; /**< Libevent event structure. */ struct event *write_event; /**< Libevent event structure. */ buf_t *inbuf; /**< Buffer holding data read over this connection. */ buf_t *outbuf; /**< Buffer holding data to write over this connection. */ size_t outbuf_flushlen; /**< How much data should we try to flush from the * outbuf? */ time_t timestamp_lastread; /**< When was the last time libevent said we could * read? */ time_t timestamp_lastwritten; /**< When was the last time libevent said we * could write? */ #ifdef USE_BUFFEREVENTS struct bufferevent *bufev; /**< A Libevent buffered IO structure. */ #endif time_t timestamp_created; /**< When was this connection_t created? */ /* XXXX_IP6 make this IPv6-capable */ int socket_family; /**< Address family of this connection's socket. Usually * AF_INET, but it can also be AF_UNIX, or in the future * AF_INET6 */ tor_addr_t addr; /**< IP of the other side of the connection; used to * identify routers, along with port. */ uint16_t port; /**< If non-zero, port on the other end * of the connection. */ uint16_t marked_for_close; /**< Should we close this conn on the next * iteration of the main loop? (If true, holds * the line number where this connection was * marked.) */ const char *marked_for_close_file; /**< For debugging: in which file were * we marked for close? */ char *address; /**< FQDN (or IP) of the guy on the other end. * strdup into this, because free_connection() frees it. */ /** Another connection that's connected to this one in lieu of a socket. */ struct connection_t *linked_conn; /** Unique identifier for this connection on this Tor instance. */ uint64_t global_identifier; } connection_t; /** Subtype of connection_t; used for a listener socket. */ typedef struct listener_connection_t { connection_t base_; /** If the connection is a CONN_TYPE_AP_DNS_LISTENER, this field points * to the evdns_server_port it uses to listen to and answer connections. */ struct evdns_server_port *dns_server_port; /** @name Isolation parameters * * For an AP listener, these fields describe how to isolate streams that * arrive on the listener. * * @{ */ /** The session group for this listener. */ int session_group; /** One or more ISO_ flags to describe how to isolate streams. */ uint8_t isolation_flags; /**@}*/ /** For a SOCKS listener, these fields describe whether we should * allow IPv4 and IPv6 addresses from our exit nodes, respectively. * * @{ */ unsigned int socks_ipv4_traffic : 1; unsigned int socks_ipv6_traffic : 1; /** @} */ } listener_connection_t; /** Minimum length of the random part of an AUTH_CHALLENGE cell. */ #define OR_AUTH_CHALLENGE_LEN 32 /** * @name Certificate types for CERTS cells. * * These values are defined by the protocol, and affect how an X509 * certificate in a CERTS cell is interpreted and used. * * @{ */ /** A certificate that authenticates a TLS link key. The subject key * must match the key used in the TLS handshake; it must be signed by * the identity key. */ #define OR_CERT_TYPE_TLS_LINK 1 /** A self-signed identity certificate. The subject key must be a * 1024-bit RSA key. */ #define OR_CERT_TYPE_ID_1024 2 /** A certificate that authenticates a key used in an AUTHENTICATE cell * in the v3 handshake. The subject key must be a 1024-bit RSA key; it * must be signed by the identity key */ #define OR_CERT_TYPE_AUTH_1024 3 /**@}*/ /** The one currently supported type of AUTHENTICATE cell. It contains * a bunch of structures signed with an RSA1024 key. The signed * structures include a HMAC using negotiated TLS secrets, and a digest * of all cells sent or received before the AUTHENTICATE cell (including * the random server-generated AUTH_CHALLENGE cell). */ #define AUTHTYPE_RSA_SHA256_TLSSECRET 1 /** The length of the part of the AUTHENTICATE cell body that the client and * server can generate independently (when using RSA_SHA256_TLSSECRET). It * contains everything except the client's timestamp, the client's randomly * generated nonce, and the signature. */ #define V3_AUTH_FIXED_PART_LEN (8+(32*6)) /** The length of the part of the AUTHENTICATE cell body that the client * signs. */ #define V3_AUTH_BODY_LEN (V3_AUTH_FIXED_PART_LEN + 8 + 16) /** Stores flags and information related to the portion of a v2/v3 Tor OR * connection handshake that happens after the TLS handshake is finished. */ typedef struct or_handshake_state_t { /** When was the VERSIONS cell sent on this connection? Used to get * an estimate of the skew in the returning NETINFO reply. */ time_t sent_versions_at; /** True iff we originated this connection */ unsigned int started_here : 1; /** True iff we have received and processed a VERSIONS cell. */ unsigned int received_versions : 1; /** True iff we have received and processed an AUTH_CHALLENGE cell */ unsigned int received_auth_challenge : 1; /** True iff we have received and processed a CERTS cell. */ unsigned int received_certs_cell : 1; /** True iff we have received and processed an AUTHENTICATE cell */ unsigned int received_authenticate : 1; /* True iff we've received valid authentication to some identity. */ unsigned int authenticated : 1; /** True iff we should feed outgoing cells into digest_sent and * digest_received respectively. * * From the server's side of the v3 handshake, we want to capture everything * from the VERSIONS cell through and including the AUTH_CHALLENGE cell. * From the client's, we want to capture everything from the VERSIONS cell * through but *not* including the AUTHENTICATE cell. * * @{ */ unsigned int digest_sent_data : 1; unsigned int digest_received_data : 1; /**@}*/ /** Identity digest that we have received and authenticated for our peer * on this connection. */ uint8_t authenticated_peer_id[DIGEST_LEN]; /** Digests of the cells that we have sent or received as part of a V3 * handshake. Used for making and checking AUTHENTICATE cells. * * @{ */ crypto_digest_t *digest_sent; crypto_digest_t *digest_received; /** @} */ /** Certificates that a connection initiator sent us in a CERTS cell; we're * holding on to them until we get an AUTHENTICATE cell. * * @{ */ /** The cert for the key that's supposed to sign the AUTHENTICATE cell */ tor_cert_t *auth_cert; /** A self-signed identity certificate */ tor_cert_t *id_cert; /**@}*/ } or_handshake_state_t; /** Subtype of connection_t for an "OR connection" -- that is, one that speaks * cells over TLS. */ typedef struct or_connection_t { connection_t base_; /** Hash of the public RSA key for the other side's identity key, or zeroes * if the other side hasn't shown us a valid identity key. */ char identity_digest[DIGEST_LEN]; char *nickname; /**< Nickname of OR on other side (if any). */ tor_tls_t *tls; /**< TLS connection state. */ int tls_error; /**< Last tor_tls error code. */ /** When we last used this conn for any client traffic. If not * recent, we can rate limit it further. */ /* Channel using this connection */ channel_tls_t *chan; tor_addr_t real_addr; /**< The actual address that this connection came from * or went to. The addr field is prone to * getting overridden by the address from the router * descriptor matching identity_digest. */ /** Should this connection be used for extending circuits to the server * matching the identity_digest field? Set to true if we're pretty * sure we aren't getting MITMed, either because we're connected to an * address listed in a server descriptor, or because an authenticated * NETINFO cell listed the address we're connected to as recognized. */ unsigned int is_canonical:1; /** True iff we have decided that the other end of this connection * is a client. Connections with this flag set should never be used * to satisfy an EXTEND request. */ unsigned int is_connection_with_client:1; /** True iff this is an outgoing connection. */ unsigned int is_outgoing:1; unsigned int proxy_type:2; /**< One of PROXY_NONE...PROXY_SOCKS5 */ uint8_t link_proto; /**< What protocol version are we using? 0 for * "none negotiated yet." */ or_handshake_state_t *handshake_state; /**< If we are setting this connection * up, state information to do so. */ time_t timestamp_lastempty; /**< When was the outbuf last completely empty?*/ time_t timestamp_last_added_nonpadding; /** When did we last add a * non-padding cell to the outbuf? */ /* bandwidth* and *_bucket only used by ORs in OPEN state: */ int bandwidthrate; /**< Bytes/s added to the bucket. (OPEN ORs only.) */ int bandwidthburst; /**< Max bucket size for this conn. (OPEN ORs only.) */ #ifndef USE_BUFFEREVENTS int read_bucket; /**< When this hits 0, stop receiving. Every second we * add 'bandwidthrate' to this, capping it at * bandwidthburst. (OPEN ORs only) */ int write_bucket; /**< When this hits 0, stop writing. Like read_bucket. */ #else /** A rate-limiting configuration object to determine how this connection * set its read- and write- limits. */ /* XXXX we could share this among all connections. */ struct ev_token_bucket_cfg *bucket_cfg; #endif struct or_connection_t *next_with_same_id; /**< Next connection with same * identity digest as this one. */ } or_connection_t; /** Subtype of connection_t for an "edge connection" -- that is, an entry (ap) * connection, or an exit. */ typedef struct edge_connection_t { connection_t base_; struct edge_connection_t *next_stream; /**< Points to the next stream at this * edge, if any */ int package_window; /**< How many more relay cells can I send into the * circuit? */ int deliver_window; /**< How many more relay cells can end at me? */ struct circuit_t *on_circuit; /**< The circuit (if any) that this edge * connection is using. */ /** A pointer to which node in the circ this conn exits at. Set for AP * connections and for hidden service exit connections. */ struct crypt_path_t *cpath_layer; /** What rendezvous service are we querying for (if an AP) or providing (if * an exit)? */ rend_data_t *rend_data; uint32_t address_ttl; /**< TTL for address-to-addr mapping on exit * connection. Exit connections only. */ uint32_t begincell_flags; /** Flags sent or received in the BEGIN cell * for this connection */ streamid_t stream_id; /**< The stream ID used for this edge connection on its * circuit */ /** The reason why this connection is closing; passed to the controller. */ uint16_t end_reason; /** Bytes read since last call to control_event_stream_bandwidth_used() */ uint32_t n_read; /** Bytes written since last call to control_event_stream_bandwidth_used() */ uint32_t n_written; /** True iff this connection is for a DNS request only. */ unsigned int is_dns_request:1; /* DOCDOC exit only */ unsigned int is_reverse_dns_lookup:1; unsigned int edge_has_sent_end:1; /**< For debugging; only used on edge * connections. Set once we've set the stream end, * and check in connection_about_to_close_connection(). */ /** True iff we've blocked reading until the circuit has fewer queued * cells. */ unsigned int edge_blocked_on_circ:1; /** Unique ID for directory requests; this used to be in connection_t, but * that's going away and being used on channels instead. We still tag * edge connections with dirreq_id from circuits, so it's copied here. */ uint64_t dirreq_id; } edge_connection_t; /** Subtype of edge_connection_t for an "entry connection" -- that is, a SOCKS * connection, a DNS request, a TransPort connection or a NATD connection */ typedef struct entry_connection_t { edge_connection_t edge_; /** Nickname of planned exit node -- used with .exit support. */ char *chosen_exit_name; socks_request_t *socks_request; /**< SOCKS structure describing request (AP * only.) */ /* === Isolation related, AP only. === */ /** AP only: based on which factors do we isolate this stream? */ uint8_t isolation_flags; /** AP only: what session group is this stream in? */ int session_group; /** AP only: The newnym epoch in which we created this connection. */ unsigned nym_epoch; /** AP only: The original requested address before we rewrote it. */ char *original_dest_address; /* Other fields to isolate on already exist. The ClientAddr is addr. The ClientProtocol is a combination of type and socks_request-> socks_version. SocksAuth is socks_request->username/password. DestAddr is in socks_request->address. */ /** Number of times we've reassigned this application connection to * a new circuit. We keep track because the timeout is longer if we've * already retried several times. */ uint8_t num_socks_retries; /** For AP connections only: buffer for data that we have sent * optimistically, which we might need to re-send if we have to * retry this connection. */ generic_buffer_t *pending_optimistic_data; /* For AP connections only: buffer for data that we previously sent * optimistically which we are currently re-sending as we retry this * connection. */ generic_buffer_t *sending_optimistic_data; /** If this is a DNSPort connection, this field holds the pending DNS * request that we're going to try to answer. */ struct evdns_server_request *dns_server_request; #define NUM_CIRCUITS_LAUNCHED_THRESHOLD 10 /** Number of times we've launched a circuit to handle this stream. If * it gets too high, that could indicate an inconsistency between our * "launch a circuit to handle this stream" logic and our "attach our * stream to one of the available circuits" logic. */ unsigned int num_circuits_launched:4; /** True iff this stream must attach to a one-hop circuit (e.g. for * begin_dir). */ unsigned int want_onehop:1; /** True iff this stream should use a BEGIN_DIR relay command to establish * itself rather than BEGIN (either via onehop or via a whole circuit). */ unsigned int use_begindir:1; /** For AP connections only. If 1, and we fail to reach the chosen exit, * stop requiring it. */ unsigned int chosen_exit_optional:1; /** For AP connections only. If non-zero, this exit node was picked as * a result of the TrackHostExit, and the value decrements every time * we fail to complete a circuit to our chosen exit -- if it reaches * zero, abandon the associated mapaddress. */ unsigned int chosen_exit_retries:3; /** True iff this is an AP connection that came from a transparent or * NATd connection */ unsigned int is_transparent_ap:1; /** For AP connections only: Set if this connection's target exit node * allows optimistic data (that is, data sent on this stream before * the exit has sent a CONNECTED cell) and we have chosen to use it. */ unsigned int may_use_optimistic_data : 1; /** Should we permit IPv4 and IPv6 traffic to use this connection? * * @{ */ unsigned int ipv4_traffic_ok : 1; unsigned int ipv6_traffic_ok : 1; /** @} */ } entry_connection_t; /** Subtype of connection_t for an "directory connection" -- that is, an HTTP * connection to retrieve or serve directory material. */ typedef struct dir_connection_t { connection_t base_; /** Which 'resource' did we ask the directory for? This is typically the part * of the URL string that defines, relative to the directory conn purpose, * what thing we want. For example, in router descriptor downloads by * descriptor digest, it contains "d/", then one ore more +-separated * fingerprints. **/ char *requested_resource; unsigned int dirconn_direct:1; /**< Is this dirconn direct, or via Tor? */ /* Used only for server sides of some dir connections, to implement * "spooling" of directory material to the outbuf. Otherwise, we'd have * to append everything to the outbuf in one enormous chunk. */ /** What exactly are we spooling right now? */ enum { DIR_SPOOL_NONE=0, DIR_SPOOL_SERVER_BY_DIGEST, DIR_SPOOL_SERVER_BY_FP, DIR_SPOOL_EXTRA_BY_DIGEST, DIR_SPOOL_EXTRA_BY_FP, DIR_SPOOL_CACHED_DIR, DIR_SPOOL_NETWORKSTATUS, DIR_SPOOL_MICRODESC, /* NOTE: if we add another entry, add another bit. */ } dir_spool_src : 3; /** If we're fetching descriptors, what router purpose shall we assign * to them? */ uint8_t router_purpose; /** List of fingerprints for networkstatuses or descriptors to be spooled. */ smartlist_t *fingerprint_stack; /** A cached_dir_t object that we're currently spooling out */ struct cached_dir_t *cached_dir; /** The current offset into cached_dir. */ off_t cached_dir_offset; /** The zlib object doing on-the-fly compression for spooled data. */ tor_zlib_state_t *zlib_state; /** What rendezvous service are we querying for? */ rend_data_t *rend_data; char identity_digest[DIGEST_LEN]; /**< Hash of the public RSA key for * the directory server's signing key. */ /** Unique ID for directory requests; this used to be in connection_t, but * that's going away and being used on channels instead. The dirserver still * needs this for the incoming side, so it's moved here. */ uint64_t dirreq_id; } dir_connection_t; /** Subtype of connection_t for an connection to a controller. */ typedef struct control_connection_t { connection_t base_; uint32_t event_mask; /**< Bitfield: which events does this controller * care about? */ /** True if we have sent a protocolinfo reply on this connection. */ unsigned int have_sent_protocolinfo:1; /** True if we have received a takeownership command on this * connection. */ unsigned int is_owning_control_connection:1; /** If we have sent an AUTHCHALLENGE reply on this connection and * have not received a successful AUTHENTICATE command, points to * the value which the client must send to authenticate itself; * otherwise, NULL. */ char *safecookie_client_hash; /** Amount of space allocated in incoming_cmd. */ uint32_t incoming_cmd_len; /** Number of bytes currently stored in incoming_cmd. */ uint32_t incoming_cmd_cur_len; /** A control command that we're reading from the inbuf, but which has not * yet arrived completely. */ char *incoming_cmd; } control_connection_t; /** Cast a connection_t subtype pointer to a connection_t **/ #define TO_CONN(c) (&(((c)->base_))) /** Helper macro: Given a pointer to to.base_, of type from*, return &to. */ #define DOWNCAST(to, ptr) ((to*)SUBTYPE_P(ptr, to, base_)) /** Cast a entry_connection_t subtype pointer to a edge_connection_t **/ #define ENTRY_TO_EDGE_CONN(c) (&(((c))->edge_)) /** Cast a entry_connection_t subtype pointer to a connection_t **/ #define ENTRY_TO_CONN(c) (TO_CONN(ENTRY_TO_EDGE_CONN(c))) /** Convert a connection_t* to an or_connection_t*; assert if the cast is * invalid. */ static or_connection_t *TO_OR_CONN(connection_t *); /** Convert a connection_t* to a dir_connection_t*; assert if the cast is * invalid. */ static dir_connection_t *TO_DIR_CONN(connection_t *); /** Convert a connection_t* to an edge_connection_t*; assert if the cast is * invalid. */ static edge_connection_t *TO_EDGE_CONN(connection_t *); /** Convert a connection_t* to an entry_connection_t*; assert if the cast is * invalid. */ static entry_connection_t *TO_ENTRY_CONN(connection_t *); /** Convert a edge_connection_t* to an entry_connection_t*; assert if the cast * is invalid. */ static entry_connection_t *EDGE_TO_ENTRY_CONN(edge_connection_t *); /** Convert a connection_t* to an control_connection_t*; assert if the cast is * invalid. */ static control_connection_t *TO_CONTROL_CONN(connection_t *); /** Convert a connection_t* to an listener_connection_t*; assert if the cast is * invalid. */ static listener_connection_t *TO_LISTENER_CONN(connection_t *); static INLINE or_connection_t *TO_OR_CONN(connection_t *c) { tor_assert(c->magic == OR_CONNECTION_MAGIC); return DOWNCAST(or_connection_t, c); } static INLINE dir_connection_t *TO_DIR_CONN(connection_t *c) { tor_assert(c->magic == DIR_CONNECTION_MAGIC); return DOWNCAST(dir_connection_t, c); } static INLINE edge_connection_t *TO_EDGE_CONN(connection_t *c) { tor_assert(c->magic == EDGE_CONNECTION_MAGIC || c->magic == ENTRY_CONNECTION_MAGIC); return DOWNCAST(edge_connection_t, c); } static INLINE entry_connection_t *TO_ENTRY_CONN(connection_t *c) { tor_assert(c->magic == ENTRY_CONNECTION_MAGIC); return (entry_connection_t*) SUBTYPE_P(c, entry_connection_t, edge_.base_); } static INLINE entry_connection_t *EDGE_TO_ENTRY_CONN(edge_connection_t *c) { tor_assert(c->base_.magic == ENTRY_CONNECTION_MAGIC); return (entry_connection_t*) SUBTYPE_P(c, entry_connection_t, edge_); } static INLINE control_connection_t *TO_CONTROL_CONN(connection_t *c) { tor_assert(c->magic == CONTROL_CONNECTION_MAGIC); return DOWNCAST(control_connection_t, c); } static INLINE listener_connection_t *TO_LISTENER_CONN(connection_t *c) { tor_assert(c->magic == LISTENER_CONNECTION_MAGIC); return DOWNCAST(listener_connection_t, c); } /* Conditional macros to help write code that works whether bufferevents are disabled or not. We can't just write: if (conn->bufev) { do bufferevent stuff; } else { do other stuff; } because the bufferevent stuff won't even compile unless we have a fairly new version of Libevent. Instead, we say: IF_HAS_BUFFEREVENT(conn, { do_bufferevent_stuff } ); or: IF_HAS_BUFFEREVENT(conn, { do bufferevent stuff; }) ELSE_IF_NO_BUFFEREVENT { do non-bufferevent stuff; } If we're compiling with bufferevent support, then the macros expand more or less to: if (conn->bufev) { do_bufferevent_stuff; } else { do non-bufferevent stuff; } and if we aren't using bufferevents, they expand more or less to: { do non-bufferevent stuff; } */ #ifdef USE_BUFFEREVENTS #define HAS_BUFFEREVENT(c) (((c)->bufev) != NULL) #define IF_HAS_BUFFEREVENT(c, stmt) \ if ((c)->bufev) do { \ stmt ; \ } while (0) #define ELSE_IF_NO_BUFFEREVENT ; else #define IF_HAS_NO_BUFFEREVENT(c) \ if (NULL == (c)->bufev) #else #define HAS_BUFFEREVENT(c) (0) #define IF_HAS_BUFFEREVENT(c, stmt) (void)0 #define ELSE_IF_NO_BUFFEREVENT ; #define IF_HAS_NO_BUFFEREVENT(c) \ if (1) #endif /** What action type does an address policy indicate: accept or reject? */ typedef enum { ADDR_POLICY_ACCEPT=1, ADDR_POLICY_REJECT=2, } addr_policy_action_t; /** A reference-counted address policy rule. */ typedef struct addr_policy_t { int refcnt; /**< Reference count */ addr_policy_action_t policy_type:2;/**< What to do when the policy matches.*/ unsigned int is_private:1; /**< True iff this is the pseudo-address, * "private". */ unsigned int is_canonical:1; /**< True iff this policy is the canonical * copy (stored in a hash table to avoid * duplication of common policies) */ maskbits_t maskbits; /**< Accept/reject all addresses a such that the * first maskbits bits of a match * addr. */ /** Base address to accept or reject. * * Note that wildcards are treated * differntly depending on address family. An AF_UNSPEC address means * "All addresses, IPv4 or IPv6." An AF_INET address with maskbits==0 means * "All IPv4 addresses" and an AF_INET6 address with maskbits == 0 means * "All IPv6 addresses". **/ tor_addr_t addr; uint16_t prt_min; /**< Lowest port number to accept/reject. */ uint16_t prt_max; /**< Highest port number to accept/reject. */ } addr_policy_t; /** A cached_dir_t represents a cacheable directory object, along with its * compressed form. */ typedef struct cached_dir_t { char *dir; /**< Contents of this object, NUL-terminated. */ char *dir_z; /**< Compressed contents of this object. */ size_t dir_len; /**< Length of dir (not counting its NUL). */ size_t dir_z_len; /**< Length of dir_z. */ time_t published; /**< When was this object published. */ digests_t digests; /**< Digests of this object (networkstatus only) */ int refcnt; /**< Reference count for this cached_dir_t. */ } cached_dir_t; /** Enum used to remember where a signed_descriptor_t is stored and how to * manage the memory for signed_descriptor_body. */ typedef enum { /** The descriptor isn't stored on disk at all: the copy in memory is * canonical; the saved_offset field is meaningless. */ SAVED_NOWHERE=0, /** The descriptor is stored in the cached_routers file: the * signed_descriptor_body is meaningless; the signed_descriptor_len and * saved_offset are used to index into the mmaped cache file. */ SAVED_IN_CACHE, /** The descriptor is stored in the cached_routers.new file: the * signed_descriptor_body and saved_offset fields are both set. */ /* FFFF (We could also mmap the file and grow the mmap as needed, or * lazy-load the descriptor text by using seek and read. We don't, for * now.) */ SAVED_IN_JOURNAL } saved_location_t; /** Enumeration: what kind of download schedule are we using for a given * object? */ typedef enum { DL_SCHED_GENERIC = 0, DL_SCHED_CONSENSUS = 1, DL_SCHED_BRIDGE = 2, } download_schedule_t; /** Information about our plans for retrying downloads for a downloadable * object. */ typedef struct download_status_t { time_t next_attempt_at; /**< When should we try downloading this descriptor * again? */ uint8_t n_download_failures; /**< Number of failures trying to download the * most recent descriptor. */ download_schedule_t schedule : 8; } download_status_t; /** If n_download_failures is this high, the download can never happen. */ #define IMPOSSIBLE_TO_DOWNLOAD 255 /** The max size we expect router descriptor annotations we create to * be. We'll accept larger ones if we see them on disk, but we won't * create any that are larger than this. */ #define ROUTER_ANNOTATION_BUF_LEN 256 /** Information need to cache an onion router's descriptor. */ typedef struct signed_descriptor_t { /** Pointer to the raw server descriptor, preceded by annotations. Not * necessarily NUL-terminated. If saved_location is SAVED_IN_CACHE, this * pointer is null. */ char *signed_descriptor_body; /** Length of the annotations preceding the server descriptor. */ size_t annotations_len; /** Length of the server descriptor. */ size_t signed_descriptor_len; /** Digest of the server descriptor, computed as specified in * dir-spec.txt. */ char signed_descriptor_digest[DIGEST_LEN]; /** Identity digest of the router. */ char identity_digest[DIGEST_LEN]; /** Declared publication time of the descriptor. */ time_t published_on; /** For routerdescs only: digest of the corresponding extrainfo. */ char extra_info_digest[DIGEST_LEN]; /** For routerdescs only: Status of downloading the corresponding * extrainfo. */ download_status_t ei_dl_status; /** Where is the descriptor saved? */ saved_location_t saved_location; /** If saved_location is SAVED_IN_CACHE or SAVED_IN_JOURNAL, the offset of * this descriptor in the corresponding file. */ off_t saved_offset; /** What position is this descriptor within routerlist->routers or * routerlist->old_routers? -1 for none. */ int routerlist_index; /** The valid-until time of the most recent consensus that listed this * descriptor, or a bit after the publication time of the most recent v2 * networkstatus that listed it. 0 for "never listed in a consensus or * status, so far as we know." */ time_t last_listed_as_valid_until; /* If true, we do not ever try to save this object in the cache. */ unsigned int do_not_cache : 1; /* If true, this item is meant to represent an extrainfo. */ unsigned int is_extrainfo : 1; /* If true, we got an extrainfo for this item, and the digest was right, * but it was incompatible. */ unsigned int extrainfo_is_bogus : 1; /* If true, we are willing to transmit this item unencrypted. */ unsigned int send_unencrypted : 1; } signed_descriptor_t; /** A signed integer representing a country code. */ typedef int16_t country_t; /** Information about another onion router in the network. */ typedef struct { signed_descriptor_t cache_info; char *address; /**< Location of OR: either a hostname or an IP address. */ char *nickname; /**< Human-readable OR name. */ uint32_t addr; /**< IPv4 address of OR, in host order. */ uint16_t or_port; /**< Port for TLS connections. */ uint16_t dir_port; /**< Port for HTTP directory connections. */ /** A router's IPv6 address, if it has one. */ /* XXXXX187 Actually these should probably be part of a list of addresses, * not just a special case. Use abstractions to access these; don't do it * directly. */ tor_addr_t ipv6_addr; uint16_t ipv6_orport; crypto_pk_t *onion_pkey; /**< Public RSA key for onions. */ crypto_pk_t *identity_pkey; /**< Public RSA key for signing. */ char *platform; /**< What software/operating system is this OR using? */ /* link info */ uint32_t bandwidthrate; /**< How many bytes does this OR add to its token * bucket per second? */ uint32_t bandwidthburst; /**< How large is this OR's token bucket? */ /** How many bytes/s is this router known to handle? */ uint32_t bandwidthcapacity; smartlist_t *exit_policy; /**< What streams will this OR permit * to exit on IPv4? NULL for 'reject *:*'. */ /** What streams will this OR permit to exit on IPv6? * NULL for 'reject *:*' */ struct short_policy_t *ipv6_exit_policy; long uptime; /**< How many seconds the router claims to have been up */ smartlist_t *declared_family; /**< Nicknames of router which this router * claims are its family. */ char *contact_info; /**< Declared contact info for this router. */ unsigned int is_hibernating:1; /**< Whether the router claims to be * hibernating */ unsigned int caches_extra_info:1; /**< Whether the router says it caches and * serves extrainfo documents. */ unsigned int allow_single_hop_exits:1; /**< Whether the router says * it allows single hop exits. */ unsigned int wants_to_be_hs_dir:1; /**< True iff this router claims to be * a hidden service directory. */ unsigned int policy_is_reject_star:1; /**< True iff the exit policy for this * router rejects everything. */ /** True if, after we have added this router, we should re-launch * tests for it. */ unsigned int needs_retest_if_added:1; /** Tor can use this router for general positions in circuits; we got it * from a directory server as usual, or we're an authority and a server * uploaded it. */ #define ROUTER_PURPOSE_GENERAL 0 /** Tor should avoid using this router for circuit-building: we got it * from a crontroller. If the controller wants to use it, it'll have to * ask for it by identity. */ #define ROUTER_PURPOSE_CONTROLLER 1 /** Tor should use this router only for bridge positions in circuits: we got * it via a directory request from the bridge itself, or a bridge * authority. x*/ #define ROUTER_PURPOSE_BRIDGE 2 /** Tor should not use this router; it was marked in cached-descriptors with * a purpose we didn't recognize. */ #define ROUTER_PURPOSE_UNKNOWN 255 /* In what way did we find out about this router? One of ROUTER_PURPOSE_*. * Routers of different purposes are kept segregated and used for different * things; see notes on ROUTER_PURPOSE_* macros above. */ uint8_t purpose; } routerinfo_t; /** Information needed to keep and cache a signed extra-info document. */ typedef struct extrainfo_t { signed_descriptor_t cache_info; /** The router's nickname. */ char nickname[MAX_NICKNAME_LEN+1]; /** True iff we found the right key for this extra-info, verified the * signature, and found it to be bad. */ unsigned int bad_sig : 1; /** If present, we didn't have the right key to verify this extra-info, * so this is a copy of the signature in the document. */ char *pending_sig; /** Length of pending_sig. */ size_t pending_sig_len; } extrainfo_t; /** Contents of a single router entry in a network status object. */ typedef struct routerstatus_t { time_t published_on; /**< When was this router published? */ char nickname[MAX_NICKNAME_LEN+1]; /**< The nickname this router says it * has. */ char identity_digest[DIGEST_LEN]; /**< Digest of the router's identity * key. */ /** Digest of the router's most recent descriptor or microdescriptor. * If it's a descriptor, we only use the first DIGEST_LEN bytes. */ char descriptor_digest[DIGEST256_LEN]; uint32_t addr; /**< IPv4 address for this router. */ uint16_t or_port; /**< OR port for this router. */ uint16_t dir_port; /**< Directory port for this router. */ tor_addr_t ipv6_addr; /**< IPv6 address for this router. */ uint16_t ipv6_orport; /**