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415 lines
14 KiB
C++
415 lines
14 KiB
C++
//
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// execution_context.hpp
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// ~~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2019 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_EXECUTION_CONTEXT_HPP
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#define BOOST_ASIO_EXECUTION_CONTEXT_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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#include <cstddef>
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#include <stdexcept>
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#include <typeinfo>
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#include <boost/asio/detail/noncopyable.hpp>
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#include <boost/asio/detail/variadic_templates.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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class execution_context;
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class io_context;
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#if !defined(GENERATING_DOCUMENTATION)
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template <typename Service> Service& use_service(execution_context&);
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template <typename Service> Service& use_service(io_context&);
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template <typename Service> void add_service(execution_context&, Service*);
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template <typename Service> bool has_service(execution_context&);
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#endif // !defined(GENERATING_DOCUMENTATION)
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namespace detail { class service_registry; }
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/// A context for function object execution.
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/**
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* An execution context represents a place where function objects will be
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* executed. An @c io_context is an example of an execution context.
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*
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* @par The execution_context class and services
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*
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* Class execution_context implements an extensible, type-safe, polymorphic set
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* of services, indexed by service type.
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*
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* Services exist to manage the resources that are shared across an execution
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* context. For example, timers may be implemented in terms of a single timer
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* queue, and this queue would be stored in a service.
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*
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* Access to the services of an execution_context is via three function
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* templates, use_service(), add_service() and has_service().
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*
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* In a call to @c use_service<Service>(), the type argument chooses a service,
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* making available all members of the named type. If @c Service is not present
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* in an execution_context, an object of type @c Service is created and added
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* to the execution_context. A C++ program can check if an execution_context
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* implements a particular service with the function template @c
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* has_service<Service>().
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*
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* Service objects may be explicitly added to an execution_context using the
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* function template @c add_service<Service>(). If the @c Service is already
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* present, the service_already_exists exception is thrown. If the owner of the
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* service is not the same object as the execution_context parameter, the
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* invalid_service_owner exception is thrown.
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*
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* Once a service reference is obtained from an execution_context object by
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* calling use_service(), that reference remains usable as long as the owning
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* execution_context object exists.
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*
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* All service implementations have execution_context::service as a public base
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* class. Custom services may be implemented by deriving from this class and
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* then added to an execution_context using the facilities described above.
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*
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* @par The execution_context as a base class
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*
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* Class execution_context may be used only as a base class for concrete
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* execution context types. The @c io_context is an example of such a derived
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* type.
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*
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* On destruction, a class that is derived from execution_context must perform
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* <tt>execution_context::shutdown()</tt> followed by
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* <tt>execution_context::destroy()</tt>.
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*
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* This destruction sequence permits programs to simplify their resource
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* management by using @c shared_ptr<>. Where an object's lifetime is tied to
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* the lifetime of a connection (or some other sequence of asynchronous
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* operations), a @c shared_ptr to the object would be bound into the handlers
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* for all asynchronous operations associated with it. This works as follows:
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*
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* @li When a single connection ends, all associated asynchronous operations
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* complete. The corresponding handler objects are destroyed, and all @c
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* shared_ptr references to the objects are destroyed.
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*
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* @li To shut down the whole program, the io_context function stop() is called
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* to terminate any run() calls as soon as possible. The io_context destructor
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* calls @c shutdown() and @c destroy() to destroy all pending handlers,
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* causing all @c shared_ptr references to all connection objects to be
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* destroyed.
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*/
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class execution_context
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: private noncopyable
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{
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public:
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class id;
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class service;
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public:
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/// Constructor.
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BOOST_ASIO_DECL execution_context();
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/// Destructor.
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BOOST_ASIO_DECL ~execution_context();
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protected:
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/// Shuts down all services in the context.
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/**
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* This function is implemented as follows:
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*
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* @li For each service object @c svc in the execution_context set, in
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* reverse order of the beginning of service object lifetime, performs @c
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* svc->shutdown().
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*/
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BOOST_ASIO_DECL void shutdown();
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/// Destroys all services in the context.
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/**
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* This function is implemented as follows:
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*
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* @li For each service object @c svc in the execution_context set, in
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* reverse order * of the beginning of service object lifetime, performs
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* <tt>delete static_cast<execution_context::service*>(svc)</tt>.
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*/
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BOOST_ASIO_DECL void destroy();
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public:
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/// Fork-related event notifications.
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enum fork_event
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{
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/// Notify the context that the process is about to fork.
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fork_prepare,
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/// Notify the context that the process has forked and is the parent.
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fork_parent,
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/// Notify the context that the process has forked and is the child.
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fork_child
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};
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/// Notify the execution_context of a fork-related event.
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/**
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* This function is used to inform the execution_context that the process is
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* about to fork, or has just forked. This allows the execution_context, and
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* the services it contains, to perform any necessary housekeeping to ensure
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* correct operation following a fork.
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*
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* This function must not be called while any other execution_context
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* function, or any function associated with the execution_context's derived
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* class, is being called in another thread. It is, however, safe to call
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* this function from within a completion handler, provided no other thread
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* is accessing the execution_context or its derived class.
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*
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* @param event A fork-related event.
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*
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* @throws boost::system::system_error Thrown on failure. If the notification
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* fails the execution_context object should no longer be used and should be
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* destroyed.
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*
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* @par Example
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* The following code illustrates how to incorporate the notify_fork()
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* function:
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* @code my_execution_context.notify_fork(execution_context::fork_prepare);
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* if (fork() == 0)
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* {
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* // This is the child process.
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* my_execution_context.notify_fork(execution_context::fork_child);
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* }
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* else
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* {
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* // This is the parent process.
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* my_execution_context.notify_fork(execution_context::fork_parent);
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* } @endcode
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*
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* @note For each service object @c svc in the execution_context set,
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* performs <tt>svc->notify_fork();</tt>. When processing the fork_prepare
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* event, services are visited in reverse order of the beginning of service
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* object lifetime. Otherwise, services are visited in order of the beginning
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* of service object lifetime.
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*/
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BOOST_ASIO_DECL void notify_fork(fork_event event);
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/// Obtain the service object corresponding to the given type.
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/**
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* This function is used to locate a service object that corresponds to the
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* given service type. If there is no existing implementation of the service,
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* then the execution_context will create a new instance of the service.
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*
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* @param e The execution_context object that owns the service.
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*
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* @return The service interface implementing the specified service type.
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* Ownership of the service interface is not transferred to the caller.
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*/
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template <typename Service>
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friend Service& use_service(execution_context& e);
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/// Obtain the service object corresponding to the given type.
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/**
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* This function is used to locate a service object that corresponds to the
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* given service type. If there is no existing implementation of the service,
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* then the io_context will create a new instance of the service.
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*
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* @param ioc The io_context object that owns the service.
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*
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* @return The service interface implementing the specified service type.
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* Ownership of the service interface is not transferred to the caller.
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*
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* @note This overload is preserved for backwards compatibility with services
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* that inherit from io_context::service.
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*/
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template <typename Service>
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friend Service& use_service(io_context& ioc);
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#if defined(GENERATING_DOCUMENTATION)
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/// Creates a service object and adds it to the execution_context.
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/**
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* This function is used to add a service to the execution_context.
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*
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* @param e The execution_context object that owns the service.
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*
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* @param args Zero or more arguments to be passed to the service
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* constructor.
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*
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* @throws boost::asio::service_already_exists Thrown if a service of the
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* given type is already present in the execution_context.
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*/
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template <typename Service, typename... Args>
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friend Service& make_service(execution_context& e, Args&&... args);
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#elif defined(BOOST_ASIO_HAS_VARIADIC_TEMPLATES)
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template <typename Service, typename... Args>
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friend Service& make_service(execution_context& e,
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BOOST_ASIO_MOVE_ARG(Args)... args);
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#else // defined(BOOST_ASIO_HAS_VARIADIC_TEMPLATES)
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template <typename Service>
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friend Service& make_service(execution_context& e);
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#define BOOST_ASIO_PRIVATE_MAKE_SERVICE_DEF(n) \
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template <typename Service, BOOST_ASIO_VARIADIC_TPARAMS(n)> \
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friend Service& make_service(execution_context& e, \
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BOOST_ASIO_VARIADIC_MOVE_PARAMS(n)); \
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/**/
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BOOST_ASIO_VARIADIC_GENERATE(BOOST_ASIO_PRIVATE_MAKE_SERVICE_DEF)
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#undef BOOST_ASIO_PRIVATE_MAKE_SERVICE_DEF
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#endif // defined(BOOST_ASIO_HAS_VARIADIC_TEMPLATES)
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/// (Deprecated: Use make_service().) Add a service object to the
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/// execution_context.
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/**
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* This function is used to add a service to the execution_context.
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*
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* @param e The execution_context object that owns the service.
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*
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* @param svc The service object. On success, ownership of the service object
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* is transferred to the execution_context. When the execution_context object
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* is destroyed, it will destroy the service object by performing: @code
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* delete static_cast<execution_context::service*>(svc) @endcode
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*
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* @throws boost::asio::service_already_exists Thrown if a service of the
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* given type is already present in the execution_context.
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*
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* @throws boost::asio::invalid_service_owner Thrown if the service's owning
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* execution_context is not the execution_context object specified by the
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* @c e parameter.
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*/
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template <typename Service>
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friend void add_service(execution_context& e, Service* svc);
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/// Determine if an execution_context contains a specified service type.
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/**
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* This function is used to determine whether the execution_context contains a
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* service object corresponding to the given service type.
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*
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* @param e The execution_context object that owns the service.
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*
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* @return A boolean indicating whether the execution_context contains the
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* service.
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*/
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template <typename Service>
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friend bool has_service(execution_context& e);
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private:
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// The service registry.
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boost::asio::detail::service_registry* service_registry_;
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};
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/// Class used to uniquely identify a service.
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class execution_context::id
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: private noncopyable
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{
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public:
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/// Constructor.
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id() {}
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};
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/// Base class for all io_context services.
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class execution_context::service
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: private noncopyable
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{
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public:
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/// Get the context object that owns the service.
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execution_context& context();
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protected:
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/// Constructor.
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/**
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* @param owner The execution_context object that owns the service.
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*/
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BOOST_ASIO_DECL service(execution_context& owner);
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/// Destructor.
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BOOST_ASIO_DECL virtual ~service();
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private:
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/// Destroy all user-defined handler objects owned by the service.
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virtual void shutdown() = 0;
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/// Handle notification of a fork-related event to perform any necessary
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/// housekeeping.
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/**
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* This function is not a pure virtual so that services only have to
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* implement it if necessary. The default implementation does nothing.
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*/
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BOOST_ASIO_DECL virtual void notify_fork(
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execution_context::fork_event event);
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friend class boost::asio::detail::service_registry;
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struct key
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{
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key() : type_info_(0), id_(0) {}
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const std::type_info* type_info_;
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const execution_context::id* id_;
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} key_;
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execution_context& owner_;
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service* next_;
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};
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/// Exception thrown when trying to add a duplicate service to an
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/// execution_context.
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class service_already_exists
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: public std::logic_error
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{
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public:
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BOOST_ASIO_DECL service_already_exists();
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};
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/// Exception thrown when trying to add a service object to an
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/// execution_context where the service has a different owner.
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class invalid_service_owner
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: public std::logic_error
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{
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public:
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BOOST_ASIO_DECL invalid_service_owner();
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};
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namespace detail {
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// Special derived service id type to keep classes header-file only.
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template <typename Type>
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class service_id
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: public execution_context::id
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{
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};
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// Special service base class to keep classes header-file only.
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template <typename Type>
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class execution_context_service_base
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: public execution_context::service
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{
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public:
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static service_id<Type> id;
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// Constructor.
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execution_context_service_base(execution_context& e)
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: execution_context::service(e)
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{
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}
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};
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template <typename Type>
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service_id<Type> execution_context_service_base<Type>::id;
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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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#include <boost/asio/impl/execution_context.hpp>
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#if defined(BOOST_ASIO_HEADER_ONLY)
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# include <boost/asio/impl/execution_context.ipp>
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#endif // defined(BOOST_ASIO_HEADER_ONLY)
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#endif // BOOST_ASIO_EXECUTION_CONTEXT_HPP
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