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429 lines
15 KiB
429 lines
15 KiB
// |
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// detail/reactive_socket_service_base.hpp |
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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// |
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// Copyright (c) 2003-2011 Christopher M. Kohlhoff (chris at kohlhoff dot com) |
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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 BOOST_ASIO_DETAIL_REACTIVE_SOCKET_SERVICE_BASE_HPP |
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#define BOOST_ASIO_DETAIL_REACTIVE_SOCKET_SERVICE_BASE_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 <boost/asio/detail/config.hpp> |
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#if !defined(BOOST_ASIO_HAS_IOCP) |
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#include <boost/utility/addressof.hpp> |
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#include <boost/asio/buffer.hpp> |
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#include <boost/asio/error.hpp> |
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#include <boost/asio/io_service.hpp> |
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#include <boost/asio/socket_base.hpp> |
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#include <boost/asio/detail/buffer_sequence_adapter.hpp> |
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#include <boost/asio/detail/reactive_null_buffers_op.hpp> |
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#include <boost/asio/detail/reactive_socket_recv_op.hpp> |
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#include <boost/asio/detail/reactive_socket_recvmsg_op.hpp> |
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#include <boost/asio/detail/reactive_socket_send_op.hpp> |
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#include <boost/asio/detail/reactor.hpp> |
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#include <boost/asio/detail/reactor_op.hpp> |
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#include <boost/asio/detail/socket_holder.hpp> |
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#include <boost/asio/detail/socket_ops.hpp> |
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#include <boost/asio/detail/socket_types.hpp> |
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#include <boost/asio/detail/push_options.hpp> |
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namespace boost { |
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namespace asio { |
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namespace detail { |
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class reactive_socket_service_base |
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{ |
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public: |
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// The native type of a socket. |
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typedef socket_type native_handle_type; |
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// The implementation type of the socket. |
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struct base_implementation_type |
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{ |
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// The native socket representation. |
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socket_type socket_; |
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// The current state of the socket. |
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socket_ops::state_type state_; |
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// Per-descriptor data used by the reactor. |
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reactor::per_descriptor_data reactor_data_; |
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}; |
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// Constructor. |
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BOOST_ASIO_DECL reactive_socket_service_base( |
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boost::asio::io_service& io_service); |
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// Destroy all user-defined handler objects owned by the service. |
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BOOST_ASIO_DECL void shutdown_service(); |
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// Construct a new socket implementation. |
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BOOST_ASIO_DECL void construct(base_implementation_type& impl); |
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// Move-construct a new socket implementation. |
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BOOST_ASIO_DECL void base_move_construct(base_implementation_type& impl, |
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base_implementation_type& other_impl); |
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// Move-assign from another socket implementation. |
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BOOST_ASIO_DECL void base_move_assign(base_implementation_type& impl, |
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reactive_socket_service_base& other_service, |
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base_implementation_type& other_impl); |
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// Destroy a socket implementation. |
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BOOST_ASIO_DECL void destroy(base_implementation_type& impl); |
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// Determine whether the socket is open. |
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bool is_open(const base_implementation_type& impl) const |
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{ |
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return impl.socket_ != invalid_socket; |
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} |
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// Destroy a socket implementation. |
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BOOST_ASIO_DECL boost::system::error_code close( |
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base_implementation_type& impl, boost::system::error_code& ec); |
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// Get the native socket representation. |
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native_handle_type native_handle(base_implementation_type& impl) |
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{ |
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return impl.socket_; |
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} |
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// Cancel all operations associated with the socket. |
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BOOST_ASIO_DECL boost::system::error_code cancel( |
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base_implementation_type& impl, boost::system::error_code& ec); |
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// Determine whether the socket is at the out-of-band data mark. |
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bool at_mark(const base_implementation_type& impl, |
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boost::system::error_code& ec) const |
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{ |
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return socket_ops::sockatmark(impl.socket_, ec); |
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} |
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// Determine the number of bytes available for reading. |
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std::size_t available(const base_implementation_type& impl, |
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boost::system::error_code& ec) const |
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{ |
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return socket_ops::available(impl.socket_, ec); |
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} |
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// Place the socket into the state where it will listen for new connections. |
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boost::system::error_code listen(base_implementation_type& impl, |
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int backlog, boost::system::error_code& ec) |
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{ |
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socket_ops::listen(impl.socket_, backlog, ec); |
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return ec; |
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} |
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// Perform an IO control command on the socket. |
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template <typename IO_Control_Command> |
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boost::system::error_code io_control(base_implementation_type& impl, |
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IO_Control_Command& command, boost::system::error_code& ec) |
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{ |
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socket_ops::ioctl(impl.socket_, impl.state_, command.name(), |
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static_cast<ioctl_arg_type*>(command.data()), ec); |
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return ec; |
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} |
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// Gets the non-blocking mode of the socket. |
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bool non_blocking(const base_implementation_type& impl) const |
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{ |
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return (impl.state_ & socket_ops::user_set_non_blocking) != 0; |
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} |
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// Sets the non-blocking mode of the socket. |
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boost::system::error_code non_blocking(base_implementation_type& impl, |
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bool mode, boost::system::error_code& ec) |
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{ |
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socket_ops::set_user_non_blocking(impl.socket_, impl.state_, mode, ec); |
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return ec; |
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} |
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// Gets the non-blocking mode of the native socket implementation. |
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bool native_non_blocking(const base_implementation_type& impl) const |
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{ |
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return (impl.state_ & socket_ops::internal_non_blocking) != 0; |
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} |
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// Sets the non-blocking mode of the native socket implementation. |
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boost::system::error_code native_non_blocking(base_implementation_type& impl, |
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bool mode, boost::system::error_code& ec) |
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{ |
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socket_ops::set_internal_non_blocking(impl.socket_, impl.state_, mode, ec); |
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return ec; |
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} |
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// Disable sends or receives on the socket. |
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boost::system::error_code shutdown(base_implementation_type& impl, |
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socket_base::shutdown_type what, boost::system::error_code& ec) |
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{ |
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socket_ops::shutdown(impl.socket_, what, ec); |
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return ec; |
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} |
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// Send the given data to the peer. |
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template <typename ConstBufferSequence> |
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size_t send(base_implementation_type& impl, |
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const ConstBufferSequence& buffers, |
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socket_base::message_flags flags, boost::system::error_code& ec) |
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{ |
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buffer_sequence_adapter<boost::asio::const_buffer, |
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ConstBufferSequence> bufs(buffers); |
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return socket_ops::sync_send(impl.socket_, impl.state_, |
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bufs.buffers(), bufs.count(), flags, bufs.all_empty(), ec); |
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} |
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// Wait until data can be sent without blocking. |
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size_t send(base_implementation_type& impl, const null_buffers&, |
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socket_base::message_flags, boost::system::error_code& ec) |
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{ |
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// Wait for socket to become ready. |
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socket_ops::poll_write(impl.socket_, impl.state_, ec); |
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return 0; |
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} |
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// Start an asynchronous send. The data being sent must be valid for the |
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// lifetime of the asynchronous operation. |
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template <typename ConstBufferSequence, typename Handler> |
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void async_send(base_implementation_type& impl, |
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const ConstBufferSequence& buffers, |
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socket_base::message_flags flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_socket_send_op<ConstBufferSequence, Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(impl.socket_, buffers, flags, handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", &impl, "async_send")); |
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start_op(impl, reactor::write_op, p.p, true, |
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((impl.state_ & socket_ops::stream_oriented) |
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&& buffer_sequence_adapter<boost::asio::const_buffer, |
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ConstBufferSequence>::all_empty(buffers))); |
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p.v = p.p = 0; |
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} |
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// Start an asynchronous wait until data can be sent without blocking. |
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template <typename Handler> |
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void async_send(base_implementation_type& impl, const null_buffers&, |
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socket_base::message_flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_null_buffers_op<Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", |
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&impl, "async_send(null_buffers)")); |
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start_op(impl, reactor::write_op, p.p, false, false); |
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p.v = p.p = 0; |
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} |
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// Receive some data from the peer. Returns the number of bytes received. |
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template <typename MutableBufferSequence> |
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size_t receive(base_implementation_type& impl, |
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const MutableBufferSequence& buffers, |
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socket_base::message_flags flags, boost::system::error_code& ec) |
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{ |
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buffer_sequence_adapter<boost::asio::mutable_buffer, |
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MutableBufferSequence> bufs(buffers); |
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return socket_ops::sync_recv(impl.socket_, impl.state_, |
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bufs.buffers(), bufs.count(), flags, bufs.all_empty(), ec); |
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} |
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// Wait until data can be received without blocking. |
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size_t receive(base_implementation_type& impl, const null_buffers&, |
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socket_base::message_flags, boost::system::error_code& ec) |
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{ |
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// Wait for socket to become ready. |
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socket_ops::poll_read(impl.socket_, impl.state_, ec); |
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return 0; |
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} |
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// Start an asynchronous receive. The buffer for the data being received |
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// must be valid for the lifetime of the asynchronous operation. |
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template <typename MutableBufferSequence, typename Handler> |
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void async_receive(base_implementation_type& impl, |
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const MutableBufferSequence& buffers, |
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socket_base::message_flags flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_socket_recv_op<MutableBufferSequence, Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(impl.socket_, impl.state_, buffers, flags, handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", &impl, "async_receive")); |
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start_op(impl, |
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(flags & socket_base::message_out_of_band) |
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? reactor::except_op : reactor::read_op, |
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p.p, (flags & socket_base::message_out_of_band) == 0, |
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((impl.state_ & socket_ops::stream_oriented) |
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&& buffer_sequence_adapter<boost::asio::mutable_buffer, |
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MutableBufferSequence>::all_empty(buffers))); |
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p.v = p.p = 0; |
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} |
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// Wait until data can be received without blocking. |
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template <typename Handler> |
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void async_receive(base_implementation_type& impl, const null_buffers&, |
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socket_base::message_flags flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_null_buffers_op<Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", |
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&impl, "async_receive(null_buffers)")); |
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start_op(impl, |
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(flags & socket_base::message_out_of_band) |
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? reactor::except_op : reactor::read_op, |
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p.p, false, false); |
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p.v = p.p = 0; |
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} |
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// Receive some data with associated flags. Returns the number of bytes |
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// received. |
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template <typename MutableBufferSequence> |
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size_t receive_with_flags(base_implementation_type& impl, |
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const MutableBufferSequence& buffers, |
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socket_base::message_flags in_flags, |
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socket_base::message_flags& out_flags, boost::system::error_code& ec) |
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{ |
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buffer_sequence_adapter<boost::asio::mutable_buffer, |
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MutableBufferSequence> bufs(buffers); |
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return socket_ops::sync_recvmsg(impl.socket_, impl.state_, |
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bufs.buffers(), bufs.count(), in_flags, out_flags, ec); |
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} |
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// Wait until data can be received without blocking. |
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size_t receive_with_flags(base_implementation_type& impl, |
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const null_buffers&, socket_base::message_flags, |
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socket_base::message_flags& out_flags, boost::system::error_code& ec) |
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{ |
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// Wait for socket to become ready. |
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socket_ops::poll_read(impl.socket_, impl.state_, ec); |
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// Clear out_flags, since we cannot give it any other sensible value when |
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// performing a null_buffers operation. |
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out_flags = 0; |
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return 0; |
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} |
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// Start an asynchronous receive. The buffer for the data being received |
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// must be valid for the lifetime of the asynchronous operation. |
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template <typename MutableBufferSequence, typename Handler> |
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void async_receive_with_flags(base_implementation_type& impl, |
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const MutableBufferSequence& buffers, socket_base::message_flags in_flags, |
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socket_base::message_flags& out_flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_socket_recvmsg_op<MutableBufferSequence, Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(impl.socket_, buffers, in_flags, out_flags, handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", |
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&impl, "async_receive_with_flags")); |
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start_op(impl, |
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(in_flags & socket_base::message_out_of_band) |
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? reactor::except_op : reactor::read_op, |
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p.p, (in_flags & socket_base::message_out_of_band) == 0, false); |
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p.v = p.p = 0; |
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} |
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// Wait until data can be received without blocking. |
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template <typename Handler> |
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void async_receive_with_flags(base_implementation_type& impl, |
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const null_buffers&, socket_base::message_flags in_flags, |
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socket_base::message_flags& out_flags, Handler handler) |
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{ |
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// Allocate and construct an operation to wrap the handler. |
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typedef reactive_null_buffers_op<Handler> op; |
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typename op::ptr p = { boost::addressof(handler), |
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boost_asio_handler_alloc_helpers::allocate( |
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sizeof(op), handler), 0 }; |
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p.p = new (p.v) op(handler); |
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BOOST_ASIO_HANDLER_CREATION((p.p, "socket", &impl, |
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"async_receive_with_flags(null_buffers)")); |
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// Clear out_flags, since we cannot give it any other sensible value when |
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// performing a null_buffers operation. |
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out_flags = 0; |
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start_op(impl, |
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(in_flags & socket_base::message_out_of_band) |
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? reactor::except_op : reactor::read_op, |
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p.p, false, false); |
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p.v = p.p = 0; |
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} |
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protected: |
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// Open a new socket implementation. |
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BOOST_ASIO_DECL boost::system::error_code do_open( |
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base_implementation_type& impl, int af, |
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int type, int protocol, boost::system::error_code& ec); |
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// Assign a native socket to a socket implementation. |
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BOOST_ASIO_DECL boost::system::error_code do_assign( |
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base_implementation_type& impl, int type, |
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const native_handle_type& native_socket, boost::system::error_code& ec); |
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// Start the asynchronous read or write operation. |
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BOOST_ASIO_DECL void start_op(base_implementation_type& impl, int op_type, |
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reactor_op* op, bool is_non_blocking, bool noop); |
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// Start the asynchronous accept operation. |
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BOOST_ASIO_DECL void start_accept_op(base_implementation_type& impl, |
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reactor_op* op, bool peer_is_open); |
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// Start the asynchronous connect operation. |
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BOOST_ASIO_DECL void start_connect_op(base_implementation_type& impl, |
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reactor_op* op, const socket_addr_type* addr, size_t addrlen); |
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// The selector that performs event demultiplexing for the service. |
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reactor& reactor_; |
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}; |
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} // namespace detail |
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} // namespace asio |
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} // namespace boost |
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#include <boost/asio/detail/pop_options.hpp> |
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#if defined(BOOST_ASIO_HEADER_ONLY) |
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# include <boost/asio/detail/impl/reactive_socket_service_base.ipp> |
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#endif // defined(BOOST_ASIO_HEADER_ONLY) |
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#endif // !defined(BOOST_ASIO_HAS_IOCP) |
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#endif // BOOST_ASIO_DETAIL_REACTIVE_SOCKET_SERVICE_BASE_HPP
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