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951 lines
24 KiB
951 lines
24 KiB
// Copyright (C) 2011 - 2012 Andrzej Krzemienski. |
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// |
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// Use, modification, and distribution is subject to the Boost Software |
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// License, Version 1.0. (See 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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// The idea and interface is based on Boost.Optional library |
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// authored by Fernando Luis Cacciola Carballal |
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# ifndef ___OPTIONAL_HPP___ |
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# define ___OPTIONAL_HPP___ |
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# include <utility> |
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# include <type_traits> |
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# include <initializer_list> |
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# include <cassert> |
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# include <functional> |
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# include <string> |
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# include <stdexcept> |
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# define REQUIRES(...) typename enable_if<__VA_ARGS__::value, bool>::type = false |
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# if defined __clang__ |
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# if (__clang_major__ >= 3) |
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# define OPTIONAL_HAS_USING 1 |
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# else |
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# define OPTIONAL_HAS_USING 0 |
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# endif |
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# if (__clang_major__ > 2) || (__clang_major__ == 2) && (__clang_minor__ >= 9) |
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# define OPTIONAL_HAS_THIS_RVALUE_REFS 1 |
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# else |
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# define OPTIONAL_HAS_THIS_RVALUE_REFS 0 |
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# endif |
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# elif defined __GNUC__ |
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# if (__GNUC__ > 4) || ((__GNUC__ == 4) && (__GNUC_MINOR__ >= 7)) |
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# define OPTIONAL_HAS_USING 1 |
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# else |
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# define OPTIONAL_HAS_USING 0 |
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# endif |
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# if (__GNUC__ > 4) || ((__GNUC__ == 4) && (__GNUC_MINOR__ > 8 || ((__GNUC_MINOR__ == 8) && (__GNUC_PATCHLEVEL__ >= 1)))) |
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# define OPTIONAL_HAS_THIS_RVALUE_REFS 1 |
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# else |
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# define OPTIONAL_HAS_THIS_RVALUE_REFS 0 |
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# endif |
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# else |
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# define OPTIONAL_HAS_THIS_RVALUE_REFS 0 |
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# define OPTIONAL_HAS_USING 0 |
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# endif |
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namespace std{ |
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# if (defined __GNUC__) && ((__GNUC__ > 4) || ((__GNUC__ == 4) && (__GNUC_MINOR__ >= 8))) |
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// leave it; our metafunctions are already defined. |
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# elif (defined __clang__) && ((__clang_major__ > 3) || (__clang_major__ == 3) && (__clang_minor__ >= 3)) |
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// leave it; our metafunctions are already defined. |
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# else |
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# if OPTIONAL_HAS_USING |
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// the only bit GCC 4.7 and clang 3.2 don't have |
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template <class T> |
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using is_trivially_destructible = typename std::has_trivial_destructor<T>; |
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# endif |
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# if (defined __GNUC__) && ((__GNUC__ > 4) || ((__GNUC__ == 4) && (__GNUC_MINOR__ >= 7))) |
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// leave it; remaining metafunctions are already defined. |
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# elif defined __clang__ |
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// leave it; remaining metafunctions are already defined. |
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# else |
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// workaround for missing traits in GCC and CLANG |
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template <class T> |
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struct is_nothrow_move_constructible |
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{ |
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constexpr static bool value = std::is_nothrow_constructible<T, T&&>::value; |
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}; |
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template <class T, class U> |
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struct is_assignable |
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{ |
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template <class X, class Y> |
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static constexpr bool has_assign(...) { return false; } |
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template <class X, class Y, size_t S = sizeof(std::declval<X>() = std::declval<Y>()) > |
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static constexpr bool has_assign(bool) { return true; } |
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constexpr static bool value = has_assign<T, U>(true); |
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}; |
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template <class T> |
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struct is_nothrow_move_assignable |
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{ |
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template <class X, bool has_any_move_massign> |
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struct has_nothrow_move_assign { |
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constexpr static bool value = false; |
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}; |
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template <class X> |
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struct has_nothrow_move_assign<X, true> { |
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constexpr static bool value = noexcept( std::declval<X&>() = std::declval<X&&>() ); |
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}; |
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constexpr static bool value = has_nothrow_move_assign<T, is_assignable<T&, T&&>::value>::value; |
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}; |
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// end workaround |
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# endif // not as good as GCC 4.7 |
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# endif // not as good as GCC 4.8 |
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// 20.5.4, optional for object types |
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template <class T> class optional; |
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// 20.5.5, optional for lvalue reference types |
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template <class T> class optional<T&>; |
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// workaround: std utility functions aren't constexpr yet |
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template <class T> inline constexpr T&& constexpr_forward(typename std::remove_reference<T>::type& t) noexcept |
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{ |
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return static_cast<T&&>(t); |
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} |
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template <class T> inline constexpr T&& constexpr_forward(typename std::remove_reference<T>::type&& t) noexcept |
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{ |
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static_assert(!std::is_lvalue_reference<T>::value, "!!"); |
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return static_cast<T&&>(t); |
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} |
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template <class T> inline constexpr typename std::remove_reference<T>::type&& constexpr_move(T&& t) noexcept |
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{ |
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return static_cast<typename std::remove_reference<T>::type&&>(t); |
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} |
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#if defined NDEBUG |
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# define ASSERTED_EXPRESSION(CHECK, EXPR) (EXPR) |
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#else |
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# define ASSERTED_EXPRESSION(CHECK, EXPR) ((CHECK) ? (EXPR) : (fail(#CHECK, __FILE__, __LINE__), (EXPR))) |
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inline void fail(const char* expr, const char* file, unsigned line) |
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{ |
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# if defined(EMSCRIPTEN) && EMSCRIPTEN |
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__assert_fail(expr, file, line, ""); |
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# elif defined __native_client__ |
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__assert(expr, line, file); // WHY. |
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# elif defined __clang__ || defined __GNU_LIBRARY__ |
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__assert(expr, file, line); |
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# elif defined __GNUC__ |
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_assert(expr, file, line); |
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# else |
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# error UNSUPPORTED COMPILER |
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# endif |
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} |
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#endif |
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template <typename T> |
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struct has_overloaded_addressof |
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{ |
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template <class X> |
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static constexpr bool has_overload(...) { return false; } |
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template <class X, size_t S = sizeof(std::declval< X&>().operator&()) > |
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static constexpr bool has_overload(bool) { return true; } |
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constexpr static bool value = has_overload<T>(true); |
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}; |
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template <typename T, REQUIRES(!has_overloaded_addressof<T>)> |
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constexpr T* static_addressof(T& ref) |
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{ |
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return &ref; |
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} |
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template <typename T, REQUIRES(has_overloaded_addressof<T>)> |
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T* static_addressof(T& ref) |
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{ |
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return std::addressof(ref); |
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} |
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template <class U> |
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struct is_not_optional |
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{ |
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constexpr static bool value = true; |
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}; |
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template <class T> |
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struct is_not_optional<optional<T>> |
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{ |
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constexpr static bool value = false; |
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}; |
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constexpr struct trivial_init_t{} trivial_init{}; |
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// 20.5.6, In-place construction |
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constexpr struct in_place_t{} in_place{}; |
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// 20.5.7, Disengaged state indicator |
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struct nullopt_t |
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{ |
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struct init{}; |
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constexpr nullopt_t(init){}; |
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}; |
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constexpr nullopt_t nullopt{nullopt_t::init{}}; |
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// 20.5.8, class bad_optional_access |
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class bad_optional_access : public logic_error { |
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public: |
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explicit bad_optional_access(const string& what_arg) : logic_error{what_arg} {} |
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explicit bad_optional_access(const char* what_arg) : logic_error{what_arg} {} |
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}; |
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template <class T> |
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union storage_t |
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{ |
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unsigned char dummy_; |
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T value_; |
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constexpr storage_t( trivial_init_t ) noexcept : dummy_() {}; |
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template <class... Args> |
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constexpr storage_t( Args&&... args ) : value_(constexpr_forward<Args>(args)...) {} |
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~storage_t(){} |
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}; |
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template <class T> |
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union constexpr_storage_t |
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{ |
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unsigned char dummy_; |
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T value_; |
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constexpr constexpr_storage_t( trivial_init_t ) noexcept : dummy_() {}; |
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template <class... Args> |
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constexpr constexpr_storage_t( Args&&... args ) : value_(constexpr_forward<Args>(args)...) {} |
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~constexpr_storage_t() = default; |
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}; |
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constexpr struct only_set_initialized_t{} only_set_initialized{}; |
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template <class T> |
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struct optional_base |
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{ |
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bool init_; |
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storage_t<T> storage_; |
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constexpr optional_base() noexcept : init_(false), storage_(trivial_init) {}; |
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constexpr explicit optional_base(only_set_initialized_t, bool init) noexcept : init_(init), storage_(trivial_init) {}; |
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explicit constexpr optional_base(const T& v) : init_(true), storage_(v) {} |
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explicit constexpr optional_base(T&& v) : init_(true), storage_(constexpr_move(v)) {} |
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template <class... Args> explicit optional_base(in_place_t, Args&&... args) |
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: init_(true), storage_(constexpr_forward<Args>(args)...) {} |
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template <class U, class... Args, REQUIRES(is_constructible<T, std::initializer_list<U>>)> |
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explicit optional_base(in_place_t, std::initializer_list<U> il, Args&&... args) |
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: init_(true), storage_(il, std::forward<Args>(args)...) {} |
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~optional_base() { if (init_) storage_.value_.T::~T(); } |
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}; |
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template <class T> |
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struct constexpr_optional_base |
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{ |
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bool init_; |
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constexpr_storage_t<T> storage_; |
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constexpr constexpr_optional_base() noexcept : init_(false), storage_(trivial_init) {}; |
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constexpr explicit constexpr_optional_base(only_set_initialized_t, bool init) noexcept : init_(init), storage_(trivial_init) {}; |
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explicit constexpr constexpr_optional_base(const T& v) : init_(true), storage_(v) {} |
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explicit constexpr constexpr_optional_base(T&& v) : init_(true), storage_(constexpr_move(v)) {} |
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template <class... Args> explicit constexpr constexpr_optional_base(in_place_t, Args&&... args) |
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: init_(true), storage_(constexpr_forward<Args>(args)...) {} |
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template <class U, class... Args, REQUIRES(is_constructible<T, std::initializer_list<U>>)> |
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explicit constexpr_optional_base(in_place_t, std::initializer_list<U> il, Args&&... args) |
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: init_(true), storage_(il, std::forward<Args>(args)...) {} |
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~constexpr_optional_base() = default; |
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}; |
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# if OPTIONAL_HAS_USING |
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template <class T> |
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using OptionalBase = typename std::conditional< |
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std::is_trivially_destructible<T>::value, |
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constexpr_optional_base<T>, |
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optional_base<T> |
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>::type; |
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# else |
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# define OptionalBase optional_base |
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# endif |
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template <class T> |
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class optional : private OptionalBase<T> |
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{ |
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static_assert( !std::is_same<typename std::decay<T>::type, nullopt_t>::value, "bad T" ); |
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static_assert( !std::is_same<typename std::decay<T>::type, in_place_t>::value, "bad T" ); |
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constexpr bool initialized() const noexcept { return OptionalBase<T>::init_; } |
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T* dataptr() { return std::addressof(OptionalBase<T>::storage_.value_); } |
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constexpr const T* dataptr() const { return static_addressof(OptionalBase<T>::storage_.value_); } |
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# if OPTIONAL_HAS_THIS_RVALUE_REFS == 1 |
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constexpr const T& contained_val() const& { return OptionalBase<T>::storage_.value_; } |
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T& contained_val() & { return OptionalBase<T>::storage_.value_; } |
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T&& contained_val() && { return std::move(OptionalBase<T>::storage_.value_); } |
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# else |
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constexpr const T& contained_val() const { return OptionalBase<T>::storage_.value_; } |
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T& contained_val() { return OptionalBase<T>::storage_.value_; } |
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# endif |
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void clear() noexcept { |
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if (initialized()) dataptr()->T::~T(); |
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OptionalBase<T>::init_ = false; |
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} |
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template <class... Args> |
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void initialize(Args&&... args) noexcept(noexcept(T(std::forward<Args>(args)...))) |
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{ |
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assert(!OptionalBase<T>::init_); |
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new (dataptr()) T(std::forward<Args>(args)...); |
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OptionalBase<T>::init_ = true; |
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} |
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template <class U, class... Args> |
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void initialize(std::initializer_list<U> il, Args&&... args) noexcept(noexcept(T(il, std::forward<Args>(args)...))) |
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{ |
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assert(!OptionalBase<T>::init_); |
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new (dataptr()) T(il, std::forward<Args>(args)...); |
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OptionalBase<T>::init_ = true; |
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} |
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public: |
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typedef T value_type; |
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// 20.5.5.1, constructors |
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constexpr optional() noexcept : OptionalBase<T>() {}; |
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constexpr optional(nullopt_t) noexcept : OptionalBase<T>() {}; |
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optional(const optional& rhs) |
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: OptionalBase<T>(only_set_initialized, rhs.initialized()) |
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{ |
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if (rhs.initialized()) new (dataptr()) T(*rhs); |
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} |
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optional(optional&& rhs) noexcept(std::is_nothrow_move_constructible<T>::value) |
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: OptionalBase<T>(only_set_initialized, rhs.initialized()) |
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{ |
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if (rhs.initialized()) new (dataptr()) T(std::move(*rhs)); |
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} |
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constexpr optional(const T& v) : OptionalBase<T>(v) {} |
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constexpr optional(T&& v) : OptionalBase<T>(constexpr_move(v)) {} |
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template <class... Args> |
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constexpr explicit optional(in_place_t, Args&&... args) |
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: OptionalBase<T>(in_place_t{}, constexpr_forward<Args>(args)...) {} |
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template <class U, class... Args, REQUIRES(is_constructible<T, std::initializer_list<U>>)> |
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explicit optional(in_place_t, std::initializer_list<U> il, Args&&... args) |
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: OptionalBase<T>(in_place_t{}, il, constexpr_forward<Args>(args)...) {} |
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// 20.5.4.2 Destructor |
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~optional() = default; |
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// 20.5.4.3, assignment |
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optional& operator=(nullopt_t) noexcept |
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{ |
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clear(); |
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return *this; |
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} |
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optional& operator=(const optional& rhs) |
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{ |
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if (initialized() == true && rhs.initialized() == false) clear(); |
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else if (initialized() == false && rhs.initialized() == true) initialize(*rhs); |
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else if (initialized() == true && rhs.initialized() == true) contained_val() = *rhs; |
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return *this; |
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} |
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optional& operator=(optional&& rhs) |
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noexcept(std::is_nothrow_move_assignable<T>::value && std::is_nothrow_move_constructible<T>::value) |
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{ |
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if (initialized() == true && rhs.initialized() == false) clear(); |
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else if (initialized() == false && rhs.initialized() == true) initialize(std::move(*rhs)); |
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else if (initialized() == true && rhs.initialized() == true) contained_val() = std::move(*rhs); |
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return *this; |
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} |
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template <class U> |
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auto operator=(U&& v) |
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-> typename enable_if |
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< |
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is_same<typename remove_reference<U>::type, T>::value, |
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optional& |
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>::type |
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{ |
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if (initialized()) { contained_val() = std::forward<U>(v); } |
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else { initialize(std::forward<U>(v)); } |
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return *this; |
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} |
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template <class... Args> |
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void emplace(Args&&... args) |
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{ |
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clear(); |
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initialize(std::forward<Args>(args)...); |
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} |
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template <class U, class... Args> |
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void emplace(initializer_list<U> il, Args&&... args) |
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{ |
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clear(); |
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initialize<U, Args...>(il, std::forward<Args>(args)...); |
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} |
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// 20.5.4.4 Swap |
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void swap(optional<T>& rhs) noexcept(is_nothrow_move_constructible<T>::value && noexcept(swap(declval<T&>(), declval<T&>()))) |
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{ |
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if (initialized() == true && rhs.initialized() == false) { rhs.initialize(std::move(**this)); clear(); } |
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else if (initialized() == false && rhs.initialized() == true) { initialize(std::move(*rhs)); rhs.clear(); } |
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else if (initialized() == true && rhs.initialized() == true) { using std::swap; swap(**this, *rhs); } |
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} |
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// 20.5.4.5 Observers |
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constexpr T const* operator ->() const { |
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return ASSERTED_EXPRESSION(initialized(), dataptr()); |
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} |
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T* operator ->() { |
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assert (initialized()); |
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return dataptr(); |
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} |
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constexpr T const& operator *() const { |
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return ASSERTED_EXPRESSION(initialized(), contained_val()); |
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} |
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T& operator *() { |
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assert (initialized()); |
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return contained_val(); |
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} |
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constexpr T const& value() const { |
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return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val()); |
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} |
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T& value() { |
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return initialized() ? contained_val() : (throw bad_optional_access("bad optional access"), contained_val()); |
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} |
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constexpr explicit operator bool() const noexcept { return initialized(); } |
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# if OPTIONAL_HAS_THIS_RVALUE_REFS == 1 |
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template <class V> |
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constexpr T value_or(V&& v) const& |
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{ |
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return *this ? **this : static_cast<T>(constexpr_forward<V>(v)); |
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} |
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template <class V> |
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T value_or(V&& v) && |
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{ |
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return *this ? std::move(const_cast<optional<T>&>(*this).contained_val()) : static_cast<T>(constexpr_forward<V>(v)); |
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} |
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# else |
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template <class V> |
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constexpr T value_or(V&& v) const |
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{ |
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return *this ? **this : static_cast<T>(constexpr_forward<V>(v)); |
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} |
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# endif |
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}; |
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template <class T> |
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class optional<T&> |
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{ |
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static_assert( !std::is_same<T, nullopt_t>::value, "bad T" ); |
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static_assert( !std::is_same<T, in_place_t>::value, "bad T" ); |
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T* ref; |
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public: |
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// 20.5.5.1, construction/destruction |
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constexpr optional() noexcept : ref(nullptr) {} |
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constexpr optional(nullopt_t) noexcept : ref(nullptr) {} |
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constexpr optional(T& v) noexcept : ref(static_addressof(v)) {} |
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optional(T&&) = delete; |
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constexpr optional(const optional& rhs) noexcept : ref(rhs.ref) {} |
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explicit constexpr optional(in_place_t, T& v) noexcept : ref(static_addressof(v)) {} |
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explicit optional(in_place_t, T&&) = delete; |
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~optional() = default; |
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// 20.5.5.2, mutation |
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optional& operator=(nullopt_t) noexcept { |
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ref = nullptr; |
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return *this; |
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} |
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// optional& operator=(const optional& rhs) noexcept { |
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// ref = rhs.ref; |
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// return *this; |
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// } |
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// optional& operator=(optional&& rhs) noexcept { |
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// ref = rhs.ref; |
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// return *this; |
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// } |
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template <typename U> |
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auto operator=(U&& rhs) noexcept |
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-> typename enable_if |
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< |
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is_same<typename decay<U>::type, optional<T&>>::value, |
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optional& |
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>::type |
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{ |
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ref = rhs.ref; |
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return *this; |
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} |
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template <typename U> |
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auto operator=(U&& rhs) noexcept |
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-> typename enable_if |
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< |
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!is_same<typename decay<U>::type, optional<T&>>::value, |
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optional& |
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>::type |
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= delete; |
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|
void emplace(T& v) noexcept { |
|
ref = static_addressof(v); |
|
} |
|
|
|
void emplace(T&&) = delete; |
|
|
|
|
|
void swap(optional<T&>& rhs) noexcept |
|
{ |
|
std::swap(ref, rhs.ref); |
|
} |
|
|
|
// 20.5.5.3, observers |
|
constexpr T* operator->() const { |
|
return ASSERTED_EXPRESSION(ref, ref); |
|
} |
|
|
|
constexpr T& operator*() const { |
|
return ASSERTED_EXPRESSION(ref, *ref); |
|
} |
|
|
|
constexpr T& value() const { |
|
return ref ? *ref : (throw bad_optional_access("bad optional access"), *ref); |
|
} |
|
|
|
explicit constexpr operator bool() const noexcept { |
|
return ref != nullptr; |
|
} |
|
|
|
template <class V> |
|
constexpr typename decay<T>::type value_or(V&& v) const |
|
{ |
|
return *this ? **this : static_cast<typename decay<T>::type>(constexpr_forward<V>(v)); |
|
} |
|
}; |
|
|
|
|
|
template <class T> |
|
class optional<T&&> |
|
{ |
|
static_assert( sizeof(T) == 0, "optional rvalue referencs disallowed" ); |
|
}; |
|
|
|
|
|
// 20.5.8, Relational operators |
|
template <class T> constexpr bool operator==(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return bool(x) != bool(y) ? false : bool(x) == false ? true : *x == *y; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return !(x == y); |
|
} |
|
|
|
template <class T> constexpr bool operator<(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return (!y) ? false : (!x) ? true : *x < *y; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return (y < x); |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return !(y < x); |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const optional<T>& x, const optional<T>& y) |
|
{ |
|
return !(x < y); |
|
} |
|
|
|
|
|
// 20.5.9 Comparison with nullopt |
|
template <class T> constexpr bool operator==(const optional<T>& x, nullopt_t) noexcept |
|
{ |
|
return (!x); |
|
} |
|
|
|
template <class T> constexpr bool operator==(nullopt_t, const optional<T>& x) noexcept |
|
{ |
|
return (!x); |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const optional<T>& x, nullopt_t) noexcept |
|
{ |
|
return bool(x); |
|
} |
|
|
|
template <class T> constexpr bool operator!=(nullopt_t, const optional<T>& x) noexcept |
|
{ |
|
return bool(x); |
|
} |
|
|
|
template <class T> constexpr bool operator<(const optional<T>&, nullopt_t) noexcept |
|
{ |
|
return false; |
|
} |
|
|
|
template <class T> constexpr bool operator<(nullopt_t, const optional<T>& x) noexcept |
|
{ |
|
return bool(x); |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const optional<T>& x, nullopt_t) noexcept |
|
{ |
|
return (!x); |
|
} |
|
|
|
template <class T> constexpr bool operator<=(nullopt_t, const optional<T>&) noexcept |
|
{ |
|
return true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const optional<T>& x, nullopt_t) noexcept |
|
{ |
|
return bool(x); |
|
} |
|
|
|
template <class T> constexpr bool operator>(nullopt_t, const optional<T>&) noexcept |
|
{ |
|
return false; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const optional<T>&, nullopt_t) noexcept |
|
{ |
|
return true; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(nullopt_t, const optional<T>& x) noexcept |
|
{ |
|
return (!x); |
|
} |
|
|
|
|
|
|
|
// 20.5.10, Comparison with T |
|
template <class T> constexpr bool operator==(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x == v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator==(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v == *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x != v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v != *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x < v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v > *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x > v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v < *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x >= v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v <= *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const optional<T>& x, const T& v) |
|
{ |
|
return bool(x) ? *x <= v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const T& v, const optional<T>& x) |
|
{ |
|
return bool(x) ? v >= *x : true; |
|
} |
|
|
|
|
|
// Comparison of optionsl<T&> with T |
|
template <class T> constexpr bool operator==(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x == v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator==(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v == *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x != v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v != *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x < v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v > *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x > v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v < *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x >= v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v <= *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const optional<T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x <= v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const T& v, const optional<T&>& x) |
|
{ |
|
return bool(x) ? v >= *x : true; |
|
} |
|
|
|
// Comparison of optionsl<T const&> with T |
|
template <class T> constexpr bool operator==(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x == v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator==(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v == *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x != v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator!=(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v != *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x < v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v > *x : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x > v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v < *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x >= v : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v <= *x : false; |
|
} |
|
|
|
template <class T> constexpr bool operator<=(const optional<const T&>& x, const T& v) |
|
{ |
|
return bool(x) ? *x <= v : true; |
|
} |
|
|
|
template <class T> constexpr bool operator>=(const T& v, const optional<const T&>& x) |
|
{ |
|
return bool(x) ? v >= *x : true; |
|
} |
|
|
|
|
|
// 20.5.12 Specialized algorithms |
|
template <class T> |
|
void swap(optional<T>& x, optional<T>& y) noexcept(noexcept(x.swap(y))) |
|
{ |
|
x.swap(y); |
|
} |
|
|
|
|
|
template <class T> |
|
constexpr optional<typename decay<T>::type> make_optional(T&& v) |
|
{ |
|
return optional<typename decay<T>::type>(constexpr_forward<T>(v)); |
|
} |
|
|
|
template <class X> |
|
constexpr optional<X&> make_optional(reference_wrapper<X> v) |
|
{ |
|
return optional<X&>(v.get()); |
|
} |
|
|
|
|
|
} // namespace std |
|
|
|
namespace std |
|
{ |
|
template <typename T> |
|
struct hash<std::optional<T>> |
|
{ |
|
typedef typename hash<T>::result_type result_type; |
|
typedef std::optional<T> argument_type; |
|
|
|
constexpr result_type operator()(argument_type const& arg) const { |
|
return arg ? std::hash<T>{}(*arg) : result_type{}; |
|
} |
|
}; |
|
|
|
template <typename T> |
|
struct hash<std::optional<T&>> |
|
{ |
|
typedef typename hash<T>::result_type result_type; |
|
typedef std::optional<T&> argument_type; |
|
|
|
constexpr result_type operator()(argument_type const& arg) const { |
|
return arg ? std::hash<T>{}(*arg) : result_type{}; |
|
} |
|
}; |
|
} |
|
|
|
#ifdef OptionalBase |
|
# undef OptionalBase |
|
#endif |
|
|
|
# endif //___OPTIONAL_HPP___
|
|
|