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vk_update_descriptor: Upload descriptor sets data directly
Instead of copying to a temporary payload before sending the update task to the worker thread, insert elements to the payload directly.
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@ -1154,7 +1154,7 @@ void RasterizerVulkan::SetupTexture(const Tegra::Texture::FullTextureInfo& textu
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const auto sampler = sampler_cache.GetSampler(texture.tsc);
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update_descriptor_queue.AddSampledImage(sampler, image_view);
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const auto image_layout = update_descriptor_queue.GetLastImageLayout();
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VkImageLayout* const image_layout = update_descriptor_queue.LastImageLayout();
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*image_layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
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sampled_views.push_back(ImageView{std::move(view), image_layout});
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}
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@ -1180,7 +1180,7 @@ void RasterizerVulkan::SetupImage(const Tegra::Texture::TICEntry& tic, const Ima
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view->GetImageView(tic.x_source, tic.y_source, tic.z_source, tic.w_source);
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update_descriptor_queue.AddImage(image_view);
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const auto image_layout = update_descriptor_queue.GetLastImageLayout();
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VkImageLayout* const image_layout = update_descriptor_queue.LastImageLayout();
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*image_layout = VK_IMAGE_LAYOUT_GENERAL;
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image_views.push_back(ImageView{std::move(view), image_layout});
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}
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@ -24,34 +24,24 @@ void VKUpdateDescriptorQueue::TickFrame() {
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}
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void VKUpdateDescriptorQueue::Acquire() {
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entries.clear();
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}
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// Minimum number of entries required.
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// This is the maximum number of entries a single draw call migth use.
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static constexpr std::size_t MIN_ENTRIES = 0x400;
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void VKUpdateDescriptorQueue::Send(VkDescriptorUpdateTemplateKHR update_template,
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VkDescriptorSet set) {
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if (payload.size() + entries.size() >= payload.max_size()) {
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if (payload.size() + MIN_ENTRIES >= payload.max_size()) {
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LOG_WARNING(Render_Vulkan, "Payload overflow, waiting for worker thread");
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scheduler.WaitWorker();
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payload.clear();
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}
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// TODO(Rodrigo): Rework to write the payload directly
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const auto payload_start = payload.data() + payload.size();
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for (const auto& entry : entries) {
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if (const auto image = std::get_if<VkDescriptorImageInfo>(&entry)) {
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payload.push_back(*image);
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} else if (const auto buffer = std::get_if<VkDescriptorBufferInfo>(&entry)) {
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payload.push_back(*buffer);
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} else if (const auto texel = std::get_if<VkBufferView>(&entry)) {
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payload.push_back(*texel);
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} else {
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UNREACHABLE();
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}
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upload_start = &*payload.end();
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}
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scheduler.Record(
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[payload_start, set, update_template, logical = &device.GetLogical()](vk::CommandBuffer) {
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logical->UpdateDescriptorSet(set, update_template, payload_start);
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void VKUpdateDescriptorQueue::Send(VkDescriptorUpdateTemplateKHR update_template,
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VkDescriptorSet set) {
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const void* const data = upload_start;
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const vk::Device* const logical = &device.GetLogical();
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scheduler.Record([data, logical, set, update_template](vk::CommandBuffer) {
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logical->UpdateDescriptorSet(set, update_template, data);
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});
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}
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@ -15,17 +15,13 @@ namespace Vulkan {
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class VKDevice;
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class VKScheduler;
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class DescriptorUpdateEntry {
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public:
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explicit DescriptorUpdateEntry() {}
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struct DescriptorUpdateEntry {
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DescriptorUpdateEntry(VkDescriptorImageInfo image_) : image{image_} {}
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DescriptorUpdateEntry(VkDescriptorImageInfo image) : image{image} {}
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DescriptorUpdateEntry(VkDescriptorBufferInfo buffer_) : buffer{buffer_} {}
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DescriptorUpdateEntry(VkDescriptorBufferInfo buffer) : buffer{buffer} {}
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DescriptorUpdateEntry(VkBufferView texel_buffer_) : texel_buffer{texel_buffer_} {}
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DescriptorUpdateEntry(VkBufferView texel_buffer) : texel_buffer{texel_buffer} {}
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private:
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union {
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VkDescriptorImageInfo image;
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VkDescriptorBufferInfo buffer;
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@ -45,32 +41,34 @@ public:
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void Send(VkDescriptorUpdateTemplateKHR update_template, VkDescriptorSet set);
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void AddSampledImage(VkSampler sampler, VkImageView image_view) {
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entries.emplace_back(VkDescriptorImageInfo{sampler, image_view, {}});
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payload.emplace_back(VkDescriptorImageInfo{sampler, image_view, {}});
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}
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void AddImage(VkImageView image_view) {
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entries.emplace_back(VkDescriptorImageInfo{{}, image_view, {}});
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payload.emplace_back(VkDescriptorImageInfo{{}, image_view, {}});
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}
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void AddBuffer(VkBuffer buffer, u64 offset, std::size_t size) {
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entries.emplace_back(VkDescriptorBufferInfo{buffer, offset, size});
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payload.emplace_back(VkDescriptorBufferInfo{buffer, offset, size});
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}
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void AddTexelBuffer(VkBufferView texel_buffer) {
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entries.emplace_back(texel_buffer);
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payload.emplace_back(texel_buffer);
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}
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VkImageLayout* GetLastImageLayout() {
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return &std::get<VkDescriptorImageInfo>(entries.back()).imageLayout;
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VkImageLayout* LastImageLayout() {
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return &payload.back().image.imageLayout;
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}
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const VkImageLayout* LastImageLayout() const {
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return &payload.back().image.imageLayout;
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}
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private:
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using Variant = std::variant<VkDescriptorImageInfo, VkDescriptorBufferInfo, VkBufferView>;
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const VKDevice& device;
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VKScheduler& scheduler;
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boost::container::static_vector<Variant, 0x400> entries;
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const DescriptorUpdateEntry* upload_start = nullptr;
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boost::container::static_vector<DescriptorUpdateEntry, 0x10000> payload;
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};
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