2018-12-31 20:04:05 +01:00
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//
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2018-01-02 14:42:31 +01:00
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018
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2018-12-31 20:04:05 +01:00
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#include "td/net/Socks5.h"
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#include "td/utils/logging.h"
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#include "td/utils/misc.h"
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#include "td/utils/port/Fd.h"
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#include "td/utils/Slice.h"
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namespace td {
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2018-02-28 21:25:42 +01:00
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static int VERBOSITY_NAME(socks5) = VERBOSITY_NAME(DEBUG);
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2018-12-31 20:04:05 +01:00
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Socks5::Socks5(SocketFd socket_fd, IPAddress ip_address, string username, string password,
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std::unique_ptr<Callback> callback, ActorShared<> parent)
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: fd_(std::move(socket_fd))
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, ip_address_(std::move(ip_address))
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, username_(std::move(username))
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, password_(std::move(password))
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, callback_(std::move(callback))
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, parent_(std::move(parent)) {
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}
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2018-02-28 21:25:42 +01:00
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2018-12-31 20:04:05 +01:00
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void Socks5::on_error(Status status) {
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CHECK(status.is_error());
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VLOG(socks5) << "Receive " << status;
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if (callback_) {
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callback_->set_result(std::move(status));
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callback_.reset();
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}
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stop();
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}
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void Socks5::tear_down() {
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VLOG(socks5) << "Finish to connect to proxy";
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unsubscribe(fd_.get_fd());
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fd_.get_fd().set_observer(nullptr);
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if (callback_) {
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callback_->set_result(std::move(fd_));
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callback_.reset();
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}
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}
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void Socks5::hangup() {
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on_error(Status::Error("Cancelled"));
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}
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void Socks5::start_up() {
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VLOG(socks5) << "Begin to connect to proxy";
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fd_.get_fd().set_observer(this);
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subscribe(fd_.get_fd());
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set_timeout_in(10);
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if (can_write(fd_)) {
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loop();
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}
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2018-12-31 20:04:05 +01:00
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}
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void Socks5::send_greeting() {
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VLOG(socks5) << "Send greeting to proxy";
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CHECK(state_ == State::SendGreeting);
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state_ = State::WaitGreetingResponse;
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string greeting;
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greeting += '\x05';
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bool use_username = !username_.empty();
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char authentication_count = use_username ? '\x02' : '\x01';
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greeting += authentication_count;
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greeting += '\0';
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if (use_username) {
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greeting += '\x02';
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}
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fd_.output_buffer().append(greeting);
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}
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Status Socks5::wait_greeting_response() {
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auto &buf = fd_.input_buffer();
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VLOG(socks5) << "Receive greeting response of size " << buf.size();
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if (buf.size() < 2) {
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return Status::OK();
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}
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auto buffer_slice = buf.read_as_buffer_slice(2);
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auto slice = buffer_slice.as_slice();
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if (slice[0] != '\x05') {
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return Status::Error(PSLICE() << "Unsupported socks protocol version " << int(slice[0]));
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}
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auto authentication_method = slice[1];
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if (authentication_method == '\0') {
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state_ = State::SendIpAddress;
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send_ip_address();
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return Status::OK();
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}
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if (authentication_method == '\x02') {
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return send_username_password();
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}
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return Status::Error("Unsupported authentication mode");
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}
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Status Socks5::send_username_password() {
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VLOG(socks5) << "Send username and password";
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if (username_.size() >= 128) {
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return Status::Error("Username is too long");
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}
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if (password_.size() >= 128) {
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return Status::Error("Password is too long");
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}
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string request;
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request += '\x01';
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request += narrow_cast<char>(username_.size());
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request += username_;
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request += narrow_cast<char>(password_.size());
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request += password_;
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fd_.output_buffer().append(request);
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state_ = State::WaitPasswordResponse;
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return Status::OK();
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}
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Status Socks5::wait_password_response() {
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auto &buf = fd_.input_buffer();
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VLOG(socks5) << "Receive password response of size " << buf.size();
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if (buf.size() < 2) {
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return Status::OK();
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}
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auto buffer_slice = buf.read_as_buffer_slice(2);
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auto slice = buffer_slice.as_slice();
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if (slice[0] != '\x01') {
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return Status::Error(PSLICE() << "Unsupported socks subnegotiation protocol version " << int(slice[0]));
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}
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if (slice[1] != '\x00') {
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return Status::Error("Wrong username or password");
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}
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state_ = State::SendIpAddress;
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send_ip_address();
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return Status::OK();
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}
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void Socks5::send_ip_address() {
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VLOG(socks5) << "Send IP address";
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CHECK(state_ == State::SendIpAddress);
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callback_->on_connected();
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string request;
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request += '\x05';
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request += '\x01';
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request += '\x00';
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if (ip_address_.is_ipv4()) {
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request += '\x01';
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auto ipv4 = ip_address_.get_ipv4();
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request += static_cast<char>(ipv4 & 255);
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request += static_cast<char>((ipv4 >> 8) & 255);
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request += static_cast<char>((ipv4 >> 16) & 255);
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request += static_cast<char>((ipv4 >> 24) & 255);
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} else {
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request += '\x04';
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request += ip_address_.get_ipv6().str();
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}
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auto port = ip_address_.get_port();
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request += static_cast<char>((port >> 8) & 255);
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request += static_cast<char>(port & 255);
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fd_.output_buffer().append(request);
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state_ = State::WaitIpAddressResponse;
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}
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Status Socks5::wait_ip_address_response() {
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CHECK(state_ == State::WaitIpAddressResponse);
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auto it = fd_.input_buffer().clone();
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VLOG(socks5) << "Receive IP address response of size " << it.size();
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if (it.size() < 4) {
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return Status::OK();
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}
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char c;
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MutableSlice c_slice(&c, 1);
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it.advance(1, c_slice);
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if (c != '\x05') {
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return Status::Error("Invalid response");
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}
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it.advance(1, c_slice);
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if (c != '\0') {
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return Status::Error(PSLICE() << "Receive error code " << static_cast<int32>(c) << " from server");
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}
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it.advance(1, c_slice);
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if (c != '\0') {
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return Status::Error("byte must be zero");
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}
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it.advance(1, c_slice);
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if (c == '\x01') {
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if (it.size() < 4) {
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return Status::OK();
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}
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it.advance(4);
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} else if (c == '\x04') {
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if (it.size() < 16) {
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return Status::OK();
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}
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it.advance(16);
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} else {
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return Status::Error("Invalid response");
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}
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if (it.size() < 2) {
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return Status::OK();
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}
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it.advance(2);
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stop();
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return Status::OK();
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}
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void Socks5::loop() {
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auto status = [&] {
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TRY_STATUS(fd_.flush_read());
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switch (state_) {
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case State::SendGreeting:
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send_greeting();
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break;
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case State::WaitGreetingResponse:
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TRY_STATUS(wait_greeting_response());
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break;
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case State::WaitPasswordResponse:
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TRY_STATUS(wait_password_response());
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break;
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case State::WaitIpAddressResponse:
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TRY_STATUS(wait_ip_address_response());
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break;
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case State::SendIpAddress:
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case State::Stop:
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UNREACHABLE();
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}
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TRY_STATUS(fd_.flush_write());
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return Status::OK();
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}();
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if (status.is_error()) {
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on_error(std::move(status));
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}
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if (can_close(fd_)) {
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on_error(Status::Error("Connection closed"));
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}
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}
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2018-02-28 21:25:42 +01:00
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2018-12-31 20:04:05 +01:00
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void Socks5::timeout_expired() {
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on_error(Status::Error("Timeout expired"));
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}
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2018-02-28 21:25:42 +01:00
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2018-12-31 20:04:05 +01:00
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} // namespace td
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