type_traits: tuple-like type support for is_equality_comparable[_v]
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@@ -446,6 +446,14 @@ struct is_complete<Type, std::void_t<decltype(sizeof(Type))>>: std::true_type {}
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template<typename Type>
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inline constexpr bool is_complete_v = is_complete<Type>::value;
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/**
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* @brief Provides the member constant `value` to true if a given type is an
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* iterator, false otherwise.
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* @tparam Type The type to test.
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*/
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template<typename Type, typename = void>
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struct is_iterator: std::false_type {};
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/**
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* @cond TURN_OFF_DOXYGEN
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* Internal details not to be documented.
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@@ -454,10 +462,10 @@ inline constexpr bool is_complete_v = is_complete<Type>::value;
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namespace internal {
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template<typename, typename = void>
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struct is_iterator: std::false_type {};
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struct has_iterator_category: std::false_type {};
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template<typename Type>
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struct is_iterator<Type, std::void_t<typename std::iterator_traits<Type>::iterator_category>>: std::true_type {};
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struct has_iterator_category<Type, std::void_t<typename std::iterator_traits<Type>::iterator_category>>: std::true_type {};
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} // namespace internal
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@@ -466,18 +474,10 @@ struct is_iterator<Type, std::void_t<typename std::iterator_traits<Type>::iterat
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* @endcond
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*/
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/**
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* @brief Provides the member constant `value` to true if a given type is an
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* iterator, false otherwise.
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* @tparam Type The type to test.
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*/
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template<typename Type, typename = void>
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struct is_iterator: std::false_type {};
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/*! @copydoc is_iterator */
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template<typename Type>
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struct is_iterator<Type, std::enable_if_t<!std::is_same_v<std::remove_const_t<std::remove_pointer_t<Type>>, void>>>
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: internal::is_iterator<Type> {};
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: internal::has_iterator_category<Type> {};
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/**
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* @brief Helper variable template.
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@@ -548,6 +548,14 @@ struct is_transparent<Type, std::void_t<typename Type::is_transparent>>: std::tr
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template<typename Type>
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inline constexpr bool is_transparent_v = is_transparent<Type>::value;
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/**
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* @brief Provides the member constant `value` to true if a given type is
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* equality comparable, false otherwise.
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* @tparam Type The type to test.
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*/
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template<typename Type, typename = void>
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struct is_equality_comparable: std::false_type {};
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/**
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* @cond TURN_OFF_DOXYGEN
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* Internal details not to be documented.
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@@ -555,30 +563,40 @@ inline constexpr bool is_transparent_v = is_transparent<Type>::value;
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namespace internal {
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template<typename>
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[[nodiscard]] constexpr bool is_equality_comparable(...) {
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return false;
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}
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template<typename, typename = void>
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struct has_tuple_size_value: std::false_type {};
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template<typename Type>
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[[nodiscard]] constexpr auto is_equality_comparable(choice_t<0>) -> decltype(std::declval<Type>() == std::declval<Type>()) {
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struct has_tuple_size_value<Type, std::void_t<decltype(std::tuple_size<const Type>::value)>>: std::true_type {};
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template<typename Type, std::size_t... Index>
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[[nodiscard]] constexpr bool unpack_maybe_equality_comparable(std::index_sequence<Index...>) {
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return (is_equality_comparable<std::tuple_element_t<Index, Type>>::value && ...);
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}
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template<typename>
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[[nodiscard]] constexpr bool maybe_equality_comparable(choice_t<0>) {
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return true;
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}
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template<typename Type>
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[[nodiscard]] constexpr auto is_equality_comparable(choice_t<1>) -> decltype(std::declval<typename Type::value_type>(), std::declval<Type>() == std::declval<Type>()) {
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[[nodiscard]] constexpr auto maybe_equality_comparable(choice_t<1>) -> decltype(std::declval<typename Type::value_type>(), bool{}) {
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if constexpr(is_iterator_v<Type>) {
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return true;
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} else if constexpr(std::is_same_v<typename Type::value_type, Type>) {
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return is_equality_comparable<Type>(choice<0>);
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return maybe_equality_comparable<Type>(choice<0>);
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} else {
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return is_equality_comparable<typename Type::value_type>(choice<2>);
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return is_equality_comparable<typename Type::value_type>::value;
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}
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}
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template<typename Type>
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[[nodiscard]] constexpr auto is_equality_comparable(choice_t<2>) -> decltype(std::declval<typename Type::mapped_type>(), std::declval<Type>() == std::declval<Type>()) {
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return is_equality_comparable<typename Type::key_type>(choice<2>) && is_equality_comparable<typename Type::mapped_type>(choice<2>);
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[[nodiscard]] constexpr std::enable_if_t<is_complete_v<std::tuple_size<std::remove_const_t<Type>>>, bool> maybe_equality_comparable(choice_t<2>) {
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if constexpr(has_tuple_size_value<Type>::value) {
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return unpack_maybe_equality_comparable<Type>(std::make_index_sequence<std::tuple_size<Type>::value>{});
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} else {
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return maybe_equality_comparable<Type>(choice<1>);
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}
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}
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} // namespace internal
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@@ -588,13 +606,10 @@ template<typename Type>
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* @endcond
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*/
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/**
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* @brief Provides the member constant `value` to true if a given type is
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* equality comparable, false otherwise.
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* @tparam Type The type to test.
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*/
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template<typename Type, typename = void>
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struct is_equality_comparable: std::bool_constant<internal::is_equality_comparable<Type>(choice<2>)> {};
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/*! @copydoc is_equality_comparable */
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template<typename Type>
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struct is_equality_comparable<Type, std::void_t<decltype(std::declval<Type>() == std::declval<Type>())>>
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: std::bool_constant<internal::maybe_equality_comparable<Type>(choice<2>)> {};
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/**
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* @brief Helper variable template.
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@@ -105,18 +105,24 @@ TEST(TypeTraits, ValueList) {
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TEST(TypeTraits, IsEqualityComparable) {
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static_assert(entt::is_equality_comparable_v<int>);
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static_assert(entt::is_equality_comparable_v<const int>);
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static_assert(entt::is_equality_comparable_v<std::vector<int>>);
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static_assert(entt::is_equality_comparable_v<std::vector<std::vector<int>>>);
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static_assert(entt::is_equality_comparable_v<std::unordered_map<int, int>>);
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static_assert(entt::is_equality_comparable_v<std::unordered_map<int, std::unordered_map<int, char>>>);
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static_assert(entt::is_equality_comparable_v<std::pair<const int, int>>);
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static_assert(entt::is_equality_comparable_v<std::pair<const int, std::unordered_map<int, char>>>);
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static_assert(entt::is_equality_comparable_v<std::vector<not_comparable>::iterator>);
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static_assert(entt::is_equality_comparable_v<nlohmann_json_like>);
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static_assert(!entt::is_equality_comparable_v<not_comparable>);
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static_assert(!entt::is_equality_comparable_v<const not_comparable>);
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static_assert(!entt::is_equality_comparable_v<std::vector<not_comparable>>);
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static_assert(!entt::is_equality_comparable_v<std::vector<std::vector<not_comparable>>>);
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static_assert(!entt::is_equality_comparable_v<std::unordered_map<int, not_comparable>>);
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static_assert(!entt::is_equality_comparable_v<std::unordered_map<int, std::unordered_map<int, not_comparable>>>);
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static_assert(!entt::is_equality_comparable_v<std::pair<const int, not_comparable>>);
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static_assert(!entt::is_equality_comparable_v<std::pair<const int, std::unordered_map<int, not_comparable>>>);
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static_assert(!entt::is_equality_comparable_v<void>);
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}
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@@ -136,10 +142,11 @@ TEST(TypeTraits, IsComplete) {
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TEST(TypeTraits, IsIterator) {
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static_assert(!entt::is_iterator_v<void>);
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static_assert(!entt::is_iterator_v<void *>);
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static_assert(!entt::is_iterator_v<int>);
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static_assert(!entt::is_iterator_v<void *>);
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static_assert(entt::is_iterator_v<int *>);
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static_assert(entt::is_iterator_v<std::vector<int>::iterator>);
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static_assert(entt::is_iterator_v<std::vector<int>::const_iterator>);
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static_assert(entt::is_iterator_v<std::vector<int>::reverse_iterator>);
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