mirror of
https://github.com/KytyPS5/KytyPS5.git
synced 2026-08-03 11:23:49 +00:00
graphics: synchronize host file writes and depth clipping
Map paired PS5 depth-clip state through Vulkan pipeline creation and preserve asymmetric hard failures. Prepare GPU-mapped guest ranges before kernel file reads so buffer, texture, and alias ownership remains coherent. Add focused regression coverage and update the current launch target.
This commit is contained in:
@@ -253,6 +253,11 @@ struct ClipControl {
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bool cull_on_clipping_error_disable = false;
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bool linear_attribute_clip_enable = false;
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bool force_viewport_index_from_vs_enable = false;
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[[nodiscard]] bool IsZClipModeRepresentable() const {
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return min_z_clip_disable == max_z_clip_disable;
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}
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[[nodiscard]] bool IsZClipEnabled() const { return !min_z_clip_disable; }
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};
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struct DepthControl {
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@@ -316,6 +316,26 @@ bool PageManager::IsMapped(uint64_t vaddr, uint64_t size) const noexcept {
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return true;
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}
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bool PageManager::HasAnyMapping(uint64_t vaddr, uint64_t size) const noexcept {
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if (g_in_fault_resolution || vaddr == 0 || size == 0 || vaddr >= ADDRESS_SIZE ||
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size > ADDRESS_SIZE - vaddr) {
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return false;
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}
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const auto end = PageEnd(vaddr, size);
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for (auto page_vaddr = PageStart(vaddr); page_vaddr < end; page_vaddr += PAGE_SIZE) {
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auto* region = m_impl->FindRegion(page_vaddr);
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if (region == nullptr) {
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continue;
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}
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auto& page = m_impl->GetPage(*region, page_vaddr);
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SpinGuard lock(page.lock);
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if (page.mappings != 0) {
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return true;
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}
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}
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return false;
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}
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bool PageManager::HasGpuAccess(uint64_t vaddr, uint64_t size, GpuAccess access) const noexcept {
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if (access != GpuAccess::Read && access != GpuAccess::Write && access != GpuAccess::ReadWrite) {
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FailFast("HasGpuAccess received an invalid GPU access mode");
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@@ -644,4 +664,22 @@ bool PageManager::HandleFault(PageFaultAccess access, uint64_t fault_vaddr) noex
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return true;
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}
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bool PageManager::HandleWriteRange(uint64_t vaddr, uint64_t size) noexcept {
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if (g_in_fault_resolution || vaddr == 0 || size == 0 || vaddr >= ADDRESS_SIZE ||
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size > ADDRESS_SIZE - vaddr) {
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return false;
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}
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const auto end = PageEnd(vaddr, size);
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for (auto page_vaddr = PageStart(vaddr); page_vaddr < end; page_vaddr += PAGE_SIZE) {
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if (!IsMapped(page_vaddr, 1)) {
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continue;
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}
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const auto fault_vaddr = std::max(page_vaddr, vaddr);
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if (!HandleFault(PageFaultAccess::Write, fault_vaddr)) {
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return false;
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}
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}
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return true;
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}
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} // namespace Libs::Graphics
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@@ -38,6 +38,7 @@ public:
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[[nodiscard]] uint64_t GetPageSize() const;
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[[nodiscard]] bool IsTracked(uint64_t vaddr) const noexcept;
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[[nodiscard]] bool IsMapped(uint64_t vaddr, uint64_t size) const noexcept;
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[[nodiscard]] bool HasAnyMapping(uint64_t vaddr, uint64_t size) const noexcept;
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[[nodiscard]] bool HasGpuAccess(uint64_t vaddr, uint64_t size, GpuAccess access) const noexcept;
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void UpdatePageWatchers(bool track, uint64_t vaddr, uint64_t size,
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@@ -46,6 +47,7 @@ public:
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void OnGpuUnmap(uint64_t vaddr, uint64_t size, GpuAccess access = GpuAccess::ReadWrite);
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[[nodiscard]] bool HandleFault(PageFaultAccess access, uint64_t fault_vaddr) noexcept;
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[[nodiscard]] bool HandleWriteRange(uint64_t vaddr, uint64_t size) noexcept;
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private:
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void BeginBackingWrite(uint64_t vaddr, uint64_t size) noexcept;
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@@ -687,7 +687,7 @@ static void ClipCheck(const HW::ClipControl& c) {
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// dx_linear_attr_clip_enable preserves linear (noperspective) attributes at clip-generated
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// vertices, which Vulkan provides as part of clipping and interpolation.
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EXIT_NOT_IMPLEMENTED(c.user_clip_planes != 0 || c.user_clip_plane_mode != 0 ||
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c.vertex_kill_any || c.min_z_clip_disable || c.max_z_clip_disable ||
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c.vertex_kill_any || !c.IsZClipModeRepresentable() ||
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c.user_clip_plane_negate_y || c.clip_disable ||
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c.user_clip_plane_cull_only || c.cull_on_clipping_error_disable ||
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c.force_viewport_index_from_vs_enable);
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@@ -61,6 +61,41 @@ bool GpuResourceManager::HandleFault(PageFaultAccess access, uint64_t fault_vadd
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return m_page_manager.HandleFault(access, fault_vaddr);
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}
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void GpuResourceManager::PrepareHostWrite(uint64_t vaddr, uint64_t size) {
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if (!m_page_manager.HasAnyMapping(vaddr, size)) {
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return;
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}
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if (LabelInCallback()) {
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EXIT("unsupported host write from an asynchronous GPU label callback, addr=0x%016" PRIx64
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" size=0x%016" PRIx64 "\n",
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vaddr, size);
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}
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const auto handle_range = [this, vaddr, size]() {
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if (!m_page_manager.HandleWriteRange(vaddr, size)) {
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EXIT("failed to prepare host write, addr=0x%016" PRIx64 " size=0x%016" PRIx64
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"\n",
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vaddr, size);
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}
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};
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if (auto* cp = GraphicsRunCurrentCommandProcessor(); cp != nullptr) {
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cp->BeginReadbackTransaction();
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{
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ResourceMutex::FaultScope fault(m_resource_mutex);
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handle_range();
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}
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cp->EndReadbackTransaction();
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return;
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}
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if (m_resource_mutex.IsOwnedByCurrentThread()) {
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EXIT("unsupported host write from a pre-owned resource transaction, addr=0x%016" PRIx64
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" size=0x%016" PRIx64 "\n",
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vaddr, size);
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}
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GraphicsRunSubmissionLock submissions;
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ResourceMutex::FaultScope fault(m_resource_mutex);
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handle_range();
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}
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bool GpuResourceManager::IsMapped(uint64_t vaddr, uint64_t size) const noexcept {
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return m_page_manager.IsMapped(vaddr, size);
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}
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@@ -24,6 +24,7 @@ public:
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[[nodiscard]] TextureCache* GetTextureCache() { return &m_texture_cache; }
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[[nodiscard]] bool HandleFault(PageFaultAccess access, uint64_t fault_vaddr) noexcept;
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void PrepareHostWrite(uint64_t vaddr, uint64_t size);
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[[nodiscard]] bool IsMapped(uint64_t vaddr, uint64_t size) const noexcept;
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void MapMemory(uint64_t vaddr, uint64_t size, GpuAccess access);
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void UnmapMemory(uint64_t vaddr, uint64_t size, GpuAccess access);
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@@ -88,7 +88,10 @@ PipelineCache::GraphicsPipeline* PipelineCache::CreateGraphicsPipeline(
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}
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}
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static_params.negative_one_to_one = !ctx->GetClipControl().dx_clip_space;
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const auto& clip_control = ctx->GetClipControl();
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EXIT_NOT_IMPLEMENTED(!clip_control.IsZClipModeRepresentable());
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static_params.negative_one_to_one = !clip_control.dx_clip_space;
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static_params.depth_clip_enable = clip_control.IsZClipEnabled();
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static_params.topology = topology;
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static_params.samples = framebuffer->samples;
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static_params.sample_shading_enable =
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@@ -33,6 +33,7 @@ struct PipelineStaticParameters {
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float viewport_scale[3] = {};
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float viewport_offset[3] = {};
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bool negative_one_to_one = false;
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bool depth_clip_enable = true;
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int scissor_ltrb[4] = {0};
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vk::PrimitiveTopology topology = vk::PrimitiveTopology::ePointList;
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uint32_t samples = 1;
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@@ -75,7 +76,7 @@ static_assert(std::is_trivially_copyable_v<PipelineStaticParameters>);
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static_assert(std::is_standard_layout_v<PipelineStaticParameters>);
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static_assert(alignof(PipelineStaticParameters) == 1);
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static_assert(sizeof(PipelineStaticParameters) ==
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sizeof(float[3]) + sizeof(float[3]) + sizeof(bool) + sizeof(int[4]) +
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sizeof(float[3]) + sizeof(float[3]) + sizeof(bool) * 2 + sizeof(int[4]) +
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sizeof(vk::PrimitiveTopology) + sizeof(uint32_t) + sizeof(bool) * 4 +
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sizeof(vk::CompareOp) + sizeof(bool) + sizeof(float) * 2 + sizeof(bool) +
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sizeof(PipelineStencilStaticState) * 2 + sizeof(uint32_t) +
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@@ -734,7 +734,7 @@ void CreatePipelineInternal(PipelineCache::GraphicsPipeline* pipeline, vk::Rende
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clip_ext.sType = vk::StructureType::ePipelineRasterizationDepthClipStateCreateInfoEXT;
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clip_ext.pNext = nullptr;
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clip_ext.flags = {};
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clip_ext.depthClipEnable = VK_FALSE;
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clip_ext.depthClipEnable = static_params.depth_clip_enable ? VK_TRUE : VK_FALSE;
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vk::PipelineRasterizationStateCreateInfo rasterizer {};
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rasterizer.sType = vk::StructureType::ePipelineRasterizationStateCreateInfo;
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@@ -289,9 +289,13 @@ static void VulkanFindPhysicalDevice(vk::Instance instance, vk::SurfaceKHR surfa
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color_write_ext.sType = vk::StructureType::ePhysicalDeviceColorWriteEnableFeaturesEXT;
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color_write_ext.pNext = nullptr;
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vk::PhysicalDeviceDepthClipEnableFeaturesEXT depth_clip_enable {};
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depth_clip_enable.sType = vk::StructureType::ePhysicalDeviceDepthClipEnableFeaturesEXT;
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depth_clip_enable.pNext = &color_write_ext;
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vk::PhysicalDeviceDepthClipControlFeaturesEXT depth_clip_control {};
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depth_clip_control.sType = vk::StructureType::ePhysicalDeviceDepthClipControlFeaturesEXT;
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depth_clip_control.pNext = &color_write_ext;
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depth_clip_control.pNext = &depth_clip_enable;
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vk::PhysicalDeviceVulkan12Features features12 {};
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features12.sType = vk::StructureType::ePhysicalDeviceVulkan12Features;
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@@ -325,6 +329,10 @@ static void VulkanFindPhysicalDevice(vk::Instance instance, vk::SurfaceKHR surfa
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LOGF("depthClipControl is not supported\n");
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skip_device = true;
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}
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if (depth_clip_enable.depthClipEnable != VK_TRUE) {
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LOGF("depthClipEnable is not supported\n");
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skip_device = true;
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}
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if (features12.samplerMirrorClampToEdge != VK_TRUE) {
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LOGF("samplerMirrorClampToEdge is not supported\n");
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@@ -590,9 +598,14 @@ static vk::Device VulkanCreateDevice(vk::PhysicalDevice physical_device, vk::Sur
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color_write_ext.pNext = nullptr;
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color_write_ext.colorWriteEnable = VK_TRUE;
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vk::PhysicalDeviceDepthClipEnableFeaturesEXT depth_clip_enable {};
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depth_clip_enable.sType = vk::StructureType::ePhysicalDeviceDepthClipEnableFeaturesEXT;
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depth_clip_enable.pNext = &color_write_ext;
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depth_clip_enable.depthClipEnable = VK_TRUE;
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vk::PhysicalDeviceDepthClipControlFeaturesEXT depth_clip_control {};
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depth_clip_control.sType = vk::StructureType::ePhysicalDeviceDepthClipControlFeaturesEXT;
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depth_clip_control.pNext = &color_write_ext;
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depth_clip_control.pNext = &depth_clip_enable;
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depth_clip_control.depthClipControl = VK_TRUE;
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vk::PhysicalDeviceVulkan12Features features12 {};
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@@ -9,6 +9,7 @@
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#include "common/logging/log.h"
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#include "common/stringUtils.h"
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#include "common/threads.h"
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#include "kernel/memory.h"
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#include "libs/errno.h"
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#include "libs/libs.h"
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#include "libs/network.h"
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@@ -502,6 +503,11 @@ int64_t KYTY_SYSV_ABI KernelRead(int d, void* buf, size_t nbytes) {
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file->mutex.Lock();
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bool is_invalid = file->f.IsInvalid();
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const auto pos = file->f.Tell();
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const auto file_size = file->f.Size();
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const auto remaining = pos < file_size ? file_size - pos : 0;
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Memory::PrepareHostWrite(reinterpret_cast<uint64_t>(buf),
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std::min<uint64_t>(nbytes, remaining));
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uint32_t bytes_read = 0;
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file->f.Read(buf, static_cast<uint32_t>(nbytes), &bytes_read);
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@@ -622,6 +628,12 @@ int64_t KYTY_SYSV_ABI KernelPread(int d, void* buf, size_t nbytes, int64_t offse
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bool is_invalid = file->f.IsInvalid();
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auto pos = file->f.Tell();
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const auto file_size = file->f.Size();
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const auto remaining = static_cast<uint64_t>(offset) < file_size
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? file_size - static_cast<uint64_t>(offset)
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: 0;
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Memory::PrepareHostWrite(reinterpret_cast<uint64_t>(buf),
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std::min<uint64_t>(nbytes, remaining));
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uint32_t bytes_read = 0;
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file->f.Seek(offset);
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file->f.Read(buf, static_cast<uint32_t>(nbytes), &bytes_read);
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@@ -882,6 +882,13 @@ void WriteBacking(uint64_t vaddr, const void* data, uint64_t size) noexcept {
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}
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}
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void PrepareHostWrite(uint64_t vaddr, uint64_t size) {
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if (size == 0 || Graphics::g_render_ctx == nullptr) {
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return;
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}
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Graphics::g_render_ctx->GetGpuResources()->PrepareHostWrite(vaddr, size);
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}
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struct PrtAperture {
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uint64_t address = 0;
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uint64_t size = 0;
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@@ -99,6 +99,7 @@ void SetFlexibleMemorySize(uint64_t size);
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bool TryWriteBacking(uint64_t vaddr, const void* data, uint64_t size);
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bool TryReadBacking(uint64_t vaddr, void* data, uint64_t size);
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void WriteBacking(uint64_t vaddr, const void* data, uint64_t size) noexcept;
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void PrepareHostWrite(uint64_t vaddr, uint64_t size);
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int KYTY_SYSV_ABI KernelMapNamedFlexibleMemory(void** addr_in_out, size_t len, int prot, int flags,
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const char* name);
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@@ -168,6 +168,36 @@ void TestSharedWatcherFault() {
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Check(VirtualFree(memory, 0, MEM_RELEASE) != 0, "VirtualFree failed");
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}
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void TestMappedHostWriteRange() {
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FaultContext context;
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PageManager manager(InvalidateFault, &context);
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context.manager = &manager;
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const auto page_size = manager.GetPageSize();
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auto *memory = Allocate(page_size * 3);
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const auto address = reinterpret_cast<uint64_t>(memory);
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manager.OnGpuMap(address, page_size);
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manager.OnGpuMap(address + page_size * 2, page_size);
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manager.UpdatePageWatchers(true, address, page_size);
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manager.UpdatePageWatchers(true, address + page_size * 2, page_size);
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Check(manager.HasAnyMapping(address + 16, page_size * 3 - 32),
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"host-write range did not find partial GPU mappings");
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Check(!manager.IsMapped(address, page_size * 3),
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"partial GPU mappings were reported as a full mapping");
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Check(manager.HandleWriteRange(address + 16, page_size * 3 - 32),
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"mapped host-write range was not handled");
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Check(context.calls.load(std::memory_order_relaxed) == 2,
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"host-write range did not invalidate each mapped watched page");
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Check(IsWritable(memory) && IsWritable(memory + page_size * 2),
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"host-write range did not restore writable protection");
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manager.OnGpuUnmap(address, page_size);
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manager.OnGpuUnmap(address + page_size * 2, page_size);
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Check(!manager.HasAnyMapping(address, page_size * 3),
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"host-write range retained stale GPU mappings");
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Check(VirtualFree(memory, 0, MEM_RELEASE) != 0, "VirtualFree failed");
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}
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void TestReadWriteWatcherFault() {
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FaultContext context;
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PageManager manager(InvalidateFault, &context);
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@@ -607,6 +637,7 @@ int main(int argc, char **argv) {
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}
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TestWatchFaultAndUnwatch();
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TestSharedWatcherFault();
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TestMappedHostWriteRange();
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TestReadWriteWatcherFault();
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TestPermittedMappedLateFaultsResume();
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TestPartialMappingUnmapPreservesTokens();
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@@ -13869,6 +13869,30 @@ void CheckReferenceClockScale() {
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std::printf("[host] %-32s ok\n", "ReferenceClockScale");
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}
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void CheckClipControlDepthClipState() {
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HW::ClipControl clip;
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Require("ClipControlDepthClipState", "default",
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clip.IsZClipModeRepresentable() && clip.IsZClipEnabled(),
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"default paired Z clipping was not enabled");
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clip.min_z_clip_disable = true;
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Require("ClipControlDepthClipState", "asymmetric near",
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!clip.IsZClipModeRepresentable(),
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"asymmetric near-plane state was accepted");
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clip.min_z_clip_disable = false;
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clip.max_z_clip_disable = true;
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Require("ClipControlDepthClipState", "asymmetric far",
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!clip.IsZClipModeRepresentable(),
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"asymmetric far-plane state was accepted");
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clip.min_z_clip_disable = true;
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Require("ClipControlDepthClipState", "both disabled",
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clip.IsZClipModeRepresentable() && !clip.IsZClipEnabled(),
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"paired Z-clip disable was not represented");
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std::printf("[host] %-32s ok\n", "ClipControlDepthClipState");
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}
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} // namespace
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} // namespace Libs::Graphics
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@@ -13877,6 +13901,10 @@ int main(int argc, char **argv) {
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EnsureConfigInitialized();
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TileInit();
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if (argc == 2 && std::strcmp(argv[1], "--clip-control-only") == 0) {
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CheckClipControlDepthClipState();
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return 0;
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}
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if (argc == 2 && std::strcmp(argv[1], "--reference-clock-only") == 0) {
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CheckReferenceClockScale();
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return 0;
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@@ -14021,6 +14049,7 @@ int main(int argc, char **argv) {
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(void)argc;
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(void)argv;
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#endif
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CheckClipControlDepthClipState();
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CheckReferenceClockScale();
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CheckEmbeddedFetchVertexOffset();
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CheckEmbeddedFetchLaneSpill();
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