// C++/WinRT v2.0.250303.1 // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. #pragma once #ifndef WINRT_Windows_UI_Xaml_Interop_H #define WINRT_Windows_UI_Xaml_Interop_H #include "winrt/base.h" static_assert(winrt::check_version(CPPWINRT_VERSION, "2.0.250303.1"), "Mismatched C++/WinRT headers."); #define CPPWINRT_VERSION "2.0.250303.1" #include "winrt/Windows.UI.Xaml.h" #include "winrt/impl/Windows.Foundation.2.h" #include "winrt/impl/Windows.UI.Xaml.Interop.2.h" namespace winrt::impl { template auto consume_Windows_UI_Xaml_Interop_IBindableIterable::First() const { void* result{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->First(&result)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->First(&result)); } return winrt::Windows::UI::Xaml::Interop::IBindableIterator{ result, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_IBindableIterator::Current() const { void* value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_Current(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_Current(&value)); } return winrt::Windows::Foundation::IInspectable{ value, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_IBindableIterator::HasCurrent() const { bool value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_HasCurrent(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_HasCurrent(&value)); } return value; } template auto consume_Windows_UI_Xaml_Interop_IBindableIterator::MoveNext() const { bool result{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->MoveNext(&result)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->MoveNext(&result)); } return result; } template auto consume_Windows_UI_Xaml_Interop_IBindableObservableVector::VectorChanged(winrt::Windows::UI::Xaml::Interop::BindableVectorChangedEventHandler const& handler) const { winrt::event_token token{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->add_VectorChanged(*(void**)(&handler), put_abi(token))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->add_VectorChanged(*(void**)(&handler), put_abi(token))); } return token; } template auto consume_Windows_UI_Xaml_Interop_IBindableObservableVector::VectorChanged(auto_revoke_t, winrt::Windows::UI::Xaml::Interop::BindableVectorChangedEventHandler const& handler) const { return impl::make_event_revoker(this, VectorChanged(handler)); } template auto consume_Windows_UI_Xaml_Interop_IBindableObservableVector::VectorChanged(winrt::event_token const& token) const noexcept { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; _winrt_abi_type->remove_VectorChanged(impl::bind_in(token)); } else { auto const _winrt_abi_type = *(abi_t**)this; _winrt_abi_type->remove_VectorChanged(impl::bind_in(token)); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::GetAt(uint32_t index) const { void* result{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->GetAt(index, &result)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->GetAt(index, &result)); } return winrt::Windows::Foundation::IInspectable{ result, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::Size() const { uint32_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_Size(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_Size(&value)); } return value; } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::GetView() const { void* result{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->GetView(&result)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->GetView(&result)); } return winrt::Windows::UI::Xaml::Interop::IBindableVectorView{ result, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::IndexOf(winrt::Windows::Foundation::IInspectable const& value, uint32_t& index) const { bool returnValue{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->IndexOf(*(void**)(&value), &index, &returnValue)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->IndexOf(*(void**)(&value), &index, &returnValue)); } return returnValue; } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::SetAt(uint32_t index, winrt::Windows::Foundation::IInspectable const& value) const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->SetAt(index, *(void**)(&value))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->SetAt(index, *(void**)(&value))); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::InsertAt(uint32_t index, winrt::Windows::Foundation::IInspectable const& value) const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->InsertAt(index, *(void**)(&value))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->InsertAt(index, *(void**)(&value))); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::RemoveAt(uint32_t index) const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->RemoveAt(index)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->RemoveAt(index)); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::Append(winrt::Windows::Foundation::IInspectable const& value) const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->Append(*(void**)(&value))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->Append(*(void**)(&value))); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::RemoveAtEnd() const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->RemoveAtEnd()); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->RemoveAtEnd()); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVector::Clear() const { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->Clear()); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->Clear()); } } template auto consume_Windows_UI_Xaml_Interop_IBindableVectorView::GetAt(uint32_t index) const { void* result{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->GetAt(index, &result)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->GetAt(index, &result)); } return winrt::Windows::Foundation::IInspectable{ result, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_IBindableVectorView::Size() const { uint32_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_Size(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_Size(&value)); } return value; } template auto consume_Windows_UI_Xaml_Interop_IBindableVectorView::IndexOf(winrt::Windows::Foundation::IInspectable const& value, uint32_t& index) const { bool returnValue{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->IndexOf(*(void**)(&value), &index, &returnValue)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->IndexOf(*(void**)(&value), &index, &returnValue)); } return returnValue; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChanged::CollectionChanged(winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedEventHandler const& handler) const { winrt::event_token token{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->add_CollectionChanged(*(void**)(&handler), put_abi(token))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->add_CollectionChanged(*(void**)(&handler), put_abi(token))); } return token; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChanged::CollectionChanged(auto_revoke_t, winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedEventHandler const& handler) const { return impl::make_event_revoker(this, CollectionChanged(handler)); } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChanged::CollectionChanged(winrt::event_token const& token) const noexcept { if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; _winrt_abi_type->remove_CollectionChanged(impl::bind_in(token)); } else { auto const _winrt_abi_type = *(abi_t**)this; _winrt_abi_type->remove_CollectionChanged(impl::bind_in(token)); } } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgs::Action() const { winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedAction value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_Action(reinterpret_cast(&value))); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_Action(reinterpret_cast(&value))); } return value; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgs::NewItems() const { void* value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_NewItems(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_NewItems(&value)); } return winrt::Windows::UI::Xaml::Interop::IBindableVector{ value, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgs::OldItems() const { void* value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_OldItems(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_OldItems(&value)); } return winrt::Windows::UI::Xaml::Interop::IBindableVector{ value, take_ownership_from_abi }; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgs::NewStartingIndex() const { int32_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_NewStartingIndex(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_NewStartingIndex(&value)); } return value; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgs::OldStartingIndex() const { int32_t value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->get_OldStartingIndex(&value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->get_OldStartingIndex(&value)); } return value; } template auto consume_Windows_UI_Xaml_Interop_INotifyCollectionChangedEventArgsFactory::CreateInstanceWithAllParameters(winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedAction const& action, winrt::Windows::UI::Xaml::Interop::IBindableVector const& newItems, winrt::Windows::UI::Xaml::Interop::IBindableVector const& oldItems, int32_t newIndex, int32_t oldIndex, winrt::Windows::Foundation::IInspectable const& baseInterface, winrt::Windows::Foundation::IInspectable& innerInterface) const { void* value{}; if constexpr (!std::is_same_v) { winrt::hresult _winrt_cast_result_code; auto const _winrt_casted_result = impl::try_as_with_reason(static_cast(this), _winrt_cast_result_code); check_hresult(_winrt_cast_result_code); auto const _winrt_abi_type = *(abi_t**)&_winrt_casted_result; check_hresult(_winrt_abi_type->CreateInstanceWithAllParameters(static_cast(action), *(void**)(&newItems), *(void**)(&oldItems), newIndex, oldIndex, *(void**)(&baseInterface), impl::bind_out(innerInterface), &value)); } else { auto const _winrt_abi_type = *(abi_t**)this; check_hresult(_winrt_abi_type->CreateInstanceWithAllParameters(static_cast(action), *(void**)(&newItems), *(void**)(&oldItems), newIndex, oldIndex, *(void**)(&baseInterface), impl::bind_out(innerInterface), &value)); } return winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedEventArgs{ value, take_ownership_from_abi }; } template struct delegate final : implements_delegate { delegate(H&& handler) : implements_delegate(std::forward(handler)) {} int32_t __stdcall Invoke(void* vector, void* e) noexcept final try { (*this)(*reinterpret_cast(&vector), *reinterpret_cast(&e)); return 0; } catch (...) { return to_hresult(); } }; template struct delegate final : implements_delegate { delegate(H&& handler) : implements_delegate(std::forward(handler)) {} int32_t __stdcall Invoke(void* sender, void* e) noexcept final try { (*this)(*reinterpret_cast(&sender), *reinterpret_cast(&e)); return 0; } catch (...) { return to_hresult(); } }; template struct produce : produce_base { int32_t __stdcall First(void** result) noexcept final try { clear_abi(result); typename D::abi_guard guard(this->shim()); *result = detach_from(this->shim().First()); return 0; } catch (...) { return to_hresult(); } }; template struct produce : produce_base { int32_t __stdcall get_Current(void** value) noexcept final try { clear_abi(value); typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().Current()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_HasCurrent(bool* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().HasCurrent()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall MoveNext(bool* result) noexcept final try { typename D::abi_guard guard(this->shim()); *result = detach_from(this->shim().MoveNext()); return 0; } catch (...) { return to_hresult(); } }; template struct produce : produce_base { int32_t __stdcall add_VectorChanged(void* handler, winrt::event_token* token) noexcept final try { zero_abi(token); typename D::abi_guard guard(this->shim()); *token = detach_from(this->shim().VectorChanged(*reinterpret_cast(&handler))); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall remove_VectorChanged(winrt::event_token token) noexcept final { typename D::abi_guard guard(this->shim()); this->shim().VectorChanged(*reinterpret_cast(&token)); return 0; } }; template struct produce : produce_base { int32_t __stdcall GetAt(uint32_t index, void** result) noexcept final try { clear_abi(result); typename D::abi_guard guard(this->shim()); *result = detach_from(this->shim().GetAt(index)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_Size(uint32_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().Size()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall GetView(void** result) noexcept final try { clear_abi(result); typename D::abi_guard guard(this->shim()); *result = detach_from(this->shim().GetView()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall IndexOf(void* value, uint32_t* index, bool* returnValue) noexcept final try { typename D::abi_guard guard(this->shim()); *returnValue = detach_from(this->shim().IndexOf(*reinterpret_cast(&value), *index)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall SetAt(uint32_t index, void* value) noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().SetAt(index, *reinterpret_cast(&value)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall InsertAt(uint32_t index, void* value) noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().InsertAt(index, *reinterpret_cast(&value)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall RemoveAt(uint32_t index) noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().RemoveAt(index); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall Append(void* value) noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().Append(*reinterpret_cast(&value)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall RemoveAtEnd() noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().RemoveAtEnd(); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall Clear() noexcept final try { typename D::abi_guard guard(this->shim()); this->shim().Clear(); return 0; } catch (...) { return to_hresult(); } }; template struct produce : produce_base { int32_t __stdcall GetAt(uint32_t index, void** result) noexcept final try { clear_abi(result); typename D::abi_guard guard(this->shim()); *result = detach_from(this->shim().GetAt(index)); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_Size(uint32_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().Size()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall IndexOf(void* value, uint32_t* index, bool* returnValue) noexcept final try { typename D::abi_guard guard(this->shim()); *returnValue = detach_from(this->shim().IndexOf(*reinterpret_cast(&value), *index)); return 0; } catch (...) { return to_hresult(); } }; template struct produce : produce_base { int32_t __stdcall add_CollectionChanged(void* handler, winrt::event_token* token) noexcept final try { zero_abi(token); typename D::abi_guard guard(this->shim()); *token = detach_from(this->shim().CollectionChanged(*reinterpret_cast(&handler))); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall remove_CollectionChanged(winrt::event_token token) noexcept final { typename D::abi_guard guard(this->shim()); this->shim().CollectionChanged(*reinterpret_cast(&token)); return 0; } }; #ifndef WINRT_LEAN_AND_MEAN template struct produce : produce_base { int32_t __stdcall get_Action(int32_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().Action()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_NewItems(void** value) noexcept final try { clear_abi(value); typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().NewItems()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_OldItems(void** value) noexcept final try { clear_abi(value); typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().OldItems()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_NewStartingIndex(int32_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().NewStartingIndex()); return 0; } catch (...) { return to_hresult(); } int32_t __stdcall get_OldStartingIndex(int32_t* value) noexcept final try { typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().OldStartingIndex()); return 0; } catch (...) { return to_hresult(); } }; #endif #ifndef WINRT_LEAN_AND_MEAN template struct produce : produce_base { int32_t __stdcall CreateInstanceWithAllParameters(int32_t action, void* newItems, void* oldItems, int32_t newIndex, int32_t oldIndex, void* baseInterface, void** innerInterface, void** value) noexcept final try { if (innerInterface) *innerInterface = nullptr; winrt::Windows::Foundation::IInspectable winrt_impl_innerInterface; clear_abi(value); typename D::abi_guard guard(this->shim()); *value = detach_from(this->shim().CreateInstanceWithAllParameters(*reinterpret_cast(&action), *reinterpret_cast(&newItems), *reinterpret_cast(&oldItems), newIndex, oldIndex, *reinterpret_cast(&baseInterface), winrt_impl_innerInterface)); if (innerInterface) *innerInterface = detach_abi(winrt_impl_innerInterface); return 0; } catch (...) { return to_hresult(); } }; #endif } WINRT_EXPORT namespace winrt::Windows::UI::Xaml::Interop { inline NotifyCollectionChangedEventArgs::NotifyCollectionChangedEventArgs(winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedAction const& action, winrt::Windows::UI::Xaml::Interop::IBindableVector const& newItems, winrt::Windows::UI::Xaml::Interop::IBindableVector const& oldItems, int32_t newIndex, int32_t oldIndex) { winrt::Windows::Foundation::IInspectable baseInterface, innerInterface; *this = impl::call_factory([&](INotifyCollectionChangedEventArgsFactory const& f) { return f.CreateInstanceWithAllParameters(action, newItems, oldItems, newIndex, oldIndex, baseInterface, innerInterface); }); } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(L handler) : BindableVectorChangedEventHandler(impl::make_delegate(std::forward(handler))) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(F* handler) : BindableVectorChangedEventHandler([=](auto&&... args) { return handler(args...); }) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(O* object, M method) : BindableVectorChangedEventHandler([=](auto&&... args) { return ((*object).*(method))(args...); }) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(com_ptr&& object, M method) : BindableVectorChangedEventHandler([o = std::move(object), method](auto&&... args) { return ((*o).*(method))(args...); }) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(weak_ref&& object, LM&& lambda_or_method) : BindableVectorChangedEventHandler([o = std::move(object), lm = std::forward(lambda_or_method)](auto&&... args) { if (auto s = o.get()) { if constexpr (std::is_member_function_pointer_v) ((*s).*(lm))(args...); else lm(args...); } }) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(std::shared_ptr&& object, M method) : BindableVectorChangedEventHandler([o = std::move(object), method](auto&&... args) { return ((*o).*(method))(args...); }) { } template BindableVectorChangedEventHandler::BindableVectorChangedEventHandler(std::weak_ptr&& object, LM&& lambda_or_method) : BindableVectorChangedEventHandler([o = std::move(object), lm = std::forward(lambda_or_method)](auto&&... args) { if (auto s = o.lock()) { if constexpr (std::is_member_function_pointer_v) ((*s).*(lm))(args...); else lm(args...); } }) { } inline auto BindableVectorChangedEventHandler::operator()(winrt::Windows::UI::Xaml::Interop::IBindableObservableVector const& vector, winrt::Windows::Foundation::IInspectable const& e) const { check_hresult((*(impl::abi_t**)this)->Invoke(*(void**)(&vector), *(void**)(&e))); } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(L handler) : NotifyCollectionChangedEventHandler(impl::make_delegate(std::forward(handler))) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(F* handler) : NotifyCollectionChangedEventHandler([=](auto&&... args) { return handler(args...); }) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(O* object, M method) : NotifyCollectionChangedEventHandler([=](auto&&... args) { return ((*object).*(method))(args...); }) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(com_ptr&& object, M method) : NotifyCollectionChangedEventHandler([o = std::move(object), method](auto&&... args) { return ((*o).*(method))(args...); }) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(weak_ref&& object, LM&& lambda_or_method) : NotifyCollectionChangedEventHandler([o = std::move(object), lm = std::forward(lambda_or_method)](auto&&... args) { if (auto s = o.get()) { if constexpr (std::is_member_function_pointer_v) ((*s).*(lm))(args...); else lm(args...); } }) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(std::shared_ptr&& object, M method) : NotifyCollectionChangedEventHandler([o = std::move(object), method](auto&&... args) { return ((*o).*(method))(args...); }) { } template NotifyCollectionChangedEventHandler::NotifyCollectionChangedEventHandler(std::weak_ptr&& object, LM&& lambda_or_method) : NotifyCollectionChangedEventHandler([o = std::move(object), lm = std::forward(lambda_or_method)](auto&&... args) { if (auto s = o.lock()) { if constexpr (std::is_member_function_pointer_v) ((*s).*(lm))(args...); else lm(args...); } }) { } inline auto NotifyCollectionChangedEventHandler::operator()(winrt::Windows::Foundation::IInspectable const& sender, winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedEventArgs const& e) const { check_hresult((*(impl::abi_t**)this)->Invoke(*(void**)(&sender), *(void**)(&e))); } template struct NotifyCollectionChangedEventArgsT : implements, impl::require, impl::base { using composable = NotifyCollectionChangedEventArgs; protected: NotifyCollectionChangedEventArgsT(winrt::Windows::UI::Xaml::Interop::NotifyCollectionChangedAction const& action, winrt::Windows::UI::Xaml::Interop::IBindableVector const& newItems, winrt::Windows::UI::Xaml::Interop::IBindableVector const& oldItems, int32_t newIndex, int32_t oldIndex) { impl::call_factory([&](INotifyCollectionChangedEventArgsFactory const& f) { [[maybe_unused]] auto winrt_impl_discarded = f.CreateInstanceWithAllParameters(action, newItems, oldItems, newIndex, oldIndex, *this, this->m_inner); }); } }; } namespace std { #ifndef WINRT_LEAN_AND_MEAN template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; template<> struct hash : winrt::impl::hash_base {}; #endif #ifdef __cpp_lib_format #endif } namespace winrt::impl { template struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return name_of(); } }; template <> struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return L"Point"sv; } }; template <> struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return L"Size"sv; } }; template <> struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return L"Rect"sv; } }; template <> struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return L"DateTime"sv; } }; template <> struct xaml_typename_name { static constexpr std::wstring_view value() noexcept { return L"TimeSpan"sv; } }; template struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Metadata; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template<> struct xaml_typename_kind { static constexpr Windows::UI::Xaml::Interop::TypeKind value = Windows::UI::Xaml::Interop::TypeKind::Primitive; }; template auto consume_Windows_UI_Xaml_Interop_IBindableIterable::begin() const { return get_begin_iterator(static_cast(*this)); } template auto consume_Windows_UI_Xaml_Interop_IBindableIterable::end() const { return get_end_iterator(static_cast(*this)); } } WINRT_EXPORT namespace winrt { template inline Windows::UI::Xaml::Interop::TypeName xaml_typename() { static_assert(impl::has_category_v, "T must be WinRT type."); static const Windows::UI::Xaml::Interop::TypeName name{ hstring{ impl::xaml_typename_name::value() }, impl::xaml_typename_kind::value }; return name; } } #endif