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@ -592,7 +592,8 @@ struct RangedBarrierRange {
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}
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void BlitScale(VKScheduler& scheduler, VkImage src_image, VkImage dst_image, const ImageInfo& info,
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VkImageAspectFlags aspect_mask, const Settings::ResolutionScalingInfo& resolution) {
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VkImageAspectFlags aspect_mask, const Settings::ResolutionScalingInfo& resolution,
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bool up_scaling = true) {
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const bool is_2d = info.type == ImageType::e2D;
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const auto resources = info.resources;
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const VkExtent2D extent{
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@ -605,14 +606,16 @@ void BlitScale(VKScheduler& scheduler, VkImage src_image, VkImage dst_image, con
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scheduler.RequestOutsideRenderPassOperationContext();
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scheduler.Record([dst_image, src_image, extent, resources, aspect_mask, resolution, is_2d,
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vk_filter](vk::CommandBuffer cmdbuf) {
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vk_filter, up_scaling](vk::CommandBuffer cmdbuf) {
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const VkOffset2D src_size{
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.x = static_cast<s32>(extent.width),
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.y = static_cast<s32>(extent.height),
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.x = static_cast<s32>(up_scaling ? extent.width : resolution.ScaleUp(extent.width)),
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.y = static_cast<s32>(is_2d && up_scaling ? extent.height
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: resolution.ScaleUp(extent.height)),
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};
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const VkOffset2D dst_size{
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.x = static_cast<s32>(resolution.ScaleUp(extent.width)),
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.y = static_cast<s32>(is_2d ? resolution.ScaleUp(extent.height) : extent.height),
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.x = static_cast<s32>(up_scaling ? resolution.ScaleUp(extent.width) : extent.width),
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.y = static_cast<s32>(is_2d && up_scaling ? resolution.ScaleUp(extent.height)
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: extent.height),
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};
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boost::container::small_vector<VkImageBlit, 4> regions;
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regions.reserve(resources.levels);
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@ -1134,6 +1137,7 @@ bool Image::ScaleUp() {
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if (!resolution.active) {
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return false;
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}
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scale_count++;
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const auto& device = runtime->device;
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const bool is_2d = info.type == ImageType::e2D;
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const u32 scaled_width = resolution.ScaleUp(info.size.width);
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@ -1161,8 +1165,10 @@ bool Image::ScaleUp() {
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using namespace VideoCommon;
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static constexpr auto BLIT_OPERATION = Tegra::Engines::Fermi2D::Operation::SrcCopy;
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if (!scale_view) {
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const auto view_info = ImageViewInfo(ImageViewType::e2D, info.format);
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scale_view = std::make_unique<ImageView>(*runtime, view_info, NULL_IMAGE_ID, *this);
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}
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auto* view_ptr = scale_view.get();
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const Region2D src_region{
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@ -1178,7 +1184,10 @@ bool Image::ScaleUp() {
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.height = scaled_height,
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};
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if (aspect_mask == VK_IMAGE_ASPECT_COLOR_BIT) {
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scale_framebuffer = std::make_unique<Framebuffer>(*runtime, view_ptr, nullptr, extent);
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if (!scale_framebuffer) {
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scale_framebuffer =
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std::make_unique<Framebuffer>(*runtime, view_ptr, nullptr, extent);
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}
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const auto color_view = scale_view->Handle(Shader::TextureType::Color2D);
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runtime->blit_image_helper.BlitColor(
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@ -1186,7 +1195,10 @@ bool Image::ScaleUp() {
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Tegra::Engines::Fermi2D::Filter::Bilinear, BLIT_OPERATION);
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} else if (!runtime->device.IsBlitDepthStencilSupported() &&
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aspect_mask == (VK_IMAGE_ASPECT_DEPTH_BIT | VK_IMAGE_ASPECT_STENCIL_BIT)) {
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scale_framebuffer = std::make_unique<Framebuffer>(*runtime, nullptr, view_ptr, extent);
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if (!scale_framebuffer) {
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scale_framebuffer =
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std::make_unique<Framebuffer>(*runtime, view_ptr, nullptr, extent);
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}
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runtime->blit_image_helper.BlitDepthStencil(
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scale_framebuffer.get(), scale_view->DepthView(), scale_view->StencilView(),
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dst_region, src_region, Tegra::Engines::Fermi2D::Filter::Point, BLIT_OPERATION);
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@ -1209,6 +1221,67 @@ bool Image::ScaleDown() {
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if (!resolution.active) {
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return false;
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}
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const auto& device = runtime->device;
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const bool is_2d = info.type == ImageType::e2D;
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const u32 scaled_width = resolution.ScaleUp(info.size.width);
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const u32 scaled_height = is_2d ? resolution.ScaleUp(info.size.height) : info.size.height;
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if (aspect_mask == 0) {
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aspect_mask = ImageAspectMask(info.format);
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}
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static constexpr auto OPTIMAL_FORMAT = FormatType::Optimal;
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const PixelFormat format = StorageFormat(info.format);
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const auto vk_format = MaxwellToVK::SurfaceFormat(device, OPTIMAL_FORMAT, false, format).format;
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const auto blit_usage = VK_FORMAT_FEATURE_BLIT_SRC_BIT | VK_FORMAT_FEATURE_BLIT_DST_BIT;
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if (device.IsFormatSupported(vk_format, blit_usage, OPTIMAL_FORMAT)) {
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BlitScale(*scheduler, *scaled_image, *original_image, info, aspect_mask, resolution, false);
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} else {
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using namespace VideoCommon;
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static constexpr auto BLIT_OPERATION = Tegra::Engines::Fermi2D::Operation::SrcCopy;
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if (!normal_view) {
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const auto view_info = ImageViewInfo(ImageViewType::e2D, info.format);
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normal_view = std::make_unique<ImageView>(*runtime, view_info, NULL_IMAGE_ID, *this);
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}
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auto* view_ptr = normal_view.get();
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const Region2D src_region{
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.start = {0, 0},
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.end = {static_cast<s32>(scaled_width), static_cast<s32>(scaled_height)},
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};
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const Region2D dst_region{
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.start = {0, 0},
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.end = {static_cast<s32>(info.size.width), static_cast<s32>(info.size.height)},
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};
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const VkExtent2D extent{
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.width = scaled_width,
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.height = scaled_height,
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};
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if (aspect_mask == VK_IMAGE_ASPECT_COLOR_BIT) {
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if (!normal_framebuffer) {
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normal_framebuffer =
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std::make_unique<Framebuffer>(*runtime, view_ptr, nullptr, extent);
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}
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const auto color_view = normal_view->Handle(Shader::TextureType::Color2D);
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runtime->blit_image_helper.BlitColor(
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normal_framebuffer.get(), color_view, dst_region, src_region,
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Tegra::Engines::Fermi2D::Filter::Bilinear, BLIT_OPERATION);
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} else if (!runtime->device.IsBlitDepthStencilSupported() &&
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aspect_mask == (VK_IMAGE_ASPECT_DEPTH_BIT | VK_IMAGE_ASPECT_STENCIL_BIT)) {
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if (!normal_framebuffer) {
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normal_framebuffer =
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std::make_unique<Framebuffer>(*runtime, view_ptr, nullptr, extent);
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}
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runtime->blit_image_helper.BlitDepthStencil(
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normal_framebuffer.get(), normal_view->DepthView(), normal_view->StencilView(),
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dst_region, src_region, Tegra::Engines::Fermi2D::Filter::Point, BLIT_OPERATION);
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} else {
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// TODO: Use helper blits where applicable
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flags &= ~ImageFlagBits::Rescaled;
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LOG_ERROR(Render_Vulkan, "Device does not support scaling format {}", format);
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return false;
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}
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}
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ASSERT(info.type != ImageType::Linear);
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current_image = *original_image;
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return true;
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