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//
// Copyright (c) 2016-2018 Martin Moene
//
// https://github.com/martinmoene/any-lite
//
// Distributed under the Boost Software License, Version 1.0.
// (See accompanying file LICENSE.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#pragma once
#ifndef NONSTD_ANY_LITE_HPP
#define NONSTD_ANY_LITE_HPP
#define any_lite_MAJOR 0
#define any_lite_MINOR 1
#define any_lite_PATCH 0
#define any_lite_VERSION any_STRINGIFY(any_lite_MAJOR) "." any_STRINGIFY(any_lite_MINOR) "." any_STRINGIFY(any_lite_PATCH)
#define any_STRINGIFY( x ) any_STRINGIFY_( x )
#define any_STRINGIFY_( x ) #x
// any-lite configuration:
#define any_ANY_DEFAULT 0
#define any_ANY_NONSTD 1
#define any_ANY_STD 2
#if !defined( any_CONFIG_SELECT_ANY )
# define any_CONFIG_SELECT_ANY ( any_HAVE_STD_ANY ? any_ANY_STD : any_ANY_NONSTD )
#endif
// C++ language version detection (C++20 is speculative):
// Note: VC14.0/1900 (VS2015) lacks too much from C++14.
#ifndef any_CPLUSPLUS
# if defined(_MSVC_LANG ) && !defined(__clang__)
# define any_CPLUSPLUS (_MSC_VER == 1900 ? 201103L : _MSVC_LANG )
# else
# define any_CPLUSPLUS __cplusplus
# endif
#endif
#define any_CPP98_OR_GREATER ( any_CPLUSPLUS >= 199711L )
#define any_CPP11_OR_GREATER ( any_CPLUSPLUS >= 201103L )
#define any_CPP14_OR_GREATER ( any_CPLUSPLUS >= 201402L )
#define any_CPP17_OR_GREATER ( any_CPLUSPLUS >= 201703L )
#define any_CPP20_OR_GREATER ( any_CPLUSPLUS >= 202000L )
// Use C++17 std::any if available and requested:
#if any_CPP17_OR_GREATER && defined(__has_include )
# if __has_include( <any> )
# define any_HAVE_STD_ANY 1
# else
# define any_HAVE_STD_ANY 0
# endif
#else
# define any_HAVE_STD_ANY 0
#endif
#define any_USES_STD_ANY ( (any_CONFIG_SELECT_ANY == any_ANY_STD) || ((any_CONFIG_SELECT_ANY == any_ANY_DEFAULT) && any_HAVE_STD_ANY) )
//
// in_place: code duplicated in any-lite, expected-lite, optional-lite, value-ptr-lite, variant-lite:
//
#ifndef nonstd_lite_HAVE_IN_PLACE_TYPES
#define nonstd_lite_HAVE_IN_PLACE_TYPES 1
// C++17 std::in_place in <utility>:
#if any_CPP17_OR_GREATER
#include <utility>
namespace nonstd {
using std::in_place;
using std::in_place_type;
using std::in_place_index;
using std::in_place_t;
using std::in_place_type_t;
using std::in_place_index_t;
#define nonstd_lite_in_place_t( T) std::in_place_t
#define nonstd_lite_in_place_type_t( T) std::in_place_type_t<T>
#define nonstd_lite_in_place_index_t(K) std::in_place_index_t<K>
#define nonstd_lite_in_place( T) std::in_place_t{}
#define nonstd_lite_in_place_type( T) std::in_place_type_t<T>{}
#define nonstd_lite_in_place_index(K) std::in_place_index_t<K>{}
} // namespace nonstd
#else // any_CPP17_OR_GREATER
#include <cstddef>
namespace nonstd {
namespace detail {
template< class T >
struct in_place_type_tag {};
template< std::size_t K >
struct in_place_index_tag {};
} // namespace detail
struct in_place_t {};
template< class T >
inline in_place_t in_place( detail::in_place_type_tag<T> = detail::in_place_type_tag<T>() )
{
return in_place_t();
}
template< std::size_t K >
inline in_place_t in_place( detail::in_place_index_tag<K> = detail::in_place_index_tag<K>() )
{
return in_place_t();
}
template< class T >
inline in_place_t in_place_type( detail::in_place_type_tag<T> = detail::in_place_type_tag<T>() )
{
return in_place_t();
}
template< std::size_t K >
inline in_place_t in_place_index( detail::in_place_index_tag<K> = detail::in_place_index_tag<K>() )
{
return in_place_t();
}
// mimic templated typedef:
#define nonstd_lite_in_place_t( T) nonstd::in_place_t(&)( nonstd::detail::in_place_type_tag<T> )
#define nonstd_lite_in_place_type_t( T) nonstd::in_place_t(&)( nonstd::detail::in_place_type_tag<T> )
#define nonstd_lite_in_place_index_t(K) nonstd::in_place_t(&)( nonstd::detail::in_place_index_tag<K> )
#define nonstd_lite_in_place( T) nonstd::in_place_type<T>
#define nonstd_lite_in_place_type( T) nonstd::in_place_type<T>
#define nonstd_lite_in_place_index(K) nonstd::in_place_index<K>
} // namespace nonstd
#endif // any_CPP17_OR_GREATER
#endif // nonstd_lite_HAVE_IN_PLACE_TYPES
//
// Using std::any:
//
#if any_USES_STD_ANY
#include <any>
#include <utility>
namespace nonstd {
using std::any;
using std::any_cast;
using std::make_any;
using std::swap;
using std::bad_any_cast;
}
#else // any_USES_STD_ANY
#include <typeinfo>
#include <utility>
// Compiler versions:
//
// MSVC++ 6.0 _MSC_VER == 1200 (Visual Studio 6.0)
// MSVC++ 7.0 _MSC_VER == 1300 (Visual Studio .NET 2002)
// MSVC++ 7.1 _MSC_VER == 1310 (Visual Studio .NET 2003)
// MSVC++ 8.0 _MSC_VER == 1400 (Visual Studio 2005)
// MSVC++ 9.0 _MSC_VER == 1500 (Visual Studio 2008)
// MSVC++ 10.0 _MSC_VER == 1600 (Visual Studio 2010)
// MSVC++ 11.0 _MSC_VER == 1700 (Visual Studio 2012)
// MSVC++ 12.0 _MSC_VER == 1800 (Visual Studio 2013)
// MSVC++ 14.0 _MSC_VER == 1900 (Visual Studio 2015)
// MSVC++ 14.1 _MSC_VER >= 1910 (Visual Studio 2017)
#if defined(_MSC_VER ) && !defined(__clang__)
# define any_COMPILER_MSVC_VER (_MSC_VER )
# define any_COMPILER_MSVC_VERSION (_MSC_VER / 10 - 10 * ( 5 + (_MSC_VER < 1900 ) ) )
#else
# define any_COMPILER_MSVC_VER 0
# define any_COMPILER_MSVC_VERSION 0
#endif
#define any_COMPILER_VERSION( major, minor, patch ) ( 10 * ( 10 * (major) + (minor) ) + (patch) )
#if defined(__clang__)
# define any_COMPILER_CLANG_VERSION any_COMPILER_VERSION(__clang_major__, __clang_minor__, __clang_patchlevel__)
#else
# define any_COMPILER_CLANG_VERSION 0
#endif
#if defined(__GNUC__) && !defined(__clang__)
# define any_COMPILER_GNUC_VERSION any_COMPILER_VERSION(__GNUC__, __GNUC_MINOR__, __GNUC_PATCHLEVEL__)
#else
# define any_COMPILER_GNUC_VERSION 0
#endif
// half-open range [lo..hi):
//#define any_BETWEEN( v, lo, hi ) ( (lo) <= (v) && (v) < (hi) )
// Presence of language and library features:
#define any_HAVE( feature ) ( any_HAVE_##feature )
#ifdef _HAS_CPP0X
# define any_HAS_CPP0X _HAS_CPP0X
#else
# define any_HAS_CPP0X 0
#endif
#define any_CPP11_90 (any_CPP11_OR_GREATER || any_COMPILER_MSVC_VER >= 1500)
#define any_CPP11_100 (any_CPP11_OR_GREATER || any_COMPILER_MSVC_VER >= 1600)
#define any_CPP11_120 (any_CPP11_OR_GREATER || any_COMPILER_MSVC_VER >= 1800)
#define any_CPP11_140 (any_CPP11_OR_GREATER || any_COMPILER_MSVC_VER >= 1900)
#define any_CPP14_000 (any_CPP14_OR_GREATER)
#define any_CPP17_000 (any_CPP17_OR_GREATER)
// Presence of C++11 language features:
#define any_HAVE_CONSTEXPR_11 any_CPP11_140
#define any_HAVE_DEFAULT_FUNCTION_TEMPLATE_ARG \
any_CPP11_120
#define any_HAVE_INITIALIZER_LIST any_CPP11_120
#define any_HAVE_NOEXCEPT any_CPP11_140
#define any_HAVE_NULLPTR any_CPP11_100
#define any_HAVE_TYPE_TRAITS any_CPP11_90
#define any_HAVE_STATIC_ASSERT any_CPP11_100
#define any_HAVE_ADD_CONST any_CPP11_90
#define any_HAVE_REMOVE_REFERENCE any_CPP11_90
#define any_HAVE_TR1_ADD_CONST (!! any_COMPILER_GNUC_VERSION )
#define any_HAVE_TR1_REMOVE_REFERENCE (!! any_COMPILER_GNUC_VERSION )
#define any_HAVE_TR1_TYPE_TRAITS (!! any_COMPILER_GNUC_VERSION )
// Presence of C++14 language features:
#define any_HAVE_CONSTEXPR_14 any_CPP14_000
// Presence of C++17 language features:
#define any_HAVE_NODISCARD any_CPP17_000
// Presence of C++ library features:
#if any_HAVE_CONSTEXPR_11
# define any_constexpr constexpr
#else
# define any_constexpr /*constexpr*/
#endif
#if any_HAVE_CONSTEXPR_14
# define any_constexpr14 constexpr
#else
# define any_constexpr14 /*constexpr*/
#endif
#if any_HAVE_NOEXCEPT
# define any_noexcept noexcept
#else
# define any_noexcept /*noexcept*/
#endif
#if any_HAVE_NULLPTR
# define any_nullptr nullptr
#else
# define any_nullptr NULL
#endif
#if any_HAVE_NODISCARD
# define any_nodiscard [[nodiscard]]
#else
# define any_nodiscard /*[[nodiscard]]*/
#endif
// additional includes:
#if ! any_HAVE_NULLPTR
# include <cstddef>
#endif
#if any_HAVE_INITIALIZER_LIST
# include <initializer_list>
#endif
#if any_HAVE_TYPE_TRAITS
# include <type_traits>
#elif any_HAVE_TR1_TYPE_TRAITS
# include <tr1/type_traits>
#endif
//
// any:
//
namespace nonstd { namespace any_lite {
namespace detail {
// C++11 emulation:
#if any_HAVE_ADD_CONST
using std::add_const;
#elif any_HAVE_TR1_ADD_CONST
using std::tr1::add_const;
#else
template< class T > struct add_const { typedef const T type; };
#endif // any_HAVE_ADD_CONST
#if any_HAVE_REMOVE_REFERENCE
using std::remove_reference;
#elif any_HAVE_TR1_REMOVE_REFERENCE
using std::tr1::remove_reference;
#else
template< class T > struct remove_reference { typedef T type; };
template< class T > struct remove_reference<T&> { typedef T type; };
#endif // any_HAVE_REMOVE_REFERENCE
} // namespace detail
class bad_any_cast : public std::bad_cast
{
public:
#if any_CPP11_OR_GREATER
virtual const char* what() const any_noexcept
#else
virtual const char* what() const throw()
#endif
{
return "any-lite: bad any_cast";
}
};
class any
{
public:
any_constexpr any() any_noexcept
: content( any_nullptr )
{}
any( any const & other )
: content( other.content ? other.content->clone() : any_nullptr )
{}
#if any_CPP11_OR_GREATER
any( any && other ) any_noexcept
: content( std::move( other.content ) )
{
other.content = any_nullptr;
}
template<
class ValueType, class T = typename std::decay<ValueType>::type
, typename = typename std::enable_if< ! std::is_same<T, any>::value >::type
>
any( ValueType && value ) any_noexcept
: content( new holder<T>( std::move( value ) ) )
{}
template<
class T, class... Args
, typename = typename std::enable_if< std::is_constructible<T, Args...>::value >::type
>
explicit any( nonstd_lite_in_place_type_t(T), Args&&... args )
: content( new holder<T>( T( std::forward<Args>(args)... ) ) )
{}
template<
class T, class U, class... Args
, typename = typename std::enable_if< std::is_constructible<T, std::initializer_list<U>&, Args...>::value >::type
>
explicit any( nonstd_lite_in_place_type_t(T), std::initializer_list<U> il, Args&&... args )
: content( new holder<T>( T( il, std::forward<Args>(args)... ) ) )
{}
#else
template< class ValueType >
any( ValueType const & value )
: content( new holder<ValueType>( value ) )
{}
#endif // any_CPP11_OR_GREATER
~any()
{
reset();
}
any & operator=( any const & other )
{
any( other ).swap( *this );
return *this;
}
#if any_CPP11_OR_GREATER
any & operator=( any && other ) any_noexcept
{
any( std::move( other ) ).swap( *this );
return *this;
}
template<
class ValueType, class T = typename std::decay<ValueType>::type
, typename = typename std::enable_if< ! std::is_same<T, any>::value >::type
>
any & operator=( ValueType && value )
{
any( std::move( value ) ).swap( *this );
return *this;
}
template< class T, class... Args >
void emplace( Args && ... args )
{
any( T( std::forward<Args>(args)... ) ).swap( *this );
}
template<
class T, class U, class... Args
, typename = typename std::enable_if< std::is_constructible<T, std::initializer_list<U>&, Args...>::value >::type
>
void emplace( std::initializer_list<U> il, Args&&... args )
{
any( T( il, std::forward<Args>(args)... ) ).swap( *this );
}
#else
template< class ValueType >
any & operator=( ValueType const & value )
{
any( value ).swap( *this );
return *this;
}
#endif // any_CPP11_OR_GREATER
void reset() any_noexcept
{
delete content; content = any_nullptr;
}
void swap( any & other ) any_noexcept
{
std::swap( content, other.content );
}
bool has_value() const any_noexcept
{
return content != any_nullptr;
}
const std::type_info & type() const any_noexcept
{
return has_value() ? content->type() : typeid( void );
}
//
// non-standard:
//
template< class ValueType >
const ValueType * to_ptr() const
{
return &( static_cast<holder<ValueType> *>( content )->held );
}
template< class ValueType >
ValueType * to_ptr()
{
return &( static_cast<holder<ValueType> *>( content )->held );
}
private:
class placeholder
{
public:
virtual ~placeholder()
{
}
virtual std::type_info const & type() const = 0;
virtual placeholder * clone() const = 0;
};
template< typename ValueType >
class holder : public placeholder
{
public:
holder( ValueType const & value )
: held( value )
{}
#if any_CPP11_OR_GREATER
holder( ValueType && value )
: held( std::move( value ) )
{}
#endif
virtual std::type_info const & type() const
{
return typeid( ValueType );
}
virtual placeholder * clone() const
{
return new holder( held );
}
ValueType held;
};
placeholder * content;
};
inline void swap( any & x, any & y ) any_noexcept
{
x.swap( y );
}
#if any_CPP11_OR_GREATER
template< class T, class ...Args >
inline any make_any( Args&& ...args )
{
return any( nonstd_lite_in_place_type(T), std::forward<Args>(args)...);
}
template< class T, class U, class ...Args >
inline any make_any( std::initializer_list<U> il, Args&& ...args )
{
return any( nonstd_lite_in_place_type(T), il, std::forward<Args>(args)...);
}
#endif // any_CPP11_OR_GREATER
template<
class ValueType
#if any_HAVE_DEFAULT_FUNCTION_TEMPLATE_ARG
, typename = typename std::enable_if< std::is_reference<ValueType>::value || std::is_copy_constructible<ValueType>::value >::type
#endif
>
any_nodiscard inline ValueType any_cast( any const & operand )
{
const ValueType * result = any_cast< typename detail::add_const< typename detail::remove_reference<ValueType>::type >::type >( &operand );
if ( ! result )
{
throw bad_any_cast();
}
return *result;
}
template<
class ValueType
#if any_HAVE_DEFAULT_FUNCTION_TEMPLATE_ARG
, typename = typename std::enable_if< std::is_reference<ValueType>::value || std::is_copy_constructible<ValueType>::value >::type
#endif
>
any_nodiscard inline ValueType any_cast( any & operand )
{
const ValueType * result = any_cast< typename detail::remove_reference<ValueType>::type >( &operand );
if ( ! result )
{
throw bad_any_cast();
}
return *result;
}
#if any_CPP11_OR_GREATER
template<
class ValueType
#if any_HAVE_DEFAULT_FUNCTION_TEMPLATE_ARG
, typename = typename std::enable_if< std::is_reference<ValueType>::value || std::is_copy_constructible<ValueType>::value >::type
#endif
>
any_nodiscard inline ValueType any_cast( any && operand )
{
const ValueType * result = any_cast< typename detail::remove_reference<ValueType>::type >( &operand );
if ( ! result )
{
throw bad_any_cast();
}
return *result;
}
#endif // any_CPP11_OR_GREATER
template< class ValueType >
any_nodiscard inline ValueType const * any_cast( any const * operand ) any_noexcept
{
return operand != any_nullptr && operand->type() == typeid(ValueType) ? operand->to_ptr<ValueType>() : any_nullptr;
}
template<class ValueType >
any_nodiscard inline ValueType * any_cast( any * operand ) any_noexcept
{
return operand != any_nullptr && operand->type() == typeid(ValueType) ? operand->to_ptr<ValueType>() : any_nullptr;
}
} // namespace any_lite
using namespace any_lite;
} // namespace nonstd
#endif // any_USES_STD_ANY
#endif // NONSTD_ANY_LITE_HPP