vk_device: Use Vulkan 1.0 properly
Enable the required capabilities to use Vulkan 1.0 without validation errors and disable those that are not compatible with it.
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29a0ca2391
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c5a78f4480
@ -92,9 +92,9 @@ Common::DynamicLibrary OpenVulkanLibrary() {
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return library;
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}
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vk::Instance CreateInstance(Common::DynamicLibrary& library, vk::InstanceDispatch& dld,
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WindowSystemType window_type = WindowSystemType::Headless,
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bool enable_layers = false) {
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std::pair<vk::Instance, u32> CreateInstance(
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Common::DynamicLibrary& library, vk::InstanceDispatch& dld,
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WindowSystemType window_type = WindowSystemType::Headless, bool enable_layers = false) {
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if (!library.IsOpen()) {
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LOG_ERROR(Render_Vulkan, "Vulkan library not available");
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return {};
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@ -191,7 +191,7 @@ vk::Instance CreateInstance(Common::DynamicLibrary& library, vk::InstanceDispatc
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if (!vk::Load(*instance, dld)) {
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LOG_ERROR(Render_Vulkan, "Failed to load Vulkan instance function pointers");
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}
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return instance;
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return std::make_pair(std::move(instance), version);
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}
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std::string GetReadableVersion(u32 version) {
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@ -289,8 +289,8 @@ bool RendererVulkan::TryPresent(int /*timeout_ms*/) {
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bool RendererVulkan::Init() {
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library = OpenVulkanLibrary();
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instance = CreateInstance(library, dld, render_window.GetWindowInfo().type,
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Settings::values.renderer_debug);
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std::tie(instance, instance_version) = CreateInstance(
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library, dld, render_window.GetWindowInfo().type, Settings::values.renderer_debug);
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if (!instance || !CreateDebugCallback() || !CreateSurface() || !PickDevices()) {
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return false;
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}
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@ -423,7 +423,8 @@ bool RendererVulkan::PickDevices() {
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return false;
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}
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device = std::make_unique<VKDevice>(*instance, physical_device, *surface, dld);
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device =
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std::make_unique<VKDevice>(*instance, instance_version, physical_device, *surface, dld);
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return device->Create();
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}
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@ -433,7 +434,7 @@ void RendererVulkan::Report() const {
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const std::string driver_version = GetDriverVersion(*device);
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const std::string driver_name = fmt::format("{} {}", vendor_name, driver_version);
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const std::string api_version = GetReadableVersion(device->GetApiVersion());
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const std::string api_version = GetReadableVersion(device->ApiVersion());
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const std::string extensions = BuildCommaSeparatedExtensions(device->GetAvailableExtensions());
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@ -453,7 +454,7 @@ void RendererVulkan::Report() const {
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std::vector<std::string> RendererVulkan::EnumerateDevices() {
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vk::InstanceDispatch dld;
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Common::DynamicLibrary library = OpenVulkanLibrary();
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vk::Instance instance = CreateInstance(library, dld);
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vk::Instance instance = CreateInstance(library, dld).first;
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if (!instance) {
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return {};
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}
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@ -63,6 +63,8 @@ private:
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vk::InstanceDispatch dld;
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vk::Instance instance;
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u32 instance_version{};
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vk::SurfaceKHR surface;
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VKScreenInfo screen_info;
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@ -38,6 +38,9 @@ constexpr std::array Depth16UnormS8_UINT{
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constexpr std::array REQUIRED_EXTENSIONS{
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VK_KHR_SWAPCHAIN_EXTENSION_NAME,
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VK_KHR_MAINTENANCE1_EXTENSION_NAME,
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VK_KHR_STORAGE_BUFFER_STORAGE_CLASS_EXTENSION_NAME,
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VK_KHR_SHADER_DRAW_PARAMETERS_EXTENSION_NAME,
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VK_KHR_16BIT_STORAGE_EXTENSION_NAME,
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VK_KHR_8BIT_STORAGE_EXTENSION_NAME,
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VK_KHR_DRIVER_PROPERTIES_EXTENSION_NAME,
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@ -171,10 +174,10 @@ std::unordered_map<VkFormat, VkFormatProperties> GetFormatProperties(
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} // Anonymous namespace
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VKDevice::VKDevice(VkInstance instance, vk::PhysicalDevice physical, VkSurfaceKHR surface,
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const vk::InstanceDispatch& dld)
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: dld{dld}, physical{physical}, properties{physical.GetProperties()},
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format_properties{GetFormatProperties(physical, dld)} {
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VKDevice::VKDevice(VkInstance instance_, u32 instance_version_, vk::PhysicalDevice physical_,
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VkSurfaceKHR surface, const vk::InstanceDispatch& dld_)
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: dld{dld_}, physical{physical_}, properties{physical.GetProperties()},
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instance_version{instance_version_}, format_properties{GetFormatProperties(physical, dld)} {
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SetupFamilies(surface);
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SetupFeatures();
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}
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@ -565,8 +568,16 @@ bool VKDevice::IsSuitable(vk::PhysicalDevice physical, VkSurfaceKHR surface) {
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std::vector<const char*> VKDevice::LoadExtensions() {
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std::vector<const char*> extensions;
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const auto Test = [&](const VkExtensionProperties& extension,
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std::optional<std::reference_wrapper<bool>> status, const char* name,
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extensions.reserve(7 + REQUIRED_EXTENSIONS.size());
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extensions.insert(extensions.begin(), REQUIRED_EXTENSIONS.begin(), REQUIRED_EXTENSIONS.end());
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bool has_khr_shader_float16_int8{};
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bool has_ext_subgroup_size_control{};
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bool has_ext_transform_feedback{};
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bool has_ext_custom_border_color{};
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bool has_ext_extended_dynamic_state{};
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for (const VkExtensionProperties& extension : physical.EnumerateDeviceExtensionProperties()) {
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const auto test = [&](std::optional<std::reference_wrapper<bool>> status, const char* name,
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bool push) {
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if (extension.extensionName != std::string_view(name)) {
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return;
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@ -578,37 +589,23 @@ std::vector<const char*> VKDevice::LoadExtensions() {
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status->get() = true;
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}
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};
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extensions.reserve(7 + REQUIRED_EXTENSIONS.size());
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extensions.insert(extensions.begin(), REQUIRED_EXTENSIONS.begin(), REQUIRED_EXTENSIONS.end());
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bool has_khr_shader_float16_int8{};
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bool has_ext_subgroup_size_control{};
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bool has_ext_transform_feedback{};
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bool has_ext_custom_border_color{};
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bool has_ext_extended_dynamic_state{};
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for (const auto& extension : physical.EnumerateDeviceExtensionProperties()) {
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Test(extension, nv_viewport_swizzle, VK_NV_VIEWPORT_SWIZZLE_EXTENSION_NAME, true);
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Test(extension, khr_uniform_buffer_standard_layout,
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test(nv_viewport_swizzle, VK_NV_VIEWPORT_SWIZZLE_EXTENSION_NAME, true);
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test(khr_uniform_buffer_standard_layout,
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VK_KHR_UNIFORM_BUFFER_STANDARD_LAYOUT_EXTENSION_NAME, true);
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Test(extension, has_khr_shader_float16_int8, VK_KHR_SHADER_FLOAT16_INT8_EXTENSION_NAME,
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false);
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Test(extension, ext_depth_range_unrestricted,
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VK_EXT_DEPTH_RANGE_UNRESTRICTED_EXTENSION_NAME, true);
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Test(extension, ext_index_type_uint8, VK_EXT_INDEX_TYPE_UINT8_EXTENSION_NAME, true);
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Test(extension, ext_shader_viewport_index_layer,
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VK_EXT_SHADER_VIEWPORT_INDEX_LAYER_EXTENSION_NAME, true);
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Test(extension, has_ext_subgroup_size_control, VK_EXT_SUBGROUP_SIZE_CONTROL_EXTENSION_NAME,
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false);
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Test(extension, has_ext_transform_feedback, VK_EXT_TRANSFORM_FEEDBACK_EXTENSION_NAME,
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false);
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Test(extension, has_ext_custom_border_color, VK_EXT_CUSTOM_BORDER_COLOR_EXTENSION_NAME,
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false);
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Test(extension, has_ext_extended_dynamic_state,
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VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME, false);
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test(has_khr_shader_float16_int8, VK_KHR_SHADER_FLOAT16_INT8_EXTENSION_NAME, false);
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test(ext_depth_range_unrestricted, VK_EXT_DEPTH_RANGE_UNRESTRICTED_EXTENSION_NAME, true);
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test(ext_index_type_uint8, VK_EXT_INDEX_TYPE_UINT8_EXTENSION_NAME, true);
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test(ext_shader_viewport_index_layer, VK_EXT_SHADER_VIEWPORT_INDEX_LAYER_EXTENSION_NAME,
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true);
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test(has_ext_transform_feedback, VK_EXT_TRANSFORM_FEEDBACK_EXTENSION_NAME, false);
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test(has_ext_custom_border_color, VK_EXT_CUSTOM_BORDER_COLOR_EXTENSION_NAME, false);
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test(has_ext_extended_dynamic_state, VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME, false);
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if (instance_version >= VK_API_VERSION_1_1) {
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test(has_ext_subgroup_size_control, VK_EXT_SUBGROUP_SIZE_CONTROL_EXTENSION_NAME, false);
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}
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if (Settings::values.renderer_debug) {
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Test(extension, nv_device_diagnostics_config,
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VK_NV_DEVICE_DIAGNOSTICS_CONFIG_EXTENSION_NAME, true);
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test(nv_device_diagnostics_config, VK_NV_DEVICE_DIAGNOSTICS_CONFIG_EXTENSION_NAME,
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true);
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}
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}
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@ -24,8 +24,8 @@ const u32 GuestWarpSize = 32;
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/// Handles data specific to a physical device.
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class VKDevice final {
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public:
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explicit VKDevice(VkInstance instance, vk::PhysicalDevice physical, VkSurfaceKHR surface,
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const vk::InstanceDispatch& dld);
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explicit VKDevice(VkInstance instance, u32 instance_version, vk::PhysicalDevice physical,
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VkSurfaceKHR surface, const vk::InstanceDispatch& dld);
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~VKDevice();
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/// Initializes the device. Returns true on success.
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@ -82,8 +82,13 @@ public:
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return present_family;
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}
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/// Returns the current instance Vulkan API version in Vulkan-formatted version numbers.
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u32 InstanceApiVersion() const {
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return instance_version;
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}
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/// Returns the current Vulkan API version provided in Vulkan-formatted version numbers.
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u32 GetApiVersion() const {
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u32 ApiVersion() const {
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return properties.apiVersion;
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}
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@ -239,6 +244,7 @@ private:
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vk::Device logical; ///< Logical device.
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vk::Queue graphics_queue; ///< Main graphics queue.
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vk::Queue present_queue; ///< Main present queue.
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u32 instance_version{}; ///< Vulkan onstance version.
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u32 graphics_family{}; ///< Main graphics queue family index.
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u32 present_family{}; ///< Main present queue family index.
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VkDriverIdKHR driver_id{}; ///< Driver ID.
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@ -272,12 +272,19 @@ bool IsPrecise(Operation operand) {
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return false;
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}
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u32 ShaderVersion(const VKDevice& device) {
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if (device.InstanceApiVersion() < VK_API_VERSION_1_1) {
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return 0x00010000;
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}
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return 0x00010300;
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}
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class SPIRVDecompiler final : public Sirit::Module {
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public:
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explicit SPIRVDecompiler(const VKDevice& device, const ShaderIR& ir, ShaderType stage,
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const Registry& registry, const Specialization& specialization)
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: Module(0x00010300), device{device}, ir{ir}, stage{stage}, header{ir.GetHeader()},
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registry{registry}, specialization{specialization} {
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: Module(ShaderVersion(device)), device{device}, ir{ir}, stage{stage},
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header{ir.GetHeader()}, registry{registry}, specialization{specialization} {
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if (stage != ShaderType::Compute) {
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transform_feedback = BuildTransformFeedback(registry.GetGraphicsInfo());
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}
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@ -293,6 +300,7 @@ public:
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AddCapability(spv::Capability::DrawParameters);
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AddCapability(spv::Capability::SubgroupBallotKHR);
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AddCapability(spv::Capability::SubgroupVoteKHR);
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AddExtension("SPV_KHR_16bit_storage");
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AddExtension("SPV_KHR_shader_ballot");
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AddExtension("SPV_KHR_subgroup_vote");
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AddExtension("SPV_KHR_storage_buffer_storage_class");
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