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https://github.com/starr-dusT/yuzu-mainline
synced 2024-03-05 21:12:25 -08:00
Texture cache: reverse inmediate flush changes
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parent
36c302fa32
commit
016c6feb49
@ -4,6 +4,7 @@
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#include <fmt/format.h>
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#include <fmt/format.h>
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#include "common/assert.h"
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#include "common/assert.h"
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#include "common/settings.h"
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#include "video_core/surface.h"
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#include "video_core/surface.h"
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#include "video_core/texture_cache/format_lookup_table.h"
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#include "video_core/texture_cache/format_lookup_table.h"
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#include "video_core/texture_cache/image_info.h"
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#include "video_core/texture_cache/image_info.h"
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@ -22,6 +23,8 @@ using VideoCore::Surface::PixelFormat;
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using VideoCore::Surface::SurfaceType;
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using VideoCore::Surface::SurfaceType;
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ImageInfo::ImageInfo(const TICEntry& config) noexcept {
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ImageInfo::ImageInfo(const TICEntry& config) noexcept {
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forced_flushed = config.IsPitchLinear() && !Settings::values.use_reactive_flushing.GetValue();
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dma_downloaded = forced_flushed;
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format = PixelFormatFromTextureInfo(config.format, config.r_type, config.g_type, config.b_type,
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format = PixelFormatFromTextureInfo(config.format, config.r_type, config.g_type, config.b_type,
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config.a_type, config.srgb_conversion);
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config.a_type, config.srgb_conversion);
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num_samples = NumSamples(config.msaa_mode);
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num_samples = NumSamples(config.msaa_mode);
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@ -117,6 +120,9 @@ ImageInfo::ImageInfo(const TICEntry& config) noexcept {
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ImageInfo::ImageInfo(const Maxwell3D::Regs::RenderTargetConfig& ct,
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ImageInfo::ImageInfo(const Maxwell3D::Regs::RenderTargetConfig& ct,
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Tegra::Texture::MsaaMode msaa_mode) noexcept {
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Tegra::Texture::MsaaMode msaa_mode) noexcept {
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forced_flushed =
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ct.tile_mode.is_pitch_linear && !Settings::values.use_reactive_flushing.GetValue();
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dma_downloaded = forced_flushed;
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format = VideoCore::Surface::PixelFormatFromRenderTargetFormat(ct.format);
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format = VideoCore::Surface::PixelFormatFromRenderTargetFormat(ct.format);
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rescaleable = false;
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rescaleable = false;
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if (ct.tile_mode.is_pitch_linear) {
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if (ct.tile_mode.is_pitch_linear) {
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@ -155,6 +161,9 @@ ImageInfo::ImageInfo(const Maxwell3D::Regs::RenderTargetConfig& ct,
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ImageInfo::ImageInfo(const Maxwell3D::Regs::Zeta& zt, const Maxwell3D::Regs::ZetaSize& zt_size,
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ImageInfo::ImageInfo(const Maxwell3D::Regs::Zeta& zt, const Maxwell3D::Regs::ZetaSize& zt_size,
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Tegra::Texture::MsaaMode msaa_mode) noexcept {
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Tegra::Texture::MsaaMode msaa_mode) noexcept {
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forced_flushed =
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zt.tile_mode.is_pitch_linear && !Settings::values.use_reactive_flushing.GetValue();
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dma_downloaded = forced_flushed;
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format = VideoCore::Surface::PixelFormatFromDepthFormat(zt.format);
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format = VideoCore::Surface::PixelFormatFromDepthFormat(zt.format);
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size.width = zt_size.width;
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size.width = zt_size.width;
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size.height = zt_size.height;
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size.height = zt_size.height;
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@ -195,6 +204,9 @@ ImageInfo::ImageInfo(const Maxwell3D::Regs::Zeta& zt, const Maxwell3D::Regs::Zet
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ImageInfo::ImageInfo(const Fermi2D::Surface& config) noexcept {
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ImageInfo::ImageInfo(const Fermi2D::Surface& config) noexcept {
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UNIMPLEMENTED_IF_MSG(config.layer != 0, "Surface layer is not zero");
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UNIMPLEMENTED_IF_MSG(config.layer != 0, "Surface layer is not zero");
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forced_flushed = config.linear == Fermi2D::MemoryLayout::Pitch &&
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!Settings::values.use_reactive_flushing.GetValue();
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dma_downloaded = forced_flushed;
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format = VideoCore::Surface::PixelFormatFromRenderTargetFormat(config.format);
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format = VideoCore::Surface::PixelFormatFromRenderTargetFormat(config.format);
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rescaleable = false;
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rescaleable = false;
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if (config.linear == Fermi2D::MemoryLayout::Pitch) {
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if (config.linear == Fermi2D::MemoryLayout::Pitch) {
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@ -4,7 +4,6 @@
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#include <algorithm>
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#include <algorithm>
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#include "common/assert.h"
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#include "common/assert.h"
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#include "common/settings.h"
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#include "video_core/compatible_formats.h"
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#include "video_core/compatible_formats.h"
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#include "video_core/surface.h"
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#include "video_core/surface.h"
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#include "video_core/texture_cache/formatter.h"
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#include "video_core/texture_cache/formatter.h"
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@ -26,9 +25,7 @@ ImageViewBase::ImageViewBase(const ImageViewInfo& info, const ImageInfo& image_i
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ASSERT_MSG(VideoCore::Surface::IsViewCompatible(image_info.format, info.format, false, true),
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ASSERT_MSG(VideoCore::Surface::IsViewCompatible(image_info.format, info.format, false, true),
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"Image view format {} is incompatible with image format {}", info.format,
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"Image view format {} is incompatible with image format {}", info.format,
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image_info.format);
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image_info.format);
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const bool preemptive =
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if (image_info.forced_flushed) {
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!Settings::values.use_reactive_flushing.GetValue() && image_info.type == ImageType::Linear;
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if (image_info.forced_flushed || preemptive) {
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flags |= ImageViewFlagBits::PreemtiveDownload;
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flags |= ImageViewFlagBits::PreemtiveDownload;
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}
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}
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if (image_info.type == ImageType::e3D && info.type != ImageViewType::e3D) {
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if (image_info.type == ImageType::e3D && info.type != ImageViewType::e3D) {
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@ -711,39 +711,16 @@ void TextureCache<P>::CommitAsyncFlushes() {
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}
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}
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if (any_none_dma) {
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if (any_none_dma) {
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bool all_pre_sync = true;
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auto download_map = runtime.DownloadStagingBuffer(total_size_bytes, true);
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auto download_map = runtime.DownloadStagingBuffer(total_size_bytes, true);
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for (const PendingDownload& download_info : download_ids) {
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for (const PendingDownload& download_info : download_ids) {
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if (download_info.is_swizzle) {
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if (download_info.is_swizzle) {
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Image& image = slot_images[download_info.object_id];
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Image& image = slot_images[download_info.object_id];
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all_pre_sync &= image.info.dma_downloaded;
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image.info.dma_downloaded = true;
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const auto copies = FullDownloadCopies(image.info);
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const auto copies = FullDownloadCopies(image.info);
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image.DownloadMemory(download_map, copies);
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image.DownloadMemory(download_map, copies);
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download_map.offset += Common::AlignUp(image.unswizzled_size_bytes, 64);
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download_map.offset += Common::AlignUp(image.unswizzled_size_bytes, 64);
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}
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}
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}
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}
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if (!all_pre_sync) {
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uncommitted_async_buffers.emplace_back(download_map);
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runtime.Finish();
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auto it = download_ids.begin();
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while (it != download_ids.end()) {
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const PendingDownload& download_info = *it;
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if (download_info.is_swizzle) {
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const ImageBase& image = slot_images[download_info.object_id];
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const auto copies = FullDownloadCopies(image.info);
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download_map.offset -= Common::AlignUp(image.unswizzled_size_bytes, 64);
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std::span<u8> download_span =
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download_map.mapped_span.subspan(download_map.offset);
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SwizzleImage(*gpu_memory, image.gpu_addr, image.info, copies, download_span,
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swizzle_data_buffer);
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it = download_ids.erase(it);
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} else {
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it++;
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}
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}
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} else {
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uncommitted_async_buffers.emplace_back(download_map);
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}
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}
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}
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async_buffers.emplace_back(std::move(uncommitted_async_buffers));
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async_buffers.emplace_back(std::move(uncommitted_async_buffers));
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