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435 lines
12 KiB
435 lines
12 KiB
11 years ago
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/*
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Copyright (c) 2009-2012, 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/pch.hpp"
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#include "libtorrent/i2p_stream.hpp"
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#include "libtorrent/assert.hpp"
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#include "libtorrent/error_code.hpp"
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#include <boost/bind.hpp>
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#if TORRENT_USE_I2P
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namespace libtorrent
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{
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i2p_error_category i2p_category;
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const char* i2p_error_category::name() const
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{
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return "i2p error";
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}
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std::string i2p_error_category::message(int ev) const
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{
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static char const* messages[] =
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{
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"no error",
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"parse failed",
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"cannot reach peer",
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"i2p error",
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"invalid key",
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"invalid id",
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"timeout",
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"key not found"
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};
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if (ev < 0 || ev >= i2p_error::num_errors) return "unknown error";
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return messages[ev];
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}
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i2p_connection::i2p_connection(io_service& ios)
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: m_state(sam_idle)
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, m_io_service(ios)
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{}
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i2p_connection::~i2p_connection()
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{}
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void i2p_connection::close(error_code& e)
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{
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if (m_sam_socket) m_sam_socket->close(e);
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}
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void i2p_connection::open(proxy_settings const& s, i2p_stream::handler_type const& handler)
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{
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// we already seem to have a session to this SAM router
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if (m_sam_router.hostname == s.hostname
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&& m_sam_router.port == s.port
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&& is_open()) return;
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m_sam_router = s;
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m_sam_router.type = proxy_settings::i2p_proxy;
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if (m_sam_router.hostname.empty()) return;
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m_state = sam_connecting;
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char tmp[20];
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std::generate(tmp, tmp + sizeof(tmp), &std::rand);
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m_session_id.resize(sizeof(tmp)*2);
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to_hex(tmp, 20, &m_session_id[0]);
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m_sam_socket.reset(new i2p_stream(m_io_service));
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m_sam_socket->set_proxy(m_sam_router.hostname, m_sam_router.port);
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m_sam_socket->set_command(i2p_stream::cmd_create_session);
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m_sam_socket->set_session_id(m_session_id.c_str());
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m_sam_socket->async_connect(tcp::endpoint()
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, boost::bind(&i2p_connection::on_sam_connect, this, _1, handler));
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}
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void i2p_connection::on_sam_connect(error_code const& ec, i2p_stream::handler_type const& h)
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{
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m_state = sam_idle;
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do_name_lookup("ME", boost::bind(&i2p_connection::set_local_endpoint, this, _1, _2));
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h(ec);
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}
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void i2p_connection::set_local_endpoint(error_code const& ec, char const* dest)
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{
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if (ec || dest == 0)
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{
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m_i2p_local_endpoint.clear();
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return;
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}
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m_i2p_local_endpoint = dest;
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}
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void i2p_connection::async_name_lookup(char const* name
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, i2p_connection::name_lookup_handler handler)
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{
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if (m_state == sam_idle && m_name_lookup.empty())
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do_name_lookup(name, handler);
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else
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m_name_lookup.push_back(std::make_pair(std::string(name), handler));
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}
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void i2p_connection::do_name_lookup(std::string const& name
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, name_lookup_handler const& handler)
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{
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TORRENT_ASSERT(m_state == sam_idle);
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m_state = sam_name_lookup;
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m_sam_socket->set_name_lookup(name.c_str());
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boost::shared_ptr<i2p_stream::handler_type> h(new i2p_stream::handler_type(
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boost::bind(&i2p_connection::on_name_lookup, this, _1, handler)));
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m_sam_socket->send_name_lookup(h);
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}
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void i2p_connection::on_name_lookup(error_code const& ec
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, name_lookup_handler handler)
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{
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m_state = sam_idle;
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std::string name = m_sam_socket->name_lookup();
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if (!m_name_lookup.empty())
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{
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std::pair<std::string, name_lookup_handler>& nl = m_name_lookup.front();
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do_name_lookup(nl.first, nl.second);
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m_name_lookup.pop_front();
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}
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if (ec)
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{
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handler(ec, 0);
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return;
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}
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handler(ec, name.c_str());
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}
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// TODO: move this to proxy_base and use it in all proxies
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bool i2p_stream::handle_error(error_code const& e, boost::shared_ptr<handler_type> const& h)
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{
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if (!e) return false;
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// fprintf(stderr, "i2p error \"%s\"\n", e.message().c_str());
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(*h)(e);
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error_code ec;
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close(ec);
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return true;
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}
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void i2p_stream::do_connect(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 (e || i == tcp::resolver::iterator())
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{
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(*h)(e);
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error_code ec;
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close(ec);
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return;
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}
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m_sock.async_connect(i->endpoint(), boost::bind(
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&i2p_stream::connected, this, _1, h));
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}
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void i2p_stream::connected(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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if (handle_error(e, h)) return;
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// send hello command
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m_state = read_hello_response;
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static const char cmd[] = "HELLO VERSION MIN=3.0 MAX=3.0\n";
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async_write(m_sock, asio::buffer(cmd, sizeof(cmd) - 1)
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, boost::bind(&i2p_stream::start_read_line, this, _1, h));
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// fputs(cmd, stderr);
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}
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void i2p_stream::start_read_line(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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if (handle_error(e, h)) return;
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m_buffer.resize(1);
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async_read(m_sock, asio::buffer(m_buffer)
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, boost::bind(&i2p_stream::read_line, this, _1, h));
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}
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char* string_tokenize(char* last, char sep, char** next)
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{
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if (last == 0) return 0;
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*next = strchr(last, sep);
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if (*next == 0) return last;
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**next = 0;
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++(*next);
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while (**next == sep && **next) ++(*next);
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return last;
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}
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void i2p_stream::read_line(error_code const& e, boost::shared_ptr<handler_type> h)
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{
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if (handle_error(e, h)) return;
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int read_pos = m_buffer.size();
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// fprintf(stderr, "%c", m_buffer[read_pos - 1]);
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// look for \n which means end of the response
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if (m_buffer[read_pos - 1] != '\n')
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{
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// read another byte from the socket
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m_buffer.resize(read_pos + 1);
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async_read(m_sock, asio::buffer(&m_buffer[read_pos], 1)
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, boost::bind(&i2p_stream::read_line, this, _1, h));
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return;
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}
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m_buffer[read_pos - 1] = 0;
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if (m_command == cmd_incoming)
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{
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// this is the line containing the destination
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// of the incoming connection in an accept call
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m_dest = &m_buffer[0];
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(*h)(e);
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std::vector<char>().swap(m_buffer);
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return;
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}
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error_code invalid_response(i2p_error::parse_failed
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, i2p_category);
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// null-terminate the string and parse it
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m_buffer.push_back(0);
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char* ptr = &m_buffer[0];
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char* next = ptr;
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char const* expect1 = 0;
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char const* expect2 = 0;
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switch (m_state)
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{
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case read_hello_response:
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expect1 = "HELLO";
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expect2 = "REPLY";
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break;
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case read_connect_response:
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case read_accept_response:
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expect1 = "STREAM";
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expect2 = "STATUS";
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break;
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case read_session_create_response:
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expect1 = "SESSION";
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expect2 = "STATUS";
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break;
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case read_name_lookup_response:
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expect1 = "NAMING";
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expect2 = "REPLY";
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break;
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}
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ptr = string_tokenize(next, ' ', &next);
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if (ptr == 0 || expect1 == 0 || strcmp(expect1, ptr)) { handle_error(invalid_response, h); return; }
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ptr = string_tokenize(next, ' ', &next);
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if (ptr == 0 || expect2 == 0 || strcmp(expect2, ptr)) { handle_error(invalid_response, h); return; }
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int result = 0;
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// char const* message = 0;
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// float version = 3.0f;
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for(;;)
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{
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char* name = string_tokenize(next, '=', &next);
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if (name == 0) break;
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char* ptr = string_tokenize(next, ' ', &next);
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if (ptr == 0) { handle_error(invalid_response, h); return; }
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if (strcmp("RESULT", name) == 0)
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{
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if (strcmp("OK", ptr) == 0)
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result = i2p_error::no_error;
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else if (strcmp("CANT_REACH_PEER", ptr) == 0)
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result = i2p_error::cant_reach_peer;
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else if (strcmp("I2P_ERROR", ptr) == 0)
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result = i2p_error::i2p_error;
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else if (strcmp("INVALID_KEY", ptr) == 0)
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result = i2p_error::invalid_key;
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else if (strcmp("INVALID_ID", ptr) == 0)
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result = i2p_error::invalid_id;
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else if (strcmp("TIMEOUT", ptr) == 0)
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result = i2p_error::timeout;
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else if (strcmp("KEY_NOT_FOUND", ptr) == 0)
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result = i2p_error::key_not_found;
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else
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result = i2p_error::num_errors; // unknown error
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}
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else if (strcmp("MESSAGE", name) == 0)
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{
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// message = ptr;
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}
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else if (strcmp("VERSION", name) == 0)
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{
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// version = float(atof(ptr));
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}
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else if (strcmp("VALUE", name) == 0)
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{
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m_name_lookup = ptr;
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}
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else if (strcmp("DESTINATION", name) == 0)
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{
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m_dest = ptr;
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}
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}
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if (result != i2p_error::no_error)
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{
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error_code ec(result, i2p_category);
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handle_error(ec, h);
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return;
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}
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switch (m_state)
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{
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case read_hello_response:
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switch (m_command)
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{
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case cmd_create_session:
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send_session_create(h);
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break;
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case cmd_accept:
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send_accept(h);
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break;
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case cmd_connect:
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send_connect(h);
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break;
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default:
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(*h)(e);
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std::vector<char>().swap(m_buffer);
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}
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break;
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case read_connect_response:
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case read_session_create_response:
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case read_name_lookup_response:
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(*h)(e);
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std::vector<char>().swap(m_buffer);
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break;
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case read_accept_response:
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// the SAM bridge is waiting for an incoming
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// connection.
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// wait for one more line containing
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// the destination of the remote peer
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m_command = cmd_incoming;
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m_buffer.resize(1);
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async_read(m_sock, asio::buffer(m_buffer)
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, boost::bind(&i2p_stream::read_line, this, _1, h));
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break;
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}
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return;
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}
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void i2p_stream::send_connect(boost::shared_ptr<handler_type> h)
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{
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m_state = read_connect_response;
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char cmd[1024];
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int size = snprintf(cmd, sizeof(cmd), "STREAM CONNECT ID=%s DESTINATION=%s\n"
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, m_id, m_dest.c_str());
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// fputs(cmd, stderr);
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async_write(m_sock, asio::buffer(cmd, size)
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, boost::bind(&i2p_stream::start_read_line, this, _1, h));
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}
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void i2p_stream::send_accept(boost::shared_ptr<handler_type> h)
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{
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m_state = read_accept_response;
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char cmd[400];
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int size = snprintf(cmd, sizeof(cmd), "STREAM ACCEPT ID=%s\n", m_id);
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// fputs(cmd, stderr);
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async_write(m_sock, asio::buffer(cmd, size)
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, boost::bind(&i2p_stream::start_read_line, this, _1, h));
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}
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void i2p_stream::send_session_create(boost::shared_ptr<handler_type> h)
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{
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m_state = read_session_create_response;
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char cmd[400];
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int size = snprintf(cmd, sizeof(cmd), "SESSION CREATE STYLE=STREAM ID=%s DESTINATION=TRANSIENT\n"
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, m_id);
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// fputs(cmd, stderr);
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async_write(m_sock, asio::buffer(cmd, size)
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, boost::bind(&i2p_stream::start_read_line, this, _1, h));
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}
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void i2p_stream::send_name_lookup(boost::shared_ptr<handler_type> h)
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{
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m_state = read_name_lookup_response;
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char cmd[1024];
|
||
|
int size = snprintf(cmd, sizeof(cmd), "NAMING LOOKUP NAME=%s\n", m_name_lookup.c_str());
|
||
|
// fputs(cmd, stderr);
|
||
|
async_write(m_sock, asio::buffer(cmd, size)
|
||
|
, boost::bind(&i2p_stream::start_read_line, this, _1, h));
|
||
|
}
|
||
|
}
|
||
|
|
||
|
#endif
|
||
|
|