#pragma once #include "asl/assert.hpp" #include "asl/meta.hpp" #include "asl/maybe_uninit.hpp" #include "asl/functional.hpp" #include "asl/annotations.hpp" #include "asl/hash.hpp" namespace asl { struct nullopt_t {}; static constexpr nullopt_t nullopt{}; // @Todo(option) Reference // @Todo(option) Function // @Todo(option) Arrays template class option; namespace option_internal { template concept not_constructible_from_option = !constructible_from&> && !constructible_from&> && !constructible_from&&> && !constructible_from&&>; template concept not_assignable_from_option = !assignable_from&> && !assignable_from&> && !assignable_from&&> && !assignable_from&&>; template concept not_constructible_assignable_from_option = not_constructible_from_option && not_assignable_from_option; } // namespace option_internal template concept is_option = requires { typename T::type; requires same_as, option>; }; template class option { static constexpr bool kHasNiche = has_niche; using HasValueMarker = select_t; maybe_uninit m_payload{}; ASL_NO_UNIQUE_ADDRESS HasValueMarker m_has_value{}; template friend class option; template constexpr void construct(Args&&... args) { ASL_ASSERT(!has_value()); if constexpr (!kHasNiche) { m_payload.construct_unsafe(ASL_FWD(args)...); m_has_value = true; } else { if constexpr (move_assignable) { m_payload.assign_unsafe(ASL_MOVE(T{ASL_FWD(args)...})); } else { m_payload.destroy_unsafe(); m_payload.construct_unsafe(ASL_FWD(args)...); } } } template constexpr void assign(U&& arg) { ASL_ASSERT(has_value()); m_payload.assign_unsafe(ASL_FWD(arg)); } public: using type = T; constexpr option() : option{nullopt} {} // NOLINTNEXTLINE(*-explicit-conversions) constexpr option(nullopt_t) requires (!kHasNiche) {} // NOLINTNEXTLINE(*-explicit-conversions) constexpr option(nullopt_t) requires kHasNiche : m_payload{in_place, niche_t{}} {} template constexpr explicit (!convertible_from) option(U&& value) requires ( kHasNiche && constructible_from && !same_as, option> ) : m_payload{in_place, ASL_FWD(value)} {} template constexpr explicit (!convertible_from) option(U&& value) requires ( !kHasNiche && constructible_from && !is_option ) : m_payload{in_place, ASL_FWD(value)} , m_has_value{true} {} constexpr option(const option& other) requires trivially_copy_constructible = default; constexpr option(const option& other) requires (!copy_constructible) = delete; constexpr option(const option& other) requires copy_constructible && (!trivially_copy_constructible) : option{nullopt} { if (other.has_value()) { construct(other.m_payload.as_init_unsafe()); } } constexpr option(option&& other) requires trivially_move_constructible = default; constexpr option(option&& other) requires (!move_constructible) = delete; constexpr option(option&& other) requires move_constructible && (!trivially_move_constructible) : option{nullopt} { if (other.has_value()) { construct(ASL_MOVE(other.m_payload.as_init_unsafe())); } } template constexpr explicit (!convertible_from) option(const option& other) requires ( constructible_from && option_internal::not_constructible_from_option ) : option{nullopt} { if (other.has_value()) { construct(other.m_payload.as_init_unsafe()); } } template constexpr explicit (!convertible_from) option(option&& other) requires ( constructible_from && option_internal::not_constructible_from_option ) : option{nullopt} { if (other.has_value()) { construct(ASL_MOVE(other.m_payload.as_init_unsafe())); } } constexpr option& operator=(nullopt_t) & { reset(); return *this; } template constexpr option& operator=(U&& value) & requires ( assignable_from && constructible_from && !is_option ) { if (has_value()) { assign(ASL_FWD(value)); } else { construct(ASL_FWD(value)); } return *this; } constexpr option& operator=(const option& other) & requires (!copy_assignable) = delete; constexpr option& operator=(const option& other) & requires trivially_copy_assignable = default; constexpr option& operator=(const option& other) & requires copy_assignable && (!trivially_copy_constructible) { if (&other == this) { return *this; } if (other.has_value()) { if (has_value()) { assign(other.m_payload.as_init_unsafe()); } else { construct(other.m_payload.as_init_unsafe()); } } else if (has_value()) { reset(); } return *this; } constexpr option& operator=(option&& other) & requires (!move_assignable) = delete; constexpr option& operator=(option&& other) & requires trivially_move_assignable = default; constexpr option& operator=(option&& other) & requires move_assignable && (!trivially_move_constructible) { if (&other == this) { return *this; } if (other.has_value()) { if (has_value()) { assign(ASL_MOVE(other.m_payload.as_init_unsafe())); } else { construct(ASL_MOVE(other.m_payload.as_init_unsafe())); } } else if (has_value()) { reset(); } return *this; } template constexpr option& operator=(const option& other) & requires ( constructible_from && assignable_from && option_internal::not_constructible_assignable_from_option ) { if (other.has_value()) { if (has_value()) { assign(other.m_payload.as_init_unsafe()); } else { construct(other.m_payload.as_init_unsafe()); } } else if (has_value()) { reset(); } return *this; } template constexpr option& operator=(option&& other) & requires ( constructible_from && assignable_from && option_internal::not_constructible_assignable_from_option ) { if (other.has_value()) { if (has_value()) { assign(ASL_MOVE(other.m_payload.as_init_unsafe())); } else { construct(ASL_MOVE(other.m_payload.as_init_unsafe())); } } else if (has_value()) { reset(); } return *this; } constexpr ~option() requires trivially_destructible = default; constexpr ~option() requires (!trivially_destructible) { reset(); } constexpr void reset() { if (!has_value()) { return; } if constexpr (kHasNiche) { if constexpr (move_assignable) { m_payload.assign_unsafe(ASL_MOVE(T{niche_t{}})); } else { m_payload.destroy_unsafe(); m_payload.construct_unsafe(niche_t{}); } } else { m_has_value = false; m_payload.destroy_unsafe(); } } constexpr bool has_value() const { if constexpr (kHasNiche) { return m_payload.as_init_unsafe() != niche_t{}; } else { return m_has_value; } } // @Todo(C++23) Deducing this constexpr T&& value() && { ASL_ASSERT_RELEASE(has_value()); return ASL_MOVE(m_payload).as_init_unsafe(); } constexpr T& value() & { ASL_ASSERT_RELEASE(has_value()); return m_payload.as_init_unsafe(); } constexpr const T& value() const& { ASL_ASSERT_RELEASE(has_value()); return m_payload.as_init_unsafe(); } template constexpr T value_or(U&& other_value) const& requires copy_constructible && convertible_from { return has_value() ? value() : static_cast(ASL_FWD(other_value)); } template constexpr T value_or(U&& other_value) && requires move_constructible && convertible_from { return has_value() ? ASL_MOVE(value()) : static_cast(ASL_FWD(other_value)); } template constexpr T& emplace(Args&&... args) & requires constructible_from { if (has_value()) { reset(); } construct(ASL_FWD(args)...); return value(); } template constexpr auto and_then(F&& f) & requires is_option> { if (has_value()) { return invoke(ASL_FWD(f), value()); } return un_cvref_t>{}; } template constexpr auto and_then(F&& f) const& requires is_option> { if (has_value()) { return invoke(ASL_FWD(f), value()); } return un_cvref_t>{}; } template constexpr auto and_then(F&& f) && requires is_option> { if (has_value()) { return invoke(ASL_FWD(f), ASL_MOVE(value())); } return un_cvref_t>{}; } template constexpr auto transform(F&& f) & { using U = un_cvref_t>; if (has_value()) { return option{ invoke(ASL_FWD(f), value()) }; } return option{}; } template constexpr auto transform(F&& f) const& { using U = un_cvref_t>; if (has_value()) { return option{ invoke(ASL_FWD(f), value()) }; } return option{}; } template constexpr auto transform(F&& f) && { using U = un_cvref_t>; if (has_value()) { return option{ invoke(ASL_FWD(f), ASL_MOVE(value())) }; } return option{}; } template constexpr option or_else(F&& f) const& requires same_as>, option> { return has_value() ? *this : invoke(ASL_FWD(f)); } template constexpr option or_else(F&& f) && requires same_as>, option> { return has_value() ? ASL_MOVE(*this) : invoke(ASL_FWD(f)); } template requires (!uniquely_represented