/*
* SocketProxy.cpp
*
* Copyright (C) 2009-12 by RStudio, PBC
*
* Unless you have received this program directly from RStudio pursuant
* to the terms of a commercial license agreement with RStudio, then
* this program is licensed to you under the terms of version 3 of the
* GNU Affero General Public License. This program is distributed WITHOUT
* ANY EXPRESS OR IMPLIED WARRANTY, INCLUDING THOSE OF NON-INFRINGEMENT,
* MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Please refer to the
* AGPL (http://www.gnu.org/licenses/agpl-3.0.txt) for more details.
*
*/
// boost requires that winsock2.h must be included before windows.h
#ifdef _WIN32
#include
#endif
#ifndef _WIN32
#include
#endif
#include
#include
#include
#include
#include
#include
#include
#include
using namespace rstudio::core;
namespace rstudio {
namespace core {
namespace http {
void SocketProxy::readClient()
{
ptrClient_->asyncReadSome(
boost::asio::buffer(clientBuffer_),
boost::bind(
&SocketProxy::handleClientRead,
SocketProxy::shared_from_this(),
boost::asio::placeholders::error,
boost::asio::placeholders::bytes_transferred));
}
void SocketProxy::readServer()
{
ptrServer_->asyncReadSome(
boost::asio::buffer(serverBuffer_),
boost::bind(
&SocketProxy::handleServerRead,
SocketProxy::shared_from_this(),
boost::asio::placeholders::error,
boost::asio::placeholders::bytes_transferred));
}
void SocketProxy::handleClientRead(const boost::system::error_code& e,
std::size_t bytesTransferred)
{
// client and server reads can happen simultaneously on two threads; a race
// condition during close can lead to the socket not getting properly
// shut down. use a simple mutex to prevent the threads from simultaneously
// writing to the socket state.
LOCK_MUTEX(socketMutex_)
{
if (!e)
{
std::vector buffers;
buffers.push_back(boost::asio::buffer(clientBuffer_.data(),
bytesTransferred));
ptrServer_->asyncWrite(buffers,
boost::bind(
&SocketProxy::handleServerWrite,
SocketProxy::shared_from_this(),
boost::asio::placeholders::error,
boost::asio::placeholders::bytes_transferred));
}
else
{
handleError(e, ERROR_LOCATION);
}
}
END_LOCK_MUTEX
}
void SocketProxy::handleServerRead(const boost::system::error_code& e,
std::size_t bytesTransferred)
{
LOCK_MUTEX(socketMutex_)
{
if (!e)
{
std::vector buffers;
buffers.push_back(boost::asio::buffer(serverBuffer_.data(),
bytesTransferred));
ptrClient_->asyncWrite(buffers,
boost::bind(
&SocketProxy::handleClientWrite,
SocketProxy::shared_from_this(),
boost::asio::placeholders::error,
boost::asio::placeholders::bytes_transferred));
}
else
{
handleError(e, ERROR_LOCATION);
}
}
END_LOCK_MUTEX
}
void SocketProxy::handleClientWrite(const boost::system::error_code& e,
std::size_t bytesTransferred)
{
if (!e)
{
readServer();
}
else
{
handleError(e, ERROR_LOCATION);
}
}
void SocketProxy::handleServerWrite(const boost::system::error_code& e,
std::size_t bytesTransferred)
{
if (!e)
{
readClient();
}
else
{
handleError(e, ERROR_LOCATION);
}
}
void SocketProxy::handleError(const boost::system::error_code& e,
const core::ErrorLocation& location)
{
// log the error if it wasn't connection terminated
Error error(e, location);
if (!http::isConnectionTerminatedError(error) &&
(e != boost::asio::error::operation_aborted) &&
!util::isSslShutdownError(e))
{
LOG_ERROR(error);
}
close();
}
void SocketProxy::close()
{
ptrClient_->close();
ptrServer_->close();
}
} // namespace http
} // namespace core
} // namespace rstudio