mirror of
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460 lines
16 KiB
C++
460 lines
16 KiB
C++
/*
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Copyright (C) 2001-2006, William Joseph.
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All Rights Reserved.
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This file is part of GtkRadiant.
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GtkRadiant is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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GtkRadiant is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GtkRadiant; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#pragma once
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/// \file
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/// \brief Type-safe techniques for binding the first argument of an opaque callback.
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#include <cstddef>
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#include "functional.h"
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#include "callbackfwd.h"
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template<typename Type>
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inline void* convertToOpaque( Type* t ){
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return t;
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}
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template<typename Type>
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inline void* convertToOpaque( const Type* t ){
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return const_cast<Type*>( t );
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}
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template<typename Type>
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inline void* convertToOpaque( Type& t ){
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return &t;
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}
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template<typename Type>
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inline void* convertToOpaque( const Type& t ){
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return const_cast<Type*>( &t );
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}
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template<typename Type>
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class ConvertFromOpaque
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{
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};
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template<typename Type>
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class ConvertFromOpaque<Type&>
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{
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public:
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static Type& apply( void* p ){
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return *static_cast<Type*>( p );
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}
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};
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template<typename Type>
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class ConvertFromOpaque<const Type&>
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{
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public:
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static const Type& apply( void* p ){
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return *static_cast<Type*>( p );
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}
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};
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template<typename Type>
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class ConvertFromOpaque<Type*>
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{
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public:
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static Type* apply( void* p ){
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return static_cast<Type*>( p );
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}
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};
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template<typename Type>
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class ConvertFromOpaque<const Type*>
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{
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public:
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static const Type* apply( void* p ){
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return static_cast<Type*>( p );
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}
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};
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template<typename Thunk_>
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class CallbackBase
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{
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void* m_environment;
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Thunk_ m_thunk;
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public:
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typedef Thunk_ Thunk;
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CallbackBase( void* environment, Thunk function ) : m_environment( environment ), m_thunk( function ){
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}
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void* getEnvironment() const {
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return m_environment;
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}
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Thunk getThunk() const {
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return m_thunk;
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}
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};
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template<typename Thunk>
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inline bool operator==( const CallbackBase<Thunk>& self, const CallbackBase<Thunk>& other ){
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return self.getEnvironment() == other.getEnvironment() && self.getThunk() == other.getThunk();
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}
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template<typename Thunk>
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inline bool operator!=( const CallbackBase<Thunk>& self, const CallbackBase<Thunk>& other ){
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return !( self == other );
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}
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template<typename Thunk>
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inline bool operator<( const CallbackBase<Thunk>& self, const CallbackBase<Thunk>& other ){
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return self.getEnvironment() < other.getEnvironment() ||
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( !( other.getEnvironment() < self.getEnvironment() ) && self.getThunk() < other.getThunk() );
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}
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template<class Caller, class F>
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class BindFirstOpaqueN;
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template<class Caller, class R, class FirstBound, class... Ts>
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class BindFirstOpaqueN<Caller, R(FirstBound, Ts...)>
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{
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FirstBound firstBound;
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public:
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explicit BindFirstOpaqueN( FirstBound firstBound ) : firstBound( firstBound ){
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}
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R operator()( Ts... args ) const {
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return Caller::call( firstBound, args... );
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}
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FirstBound getBound() const {
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return firstBound;
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}
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static R thunk( void *environment, Ts... args ){
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return Caller::call( ConvertFromOpaque<FirstBound>::apply( environment ), args... );
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}
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void *getEnvironment() const {
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return convertToOpaque( firstBound );
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}
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};
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template<class Caller>
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using BindFirstOpaque = BindFirstOpaqueN<Caller, typename Caller::func>;
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template<class F>
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class CallbackN;
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template<class R, class... Ts>
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class CallbackN<R(Ts...)> : public CallbackBase<R(*)(void *, Ts...)>
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{
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using Base = CallbackBase<R (*)(void *, Ts...)>;
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static R nullThunk( void *, Ts... ){
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}
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public:
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using func = R(Ts...);
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CallbackN() : Base( 0, nullThunk ){
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}
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template<typename Caller>
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CallbackN( const BindFirstOpaque<Caller>& caller ) : Base( caller.getEnvironment(), BindFirstOpaque<Caller>::thunk ){
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}
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CallbackN( void *environment, typename Base::Thunk function ) : Base( environment, function ){
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}
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R operator()( Ts... args ) const {
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return Base::getThunk()( Base::getEnvironment(), args... );
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}
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};
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/// \brief Combines a void pointer with a pointer to a function which operates on a void pointer.
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///
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/// Use with the callback constructors MemberCaller, ConstMemberCaller, ReferenceCaller, ConstReferenceCaller, PointerCaller, ConstPointerCaller and FreeCaller.
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template<class Result>
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class Callback0 : public CallbackN<Result()>
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{
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public:
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using CallbackN<Result()>::CallbackN;
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};
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template<typename Caller>
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inline Callback0<get_result_type<Caller>> makeCallback0( const Caller& caller, get_argument<Caller, 0> callee ){
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return Callback0<get_result_type<Caller>>( BindFirstOpaque<Caller>( callee ) );
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}
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template<typename Caller>
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inline Callback0<get_result_type<Caller>> makeStatelessCallback0( const Caller& caller ){
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return makeCallback0( Caller0To1<Caller>(), 0 );
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}
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typedef Callback0<void> Callback;
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/// \brief Combines a void pointer with a pointer to a function which operates on a void pointer and one other argument.
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///
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/// Use with the callback constructors MemberCaller1, ConstMemberCaller1, ReferenceCaller1, ConstReferenceCaller1, PointerCaller1, ConstPointerCaller1 and FreeCaller1.
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template<class FirstArgument, class Result>
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class Callback1 : public CallbackN<Result(FirstArgument)>
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{
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public:
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using CallbackN<Result(FirstArgument)>::CallbackN;
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};
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template<typename Caller>
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inline Callback1<get_argument<Caller, 1>, get_result_type<Caller>>
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makeCallback1( const Caller& caller, get_argument<Caller, 0> callee ){
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return Callback1<get_argument<Caller, 1>, get_result_type<Caller>>( BindFirstOpaque<Caller>( callee ) );
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}
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template<typename Caller>
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inline Callback1<get_argument<Caller, 1>, get_result_type<Caller>> makeStatelessCallback1( const Caller& caller ){
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return makeCallback1( Caller1To2<Caller>(), 0 );
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}
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/// \brief Combines a void pointer with a pointer to a function which operates on a void pointer and two other arguments.
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///
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template<typename FirstArgument, typename SecondArgument, typename Result>
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class Callback2 : public CallbackN<Result(FirstArgument, SecondArgument)>
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{
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public:
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using CallbackN<Result(FirstArgument, SecondArgument)>::CallbackN;
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};
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template<typename Caller>
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inline Callback2<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_result_type<Caller>
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> makeCallback2( const Caller& caller, get_argument<Caller, 0> callee ){
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return Callback2<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_result_type<Caller>
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>( BindFirstOpaque<Caller>( callee ) );
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}
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template<typename Caller>
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inline Callback2<
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get_argument<Caller, 0>,
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get_argument<Caller, 1>,
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get_result_type<Caller>
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> makeStatelessCallback2( const Caller& caller){
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return makeCallback2( Caller2To3<Caller>(), 0 );
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}
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/// \brief Combines a void pointer with a pointer to a function which operates on a void pointer and three other arguments.
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///
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template<typename FirstArgument, typename SecondArgument, typename ThirdArgument, typename Result>
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class Callback3 : public CallbackN<Result(FirstArgument, SecondArgument, ThirdArgument)>
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{
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public:
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using CallbackN<Result(FirstArgument, SecondArgument, ThirdArgument)>::CallbackN;
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};
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template<typename Caller>
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inline Callback3<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_argument<Caller, 3>,
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get_result_type<Caller>
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> makeCallback3( const Caller& caller, get_argument<Caller, 0> callee ){
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return Callback3<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_argument<Caller, 3>,
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get_result_type<Caller>
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>( BindFirstOpaque<Caller>( callee ) );
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}
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template<typename Caller>
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inline Callback3<
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get_argument<Caller, 0>,
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_result_type<Caller>
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> makeStatelessCallback3( const Caller& caller ){
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return makeCallback3( Caller3To4<Caller>(), 0 );
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}
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/// \brief Combines a void pointer with a pointer to a function which operates on a void pointer and four other arguments.
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///
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template<typename FirstArgument, typename SecondArgument, typename ThirdArgument, typename FourthArgument, typename Result>
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class Callback4 : public CallbackN<Result(FirstArgument, SecondArgument, ThirdArgument, FourthArgument)>
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{
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public:
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using CallbackN<Result(FirstArgument, SecondArgument, ThirdArgument, FourthArgument)>::CallbackN;
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};
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template<typename Caller>
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inline Callback4<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_argument<Caller, 3>,
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get_argument<Caller, 4>,
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get_result_type<Caller>
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> makeCallback4( const Caller& caller, get_argument<Caller, 0> callee ){
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return Callback4<
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_argument<Caller, 3>,
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get_argument<Caller, 4>,
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get_result_type<Caller>
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>( BindFirstOpaque<Caller>( callee ) );
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}
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template<typename Caller>
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inline Callback4<
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get_argument<Caller, 0>,
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get_argument<Caller, 1>,
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get_argument<Caller, 2>,
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get_argument<Caller, 3>,
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get_result_type<Caller>
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> makeStatelessCallback4( const Caller& caller ){
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return makeCallback4( Caller4To5<Caller>(), 0 );
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}
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/// \brief Forms a Callback from a non-const Environment reference and a non-const Environment member-function.
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///
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/// \dontinclude generic/callback.cpp
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/// \skipline MemberCaller example
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/// \until end example
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template<class Environment, void(Environment::*member)()>
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using MemberCaller = BindFirstOpaque<Member<Environment, void, member>>;
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/// \brief Forms a Callback from a const Environment reference and a const Environment member-function.
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///
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/// \dontinclude generic/callback.cpp
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/// \skipline MemberCaller example
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/// \until end example
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template<class Environment, void(Environment::*member)() const>
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using ConstMemberCaller = BindFirstOpaque<ConstMember<Environment, void, member>>;
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/// \brief Forms a Callback from a non-const Environment reference and a const Environment member-function which takes one argument.
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template<class Environment, class FirstArgument, void(Environment::*member)(FirstArgument)>
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using MemberCaller1 = BindFirstOpaque<Member1<Environment, FirstArgument, void, member>>;
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/// \brief Forms a Callback from a const Environment reference and a const Environment member-function which takes one argument.
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template<class Environment, class FirstArgument, void(Environment::*member)(FirstArgument) const>
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using ConstMemberCaller1 = BindFirstOpaque<ConstMember1<Environment, FirstArgument, void, member>>;
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/// \brief Forms a Callback from a non-const Environment reference and a free function which operates on a non-const Environment reference.
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///
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/// \dontinclude generic/callback.cpp
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/// \skipline ReferenceCaller example
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/// \until end example
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template<class Environment, void(*func)(Environment &)>
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using ReferenceCaller = BindFirstOpaque<Function1<Environment &, void, func>>;
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/// \brief Forms a Callback from a const Environment reference and a free function which operates on a const Environment reference.
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///
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/// \dontinclude generic/callback.cpp
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/// \skipline ReferenceCaller example
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/// \until end example
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template<class Environment, void(*func)(const Environment &)>
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using ConstReferenceCaller = BindFirstOpaque<Function1<const Environment &, void, func>>;
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/// \brief Forms a Callback from a non-const Environment reference and a free function which operates on a non-const Environment reference and one other argument.
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template<class Environment, class FirstArgument, void(*func)(Environment &, FirstArgument)>
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using ReferenceCaller1 = BindFirstOpaque<Function2<Environment &, FirstArgument, void, func>>;
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/// \brief Forms a Callback from a const Environment reference and a free function which operates on a const Environment reference and one other argument.
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template<class Environment, class FirstArgument, void(*func)(const Environment &, FirstArgument)>
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using ConstReferenceCaller1 = BindFirstOpaque<Function2<const Environment &, FirstArgument, void, func>>;
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/// \brief Forms a Callback from a non-const Environment pointer and a free function which operates on a non-const Environment pointer.
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template<class Environment, void(*func)(Environment *)>
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using PointerCaller = BindFirstOpaque<Function1<Environment *, void, func>>;
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/// \brief Forms a Callback from a const Environment pointer and a free function which operates on a const Environment pointer.
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template<class Environment, void(*func)(const Environment *)>
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using ConstPointerCaller = BindFirstOpaque<Function1<const Environment *, void, func>>;
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/// \brief Forms a Callback from a non-const Environment pointer and a free function which operates on a non-const Environment pointer and one other argument.
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template<class Environment, class FirstArgument, void(*func)(Environment *, FirstArgument)>
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using PointerCaller1 = BindFirstOpaque<Function2<Environment *, FirstArgument, void, func>>;
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/// \brief Forms a Callback from a const Environment pointer and a free function which operates on a const Environment pointer and one other argument.
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template<class Environment, class FirstArgument, void(*func)(const Environment *, FirstArgument)>
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using ConstPointerCaller1 = BindFirstOpaque<Function2<const Environment *, FirstArgument, void, func>>;
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/// \brief Forms a Callback from a free function which takes no arguments.
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template<void(*func)()>
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class FreeCaller : public BindFirstOpaque<Caller0To1<Function0<void, func>>>
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{
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public:
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FreeCaller() : BindFirstOpaque<Caller0To1<Function0<void, func>>>( 0 ){
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}
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};
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/// \brief Forms a Callback from a free function which takes a single argument.
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template<class FirstArgument, void(*func)(FirstArgument)>
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class FreeCaller1 : public BindFirstOpaque<Caller1To2<Function1<FirstArgument, void, func>>>
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{
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public:
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FreeCaller1() : BindFirstOpaque<Caller1To2<Function1<FirstArgument, void, func>>>( 0 ){
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}
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};
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/// \brief Constructs a Callback from a non-const \p functor with zero arguments.
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///
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/// \param Functor Must define \c operator()().
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template<typename Functor>
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inline Callback makeCallback( Functor& functor ){
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return Callback( MemberCaller<Functor, &Functor::operator()>( functor ) );
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}
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/// \brief Constructs a Callback from a const \p functor with zero arguments.
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///
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/// \param Functor Must define const \c operator()().
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template<typename Functor>
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inline Callback makeCallback( const Functor& functor ){
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return Callback( ConstMemberCaller<Functor, &Functor::operator()>( functor ) );
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}
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/// \brief Constructs a Callback1 from a non-const \p functor with one argument.
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///
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/// \param Functor Must define \c operator()(argument) and its signature as \c func.
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template<typename Functor>
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inline Callback1<get_argument<Functor, 0>> makeCallback1( Functor& functor ){
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typedef get_argument<Functor, 0> FirstArgument;
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return Callback1<FirstArgument>( MemberCaller1<Functor, FirstArgument, &Functor::operator()>( functor ) );
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}
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/// \brief Constructs a Callback1 from a const \p functor with one argument.
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///
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/// \param Functor Must define const \c operator()(argument) and its signature as \c func.
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template<typename Functor>
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inline Callback1<get_argument<Functor, 0>> makeCallback1( const Functor& functor ){
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typedef get_argument<Functor, 0> FirstArgument;
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return Callback1<FirstArgument>( ConstMemberCaller1<Functor, FirstArgument, &Functor::operator()>( functor ) );
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}
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typedef Callback1<bool> BoolImportCallback;
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typedef Callback1<const BoolImportCallback&> BoolExportCallback;
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typedef Callback1<int> IntImportCallback;
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typedef Callback1<const IntImportCallback&> IntExportCallback;
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typedef Callback1<float> FloatImportCallback;
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typedef Callback1<const FloatImportCallback&> FloatExportCallback;
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typedef Callback1<const char*> StringImportCallback;
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typedef Callback1<const StringImportCallback&> StringExportCallback;
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typedef Callback1<std::size_t> SizeImportCallback;
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typedef Callback1<const SizeImportCallback&> SizeExportCallback;
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