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737 lines
26 KiB
737 lines
26 KiB
// Boost Lambda Library -- member_ptr.hpp --------------------- |
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// Copyright (C) 1999, 2000 Jaakko Jarvi (jaakko.jarvi@cs.utu.fi) |
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// Copyright (C) 2000 Gary Powell (gary.powell@sierra.com) |
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// |
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// Distributed under the Boost Software License, Version 1.0. (See |
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// accompanying file LICENSE_1_0.txt or copy at |
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// http://www.boost.org/LICENSE_1_0.txt) |
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// |
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// For more information, see www.boost.org |
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// -------------------------------------------------------------------------- |
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#if !defined(BOOST_LAMBDA_MEMBER_PTR_HPP) |
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#define BOOST_LAMBDA_MEMBER_PTR_HPP |
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namespace boost { |
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namespace lambda { |
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class member_pointer_action {}; |
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namespace detail { |
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// the boost type_traits member_pointer traits are not enough, |
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// need to know more details. |
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template<class T> |
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struct member_pointer { |
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typedef typename boost::add_reference<T>::type type; |
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typedef detail::unspecified class_type; |
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typedef detail::unspecified qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = false); |
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}; |
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template<class T, class U> |
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struct member_pointer<T U::*> { |
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typedef typename boost::add_reference<T>::type type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = true); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = false); |
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}; |
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template<class T, class U> |
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struct member_pointer<const T U::*> { |
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typedef typename boost::add_reference<const T>::type type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = true); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = false); |
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}; |
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template<class T, class U> |
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struct member_pointer<volatile T U::*> { |
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typedef typename boost::add_reference<volatile T>::type type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = true); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = false); |
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}; |
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template<class T, class U> |
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struct member_pointer<const volatile T U::*> { |
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typedef typename boost::add_reference<const volatile T>::type type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = true); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = false); |
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}; |
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// -- nonconst member functions -- |
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template<class T, class U> |
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struct member_pointer<T (U::*)()> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1> |
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struct member_pointer<T (U::*)(A1)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2> |
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struct member_pointer<T (U::*)(A1, A2)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3> |
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struct member_pointer<T (U::*)(A1, A2, A3)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8, class A9> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8, A9)> { |
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typedef T type; |
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typedef U class_type; |
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typedef U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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// -- const member functions -- |
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template<class T, class U> |
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struct member_pointer<T (U::*)() const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1> |
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struct member_pointer<T (U::*)(A1) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2> |
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struct member_pointer<T (U::*)(A1, A2) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3> |
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struct member_pointer<T (U::*)(A1, A2, A3) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8, class A9> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8, A9) const> { |
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typedef T type; |
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typedef U class_type; |
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typedef const U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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// -- volatile -- |
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template<class T, class U> |
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struct member_pointer<T (U::*)() volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1> |
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struct member_pointer<T (U::*)(A1) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2> |
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struct member_pointer<T (U::*)(A1, A2) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3> |
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struct member_pointer<T (U::*)(A1, A2, A3) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8, class A9> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8, A9) volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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// -- const volatile |
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template<class T, class U> |
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struct member_pointer<T (U::*)() const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1> |
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struct member_pointer<T (U::*)(A1) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2> |
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struct member_pointer<T (U::*)(A1, A2) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3> |
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struct member_pointer<T (U::*)(A1, A2, A3) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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template<class T, class U, class A1, class A2, class A3, class A4, class A5, |
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class A6, class A7, class A8, class A9> |
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struct member_pointer<T (U::*)(A1, A2, A3, A4, A5, A6, A7, A8, A9) const volatile> { |
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typedef T type; |
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typedef U class_type; |
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typedef const volatile U qualified_class_type; |
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BOOST_STATIC_CONSTANT(bool, is_data_member = false); |
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BOOST_STATIC_CONSTANT(bool, is_function_member = true); |
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}; |
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|
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} // detail |
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|
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namespace detail { |
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|
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// this class holds a pointer to a member function and the object. |
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// when called, it just calls the member function with the parameters |
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// provided |
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// It would have been possible to use existing lambda_functors to represent |
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// a bound member function like this, but to have a separate template is |
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// safer, since now this functor doesn't mix and match with lambda_functors |
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// only thing you can do with this is to call it |
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|
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// note that previously instantiated classes |
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// (other_action<member_pointer_action> and member_pointer_action_helper |
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// guarantee, that A and B are |
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// such types, that for objects a and b of corresponding types, a->*b leads |
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// to the builtin ->* to be called. So types that would end in a call to |
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// a user defined ->* do not create a member_pointer_caller object. |
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template<class RET, class A, class B> |
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class member_pointer_caller { |
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A a; B b; |
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public: |
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member_pointer_caller(const A& aa, const B& bb) : a(aa), b(bb) {} |
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RET operator()() const { return (a->*b)(); } |
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template<class A1> |
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RET operator()(const A1& a1) const { return (a->*b)(a1); } |
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template<class A1, class A2> |
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RET operator()(const A1& a1, const A2& a2) const { return (a->*b)(a1, a2); } |
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template<class A1, class A2, class A3> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3) const { |
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return (a->*b)(a1, a2, a3); |
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} |
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template<class A1, class A2, class A3, class A4> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, |
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const A4& a4) const { |
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return (a->*b)(a1, a2, a3, a4); |
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} |
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template<class A1, class A2, class A3, class A4, class A5> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, const A4& a4, |
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const A5& a5) const { |
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return (a->*b)(a1, a2, a3, a4, a5); |
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} |
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|
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template<class A1, class A2, class A3, class A4, class A5, class A6> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, const A4& a4, |
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const A5& a5, const A6& a6) const { |
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return (a->*b)(a1, a2, a3, a4, a5, a6); |
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} |
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|
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template<class A1, class A2, class A3, class A4, class A5, class A6, |
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class A7> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, const A4& a4, |
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const A5& a5, const A6& a6, const A7& a7) const { |
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return (a->*b)(a1, a2, a3, a4, a5, a6, a7); |
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} |
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|
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template<class A1, class A2, class A3, class A4, class A5, class A6, |
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class A7, class A8> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, const A4& a4, |
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const A5& a5, const A6& a6, const A7& a7, |
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const A8& a8) const { |
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return (a->*b)(a1, a2, a3, a4, a5, a6, a7, a8); |
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} |
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|
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template<class A1, class A2, class A3, class A4, class A5, class A6, |
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class A7, class A8, class A9> |
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RET operator()(const A1& a1, const A2& a2, const A3& a3, const A4& a4, |
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const A5& a5, const A6& a6, const A7& a7, |
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const A8& a8, const A9& a9) const { |
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return (a->*b)(a1, a2, a3, a4, a5, a6, a7, a8, a9); |
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} |
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|
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}; |
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|
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// helper templates for return type deduction and action classes |
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// different cases for data member, function member, neither |
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|
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// true-true case |
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template <bool Is_data_member, bool Is_function_member> |
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struct member_pointer_action_helper; |
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// cannot be both, no body provided |
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|
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// data member case |
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// this means, that B is a data member and A is a pointer type, |
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// so either built-in ->* should be called, or there is an error |
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template <> |
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struct member_pointer_action_helper<true, false> { |
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public: |
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|
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template<class RET, class A, class B> |
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static RET apply(A& a, B& b) { |
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return a->*b; |
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} |
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|
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template<class A, class B> |
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struct return_type { |
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private: |
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typedef typename detail::remove_reference_and_cv<B>::type plainB; |
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|
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typedef typename detail::member_pointer<plainB>::type type0; |
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// we remove the reference now, as we may have to add cv:s |
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typedef typename boost::remove_reference<type0>::type type1; |
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|
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// A is a reference to pointer |
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// remove the top level cv qualifiers and reference |
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typedef typename |
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detail::remove_reference_and_cv<A>::type non_ref_A; |
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|
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// A is a pointer type, so take the type pointed to |
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typedef typename ::boost::remove_pointer<non_ref_A>::type non_pointer_A; |
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|
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public: |
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// For non-reference types, we must add const and/or volatile if |
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// the pointer type has these qualifiers |
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// If the member is a reference, these do not have any effect |
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// (cv T == T if T is a reference type) |
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typedef typename detail::IF< |
|
::boost::is_const<non_pointer_A>::value, |
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typename ::boost::add_const<type1>::type, |
|
type1 |
|
>::RET type2; |
|
typedef typename detail::IF< |
|
::boost::is_volatile<non_pointer_A>::value, |
|
typename ::boost::add_volatile<type2>::type, |
|
type2 |
|
>::RET type3; |
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// add reference back |
|
typedef typename ::boost::add_reference<type3>::type type; |
|
}; |
|
}; |
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|
|
// neither case |
|
template <> |
|
struct member_pointer_action_helper<false, false> { |
|
public: |
|
template<class RET, class A, class B> |
|
static RET apply(A& a, B& b) { |
|
// not a built in member pointer operator, just call ->* |
|
return a->*b; |
|
} |
|
// an overloaded member pointer operators, user should have specified |
|
// the return type |
|
// At this point we know that there is no matching specialization for |
|
// return_type_2, so try return_type_2_plain |
|
template<class A, class B> |
|
struct return_type { |
|
|
|
typedef typename plain_return_type_2< |
|
other_action<member_pointer_action>, A, B |
|
>::type type; |
|
}; |
|
|
|
}; |
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|
|
|
|
// member pointer function case |
|
// This is a built in ->* call for a member function, |
|
// the only thing that you can do with that, is to give it some arguments |
|
// note, it is guaranteed that A is a pointer type, and thus it cannot |
|
// be a call to overloaded ->* |
|
template <> |
|
struct member_pointer_action_helper<false, true> { |
|
public: |
|
|
|
template<class RET, class A, class B> |
|
static RET apply(A& a, B& b) { |
|
typedef typename ::boost::remove_cv<B>::type plainB; |
|
typedef typename detail::member_pointer<plainB>::type ret_t; |
|
typedef typename ::boost::remove_cv<A>::type plainA; |
|
|
|
// we always strip cv:s to |
|
// make the two routes (calling and type deduction) |
|
// to give the same results (and the const does not make any functional |
|
// difference) |
|
return detail::member_pointer_caller<ret_t, plainA, plainB>(a, b); |
|
} |
|
|
|
template<class A, class B> |
|
struct return_type { |
|
typedef typename detail::remove_reference_and_cv<B>::type plainB; |
|
typedef typename detail::member_pointer<plainB>::type ret_t; |
|
typedef typename detail::remove_reference_and_cv<A>::type plainA; |
|
|
|
typedef detail::member_pointer_caller<ret_t, plainA, plainB> type; |
|
}; |
|
}; |
|
|
|
} // detail |
|
|
|
template<> class other_action<member_pointer_action> { |
|
public: |
|
template<class RET, class A, class B> |
|
static RET apply(A& a, B& b) { |
|
typedef typename |
|
::boost::remove_cv<B>::type plainB; |
|
|
|
return detail::member_pointer_action_helper< |
|
boost::is_pointer<A>::value && |
|
detail::member_pointer<plainB>::is_data_member, |
|
boost::is_pointer<A>::value && |
|
detail::member_pointer<plainB>::is_function_member |
|
>::template apply<RET>(a, b); |
|
} |
|
}; |
|
|
|
// return type deduction -- |
|
|
|
// If the right argument is a pointer to data member, |
|
// and the left argument is of compatible pointer to class type |
|
// return type is a reference to the data member type |
|
|
|
// if right argument is a pointer to a member function, and the left |
|
// argument is of a compatible type, the return type is a |
|
// member_pointer_caller (see above) |
|
|
|
// Otherwise, return type deduction fails. There is either an error, |
|
// or the user is trying to call an overloaded ->* |
|
// In such a case either ret<> must be used, or a return_type_2 user |
|
// defined specialization must be provided |
|
|
|
|
|
template<class A, class B> |
|
struct return_type_2<other_action<member_pointer_action>, A, B> { |
|
private: |
|
typedef typename |
|
detail::remove_reference_and_cv<B>::type plainB; |
|
public: |
|
typedef typename |
|
detail::member_pointer_action_helper< |
|
detail::member_pointer<plainB>::is_data_member, |
|
detail::member_pointer<plainB>::is_function_member |
|
>::template return_type<A, B>::type type; |
|
}; |
|
|
|
// this is the way the generic lambda_functor_base functions instantiate |
|
// return type deduction. We turn it into return_type_2, so that the |
|
// user can provide specializations on that level. |
|
template<class Args> |
|
struct return_type_N<other_action<member_pointer_action>, Args> { |
|
typedef typename boost::tuples::element<0, Args>::type A; |
|
typedef typename boost::tuples::element<1, Args>::type B; |
|
typedef typename |
|
return_type_2<other_action<member_pointer_action>, |
|
typename boost::remove_reference<A>::type, |
|
typename boost::remove_reference<B>::type |
|
>::type type; |
|
}; |
|
|
|
|
|
template<class Arg1, class Arg2> |
|
inline const |
|
lambda_functor< |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<lambda_functor<Arg1>, typename const_copy_argument<Arg2>::type> |
|
> |
|
> |
|
operator->*(const lambda_functor<Arg1>& a1, const Arg2& a2) |
|
{ |
|
return |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<lambda_functor<Arg1>, typename const_copy_argument<Arg2>::type> |
|
> |
|
(tuple<lambda_functor<Arg1>, |
|
typename const_copy_argument<Arg2>::type>(a1, a2)); |
|
} |
|
|
|
template<class Arg1, class Arg2> |
|
inline const |
|
lambda_functor< |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<lambda_functor<Arg1>, lambda_functor<Arg2> > |
|
> |
|
> |
|
operator->*(const lambda_functor<Arg1>& a1, const lambda_functor<Arg2>& a2) |
|
{ |
|
return |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<lambda_functor<Arg1>, lambda_functor<Arg2> > |
|
> |
|
(tuple<lambda_functor<Arg1>, lambda_functor<Arg2> >(a1, a2)); |
|
} |
|
|
|
template<class Arg1, class Arg2> |
|
inline const |
|
lambda_functor< |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<typename const_copy_argument<Arg1>::type, lambda_functor<Arg2> > |
|
> |
|
> |
|
operator->*(const Arg1& a1, const lambda_functor<Arg2>& a2) |
|
{ |
|
return |
|
lambda_functor_base< |
|
action<2, other_action<member_pointer_action> >, |
|
tuple<typename const_copy_argument<Arg1>::type, lambda_functor<Arg2> > |
|
> |
|
(tuple<typename const_copy_argument<Arg1>::type, |
|
lambda_functor<Arg2> >(a1, a2)); |
|
} |
|
|
|
|
|
} // namespace lambda |
|
} // namespace boost |
|
|
|
|
|
#endif |
|
|
|
|
|
|
|
|
|
|
|
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|