vulkan-hpp/samples/SurfaceCapabilities/SurfaceCapabilities.cpp
asuessenbach 527e52a1bd Introduce VULKAN_HPP_NO_TO_STRING to optionally remove the various vk::to_string functions.
Also extend the samples to hold some local version of the needed to_string functions in case VULKAN_HPP_NO_TO_STRING is defined.
2022-07-25 17:11:30 +02:00

293 lines
13 KiB
C++

// Copyright(c) 2019, NVIDIA CORPORATION. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
// VulkanHpp Samples : SurfaceCapabilities
// Get surface capabilities.
#include "../utils/utils.hpp"
#include "vulkan/vulkan.hpp"
#include <iomanip>
#include <sstream>
#include <vector>
static char const * AppName = "SurfaceCapabilities";
static char const * EngineName = "Vulkan.hpp";
#if defined( VULKAN_HPP_NO_TO_STRING )
namespace local
{
std::string to_string( vk::CompositeAlphaFlagsKHR value )
{
if ( !value )
return "{}";
std::string result;
if ( value & vk::CompositeAlphaFlagBitsKHR::eOpaque )
result += "Opaque | ";
if ( value & vk::CompositeAlphaFlagBitsKHR::ePreMultiplied )
result += "PreMultiplied | ";
if ( value & vk::CompositeAlphaFlagBitsKHR::ePostMultiplied )
result += "PostMultiplied | ";
if ( value & vk::CompositeAlphaFlagBitsKHR::eInherit )
result += "Inherit | ";
return "{ " + result.substr( 0, result.size() - 3 ) + " }";
}
std::string to_string( vk::ImageUsageFlags value )
{
if ( !value )
return "{}";
std::string result;
if ( value & vk::ImageUsageFlagBits::eTransferSrc )
result += "TransferSrc | ";
if ( value & vk::ImageUsageFlagBits::eTransferDst )
result += "TransferDst | ";
if ( value & vk::ImageUsageFlagBits::eSampled )
result += "Sampled | ";
if ( value & vk::ImageUsageFlagBits::eStorage )
result += "Storage | ";
if ( value & vk::ImageUsageFlagBits::eColorAttachment )
result += "ColorAttachment | ";
if ( value & vk::ImageUsageFlagBits::eDepthStencilAttachment )
result += "DepthStencilAttachment | ";
if ( value & vk::ImageUsageFlagBits::eTransientAttachment )
result += "TransientAttachment | ";
if ( value & vk::ImageUsageFlagBits::eInputAttachment )
result += "InputAttachment | ";
# if defined( VK_ENABLE_BETA_EXTENSIONS )
if ( value & vk::ImageUsageFlagBits::eVideoDecodeDstKHR )
result += "VideoDecodeDstKHR | ";
if ( value & vk::ImageUsageFlagBits::eVideoDecodeSrcKHR )
result += "VideoDecodeSrcKHR | ";
if ( value & vk::ImageUsageFlagBits::eVideoDecodeDpbKHR )
result += "VideoDecodeDpbKHR | ";
# endif /*VK_ENABLE_BETA_EXTENSIONS*/
if ( value & vk::ImageUsageFlagBits::eFragmentDensityMapEXT )
result += "FragmentDensityMapEXT | ";
if ( value & vk::ImageUsageFlagBits::eFragmentShadingRateAttachmentKHR )
result += "FragmentShadingRateAttachmentKHR | ";
# if defined( VK_ENABLE_BETA_EXTENSIONS )
if ( value & vk::ImageUsageFlagBits::eVideoEncodeDstKHR )
result += "VideoEncodeDstKHR | ";
if ( value & vk::ImageUsageFlagBits::eVideoEncodeSrcKHR )
result += "VideoEncodeSrcKHR | ";
if ( value & vk::ImageUsageFlagBits::eVideoEncodeDpbKHR )
result += "VideoEncodeDpbKHR | ";
# endif /*VK_ENABLE_BETA_EXTENSIONS*/
if ( value & vk::ImageUsageFlagBits::eInvocationMaskHUAWEI )
result += "InvocationMaskHUAWEI | ";
if ( value & vk::ImageUsageFlagBits::eSampleWeightQCOM )
result += "SampleWeightQCOM | ";
if ( value & vk::ImageUsageFlagBits::eSampleBlockMatchQCOM )
result += "SampleBlockMatchQCOM | ";
return "{ " + result.substr( 0, result.size() - 3 ) + " }";
}
std::string to_string( vk::SurfaceTransformFlagBitsKHR value )
{
switch ( value )
{
case vk::SurfaceTransformFlagBitsKHR::eIdentity: return "Identity";
case vk::SurfaceTransformFlagBitsKHR::eRotate90: return "Rotate90";
case vk::SurfaceTransformFlagBitsKHR::eRotate180: return "Rotate180";
case vk::SurfaceTransformFlagBitsKHR::eRotate270: return "Rotate270";
case vk::SurfaceTransformFlagBitsKHR::eHorizontalMirror: return "HorizontalMirror";
case vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate90: return "HorizontalMirrorRotate90";
case vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate180: return "HorizontalMirrorRotate180";
case vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate270: return "HorizontalMirrorRotate270";
case vk::SurfaceTransformFlagBitsKHR::eInherit: return "Inherit";
default: return "invalid ( " + VULKAN_HPP_NAMESPACE::toHexString( static_cast<uint32_t>( value ) ) + " )";
}
}
std::string to_string( vk::SurfaceTransformFlagsKHR value )
{
if ( !value )
return "{}";
std::string result;
if ( value & vk::SurfaceTransformFlagBitsKHR::eIdentity )
result += "Identity | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eRotate90 )
result += "Rotate90 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eRotate180 )
result += "Rotate180 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eRotate270 )
result += "Rotate270 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eHorizontalMirror )
result += "HorizontalMirror | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate90 )
result += "HorizontalMirrorRotate90 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate180 )
result += "HorizontalMirrorRotate180 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eHorizontalMirrorRotate270 )
result += "HorizontalMirrorRotate270 | ";
if ( value & vk::SurfaceTransformFlagBitsKHR::eInherit )
result += "Inherit | ";
return "{ " + result.substr( 0, result.size() - 3 ) + " }";
}
} // namespace local
using local::to_string;
#else
using vk::to_string;
#endif
void cout( vk::SurfaceCapabilitiesKHR const & surfaceCapabilities )
{
std::cout << std::string( "\t" ) << "Capabilities:\n";
std::cout << std::string( "\t\t" ) << "currentExtent = " << surfaceCapabilities.currentExtent.width << " x "
<< surfaceCapabilities.currentExtent.height << "\n";
std::cout << std::string( "\t\t" ) << "currentTransform = " << to_string( surfaceCapabilities.currentTransform ) << "\n";
std::cout << std::string( "\t\t" ) << "maxImageArrayLayers = " << surfaceCapabilities.maxImageArrayLayers << "\n";
std::cout << std::string( "\t\t" ) << "maxImageCount = " << surfaceCapabilities.maxImageCount << "\n";
std::cout << std::string( "\t\t" ) << "maxImageExtent = " << surfaceCapabilities.maxImageExtent.width << " x "
<< surfaceCapabilities.maxImageExtent.height << "\n";
std::cout << std::string( "\t\t" ) << "minImageCount = " << surfaceCapabilities.minImageCount << "\n";
std::cout << std::string( "\t\t" ) << "minImageExtent = " << surfaceCapabilities.minImageExtent.width << " x "
<< surfaceCapabilities.minImageExtent.height << "\n";
std::cout << std::string( "\t\t" ) << "supportedCompositeAlpha = " << to_string( surfaceCapabilities.supportedCompositeAlpha ) << "\n";
std::cout << std::string( "\t\t" ) << "supportedTransforms = " << to_string( surfaceCapabilities.supportedTransforms ) << "\n";
std::cout << std::string( "\t\t" ) << "supportedUsageFlags = " << to_string( surfaceCapabilities.supportedUsageFlags ) << "\n";
std::cout << "\n";
}
int main( int /*argc*/, char ** /*argv*/ )
{
try
{
// need to initialize the dynamic dispatcher before the very first vulkan call
#if ( VULKAN_HPP_DISPATCH_LOADER_DYNAMIC == 1 )
static vk::DynamicLoader dl;
PFN_vkGetInstanceProcAddr vkGetInstanceProcAddr = dl.getProcAddress<PFN_vkGetInstanceProcAddr>( "vkGetInstanceProcAddr" );
VULKAN_HPP_DEFAULT_DISPATCHER.init( vkGetInstanceProcAddr );
#endif
std::vector<vk::ExtensionProperties> instanceExtensionProperties = vk::enumerateInstanceExtensionProperties();
auto propertyIterator =
std::find_if( instanceExtensionProperties.begin(),
instanceExtensionProperties.end(),
[]( vk::ExtensionProperties const & ep ) { return strcmp( ep.extensionName, VK_KHR_GET_SURFACE_CAPABILITIES_2_EXTENSION_NAME ) == 0; } );
bool supportsGetSurfaceCapabilities2 = ( propertyIterator != instanceExtensionProperties.end() );
std::vector<std::string> extensions = vk::su::getInstanceExtensions();
if ( supportsGetSurfaceCapabilities2 )
{
extensions.push_back( VK_KHR_GET_SURFACE_CAPABILITIES_2_EXTENSION_NAME );
}
vk::Instance instance = vk::su::createInstance( AppName, EngineName, {}, extensions );
#if !defined( NDEBUG )
vk::DebugUtilsMessengerEXT debugUtilsMessenger = instance.createDebugUtilsMessengerEXT( vk::su::makeDebugUtilsMessengerCreateInfoEXT() );
#endif
// enumerate the physicalDevices
std::vector<vk::PhysicalDevice> physicalDevices = instance.enumeratePhysicalDevices();
vk::su::SurfaceData surfaceData( instance, AppName, vk::Extent2D( 500, 500 ) );
/* VULKAN_KEY_START */
std::cout << std::boolalpha;
for ( size_t i = 0; i < physicalDevices.size(); i++ )
{
// some properties are only valid, if a corresponding extension is available!
std::vector<vk::ExtensionProperties> extensionProperties = physicalDevices[i].enumerateDeviceExtensionProperties();
std::cout << "PhysicalDevice " << i << "\n";
if ( supportsGetSurfaceCapabilities2 )
{
auto surfaceCapabilities2 = physicalDevices[i]
.getSurfaceCapabilities2KHR<vk::SurfaceCapabilities2KHR,
vk::DisplayNativeHdrSurfaceCapabilitiesAMD,
vk::SharedPresentSurfaceCapabilitiesKHR,
vk::SurfaceCapabilitiesFullScreenExclusiveEXT,
vk::SurfaceProtectedCapabilitiesKHR>( surfaceData.surface );
vk::SurfaceCapabilitiesKHR const & surfaceCapabilities = surfaceCapabilities2.get<vk::SurfaceCapabilities2KHR>().surfaceCapabilities;
cout( surfaceCapabilities );
if ( vk::su::contains( extensionProperties, "VK_AMD_display_native_hdr" ) )
{
vk::DisplayNativeHdrSurfaceCapabilitiesAMD displayNativeHdrSurfaceCapabilities =
surfaceCapabilities2.get<vk::DisplayNativeHdrSurfaceCapabilitiesAMD>();
std::cout << std::string( "\t" ) << "DisplayNativeHdrSurfaceCapabilitiesAMD:\n";
std::cout << std::string( "\t\t" ) << "localDimmingSupport = " << !!displayNativeHdrSurfaceCapabilities.localDimmingSupport << "\n";
std::cout << "\n";
}
if ( vk::su::contains( extensionProperties, "VK_KHR_shared_presentable_image" ) )
{
vk::SharedPresentSurfaceCapabilitiesKHR sharedPresentSurfaceCapabilities = surfaceCapabilities2.get<vk::SharedPresentSurfaceCapabilitiesKHR>();
std::cout << std::string( "\t" ) << "SharedPresentSurfaceCapabilitiesKHR:\n";
std::cout << std::string( "\t\t" )
<< "sharedPresentSupportedUsageFlags = " << to_string( sharedPresentSurfaceCapabilities.sharedPresentSupportedUsageFlags ) << "\n";
std::cout << "\n";
}
if ( vk::su::contains( extensionProperties, "VK_EXT_full_screen_exclusive" ) )
{
vk::SurfaceCapabilitiesFullScreenExclusiveEXT surfaceCapabilitiesFullScreenExclusive =
surfaceCapabilities2.get<vk::SurfaceCapabilitiesFullScreenExclusiveEXT>();
std::cout << std::string( "\t" ) << "SurfaceCapabilitiesFullScreenExclusiveEXT:\n";
std::cout << std::string( "\t\t" ) << "fullScreenExclusiveSupported = " << !!surfaceCapabilitiesFullScreenExclusive.fullScreenExclusiveSupported
<< "\n";
std::cout << "\n";
}
if ( vk::su::contains( extensionProperties, "VK_KHR_surface_protected_capabilities" ) )
{
vk::SurfaceProtectedCapabilitiesKHR surfaceProtectedCapabilities = surfaceCapabilities2.get<vk::SurfaceProtectedCapabilitiesKHR>();
std::cout << std::string( "\t" ) << "SurfaceProtectedCapabilitiesKHR:\n";
std::cout << std::string( "\t\t" ) << "supportsProtected = " << !!surfaceProtectedCapabilities.supportsProtected << "\n";
std::cout << "\n";
}
}
else
{
vk::SurfaceCapabilitiesKHR surfaceCapabilities = physicalDevices[i].getSurfaceCapabilitiesKHR( surfaceData.surface );
cout( surfaceCapabilities );
}
}
/* VULKAN_KEY_END */
instance.destroySurfaceKHR( surfaceData.surface );
#if !defined( NDEBUG )
instance.destroyDebugUtilsMessengerEXT( debugUtilsMessenger );
#endif
instance.destroy();
}
catch ( vk::SystemError & err )
{
std::cout << "vk::SystemError: " << err.what() << std::endl;
exit( -1 );
}
catch ( std::exception & err )
{
std::cout << "std::exception: " << err.what() << std::endl;
exit( -1 );
}
catch ( ... )
{
std::cout << "unknown error\n";
exit( -1 );
}
return 0;
}