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// -*- C++ -*- |
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|
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// Copyright (C) 2004-2021 Free Software Foundation, Inc. |
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// |
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// This file is part of the GNU ISO C++ Library. This library is free |
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// software; you can redistribute it and/or modify it under the |
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// terms of the GNU General Public License as published by the |
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// Free Software Foundation; either version 3, or (at your option) |
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// any later version. |
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|
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// This library 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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|
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// Under Section 7 of GPL version 3, you are granted additional |
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// permissions described in the GCC Runtime Library Exception, version |
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// 3.1, as published by the Free Software Foundation. |
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|
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// You should have received a copy of the GNU General Public License and |
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// a copy of the GCC Runtime Library Exception along with this program; |
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// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see |
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// <http://www.gnu.org/licenses/>. |
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|
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// (C) Copyright Jeremy Siek 2000. Permission to copy, use, modify, |
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// sell and distribute this software is granted provided this |
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// copyright notice appears in all copies. This software is provided |
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// "as is" without express or implied warranty, and with no claim as |
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// to its suitability for any purpose. |
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// |
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|
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/** @file bits/boost_concept_check.h |
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* This is an internal header file, included by other library headers. |
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* Do not attempt to use it directly. @headername{iterator} |
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*/ |
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|
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// GCC Note: based on version 1.12.0 of the Boost library. |
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|
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#ifndef _BOOST_CONCEPT_CHECK_H |
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#define _BOOST_CONCEPT_CHECK_H 1 |
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|
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#pragma GCC system_header |
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|
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#include <bits/c++config.h> |
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#include <bits/stl_iterator_base_types.h> // for traits and tags |
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|
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namespace __gnu_cxx _GLIBCXX_VISIBILITY(default) |
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{ |
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_GLIBCXX_BEGIN_NAMESPACE_VERSION |
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|
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#pragma GCC diagnostic push |
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#pragma GCC diagnostic ignored "-Wunused-local-typedefs" |
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|
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#define _IsUnused __attribute__ ((__unused__)) |
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|
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// When the C-C code is in use, we would like this function to do as little |
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// as possible at runtime, use as few resources as possible, and hopefully |
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// be elided out of existence... hmmm. |
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template <class _Concept> |
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_GLIBCXX14_CONSTEXPR inline void __function_requires() |
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{ |
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void (_Concept::*__x)() _IsUnused = &_Concept::__constraints; |
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} |
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|
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// No definition: if this is referenced, there's a problem with |
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// the instantiating type not being one of the required integer types. |
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// Unfortunately, this results in a link-time error, not a compile-time error. |
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void __error_type_must_be_an_integer_type(); |
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void __error_type_must_be_an_unsigned_integer_type(); |
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void __error_type_must_be_a_signed_integer_type(); |
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|
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// ??? Should the "concept_checking*" structs begin with more than _ ? |
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#define _GLIBCXX_CLASS_REQUIRES(_type_var, _ns, _concept) \ |
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typedef void (_ns::_concept <_type_var>::* _func##_type_var##_concept)(); \ |
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template <_func##_type_var##_concept _Tp1> \ |
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struct _concept_checking##_type_var##_concept { }; \ |
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typedef _concept_checking##_type_var##_concept< \ |
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&_ns::_concept <_type_var>::__constraints> \ |
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_concept_checking_typedef##_type_var##_concept |
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|
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#define _GLIBCXX_CLASS_REQUIRES2(_type_var1, _type_var2, _ns, _concept) \ |
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typedef void (_ns::_concept <_type_var1,_type_var2>::* _func##_type_var1##_type_var2##_concept)(); \ |
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template <_func##_type_var1##_type_var2##_concept _Tp1> \ |
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struct _concept_checking##_type_var1##_type_var2##_concept { }; \ |
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typedef _concept_checking##_type_var1##_type_var2##_concept< \ |
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&_ns::_concept <_type_var1,_type_var2>::__constraints> \ |
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_concept_checking_typedef##_type_var1##_type_var2##_concept |
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|
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#define _GLIBCXX_CLASS_REQUIRES3(_type_var1, _type_var2, _type_var3, _ns, _concept) \ |
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typedef void (_ns::_concept <_type_var1,_type_var2,_type_var3>::* _func##_type_var1##_type_var2##_type_var3##_concept)(); \ |
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template <_func##_type_var1##_type_var2##_type_var3##_concept _Tp1> \ |
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struct _concept_checking##_type_var1##_type_var2##_type_var3##_concept { }; \ |
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typedef _concept_checking##_type_var1##_type_var2##_type_var3##_concept< \ |
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&_ns::_concept <_type_var1,_type_var2,_type_var3>::__constraints> \ |
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_concept_checking_typedef##_type_var1##_type_var2##_type_var3##_concept |
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|
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#define _GLIBCXX_CLASS_REQUIRES4(_type_var1, _type_var2, _type_var3, _type_var4, _ns, _concept) \ |
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typedef void (_ns::_concept <_type_var1,_type_var2,_type_var3,_type_var4>::* _func##_type_var1##_type_var2##_type_var3##_type_var4##_concept)(); \ |
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template <_func##_type_var1##_type_var2##_type_var3##_type_var4##_concept _Tp1> \ |
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struct _concept_checking##_type_var1##_type_var2##_type_var3##_type_var4##_concept { }; \ |
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typedef _concept_checking##_type_var1##_type_var2##_type_var3##_type_var4##_concept< \ |
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&_ns::_concept <_type_var1,_type_var2,_type_var3,_type_var4>::__constraints> \ |
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_concept_checking_typedef##_type_var1##_type_var2##_type_var3##_type_var4##_concept |
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|
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|
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template <class _Tp1, class _Tp2> |
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struct _Aux_require_same { }; |
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|
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template <class _Tp> |
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struct _Aux_require_same<_Tp,_Tp> { typedef _Tp _Type; }; |
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|
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template <class _Tp1, class _Tp2> |
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struct _SameTypeConcept |
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{ |
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void __constraints() { |
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typedef typename _Aux_require_same<_Tp1, _Tp2>::_Type _Required; |
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} |
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}; |
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|
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template <class _Tp> |
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struct _IntegerConcept { |
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void __constraints() { |
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__error_type_must_be_an_integer_type(); |
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} |
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}; |
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template <> struct _IntegerConcept<short> { void __constraints() {} }; |
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template <> struct _IntegerConcept<unsigned short> { void __constraints(){} }; |
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template <> struct _IntegerConcept<int> { void __constraints() {} }; |
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template <> struct _IntegerConcept<unsigned int> { void __constraints() {} }; |
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template <> struct _IntegerConcept<long> { void __constraints() {} }; |
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template <> struct _IntegerConcept<unsigned long> { void __constraints() {} }; |
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template <> struct _IntegerConcept<long long> { void __constraints() {} }; |
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template <> struct _IntegerConcept<unsigned long long> |
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{ void __constraints() {} }; |
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|
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template <class _Tp> |
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struct _SignedIntegerConcept { |
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void __constraints() { |
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__error_type_must_be_a_signed_integer_type(); |
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} |
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}; |
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template <> struct _SignedIntegerConcept<short> { void __constraints() {} }; |
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template <> struct _SignedIntegerConcept<int> { void __constraints() {} }; |
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template <> struct _SignedIntegerConcept<long> { void __constraints() {} }; |
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template <> struct _SignedIntegerConcept<long long> { void __constraints(){}}; |
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|
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template <class _Tp> |
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struct _UnsignedIntegerConcept { |
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void __constraints() { |
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__error_type_must_be_an_unsigned_integer_type(); |
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} |
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}; |
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template <> struct _UnsignedIntegerConcept<unsigned short> |
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{ void __constraints() {} }; |
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template <> struct _UnsignedIntegerConcept<unsigned int> |
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{ void __constraints() {} }; |
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template <> struct _UnsignedIntegerConcept<unsigned long> |
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{ void __constraints() {} }; |
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template <> struct _UnsignedIntegerConcept<unsigned long long> |
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{ void __constraints() {} }; |
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|
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//=========================================================================== |
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// Basic Concepts |
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|
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template <class _Tp> |
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struct _DefaultConstructibleConcept |
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{ |
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void __constraints() { |
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_Tp __a _IsUnused; // require default constructor |
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} |
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}; |
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|
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template <class _Tp> |
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struct _AssignableConcept |
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{ |
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void __constraints() { |
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__a = __a; // require assignment operator |
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__const_constraints(__a); |
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} |
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void __const_constraints(const _Tp& __b) { |
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__a = __b; // const required for argument to assignment |
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} |
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_Tp __a; |
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// possibly should be "Tp* a;" and then dereference "a" in constraint |
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// functions? present way would require a default ctor, i think... |
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}; |
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|
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template <class _Tp> |
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struct _CopyConstructibleConcept |
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{ |
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void __constraints() { |
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_Tp __a(__b); // require copy constructor |
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_Tp* __ptr _IsUnused = &__a; // require address of operator |
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__const_constraints(__a); |
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} |
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void __const_constraints(const _Tp& __a) { |
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_Tp __c _IsUnused(__a); // require const copy constructor |
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const _Tp* __ptr _IsUnused = &__a; // require const address of operator |
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} |
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_Tp __b; |
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}; |
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|
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// The SGI STL version of Assignable requires copy constructor and operator= |
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template <class _Tp> |
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struct _SGIAssignableConcept |
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{ |
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void __constraints() { |
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_Tp __b _IsUnused(__a); |
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__a = __a; // require assignment operator |
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__const_constraints(__a); |
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} |
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void __const_constraints(const _Tp& __b) { |
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_Tp __c _IsUnused(__b); |
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__a = __b; // const required for argument to assignment |
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} |
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_Tp __a; |
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}; |
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|
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template <class _From, class _To> |
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struct _ConvertibleConcept |
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{ |
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void __constraints() { |
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_To __y _IsUnused = __x; |
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} |
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_From __x; |
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}; |
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|
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// The C++ standard requirements for many concepts talk about return |
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// types that must be "convertible to bool". The problem with this |
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// requirement is that it leaves the door open for evil proxies that |
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// define things like operator|| with strange return types. Two |
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// possible solutions are: |
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// 1) require the return type to be exactly bool |
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// 2) stay with convertible to bool, and also |
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// specify stuff about all the logical operators. |
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// For now we just test for convertible to bool. |
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template <class _Tp> |
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void __aux_require_boolean_expr(const _Tp& __t) { |
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bool __x _IsUnused = __t; |
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} |
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|
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// FIXME |
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template <class _Tp> |
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struct _EqualityComparableConcept |
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{ |
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void __constraints() { |
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__aux_require_boolean_expr(__a == __b); |
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} |
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_Tp __a, __b; |
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}; |
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|
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template <class _Tp> |
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struct _LessThanComparableConcept |
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{ |
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void __constraints() { |
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__aux_require_boolean_expr(__a < __b); |
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} |
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_Tp __a, __b; |
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}; |
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|
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// This is equivalent to SGI STL's LessThanComparable. |
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template <class _Tp> |
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struct _ComparableConcept |
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{ |
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void __constraints() { |
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__aux_require_boolean_expr(__a < __b); |
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__aux_require_boolean_expr(__a > __b); |
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__aux_require_boolean_expr(__a <= __b); |
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__aux_require_boolean_expr(__a >= __b); |
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} |
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_Tp __a, __b; |
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}; |
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|
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#define _GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(_OP,_NAME) \ |
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template <class _First, class _Second> \ |
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struct _NAME { \ |
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void __constraints() { (void)__constraints_(); } \ |
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bool __constraints_() { \ |
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return __a _OP __b; \ |
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} \ |
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_First __a; \ |
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_Second __b; \ |
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} |
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|
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#define _GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(_OP,_NAME) \ |
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template <class _Ret, class _First, class _Second> \ |
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struct _NAME { \ |
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void __constraints() { (void)__constraints_(); } \ |
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_Ret __constraints_() { \ |
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return __a _OP __b; \ |
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} \ |
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_First __a; \ |
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_Second __b; \ |
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} |
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|
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(==, _EqualOpConcept); |
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(!=, _NotEqualOpConcept); |
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(<, _LessThanOpConcept); |
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(<=, _LessEqualOpConcept); |
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(>, _GreaterThanOpConcept); |
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_GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT(>=, _GreaterEqualOpConcept); |
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|
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_GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(+, _PlusOpConcept); |
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_GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(*, _TimesOpConcept); |
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_GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(/, _DivideOpConcept); |
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_GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(-, _SubtractOpConcept); |
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_GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT(%, _ModOpConcept); |
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|
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#undef _GLIBCXX_DEFINE_BINARY_PREDICATE_OP_CONSTRAINT |
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#undef _GLIBCXX_DEFINE_BINARY_OPERATOR_CONSTRAINT |
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|
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//=========================================================================== |
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// Function Object Concepts |
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|
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template <class _Func, class _Return> |
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struct _GeneratorConcept |
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{ |
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void __constraints() { |
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const _Return& __r _IsUnused = __f();// require operator() member function |
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} |
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_Func __f; |
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}; |
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|
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|
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template <class _Func> |
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struct _GeneratorConcept<_Func,void> |
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{ |
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void __constraints() { |
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__f(); // require operator() member function |
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} |
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_Func __f; |
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}; |
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|
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template <class _Func, class _Return, class _Arg> |
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struct _UnaryFunctionConcept |
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{ |
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void __constraints() { |
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__r = __f(__arg); // require operator() |
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} |
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_Func __f; |
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_Arg __arg; |
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_Return __r; |
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}; |
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|
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template <class _Func, class _Arg> |
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struct _UnaryFunctionConcept<_Func, void, _Arg> { |
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void __constraints() { |
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__f(__arg); // require operator() |
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} |
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_Func __f; |
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_Arg __arg; |
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}; |
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|
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template <class _Func, class _Return, class _First, class _Second> |
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struct _BinaryFunctionConcept |
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{ |
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void __constraints() { |
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__r = __f(__first, __second); // require operator() |
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} |
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_Func __f; |
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_First __first; |
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_Second __second; |
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_Return __r; |
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}; |
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|
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template <class _Func, class _First, class _Second> |
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struct _BinaryFunctionConcept<_Func, void, _First, _Second> |
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{ |
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void __constraints() { |
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__f(__first, __second); // require operator() |
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} |
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_Func __f; |
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_First __first; |
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_Second __second; |
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}; |
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|
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template <class _Func, class _Arg> |
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struct _UnaryPredicateConcept |
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{ |
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void __constraints() { |
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__aux_require_boolean_expr(__f(__arg)); // require op() returning bool |
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} |
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_Func __f; |
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_Arg __arg; |
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}; |
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|
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template <class _Func, class _First, class _Second> |
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struct _BinaryPredicateConcept |
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{ |
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void __constraints() { |
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__aux_require_boolean_expr(__f(__a, __b)); // require op() returning bool |
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} |
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_Func __f; |
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_First __a; |
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_Second __b; |
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}; |
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|
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// use this when functor is used inside a container class like std::set |
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template <class _Func, class _First, class _Second> |
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struct _Const_BinaryPredicateConcept { |
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void __constraints() { |
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__const_constraints(__f); |
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} |
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void __const_constraints(const _Func& __fun) { |
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__function_requires<_BinaryPredicateConcept<_Func, _First, _Second> >(); |
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// operator() must be a const member function |
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__aux_require_boolean_expr(__fun(__a, __b)); |
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} |
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_Func __f; |
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_First __a; |
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_Second __b; |
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}; |
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|
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//=========================================================================== |
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// Iterator Concepts |
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|
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template <class _Tp> |
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struct _TrivialIteratorConcept |
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{ |
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void __constraints() { |
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// __function_requires< _DefaultConstructibleConcept<_Tp> >(); |
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__function_requires< _AssignableConcept<_Tp> >(); |
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__function_requires< _EqualityComparableConcept<_Tp> >(); |
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// typedef typename std::iterator_traits<_Tp>::value_type _V; |
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(void)*__i; // require dereference operator |
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} |
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_Tp __i; |
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}; |
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|
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template <class _Tp> |
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struct _Mutable_TrivialIteratorConcept |
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{ |
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void __constraints() { |
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__function_requires< _TrivialIteratorConcept<_Tp> >(); |
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*__i = *__j; // require dereference and assignment |
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} |
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_Tp __i, __j; |
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}; |
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|
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template <class _Tp> |
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struct _InputIteratorConcept |
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{ |
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void __constraints() { |
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__function_requires< _TrivialIteratorConcept<_Tp> >(); |
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// require iterator_traits typedef's |
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typedef typename std::iterator_traits<_Tp>::difference_type _Diff; |
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// __function_requires< _SignedIntegerConcept<_Diff> >(); |
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typedef typename std::iterator_traits<_Tp>::reference _Ref; |
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typedef typename std::iterator_traits<_Tp>::pointer _Pt; |
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typedef typename std::iterator_traits<_Tp>::iterator_category _Cat; |
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__function_requires< _ConvertibleConcept< |
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typename std::iterator_traits<_Tp>::iterator_category, |
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std::input_iterator_tag> >(); |
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++__i; // require preincrement operator |
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__i++; // require postincrement operator |
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} |
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_Tp __i; |
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}; |
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|
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template <class _Tp, class _ValueT> |
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struct _OutputIteratorConcept |
| 462 |
{ |
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void __constraints() { |
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__function_requires< _AssignableConcept<_Tp> >(); |
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++__i; // require preincrement operator |
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__i++; // require postincrement operator |
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*__i++ = __t; // require postincrement and assignment |
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} |
| 469 |
_Tp __i; |
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_ValueT __t; |
| 471 |
}; |
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|
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template <class _Tp> |
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struct _ForwardIteratorConcept |
| 475 |
{ |
| 476 |
void __constraints() { |
| 477 |
__function_requires< _InputIteratorConcept<_Tp> >(); |
| 478 |
__function_requires< _DefaultConstructibleConcept<_Tp> >(); |
| 479 |
__function_requires< _ConvertibleConcept< |
| 480 |
typename std::iterator_traits<_Tp>::iterator_category, |
| 481 |
std::forward_iterator_tag> >(); |
| 482 |
typedef typename std::iterator_traits<_Tp>::reference _Ref; |
| 483 |
_Ref __r _IsUnused = *__i; |
| 484 |
} |
| 485 |
_Tp __i; |
| 486 |
}; |
| 487 |
|
| 488 |
template <class _Tp> |
| 489 |
struct _Mutable_ForwardIteratorConcept |
| 490 |
{ |
| 491 |
void __constraints() { |
| 492 |
__function_requires< _ForwardIteratorConcept<_Tp> >(); |
| 493 |
*__i++ = *__i; // require postincrement and assignment |
| 494 |
} |
| 495 |
_Tp __i; |
| 496 |
}; |
| 497 |
|
| 498 |
template <class _Tp> |
| 499 |
struct _BidirectionalIteratorConcept |
| 500 |
{ |
| 501 |
void __constraints() { |
| 502 |
__function_requires< _ForwardIteratorConcept<_Tp> >(); |
| 503 |
__function_requires< _ConvertibleConcept< |
| 504 |
typename std::iterator_traits<_Tp>::iterator_category, |
| 505 |
std::bidirectional_iterator_tag> >(); |
| 506 |
--__i; // require predecrement operator |
| 507 |
__i--; // require postdecrement operator |
| 508 |
} |
| 509 |
_Tp __i; |
| 510 |
}; |
| 511 |
|
| 512 |
template <class _Tp> |
| 513 |
struct _Mutable_BidirectionalIteratorConcept |
| 514 |
{ |
| 515 |
void __constraints() { |
| 516 |
__function_requires< _BidirectionalIteratorConcept<_Tp> >(); |
| 517 |
__function_requires< _Mutable_ForwardIteratorConcept<_Tp> >(); |
| 518 |
*__i-- = *__i; // require postdecrement and assignment |
| 519 |
} |
| 520 |
_Tp __i; |
| 521 |
}; |
| 522 |
|
| 523 |
|
| 524 |
template <class _Tp> |
| 525 |
struct _RandomAccessIteratorConcept |
| 526 |
{ |
| 527 |
void __constraints() { |
| 528 |
__function_requires< _BidirectionalIteratorConcept<_Tp> >(); |
| 529 |
__function_requires< _ComparableConcept<_Tp> >(); |
| 530 |
__function_requires< _ConvertibleConcept< |
| 531 |
typename std::iterator_traits<_Tp>::iterator_category, |
| 532 |
std::random_access_iterator_tag> >(); |
| 533 |
// ??? We don't use _Ref, are we just checking for "referenceability"? |
| 534 |
typedef typename std::iterator_traits<_Tp>::reference _Ref; |
| 535 |
|
| 536 |
__i += __n; // require assignment addition operator |
| 537 |
__i = __i + __n; __i = __n + __i; // require addition with difference type |
| 538 |
__i -= __n; // require assignment subtraction op |
| 539 |
__i = __i - __n; // require subtraction with |
| 540 |
// difference type |
| 541 |
__n = __i - __j; // require difference operator |
| 542 |
(void)__i[__n]; // require element access operator |
| 543 |
} |
| 544 |
_Tp __a, __b; |
| 545 |
_Tp __i, __j; |
| 546 |
typename std::iterator_traits<_Tp>::difference_type __n; |
| 547 |
}; |
| 548 |
|
| 549 |
template <class _Tp> |
| 550 |
struct _Mutable_RandomAccessIteratorConcept |
| 551 |
{ |
| 552 |
void __constraints() { |
| 553 |
__function_requires< _RandomAccessIteratorConcept<_Tp> >(); |
| 554 |
__function_requires< _Mutable_BidirectionalIteratorConcept<_Tp> >(); |
| 555 |
__i[__n] = *__i; // require element access and assignment |
| 556 |
} |
| 557 |
_Tp __i; |
| 558 |
typename std::iterator_traits<_Tp>::difference_type __n; |
| 559 |
}; |
| 560 |
|
| 561 |
//=========================================================================== |
| 562 |
// Container Concepts |
| 563 |
|
| 564 |
template <class _Container> |
| 565 |
struct _ContainerConcept |
| 566 |
{ |
| 567 |
typedef typename _Container::value_type _Value_type; |
| 568 |
typedef typename _Container::difference_type _Difference_type; |
| 569 |
typedef typename _Container::size_type _Size_type; |
| 570 |
typedef typename _Container::const_reference _Const_reference; |
| 571 |
typedef typename _Container::const_pointer _Const_pointer; |
| 572 |
typedef typename _Container::const_iterator _Const_iterator; |
| 573 |
|
| 574 |
void __constraints() { |
| 575 |
__function_requires< _InputIteratorConcept<_Const_iterator> >(); |
| 576 |
__function_requires< _AssignableConcept<_Container> >(); |
| 577 |
const _Container __c; |
| 578 |
__i = __c.begin(); |
| 579 |
__i = __c.end(); |
| 580 |
__n = __c.size(); |
| 581 |
__n = __c.max_size(); |
| 582 |
__b = __c.empty(); |
| 583 |
} |
| 584 |
bool __b; |
| 585 |
_Const_iterator __i; |
| 586 |
_Size_type __n; |
| 587 |
}; |
| 588 |
|
| 589 |
template <class _Container> |
| 590 |
struct _Mutable_ContainerConcept |
| 591 |
{ |
| 592 |
typedef typename _Container::value_type _Value_type; |
| 593 |
typedef typename _Container::reference _Reference; |
| 594 |
typedef typename _Container::iterator _Iterator; |
| 595 |
typedef typename _Container::pointer _Pointer; |
| 596 |
|
| 597 |
void __constraints() { |
| 598 |
__function_requires< _ContainerConcept<_Container> >(); |
| 599 |
__function_requires< _AssignableConcept<_Value_type> >(); |
| 600 |
__function_requires< _InputIteratorConcept<_Iterator> >(); |
| 601 |
|
| 602 |
__i = __c.begin(); |
| 603 |
__i = __c.end(); |
| 604 |
__c.swap(__c2); |
| 605 |
} |
| 606 |
_Iterator __i; |
| 607 |
_Container __c, __c2; |
| 608 |
}; |
| 609 |
|
| 610 |
template <class _ForwardContainer> |
| 611 |
struct _ForwardContainerConcept |
| 612 |
{ |
| 613 |
void __constraints() { |
| 614 |
__function_requires< _ContainerConcept<_ForwardContainer> >(); |
| 615 |
typedef typename _ForwardContainer::const_iterator _Const_iterator; |
| 616 |
__function_requires< _ForwardIteratorConcept<_Const_iterator> >(); |
| 617 |
} |
| 618 |
}; |
| 619 |
|
| 620 |
template <class _ForwardContainer> |
| 621 |
struct _Mutable_ForwardContainerConcept |
| 622 |
{ |
| 623 |
void __constraints() { |
| 624 |
__function_requires< _ForwardContainerConcept<_ForwardContainer> >(); |
| 625 |
__function_requires< _Mutable_ContainerConcept<_ForwardContainer> >(); |
| 626 |
typedef typename _ForwardContainer::iterator _Iterator; |
| 627 |
__function_requires< _Mutable_ForwardIteratorConcept<_Iterator> >(); |
| 628 |
} |
| 629 |
}; |
| 630 |
|
| 631 |
template <class _ReversibleContainer> |
| 632 |
struct _ReversibleContainerConcept |
| 633 |
{ |
| 634 |
typedef typename _ReversibleContainer::const_iterator _Const_iterator; |
| 635 |
typedef typename _ReversibleContainer::const_reverse_iterator |
| 636 |
_Const_reverse_iterator; |
| 637 |
|
| 638 |
void __constraints() { |
| 639 |
__function_requires< _ForwardContainerConcept<_ReversibleContainer> >(); |
| 640 |
__function_requires< _BidirectionalIteratorConcept<_Const_iterator> >(); |
| 641 |
__function_requires< |
| 642 |
_BidirectionalIteratorConcept<_Const_reverse_iterator> >(); |
| 643 |
|
| 644 |
const _ReversibleContainer __c; |
| 645 |
_Const_reverse_iterator __i = __c.rbegin(); |
| 646 |
__i = __c.rend(); |
| 647 |
} |
| 648 |
}; |
| 649 |
|
| 650 |
template <class _ReversibleContainer> |
| 651 |
struct _Mutable_ReversibleContainerConcept |
| 652 |
{ |
| 653 |
typedef typename _ReversibleContainer::iterator _Iterator; |
| 654 |
typedef typename _ReversibleContainer::reverse_iterator _Reverse_iterator; |
| 655 |
|
| 656 |
void __constraints() { |
| 657 |
__function_requires<_ReversibleContainerConcept<_ReversibleContainer> >(); |
| 658 |
__function_requires< |
| 659 |
_Mutable_ForwardContainerConcept<_ReversibleContainer> >(); |
| 660 |
__function_requires<_Mutable_BidirectionalIteratorConcept<_Iterator> >(); |
| 661 |
__function_requires< |
| 662 |
_Mutable_BidirectionalIteratorConcept<_Reverse_iterator> >(); |
| 663 |
|
| 664 |
_Reverse_iterator __i = __c.rbegin(); |
| 665 |
__i = __c.rend(); |
| 666 |
} |
| 667 |
_ReversibleContainer __c; |
| 668 |
}; |
| 669 |
|
| 670 |
template <class _RandomAccessContainer> |
| 671 |
struct _RandomAccessContainerConcept |
| 672 |
{ |
| 673 |
typedef typename _RandomAccessContainer::size_type _Size_type; |
| 674 |
typedef typename _RandomAccessContainer::const_reference _Const_reference; |
| 675 |
typedef typename _RandomAccessContainer::const_iterator _Const_iterator; |
| 676 |
typedef typename _RandomAccessContainer::const_reverse_iterator |
| 677 |
_Const_reverse_iterator; |
| 678 |
|
| 679 |
void __constraints() { |
| 680 |
__function_requires< |
| 681 |
_ReversibleContainerConcept<_RandomAccessContainer> >(); |
| 682 |
__function_requires< _RandomAccessIteratorConcept<_Const_iterator> >(); |
| 683 |
__function_requires< |
| 684 |
_RandomAccessIteratorConcept<_Const_reverse_iterator> >(); |
| 685 |
|
| 686 |
const _RandomAccessContainer __c; |
| 687 |
_Const_reference __r _IsUnused = __c[__n]; |
| 688 |
} |
| 689 |
_Size_type __n; |
| 690 |
}; |
| 691 |
|
| 692 |
template <class _RandomAccessContainer> |
| 693 |
struct _Mutable_RandomAccessContainerConcept |
| 694 |
{ |
| 695 |
typedef typename _RandomAccessContainer::size_type _Size_type; |
| 696 |
typedef typename _RandomAccessContainer::reference _Reference; |
| 697 |
typedef typename _RandomAccessContainer::iterator _Iterator; |
| 698 |
typedef typename _RandomAccessContainer::reverse_iterator _Reverse_iterator; |
| 699 |
|
| 700 |
void __constraints() { |
| 701 |
__function_requires< |
| 702 |
_RandomAccessContainerConcept<_RandomAccessContainer> >(); |
| 703 |
__function_requires< |
| 704 |
_Mutable_ReversibleContainerConcept<_RandomAccessContainer> >(); |
| 705 |
__function_requires< _Mutable_RandomAccessIteratorConcept<_Iterator> >(); |
| 706 |
__function_requires< |
| 707 |
_Mutable_RandomAccessIteratorConcept<_Reverse_iterator> >(); |
| 708 |
|
| 709 |
_Reference __r _IsUnused = __c[__i]; |
| 710 |
} |
| 711 |
_Size_type __i; |
| 712 |
_RandomAccessContainer __c; |
| 713 |
}; |
| 714 |
|
| 715 |
// A Sequence is inherently mutable |
| 716 |
template <class _Sequence> |
| 717 |
struct _SequenceConcept |
| 718 |
{ |
| 719 |
typedef typename _Sequence::reference _Reference; |
| 720 |
typedef typename _Sequence::const_reference _Const_reference; |
| 721 |
|
| 722 |
void __constraints() { |
| 723 |
// Matt Austern's book puts DefaultConstructible here, the C++ |
| 724 |
// standard places it in Container |
| 725 |
// function_requires< DefaultConstructible<Sequence> >(); |
| 726 |
__function_requires< _Mutable_ForwardContainerConcept<_Sequence> >(); |
| 727 |
__function_requires< _DefaultConstructibleConcept<_Sequence> >(); |
| 728 |
|
| 729 |
_Sequence |
| 730 |
__c _IsUnused(__n, __t), |
| 731 |
__c2 _IsUnused(__first, __last); |
| 732 |
|
| 733 |
__c.insert(__p, __t); |
| 734 |
__c.insert(__p, __n, __t); |
| 735 |
__c.insert(__p, __first, __last); |
| 736 |
|
| 737 |
__c.erase(__p); |
| 738 |
__c.erase(__p, __q); |
| 739 |
|
| 740 |
_Reference __r _IsUnused = __c.front(); |
| 741 |
|
| 742 |
__const_constraints(__c); |
| 743 |
} |
| 744 |
void __const_constraints(const _Sequence& __c) { |
| 745 |
_Const_reference __r _IsUnused = __c.front(); |
| 746 |
} |
| 747 |
typename _Sequence::value_type __t; |
| 748 |
typename _Sequence::size_type __n; |
| 749 |
typename _Sequence::value_type *__first, *__last; |
| 750 |
typename _Sequence::iterator __p, __q; |
| 751 |
}; |
| 752 |
|
| 753 |
template <class _FrontInsertionSequence> |
| 754 |
struct _FrontInsertionSequenceConcept |
| 755 |
{ |
| 756 |
void __constraints() { |
| 757 |
__function_requires< _SequenceConcept<_FrontInsertionSequence> >(); |
| 758 |
|
| 759 |
__c.push_front(__t); |
| 760 |
__c.pop_front(); |
| 761 |
} |
| 762 |
_FrontInsertionSequence __c; |
| 763 |
typename _FrontInsertionSequence::value_type __t; |
| 764 |
}; |
| 765 |
|
| 766 |
template <class _BackInsertionSequence> |
| 767 |
struct _BackInsertionSequenceConcept |
| 768 |
{ |
| 769 |
typedef typename _BackInsertionSequence::reference _Reference; |
| 770 |
typedef typename _BackInsertionSequence::const_reference _Const_reference; |
| 771 |
|
| 772 |
void __constraints() { |
| 773 |
__function_requires< _SequenceConcept<_BackInsertionSequence> >(); |
| 774 |
|
| 775 |
__c.push_back(__t); |
| 776 |
__c.pop_back(); |
| 777 |
_Reference __r _IsUnused = __c.back(); |
| 778 |
} |
| 779 |
void __const_constraints(const _BackInsertionSequence& __c) { |
| 780 |
_Const_reference __r _IsUnused = __c.back(); |
| 781 |
}; |
| 782 |
_BackInsertionSequence __c; |
| 783 |
typename _BackInsertionSequence::value_type __t; |
| 784 |
}; |
| 785 |
|
| 786 |
_GLIBCXX_END_NAMESPACE_VERSION |
| 787 |
} // namespace |
| 788 |
|
| 789 |
#pragma GCC diagnostic pop |
| 790 |
#undef _IsUnused |
| 791 |
|
| 792 |
#endif // _GLIBCXX_BOOST_CONCEPT_CHECK |
| 793 |
|
| 794 |
|