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https://github.com/Neargye/magic_enum.git
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clean-up cast, size check
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00f46ae79c
commit
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1 changed files with 33 additions and 32 deletions
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@ -65,7 +65,7 @@ namespace magic_enum {
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// If need another range for all enum types by default, redefine the macro MAGIC_ENUM_RANGE_MIN and MAGIC_ENUM_RANGE_MAX.
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// If need another range for specific enum type, add specialization enum_range for necessary enum type.
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template <typename E>
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struct enum_range final {
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struct enum_range {
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static_assert(std::is_enum_v<E>, "magic_enum::enum_range requires enum type.");
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inline static constexpr int min = MAGIC_ENUM_RANGE_MIN;
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inline static constexpr int max = MAGIC_ENUM_RANGE_MAX;
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@ -83,7 +83,7 @@ static_assert(MAGIC_ENUM_RANGE_MAX > MAGIC_ENUM_RANGE_MIN, "MAGIC_ENUM_RANGE_MAX
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namespace detail {
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template <typename T>
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struct supported final
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struct supported
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#if defined(MAGIC_ENUM_SUPPORTED) && MAGIC_ENUM_SUPPORTED || defined(MAGIC_ENUM_NO_CHECK_SUPPORT)
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: std::true_type {};
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#else
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@ -94,7 +94,7 @@ template <typename T>
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inline constexpr bool is_enum_v = std::is_enum_v<T> && std::is_same_v<T, std::decay_t<T>>;
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template <std::size_t N>
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struct static_string final {
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struct static_string {
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constexpr static_string(std::string_view str) noexcept : static_string{str, std::make_index_sequence<N>{}} {}
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constexpr const char* data() const noexcept { return chars.data(); }
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@ -111,7 +111,7 @@ struct static_string final {
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};
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template <>
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struct static_string<0> final {
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struct static_string<0> {
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constexpr static_string(std::string_view) noexcept {}
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constexpr const char* data() const noexcept { return nullptr; }
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@ -157,20 +157,6 @@ constexpr bool mixed_sign_less(L lhs, R rhs) noexcept {
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}
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}
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template <typename L, typename R>
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constexpr int mixed_sign_min_as_int(L lhs, R rhs) noexcept {
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static_assert(std::is_integral_v<L> && std::is_integral_v<R>, "magic_enum::detail::mixed_sign_min_as_int requires integral type.");
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return mixed_sign_less(lhs, rhs) ? static_cast<int>(lhs) : static_cast<int>(rhs);
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}
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template <typename L, typename R>
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constexpr int mixed_sign_max_as_int(L lhs, R rhs) noexcept {
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static_assert(std::is_integral_v<L> && std::is_integral_v<R>, "magic_enum::detail::mixed_sign_max_as_int requires integral type.");
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return mixed_sign_less(lhs, rhs) ? static_cast<int>(rhs) : static_cast<int>(lhs);
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}
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template <typename E>
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constexpr auto n() noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::n requires enum type.");
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@ -212,20 +198,38 @@ template <typename E, E V>
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inline constexpr auto name_v = n<E, V>();
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template <typename E>
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inline constexpr int reflected_min_v = mixed_sign_max_as_int(enum_range<E>::min, (std::numeric_limits<std::underlying_type_t<E>>::min)());
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constexpr int reflected_min() noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::reflected_min requires enum type.");
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constexpr auto lhs = enum_range<E>::min;
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static_assert(lhs > (std::numeric_limits<std::int16_t>::min)(), "magic_enum::enum_range requires min must be greater than INT16_MIN.");
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constexpr auto rhs = (std::numeric_limits<std::underlying_type_t<E>>::min)();
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return mixed_sign_less(lhs, rhs) ? rhs : lhs;
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}
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template <typename E>
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inline constexpr int reflected_max_v = mixed_sign_min_as_int(enum_range<E>::max, (std::numeric_limits<std::underlying_type_t<E>>::max)());
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constexpr int reflected_max() noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::reflected_max requires enum type.");
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constexpr auto lhs = enum_range<E>::max;
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static_assert(lhs < (std::numeric_limits<std::int16_t>::max)(), "magic_enum::enum_range requires max must be less than INT16_MAX.");
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constexpr auto rhs = (std::numeric_limits<std::underlying_type_t<E>>::max)();
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return mixed_sign_less(lhs, rhs) ? lhs : rhs;
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}
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template <typename E>
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constexpr std::size_t reflected_size() {
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inline constexpr int reflected_min_v = reflected_min<E>();
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template <typename E>
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inline constexpr int reflected_max_v = reflected_max<E>();
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template <typename E>
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constexpr std::size_t reflected_size() noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::reflected_size requires enum type.");
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static_assert(reflected_min_v<E> > (std::numeric_limits<std::int16_t>::min)(), "magic_enum::enum_range requires min must be greater than INT16_MIN.");
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static_assert(reflected_max_v<E> < (std::numeric_limits<std::int16_t>::max)(), "magic_enum::enum_range requires max must be less than INT16_MAX.");
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static_assert(reflected_max_v<E> > reflected_min_v<E>, "magic_enum::enum_range requires max > min.");
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constexpr auto size = reflected_max_v<E> - reflected_min_v<E> + 1;
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static_assert(size > 0, "magic_enum::enum_range requires valid size.");
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static_assert(size < (std::numeric_limits<std::int16_t>::max)(), "magic_enum::enum_range requires valid size.");
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static_assert(size < (std::numeric_limits<int>::max)(), "magic_enum::enum_range requires valid size.");
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return static_cast<std::size_t>(size);
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}
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@ -234,12 +238,12 @@ template <typename E, int... I>
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constexpr auto values(std::integer_sequence<int, I...>) noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::values requires enum type.");
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constexpr std::array<bool, sizeof...(I)> valid{{(n<E, static_cast<E>(I + reflected_min_v<E>)>().size() != 0)...}};
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constexpr std::size_t count = ((valid[I] ? 1 : 0) + ...);
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constexpr int count = ((valid[I] ? 1 : 0) + ...);
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std::array<E, count> values{};
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for (std::size_t i = 0, v = 0; v < count; ++i) {
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for (int i = 0, v = 0; v < count; ++i) {
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if (valid[i]) {
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values[v++] = static_cast<E>(static_cast<int>(i) + reflected_min_v<E>);
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values[v++] = static_cast<E>(i + reflected_min_v<E>);
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}
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}
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@ -263,7 +267,7 @@ constexpr std::size_t range_size() noexcept {
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static_assert(is_enum_v<E>, "magic_enum::detail::range_size requires enum type.");
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constexpr auto size = max_v<E> - min_v<E> + 1;
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static_assert(size > 0, "magic_enum::enum_range requires valid size.");
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static_assert(size < (std::numeric_limits<std::int16_t>::max)(), "magic_enum::enum_range requires valid size.");
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static_assert(size < (std::numeric_limits<std::uint16_t>::max)(), "magic_enum::enum_range requires valid size.");
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return static_cast<std::size_t>(size);
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}
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@ -360,7 +364,7 @@ struct enum_traits<E, std::enable_if_t<is_enum_v<E>>> {
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if constexpr (range_size_v<E> != count_v<E>) {
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return assert(index < count), values[index];
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} else {
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return assert(index < count), static_cast<E>(static_cast<int>(index) + min_v<E>);
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return assert(index < count), static_cast<E>(index + min_v<E>);
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}
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}
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@ -374,9 +378,6 @@ struct enum_traits<E, std::enable_if_t<is_enum_v<E>>> {
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private:
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static_assert(is_enum_v<E>, "magic_enum::enum_traits requires enum type.");
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static_assert(enum_range<E>::min > (std::numeric_limits<std::int16_t>::min)(), "magic_enum::enum_range requires min must be greater than INT16_MIN.");
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static_assert(enum_range<E>::max < (std::numeric_limits<std::int16_t>::max)(), "magic_enum::enum_range requires max must be less than INT16_MAX.");
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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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static_assert(count > 0, "magic_enum::enum_range requires enum implementation or valid max and min.");
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using U = underlying_type;
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inline static constexpr auto indexes = detail::indexes<E>(std::make_integer_sequence<int, range_size_v<E>>{});
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