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Yellow squiggly lines begone! Done automatically on .cpp files through `run-clang-tidy`, with manual corrections to the mistakes. If an import is directly used, but is technically unnecessary since it's recursively imported by something else, it is *not* removed. The tool doesn't touch .h files, so I did some of them by hand while fixing errors due to old recursive imports. Not everything is removed, but the cleanup should be substantial enough. Because this done on Linux, code that isn't used on it is mostly untouched. (Hopefully no open PR is depending on these imports...)
264 lines
8.1 KiB
C++
264 lines
8.1 KiB
C++
// Copyright 2016 Dolphin Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#define VMA_IMPLEMENTATION
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#include "VideoBackends/Vulkan/VulkanLoader.h"
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#if defined(ANDROID)
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#include <adrenotools/driver.h>
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#include <dlfcn.h>
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#endif
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#include "Common/DynamicLibrary.h"
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#if defined(__APPLE__)
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#include "Common/FileUtil.h"
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#elif defined(ANDROID) && _M_ARM_64
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#include "Common/FileUtil.h"
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#include "VideoCommon/VideoConfig.h"
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#endif
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#define VULKAN_MODULE_ENTRY_POINT(name, required) PFN_##name name;
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#define VULKAN_INSTANCE_ENTRY_POINT(name, required) PFN_##name name;
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#define VULKAN_DEVICE_ENTRY_POINT(name, required) PFN_##name name;
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#include "VideoBackends/Vulkan/VulkanEntryPoints.inl"
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#undef VULKAN_DEVICE_ENTRY_POINT
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#undef VULKAN_INSTANCE_ENTRY_POINT
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#undef VULKAN_MODULE_ENTRY_POINT
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namespace Vulkan
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{
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static void ResetVulkanLibraryFunctionPointers()
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{
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#define VULKAN_MODULE_ENTRY_POINT(name, required) name = nullptr;
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#define VULKAN_INSTANCE_ENTRY_POINT(name, required) name = nullptr;
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#define VULKAN_DEVICE_ENTRY_POINT(name, required) name = nullptr;
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#include "VideoBackends/Vulkan/VulkanEntryPoints.inl"
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#undef VULKAN_DEVICE_ENTRY_POINT
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#undef VULKAN_INSTANCE_ENTRY_POINT
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#undef VULKAN_MODULE_ENTRY_POINT
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}
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static Common::DynamicLibrary s_vulkan_module;
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static bool OpenVulkanLibrary(bool force_system_library)
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{
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#if defined(__APPLE__)
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// Check if a path to a specific Vulkan library has been specified.
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char* libvulkan_env = getenv("LIBVULKAN_PATH");
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if (libvulkan_env && s_vulkan_module.Open(libvulkan_env))
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return true;
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// Use the libMoltenVK.dylib from the application bundle.
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std::string filename = File::GetBundleDirectory() + "/Contents/Frameworks/libMoltenVK.dylib";
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return s_vulkan_module.Open(filename.c_str());
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#else
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#if defined(ANDROID) && _M_ARM_64
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const std::string& driver_lib_name = g_Config.customDriverLibraryName;
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if (!force_system_library && !driver_lib_name.empty() && SupportsCustomDriver())
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{
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std::string tmp_dir = File::GetGpuDriverDirectory(D_GPU_DRIVERS_TMP);
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std::string hook_dir = File::GetGpuDriverDirectory(D_GPU_DRIVERS_HOOKS);
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std::string file_redirect_dir = File::GetGpuDriverDirectory(D_GPU_DRIVERS_FILE_REDIRECT);
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std::string driver_dir = File::GetGpuDriverDirectory(D_GPU_DRIVERS_EXTRACTED);
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INFO_LOG_FMT(HOST_GPU, "Loading driver: {}", driver_lib_name);
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s_vulkan_module = adrenotools_open_libvulkan(
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RTLD_NOW, ADRENOTOOLS_DRIVER_FILE_REDIRECT | ADRENOTOOLS_DRIVER_CUSTOM, tmp_dir.c_str(),
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hook_dir.c_str(), driver_dir.c_str(), driver_lib_name.c_str(), file_redirect_dir.c_str(),
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nullptr);
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if (s_vulkan_module.IsOpen())
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{
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INFO_LOG_FMT(HOST_GPU, "Successfully loaded driver: {}", driver_lib_name);
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return true;
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}
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else
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{
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WARN_LOG_FMT(HOST_GPU, "Loading driver {} failed.", driver_lib_name);
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}
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}
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#endif
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WARN_LOG_FMT(HOST_GPU, "Loading system driver");
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std::string filename = Common::DynamicLibrary::GetVersionedFilename("vulkan", 1);
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if (s_vulkan_module.Open(filename.c_str()))
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return true;
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// Android devices may not have libvulkan.so.1, only libvulkan.so.
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filename = Common::DynamicLibrary::GetVersionedFilename("vulkan");
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return s_vulkan_module.Open(filename.c_str());
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#endif
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}
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bool LoadVulkanLibrary(bool force_system_library)
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{
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if (!s_vulkan_module.IsOpen() && !OpenVulkanLibrary(force_system_library))
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return false;
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#define VULKAN_MODULE_ENTRY_POINT(name, required) \
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if (!s_vulkan_module.GetSymbol(#name, &name) && required) \
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{ \
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ERROR_LOG_FMT(VIDEO, "Vulkan: Failed to load required module function {}", #name); \
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ResetVulkanLibraryFunctionPointers(); \
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s_vulkan_module.Close(); \
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return false; \
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}
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#include "VideoBackends/Vulkan/VulkanEntryPoints.inl"
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#undef VULKAN_MODULE_ENTRY_POINT
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return true;
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}
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void UnloadVulkanLibrary()
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{
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s_vulkan_module.Close();
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if (!s_vulkan_module.IsOpen())
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ResetVulkanLibraryFunctionPointers();
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}
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bool LoadVulkanInstanceFunctions(VkInstance instance)
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{
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bool required_functions_missing = false;
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auto LoadFunction = [&](PFN_vkVoidFunction* func_ptr, const char* name, bool is_required) {
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*func_ptr = vkGetInstanceProcAddr(instance, name);
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if (!(*func_ptr) && is_required)
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{
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ERROR_LOG_FMT(HOST_GPU, "Vulkan: Failed to load required instance function {}", name);
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required_functions_missing = true;
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}
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};
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#define VULKAN_INSTANCE_ENTRY_POINT(name, required) \
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LoadFunction(reinterpret_cast<PFN_vkVoidFunction*>(&name), #name, required);
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#include "VideoBackends/Vulkan/VulkanEntryPoints.inl"
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#undef VULKAN_INSTANCE_ENTRY_POINT
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return !required_functions_missing;
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}
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bool LoadVulkanDeviceFunctions(VkDevice device)
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{
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bool required_functions_missing = false;
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auto LoadFunction = [&](PFN_vkVoidFunction* func_ptr, const char* name, bool is_required) {
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*func_ptr = vkGetDeviceProcAddr(device, name);
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if (!(*func_ptr) && is_required)
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{
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ERROR_LOG_FMT(HOST_GPU, "Vulkan: Failed to load required device function {}", name);
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required_functions_missing = true;
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}
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};
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#define VULKAN_DEVICE_ENTRY_POINT(name, required) \
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LoadFunction(reinterpret_cast<PFN_vkVoidFunction*>(&name), #name, required);
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#include "VideoBackends/Vulkan/VulkanEntryPoints.inl"
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#undef VULKAN_DEVICE_ENTRY_POINT
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return !required_functions_missing;
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}
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const char* VkResultToString(VkResult res)
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{
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switch (res)
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{
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case VK_SUCCESS:
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return "VK_SUCCESS";
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case VK_NOT_READY:
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return "VK_NOT_READY";
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case VK_TIMEOUT:
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return "VK_TIMEOUT";
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case VK_EVENT_SET:
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return "VK_EVENT_SET";
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case VK_EVENT_RESET:
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return "VK_EVENT_RESET";
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case VK_INCOMPLETE:
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return "VK_INCOMPLETE";
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case VK_ERROR_OUT_OF_HOST_MEMORY:
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return "VK_ERROR_OUT_OF_HOST_MEMORY";
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case VK_ERROR_OUT_OF_DEVICE_MEMORY:
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return "VK_ERROR_OUT_OF_DEVICE_MEMORY";
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case VK_ERROR_INITIALIZATION_FAILED:
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return "VK_ERROR_INITIALIZATION_FAILED";
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case VK_ERROR_DEVICE_LOST:
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return "VK_ERROR_DEVICE_LOST";
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case VK_ERROR_MEMORY_MAP_FAILED:
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return "VK_ERROR_MEMORY_MAP_FAILED";
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case VK_ERROR_LAYER_NOT_PRESENT:
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return "VK_ERROR_LAYER_NOT_PRESENT";
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case VK_ERROR_EXTENSION_NOT_PRESENT:
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return "VK_ERROR_EXTENSION_NOT_PRESENT";
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case VK_ERROR_FEATURE_NOT_PRESENT:
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return "VK_ERROR_FEATURE_NOT_PRESENT";
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case VK_ERROR_INCOMPATIBLE_DRIVER:
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return "VK_ERROR_INCOMPATIBLE_DRIVER";
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case VK_ERROR_TOO_MANY_OBJECTS:
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return "VK_ERROR_TOO_MANY_OBJECTS";
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case VK_ERROR_FORMAT_NOT_SUPPORTED:
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return "VK_ERROR_FORMAT_NOT_SUPPORTED";
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case VK_ERROR_SURFACE_LOST_KHR:
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return "VK_ERROR_SURFACE_LOST_KHR";
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case VK_ERROR_NATIVE_WINDOW_IN_USE_KHR:
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return "VK_ERROR_NATIVE_WINDOW_IN_USE_KHR";
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case VK_SUBOPTIMAL_KHR:
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return "VK_SUBOPTIMAL_KHR";
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case VK_ERROR_OUT_OF_DATE_KHR:
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return "VK_ERROR_OUT_OF_DATE_KHR";
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case VK_ERROR_INCOMPATIBLE_DISPLAY_KHR:
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return "VK_ERROR_INCOMPATIBLE_DISPLAY_KHR";
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case VK_ERROR_VALIDATION_FAILED_EXT:
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return "VK_ERROR_VALIDATION_FAILED_EXT";
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case VK_ERROR_INVALID_SHADER_NV:
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return "VK_ERROR_INVALID_SHADER_NV";
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default:
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return "UNKNOWN_VK_RESULT";
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}
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}
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void LogVulkanResult(Common::Log::LogLevel level, const char* func_name, const int line,
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VkResult res, const char* msg)
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{
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GENERIC_LOG_FMT(Common::Log::LogType::VIDEO, level, "({}:{}) {} ({}: {})", func_name, line, msg,
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static_cast<int>(res), VkResultToString(res));
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}
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#ifdef ANDROID
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static bool CheckKgslPresent()
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{
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constexpr auto KgslPath{"/dev/kgsl-3d0"};
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return access(KgslPath, F_OK) == 0;
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}
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bool SupportsCustomDriver()
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{
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return android_get_device_api_level() >= 28 && CheckKgslPresent();
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}
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#endif
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} // namespace Vulkan
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