mirror of
https://github.com/yuzu-mirror/yuzu
synced 2024-11-24 11:03:03 +00:00
vulkan: implement 'turbo mode' clock booster
This commit is contained in:
parent
b78328f19a
commit
301e9bbc03
8 changed files with 272 additions and 2 deletions
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@ -190,6 +190,8 @@ add_library(video_core STATIC
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renderer_vulkan/vk_texture_cache.cpp
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renderer_vulkan/vk_texture_cache.h
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renderer_vulkan/vk_texture_cache_base.cpp
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renderer_vulkan/vk_turbo_mode.cpp
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renderer_vulkan/vk_turbo_mode.h
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renderer_vulkan/vk_update_descriptor.cpp
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renderer_vulkan/vk_update_descriptor.h
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shader_cache.cpp
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@ -47,6 +47,7 @@ set(SHADER_FILES
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vulkan_present_scaleforce_fp16.frag
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vulkan_present_scaleforce_fp32.frag
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vulkan_quad_indexed.comp
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vulkan_turbo_mode.comp
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vulkan_uint8.comp
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)
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29
src/video_core/host_shaders/vulkan_turbo_mode.comp
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src/video_core/host_shaders/vulkan_turbo_mode.comp
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@ -0,0 +1,29 @@
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// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#version 460 core
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layout (local_size_x = 16, local_size_y = 8, local_size_z = 1) in;
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layout (binding = 0) buffer ThreadData {
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uint data[];
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};
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uint xorshift32(uint x) {
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x ^= x << 13;
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x ^= x >> 17;
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x ^= x << 5;
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return x;
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}
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uint getGlobalIndex() {
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return gl_GlobalInvocationID.x + gl_GlobalInvocationID.y * gl_WorkGroupSize.y * gl_NumWorkGroups.y;
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}
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void main() {
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uint myIndex = xorshift32(getGlobalIndex());
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uint otherIndex = xorshift32(myIndex);
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uint otherValue = atomicAdd(data[otherIndex % data.length()], 0) + 1;
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atomicAdd(data[myIndex % data.length()], otherValue);
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}
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@ -78,6 +78,8 @@ std::string BuildCommaSeparatedExtensions(std::vector<std::string> available_ext
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return separated_extensions;
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}
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} // Anonymous namespace
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Device CreateDevice(const vk::Instance& instance, const vk::InstanceDispatch& dld,
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VkSurfaceKHR surface) {
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const std::vector<VkPhysicalDevice> devices = instance.EnumeratePhysicalDevices();
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@ -89,7 +91,6 @@ Device CreateDevice(const vk::Instance& instance, const vk::InstanceDispatch& dl
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const vk::PhysicalDevice physical_device(devices[device_index], dld);
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return Device(*instance, physical_device, surface, dld);
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}
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} // Anonymous namespace
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RendererVulkan::RendererVulkan(Core::TelemetrySession& telemetry_session_,
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Core::Frontend::EmuWindow& emu_window,
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@ -109,6 +110,7 @@ RendererVulkan::RendererVulkan(Core::TelemetrySession& telemetry_session_,
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screen_info),
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rasterizer(render_window, gpu, cpu_memory, screen_info, device, memory_allocator,
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state_tracker, scheduler) {
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turbo_mode.emplace(instance, dld);
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Report();
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} catch (const vk::Exception& exception) {
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LOG_ERROR(Render_Vulkan, "Vulkan initialization failed with error: {}", exception.what());
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@ -13,6 +13,7 @@
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#include "video_core/renderer_vulkan/vk_scheduler.h"
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#include "video_core/renderer_vulkan/vk_state_tracker.h"
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#include "video_core/renderer_vulkan/vk_swapchain.h"
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#include "video_core/renderer_vulkan/vk_turbo_mode.h"
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#include "video_core/vulkan_common/vulkan_device.h"
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#include "video_core/vulkan_common/vulkan_memory_allocator.h"
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#include "video_core/vulkan_common/vulkan_wrapper.h"
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@ -31,6 +32,9 @@ class GPU;
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namespace Vulkan {
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Device CreateDevice(const vk::Instance& instance, const vk::InstanceDispatch& dld,
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VkSurfaceKHR surface);
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class RendererVulkan final : public VideoCore::RendererBase {
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public:
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explicit RendererVulkan(Core::TelemetrySession& telemtry_session,
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@ -74,6 +78,7 @@ private:
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Swapchain swapchain;
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BlitScreen blit_screen;
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RasterizerVulkan rasterizer;
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std::optional<TurboMode> turbo_mode;
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};
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} // namespace Vulkan
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205
src/video_core/renderer_vulkan/vk_turbo_mode.cpp
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205
src/video_core/renderer_vulkan/vk_turbo_mode.cpp
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@ -0,0 +1,205 @@
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// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include "common/literals.h"
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#include "video_core/host_shaders/vulkan_turbo_mode_comp_spv.h"
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#include "video_core/renderer_vulkan/renderer_vulkan.h"
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#include "video_core/renderer_vulkan/vk_shader_util.h"
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#include "video_core/renderer_vulkan/vk_turbo_mode.h"
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#include "video_core/vulkan_common/vulkan_device.h"
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namespace Vulkan {
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using namespace Common::Literals;
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TurboMode::TurboMode(const vk::Instance& instance, const vk::InstanceDispatch& dld)
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: m_device{CreateDevice(instance, dld, VK_NULL_HANDLE)}, m_allocator{m_device, false} {
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m_thread = std::jthread([&](auto stop_token) { Run(stop_token); });
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}
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TurboMode::~TurboMode() = default;
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void TurboMode::Run(std::stop_token stop_token) {
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auto& dld = m_device.GetLogical();
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// Allocate buffer. 2MiB should be sufficient.
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auto buffer = dld.CreateBuffer(VkBufferCreateInfo{
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.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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.size = 2_MiB,
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.usage = VK_BUFFER_USAGE_STORAGE_BUFFER_BIT | VK_BUFFER_USAGE_TRANSFER_DST_BIT,
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.sharingMode = VK_SHARING_MODE_EXCLUSIVE,
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.queueFamilyIndexCount = 0,
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.pQueueFamilyIndices = nullptr,
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});
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// Commit some device local memory for the buffer.
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auto commit = m_allocator.Commit(buffer, MemoryUsage::DeviceLocal);
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// Create the descriptor pool to contain our descriptor.
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constexpr VkDescriptorPoolSize pool_size{
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.type = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER,
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.descriptorCount = 1,
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};
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auto descriptor_pool = dld.CreateDescriptorPool(VkDescriptorPoolCreateInfo{
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.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
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.pNext = nullptr,
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.flags = VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT,
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.maxSets = 1,
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.poolSizeCount = 1,
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.pPoolSizes = &pool_size,
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});
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// Create the descriptor set layout from the pool.
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constexpr VkDescriptorSetLayoutBinding layout_binding{
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.binding = 0,
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.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER,
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.descriptorCount = 1,
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.stageFlags = VK_SHADER_STAGE_COMPUTE_BIT,
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.pImmutableSamplers = nullptr,
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};
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auto descriptor_set_layout = dld.CreateDescriptorSetLayout(VkDescriptorSetLayoutCreateInfo{
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.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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.bindingCount = 1,
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.pBindings = &layout_binding,
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});
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// Actually create the descriptor set.
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auto descriptor_set = descriptor_pool.Allocate(VkDescriptorSetAllocateInfo{
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.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
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.pNext = nullptr,
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.descriptorPool = *descriptor_pool,
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.descriptorSetCount = 1,
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.pSetLayouts = descriptor_set_layout.address(),
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});
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// Create the shader.
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auto shader = BuildShader(m_device, VULKAN_TURBO_MODE_COMP_SPV);
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// Create the pipeline layout.
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auto pipeline_layout = dld.CreatePipelineLayout(VkPipelineLayoutCreateInfo{
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.sType = VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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.setLayoutCount = 1,
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.pSetLayouts = descriptor_set_layout.address(),
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.pushConstantRangeCount = 0,
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.pPushConstantRanges = nullptr,
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});
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// Actually create the pipeline.
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const VkPipelineShaderStageCreateInfo shader_stage{
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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.module = *shader,
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.pName = "main",
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.pSpecializationInfo = nullptr,
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};
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auto pipeline = dld.CreateComputePipeline(VkComputePipelineCreateInfo{
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.sType = VK_STRUCTURE_TYPE_COMPUTE_PIPELINE_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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.stage = shader_stage,
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.layout = *pipeline_layout,
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.basePipelineHandle = VK_NULL_HANDLE,
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.basePipelineIndex = 0,
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});
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// Create a fence to wait on.
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auto fence = dld.CreateFence(VkFenceCreateInfo{
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.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO,
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.pNext = nullptr,
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.flags = 0,
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});
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// Create a command pool to allocate a command buffer from.
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auto command_pool = dld.CreateCommandPool(VkCommandPoolCreateInfo{
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.sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO,
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.pNext = nullptr,
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.flags =
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VK_COMMAND_POOL_CREATE_TRANSIENT_BIT | VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT,
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.queueFamilyIndex = m_device.GetGraphicsFamily(),
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});
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// Create a single command buffer.
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auto cmdbufs = command_pool.Allocate(1, VK_COMMAND_BUFFER_LEVEL_PRIMARY);
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auto cmdbuf = vk::CommandBuffer{cmdbufs[0], m_device.GetDispatchLoader()};
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while (!stop_token.stop_requested()) {
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// Reset the fence.
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fence.Reset();
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// Update descriptor set.
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const VkDescriptorBufferInfo buffer_info{
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.buffer = *buffer,
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.offset = 0,
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.range = VK_WHOLE_SIZE,
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};
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const VkWriteDescriptorSet buffer_write{
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.sType = VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
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.pNext = nullptr,
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.dstSet = descriptor_set[0],
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.dstBinding = 0,
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.dstArrayElement = 0,
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.descriptorCount = 1,
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.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER,
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.pImageInfo = nullptr,
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.pBufferInfo = &buffer_info,
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.pTexelBufferView = nullptr,
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};
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dld.UpdateDescriptorSets(std::array{buffer_write}, {});
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// Set up the command buffer.
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cmdbuf.Begin(VkCommandBufferBeginInfo{
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.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO,
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.pNext = nullptr,
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.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT,
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.pInheritanceInfo = nullptr,
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});
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// Clear the buffer.
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cmdbuf.FillBuffer(*buffer, 0, VK_WHOLE_SIZE, 0);
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// Bind descriptor set.
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cmdbuf.BindDescriptorSets(VK_PIPELINE_BIND_POINT_COMPUTE, *pipeline_layout, 0,
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descriptor_set, {});
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// Bind the pipeline.
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cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_COMPUTE, *pipeline);
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// Dispatch.
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cmdbuf.Dispatch(64, 64, 1);
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// Finish.
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cmdbuf.End();
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const VkSubmitInfo submit_info{
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.sType = VK_STRUCTURE_TYPE_SUBMIT_INFO,
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.pNext = nullptr,
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.waitSemaphoreCount = 0,
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.pWaitSemaphores = nullptr,
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.pWaitDstStageMask = nullptr,
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.commandBufferCount = 1,
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.pCommandBuffers = cmdbuf.address(),
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.signalSemaphoreCount = 0,
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.pSignalSemaphores = nullptr,
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};
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m_device.GetGraphicsQueue().Submit(std::array{submit_info}, *fence);
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// Wait for completion.
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fence.Wait();
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}
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}
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} // namespace Vulkan
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26
src/video_core/renderer_vulkan/vk_turbo_mode.h
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src/video_core/renderer_vulkan/vk_turbo_mode.h
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// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#pragma once
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#include "common/polyfill_thread.h"
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#include "video_core/vulkan_common/vulkan_device.h"
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#include "video_core/vulkan_common/vulkan_memory_allocator.h"
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#include "video_core/vulkan_common/vulkan_wrapper.h"
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namespace Vulkan {
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class TurboMode {
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public:
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explicit TurboMode(const vk::Instance& instance, const vk::InstanceDispatch& dld);
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~TurboMode();
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private:
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void Run(std::stop_token stop_token);
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Device m_device;
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MemoryAllocator m_allocator;
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std::jthread m_thread;
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};
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} // namespace Vulkan
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@ -1472,7 +1472,7 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
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is_patch_list_restart_supported =
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primitive_topology_list_restart.primitiveTopologyPatchListRestart;
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}
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if (has_khr_image_format_list && has_khr_swapchain_mutable_format) {
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if (requires_surface && has_khr_image_format_list && has_khr_swapchain_mutable_format) {
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extensions.push_back(VK_KHR_IMAGE_FORMAT_LIST_EXTENSION_NAME);
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extensions.push_back(VK_KHR_SWAPCHAIN_MUTABLE_FORMAT_EXTENSION_NAME);
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khr_swapchain_mutable_format = true;
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