2007-07-04 08:24:30 +00:00
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//
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// basic_socket_streambuf.hpp
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~
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//
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2008-03-08 23:47:38 +00:00
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// Copyright (c) 2003-2008 Christopher M. Kohlhoff (chris at kohlhoff dot com)
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2007-07-04 08:24:30 +00:00
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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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#ifndef ASIO_BASIC_SOCKET_STREAMBUF_HPP
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#define ASIO_BASIC_SOCKET_STREAMBUF_HPP
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#if defined(_MSC_VER) && (_MSC_VER >= 1200)
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# pragma once
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#endif // defined(_MSC_VER) && (_MSC_VER >= 1200)
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#include "asio/detail/push_options.hpp"
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#include "asio/detail/push_options.hpp"
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#include <streambuf>
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#include <boost/array.hpp>
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#include <boost/preprocessor/arithmetic/inc.hpp>
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#include <boost/preprocessor/repetition/enum_binary_params.hpp>
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#include <boost/preprocessor/repetition/enum_params.hpp>
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#include <boost/preprocessor/repetition/repeat_from_to.hpp>
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#include <boost/utility/base_from_member.hpp>
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#include "asio/detail/pop_options.hpp"
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#include "asio/basic_socket.hpp"
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#include "asio/io_service.hpp"
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#include "asio/stream_socket_service.hpp"
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#include "asio/detail/throw_error.hpp"
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#if !defined(ASIO_SOCKET_STREAMBUF_MAX_ARITY)
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#define ASIO_SOCKET_STREAMBUF_MAX_ARITY 5
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#endif // !defined(ASIO_SOCKET_STREAMBUF_MAX_ARITY)
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// A macro that should expand to:
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// template <typename T1, ..., typename Tn>
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// basic_socket_streambuf<Protocol, StreamSocketService>* connect(
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// T1 x1, ..., Tn xn)
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// {
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// init_buffers();
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// asio::error_code ec;
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// this->basic_socket<Protocol, StreamSocketService>::close(ec);
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// typedef typename Protocol::resolver_query resolver_query;
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// resolver_query query(x1, ..., xn);
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// resolve_and_connect(query, ec);
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// return !ec ? this : 0;
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// }
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// This macro should only persist within this file.
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#define ASIO_PRIVATE_CONNECT_DEF( z, n, data ) \
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template <BOOST_PP_ENUM_PARAMS(n, typename T)> \
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basic_socket_streambuf<Protocol, StreamSocketService>* connect( \
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BOOST_PP_ENUM_BINARY_PARAMS(n, T, x)) \
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{ \
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init_buffers(); \
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asio::error_code ec; \
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this->basic_socket<Protocol, StreamSocketService>::close(ec); \
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typedef typename Protocol::resolver_query resolver_query; \
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resolver_query query(BOOST_PP_ENUM_PARAMS(n, x)); \
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resolve_and_connect(query, ec); \
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return !ec ? this : 0; \
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} \
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/**/
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namespace asio {
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/// Iostream streambuf for a socket.
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template <typename Protocol,
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typename StreamSocketService = stream_socket_service<Protocol> >
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class basic_socket_streambuf
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: public std::streambuf,
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private boost::base_from_member<io_service>,
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public basic_socket<Protocol, StreamSocketService>
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{
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public:
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/// The endpoint type.
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typedef typename Protocol::endpoint endpoint_type;
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/// Construct a basic_socket_streambuf without establishing a connection.
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basic_socket_streambuf()
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: basic_socket<Protocol, StreamSocketService>(
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boost::base_from_member<asio::io_service>::member),
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unbuffered_(false)
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{
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init_buffers();
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}
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/// Destructor flushes buffered data.
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virtual ~basic_socket_streambuf()
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{
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if (pptr() != pbase())
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overflow(traits_type::eof());
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}
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/// Establish a connection.
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/**
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* This function establishes a connection to the specified endpoint.
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*
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* @return \c this if a connection was successfully established, a null
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* pointer otherwise.
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*/
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basic_socket_streambuf<Protocol, StreamSocketService>* connect(
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const endpoint_type& endpoint)
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{
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init_buffers();
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asio::error_code ec;
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this->basic_socket<Protocol, StreamSocketService>::close(ec);
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this->basic_socket<Protocol, StreamSocketService>::connect(endpoint, ec);
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return !ec ? this : 0;
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}
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#if defined(GENERATING_DOCUMENTATION)
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/// Establish a connection.
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/**
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* This function automatically establishes a connection based on the supplied
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* resolver query parameters. The arguments are used to construct a resolver
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* query object.
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*
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* @return \c this if a connection was successfully established, a null
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* pointer otherwise.
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*/
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template <typename T1, ..., typename TN>
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basic_socket_streambuf<Protocol, StreamSocketService>* connect(
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T1 t1, ..., TN tn);
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#else
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BOOST_PP_REPEAT_FROM_TO(
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1, BOOST_PP_INC(ASIO_SOCKET_STREAMBUF_MAX_ARITY),
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ASIO_PRIVATE_CONNECT_DEF, _ )
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#endif
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/// Close the connection.
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/**
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* @return \c this if a connection was successfully established, a null
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* pointer otherwise.
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*/
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basic_socket_streambuf<Protocol, StreamSocketService>* close()
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{
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asio::error_code ec;
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sync();
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this->basic_socket<Protocol, StreamSocketService>::close(ec);
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if (!ec)
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init_buffers();
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return !ec ? this : 0;
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}
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protected:
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int_type underflow()
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{
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if (gptr() == egptr())
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{
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asio::error_code ec;
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std::size_t bytes_transferred = this->service.receive(
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this->implementation,
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asio::buffer(asio::buffer(get_buffer_) + putback_max),
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0, ec);
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if (ec)
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return traits_type::eof();
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setg(get_buffer_.begin(), get_buffer_.begin() + putback_max,
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get_buffer_.begin() + putback_max + bytes_transferred);
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return traits_type::to_int_type(*gptr());
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}
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else
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{
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return traits_type::eof();
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}
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}
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int_type overflow(int_type c)
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{
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if (unbuffered_)
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{
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if (traits_type::eq_int_type(c, traits_type::eof()))
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{
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// Nothing to do.
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return traits_type::not_eof(c);
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}
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else
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{
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// Send the single character immediately.
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asio::error_code ec;
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char_type ch = traits_type::to_char_type(c);
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this->service.send(this->implementation,
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asio::buffer(&ch, sizeof(char_type)), 0, ec);
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if (ec)
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return traits_type::eof();
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return c;
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}
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}
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else
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{
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// Send all data in the output buffer.
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asio::const_buffer buffer =
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asio::buffer(pbase(), pptr() - pbase());
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while (asio::buffer_size(buffer) > 0)
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{
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asio::error_code ec;
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std::size_t bytes_transferred = this->service.send(
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this->implementation, asio::buffer(buffer),
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0, ec);
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if (ec)
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return traits_type::eof();
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buffer = buffer + bytes_transferred;
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}
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setp(put_buffer_.begin(), put_buffer_.end());
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// If the new character is eof then our work here is done.
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if (traits_type::eq_int_type(c, traits_type::eof()))
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return traits_type::not_eof(c);
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// Add the new character to the output buffer.
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*pptr() = traits_type::to_char_type(c);
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pbump(1);
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return c;
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}
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}
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int sync()
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{
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return overflow(traits_type::eof());
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}
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std::streambuf* setbuf(char_type* s, std::streamsize n)
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{
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if (pptr() == pbase() && s == 0 && n == 0)
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{
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unbuffered_ = true;
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setp(0, 0);
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return this;
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}
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return 0;
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}
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private:
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void init_buffers()
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{
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setg(get_buffer_.begin(),
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get_buffer_.begin() + putback_max,
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get_buffer_.begin() + putback_max);
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if (unbuffered_)
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setp(0, 0);
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else
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setp(put_buffer_.begin(), put_buffer_.end());
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}
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void resolve_and_connect(const typename Protocol::resolver_query& query,
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asio::error_code& ec)
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{
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typedef typename Protocol::resolver resolver_type;
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typedef typename Protocol::resolver_iterator iterator_type;
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resolver_type resolver(
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boost::base_from_member<asio::io_service>::member);
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iterator_type i = resolver.resolve(query, ec);
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if (!ec)
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{
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iterator_type end;
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ec = asio::error::host_not_found;
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while (ec && i != end)
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{
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this->basic_socket<Protocol, StreamSocketService>::close();
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this->basic_socket<Protocol, StreamSocketService>::connect(*i, ec);
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++i;
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}
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}
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}
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enum { putback_max = 8 };
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enum { buffer_size = 512 };
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boost::array<char, buffer_size> get_buffer_;
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boost::array<char, buffer_size> put_buffer_;
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bool unbuffered_;
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};
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} // namespace asio
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#undef ASIO_PRIVATE_CONNECT_DEF
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#include "asio/detail/pop_options.hpp"
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#endif // ASIO_BASIC_SOCKET_STREAMBUF_HPP
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