521 lines
14 KiB
C++
521 lines
14 KiB
C++
/*
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Copyright (c) 2007-2015, Arvid Norberg
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in
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the documentation and/or other materials provided with the distribution.
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* Neither the name of the author nor the names of its
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contributors may be used to endorse or promote products derived
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from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "libtorrent/socks5_stream.hpp"
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#include "libtorrent/assert.hpp"
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#include "libtorrent/socket_io.hpp"
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namespace libtorrent
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{
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namespace socks_error
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{
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boost::system::error_code make_error_code(socks_error_code e)
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{
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return error_code(e, get_socks_category());
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}
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}
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struct socks_error_category : boost::system::error_category
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{
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virtual const char* name() const BOOST_SYSTEM_NOEXCEPT
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{ return "socks error"; }
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virtual std::string message(int ev) const BOOST_SYSTEM_NOEXCEPT
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{
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static char const* messages[] =
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{
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"SOCKS no error",
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"SOCKS unsupported version",
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"SOCKS unsupported authentication method",
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"SOCKS unsupported authentication version",
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"SOCKS authentication error",
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"SOCKS username required",
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"SOCKS general failure",
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"SOCKS command not supported",
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"SOCKS no identd running",
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"SOCKS identd could not identify username"
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};
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if (ev < 0 || ev >= socks_error::num_errors) return "unknown error";
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return messages[ev];
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}
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virtual boost::system::error_condition default_error_condition(
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int ev) const BOOST_SYSTEM_NOEXCEPT
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{ return boost::system::error_condition(ev, *this); }
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};
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TORRENT_EXPORT boost::system::error_category& get_socks_category()
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{
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static socks_error_category socks_category;
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return socks_category;
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}
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void socks5_stream::name_lookup(error_code const& e, tcp::resolver::iterator i
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, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::name_lookup");
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#endif
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if (handle_error(e, h)) return;
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error_code ec;
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if (!m_sock.is_open())
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{
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m_sock.open(i->endpoint().protocol(), ec);
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if (handle_error(ec, h)) return;
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}
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// TOOD: we could bind the socket here, since we know what the
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// target endpoint is of the proxy
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connected");
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#endif
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m_sock.async_connect(i->endpoint(), boost::bind(
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&socks5_stream::connected, this, _1, h));
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}
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void socks5_stream::connected(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::connected");
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#endif
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if (handle_error(e, h)) return;
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using namespace libtorrent::detail;
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if (m_version == 5)
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{
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// send SOCKS5 authentication methods
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m_buffer.resize(m_user.empty()?3:4);
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char* p = &m_buffer[0];
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write_uint8(5, p); // SOCKS VERSION 5
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if (m_user.empty())
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{
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write_uint8(1, p); // 1 authentication method (no auth)
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write_uint8(0, p); // no authentication
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}
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else
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{
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write_uint8(2, p); // 2 authentication methods
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write_uint8(0, p); // no authentication
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write_uint8(2, p); // username/password
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}
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::handshake1");
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#endif
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async_write(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::handshake1, this, _1, h));
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}
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else if (m_version == 4)
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{
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socks_connect(h);
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}
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else
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{
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(*h)(socks_error::unsupported_version);
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}
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}
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void socks5_stream::handshake1(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::handshake1");
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#endif
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if (handle_error(e, h)) return;
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::handshake2");
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#endif
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m_buffer.resize(2);
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async_read(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::handshake2, this, _1, h));
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}
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void socks5_stream::handshake2(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::handshake2");
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#endif
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if (handle_error(e, h)) return;
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using namespace libtorrent::detail;
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char* p = &m_buffer[0];
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int version = read_uint8(p);
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int method = read_uint8(p);
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if (version < m_version)
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{
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(*h)(socks_error::unsupported_version);
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return;
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}
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if (method == 0)
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{
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socks_connect(h);
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}
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else if (method == 2)
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{
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if (m_user.empty())
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{
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(*h)(socks_error::username_required);
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return;
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}
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// start sub-negotiation
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m_buffer.resize(m_user.size() + m_password.size() + 3);
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p = &m_buffer[0];
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write_uint8(1, p);
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write_uint8(m_user.size(), p);
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write_string(m_user, p);
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write_uint8(m_password.size(), p);
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write_string(m_password, p);
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::handshake3");
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#endif
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async_write(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::handshake3, this, _1, h));
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}
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else
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{
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(*h)(socks_error::unsupported_authentication_method);
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return;
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}
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}
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void socks5_stream::handshake3(error_code const& e
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, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::handshake3");
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#endif
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if (handle_error(e, h)) return;
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::handshake4");
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#endif
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m_buffer.resize(2);
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async_read(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::handshake4, this, _1, h));
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}
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void socks5_stream::handshake4(error_code const& e
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, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::handshake4");
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#endif
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if (handle_error(e, h)) return;
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using namespace libtorrent::detail;
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char* p = &m_buffer[0];
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int version = read_uint8(p);
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int status = read_uint8(p);
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if (version != 1)
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{
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(*h)(socks_error::unsupported_authentication_version);
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return;
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}
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if (status != 0)
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{
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(*h)(socks_error::authentication_error);
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return;
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}
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std::vector<char>().swap(m_buffer);
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socks_connect(h);
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}
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void socks5_stream::socks_connect(boost::shared_ptr<handler_type> h)
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{
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using namespace libtorrent::detail;
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if (m_version == 5)
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{
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// send SOCKS5 connect command
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m_buffer.resize(6 + (!m_dst_name.empty()
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?m_dst_name.size() + 1
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:(m_remote_endpoint.address().is_v4()?4:16)));
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char* p = &m_buffer[0];
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write_uint8(5, p); // SOCKS VERSION 5
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write_uint8(m_command, p); // CONNECT/BIND command
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write_uint8(0, p); // reserved
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if (!m_dst_name.empty())
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{
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write_uint8(3, p); // address type
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TORRENT_ASSERT(m_dst_name.size() <= 255);
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write_uint8(m_dst_name.size(), p);
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std::copy(m_dst_name.begin(), m_dst_name.end(), p);
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p += m_dst_name.size();
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}
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else
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{
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// we either need a hostname or a valid endpoint
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TORRENT_ASSERT(m_command == socks5_bind
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|| m_remote_endpoint.address() != address());
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write_uint8(m_remote_endpoint.address().is_v4()?1:4, p); // address type
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write_address(m_remote_endpoint.address(), p);
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}
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write_uint16(m_remote_endpoint.port(), p);
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}
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else if (m_version == 4)
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{
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// SOCKS4 only supports IPv4
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if (!m_remote_endpoint.address().is_v4())
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{
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(*h)(boost::asio::error::address_family_not_supported);
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return;
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}
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m_buffer.resize(m_user.size() + 9);
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char* p = &m_buffer[0];
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write_uint8(4, p); // SOCKS VERSION 4
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write_uint8(m_command, p); // CONNECT/BIND command
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write_uint16(m_remote_endpoint.port(), p);
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write_uint32(m_remote_endpoint.address().to_v4().to_ulong(), p);
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std::copy(m_user.begin(), m_user.end(), p);
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p += m_user.size();
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write_uint8(0, p); // NULL terminator
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}
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else
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{
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(*h)(socks_error::unsupported_version);
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return;
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}
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect1");
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#endif
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async_write(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::connect1, this, _1, h));
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}
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void socks5_stream::connect1(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::connect1");
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#endif
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if (handle_error(e, h)) return;
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if (m_version == 5)
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m_buffer.resize(6 + 4); // assume an IPv4 address
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else if (m_version == 4)
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m_buffer.resize(8);
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect2");
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#endif
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async_read(m_sock, boost::asio::buffer(m_buffer)
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, boost::bind(&socks5_stream::connect2, this, _1, h));
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}
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void socks5_stream::connect2(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::connect2");
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#endif
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if (handle_error(e, h)) return;
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using namespace libtorrent::detail;
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// send SOCKS5 connect command
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char* p = &m_buffer[0];
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int version = read_uint8(p);
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int response = read_uint8(p);
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if (m_version == 5)
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{
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if (version < m_version)
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{
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(*h)(socks_error::unsupported_version);
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return;
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}
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if (response != 0)
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{
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error_code ec(socks_error::general_failure, get_socks_category());
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switch (response)
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{
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case 2: ec = boost::asio::error::no_permission; break;
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case 3: ec = boost::asio::error::network_unreachable; break;
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case 4: ec = boost::asio::error::host_unreachable; break;
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case 5: ec = boost::asio::error::connection_refused; break;
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case 6: ec = boost::asio::error::timed_out; break;
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case 7: ec = socks_error::command_not_supported; break;
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case 8: ec = boost::asio::error::address_family_not_supported; break;
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}
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(*h)(ec);
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return;
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}
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p += 1; // reserved
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int atyp = read_uint8(p);
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// we ignore the proxy IP it was bound to
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if (atyp == 1)
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{
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if (m_command == socks5_bind)
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{
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if (m_listen == 0)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect1");
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#endif
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m_listen = 1;
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connect1(e, h);
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return;
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}
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m_remote_endpoint.address(read_v4_address(p));
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m_remote_endpoint.port(read_uint16(p));
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std::vector<char>().swap(m_buffer);
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(*h)(e);
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}
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else
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{
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std::vector<char>().swap(m_buffer);
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(*h)(e);
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}
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return;
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}
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int extra_bytes = 0;
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if (atyp == 4)
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{
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extra_bytes = 12;
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}
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else if (atyp == 3)
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{
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extra_bytes = read_uint8(p) - 3;
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}
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else
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{
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(*h)(boost::asio::error::address_family_not_supported);
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return;
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}
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m_buffer.resize(m_buffer.size() + extra_bytes);
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect3");
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#endif
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TORRENT_ASSERT(extra_bytes > 0);
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async_read(m_sock, boost::asio::buffer(&m_buffer[m_buffer.size() - extra_bytes], extra_bytes)
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, boost::bind(&socks5_stream::connect3, this, _1, h));
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}
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else if (m_version == 4)
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{
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if (version != 0)
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{
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(*h)(socks_error::general_failure);
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return;
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}
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// access granted
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if (response == 90)
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{
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if (m_command == socks5_bind)
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{
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if (m_listen == 0)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect1");
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#endif
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m_listen = 1;
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connect1(e, h);
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return;
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}
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m_remote_endpoint.address(read_v4_address(p));
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m_remote_endpoint.port(read_uint16(p));
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std::vector<char>().swap(m_buffer);
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(*h)(e);
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}
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else
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{
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std::vector<char>().swap(m_buffer);
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(*h)(e);
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}
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return;
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}
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error_code ec(socks_error::general_failure, get_socks_category());
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switch (response)
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{
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case 91: ec = boost::asio::error::connection_refused; break;
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case 92: ec = socks_error::no_identd; break;
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case 93: ec = socks_error::identd_error; break;
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}
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(*h)(ec);
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}
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}
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void socks5_stream::connect3(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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complete_async("socks5_stream::connect3");
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#endif
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using namespace libtorrent::detail;
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if (handle_error(e, h)) return;
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if (m_command == socks5_bind)
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{
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if (m_listen == 0)
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{
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#if defined TORRENT_ASIO_DEBUGGING
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add_outstanding_async("socks5_stream::connect1");
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#endif
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m_listen = 1;
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connect1(e, h);
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return;
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}
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char* p = &m_buffer[0];
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p += 2; // version and response code
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int atyp = read_uint8(p);
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TORRENT_ASSERT(atyp == 3 || atyp == 4);
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if (atyp == 4)
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{
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// we don't support resolving the endpoint address
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// if we receive a domain name, just set the remote
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// endpoint to INADDR_ANY
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m_remote_endpoint = tcp::endpoint();
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}
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else if (atyp == 3)
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{
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m_remote_endpoint.address(read_v4_address(p));
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m_remote_endpoint.port(read_uint16(p));
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}
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}
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std::vector<char>().swap(m_buffer);
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(*h)(e);
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}
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}
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