mirror of
https://github.com/zhenyan121/Cubed.git
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369 lines
13 KiB
C++
369 lines
13 KiB
C++
#ifndef ENTT_ENTITY_HANDLE_HPP
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#define ENTT_ENTITY_HANDLE_HPP
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#include "../config/config.h"
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#include "../core/iterator.hpp"
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#include "../core/type_traits.hpp"
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#include "../stl/iterator.hpp"
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#include "../stl/tuple.hpp"
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#include "../stl/type_traits.hpp"
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#include "../stl/utility.hpp"
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#include "entity.hpp"
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#include "fwd.hpp"
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namespace entt {
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/*! @cond ENTT_INTERNAL */
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namespace internal {
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template<typename It>
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class handle_storage_iterator final {
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template<typename>
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friend class handle_storage_iterator;
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using underlying_type = stl::remove_reference_t<typename It::value_type::second_type>;
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using entity_type = underlying_type::entity_type;
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public:
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using value_type = stl::iterator_traits<It>::value_type;
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using pointer = input_iterator_pointer<value_type>;
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using reference = value_type;
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using difference_type = stl::ptrdiff_t;
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using iterator_category = stl::input_iterator_tag;
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using iterator_concept = stl::forward_iterator_tag;
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constexpr handle_storage_iterator() noexcept
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: entt{null},
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it{},
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last{} {}
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constexpr handle_storage_iterator(entity_type value, It from, It to) noexcept
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: entt{value},
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it{from},
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last{to} {
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while(it != last && !it->second.contains(entt)) {
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++it;
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}
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}
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constexpr handle_storage_iterator &operator++() noexcept {
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for(++it; it != last && !it->second.contains(entt); ++it) {}
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return *this;
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}
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constexpr handle_storage_iterator operator++(int) noexcept {
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const handle_storage_iterator orig = *this;
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return ++(*this), orig;
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}
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[[nodiscard]] constexpr reference operator*() const noexcept {
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return *it;
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}
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[[nodiscard]] constexpr pointer operator->() const noexcept {
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return operator*();
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}
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template<typename Other>
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[[nodiscard]] constexpr bool operator==(const handle_storage_iterator<Other> &other) const noexcept {
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return it == other.it;
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}
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private:
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entity_type entt;
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It it;
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It last;
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};
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} // namespace internal
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/*! @endcond */
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/**
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* @brief Non-owning handle to an entity.
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*
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* Tiny wrapper around a registry and an entity.
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*
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* @tparam Registry Basic registry type.
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* @tparam Scope Types to which to restrict the scope of a handle.
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*/
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template<typename Registry, typename... Scope>
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class basic_handle {
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using traits_type = entt_traits<typename Registry::entity_type>;
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[[nodiscard]] auto &owner_or_assert() const noexcept {
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ENTT_ASSERT(owner != nullptr, "Invalid pointer to registry");
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return static_cast<Registry &>(*owner);
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}
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public:
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/*! @brief Type of registry accepted by the handle. */
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using registry_type = Registry;
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/*! @brief Underlying entity identifier. */
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using entity_type = traits_type::value_type;
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/*! @brief Underlying version type. */
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using version_type = traits_type::version_type;
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/*! @brief Unsigned integer type. */
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using size_type = stl::size_t;
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/*! @brief Iterable handle type. */
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using iterable = iterable_adaptor<internal::handle_storage_iterator<typename decltype(stl::declval<registry_type>().storage())::iterator>>;
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/*! @brief Constructs an invalid handle. */
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basic_handle() noexcept
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: owner{},
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entt{null} {}
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/**
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* @brief Constructs a handle from a given registry and entity.
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* @param ref An instance of the registry class.
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* @param value A valid identifier.
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*/
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basic_handle(registry_type &ref, entity_type value) noexcept
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: owner{&ref},
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entt{value} {}
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/**
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* @brief Returns an iterable object to use to _visit_ a handle.
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*
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* The iterable object returns a pair that contains the name and a reference
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* to the current storage.<br/>
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* Returned storage are those that contain the entity associated with the
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* handle.
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*
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* @return An iterable object to use to _visit_ the handle.
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*/
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[[nodiscard]] iterable storage() const noexcept {
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auto underlying = owner_or_assert().storage();
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return iterable{{entt, underlying.begin(), underlying.end()}, {entt, underlying.end(), underlying.end()}};
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}
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/*! @copydoc valid */
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[[nodiscard]] explicit operator bool() const noexcept {
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return owner && owner->valid(entt);
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}
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/**
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* @brief Checks if a handle refers to a valid registry and entity.
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* @return True if the handle refers to a valid registry and entity, false
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* otherwise.
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*/
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[[nodiscard]] bool valid() const {
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return static_cast<bool>(*this);
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}
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/**
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* @brief Returns a pointer to the underlying registry, if any.
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* @return A pointer to the underlying registry, if any.
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*/
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[[nodiscard]] registry_type *registry() const noexcept {
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return owner;
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}
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/**
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* @brief Returns the entity associated with a handle.
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* @return The entity associated with the handle.
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*/
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[[nodiscard]] entity_type entity() const noexcept {
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return entt;
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}
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/*! @copydoc entity */
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[[nodiscard]] operator entity_type() const noexcept {
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return entity();
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}
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/*! @brief Destroys the entity associated with a handle. */
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void destroy() {
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owner_or_assert().destroy(stl::exchange(entt, null));
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}
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/**
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* @brief Destroys the entity associated with a handle.
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* @param version A desired version upon destruction.
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*/
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void destroy(const version_type version) {
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owner_or_assert().destroy(stl::exchange(entt, null), version);
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}
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/**
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* @brief Assigns the given element to a handle.
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* @tparam Type Type of element to create.
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* @tparam Args Types of arguments to use to construct the element.
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* @param args Parameters to use to initialize the element.
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* @return A reference to the newly created element.
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*/
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template<typename Type, typename... Args>
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// NOLINTNEXTLINE(modernize-use-nodiscard)
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decltype(auto) emplace(Args &&...args) const {
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static_assert(((sizeof...(Scope) == 0) || ... || stl::is_same_v<Type, Scope>), "Invalid type");
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return owner_or_assert().template emplace<Type>(entt, stl::forward<Args>(args)...);
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}
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/**
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* @brief Assigns or replaces the given element for a handle.
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* @tparam Type Type of element to assign or replace.
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* @tparam Args Types of arguments to use to construct the element.
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* @param args Parameters to use to initialize the element.
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* @return A reference to the newly created element.
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*/
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template<typename Type, typename... Args>
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decltype(auto) emplace_or_replace(Args &&...args) const {
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static_assert(((sizeof...(Scope) == 0) || ... || stl::is_same_v<Type, Scope>), "Invalid type");
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return owner_or_assert().template emplace_or_replace<Type>(entt, stl::forward<Args>(args)...);
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}
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/**
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* @brief Patches the given element for a handle.
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* @tparam Type Type of element to patch.
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* @tparam Func Types of the function objects to invoke.
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* @param func Valid function objects.
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* @return A reference to the patched element.
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*/
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template<typename Type, typename... Func>
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decltype(auto) patch(Func &&...func) const {
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static_assert(((sizeof...(Scope) == 0) || ... || stl::is_same_v<Type, Scope>), "Invalid type");
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return owner_or_assert().template patch<Type>(entt, stl::forward<Func>(func)...);
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}
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/**
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* @brief Replaces the given element for a handle.
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* @tparam Type Type of element to replace.
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* @tparam Args Types of arguments to use to construct the element.
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* @param args Parameters to use to initialize the element.
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* @return A reference to the element being replaced.
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*/
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template<typename Type, typename... Args>
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decltype(auto) replace(Args &&...args) const {
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static_assert(((sizeof...(Scope) == 0) || ... || stl::is_same_v<Type, Scope>), "Invalid type");
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return owner_or_assert().template replace<Type>(entt, stl::forward<Args>(args)...);
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}
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/**
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* @brief Removes the given elements from a handle.
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* @tparam Type Types of elements to remove.
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* @return The number of elements actually removed.
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*/
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template<typename... Type>
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// NOLINTNEXTLINE(modernize-use-nodiscard)
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size_type remove() const {
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static_assert(sizeof...(Scope) == 0 || (type_list_contains_v<type_list<Scope...>, Type> && ...), "Invalid type");
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return owner_or_assert().template remove<Type...>(entt);
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}
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/**
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* @brief Erases the given elements from a handle.
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* @tparam Type Types of elements to erase.
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*/
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template<typename... Type>
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void erase() const {
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static_assert(sizeof...(Scope) == 0 || (type_list_contains_v<type_list<Scope...>, Type> && ...), "Invalid type");
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owner_or_assert().template erase<Type...>(entt);
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}
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/**
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* @brief Checks if a handle has all the given elements.
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* @tparam Type Elements for which to perform the check.
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* @return True if the handle has all the elements, false otherwise.
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*/
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template<typename... Type>
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[[nodiscard]] decltype(auto) all_of() const {
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return owner_or_assert().template all_of<Type...>(entt);
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}
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/**
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* @brief Checks if a handle has at least one of the given elements.
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* @tparam Type Elements for which to perform the check.
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* @return True if the handle has at least one of the given elements,
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* false otherwise.
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*/
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template<typename... Type>
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[[nodiscard]] decltype(auto) any_of() const {
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return owner_or_assert().template any_of<Type...>(entt);
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}
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/**
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* @brief Returns references to the given elements for a handle.
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* @tparam Type Types of elements to get.
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* @return References to the elements owned by the handle.
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*/
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template<typename... Type>
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[[nodiscard]] decltype(auto) get() const {
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static_assert(sizeof...(Scope) == 0 || (type_list_contains_v<type_list<Scope...>, Type> && ...), "Invalid type");
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return owner_or_assert().template get<Type...>(entt);
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}
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/**
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* @brief Returns a reference to the given element for a handle.
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* @tparam Type Type of element to get.
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* @tparam Args Types of arguments to use to construct the element.
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* @param args Parameters to use to initialize the element.
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* @return Reference to the element owned by the handle.
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*/
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template<typename Type, typename... Args>
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[[nodiscard]] decltype(auto) get_or_emplace(Args &&...args) const {
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static_assert(((sizeof...(Scope) == 0) || ... || stl::is_same_v<Type, Scope>), "Invalid type");
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return owner_or_assert().template get_or_emplace<Type>(entt, stl::forward<Args>(args)...);
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}
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/**
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* @brief Returns pointers to the given elements for a handle.
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* @tparam Type Types of elements to get.
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* @return Pointers to the elements owned by the handle.
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*/
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template<typename... Type>
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[[nodiscard]] auto try_get() const {
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static_assert(sizeof...(Scope) == 0 || (type_list_contains_v<type_list<Scope...>, Type> && ...), "Invalid type");
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return owner_or_assert().template try_get<Type...>(entt);
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}
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/**
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* @brief Checks if a handle has elements assigned.
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* @return True if the handle has no elements assigned, false otherwise.
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*/
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[[nodiscard]] bool orphan() const {
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return owner_or_assert().orphan(entt);
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}
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/**
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* @brief Compares two handles.
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* @tparam Other Scope of the other handle.
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* @param other A valid handle.
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* @return True if both handles refer to the same registry and the same
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* entity, false otherwise.
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*/
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template<typename... Other>
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[[nodiscard]] bool operator==(const basic_handle<Other...> &other) const noexcept {
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return owner == other.registry() && entt == other.entity();
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}
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/**
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* @brief Compares a handle with the null object.
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* @param other A null object yet to be converted.
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* @return False if the two elements differ, true otherwise.
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*/
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[[nodiscard]] constexpr bool operator==(const null_t other) const noexcept {
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return (entt == other);
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}
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/**
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* @brief Returns a const handle from a non-const one.
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* @tparam Other A valid entity type.
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* @tparam Args Scope of the handle to construct.
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* @return A const handle referring to the same registry and the same
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* entity.
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*/
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template<typename Other, typename... Args>
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operator basic_handle<Other, Args...>() const noexcept {
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static_assert(stl::is_same_v<Other, Registry> || stl::is_same_v<stl::remove_const_t<Other>, Registry>, "Invalid conversion between different handles");
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static_assert((sizeof...(Scope) == 0 || ((sizeof...(Args) != 0 && sizeof...(Args) <= sizeof...(Scope)) && ... && (type_list_contains_v<type_list<Scope...>, Args>))), "Invalid conversion between different handles");
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return owner ? basic_handle<Other, Args...>{*owner, entt} : basic_handle<Other, Args...>{};
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}
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private:
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registry_type *owner;
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entity_type entt;
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};
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} // namespace entt
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#endif
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