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merge bitcoin#19288: Add fuzzing harness for TorController
This commit is contained in:
parent
5c1173ef9b
commit
04fabaa1bd
@ -319,6 +319,7 @@ test_fuzz_fuzz_SOURCES = \
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test/fuzz/strprintf.cpp \
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test/fuzz/strprintf.cpp \
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test/fuzz/system.cpp \
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test/fuzz/system.cpp \
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test/fuzz/timedata.cpp \
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test/fuzz/timedata.cpp \
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test/fuzz/torcontrol.cpp \
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test/fuzz/transaction.cpp \
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test/fuzz/transaction.cpp \
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test/fuzz/tx_in.cpp \
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test/fuzz/tx_in.cpp \
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test/fuzz/tx_out.cpp \
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test/fuzz/tx_out.cpp \
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79
src/test/fuzz/torcontrol.cpp
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79
src/test/fuzz/torcontrol.cpp
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@ -0,0 +1,79 @@
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// Copyright (c) 2020 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <test/fuzz/FuzzedDataProvider.h>
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#include <test/fuzz/fuzz.h>
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#include <test/fuzz/util.h>
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#include <torcontrol.h>
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#include <cstdint>
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#include <string>
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#include <vector>
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class DummyTorControlConnection : public TorControlConnection
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{
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public:
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DummyTorControlConnection() : TorControlConnection{nullptr}
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{
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}
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bool Connect(const std::string&, const ConnectionCB&, const ConnectionCB&)
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{
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return true;
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}
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void Disconnect()
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{
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}
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bool Command(const std::string&, const ReplyHandlerCB&)
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{
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return true;
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}
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};
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void initialize_torcontrol()
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{
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static const auto testing_setup = MakeNoLogFileContext<>();
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}
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FUZZ_TARGET_INIT(torcontrol, initialize_torcontrol)
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{
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FuzzedDataProvider fuzzed_data_provider{buffer.data(), buffer.size()};
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TorController tor_controller;
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while (fuzzed_data_provider.ConsumeBool()) {
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TorControlReply tor_control_reply;
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CallOneOf(
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fuzzed_data_provider,
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[&] {
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tor_control_reply.code = 250;
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},
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[&] {
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tor_control_reply.code = 510;
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},
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[&] {
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tor_control_reply.code = fuzzed_data_provider.ConsumeIntegral<int>();
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});
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tor_control_reply.lines = ConsumeRandomLengthStringVector(fuzzed_data_provider);
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if (tor_control_reply.lines.empty()) {
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break;
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}
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DummyTorControlConnection dummy_tor_control_connection;
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CallOneOf(
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fuzzed_data_provider,
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[&] {
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tor_controller.add_onion_cb(dummy_tor_control_connection, tor_control_reply);
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},
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[&] {
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tor_controller.auth_cb(dummy_tor_control_connection, tor_control_reply);
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},
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[&] {
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tor_controller.authchallenge_cb(dummy_tor_control_connection, tor_control_reply);
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},
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[&] {
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tor_controller.protocolinfo_cb(dummy_tor_control_connection, tor_control_reply);
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});
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}
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}
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@ -52,77 +52,6 @@ static const int MAX_LINE_LENGTH = 100000;
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/****** Low-level TorControlConnection ********/
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/****** Low-level TorControlConnection ********/
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/** Reply from Tor, can be single or multi-line */
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class TorControlReply
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{
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public:
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TorControlReply() { Clear(); }
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int code;
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std::vector<std::string> lines;
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void Clear()
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{
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code = 0;
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lines.clear();
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}
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};
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/** Low-level handling for Tor control connection.
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* Speaks the SMTP-like protocol as defined in torspec/control-spec.txt
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*/
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class TorControlConnection
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{
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public:
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typedef std::function<void(TorControlConnection&)> ConnectionCB;
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typedef std::function<void(TorControlConnection &,const TorControlReply &)> ReplyHandlerCB;
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/** Create a new TorControlConnection.
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*/
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explicit TorControlConnection(struct event_base *base);
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~TorControlConnection();
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/**
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* Connect to a Tor control port.
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* tor_control_center is address of the form host:port.
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* connected is the handler that is called when connection is successfully established.
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* disconnected is a handler that is called when the connection is broken.
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* Return true on success.
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*/
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bool Connect(const std::string& tor_control_center, const ConnectionCB& connected, const ConnectionCB& disconnected);
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/**
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* Disconnect from Tor control port.
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*/
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void Disconnect();
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/** Send a command, register a handler for the reply.
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* A trailing CRLF is automatically added.
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* Return true on success.
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*/
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bool Command(const std::string &cmd, const ReplyHandlerCB& reply_handler);
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/** Response handlers for async replies */
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boost::signals2::signal<void(TorControlConnection &,const TorControlReply &)> async_handler;
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private:
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/** Callback when ready for use */
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std::function<void(TorControlConnection&)> connected;
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/** Callback when connection lost */
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std::function<void(TorControlConnection&)> disconnected;
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/** Libevent event base */
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struct event_base *base;
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/** Connection to control socket */
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struct bufferevent *b_conn;
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/** Message being received */
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TorControlReply message;
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/** Response handlers */
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std::deque<ReplyHandlerCB> reply_handlers;
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/** Libevent handlers: internal */
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static void readcb(struct bufferevent *bev, void *ctx);
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static void eventcb(struct bufferevent *bev, short what, void *ctx);
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};
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TorControlConnection::TorControlConnection(struct event_base *_base):
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TorControlConnection::TorControlConnection(struct event_base *_base):
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base(_base), b_conn(nullptr)
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base(_base), b_conn(nullptr)
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{
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{
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@ -366,55 +295,6 @@ std::map<std::string,std::string> ParseTorReplyMapping(const std::string &s)
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return mapping;
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return mapping;
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}
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}
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/****** Bitcoin specific TorController implementation ********/
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/** Controller that connects to Tor control socket, authenticate, then create
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* and maintain an ephemeral onion service.
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*/
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class TorController
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{
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public:
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TorController(struct event_base* base, const std::string& tor_control_center, const CService& target);
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~TorController();
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/** Get name of file to store private key in */
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fs::path GetPrivateKeyFile();
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/** Reconnect, after getting disconnected */
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void Reconnect();
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private:
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struct event_base* base;
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const std::string m_tor_control_center;
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TorControlConnection conn;
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std::string private_key;
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std::string service_id;
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bool reconnect;
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struct event *reconnect_ev;
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float reconnect_timeout;
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CService service;
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const CService m_target;
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/** Cookie for SAFECOOKIE auth */
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std::vector<uint8_t> cookie;
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/** ClientNonce for SAFECOOKIE auth */
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std::vector<uint8_t> clientNonce;
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/** Callback for ADD_ONION result */
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void add_onion_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for AUTHENTICATE result */
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void auth_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for AUTHCHALLENGE result */
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void authchallenge_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for PROTOCOLINFO result */
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void protocolinfo_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback after successful connection */
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void connected_cb(TorControlConnection& conn);
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/** Callback after connection lost or failed connection attempt */
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void disconnected_cb(TorControlConnection& conn);
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/** Callback for reconnect timer */
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static void reconnect_cb(evutil_socket_t fd, short what, void *arg);
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};
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TorController::TorController(struct event_base* _base, const std::string& tor_control_center, const CService& target):
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TorController::TorController(struct event_base* _base, const std::string& tor_control_center, const CService& target):
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base(_base),
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base(_base),
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m_tor_control_center(tor_control_center), conn(base), reconnect(true), reconnect_ev(0),
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m_tor_control_center(tor_control_center), conn(base), reconnect(true), reconnect_ev(0),
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136
src/torcontrol.h
136
src/torcontrol.h
@ -8,7 +8,19 @@
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#ifndef BITCOIN_TORCONTROL_H
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#ifndef BITCOIN_TORCONTROL_H
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#define BITCOIN_TORCONTROL_H
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#define BITCOIN_TORCONTROL_H
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#include <fs.h>
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#include <netaddress.h>
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#include <boost/signals2/signal.hpp>
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#include <event2/bufferevent.h>
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#include <event2/event.h>
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#include <cstdlib>
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#include <deque>
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#include <functional>
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#include <string>
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#include <string>
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#include <vector>
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class CService;
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class CService;
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@ -21,4 +33,128 @@ void StopTorControl();
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CService DefaultOnionServiceTarget();
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CService DefaultOnionServiceTarget();
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/** Reply from Tor, can be single or multi-line */
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class TorControlReply
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{
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public:
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TorControlReply() { Clear(); }
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int code;
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std::vector<std::string> lines;
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void Clear()
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{
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code = 0;
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lines.clear();
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}
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};
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/** Low-level handling for Tor control connection.
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* Speaks the SMTP-like protocol as defined in torspec/control-spec.txt
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*/
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class TorControlConnection
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{
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public:
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typedef std::function<void(TorControlConnection&)> ConnectionCB;
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typedef std::function<void(TorControlConnection &,const TorControlReply &)> ReplyHandlerCB;
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/** Create a new TorControlConnection.
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*/
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explicit TorControlConnection(struct event_base *base);
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~TorControlConnection();
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/**
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* Connect to a Tor control port.
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* tor_control_center is address of the form host:port.
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* connected is the handler that is called when connection is successfully established.
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* disconnected is a handler that is called when the connection is broken.
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* Return true on success.
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*/
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bool Connect(const std::string& tor_control_center, const ConnectionCB& connected, const ConnectionCB& disconnected);
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/**
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* Disconnect from Tor control port.
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*/
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void Disconnect();
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/** Send a command, register a handler for the reply.
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* A trailing CRLF is automatically added.
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* Return true on success.
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*/
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bool Command(const std::string &cmd, const ReplyHandlerCB& reply_handler);
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/** Response handlers for async replies */
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boost::signals2::signal<void(TorControlConnection &,const TorControlReply &)> async_handler;
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private:
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/** Callback when ready for use */
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std::function<void(TorControlConnection&)> connected;
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/** Callback when connection lost */
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std::function<void(TorControlConnection&)> disconnected;
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/** Libevent event base */
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struct event_base *base;
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/** Connection to control socket */
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struct bufferevent *b_conn;
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/** Message being received */
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TorControlReply message;
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/** Response handlers */
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std::deque<ReplyHandlerCB> reply_handlers;
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/** Libevent handlers: internal */
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static void readcb(struct bufferevent *bev, void *ctx);
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static void eventcb(struct bufferevent *bev, short what, void *ctx);
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};
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/****** Bitcoin specific TorController implementation ********/
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/** Controller that connects to Tor control socket, authenticate, then create
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* and maintain an ephemeral onion service.
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*/
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class TorController
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{
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public:
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TorController(struct event_base* base, const std::string& tor_control_center, const CService& target);
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TorController() : conn{nullptr} {
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// Used for testing only.
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}
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~TorController();
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/** Get name of file to store private key in */
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fs::path GetPrivateKeyFile();
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/** Reconnect, after getting disconnected */
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void Reconnect();
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private:
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struct event_base* base;
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const std::string m_tor_control_center;
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TorControlConnection conn;
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std::string private_key;
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std::string service_id;
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bool reconnect;
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struct event *reconnect_ev = nullptr;
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float reconnect_timeout;
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CService service;
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const CService m_target;
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/** Cookie for SAFECOOKIE auth */
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std::vector<uint8_t> cookie;
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/** ClientNonce for SAFECOOKIE auth */
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std::vector<uint8_t> clientNonce;
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public:
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/** Callback for ADD_ONION result */
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void add_onion_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for AUTHENTICATE result */
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void auth_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for AUTHCHALLENGE result */
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void authchallenge_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback for PROTOCOLINFO result */
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void protocolinfo_cb(TorControlConnection& conn, const TorControlReply& reply);
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/** Callback after successful connection */
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void connected_cb(TorControlConnection& conn);
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/** Callback after connection lost or failed connection attempt */
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void disconnected_cb(TorControlConnection& conn);
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/** Callback for reconnect timer */
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static void reconnect_cb(evutil_socket_t fd, short what, void *arg);
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};
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#endif /* BITCOIN_TORCONTROL_H */
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#endif /* BITCOIN_TORCONTROL_H */
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