#ifndef EFL_INPUT_EVENT_EO_HH #define EFL_INPUT_EVENT_EO_HH #include extern "C" { #include "efl_duplicate.eo.h" #include "efl_input_device.eo.h" #include "efl_input_event.eo.h" } #include #include #include "efl_duplicate.eo.hh" #include "efl_input_device.eo.hh" #ifndef EFL_INPUT_EVENT_FWD_GUARD #define EFL_INPUT_EVENT_FWD_GUARD namespace efl { namespace input { struct Event; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Event> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Event&> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Event const> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Event const&> : ::std::true_type {}; } } #endif #ifndef EFL_INPUT_DEVICE_FWD_GUARD #define EFL_INPUT_DEVICE_FWD_GUARD namespace efl { namespace input { struct Device; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Device> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Device&> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Device const> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::input::Device const&> : ::std::true_type {}; } } #endif #ifndef EFL_DUPLICATE_FWD_GUARD #define EFL_DUPLICATE_FWD_GUARD namespace efl { struct Duplicate; } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::Duplicate> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::Duplicate&> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::Duplicate const> : ::std::true_type {}; } } namespace efl { namespace eo { template<> struct is_eolian_object< ::efl::Duplicate const&> : ::std::true_type {}; } } #endif #pragma GCC diagnostic push #pragma GCC diagnostic ignored "-Wignored-qualifiers" namespace eo_cxx { namespace efl { namespace input { struct Event { ::efl::eolian::return_traits::type timestamp_get() const; ::efl::eolian::return_traits::type timestamp_set( ::efl::eolian::in_traits::type ms) const; ::efl::eolian::return_traits< ::efl::input::Device>::type device_get() const; ::efl::eolian::return_traits::type device_set( ::efl::eolian::in_traits< ::efl::input::Device>::type dev) const; ::efl::eolian::return_traits::type event_flags_get() const; ::efl::eolian::return_traits::type event_flags_set( ::efl::eolian::in_traits::type flags) const; ::efl::eolian::return_traits::type processed_get() const; ::efl::eolian::return_traits::type processed_set( ::efl::eolian::in_traits::type val) const; ::efl::eolian::return_traits::type scrolling_get() const; ::efl::eolian::return_traits::type scrolling_set( ::efl::eolian::in_traits::type val) const; ::efl::eolian::return_traits::type fake_get() const; ::efl::eolian::return_traits::type reset() const; static Efl_Class const* _eo_class() { return EFL_INPUT_EVENT_MIXIN; } Eo* _eo_ptr() const { return *(reinterpret_cast(const_cast(this))); } operator ::efl::input::Event() const; operator ::efl::input::Event&(); operator ::efl::input::Event const&() const; /// @cond LOCAL ::efl::eolian::address_of_operator operator&() { return {this}; } ::efl::eolian::address_of_operator operator&() const { return {this}; } /// @endcond }; } } } namespace efl { namespace input { struct Event : private ::efl::eo::concrete , EO_CXX_INHERIT(::efl::Duplicate) { explicit Event( ::Eo* eo) : ::efl::eo::concrete(eo) {} Event(std::nullptr_t) : ::efl::eo::concrete(nullptr) {} explicit Event() = default; Event(Event const&) = default; Event(Event&&) = default; Event& operator=(Event const&) = default; Event& operator=(Event&&) = default; template Event(Derived&& derived , typename std::enable_if< ::efl::eo::is_eolian_object::value && std::is_base_of< Event, Derived>::value>::type* = 0) : ::efl::eo::concrete(derived._eo_ptr()) {} ::efl::eolian::return_traits::type timestamp_get() const; ::efl::eolian::return_traits::type timestamp_set( ::efl::eolian::in_traits::type ms) const; ::efl::eolian::return_traits< ::efl::input::Device>::type device_get() const; ::efl::eolian::return_traits::type device_set( ::efl::eolian::in_traits< ::efl::input::Device>::type dev) const; ::efl::eolian::return_traits::type event_flags_get() const; ::efl::eolian::return_traits::type event_flags_set( ::efl::eolian::in_traits::type flags) const; ::efl::eolian::return_traits::type processed_get() const; ::efl::eolian::return_traits::type processed_set( ::efl::eolian::in_traits::type val) const; ::efl::eolian::return_traits::type scrolling_get() const; ::efl::eolian::return_traits::type scrolling_set( ::efl::eolian::in_traits::type val) const; ::efl::eolian::return_traits::type fake_get() const; ::efl::eolian::return_traits::type reset() const; static Efl_Class const* _eo_class() { return EFL_INPUT_EVENT_MIXIN; } Eo* _eo_ptr() const { return *(reinterpret_cast(const_cast(this))); } /// @cond LOCAL ::efl::eolian::address_of_operator operator&() { return {this}; } ::efl::eolian::address_of_operator operator&() const { return {this}; } /// @endcond ::efl::eo::wref _get_wref() const { return ::efl::eo::wref(*this); } ::efl::eo::concrete const& _get_concrete() const { return *this; } ::efl::eo::concrete& _get_concrete() { return *this; } using ::efl::eo::concrete::_eo_ptr; using ::efl::eo::concrete::_release; using ::efl::eo::concrete::_reset; using ::efl::eo::concrete::_delete; using ::efl::eo::concrete::operator bool; #ifdef EFL_CXXPERIMENTAL const Event* operator->() const { return this; } Event* operator->() { return this; } operator Eo*() const { return _eo_ptr(); } #endif friend bool operator==(Event const& lhs, Event const& rhs) { return lhs._get_concrete() == rhs._get_concrete(); } friend bool operator!=(Event const& lhs, Event const& rhs) { return !(lhs == rhs); } }; static_assert(sizeof(Event) == sizeof(Eo*), ""); static_assert(std::is_standard_layout::value, ""); } } #pragma GCC diagnostic pop #endif