mirror of
https://github.com/skyline-emu/skyline.git
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500b49d329
This commit adds Vulkan-Hpp as a library to the project. The headers are from a modified version of `VulkanHppGenerator`. They are broken into multiple files to avoid exceeding the Intellisense file size limit of Android Studio.
386 lines
14 KiB
C++
386 lines
14 KiB
C++
// Copyright (c) 2015-2019 The Khronos Group Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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// ---- Exceptions to the Apache 2.0 License: ----
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//
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// As an exception, if you use this Software to generate code and portions of
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// this Software are embedded into the generated code as a result, you may
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// redistribute such product without providing attribution as would otherwise
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// be required by Sections 4(a), 4(b) and 4(d) of the License.
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//
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// In addition, if you combine or link code generated by this Software with
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// software that is licensed under the GPLv2 or the LGPL v2.0 or 2.1
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// ("`Combined Software`") and if a court of competent jurisdiction determines
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// that the patent provision (Section 3), the indemnity provision (Section 9)
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// or other Section of the License conflicts with the conditions of the
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// applicable GPL or LGPL license, you may retroactively and prospectively
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// choose to deem waived or otherwise exclude such Section(s) of the License,
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// but only in their entirety and only with respect to the Combined Software.
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//
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// This header is generated from the Khronos Vulkan XML API Registry.
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#pragma once
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#include "../handles.hpp"
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#include "VkAcquire.hpp"
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#include "VkAcceleration.hpp"
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#include "VkApplication.hpp"
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#include "VkInitialize.hpp"
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#include "VkAllocation.hpp"
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#include "VkExternal.hpp"
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#include "VkBind.hpp"
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#include "VkObject.hpp"
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#include "VkCooperative.hpp"
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#include "VkAndroid.hpp"
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#include "VkImport.hpp"
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#include "VkImage.hpp"
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#include "VkDescriptor.hpp"
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#include "VkBase.hpp"
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#include "VkAttachment.hpp"
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#include "VkBuffer.hpp"
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#include "VkFramebuffer.hpp"
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#include "VkCalibrated.hpp"
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#include "VkDevice.hpp"
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#include "VkCheckpoint.hpp"
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#include "VkConformance.hpp"
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#include "VkClear.hpp"
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#include "VkCmd.hpp"
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#include "VkCoarse.hpp"
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#include "VkExtension.hpp"
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#include "VkCommand.hpp"
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#include "VkFormat.hpp"
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#include "VkMetal.hpp"
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#include "VkComponent.hpp"
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#include "VkCopy.hpp"
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#include "VkCompute.hpp"
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#include "VkPast.hpp"
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#include "VkConditional.hpp"
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#include "VkMapped.hpp"
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#include "VkD3D.hpp"
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#include "VkDebug.hpp"
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#include "VkDedicated.hpp"
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#include "VkFence.hpp"
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#include "VkDispatch.hpp"
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#include "VkPipeline.hpp"
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#include "VkDraw.hpp"
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#include "VkDisplay.hpp"
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#include "VkDrm.hpp"
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#include "VkEvent.hpp"
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#include "VkExport.hpp"
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#include "VkRay.hpp"
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#include "VkExtent.hpp"
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#include "VkPerformance.hpp"
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#include "VkFilter.hpp"
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#include "VkRender.hpp"
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#include "VkGeometry.hpp"
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#include "VkGraphics.hpp"
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#include "VkHdr.hpp"
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#include "VkHeadless.hpp"
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#include "VkMultisample.hpp"
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#include "VkI.hpp"
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#include "VkIndirect.hpp"
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#include "VkInput.hpp"
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#include "VkOffset.hpp"
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#include "VkMemory.hpp"
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#include "VkInstance.hpp"
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#include "VkLayer.hpp"
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#include "VkMac.hpp"
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#include "VkPhysical.hpp"
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#include "VkPresent.hpp"
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#include "VkProtected.hpp"
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#include "VkPush.hpp"
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#include "VkQuery.hpp"
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#include "VkQueue.hpp"
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#include "VkRect.hpp"
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#include "VkRefresh.hpp"
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#include "VkSample.hpp"
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#include "VkSampler.hpp"
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#include "VkSemaphore.hpp"
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#include "VkShader.hpp"
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#include "VkShading.hpp"
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#include "VkShared.hpp"
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#include "VkSparse.hpp"
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namespace VULKAN_HPP_NAMESPACE
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{
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struct SparseImageFormatProperties
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{
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VULKAN_HPP_CONSTEXPR SparseImageFormatProperties( VULKAN_HPP_NAMESPACE::ImageAspectFlags aspectMask_ = {},
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VULKAN_HPP_NAMESPACE::Extent3D imageGranularity_ = {},
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VULKAN_HPP_NAMESPACE::SparseImageFormatFlags flags_ = {} ) VULKAN_HPP_NOEXCEPT
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: aspectMask( aspectMask_ )
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, imageGranularity( imageGranularity_ )
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, flags( flags_ )
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{}
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VULKAN_HPP_CONSTEXPR SparseImageFormatProperties( SparseImageFormatProperties const& rhs ) VULKAN_HPP_NOEXCEPT
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: aspectMask( rhs.aspectMask )
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, imageGranularity( rhs.imageGranularity )
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, flags( rhs.flags )
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{}
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SparseImageFormatProperties & operator=( SparseImageFormatProperties const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( static_cast<void*>(this), &rhs, sizeof( SparseImageFormatProperties ) );
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return *this;
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}
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SparseImageFormatProperties( VkSparseImageFormatProperties const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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SparseImageFormatProperties& operator=( VkSparseImageFormatProperties const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::SparseImageFormatProperties const *>(&rhs);
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return *this;
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}
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operator VkSparseImageFormatProperties const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkSparseImageFormatProperties*>( this );
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}
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operator VkSparseImageFormatProperties &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkSparseImageFormatProperties*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( SparseImageFormatProperties const& ) const = default;
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#else
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bool operator==( SparseImageFormatProperties const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return ( aspectMask == rhs.aspectMask )
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&& ( imageGranularity == rhs.imageGranularity )
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&& ( flags == rhs.flags );
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}
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bool operator!=( SparseImageFormatProperties const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return !operator==( rhs );
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}
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#endif
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public:
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VULKAN_HPP_NAMESPACE::ImageAspectFlags aspectMask = {};
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VULKAN_HPP_NAMESPACE::Extent3D imageGranularity = {};
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VULKAN_HPP_NAMESPACE::SparseImageFormatFlags flags = {};
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};
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static_assert( sizeof( SparseImageFormatProperties ) == sizeof( VkSparseImageFormatProperties ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<SparseImageFormatProperties>::value, "struct wrapper is not a standard layout!" );
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struct SparseImageFormatProperties2
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{
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VULKAN_HPP_CONSTEXPR SparseImageFormatProperties2( VULKAN_HPP_NAMESPACE::SparseImageFormatProperties properties_ = {} ) VULKAN_HPP_NOEXCEPT
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: properties( properties_ )
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{}
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VULKAN_HPP_CONSTEXPR SparseImageFormatProperties2( SparseImageFormatProperties2 const& rhs ) VULKAN_HPP_NOEXCEPT
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: pNext( rhs.pNext )
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, properties( rhs.properties )
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{}
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SparseImageFormatProperties2 & operator=( SparseImageFormatProperties2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( &pNext, &rhs.pNext, sizeof( SparseImageFormatProperties2 ) - offsetof( SparseImageFormatProperties2, pNext ) );
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return *this;
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}
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SparseImageFormatProperties2( VkSparseImageFormatProperties2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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SparseImageFormatProperties2& operator=( VkSparseImageFormatProperties2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::SparseImageFormatProperties2 const *>(&rhs);
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return *this;
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}
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operator VkSparseImageFormatProperties2 const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkSparseImageFormatProperties2*>( this );
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}
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operator VkSparseImageFormatProperties2 &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkSparseImageFormatProperties2*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( SparseImageFormatProperties2 const& ) const = default;
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#else
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bool operator==( SparseImageFormatProperties2 const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return ( sType == rhs.sType )
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&& ( pNext == rhs.pNext )
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&& ( properties == rhs.properties );
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}
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bool operator!=( SparseImageFormatProperties2 const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return !operator==( rhs );
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}
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#endif
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public:
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const VULKAN_HPP_NAMESPACE::StructureType sType = StructureType::eSparseImageFormatProperties2;
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void* pNext = {};
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VULKAN_HPP_NAMESPACE::SparseImageFormatProperties properties = {};
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};
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static_assert( sizeof( SparseImageFormatProperties2 ) == sizeof( VkSparseImageFormatProperties2 ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<SparseImageFormatProperties2>::value, "struct wrapper is not a standard layout!" );
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struct SparseImageMemoryRequirements
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{
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VULKAN_HPP_CONSTEXPR SparseImageMemoryRequirements( VULKAN_HPP_NAMESPACE::SparseImageFormatProperties formatProperties_ = {},
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uint32_t imageMipTailFirstLod_ = {},
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailSize_ = {},
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailOffset_ = {},
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailStride_ = {} ) VULKAN_HPP_NOEXCEPT
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: formatProperties( formatProperties_ )
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, imageMipTailFirstLod( imageMipTailFirstLod_ )
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, imageMipTailSize( imageMipTailSize_ )
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, imageMipTailOffset( imageMipTailOffset_ )
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, imageMipTailStride( imageMipTailStride_ )
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{}
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VULKAN_HPP_CONSTEXPR SparseImageMemoryRequirements( SparseImageMemoryRequirements const& rhs ) VULKAN_HPP_NOEXCEPT
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: formatProperties( rhs.formatProperties )
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, imageMipTailFirstLod( rhs.imageMipTailFirstLod )
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, imageMipTailSize( rhs.imageMipTailSize )
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, imageMipTailOffset( rhs.imageMipTailOffset )
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, imageMipTailStride( rhs.imageMipTailStride )
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{}
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SparseImageMemoryRequirements & operator=( SparseImageMemoryRequirements const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( static_cast<void*>(this), &rhs, sizeof( SparseImageMemoryRequirements ) );
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return *this;
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}
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SparseImageMemoryRequirements( VkSparseImageMemoryRequirements const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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SparseImageMemoryRequirements& operator=( VkSparseImageMemoryRequirements const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::SparseImageMemoryRequirements const *>(&rhs);
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return *this;
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}
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operator VkSparseImageMemoryRequirements const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkSparseImageMemoryRequirements*>( this );
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}
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operator VkSparseImageMemoryRequirements &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkSparseImageMemoryRequirements*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( SparseImageMemoryRequirements const& ) const = default;
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#else
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bool operator==( SparseImageMemoryRequirements const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return ( formatProperties == rhs.formatProperties )
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&& ( imageMipTailFirstLod == rhs.imageMipTailFirstLod )
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&& ( imageMipTailSize == rhs.imageMipTailSize )
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&& ( imageMipTailOffset == rhs.imageMipTailOffset )
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&& ( imageMipTailStride == rhs.imageMipTailStride );
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}
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bool operator!=( SparseImageMemoryRequirements const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return !operator==( rhs );
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}
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#endif
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public:
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VULKAN_HPP_NAMESPACE::SparseImageFormatProperties formatProperties = {};
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uint32_t imageMipTailFirstLod = {};
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailSize = {};
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailOffset = {};
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VULKAN_HPP_NAMESPACE::DeviceSize imageMipTailStride = {};
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};
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static_assert( sizeof( SparseImageMemoryRequirements ) == sizeof( VkSparseImageMemoryRequirements ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<SparseImageMemoryRequirements>::value, "struct wrapper is not a standard layout!" );
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struct SparseImageMemoryRequirements2
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{
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VULKAN_HPP_CONSTEXPR SparseImageMemoryRequirements2( VULKAN_HPP_NAMESPACE::SparseImageMemoryRequirements memoryRequirements_ = {} ) VULKAN_HPP_NOEXCEPT
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: memoryRequirements( memoryRequirements_ )
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{}
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VULKAN_HPP_CONSTEXPR SparseImageMemoryRequirements2( SparseImageMemoryRequirements2 const& rhs ) VULKAN_HPP_NOEXCEPT
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: pNext( rhs.pNext )
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, memoryRequirements( rhs.memoryRequirements )
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{}
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SparseImageMemoryRequirements2 & operator=( SparseImageMemoryRequirements2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( &pNext, &rhs.pNext, sizeof( SparseImageMemoryRequirements2 ) - offsetof( SparseImageMemoryRequirements2, pNext ) );
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return *this;
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}
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SparseImageMemoryRequirements2( VkSparseImageMemoryRequirements2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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SparseImageMemoryRequirements2& operator=( VkSparseImageMemoryRequirements2 const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::SparseImageMemoryRequirements2 const *>(&rhs);
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return *this;
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}
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operator VkSparseImageMemoryRequirements2 const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkSparseImageMemoryRequirements2*>( this );
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}
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operator VkSparseImageMemoryRequirements2 &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkSparseImageMemoryRequirements2*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( SparseImageMemoryRequirements2 const& ) const = default;
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#else
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bool operator==( SparseImageMemoryRequirements2 const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return ( sType == rhs.sType )
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&& ( pNext == rhs.pNext )
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&& ( memoryRequirements == rhs.memoryRequirements );
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}
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bool operator!=( SparseImageMemoryRequirements2 const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return !operator==( rhs );
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}
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#endif
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public:
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const VULKAN_HPP_NAMESPACE::StructureType sType = StructureType::eSparseImageMemoryRequirements2;
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void* pNext = {};
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VULKAN_HPP_NAMESPACE::SparseImageMemoryRequirements memoryRequirements = {};
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};
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static_assert( sizeof( SparseImageMemoryRequirements2 ) == sizeof( VkSparseImageMemoryRequirements2 ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<SparseImageMemoryRequirements2>::value, "struct wrapper is not a standard layout!" );
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} // namespace VULKAN_HPP_NAMESPACE
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