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.
306 lines
10 KiB
C++
306 lines
10 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 "VkAllocation.hpp"
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#include "VkExternal.hpp"
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#include "VkBind.hpp"
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#include "VkCooperative.hpp"
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#include "VkAndroid.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 "VkExtension.hpp"
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#include "VkCoarse.hpp"
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#include "VkCommand.hpp"
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#include "VkFormat.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 "VkConditional.hpp"
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#include "VkD3D.hpp"
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#include "VkDebug.hpp"
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#include "VkFence.hpp"
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#include "VkDedicated.hpp"
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#include "VkDraw.hpp"
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#include "VkDispatch.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 "VkExtent.hpp"
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#include "VkFilter.hpp"
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#include "VkGeometry.hpp"
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#include "VkGraphics.hpp"
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namespace VULKAN_HPP_NAMESPACE
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{
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struct XYColorEXT
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{
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VULKAN_HPP_CONSTEXPR XYColorEXT( float x_ = {},
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float y_ = {} ) VULKAN_HPP_NOEXCEPT
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: x( x_ )
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, y( y_ )
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{}
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VULKAN_HPP_CONSTEXPR XYColorEXT( XYColorEXT const& rhs ) VULKAN_HPP_NOEXCEPT
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: x( rhs.x )
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, y( rhs.y )
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{}
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XYColorEXT & operator=( XYColorEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( static_cast<void*>(this), &rhs, sizeof( XYColorEXT ) );
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return *this;
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}
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XYColorEXT( VkXYColorEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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XYColorEXT& operator=( VkXYColorEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::XYColorEXT const *>(&rhs);
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return *this;
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}
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XYColorEXT & setX( float x_ ) VULKAN_HPP_NOEXCEPT
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{
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x = x_;
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return *this;
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}
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XYColorEXT & setY( float y_ ) VULKAN_HPP_NOEXCEPT
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{
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y = y_;
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return *this;
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}
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operator VkXYColorEXT const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkXYColorEXT*>( this );
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}
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operator VkXYColorEXT &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkXYColorEXT*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( XYColorEXT const& ) const = default;
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#else
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bool operator==( XYColorEXT const& rhs ) const VULKAN_HPP_NOEXCEPT
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{
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return ( x == rhs.x )
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&& ( y == rhs.y );
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}
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bool operator!=( XYColorEXT 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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float x = {};
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float y = {};
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};
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static_assert( sizeof( XYColorEXT ) == sizeof( VkXYColorEXT ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<XYColorEXT>::value, "struct wrapper is not a standard layout!" );
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struct HdrMetadataEXT
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{
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VULKAN_HPP_CONSTEXPR HdrMetadataEXT( VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryRed_ = {},
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VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryGreen_ = {},
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VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryBlue_ = {},
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VULKAN_HPP_NAMESPACE::XYColorEXT whitePoint_ = {},
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float maxLuminance_ = {},
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float minLuminance_ = {},
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float maxContentLightLevel_ = {},
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float maxFrameAverageLightLevel_ = {} ) VULKAN_HPP_NOEXCEPT
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: displayPrimaryRed( displayPrimaryRed_ )
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, displayPrimaryGreen( displayPrimaryGreen_ )
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, displayPrimaryBlue( displayPrimaryBlue_ )
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, whitePoint( whitePoint_ )
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, maxLuminance( maxLuminance_ )
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, minLuminance( minLuminance_ )
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, maxContentLightLevel( maxContentLightLevel_ )
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, maxFrameAverageLightLevel( maxFrameAverageLightLevel_ )
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{}
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VULKAN_HPP_CONSTEXPR HdrMetadataEXT( HdrMetadataEXT const& rhs ) VULKAN_HPP_NOEXCEPT
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: pNext( rhs.pNext )
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, displayPrimaryRed( rhs.displayPrimaryRed )
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, displayPrimaryGreen( rhs.displayPrimaryGreen )
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, displayPrimaryBlue( rhs.displayPrimaryBlue )
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, whitePoint( rhs.whitePoint )
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, maxLuminance( rhs.maxLuminance )
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, minLuminance( rhs.minLuminance )
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, maxContentLightLevel( rhs.maxContentLightLevel )
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, maxFrameAverageLightLevel( rhs.maxFrameAverageLightLevel )
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{}
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HdrMetadataEXT & operator=( HdrMetadataEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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memcpy( &pNext, &rhs.pNext, sizeof( HdrMetadataEXT ) - offsetof( HdrMetadataEXT, pNext ) );
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return *this;
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}
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HdrMetadataEXT( VkHdrMetadataEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = rhs;
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}
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HdrMetadataEXT& operator=( VkHdrMetadataEXT const & rhs ) VULKAN_HPP_NOEXCEPT
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{
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*this = *reinterpret_cast<VULKAN_HPP_NAMESPACE::HdrMetadataEXT const *>(&rhs);
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return *this;
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}
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HdrMetadataEXT & setPNext( const void* pNext_ ) VULKAN_HPP_NOEXCEPT
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{
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pNext = pNext_;
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return *this;
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}
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HdrMetadataEXT & setDisplayPrimaryRed( VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryRed_ ) VULKAN_HPP_NOEXCEPT
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{
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displayPrimaryRed = displayPrimaryRed_;
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return *this;
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}
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HdrMetadataEXT & setDisplayPrimaryGreen( VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryGreen_ ) VULKAN_HPP_NOEXCEPT
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{
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displayPrimaryGreen = displayPrimaryGreen_;
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return *this;
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}
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HdrMetadataEXT & setDisplayPrimaryBlue( VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryBlue_ ) VULKAN_HPP_NOEXCEPT
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{
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displayPrimaryBlue = displayPrimaryBlue_;
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return *this;
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}
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HdrMetadataEXT & setWhitePoint( VULKAN_HPP_NAMESPACE::XYColorEXT whitePoint_ ) VULKAN_HPP_NOEXCEPT
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{
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whitePoint = whitePoint_;
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return *this;
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}
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HdrMetadataEXT & setMaxLuminance( float maxLuminance_ ) VULKAN_HPP_NOEXCEPT
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{
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maxLuminance = maxLuminance_;
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return *this;
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}
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HdrMetadataEXT & setMinLuminance( float minLuminance_ ) VULKAN_HPP_NOEXCEPT
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{
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minLuminance = minLuminance_;
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return *this;
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}
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HdrMetadataEXT & setMaxContentLightLevel( float maxContentLightLevel_ ) VULKAN_HPP_NOEXCEPT
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{
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maxContentLightLevel = maxContentLightLevel_;
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return *this;
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}
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HdrMetadataEXT & setMaxFrameAverageLightLevel( float maxFrameAverageLightLevel_ ) VULKAN_HPP_NOEXCEPT
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{
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maxFrameAverageLightLevel = maxFrameAverageLightLevel_;
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return *this;
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}
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operator VkHdrMetadataEXT const&() const VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<const VkHdrMetadataEXT*>( this );
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}
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operator VkHdrMetadataEXT &() VULKAN_HPP_NOEXCEPT
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{
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return *reinterpret_cast<VkHdrMetadataEXT*>( this );
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}
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#if defined(VULKAN_HPP_HAS_SPACESHIP_OPERATOR)
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auto operator<=>( HdrMetadataEXT const& ) const = default;
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#else
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bool operator==( HdrMetadataEXT 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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&& ( displayPrimaryRed == rhs.displayPrimaryRed )
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&& ( displayPrimaryGreen == rhs.displayPrimaryGreen )
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&& ( displayPrimaryBlue == rhs.displayPrimaryBlue )
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&& ( whitePoint == rhs.whitePoint )
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&& ( maxLuminance == rhs.maxLuminance )
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&& ( minLuminance == rhs.minLuminance )
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&& ( maxContentLightLevel == rhs.maxContentLightLevel )
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&& ( maxFrameAverageLightLevel == rhs.maxFrameAverageLightLevel );
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}
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bool operator!=( HdrMetadataEXT 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::eHdrMetadataEXT;
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const void* pNext = {};
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VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryRed = {};
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VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryGreen = {};
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VULKAN_HPP_NAMESPACE::XYColorEXT displayPrimaryBlue = {};
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VULKAN_HPP_NAMESPACE::XYColorEXT whitePoint = {};
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float maxLuminance = {};
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float minLuminance = {};
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float maxContentLightLevel = {};
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float maxFrameAverageLightLevel = {};
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};
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static_assert( sizeof( HdrMetadataEXT ) == sizeof( VkHdrMetadataEXT ), "struct and wrapper have different size!" );
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static_assert( std::is_standard_layout<HdrMetadataEXT>::value, "struct wrapper is not a standard layout!" );
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} // namespace VULKAN_HPP_NAMESPACE
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