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https://github.com/Neargye/magic_enum.git
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wip new version
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1 changed files with 40 additions and 26 deletions
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@ -78,18 +78,20 @@ static_assert(MAGIC_ENUM_RANGE_MIN > std::numeric_limits<int>::min(),
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namespace detail {
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template <typename E, typename U = std::underlying_type_t<E>>
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template <typename E>
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[[nodiscard]] constexpr int min_impl() {
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static_assert(std::is_enum_v<E>, "magic_enum::detail::min_impl requires enum type.");
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using U = std::underlying_type_t<E>;
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constexpr int min = enum_range<E>::min > (std::numeric_limits<U>::min)() ? enum_range<E>::min : (std::numeric_limits<U>::min)();
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return min;
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}
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template <typename E, typename U = std::underlying_type_t<E>>
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template <typename E>
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[[nodiscard]] constexpr auto range_impl() {
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static_assert(std::is_enum_v<E>, "magic_enum::detail::range_impl requires enum type.");
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static_assert(enum_range<E>::max > enum_range<E>::min, "magic_enum::enum_range requires max > min.");
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using U = std::underlying_type_t<E>;
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constexpr int max = enum_range<E>::max < (std::numeric_limits<U>::max)() ? enum_range<E>::max : (std::numeric_limits<U>::max)();
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constexpr auto range = std::make_integer_sequence<int, max - min_impl<E>() + 1>{};
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@ -176,7 +178,7 @@ template <typename E, std::size_t... I>
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}
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template<typename T>
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using enable_if_enum_t = typename std::enable_if<std::is_enum_v<std::decay_t<T>>>::type;
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using enable_if_enum_t = std::enable_if_t<std::is_enum_v<std::decay_t<T>>>;
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template<typename T, bool = std::is_enum_v<T>>
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struct is_scoped_enum_impl : std::false_type {};
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@ -209,12 +211,14 @@ template <typename T>
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inline constexpr bool is_scoped_enum_v = is_scoped_enum<T>::value;
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// Obtains enum value from enum string name.
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// Returns std::optional with enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr std::optional<E> enum_cast(std::string_view value) noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_cast requires enum type.");
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constexpr auto values = detail::values_impl<E>(detail::range_impl<E>());
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[[nodiscard]] constexpr std::optional<std::decay_t<E>> enum_cast(std::string_view value) noexcept {
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_cast requires enum type.");
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constexpr auto values = detail::values_impl<D>(detail::range_impl<D>());
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constexpr auto count = values.size();
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constexpr auto names = detail::names_impl<E>(std::make_index_sequence<count>{});
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constexpr auto names = detail::names_impl<D>(std::make_index_sequence<count>{});
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for (std::size_t i = 0; i < count; ++i) {
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if (names[i] == value) {
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@ -226,14 +230,16 @@ template <typename E, typename = detail::enable_if_enum_t<E>>
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}
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// Obtains enum value from integer value.
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// Returns std::optional with enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr std::optional<E> enum_cast(std::underlying_type_t<E> value) noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_cast requires enum type.");
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[[nodiscard]] constexpr std::optional<std::decay_t<E>> enum_cast(std::underlying_type_t<std::decay_t<E>> value) noexcept {
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_cast requires enum type.");
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if (detail::name_impl<E>(static_cast<int>(value)).empty()) {
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if (detail::name_impl<D>(static_cast<int>(value)).empty()) {
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return std::nullopt; // Invalid value or out of range.
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} else {
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return static_cast<E>(value);
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return static_cast<D>(value);
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}
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}
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@ -249,32 +255,36 @@ template <typename E, typename = detail::enable_if_enum_t<E>>
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// Returns enum value at specified index.
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// No bounds checking is performed: the behavior is undefined if index >= number of enum values.
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template<typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr E enum_value(std::size_t index) {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_value requires enum type.");
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constexpr auto values = detail::values_impl<E>(detail::range_impl<E>());
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[[nodiscard]] constexpr auto enum_value(std::size_t index) {
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_value requires enum type.");
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constexpr auto values = detail::values_impl<D>(detail::range_impl<D>());
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return assert(index < values.size()), values[index];
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}
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// Obtains value enum sequence.
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// Returns std::array with enum values, sorted by enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr auto enum_values() noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_values requires enum type.");
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constexpr auto values = detail::values_impl<E>(detail::range_impl<E>());
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_values requires enum type.");
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constexpr auto values = detail::values_impl<D>(detail::range_impl<D>());
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return values;
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}
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// Returns number of enum values.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr std::size_t enum_count() noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_count requires enum type.");
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constexpr auto count = detail::values_impl<E>(detail::range_impl<E>()).size();
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[[nodiscard]] constexpr auto enum_count() noexcept {
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_count requires enum type.");
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constexpr auto count = detail::values_impl<D>(detail::range_impl<D>()).size();
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return count;
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}
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// Obtains string enum name from enum value.
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// Returns string enum name from enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr std::string_view enum_name(E value) noexcept {
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using D = std::decay_t<E>;
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@ -284,21 +294,25 @@ template <typename E, typename = detail::enable_if_enum_t<E>>
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}
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// Obtains string enum name sequence.
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// Returns std::array with string enum names, sorted by enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr auto enum_names() noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_names requires enum type.");
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constexpr auto count = detail::values_impl<E>(detail::range_impl<E>()).size();
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constexpr auto names = detail::names_impl<E>(std::make_index_sequence<count>{});
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_names requires enum type.");
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constexpr auto count = detail::values_impl<D>(detail::range_impl<D>()).size();
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constexpr auto names = detail::names_impl<D>(std::make_index_sequence<count>{});
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return names;
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}
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// Obtains pair (value enum, string enum name) sequence.
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// Returns std::array with std::pair (value enum, string enum name), sorted by enum value.
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template <typename E, typename = detail::enable_if_enum_t<E>>
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[[nodiscard]] constexpr auto enum_entries() noexcept {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_entries requires enum type.");
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constexpr auto count = detail::values_impl<E>(detail::range_impl<E>()).size();
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constexpr auto entries = detail::entries_impl<E>(std::make_index_sequence<count>{});
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using D = std::decay_t<E>;
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static_assert(std::is_enum_v<D>, "magic_enum::enum_entries requires enum type.");
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constexpr auto count = detail::values_impl<D>(detail::range_impl<D>()).size();
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constexpr auto entries = detail::entries_impl<D>(std::make_index_sequence<count>{});
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return entries;
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}
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