362 lines
10 KiB
C++
362 lines
10 KiB
C++
//
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// resolver_service.hpp
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// ~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2006 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_RESOLVER_SERVICE_HPP
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#define ASIO_DETAIL_RESOLVER_SERVICE_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 <cstring>
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#include <boost/scoped_ptr.hpp>
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#include <boost/shared_ptr.hpp>
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#include <boost/weak_ptr.hpp>
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#include "asio/detail/pop_options.hpp"
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#include "asio/error.hpp"
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#include "asio/io_service.hpp"
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#include "asio/detail/bind_handler.hpp"
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#include "asio/detail/mutex.hpp"
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#include "asio/detail/noncopyable.hpp"
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#include "asio/detail/socket_ops.hpp"
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#include "asio/detail/socket_types.hpp"
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#include "asio/detail/thread.hpp"
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namespace asio {
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namespace detail {
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template <typename Protocol>
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class resolver_service
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: public asio::io_service::service
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{
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private:
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// Helper class to perform exception-safe cleanup of addrinfo objects.
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class auto_addrinfo
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: private asio::detail::noncopyable
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{
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public:
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explicit auto_addrinfo(asio::detail::addrinfo_type* ai)
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: ai_(ai)
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{
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}
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~auto_addrinfo()
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{
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if (ai_)
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socket_ops::freeaddrinfo(ai_);
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}
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operator asio::detail::addrinfo_type*()
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{
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return ai_;
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}
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private:
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asio::detail::addrinfo_type* ai_;
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};
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public:
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// The implementation type of the resolver. The shared pointer is used as a
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// cancellation token to indicate to the background thread that the operation
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// has been cancelled.
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typedef boost::shared_ptr<void> implementation_type;
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struct noop_deleter { void operator()(void*) {} };
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// The endpoint type.
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typedef typename Protocol::endpoint endpoint_type;
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// The query type.
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typedef typename Protocol::resolver_query query_type;
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// The iterator type.
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typedef typename Protocol::resolver_iterator iterator_type;
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// Constructor.
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resolver_service(asio::io_service& io_service)
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: asio::io_service::service(io_service),
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mutex_(),
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work_io_service_(new asio::io_service),
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work_(new asio::io_service::work(*work_io_service_)),
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work_thread_(0)
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{
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}
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// Destructor.
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~resolver_service()
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{
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shutdown_service();
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}
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// Destroy all user-defined handler objects owned by the service.
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void shutdown_service()
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{
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work_.reset();
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if (work_io_service_)
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{
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work_io_service_->interrupt();
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if (work_thread_)
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{
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work_thread_->join();
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work_thread_.reset();
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}
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work_io_service_.reset();
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}
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}
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// Construct a new resolver implementation.
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void construct(implementation_type& impl)
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{
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impl.reset(static_cast<void*>(0), noop_deleter());
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}
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// Destroy a resolver implementation.
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void destroy(implementation_type&)
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{
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}
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// Cancel pending asynchronous operations.
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void cancel(implementation_type& impl)
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{
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impl.reset(static_cast<void*>(0), noop_deleter());
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}
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// Resolve a query to a list of entries.
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template <typename Error_Handler>
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iterator_type resolve(implementation_type&, const query_type& query,
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Error_Handler error_handler)
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{
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asio::detail::addrinfo_type* address_info = 0;
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std::string host_name = query.host_name();
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std::string service_name = query.service_name();
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asio::detail::addrinfo_type hints = query.hints();
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int result = socket_ops::getaddrinfo(
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host_name.length() ? host_name.c_str() : 0,
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service_name.c_str(), &hints, &address_info);
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auto_addrinfo auto_address_info(address_info);
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error_handler(asio::error(result));
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if (result != 0)
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return iterator_type();
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return iterator_type::create(address_info, host_name, service_name);
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}
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template <typename Handler>
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class resolve_query_handler
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{
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public:
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resolve_query_handler(implementation_type impl, const query_type& query,
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asio::io_service& io_service, Handler handler)
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: impl_(impl),
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query_(query),
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io_service_(io_service),
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work_(io_service),
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handler_(handler)
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{
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}
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void operator()()
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{
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// Check if the operation has been cancelled.
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if (impl_.expired())
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{
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iterator_type iterator;
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io_service_.post(asio::detail::bind_handler(handler_,
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asio::error(asio::error::operation_aborted),
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iterator));
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return;
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}
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// Perform the blocking host resolution operation.
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asio::detail::addrinfo_type* address_info = 0;
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std::string host_name = query_.host_name();
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std::string service_name = query_.service_name();
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asio::detail::addrinfo_type hints = query_.hints();
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int result = socket_ops::getaddrinfo(
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host_name.length() ? host_name.c_str() : 0,
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service_name.c_str(), &hints, &address_info);
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auto_addrinfo auto_address_info(address_info);
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// Invoke the handler and pass the result.
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asio::error e(result);
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iterator_type iterator;
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if (result == 0)
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iterator = iterator_type::create(address_info, host_name, service_name);
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io_service_.post(asio::detail::bind_handler(
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handler_, e, iterator));
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}
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private:
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boost::weak_ptr<void> impl_;
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query_type query_;
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asio::io_service& io_service_;
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asio::io_service::work work_;
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Handler handler_;
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};
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// Asynchronously resolve a query to a list of entries.
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template <typename Handler>
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void async_resolve(implementation_type& impl, const query_type& query,
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Handler handler)
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{
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if (work_io_service_)
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{
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start_work_thread();
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work_io_service_->post(
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resolve_query_handler<Handler>(
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impl, query, io_service(), handler));
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}
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}
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// Resolve an endpoint to a list of entries.
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template <typename Error_Handler>
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iterator_type resolve(implementation_type&,
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const endpoint_type& endpoint, Error_Handler error_handler)
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{
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// First try resolving with the service name. If that fails try resolving
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// but allow the service to be returned as a number.
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char host_name[NI_MAXHOST];
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char service_name[NI_MAXSERV];
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int flags = endpoint.protocol().type() == SOCK_DGRAM ? NI_DGRAM : 0;
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int result = socket_ops::getnameinfo(endpoint.data(), endpoint.size(),
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host_name, NI_MAXHOST, service_name, NI_MAXSERV, flags);
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if (result)
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{
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flags |= NI_NUMERICSERV;
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result = socket_ops::getnameinfo(endpoint.data(), endpoint.size(),
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host_name, NI_MAXHOST, service_name, NI_MAXSERV, flags);
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}
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error_handler(asio::error(result));
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if (result != 0)
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return iterator_type();
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return iterator_type::create(endpoint, host_name, service_name);
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}
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template <typename Handler>
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class resolve_endpoint_handler
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{
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public:
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resolve_endpoint_handler(implementation_type impl,
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const endpoint_type& endpoint, asio::io_service& io_service,
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Handler handler)
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: impl_(impl),
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endpoint_(endpoint),
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io_service_(io_service),
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work_(io_service),
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handler_(handler)
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{
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}
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void operator()()
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{
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// Check if the operation has been cancelled.
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if (impl_.expired())
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{
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iterator_type iterator;
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io_service_.post(asio::detail::bind_handler(handler_,
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asio::error(asio::error::operation_aborted),
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iterator));
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return;
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}
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// First try resolving with the service name. If that fails try resolving
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// but allow the service to be returned as a number.
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char host_name[NI_MAXHOST];
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char service_name[NI_MAXSERV];
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int flags = endpoint_.protocol().type() == SOCK_DGRAM ? NI_DGRAM : 0;
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int result = socket_ops::getnameinfo(endpoint_.data(), endpoint_.size(),
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host_name, NI_MAXHOST, service_name, NI_MAXSERV, flags);
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if (result)
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{
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flags |= NI_NUMERICSERV;
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result = socket_ops::getnameinfo(endpoint_.data(), endpoint_.size(),
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host_name, NI_MAXHOST, service_name, NI_MAXSERV, flags);
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}
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// Invoke the handler and pass the result.
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asio::error e(result);
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iterator_type iterator;
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if (result == 0)
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iterator = iterator_type::create(endpoint_, host_name, service_name);
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io_service_.post(asio::detail::bind_handler(
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handler_, e, iterator));
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}
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private:
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boost::weak_ptr<void> impl_;
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endpoint_type endpoint_;
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asio::io_service& io_service_;
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asio::io_service::work work_;
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Handler handler_;
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};
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// Asynchronously resolve an endpoint to a list of entries.
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template <typename Handler>
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void async_resolve(implementation_type& impl, const endpoint_type& endpoint,
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Handler handler)
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{
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if (work_io_service_)
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{
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start_work_thread();
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work_io_service_->post(
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resolve_endpoint_handler<Handler>(
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impl, endpoint, io_service(), handler));
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}
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}
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private:
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// Helper class to run the work io_service in a thread.
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class work_io_service_runner
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{
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public:
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work_io_service_runner(asio::io_service& io_service)
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: io_service_(io_service) {}
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void operator()() { io_service_.run(); }
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private:
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asio::io_service& io_service_;
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};
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// Start the work thread if it's not already running.
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void start_work_thread()
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{
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asio::detail::mutex::scoped_lock lock(mutex_);
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if (work_thread_ == 0)
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{
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work_thread_.reset(new asio::detail::thread(
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work_io_service_runner(*work_io_service_)));
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}
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}
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// Mutex to protect access to internal data.
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asio::detail::mutex mutex_;
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// Private io_service used for performing asynchronous host resolution.
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boost::scoped_ptr<asio::io_service> work_io_service_;
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// Work for the private io_service to perform.
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boost::scoped_ptr<asio::io_service::work> work_;
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// Thread used for running the work io_service's run loop.
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boost::scoped_ptr<asio::detail::thread> work_thread_;
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};
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} // namespace detail
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} // namespace asio
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#include "asio/detail/pop_options.hpp"
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#endif // ASIO_DETAIL_RESOLVER_SERVICE_HPP
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