609 lines
14 KiB
C++
609 lines
14 KiB
C++
//
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// detail/impl/descriptor_ops.ipp
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2021 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 ASIO_DETAIL_IMPL_DESCRIPTOR_OPS_IPP
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#define ASIO_DETAIL_IMPL_DESCRIPTOR_OPS_IPP
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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/config.hpp"
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#include <cerrno>
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#include "asio/detail/descriptor_ops.hpp"
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#include "asio/error.hpp"
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#if !defined(ASIO_WINDOWS) \
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&& !defined(ASIO_WINDOWS_RUNTIME) \
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&& !defined(__CYGWIN__)
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#include "asio/detail/push_options.hpp"
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namespace asio {
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namespace detail {
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namespace descriptor_ops {
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int open(const char* path, int flags, asio::error_code& ec)
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{
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int result = ::open(path, flags);
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get_last_error(ec, result < 0);
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return result;
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}
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int close(int d, state_type& state, asio::error_code& ec)
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{
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int result = 0;
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if (d != -1)
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{
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result = ::close(d);
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get_last_error(ec, result < 0);
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if (result != 0
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&& (ec == asio::error::would_block
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|| ec == asio::error::try_again))
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{
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// According to UNIX Network Programming Vol. 1, it is possible for
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// close() to fail with EWOULDBLOCK under certain circumstances. What
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// isn't clear is the state of the descriptor after this error. The one
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// current OS where this behaviour is seen, Windows, says that the socket
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// remains open. Therefore we'll put the descriptor back into blocking
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// mode and have another attempt at closing it.
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#if defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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int flags = ::fcntl(d, F_GETFL, 0);
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if (flags >= 0)
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::fcntl(d, F_SETFL, flags & ~O_NONBLOCK);
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#else // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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ioctl_arg_type arg = 0;
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::ioctl(d, FIONBIO, &arg);
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#endif // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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state &= ~non_blocking;
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result = ::close(d);
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get_last_error(ec, result < 0);
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}
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}
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return result;
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}
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bool set_user_non_blocking(int d, state_type& state,
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bool value, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return false;
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}
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#if defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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int result = ::fcntl(d, F_GETFL, 0);
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get_last_error(ec, result < 0);
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if (result >= 0)
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{
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int flag = (value ? (result | O_NONBLOCK) : (result & ~O_NONBLOCK));
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result = ::fcntl(d, F_SETFL, flag);
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get_last_error(ec, result < 0);
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}
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#else // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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ioctl_arg_type arg = (value ? 1 : 0);
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int result = ::ioctl(d, FIONBIO, &arg);
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get_last_error(ec, result < 0);
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#endif // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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if (result >= 0)
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{
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if (value)
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state |= user_set_non_blocking;
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else
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{
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// Clearing the user-set non-blocking mode always overrides any
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// internally-set non-blocking flag. Any subsequent asynchronous
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// operations will need to re-enable non-blocking I/O.
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state &= ~(user_set_non_blocking | internal_non_blocking);
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}
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return true;
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}
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return false;
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}
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bool set_internal_non_blocking(int d, state_type& state,
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bool value, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return false;
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}
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if (!value && (state & user_set_non_blocking))
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{
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// It does not make sense to clear the internal non-blocking flag if the
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// user still wants non-blocking behaviour. Return an error and let the
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// caller figure out whether to update the user-set non-blocking flag.
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ec = asio::error::invalid_argument;
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return false;
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}
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#if defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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int result = ::fcntl(d, F_GETFL, 0);
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get_last_error(ec, result < 0);
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if (result >= 0)
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{
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int flag = (value ? (result | O_NONBLOCK) : (result & ~O_NONBLOCK));
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result = ::fcntl(d, F_SETFL, flag);
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get_last_error(ec, result < 0);
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}
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#else // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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ioctl_arg_type arg = (value ? 1 : 0);
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int result = ::ioctl(d, FIONBIO, &arg);
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get_last_error(ec, result < 0);
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#endif // defined(__SYMBIAN32__) || defined(__EMSCRIPTEN__)
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if (result >= 0)
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{
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if (value)
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state |= internal_non_blocking;
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else
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state &= ~internal_non_blocking;
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return true;
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}
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return false;
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}
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std::size_t sync_read(int d, state_type state, buf* bufs,
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std::size_t count, bool all_empty, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return 0;
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}
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// A request to read 0 bytes on a stream is a no-op.
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if (all_empty)
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{
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ec.assign(0, ec.category());
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return 0;
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}
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// Read some data.
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for (;;)
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{
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// Try to complete the operation without blocking.
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signed_size_type bytes = ::readv(d, bufs, static_cast<int>(count));
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes > 0)
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return bytes;
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// Check for EOF.
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if (bytes == 0)
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{
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ec = asio::error::eof;
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return 0;
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}
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// Operation failed.
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if ((state & user_set_non_blocking)
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|| (ec != asio::error::would_block
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&& ec != asio::error::try_again))
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return 0;
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// Wait for descriptor to become ready.
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if (descriptor_ops::poll_read(d, 0, ec) < 0)
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return 0;
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}
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}
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std::size_t sync_read1(int d, state_type state, void* data,
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std::size_t size, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return 0;
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}
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// A request to read 0 bytes on a stream is a no-op.
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if (size == 0)
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{
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ec.assign(0, ec.category());
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return 0;
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}
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// Read some data.
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for (;;)
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{
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// Try to complete the operation without blocking.
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signed_size_type bytes = ::read(d, data, size);
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes > 0)
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return bytes;
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// Check for EOF.
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if (bytes == 0)
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{
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ec = asio::error::eof;
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return 0;
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}
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// Operation failed.
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if ((state & user_set_non_blocking)
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|| (ec != asio::error::would_block
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&& ec != asio::error::try_again))
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return 0;
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// Wait for descriptor to become ready.
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if (descriptor_ops::poll_read(d, 0, ec) < 0)
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return 0;
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}
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}
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bool non_blocking_read(int d, buf* bufs, std::size_t count,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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for (;;)
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{
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// Read some data.
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signed_size_type bytes = ::readv(d, bufs, static_cast<int>(count));
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get_last_error(ec, bytes < 0);
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// Check for end of stream.
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if (bytes == 0)
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{
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ec = asio::error::eof;
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return true;
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}
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// Check if operation succeeded.
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if (bytes > 0)
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{
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bytes_transferred = bytes;
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return true;
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}
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// Retry operation if interrupted by signal.
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if (ec == asio::error::interrupted)
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continue;
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// Check if we need to run the operation again.
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if (ec == asio::error::would_block
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|| ec == asio::error::try_again)
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return false;
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// Operation failed.
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bytes_transferred = 0;
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return true;
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}
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}
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bool non_blocking_read1(int d, void* data, std::size_t size,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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for (;;)
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{
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// Read some data.
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signed_size_type bytes = ::read(d, data, size);
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get_last_error(ec, bytes < 0);
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// Check for end of stream.
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if (bytes == 0)
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{
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ec = asio::error::eof;
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return true;
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}
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// Check if operation succeeded.
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if (bytes > 0)
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{
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bytes_transferred = bytes;
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return true;
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}
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// Retry operation if interrupted by signal.
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if (ec == asio::error::interrupted)
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continue;
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// Check if we need to run the operation again.
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if (ec == asio::error::would_block
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|| ec == asio::error::try_again)
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return false;
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// Operation failed.
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bytes_transferred = 0;
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return true;
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}
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}
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std::size_t sync_write(int d, state_type state, const buf* bufs,
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std::size_t count, bool all_empty, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return 0;
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}
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// A request to write 0 bytes on a stream is a no-op.
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if (all_empty)
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{
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ec.assign(0, ec.category());
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return 0;
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}
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// Write some data.
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for (;;)
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{
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// Try to complete the operation without blocking.
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signed_size_type bytes = ::writev(d, bufs, static_cast<int>(count));
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes > 0)
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return bytes;
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// Operation failed.
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if ((state & user_set_non_blocking)
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|| (ec != asio::error::would_block
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&& ec != asio::error::try_again))
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return 0;
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// Wait for descriptor to become ready.
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if (descriptor_ops::poll_write(d, 0, ec) < 0)
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return 0;
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}
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}
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std::size_t sync_write1(int d, state_type state, const void* data,
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std::size_t size, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return 0;
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}
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// A request to write 0 bytes on a stream is a no-op.
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if (size == 0)
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{
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ec.assign(0, ec.category());
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return 0;
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}
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// Write some data.
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for (;;)
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{
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// Try to complete the operation without blocking.
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signed_size_type bytes = ::write(d, data, size);
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes > 0)
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return bytes;
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// Operation failed.
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if ((state & user_set_non_blocking)
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|| (ec != asio::error::would_block
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&& ec != asio::error::try_again))
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return 0;
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// Wait for descriptor to become ready.
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if (descriptor_ops::poll_write(d, 0, ec) < 0)
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return 0;
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}
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}
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bool non_blocking_write(int d, const buf* bufs, std::size_t count,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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for (;;)
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{
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// Write some data.
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signed_size_type bytes = ::writev(d, bufs, static_cast<int>(count));
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes >= 0)
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{
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bytes_transferred = bytes;
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return true;
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}
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// Retry operation if interrupted by signal.
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if (ec == asio::error::interrupted)
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continue;
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// Check if we need to run the operation again.
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if (ec == asio::error::would_block
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|| ec == asio::error::try_again)
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return false;
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// Operation failed.
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bytes_transferred = 0;
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return true;
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}
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}
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bool non_blocking_write1(int d, const void* data, std::size_t size,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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for (;;)
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{
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// Write some data.
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signed_size_type bytes = ::write(d, data, size);
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get_last_error(ec, bytes < 0);
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// Check if operation succeeded.
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if (bytes >= 0)
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{
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bytes_transferred = bytes;
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return true;
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}
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// Retry operation if interrupted by signal.
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if (ec == asio::error::interrupted)
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continue;
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// Check if we need to run the operation again.
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if (ec == asio::error::would_block
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|| ec == asio::error::try_again)
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return false;
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// Operation failed.
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bytes_transferred = 0;
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return true;
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}
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}
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int ioctl(int d, state_type& state, long cmd,
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ioctl_arg_type* arg, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return -1;
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}
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int result = ::ioctl(d, cmd, arg);
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get_last_error(ec, result < 0);
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if (result >= 0)
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{
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// When updating the non-blocking mode we always perform the ioctl syscall,
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// even if the flags would otherwise indicate that the descriptor is
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// already in the correct state. This ensures that the underlying
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// descriptor is put into the state that has been requested by the user. If
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// the ioctl syscall was successful then we need to update the flags to
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// match.
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if (cmd == static_cast<long>(FIONBIO))
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{
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if (*arg)
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{
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state |= user_set_non_blocking;
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}
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else
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{
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// Clearing the non-blocking mode always overrides any internally-set
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// non-blocking flag. Any subsequent asynchronous operations will need
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// to re-enable non-blocking I/O.
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state &= ~(user_set_non_blocking | internal_non_blocking);
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}
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}
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}
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return result;
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}
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int fcntl(int d, int cmd, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return -1;
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}
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int result = ::fcntl(d, cmd);
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get_last_error(ec, result < 0);
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return result;
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}
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int fcntl(int d, int cmd, long arg, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return -1;
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}
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int result = ::fcntl(d, cmd, arg);
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get_last_error(ec, result < 0);
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return result;
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}
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int poll_read(int d, state_type state, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return -1;
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}
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pollfd fds;
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fds.fd = d;
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fds.events = POLLIN;
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fds.revents = 0;
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int timeout = (state & user_set_non_blocking) ? 0 : -1;
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int result = ::poll(&fds, 1, timeout);
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get_last_error(ec, result < 0);
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if (result == 0)
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if (state & user_set_non_blocking)
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ec = asio::error::would_block;
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return result;
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}
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int poll_write(int d, state_type state, asio::error_code& ec)
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{
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if (d == -1)
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{
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ec = asio::error::bad_descriptor;
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return -1;
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}
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pollfd fds;
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fds.fd = d;
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fds.events = POLLOUT;
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fds.revents = 0;
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|
int timeout = (state & user_set_non_blocking) ? 0 : -1;
|
|
int result = ::poll(&fds, 1, timeout);
|
|
get_last_error(ec, result < 0);
|
|
if (result == 0)
|
|
if (state & user_set_non_blocking)
|
|
ec = asio::error::would_block;
|
|
return result;
|
|
}
|
|
|
|
int poll_error(int d, state_type state, asio::error_code& ec)
|
|
{
|
|
if (d == -1)
|
|
{
|
|
ec = asio::error::bad_descriptor;
|
|
return -1;
|
|
}
|
|
|
|
pollfd fds;
|
|
fds.fd = d;
|
|
fds.events = POLLPRI | POLLERR | POLLHUP;
|
|
fds.revents = 0;
|
|
int timeout = (state & user_set_non_blocking) ? 0 : -1;
|
|
int result = ::poll(&fds, 1, timeout);
|
|
get_last_error(ec, result < 0);
|
|
if (result == 0)
|
|
if (state & user_set_non_blocking)
|
|
ec = asio::error::would_block;
|
|
return result;
|
|
}
|
|
|
|
} // namespace descriptor_ops
|
|
} // namespace detail
|
|
} // namespace asio
|
|
|
|
#include "asio/detail/pop_options.hpp"
|
|
|
|
#endif // !defined(ASIO_WINDOWS)
|
|
// && !defined(ASIO_WINDOWS_RUNTIME)
|
|
// && !defined(__CYGWIN__)
|
|
|
|
#endif // ASIO_DETAIL_IMPL_DESCRIPTOR_OPS_IPP
|