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mainline-0
Author | SHA1 | Date | |
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6979cd3860 | ||
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0605f7e58e |
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@ -74,11 +74,6 @@ std::optional<OutAttr> OutputAttrPointer(EmitContext& ctx, IR::Attribute attr) {
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case IR::Attribute::ClipDistance7: {
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const u32 base{static_cast<u32>(IR::Attribute::ClipDistance0)};
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const u32 index{static_cast<u32>(attr) - base};
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if (index >= ctx.profile.max_user_clip_distances) {
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LOG_WARNING(Shader, "Ignoring clip distance store {} >= {} supported", index,
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ctx.profile.max_user_clip_distances);
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return std::nullopt;
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}
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const Id clip_num{ctx.Const(index)};
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return OutputAccessChain(ctx, ctx.output_f32, ctx.clip_distances, clip_num);
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}
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@ -1532,8 +1532,7 @@ void EmitContext::DefineOutputs(const IR::Program& program) {
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if (stage == Stage::Fragment) {
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throw NotImplementedException("Storing ClipDistance in fragment stage");
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}
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const Id type{TypeArray(
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F32[1], Const(std::min(info.used_clip_distances, profile.max_user_clip_distances)))};
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const Id type{TypeArray(F32[1], Const(8U))};
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clip_distances = DefineOutput(*this, type, invocations, spv::BuiltIn::ClipDistance);
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}
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if (info.stores[IR::Attribute::Layer] &&
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@ -913,11 +913,7 @@ void GatherInfoFromHeader(Environment& env, Info& info) {
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}
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for (size_t index = 0; index < 8; ++index) {
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const u16 mask{header.vtg.omap_systemc.clip_distances};
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const bool used{((mask >> index) & 1) != 0};
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info.stores.Set(IR::Attribute::ClipDistance0 + index, used);
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if (used) {
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info.used_clip_distances = static_cast<u32>(index) + 1;
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}
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info.stores.Set(IR::Attribute::ClipDistance0 + index, ((mask >> index) & 1) != 0);
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}
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info.stores.Set(IR::Attribute::PrimitiveId,
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header.vtg.omap_systemb.primitive_array_id != 0);
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@ -87,8 +87,6 @@ struct Profile {
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bool has_broken_robust{};
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u64 min_ssbo_alignment{};
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u32 max_user_clip_distances{};
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};
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} // namespace Shader
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@ -324,8 +324,6 @@ struct Info {
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bool requires_layer_emulation{};
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IR::Attribute emulated_layer{};
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u32 used_clip_distances{};
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boost::container::static_vector<ConstantBufferDescriptor, MAX_CBUFS>
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constant_buffer_descriptors;
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boost::container::static_vector<StorageBufferDescriptor, MAX_SSBOS> storage_buffers_descriptors;
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@ -233,7 +233,6 @@ ShaderCache::ShaderCache(RasterizerOpenGL& rasterizer_, Core::Frontend::EmuWindo
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.ignore_nan_fp_comparisons = true,
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.gl_max_compute_smem_size = device.GetMaxComputeSharedMemorySize(),
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.min_ssbo_alignment = device.GetShaderStorageBufferAlignment(),
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.max_user_clip_distances = 8,
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},
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host_info{
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.support_float64 = true,
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@ -374,7 +374,6 @@ PipelineCache::PipelineCache(RasterizerVulkan& rasterizer_, const Device& device
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.has_broken_robust =
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device.IsNvidia() && device.GetNvidiaArch() <= NvidiaArchitecture::Arch_Pascal,
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.min_ssbo_alignment = device.GetStorageBufferAlignment(),
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.max_user_clip_distances = device.GetMaxUserClipDistances(),
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};
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host_info = Shader::HostTranslateInfo{
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@ -1043,37 +1043,16 @@ void RasterizerVulkan::UpdateDepthBias(Tegra::Engines::Maxwell3D::Regs& regs) {
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regs.zeta.format == Tegra::DepthFormat::X8Z24_UNORM ||
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regs.zeta.format == Tegra::DepthFormat::S8Z24_UNORM ||
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regs.zeta.format == Tegra::DepthFormat::V8Z24_UNORM;
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bool force_unorm = ([&] {
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if (!is_d24 || device.SupportsD24DepthBuffer()) {
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return false;
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}
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if (device.IsExtDepthBiasControlSupported()) {
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return true;
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}
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if (!Settings::values.renderer_amdvlk_depth_bias_workaround) {
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return false;
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}
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if (is_d24 && !device.SupportsD24DepthBuffer() &&
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Settings::values.renderer_amdvlk_depth_bias_workaround) {
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// the base formulas can be obtained from here:
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// https://docs.microsoft.com/en-us/windows/win32/direct3d11/d3d10-graphics-programming-guide-output-merger-stage-depth-bias
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const double rescale_factor =
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static_cast<double>(1ULL << (32 - 24)) / (static_cast<double>(0x1.ep+127));
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units = static_cast<float>(static_cast<double>(units) * rescale_factor);
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return false;
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})();
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}
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scheduler.Record([constant = units, clamp = regs.depth_bias_clamp,
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factor = regs.slope_scale_depth_bias, force_unorm,
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precise = device.HasExactDepthBiasControl()](vk::CommandBuffer cmdbuf) {
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if (force_unorm) {
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VkDepthBiasRepresentationInfoEXT info{
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.sType = VK_STRUCTURE_TYPE_DEPTH_BIAS_REPRESENTATION_INFO_EXT,
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.pNext = nullptr,
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.depthBiasRepresentation =
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VK_DEPTH_BIAS_REPRESENTATION_LEAST_REPRESENTABLE_VALUE_FORCE_UNORM_EXT,
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.depthBiasExact = precise ? VK_TRUE : VK_FALSE,
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};
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cmdbuf.SetDepthBias(constant, clamp, factor, &info);
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return;
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}
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factor = regs.slope_scale_depth_bias](vk::CommandBuffer cmdbuf) {
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cmdbuf.SetDepthBias(constant, clamp, factor);
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});
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}
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@ -1135,13 +1135,6 @@ void Device::RemoveUnsuitableExtensions() {
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RemoveExtensionFeatureIfUnsuitable(extensions.custom_border_color, features.custom_border_color,
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VK_EXT_CUSTOM_BORDER_COLOR_EXTENSION_NAME);
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// VK_EXT_depth_bias_control
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extensions.depth_bias_control =
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features.depth_bias_control.depthBiasControl &&
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features.depth_bias_control.leastRepresentableValueForceUnormRepresentation;
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RemoveExtensionFeatureIfUnsuitable(extensions.depth_bias_control, features.depth_bias_control,
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VK_EXT_DEPTH_BIAS_CONTROL_EXTENSION_NAME);
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// VK_EXT_depth_clip_control
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extensions.depth_clip_control = features.depth_clip_control.depthClipControl;
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RemoveExtensionFeatureIfUnsuitable(extensions.depth_clip_control, features.depth_clip_control,
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@ -41,7 +41,6 @@ VK_DEFINE_HANDLE(VmaAllocator)
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// Define all features which may be used by the implementation and require an extension here.
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#define FOR_EACH_VK_FEATURE_EXT(FEATURE) \
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FEATURE(EXT, CustomBorderColor, CUSTOM_BORDER_COLOR, custom_border_color) \
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FEATURE(EXT, DepthBiasControl, DEPTH_BIAS_CONTROL, depth_bias_control) \
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FEATURE(EXT, DepthClipControl, DEPTH_CLIP_CONTROL, depth_clip_control) \
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FEATURE(EXT, ExtendedDynamicState, EXTENDED_DYNAMIC_STATE, extended_dynamic_state) \
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FEATURE(EXT, ExtendedDynamicState2, EXTENDED_DYNAMIC_STATE_2, extended_dynamic_state2) \
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@ -97,7 +96,6 @@ VK_DEFINE_HANDLE(VmaAllocator)
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#define FOR_EACH_VK_RECOMMENDED_EXTENSION(EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_CONDITIONAL_RENDERING_EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_CONSERVATIVE_RASTERIZATION_EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_DEPTH_BIAS_CONTROL_EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_DEPTH_RANGE_UNRESTRICTED_EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME) \
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EXTENSION_NAME(VK_EXT_EXTENDED_DYNAMIC_STATE_2_EXTENSION_NAME) \
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@ -150,9 +148,6 @@ VK_DEFINE_HANDLE(VmaAllocator)
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// Define features where the absence of the feature may result in a degraded experience.
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#define FOR_EACH_VK_RECOMMENDED_FEATURE(FEATURE_NAME) \
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FEATURE_NAME(custom_border_color, customBorderColors) \
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FEATURE_NAME(depth_bias_control, depthBiasControl) \
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FEATURE_NAME(depth_bias_control, leastRepresentableValueForceUnormRepresentation) \
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FEATURE_NAME(depth_bias_control, depthBiasExact) \
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FEATURE_NAME(extended_dynamic_state, extendedDynamicState) \
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FEATURE_NAME(format_a4b4g4r4, formatA4B4G4R4) \
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FEATURE_NAME(index_type_uint8, indexTypeUint8) \
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@ -479,11 +474,6 @@ public:
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return extensions.depth_clip_control;
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}
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/// Returns true if the device supports VK_EXT_depth_bias_control.
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bool IsExtDepthBiasControlSupported() const {
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return extensions.depth_bias_control;
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}
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/// Returns true if the device supports VK_EXT_shader_viewport_index_layer.
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bool IsExtShaderViewportIndexLayerSupported() const {
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return extensions.shader_viewport_index_layer;
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@ -649,10 +639,6 @@ public:
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return features.robustness2.nullDescriptor;
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}
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bool HasExactDepthBiasControl() const {
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return features.depth_bias_control.depthBiasExact;
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}
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u32 GetMaxVertexInputAttributes() const {
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return properties.properties.limits.maxVertexInputAttributes;
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}
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@ -665,10 +651,6 @@ public:
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return properties.properties.limits.maxViewports;
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}
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u32 GetMaxUserClipDistances() const {
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return properties.properties.limits.maxClipDistances;
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}
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bool SupportsConditionalBarriers() const {
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return supports_conditional_barriers;
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}
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