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https://github.com/yuzu-emu/yuzu-android
synced 2024-12-26 21:01:21 -08:00
vk_graphics_pipeline: Implement smooth lines
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57a8921e01
commit
f94f0be521
@ -88,6 +88,7 @@ void FixedPipelineState::Refresh(Tegra::Engines::Maxwell3D& maxwell3d,
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y_negate.Assign(regs.screen_y_control.y_negate != 0 ? 1 : 0);
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y_negate.Assign(regs.screen_y_control.y_negate != 0 ? 1 : 0);
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provoking_vertex_last.Assign(regs.provoking_vertex_last != 0 ? 1 : 0);
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provoking_vertex_last.Assign(regs.provoking_vertex_last != 0 ? 1 : 0);
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conservative_raster_enable.Assign(regs.conservative_raster_enable != 0 ? 1 : 0);
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conservative_raster_enable.Assign(regs.conservative_raster_enable != 0 ? 1 : 0);
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smooth_lines.Assign(regs.line_smooth_enable != 0 ? 1 : 0);
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for (size_t i = 0; i < regs.rt.size(); ++i) {
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for (size_t i = 0; i < regs.rt.size(); ++i) {
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color_formats[i] = static_cast<u8>(regs.rt[i].format);
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color_formats[i] = static_cast<u8>(regs.rt[i].format);
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@ -195,6 +195,7 @@ struct FixedPipelineState {
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BitField<11, 1, u32> y_negate;
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BitField<11, 1, u32> y_negate;
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BitField<12, 1, u32> provoking_vertex_last;
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BitField<12, 1, u32> provoking_vertex_last;
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BitField<13, 1, u32> conservative_raster_enable;
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BitField<13, 1, u32> conservative_raster_enable;
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BitField<14, 1, u32> smooth_lines;
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};
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};
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std::array<u8, Maxwell::NumRenderTargets> color_formats;
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std::array<u8, Maxwell::NumRenderTargets> color_formats;
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@ -80,6 +80,14 @@ bool SupportsPrimitiveRestart(VkPrimitiveTopology topology) {
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return std::ranges::find(unsupported_topologies, topology) == unsupported_topologies.end();
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return std::ranges::find(unsupported_topologies, topology) == unsupported_topologies.end();
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}
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}
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bool IsLine(VkPrimitiveTopology topology) {
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static constexpr std::array line_topologies{
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VK_PRIMITIVE_TOPOLOGY_LINE_LIST, VK_PRIMITIVE_TOPOLOGY_LINE_STRIP,
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// VK_PRIMITIVE_TOPOLOGY_LINE_LOOP_EXT,
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};
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return std::ranges::find(line_topologies, topology) == line_topologies.end();
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}
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VkViewportSwizzleNV UnpackViewportSwizzle(u16 swizzle) {
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VkViewportSwizzleNV UnpackViewportSwizzle(u16 swizzle) {
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union Swizzle {
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union Swizzle {
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u32 raw;
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u32 raw;
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@ -616,6 +624,16 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
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.depthBiasSlopeFactor = 0.0f,
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.depthBiasSlopeFactor = 0.0f,
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.lineWidth = 1.0f,
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.lineWidth = 1.0f,
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};
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};
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VkPipelineRasterizationLineStateCreateInfoEXT line_state{
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.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_LINE_STATE_CREATE_INFO_EXT,
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.pNext = nullptr,
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.lineRasterizationMode = key.state.smooth_lines != 0
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? VK_LINE_RASTERIZATION_MODE_RECTANGULAR_SMOOTH_EXT
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: VK_LINE_RASTERIZATION_MODE_RECTANGULAR_EXT,
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.stippledLineEnable = VK_FALSE, // TODO
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.lineStippleFactor = 0,
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.lineStipplePattern = 0,
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};
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VkPipelineRasterizationConservativeStateCreateInfoEXT conservative_raster{
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VkPipelineRasterizationConservativeStateCreateInfoEXT conservative_raster{
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.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_CONSERVATIVE_STATE_CREATE_INFO_EXT,
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.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_CONSERVATIVE_STATE_CREATE_INFO_EXT,
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.pNext = nullptr,
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.pNext = nullptr,
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@ -632,6 +650,9 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
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? VK_PROVOKING_VERTEX_MODE_LAST_VERTEX_EXT
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? VK_PROVOKING_VERTEX_MODE_LAST_VERTEX_EXT
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: VK_PROVOKING_VERTEX_MODE_FIRST_VERTEX_EXT,
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: VK_PROVOKING_VERTEX_MODE_FIRST_VERTEX_EXT,
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};
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};
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if (IsLine(input_assembly_topology) && device.IsExtLineRasterizationSupported()) {
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line_state.pNext = std::exchange(rasterization_ci.pNext, &line_state);
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}
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if (device.IsExtConservativeRasterizationSupported()) {
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if (device.IsExtConservativeRasterizationSupported()) {
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conservative_raster.pNext = std::exchange(rasterization_ci.pNext, &conservative_raster);
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conservative_raster.pNext = std::exchange(rasterization_ci.pNext, &conservative_raster);
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}
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}
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@ -416,6 +416,23 @@ Device::Device(VkInstance instance_, vk::PhysicalDevice physical_, VkSurfaceKHR
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LOG_INFO(Render_Vulkan, "Device doesn't support extended dynamic state");
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LOG_INFO(Render_Vulkan, "Device doesn't support extended dynamic state");
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}
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}
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VkPhysicalDeviceLineRasterizationFeaturesEXT line_raster;
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if (ext_line_rasterization) {
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line_raster = {
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.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_LINE_RASTERIZATION_FEATURES_EXT,
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.pNext = nullptr,
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.rectangularLines = VK_TRUE,
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.bresenhamLines = VK_FALSE,
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.smoothLines = VK_TRUE,
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.stippledRectangularLines = VK_FALSE,
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.stippledBresenhamLines = VK_FALSE,
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.stippledSmoothLines = VK_FALSE,
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};
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SetNext(next, line_raster);
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} else {
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LOG_INFO(Render_Vulkan, "Device doesn't support smooth lines");
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}
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if (!ext_conservative_rasterization) {
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if (!ext_conservative_rasterization) {
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LOG_INFO(Render_Vulkan, "Device doesn't support conservative rasterization");
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LOG_INFO(Render_Vulkan, "Device doesn't support conservative rasterization");
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}
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}
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@ -757,6 +774,7 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
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bool has_ext_shader_atomic_int64{};
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bool has_ext_shader_atomic_int64{};
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bool has_ext_provoking_vertex{};
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bool has_ext_provoking_vertex{};
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bool has_ext_vertex_input_dynamic_state{};
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bool has_ext_vertex_input_dynamic_state{};
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bool has_ext_line_rasterization{};
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for (const VkExtensionProperties& extension : physical.EnumerateDeviceExtensionProperties()) {
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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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const auto test = [&](std::optional<std::reference_wrapper<bool>> status, const char* name,
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bool push) {
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bool push) {
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@ -798,6 +816,7 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
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test(has_ext_shader_atomic_int64, VK_KHR_SHADER_ATOMIC_INT64_EXTENSION_NAME, false);
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test(has_ext_shader_atomic_int64, VK_KHR_SHADER_ATOMIC_INT64_EXTENSION_NAME, false);
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test(has_khr_workgroup_memory_explicit_layout,
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test(has_khr_workgroup_memory_explicit_layout,
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VK_KHR_WORKGROUP_MEMORY_EXPLICIT_LAYOUT_EXTENSION_NAME, false);
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VK_KHR_WORKGROUP_MEMORY_EXPLICIT_LAYOUT_EXTENSION_NAME, false);
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test(has_ext_line_rasterization, VK_EXT_LINE_RASTERIZATION_EXTENSION_NAME, false);
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if (Settings::values.enable_nsight_aftermath) {
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if (Settings::values.enable_nsight_aftermath) {
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test(nv_device_diagnostics_config, VK_NV_DEVICE_DIAGNOSTICS_CONFIG_EXTENSION_NAME,
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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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true);
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@ -918,17 +937,29 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
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}
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}
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}
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}
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if (has_ext_extended_dynamic_state) {
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if (has_ext_extended_dynamic_state) {
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VkPhysicalDeviceExtendedDynamicStateFeaturesEXT dynamic_state;
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VkPhysicalDeviceExtendedDynamicStateFeaturesEXT extended_dynamic_state;
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dynamic_state.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_EXTENDED_DYNAMIC_STATE_FEATURES_EXT;
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extended_dynamic_state.sType =
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dynamic_state.pNext = nullptr;
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VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_EXTENDED_DYNAMIC_STATE_FEATURES_EXT;
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features.pNext = &dynamic_state;
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extended_dynamic_state.pNext = nullptr;
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features.pNext = &extended_dynamic_state;
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physical.GetFeatures2KHR(features);
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physical.GetFeatures2KHR(features);
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if (dynamic_state.extendedDynamicState) {
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if (extended_dynamic_state.extendedDynamicState) {
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extensions.push_back(VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME);
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extensions.push_back(VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME);
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ext_extended_dynamic_state = true;
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ext_extended_dynamic_state = true;
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}
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}
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}
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}
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if (has_ext_line_rasterization) {
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VkPhysicalDeviceLineRasterizationFeaturesEXT line_raster;
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line_raster.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_LINE_RASTERIZATION_FEATURES_EXT;
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line_raster.pNext = nullptr;
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features.pNext = &line_raster;
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physical.GetFeatures2KHR(features);
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if (line_raster.rectangularLines && line_raster.smoothLines) {
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extensions.push_back(VK_EXT_LINE_RASTERIZATION_EXTENSION_NAME);
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ext_line_rasterization = true;
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}
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}
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if (has_khr_workgroup_memory_explicit_layout) {
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if (has_khr_workgroup_memory_explicit_layout) {
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VkPhysicalDeviceWorkgroupMemoryExplicitLayoutFeaturesKHR layout;
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VkPhysicalDeviceWorkgroupMemoryExplicitLayoutFeaturesKHR layout;
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layout.sType =
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layout.sType =
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@ -259,6 +259,11 @@ public:
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return ext_extended_dynamic_state;
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return ext_extended_dynamic_state;
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}
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}
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/// Returns true if the device supports VK_EXT_line_rasterization.
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bool IsExtLineRasterizationSupported() const {
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return ext_line_rasterization;
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}
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/// Returns true if the device supports VK_EXT_vertex_input_dynamic_state.
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/// Returns true if the device supports VK_EXT_vertex_input_dynamic_state.
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bool IsExtVertexInputDynamicStateSupported() const {
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bool IsExtVertexInputDynamicStateSupported() const {
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return ext_vertex_input_dynamic_state;
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return ext_vertex_input_dynamic_state;
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@ -382,6 +387,7 @@ private:
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bool ext_transform_feedback{}; ///< Support for VK_EXT_transform_feedback.
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bool ext_transform_feedback{}; ///< Support for VK_EXT_transform_feedback.
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bool ext_custom_border_color{}; ///< Support for VK_EXT_custom_border_color.
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bool ext_custom_border_color{}; ///< Support for VK_EXT_custom_border_color.
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bool ext_extended_dynamic_state{}; ///< Support for VK_EXT_extended_dynamic_state.
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bool ext_extended_dynamic_state{}; ///< Support for VK_EXT_extended_dynamic_state.
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bool ext_line_rasterization{}; ///< Support for VK_EXT_line_rasterization.
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bool ext_vertex_input_dynamic_state{}; ///< Support for VK_EXT_vertex_input_dynamic_state.
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bool ext_vertex_input_dynamic_state{}; ///< Support for VK_EXT_vertex_input_dynamic_state.
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bool ext_shader_stencil_export{}; ///< Support for VK_EXT_shader_stencil_export.
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bool ext_shader_stencil_export{}; ///< Support for VK_EXT_shader_stencil_export.
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bool ext_shader_atomic_int64{}; ///< Support for VK_KHR_shader_atomic_int64.
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bool ext_shader_atomic_int64{}; ///< Support for VK_KHR_shader_atomic_int64.
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