Files
rippled/beast/asio/bind_handler.h
Vinnie Falco 3461bafaa2 Beast.Asio:
New classes:

  class async_completion:
    Helper class for implementing asynchronous initiation functions.
    See n3964:
        Library Foundations for Asynchronous Operations, Revision 1
        http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2014/n3964.pdf

  class basic_streambuf:
    Meets the requirements of Streambuf.

  class buffered_readstream:
    Buffers a ReadStream with a ConstBufferSequence.

  class consuming_buffers:
    Adapts a BufferSequence which wraps the underlying buffer
    sequence and presents fewer bytes, with the retained bytes
    occurring at the end of the sequence.

  class handler_alloc:
    A C++ Allocator the uses asio handler allocation hooks.

  class static_streambuf:
    An implementation of the Streambuf concept that uses a
    fixed size buffer with size determined at compile-time.

  class streambuf_readstream:
    Buffers a ReadStream with a Streambuf.

New functions:

  append_buffers()
    Returns a new BufferSequence which efficiently concatenates
    two or more buffer sequences together.

  prepare_buffers()
    Shortens a buffer sequence. The bytes excluded are at the
    end of the underlying buffer sequence.

  boost::asio::read_until()
    A copy of boost::asio::read_until overloads, modified to work
    with a beast::asio::basic_streambuf.

Debugging:

  buffers_to_string()

    Convert a ConstBufferSequence to a human readable string
    suitable for diagnostics.

type_check.h:

  Metafunctions for checking asio concepts:
    AsyncReadStream, AsyncWriteStream
    SyncReadStream, SyncWriteStream
    ConstBufferSequence, MutableBufferSequence
    Streambuf
    Handler

Changes:

* All symbols moved up a namespace level.
* streambuf provides all move and copy special members,
  behavior of moved from objects is well-defined.

Fixes:

* Fix basic_streambuf iterator category.
2016-04-20 05:16:38 -04:00

174 lines
4.8 KiB
C++

//------------------------------------------------------------------------------
/*
This file is part of Beast: https://github.com/vinniefalco/Beast
Copyright 2013, Vinnie Falco <vinnie.falco@gmail.com>
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted, provided that the above
copyright notice and this permission notice appear in all copies.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
ANY SPECIAL , DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
//==============================================================================
#ifndef BEAST_ASIO_BIND_HANDLER_H_INCLUDED
#define BEAST_ASIO_BIND_HANDLER_H_INCLUDED
#include <boost/asio/detail/handler_alloc_helpers.hpp>
#include <boost/asio/detail/handler_cont_helpers.hpp>
#include <boost/asio/detail/handler_invoke_helpers.hpp>
#include <functional>
#include <type_traits>
#include <utility>
namespace beast {
namespace detail {
/** Nullary handler that calls Handler with bound arguments.
The bound handler provides the same io_service execution
guarantees as the original handler.
*/
template<class Handler, class... Args>
class bound_handler
{
private:
using args_type = std::tuple<std::decay_t<Args>...>;
Handler h_;
args_type args_;
template<class Tuple, std::size_t... S>
static void invoke(Handler& h, Tuple& args,
std::index_sequence <S...>)
{
h(std::get<S>(args)...);
}
public:
using result_type = void;
template<class DeducedHandler>
explicit
bound_handler(DeducedHandler&& handler, Args&&... args)
: h_(std::forward<DeducedHandler>(handler))
, args_(std::forward<Args>(args)...)
{
}
void
operator()()
{
invoke(h_, args_,
std::index_sequence_for<Args...> ());
}
void
operator()() const
{
invoke(h_, args_,
std::index_sequence_for<Args...> ());
}
friend
void*
asio_handler_allocate(
std::size_t size, bound_handler* h)
{
return boost_asio_handler_alloc_helpers::
allocate(size, h->h_);
}
friend
void
asio_handler_deallocate(
void* p, std::size_t size, bound_handler* h)
{
boost_asio_handler_alloc_helpers::
deallocate(p, size, h->h_);
}
friend
bool
asio_handler_is_continuation(bound_handler* h)
{
return boost_asio_handler_cont_helpers::
is_continuation (h->h_);
}
template<class F>
friend
void
asio_handler_invoke(F&& f, bound_handler* h)
{
boost_asio_handler_invoke_helpers::
invoke(f, h->h_);
}
};
} // detail
//------------------------------------------------------------------------------
/** Bind parameters to a completion handler, creating a wrapped handler.
This function creates a new handler which invoked with no parameters
calls the original handler with the list of bound arguments. The passed
handler and arguments are forwarded into the returned handler, which
provides the same `io_service` execution guarantees as the original
handler.
Unlike `io_service::wrap`, the returned handler can be used in a
subsequent call to `io_service::post` instead of `io_service::dispatch`,
to ensure that the handler will not be invoked immediately by the
calling function.
Example:
@code
template<class AsyncReadStream, ReadHandler>
void
do_cancel(AsyncReadStream& stream, ReadHandler&& handler)
{
stream.get_io_service().post(
bind_handler(std::forward<ReadHandler>(handler),
boost::asio::error::operation_aborted, 0));
}
@endcode
@param handler The handler to wrap.
@param args A list of arguments to bind to the handler. The
arguments are forwarded into the returned
*/
template<class CompletionHandler, class... Args>
#if GENERATING_DOCS
implementation_defined
#else
detail::bound_handler<std::decay_t<CompletionHandler>, Args...>
#endif
bind_handler(CompletionHandler&& handler, Args&&... args)
{
return detail::bound_handler<std::decay_t<
CompletionHandler>, Args...>(std::forward<
CompletionHandler>(handler),
std::forward<Args>(args)...);
}
} // beast
namespace std {
template<class Handler, class... Args>
void bind(beast::detail::bound_handler<
Handler, Args...>, ...) = delete;
} // std
#endif