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| #pragma once |
|
|
| #include <thrust/detail/config.h> |
|
|
| #if defined(_CCCL_IMPLICIT_SYSTEM_HEADER_GCC) |
| # pragma GCC system_header |
| #elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_CLANG) |
| # pragma clang system_header |
| #elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_MSVC) |
| # pragma system_header |
| #endif |
| #include <thrust/detail/cpp11_required.h> |
| #include <thrust/detail/type_traits.h> |
|
|
| #if THRUST_CPP_DIALECT >= 2011 |
|
|
| #include <thrust/addressof.h> |
| #include <thrust/swap.h> |
|
|
| #define THRUST_OPTIONAL_VERSION_MAJOR 0 |
| #define THRUST_OPTIONAL_VERSION_MINOR 2 |
|
|
| #include <exception> |
| #include <functional> |
| #include <new> |
| #include <type_traits> |
| #include <utility> |
|
|
| #if (THRUST_HOST_COMPILER == THRUST_HOST_COMPILER_MSVC && _MSC_VER == 1900) |
| #define THRUST_OPTIONAL_MSVC2015 |
| #endif |
|
|
| #if (defined(__GNUC__) && __GNUC__ == 4 && __GNUC_MINOR__ <= 9 && \ |
| !defined(__clang__)) |
| #define THRUST_OPTIONAL_GCC49 |
| #endif |
|
|
| #if (defined(__GNUC__) && __GNUC__ == 5 && __GNUC_MINOR__ <= 4 && \ |
| !defined(__clang__)) |
| #define THRUST_OPTIONAL_GCC54 |
| #endif |
|
|
| #if (defined(__GNUC__) && __GNUC__ == 5 && __GNUC_MINOR__ <= 5 && \ |
| !defined(__clang__)) |
| #define THRUST_OPTIONAL_GCC55 |
| #endif |
|
|
| #if (defined(__GNUC__) && __GNUC__ == 4 && __GNUC_MINOR__ <= 9 && \ |
| !defined(__clang__)) |
| |
| #define THRUST_OPTIONAL_NO_CONSTRR |
|
|
| |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T) \ |
| std::has_trivial_copy_constructor<T>::value |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_ASSIGNABLE(T) std::has_trivial_copy_assign<T>::value |
|
|
| |
| |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T) false |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_ASSIGNABLE(T) false |
|
|
| |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T) std::is_trivially_destructible<T>::value |
|
|
| |
| |
| #elif (defined(__GNUC__) && __GNUC__ < 8 && \ |
| !defined(__clang__)) |
| #ifndef THRUST_GCC_LESS_8_TRIVIALLY_COPY_CONSTRUCTIBLE_MUTEX |
| #define THRUST_GCC_LESS_8_TRIVIALLY_COPY_CONSTRUCTIBLE_MUTEX |
| THRUST_NAMESPACE_BEGIN |
| namespace detail { |
| template<class T> |
| struct is_trivially_copy_constructible : std::is_trivially_copy_constructible<T>{}; |
| #ifdef _GLIBCXX_VECTOR |
| template<class T, class A> |
| struct is_trivially_copy_constructible<std::vector<T,A>> |
| : std::is_trivially_copy_constructible<T>{}; |
| #endif |
| } |
| THRUST_NAMESPACE_END |
| #endif |
|
|
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T) \ |
| thrust::detail::is_trivially_copy_constructible<T>::value |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_ASSIGNABLE(T) \ |
| std::is_trivially_copy_assignable<T>::value |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T) \ |
| std::is_trivially_move_constructible<T>::value |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_ASSIGNABLE(T) \ |
| std::is_trivially_move_assignable<T>::value |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T) std::is_trivially_destructible<T>::value |
| #else |
|
|
| |
| |
| |
| |
|
|
| #ifndef __has_feature |
| #define __has_feature(x) 0 |
| #endif |
|
|
| #if defined(__GLIBCXX__) && __has_feature(is_trivially_constructible) |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T) \ |
| __is_trivially_constructible(T, T const&) |
| #else |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T) \ |
| std::is_trivially_copy_constructible<T>::value |
| #endif |
|
|
| #if defined(__GLIBCXX__) && __has_feature(is_trivially_assignable) |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_ASSIGNABLE(T) \ |
| __is_trivially_assignable(T&, T const&) |
| #else |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_COPY_ASSIGNABLE(T) \ |
| std::is_trivially_copy_assignable<T>::value |
| #endif |
|
|
| #if defined(__GLIBCXX__) && __has_feature(is_trivially_constructible) |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T) \ |
| __is_trivially_constructible(T, T&&) |
| #else |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T) \ |
| std::is_trivially_move_constructible<T>::value |
| #endif |
|
|
| #if defined(__GLIBCXX__) && __has_feature(is_trivially_assignable) |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_ASSIGNABLE(T) \ |
| __is_trivially_assignable(T&, T&&) |
| #else |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_ASSIGNABLE(T) \ |
| std::is_trivially_move_assignable<T>::value |
| #endif |
|
|
| #if defined(__GLIBCXX__) && __has_feature(is_trivially_destructible) |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T) \ |
| __is_trivially_destructible(T) |
| #else |
| #define THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T) \ |
| std::is_trivially_destructible<T>::value |
| #endif |
|
|
| #endif |
|
|
| #if THRUST_CPP_DIALECT > 2011 |
| #define THRUST_OPTIONAL_CPP14 |
| #endif |
|
|
| |
| #if (THRUST_CPP_DIALECT == 2011 || defined(THRUST_OPTIONAL_MSVC2015) || \ |
| defined(THRUST_OPTIONAL_GCC49)) |
| |
| #define THRUST_OPTIONAL_CPP11_CONSTEXPR |
| #else |
| |
| #define THRUST_OPTIONAL_CPP11_CONSTEXPR constexpr |
| #endif |
|
|
| THRUST_NAMESPACE_BEGIN |
|
|
| #ifndef THRUST_MONOSTATE_INPLACE_MUTEX |
| #define THRUST_MONOSTATE_INPLACE_MUTEX |
| |
| class monostate {}; |
|
|
| |
| struct in_place_t { |
| explicit in_place_t() = default; |
| }; |
| |
| static constexpr in_place_t in_place{}; |
| #endif |
|
|
| template <class T> class optional; |
|
|
| |
| namespace detail { |
| #ifndef THRUST_TRAITS_MUTEX |
| #define THRUST_TRAITS_MUTEX |
| |
| template <class T> using remove_const_t = typename std::remove_const<T>::type; |
| template <class T> |
| using remove_reference_t = typename std::remove_reference<T>::type; |
| template <class T> using decay_t = typename std::decay<T>::type; |
| template <bool E, class T = void> |
| using enable_if_t = typename std::enable_if<E, T>::type; |
| template <bool B, class T, class F> |
| using conditional_t = typename std::conditional<B, T, F>::type; |
|
|
| |
| template <class...> struct conjunction : std::true_type {}; |
| template <class B> struct conjunction<B> : B {}; |
| template <class B, class... Bs> |
| struct conjunction<B, Bs...> |
| : std::conditional<bool(B::value), conjunction<Bs...>, B>::type {}; |
|
|
| #if defined(_LIBCPP_VERSION) && THRUST_CPP_DIALECT == 2011 |
| #define THRUST_OPTIONAL_LIBCXX_MEM_FN_WORKAROUND |
| #endif |
|
|
| |
| |
| |
| #ifdef THRUST_OPTIONAL_LIBCXX_MEM_FN_WORKAROUND |
| template <class T> struct is_pointer_to_non_const_member_func : std::false_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...)> : std::true_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...)&> : std::true_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...)&&> : std::true_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...) volatile> : std::true_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...) volatile&> : std::true_type{}; |
| template <class T, class Ret, class... Args> |
| struct is_pointer_to_non_const_member_func<Ret (T::*) (Args...) volatile&&> : std::true_type{}; |
|
|
| template <class T> struct is_const_or_const_ref : std::false_type{}; |
| template <class T> struct is_const_or_const_ref<T const&> : std::true_type{}; |
| template <class T> struct is_const_or_const_ref<T const> : std::true_type{}; |
| #endif |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <typename Fn, typename... Args, |
| #ifdef THRUST_OPTIONAL_LIBCXX_MEM_FN_WORKAROUND |
| typename = enable_if_t<!(is_pointer_to_non_const_member_func<Fn>::value |
| && is_const_or_const_ref<Args...>::value)>, |
| #endif |
| typename = enable_if_t<std::is_member_pointer<decay_t<Fn>>::value>, |
| int = 0> |
| __host__ __device__ |
| constexpr auto invoke(Fn &&f, Args &&... args) |
| noexcept(noexcept(std::mem_fn(f)(std::forward<Args>(args)...))) |
| THRUST_TRAILING_RETURN(decltype(std::mem_fn(f)(std::forward<Args>(args)...))) |
| { |
| return std::mem_fn(f)(std::forward<Args>(args)...); |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <typename Fn, typename... Args, |
| typename = enable_if_t<!std::is_member_pointer<decay_t<Fn>>::value>> |
| __host__ __device__ |
| constexpr auto invoke(Fn &&f, Args &&... args) |
| noexcept(noexcept(std::forward<Fn>(f)(std::forward<Args>(args)...))) |
| THRUST_TRAILING_RETURN(decltype(std::forward<Fn>(f)(std::forward<Args>(args)...))) |
| { |
| return std::forward<Fn>(f)(std::forward<Args>(args)...); |
| } |
| #endif |
|
|
| |
| template <class...> struct voider { using type = void; }; |
| template <class... Ts> using void_t = typename voider<Ts...>::type; |
|
|
| |
| template <class T> struct is_optional_impl : std::false_type {}; |
| template <class T> struct is_optional_impl<optional<T>> : std::true_type {}; |
| template <class T> using is_optional = is_optional_impl<decay_t<T>>; |
|
|
| |
| template <class U> |
| using fixup_void = conditional_t<std::is_void<U>::value, monostate, U>; |
|
|
| template <class F, class U, class = invoke_result_t<F, U>> |
| using get_map_return = optional<fixup_void<invoke_result_t<F, U>>>; |
|
|
| |
| template <class F, class = void, class... U> struct returns_void_impl; |
| template <class F, class... U> |
| struct returns_void_impl<F, void_t<invoke_result_t<F, U...>>, U...> |
| : std::is_void<invoke_result_t<F, U...>> {}; |
| template <class F, class... U> |
| using returns_void = returns_void_impl<F, void, U...>; |
|
|
| template <class T, class... U> |
| using enable_if_ret_void = enable_if_t<returns_void<T &&, U...>::value>; |
|
|
| template <class T, class... U> |
| using disable_if_ret_void = enable_if_t<!returns_void<T &&, U...>::value>; |
|
|
| template <class T, class U> |
| using enable_forward_value = |
| detail::enable_if_t<std::is_constructible<T, U &&>::value && |
| !std::is_same<detail::decay_t<U>, in_place_t>::value && |
| !std::is_same<optional<T>, detail::decay_t<U>>::value>; |
|
|
| template <class T, class U, class Other> |
| using enable_from_other = detail::enable_if_t< |
| std::is_constructible<T, Other>::value && |
| !std::is_constructible<T, optional<U> &>::value && |
| !std::is_constructible<T, optional<U> &&>::value && |
| !std::is_constructible<T, const optional<U> &>::value && |
| !std::is_constructible<T, const optional<U> &&>::value && |
| !std::is_convertible<optional<U> &, T>::value && |
| !std::is_convertible<optional<U> &&, T>::value && |
| !std::is_convertible<const optional<U> &, T>::value && |
| !std::is_convertible<const optional<U> &&, T>::value>; |
|
|
| template <class T, class U> |
| using enable_assign_forward = detail::enable_if_t< |
| !std::is_same<optional<T>, detail::decay_t<U>>::value && |
| !detail::conjunction<std::is_scalar<T>, |
| std::is_same<T, detail::decay_t<U>>>::value && |
| std::is_constructible<T, U>::value && std::is_assignable<T &, U>::value>; |
|
|
| template <class T, class U, class Other> |
| using enable_assign_from_other = detail::enable_if_t< |
| std::is_constructible<T, Other>::value && |
| std::is_assignable<T &, Other>::value && |
| !std::is_constructible<T, optional<U> &>::value && |
| !std::is_constructible<T, optional<U> &&>::value && |
| !std::is_constructible<T, const optional<U> &>::value && |
| !std::is_constructible<T, const optional<U> &&>::value && |
| !std::is_convertible<optional<U> &, T>::value && |
| !std::is_convertible<optional<U> &&, T>::value && |
| !std::is_convertible<const optional<U> &, T>::value && |
| !std::is_convertible<const optional<U> &&, T>::value && |
| !std::is_assignable<T &, optional<U> &>::value && |
| !std::is_assignable<T &, optional<U> &&>::value && |
| !std::is_assignable<T &, const optional<U> &>::value && |
| !std::is_assignable<T &, const optional<U> &&>::value>; |
|
|
| #if THRUST_HOST_COMPILER == THRUST_HOST_COMPILER_MSVC |
| |
| template <class T, class U = T> struct is_swappable : std::true_type {}; |
|
|
| template <class T, class U = T> struct is_nothrow_swappable : std::true_type {}; |
| #else |
| |
| namespace swap_adl_tests { |
| |
| |
| struct tag {}; |
|
|
| template <class T> tag swap(T &, T &); |
| template <class T, std::size_t N> tag swap(T (&a)[N], T (&b)[N]); |
|
|
| |
| |
| template <class, class> std::false_type can_swap(...) noexcept(false); |
| template <class T, class U, |
| class = decltype(swap(std::declval<T &>(), std::declval<U &>()))> |
| std::true_type can_swap(int) noexcept(noexcept(swap(std::declval<T &>(), |
| std::declval<U &>()))); |
|
|
| template <class, class> std::false_type uses_std(...); |
| template <class T, class U> |
| std::is_same<decltype(swap(std::declval<T &>(), std::declval<U &>())), tag> |
| uses_std(int); |
|
|
| template <class T> |
| struct is_std_swap_noexcept |
| : std::integral_constant<bool, |
| std::is_nothrow_move_constructible<T>::value && |
| std::is_nothrow_move_assignable<T>::value> {}; |
|
|
| template <class T, std::size_t N> |
| struct is_std_swap_noexcept<T[N]> : is_std_swap_noexcept<T> {}; |
|
|
| template <class T, class U> |
| struct is_adl_swap_noexcept |
| : std::integral_constant<bool, noexcept(can_swap<T, U>(0))> {}; |
| } |
|
|
| template <class T, class U = T> |
| struct is_swappable |
| : std::integral_constant< |
| bool, |
| decltype(detail::swap_adl_tests::can_swap<T, U>(0))::value && |
| (!decltype(detail::swap_adl_tests::uses_std<T, U>(0))::value || |
| (std::is_move_assignable<T>::value && |
| std::is_move_constructible<T>::value))> {}; |
|
|
| template <class T, std::size_t N> |
| struct is_swappable<T[N], T[N]> |
| : std::integral_constant< |
| bool, |
| decltype(detail::swap_adl_tests::can_swap<T[N], T[N]>(0))::value && |
| (!decltype( |
| detail::swap_adl_tests::uses_std<T[N], T[N]>(0))::value || |
| is_swappable<T, T>::value)> {}; |
|
|
| template <class T, class U = T> |
| struct is_nothrow_swappable |
| : std::integral_constant< |
| bool, |
| is_swappable<T, U>::value && |
| ((decltype(detail::swap_adl_tests::uses_std<T, U>(0))::value |
| &&detail::swap_adl_tests::is_std_swap_noexcept<T>::value) || |
| (!decltype(detail::swap_adl_tests::uses_std<T, U>(0))::value && |
| detail::swap_adl_tests::is_adl_swap_noexcept<T, |
| U>::value))> { |
| }; |
| #endif |
|
|
| |
| |
| |
| template <class T, bool = ::std::is_trivially_destructible<T>::value> |
| struct optional_storage_base { |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional_storage_base() noexcept |
| : m_dummy(), m_has_value(false) {} |
|
|
| __thrust_exec_check_disable__ |
| template <class... U> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional_storage_base(in_place_t, U &&... u) |
| : m_value(std::forward<U>(u)...), m_has_value(true) {} |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| ~optional_storage_base() { |
| if (m_has_value) { |
| m_value.~T(); |
| m_has_value = false; |
| } |
| } |
|
|
| struct dummy {}; |
| union { |
| dummy m_dummy; |
| T m_value; |
| }; |
|
|
| bool m_has_value; |
| }; |
|
|
| |
| template <class T> struct optional_storage_base<T, true> { |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional_storage_base() noexcept |
| : m_dummy(), m_has_value(false) {} |
|
|
| __thrust_exec_check_disable__ |
| template <class... U> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional_storage_base(in_place_t, U &&... u) |
| : m_value(std::forward<U>(u)...), m_has_value(true) {} |
|
|
| |
|
|
| struct dummy {}; |
| union { |
| dummy m_dummy; |
| T m_value; |
| }; |
|
|
| bool m_has_value = false; |
| }; |
|
|
| |
| |
| template <class T> struct optional_operations_base : optional_storage_base<T> { |
| using optional_storage_base<T>::optional_storage_base; |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| void hard_reset() noexcept { |
| get().~T(); |
| this->m_has_value = false; |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class... Args> |
| __host__ __device__ |
| void construct(Args &&... args) noexcept { |
| new (thrust::addressof(this->m_value)) T(std::forward<Args>(args)...); |
| this->m_has_value = true; |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class Opt> |
| __host__ __device__ |
| void assign(Opt &&rhs) { |
| if (this->has_value()) { |
| if (rhs.has_value()) { |
| this->m_value = std::forward<Opt>(rhs).get(); |
| } else { |
| this->m_value.~T(); |
| this->m_has_value = false; |
| } |
| } |
|
|
| if (rhs.has_value()) { |
| construct(std::forward<Opt>(rhs).get()); |
| } |
| } |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| bool has_value() const { return this->m_has_value; } |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &get() & { return this->m_value; } |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR const T &get() const & { return this->m_value; } |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &&get() && { return std::move(this->m_value); } |
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T &&get() const && { return std::move(this->m_value); } |
| #endif |
| }; |
|
|
| |
| |
| template <class T, bool = THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T)> |
| struct optional_copy_base : optional_operations_base<T> { |
| using optional_operations_base<T>::optional_operations_base; |
| }; |
|
|
| |
| template <class T> |
| struct optional_copy_base<T, false> : optional_operations_base<T> { |
| using optional_operations_base<T>::optional_operations_base; |
|
|
| __thrust_exec_check_disable__ |
| optional_copy_base() = default; |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional_copy_base(const optional_copy_base &rhs) { |
| if (rhs.has_value()) { |
| this->construct(rhs.get()); |
| } else { |
| this->m_has_value = false; |
| } |
| } |
|
|
| __thrust_exec_check_disable__ |
| optional_copy_base(optional_copy_base &&rhs) = default; |
| __thrust_exec_check_disable__ |
| optional_copy_base &operator=(const optional_copy_base &rhs) = default; |
| __thrust_exec_check_disable__ |
| optional_copy_base &operator=(optional_copy_base &&rhs) = default; |
| }; |
|
|
| template <class T, bool = THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T)> |
| struct optional_move_base : optional_copy_base<T> { |
| using optional_copy_base<T>::optional_copy_base; |
| }; |
| template <class T> struct optional_move_base<T, false> : optional_copy_base<T> { |
| using optional_copy_base<T>::optional_copy_base; |
|
|
| __thrust_exec_check_disable__ |
| optional_move_base() = default; |
| __thrust_exec_check_disable__ |
| optional_move_base(const optional_move_base &rhs) = default; |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional_move_base(optional_move_base &&rhs) noexcept( |
| std::is_nothrow_move_constructible<T>::value) { |
| if (rhs.has_value()) { |
| this->construct(std::move(rhs.get())); |
| } else { |
| this->m_has_value = false; |
| } |
| } |
| __thrust_exec_check_disable__ |
| optional_move_base &operator=(const optional_move_base &rhs) = default; |
| __thrust_exec_check_disable__ |
| optional_move_base &operator=(optional_move_base &&rhs) = default; |
| }; |
|
|
| |
| template <class T, bool = THRUST_OPTIONAL_IS_TRIVIALLY_COPY_ASSIGNABLE(T) && |
| THRUST_OPTIONAL_IS_TRIVIALLY_COPY_CONSTRUCTIBLE(T) && |
| THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T)> |
| struct optional_copy_assign_base : optional_move_base<T> { |
| using optional_move_base<T>::optional_move_base; |
| }; |
|
|
| template <class T> |
| struct optional_copy_assign_base<T, false> : optional_move_base<T> { |
| using optional_move_base<T>::optional_move_base; |
|
|
| __thrust_exec_check_disable__ |
| optional_copy_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_copy_assign_base(const optional_copy_assign_base &rhs) = default; |
|
|
| __thrust_exec_check_disable__ |
| optional_copy_assign_base(optional_copy_assign_base &&rhs) = default; |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional_copy_assign_base &operator=(const optional_copy_assign_base &rhs) { |
| this->assign(rhs); |
| return *this; |
| } |
| __thrust_exec_check_disable__ |
| optional_copy_assign_base & |
| operator=(optional_copy_assign_base &&rhs) = default; |
| }; |
|
|
| template <class T, |
| bool = THRUST_OPTIONAL_IS_TRIVIALLY_DESTRUCTIBLE(T) && |
| THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_CONSTRUCTIBLE(T) && |
| THRUST_OPTIONAL_IS_TRIVIALLY_MOVE_ASSIGNABLE(T)> |
| struct optional_move_assign_base : optional_copy_assign_base<T> { |
| using optional_copy_assign_base<T>::optional_copy_assign_base; |
| }; |
|
|
| template <class T> |
| struct optional_move_assign_base<T, false> : optional_copy_assign_base<T> { |
| using optional_copy_assign_base<T>::optional_copy_assign_base; |
|
|
| __thrust_exec_check_disable__ |
| optional_move_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_move_assign_base(const optional_move_assign_base &rhs) = default; |
|
|
| __thrust_exec_check_disable__ |
| optional_move_assign_base(optional_move_assign_base &&rhs) = default; |
|
|
| __thrust_exec_check_disable__ |
| optional_move_assign_base & |
| operator=(const optional_move_assign_base &rhs) = default; |
|
|
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional_move_assign_base & |
| operator=(optional_move_assign_base &&rhs) noexcept( |
| std::is_nothrow_move_constructible<T>::value |
| &&std::is_nothrow_move_assignable<T>::value) { |
| this->assign(std::move(rhs)); |
| return *this; |
| } |
| }; |
|
|
| |
| |
| template <class T, bool EnableCopy = std::is_copy_constructible<T>::value, |
| bool EnableMove = std::is_move_constructible<T>::value> |
| struct optional_delete_ctor_base { |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(optional_delete_ctor_base &&) noexcept = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(optional_delete_ctor_base &&) noexcept = default; |
| }; |
|
|
| template <class T> struct optional_delete_ctor_base<T, true, false> { |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(optional_delete_ctor_base &&) noexcept = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(optional_delete_ctor_base &&) noexcept = default; |
| }; |
|
|
| template <class T> struct optional_delete_ctor_base<T, false, true> { |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(const optional_delete_ctor_base &) = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(optional_delete_ctor_base &&) noexcept = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(optional_delete_ctor_base &&) noexcept = default; |
| }; |
|
|
| template <class T> struct optional_delete_ctor_base<T, false, false> { |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(const optional_delete_ctor_base &) = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base(optional_delete_ctor_base &&) noexcept = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(const optional_delete_ctor_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_ctor_base & |
| operator=(optional_delete_ctor_base &&) noexcept = default; |
| }; |
|
|
| |
| |
| template <class T, |
| bool EnableCopy = (std::is_copy_constructible<T>::value && |
| std::is_copy_assignable<T>::value), |
| bool EnableMove = (std::is_move_constructible<T>::value && |
| std::is_move_assignable<T>::value)> |
| struct optional_delete_assign_base { |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(optional_delete_assign_base &&) noexcept = |
| default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(optional_delete_assign_base &&) noexcept = default; |
| }; |
|
|
| template <class T> struct optional_delete_assign_base<T, true, false> { |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(optional_delete_assign_base &&) noexcept = |
| default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(optional_delete_assign_base &&) noexcept = delete; |
| }; |
|
|
| template <class T> struct optional_delete_assign_base<T, false, true> { |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(optional_delete_assign_base &&) noexcept = |
| default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(const optional_delete_assign_base &) = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(optional_delete_assign_base &&) noexcept = default; |
| }; |
|
|
| template <class T> struct optional_delete_assign_base<T, false, false> { |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base() = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(const optional_delete_assign_base &) = default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base(optional_delete_assign_base &&) noexcept = |
| default; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(const optional_delete_assign_base &) = delete; |
| __thrust_exec_check_disable__ |
| optional_delete_assign_base & |
| operator=(optional_delete_assign_base &&) noexcept = delete; |
| }; |
|
|
| } |
|
|
| |
| struct nullopt_t { |
| struct do_not_use {}; |
| __host__ __device__ |
| constexpr explicit nullopt_t(do_not_use, do_not_use) noexcept {} |
| }; |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| static constexpr nullopt_t nullopt{nullopt_t::do_not_use{}, |
| nullopt_t::do_not_use{}}; |
|
|
| class bad_optional_access : public std::exception { |
| public: |
| bad_optional_access() = default; |
| __host__ |
| const char *what() const noexcept { return "Optional has no value"; } |
| }; |
|
|
| |
| |
| |
| |
| |
| |
| template <class T> |
| class optional : private detail::optional_move_assign_base<T>, |
| private detail::optional_delete_ctor_base<T>, |
| private detail::optional_delete_assign_base<T> { |
| using base = detail::optional_move_assign_base<T>; |
|
|
| static_assert(!std::is_same<T, in_place_t>::value, |
| "instantiation of optional with in_place_t is ill-formed"); |
| static_assert(!std::is_same<detail::decay_t<T>, nullopt_t>::value, |
| "instantiation of optional with nullopt_t is ill-formed"); |
|
|
| public: |
| |
| |
| |
| |
| #if defined(THRUST_OPTIONAL_CPP14) && !defined(THRUST_OPTIONAL_GCC49) && \ |
| !defined(THRUST_OPTIONAL_GCC54) && !defined(THRUST_OPTIONAL_GCC55) |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto and_then(F &&f) & { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto and_then(F &&f) && { |
| using result = detail::invoke_result_t<F, T &&>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto and_then(F &&f) const & { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto and_then(F &&f) const && { |
| using result = detail::invoke_result_t<F, const T &&>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : result(nullopt); |
| } |
| #endif |
| #else |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR detail::invoke_result_t<F, T &> and_then(F &&f) & { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR detail::invoke_result_t<F, T &&> and_then(F &&f) && { |
| using result = detail::invoke_result_t<F, T &&>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr detail::invoke_result_t<F, const T &> and_then(F &&f) const & { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr detail::invoke_result_t<F, const T &&> and_then(F &&f) const && { |
| using result = detail::invoke_result_t<F, const T &&>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : result(nullopt); |
| } |
| #endif |
| #endif |
|
|
| #if defined(THRUST_OPTIONAL_CPP14) && !defined(THRUST_OPTIONAL_GCC49) && \ |
| !defined(THRUST_OPTIONAL_GCC54) && !defined(THRUST_OPTIONAL_GCC55) |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto map(F &&f) & { |
| return optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto map(F &&f) && { |
| return optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto map(F &&f) const & { |
| return optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto map(F &&f) const && { |
| return optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
| #else |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR decltype(optional_map_impl(std::declval<optional &>(), |
| std::declval<F &&>())) |
| map(F &&f) & { |
| return optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR decltype(optional_map_impl(std::declval<optional &&>(), |
| std::declval<F &&>())) |
| map(F &&f) && { |
| return optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr decltype(optional_map_impl(std::declval<const optional &>(), |
| std::declval<F &&>())) |
| map(F &&f) const & { |
| return optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr decltype(optional_map_impl(std::declval<const optional &&>(), |
| std::declval<F &&>())) |
| map(F &&f) const && { |
| return optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
| #endif |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) & { |
| if (has_value()) |
| return *this; |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) & { |
| return has_value() ? *this : std::forward<F>(f)(); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) && { |
| if (has_value()) |
| return std::move(*this); |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) && { |
| return has_value() ? std::move(*this) : std::forward<F>(f)(); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const & { |
| if (has_value()) |
| return *this; |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) const & { |
| return has_value() ? *this : std::forward<F>(f)(); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const && { |
| if (has_value()) |
| return std::move(*this); |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const && { |
| return has_value() ? std::move(*this) : std::forward<F>(f)(); |
| } |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) const & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) const && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u); |
| } |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u)(); |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u)(); |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) const & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u)(); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) const && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u)(); |
| } |
| #endif |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| constexpr optional<typename std::decay<U>::type> conjunction(U &&u) const { |
| using result = optional<detail::decay_t<U>>; |
| return has_value() ? result{u} : result{nullopt}; |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(const optional &rhs) & { |
| return has_value() ? *this : rhs; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(const optional &rhs) const & { |
| return has_value() ? *this : rhs; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(const optional &rhs) && { |
| return has_value() ? std::move(*this) : rhs; |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(const optional &rhs) const && { |
| return has_value() ? std::move(*this) : rhs; |
| } |
| #endif |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(optional &&rhs) & { |
| return has_value() ? *this : std::move(rhs); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(optional &&rhs) const & { |
| return has_value() ? *this : std::move(rhs); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(optional &&rhs) && { |
| return has_value() ? std::move(*this) : std::move(rhs); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(optional &&rhs) const && { |
| return has_value() ? std::move(*this) : std::move(rhs); |
| } |
| #endif |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() & { |
| optional ret = *this; |
| reset(); |
| return ret; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() const & { |
| optional ret = *this; |
| reset(); |
| return ret; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() && { |
| optional ret = std::move(*this); |
| reset(); |
| return ret; |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() const && { |
| optional ret = std::move(*this); |
| reset(); |
| return ret; |
| } |
| #endif |
|
|
| using value_type = T; |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| constexpr optional() noexcept = default; |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional(nullopt_t) noexcept {} |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional(const optional &rhs) = default; |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional(optional &&rhs) = default; |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class... Args> |
| __host__ __device__ |
| constexpr explicit optional( |
| detail::enable_if_t<std::is_constructible<T, Args...>::value, in_place_t>, |
| Args &&... args) |
| : base(in_place, std::forward<Args>(args)...) {} |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class U, class... Args> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR explicit optional( |
| detail::enable_if_t<std::is_constructible<T, std::initializer_list<U> &, |
| Args &&...>::value, |
| in_place_t>, |
| std::initializer_list<U> il, Args &&... args) { |
| this->construct(il, std::forward<Args>(args)...); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template < |
| class U = T, |
| detail::enable_if_t<std::is_convertible<U &&, T>::value> * = nullptr, |
| detail::enable_forward_value<T, U> * = nullptr> |
| __host__ __device__ |
| constexpr optional(U &&u) : base(in_place, std::forward<U>(u)) {} |
|
|
| |
| __thrust_exec_check_disable__ |
| template < |
| class U = T, |
| detail::enable_if_t<!std::is_convertible<U &&, T>::value> * = nullptr, |
| detail::enable_forward_value<T, U> * = nullptr> |
| __host__ __device__ |
| constexpr explicit optional(U &&u) : base(in_place, std::forward<U>(u)) {} |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template < |
| class U, detail::enable_from_other<T, U, const U &> * = nullptr, |
| detail::enable_if_t<std::is_convertible<const U &, T>::value> * = nullptr> |
| __host__ __device__ |
| optional(const optional<U> &rhs) { |
| this->construct(*rhs); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U, detail::enable_from_other<T, U, const U &> * = nullptr, |
| detail::enable_if_t<!std::is_convertible<const U &, T>::value> * = |
| nullptr> |
| __host__ __device__ |
| explicit optional(const optional<U> &rhs) { |
| this->construct(*rhs); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template < |
| class U, detail::enable_from_other<T, U, U &&> * = nullptr, |
| detail::enable_if_t<std::is_convertible<U &&, T>::value> * = nullptr> |
| __host__ __device__ |
| optional(optional<U> &&rhs) { |
| this->construct(std::move(*rhs)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template < |
| class U, detail::enable_from_other<T, U, U &&> * = nullptr, |
| detail::enable_if_t<!std::is_convertible<U &&, T>::value> * = nullptr> |
| __host__ __device__ |
| explicit optional(optional<U> &&rhs) { |
| this->construct(std::move(*rhs)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| ~optional() = default; |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional &operator=(nullopt_t) noexcept { |
| if (has_value()) { |
| this->m_value.~T(); |
| this->m_has_value = false; |
| } |
|
|
| return *this; |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| optional &operator=(const optional &rhs) = default; |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| optional &operator=(optional &&rhs) = default; |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class U = T, detail::enable_assign_forward<T, U> * = nullptr> |
| __host__ __device__ |
| optional &operator=(U &&u) { |
| if (has_value()) { |
| this->m_value = std::forward<U>(u); |
| } else { |
| this->construct(std::forward<U>(u)); |
| } |
|
|
| return *this; |
| } |
|
|
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class U, |
| detail::enable_assign_from_other<T, U, const U &> * = nullptr> |
| __host__ __device__ |
| optional &operator=(const optional<U> &rhs) { |
| if (has_value()) { |
| if (rhs.has_value()) { |
| this->m_value = *rhs; |
| } else { |
| this->hard_reset(); |
| } |
| } |
|
|
| if (rhs.has_value()) { |
| this->construct(*rhs); |
| } |
|
|
| return *this; |
| } |
|
|
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class U, detail::enable_assign_from_other<T, U, U> * = nullptr> |
| __host__ __device__ |
| optional &operator=(optional<U> &&rhs) { |
| if (has_value()) { |
| if (rhs.has_value()) { |
| this->m_value = std::move(*rhs); |
| } else { |
| this->hard_reset(); |
| } |
| } |
|
|
| if (rhs.has_value()) { |
| this->construct(std::move(*rhs)); |
| } |
|
|
| return *this; |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class... Args> |
| __host__ __device__ |
| T &emplace(Args &&... args) { |
| static_assert(std::is_constructible<T, Args &&...>::value, |
| "T must be constructible with Args"); |
|
|
| *this = nullopt; |
| this->construct(std::forward<Args>(args)...); |
| return this->m_value; |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class U, class... Args> |
| __host__ __device__ |
| detail::enable_if_t< |
| std::is_constructible<T, std::initializer_list<U> &, Args &&...>::value, |
| T &> |
| emplace(std::initializer_list<U> il, Args &&... args) { |
| *this = nullopt; |
| this->construct(il, std::forward<Args>(args)...); |
| return this->m_value; |
| } |
|
|
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| void |
| swap(optional &rhs) noexcept(std::is_nothrow_move_constructible<T>::value |
| &&detail::is_nothrow_swappable<T>::value) { |
| if (has_value()) { |
| if (rhs.has_value()) { |
| using thrust::swap; |
| swap(**this, *rhs); |
| } else { |
| new (addressof(rhs.m_value)) T(std::move(this->m_value)); |
| this->m_value.T::~T(); |
| } |
| } else if (rhs.has_value()) { |
| new (addressof(this->m_value)) T(std::move(rhs.m_value)); |
| rhs.m_value.T::~T(); |
| } |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T *operator->() const { |
| return addressof(this->m_value); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T *operator->() { |
| return addressof(this->m_value); |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &operator*() & { return this->m_value; } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T &operator*() const & { return this->m_value; } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &&operator*() && { |
| return std::move(this->m_value); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T &&operator*() const && { return std::move(this->m_value); } |
| #endif |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr bool has_value() const noexcept { return this->m_has_value; } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr explicit operator bool() const noexcept { |
| return this->m_has_value; |
| } |
|
|
| |
| |
| |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &value() & { |
| if (has_value()) |
| return this->m_value; |
| throw bad_optional_access(); |
| } |
| |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR const T &value() const & { |
| if (has_value()) |
| return this->m_value; |
| throw bad_optional_access(); |
| } |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &&value() && { |
| if (has_value()) |
| return std::move(this->m_value); |
| throw bad_optional_access(); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR const T &&value() const && { |
| if (has_value()) |
| return std::move(this->m_value); |
| throw bad_optional_access(); |
| } |
| #endif |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| constexpr T value_or(U &&u) const & { |
| static_assert(std::is_copy_constructible<T>::value && |
| std::is_convertible<U &&, T>::value, |
| "T must be copy constructible and convertible from U"); |
| return has_value() ? **this : static_cast<T>(std::forward<U>(u)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T value_or(U &&u) && { |
| static_assert(std::is_move_constructible<T>::value && |
| std::is_convertible<U &&, T>::value, |
| "T must be move constructible and convertible from U"); |
| return has_value() ? **this : static_cast<T>(std::forward<U>(u)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| void reset() noexcept { |
| if (has_value()) { |
| this->m_value.~T(); |
| this->m_has_value = false; |
| } |
| } |
| }; |
|
|
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator==(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return lhs.has_value() == rhs.has_value() && |
| (!lhs.has_value() || *lhs == *rhs); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator!=(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return lhs.has_value() != rhs.has_value() || |
| (lhs.has_value() && *lhs != *rhs); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return rhs.has_value() && (!lhs.has_value() || *lhs < *rhs); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return lhs.has_value() && (!rhs.has_value() || *lhs > *rhs); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<=(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return !lhs.has_value() || (rhs.has_value() && *lhs <= *rhs); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>=(const optional<T> &lhs, |
| const optional<U> &rhs) { |
| return !rhs.has_value() || (lhs.has_value() && *lhs >= *rhs); |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator==(const optional<T> &lhs, nullopt_t) noexcept { |
| return !lhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator==(nullopt_t, const optional<T> &rhs) noexcept { |
| return !rhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator!=(const optional<T> &lhs, nullopt_t) noexcept { |
| return lhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator!=(nullopt_t, const optional<T> &rhs) noexcept { |
| return rhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator<(const optional<T> &, nullopt_t) noexcept { |
| return false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator<(nullopt_t, const optional<T> &rhs) noexcept { |
| return rhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator<=(const optional<T> &lhs, nullopt_t) noexcept { |
| return !lhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator<=(nullopt_t, const optional<T> &) noexcept { |
| return true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator>(const optional<T> &lhs, nullopt_t) noexcept { |
| return lhs.has_value(); |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator>(nullopt_t, const optional<T> &) noexcept { |
| return false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator>=(const optional<T> &, nullopt_t) noexcept { |
| return true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T> |
| __host__ __device__ |
| inline constexpr bool operator>=(nullopt_t, const optional<T> &rhs) noexcept { |
| return !rhs.has_value(); |
| } |
|
|
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator==(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs == rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator==(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs == *rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator!=(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs != rhs : true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator!=(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs != *rhs : true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs < rhs : true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs < *rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<=(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs <= rhs : true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator<=(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs <= *rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs > rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs > *rhs : true; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>=(const optional<T> &lhs, const U &rhs) { |
| return lhs.has_value() ? *lhs >= rhs : false; |
| } |
| |
| __thrust_exec_check_disable__ |
| template <class T, class U> |
| __host__ __device__ |
| inline constexpr bool operator>=(const U &lhs, const optional<T> &rhs) { |
| return rhs.has_value() ? lhs >= *rhs : true; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class T, |
| detail::enable_if_t<std::is_move_constructible<T>::value> * = nullptr, |
| detail::enable_if_t<detail::is_swappable<T>::value> * = nullptr> |
| __host__ __device__ |
| void swap(optional<T> &lhs, |
| optional<T> &rhs) noexcept(noexcept(lhs.swap(rhs))) { |
| return lhs.swap(rhs); |
| } |
|
|
| namespace detail { |
| struct i_am_secret {}; |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class T = detail::i_am_secret, class U, |
| class Ret = |
| detail::conditional_t<std::is_same<T, detail::i_am_secret>::value, |
| detail::decay_t<U>, T>> |
| __host__ __device__ |
| inline constexpr optional<Ret> make_optional(U &&v) { |
| return optional<Ret>(std::forward<U>(v)); |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class T, class... Args> |
| __host__ __device__ |
| inline constexpr optional<T> make_optional(Args &&... args) { |
| return optional<T>(in_place, std::forward<Args>(args)...); |
| } |
| __thrust_exec_check_disable__ |
| template <class T, class U, class... Args> |
| __host__ __device__ |
| inline constexpr optional<T> make_optional(std::initializer_list<U> il, |
| Args &&... args) { |
| return optional<T>(in_place, il, std::forward<Args>(args)...); |
| } |
|
|
| #if THRUST_CPP_DIALECT >= 2017 |
| template <class T> optional(T)->optional<T>; |
| #endif |
|
|
| |
| #if !defined(THRUST_DOXYGEN) |
| |
| namespace detail { |
| #ifdef THRUST_OPTIONAL_CPP14 |
| __thrust_exec_check_disable__ |
| template <class Opt, class F, |
| class Ret = decltype(detail::invoke(std::declval<F>(), |
| *std::declval<Opt>())), |
| detail::enable_if_t<!std::is_void<Ret>::value> * = nullptr> |
| __host__ __device__ |
| constexpr auto optional_map_impl(Opt &&opt, F &&f) { |
| return opt.has_value() |
| ? detail::invoke(std::forward<F>(f), *std::forward<Opt>(opt)) |
| : optional<Ret>(nullopt); |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class Opt, class F, |
| class Ret = decltype(detail::invoke(std::declval<F>(), |
| *std::declval<Opt>())), |
| detail::enable_if_t<std::is_void<Ret>::value> * = nullptr> |
| __host__ __device__ |
| auto optional_map_impl(Opt &&opt, F &&f) { |
| if (opt.has_value()) { |
| detail::invoke(std::forward<F>(f), *std::forward<Opt>(opt)); |
| return make_optional(monostate{}); |
| } |
|
|
| return optional<monostate>(nullopt); |
| } |
| #else |
| __thrust_exec_check_disable__ |
| template <class Opt, class F, |
| class Ret = decltype(detail::invoke(std::declval<F>(), |
| *std::declval<Opt>())), |
| detail::enable_if_t<!std::is_void<Ret>::value> * = nullptr> |
| __host__ __device__ |
| constexpr optional<Ret> optional_map_impl(Opt &&opt, F &&f) { |
| return opt.has_value() |
| ? detail::invoke(std::forward<F>(f), *std::forward<Opt>(opt)) |
| : optional<Ret>(nullopt); |
| } |
|
|
| __thrust_exec_check_disable__ |
| template <class Opt, class F, |
| class Ret = decltype(detail::invoke(std::declval<F>(), |
| *std::declval<Opt>())), |
| detail::enable_if_t<std::is_void<Ret>::value> * = nullptr> |
| __host__ __device__ |
| auto optional_map_impl(Opt &&opt, F &&f) -> optional<monostate> |
| { |
| if (opt.has_value()) { |
| detail::invoke(std::forward<F>(f), *std::forward<Opt>(opt)); |
| return monostate{}; |
| } |
|
|
| return nullopt; |
| } |
| #endif |
| } |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| template <class T> class optional<T &> { |
| public: |
| |
| |
| |
| |
| #if defined(THRUST_OPTIONAL_CPP14) && !defined(THRUST_OPTIONAL_GCC49) && \ |
| !defined(THRUST_OPTIONAL_GCC54) && !defined(THRUST_OPTIONAL_GCC55) |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto and_then(F &&f) & { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto and_then(F &&f) && { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto and_then(F &&f) const & { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto and_then(F &&f) const && { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
| #endif |
| #else |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR detail::invoke_result_t<F, T &> and_then(F &&f) & { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR detail::invoke_result_t<F, T &> and_then(F &&f) && { |
| using result = detail::invoke_result_t<F, T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr detail::invoke_result_t<F, const T &> and_then(F &&f) const & { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr detail::invoke_result_t<F, const T &> and_then(F &&f) const && { |
| using result = detail::invoke_result_t<F, const T &>; |
| static_assert(detail::is_optional<result>::value, |
| "F must return an optional"); |
|
|
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : result(nullopt); |
| } |
| #endif |
| #endif |
|
|
| #if defined(THRUST_OPTIONAL_CPP14) && !defined(THRUST_OPTIONAL_GCC49) && \ |
| !defined(THRUST_OPTIONAL_GCC54) && !defined(THRUST_OPTIONAL_GCC55) |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto map(F &&f) & { |
| return detail::optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR auto map(F &&f) && { |
| return detail::optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto map(F &&f) const & { |
| return detail::optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr auto map(F &&f) const && { |
| return detail::optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
| #else |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR decltype(detail::optional_map_impl(std::declval<optional &>(), |
| std::declval<F &&>())) |
| map(F &&f) & { |
| return detail::optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR decltype(detail::optional_map_impl(std::declval<optional &&>(), |
| std::declval<F &&>())) |
| map(F &&f) && { |
| return detail::optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr decltype(detail::optional_map_impl(std::declval<const optional &>(), |
| std::declval<F &&>())) |
| map(F &&f) const & { |
| return detail::optional_map_impl(*this, std::forward<F>(f)); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F> |
| __host__ __device__ |
| constexpr decltype(detail::optional_map_impl(std::declval<const optional &&>(), |
| std::declval<F &&>())) |
| map(F &&f) const && { |
| return detail::optional_map_impl(std::move(*this), std::forward<F>(f)); |
| } |
| #endif |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> |
| THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) & { |
| if (has_value()) |
| return *this; |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> |
| THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) & { |
| return has_value() ? *this : std::forward<F>(f)(); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) && { |
| if (has_value()) |
| return std::move(*this); |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) && { |
| return has_value() ? std::move(*this) : std::forward<F>(f)(); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const & { |
| if (has_value()) |
| return *this; |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> THRUST_OPTIONAL_CPP11_CONSTEXPR or_else(F &&f) const & { |
| return has_value() ? *this : std::forward<F>(f)(); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::enable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const && { |
| if (has_value()) |
| return std::move(*this); |
|
|
| std::forward<F>(f)(); |
| return nullopt; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, detail::disable_if_ret_void<F> * = nullptr> |
| __host__ __device__ |
| optional<T> or_else(F &&f) const && { |
| return has_value() ? std::move(*this) : std::forward<F>(f)(); |
| } |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) const & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| U map_or(F &&f, U &&u) const && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u); |
| } |
| #endif |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u)(); |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u)(); |
| } |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) const & { |
| return has_value() ? detail::invoke(std::forward<F>(f), **this) |
| : std::forward<U>(u)(); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class F, class U> |
| __host__ __device__ |
| detail::invoke_result_t<U> map_or_else(F &&f, U &&u) const && { |
| return has_value() ? detail::invoke(std::forward<F>(f), std::move(**this)) |
| : std::forward<U>(u)(); |
| } |
| #endif |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| constexpr optional<typename std::decay<U>::type> conjunction(U &&u) const { |
| using result = optional<detail::decay_t<U>>; |
| return has_value() ? result{u} : result{nullopt}; |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(const optional &rhs) & { |
| return has_value() ? *this : rhs; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(const optional &rhs) const & { |
| return has_value() ? *this : rhs; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(const optional &rhs) && { |
| return has_value() ? std::move(*this) : rhs; |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(const optional &rhs) const && { |
| return has_value() ? std::move(*this) : rhs; |
| } |
| #endif |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(optional &&rhs) & { |
| return has_value() ? *this : std::move(rhs); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(optional &&rhs) const & { |
| return has_value() ? *this : std::move(rhs); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional disjunction(optional &&rhs) && { |
| return has_value() ? std::move(*this) : std::move(rhs); |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional disjunction(optional &&rhs) const && { |
| return has_value() ? std::move(*this) : std::move(rhs); |
| } |
| #endif |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() & { |
| optional ret = *this; |
| reset(); |
| return ret; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() const & { |
| optional ret = *this; |
| reset(); |
| return ret; |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() && { |
| optional ret = std::move(*this); |
| reset(); |
| return ret; |
| } |
|
|
| #ifndef THRUST_OPTIONAL_NO_CONSTRR |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional take() const && { |
| optional ret = std::move(*this); |
| reset(); |
| return ret; |
| } |
| #endif |
|
|
| using value_type = T &; |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional() noexcept : m_value(nullptr) {} |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr optional(nullopt_t) noexcept : m_value(nullptr) {} |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional(const optional &rhs) noexcept = default; |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR optional(optional &&rhs) = default; |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class U = T, |
| detail::enable_if_t<!detail::is_optional<detail::decay_t<U>>::value> |
| * = nullptr> |
| __host__ __device__ |
| constexpr optional(U &&u) : m_value(addressof(u)) { |
| static_assert(std::is_lvalue_reference<U>::value, "U must be an lvalue"); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| constexpr explicit optional(const optional<U> &rhs) : optional(*rhs) {} |
|
|
| |
| __thrust_exec_check_disable__ |
| ~optional() = default; |
|
|
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| optional &operator=(nullopt_t) noexcept { |
| m_value = nullptr; |
| return *this; |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| optional &operator=(const optional &rhs) = default; |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class U = T, |
| detail::enable_if_t<!detail::is_optional<detail::decay_t<U>>::value> |
| * = nullptr> |
| __host__ __device__ |
| optional &operator=(U &&u) { |
| static_assert(std::is_lvalue_reference<U>::value, "U must be an lvalue"); |
| m_value = addressof(u); |
| return *this; |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| optional &operator=(const optional<U> &rhs) { |
| m_value = addressof(rhs.value()); |
| return *this; |
| } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| template <class... Args> |
| __host__ __device__ |
| T &emplace(Args &&... args) noexcept { |
| static_assert(std::is_constructible<T, Args &&...>::value, |
| "T must be constructible with Args"); |
|
|
| *this = nullopt; |
| this->construct(std::forward<Args>(args)...); |
| } |
|
|
| |
| |
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| void swap(optional &rhs) noexcept { std::swap(m_value, rhs.m_value); } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T *operator->() const { return m_value; } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T *operator->() { return m_value; } |
|
|
| |
| |
| |
| |
| __thrust_exec_check_disable__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &operator*() { return *m_value; } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr const T &operator*() const { return *m_value; } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr bool has_value() const noexcept { return m_value != nullptr; } |
|
|
| |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| constexpr explicit operator bool() const noexcept { |
| return m_value != nullptr; |
| } |
|
|
| |
| |
| |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T &value() { |
| if (has_value()) |
| return *m_value; |
| throw bad_optional_access(); |
| } |
| |
| |
| __host__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR const T &value() const { |
| if (has_value()) |
| return *m_value; |
| throw bad_optional_access(); |
| } |
|
|
| |
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| constexpr T value_or(U &&u) const & { |
| static_assert(std::is_copy_constructible<T>::value && |
| std::is_convertible<U &&, T>::value, |
| "T must be copy constructible and convertible from U"); |
| return has_value() ? **this : static_cast<T>(std::forward<U>(u)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| template <class U> |
| __host__ __device__ |
| THRUST_OPTIONAL_CPP11_CONSTEXPR T value_or(U &&u) && { |
| static_assert(std::is_move_constructible<T>::value && |
| std::is_convertible<U &&, T>::value, |
| "T must be move constructible and convertible from U"); |
| return has_value() ? **this : static_cast<T>(std::forward<U>(u)); |
| } |
|
|
| |
| __thrust_exec_check_disable__ |
| void reset() noexcept { m_value = nullptr; } |
|
|
| private: |
| T *m_value; |
| }; |
|
|
| THRUST_NAMESPACE_END |
|
|
| namespace std { |
| |
| template <class T> struct hash<THRUST_NS_QUALIFIER::optional<T>> { |
| __thrust_exec_check_disable__ |
| __host__ __device__ |
| ::std::size_t operator()(const THRUST_NS_QUALIFIER::optional<T> &o) const { |
| if (!o.has_value()) |
| return 0; |
|
|
| return std::hash<THRUST_NS_QUALIFIER::detail::remove_const_t<T>>()(*o); |
| } |
| }; |
| } |
|
|
| #endif |
|
|
|
|