Texture Cache: make sparse texture table per channel
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@ -1431,7 +1431,8 @@ ImageId TextureCache<P>::JoinImages(const ImageInfo& info, GPUVAddr gpu_addr, DA
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}
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}
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};
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ForEachSparseImageInRegion(gpu_addr, size_bytes, region_check_gpu);
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ForEachSparseImageInRegion(channel_state->gpu_memory.GetID(), gpu_addr, size_bytes,
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region_check_gpu);
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bool can_rescale = info.rescaleable;
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bool any_rescaled = false;
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@ -1842,7 +1843,7 @@ void TextureCache<P>::ForEachImageInRegionGPU(size_t as_id, GPUVAddr gpu_addr, s
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if (!storage_id) {
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return;
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}
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auto& gpu_page_table = gpu_page_table_storage[*storage_id];
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auto& gpu_page_table = gpu_page_table_storage[*storage_id * 2];
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ForEachGPUPage(gpu_addr, size,
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[this, &gpu_page_table, &images, gpu_addr, size, func](u64 page) {
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const auto it = gpu_page_table.find(page);
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@ -1882,41 +1883,48 @@ void TextureCache<P>::ForEachImageInRegionGPU(size_t as_id, GPUVAddr gpu_addr, s
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template <class P>
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template <typename Func>
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void TextureCache<P>::ForEachSparseImageInRegion(GPUVAddr gpu_addr, size_t size, Func&& func) {
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void TextureCache<P>::ForEachSparseImageInRegion(size_t as_id, GPUVAddr gpu_addr, size_t size,
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Func&& func) {
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using FuncReturn = typename std::invoke_result<Func, ImageId, Image&>::type;
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static constexpr bool BOOL_BREAK = std::is_same_v<FuncReturn, bool>;
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boost::container::small_vector<ImageId, 8> images;
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ForEachGPUPage(gpu_addr, size, [this, &images, gpu_addr, size, func](u64 page) {
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const auto it = sparse_page_table.find(page);
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if (it == sparse_page_table.end()) {
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if constexpr (BOOL_BREAK) {
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return false;
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} else {
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return;
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}
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}
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for (const ImageId image_id : it->second) {
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Image& image = slot_images[image_id];
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if (True(image.flags & ImageFlagBits::Picked)) {
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continue;
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}
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if (!image.OverlapsGPU(gpu_addr, size)) {
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continue;
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}
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image.flags |= ImageFlagBits::Picked;
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images.push_back(image_id);
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if constexpr (BOOL_BREAK) {
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if (func(image_id, image)) {
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return true;
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}
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} else {
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func(image_id, image);
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}
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}
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if constexpr (BOOL_BREAK) {
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return false;
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}
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});
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auto storage_id = getStorageID(as_id);
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if (!storage_id) {
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return;
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}
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auto& sparse_page_table = gpu_page_table_storage[*storage_id * 2 + 1];
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ForEachGPUPage(gpu_addr, size,
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[this, &sparse_page_table, &images, gpu_addr, size, func](u64 page) {
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const auto it = sparse_page_table.find(page);
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if (it == sparse_page_table.end()) {
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if constexpr (BOOL_BREAK) {
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return false;
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} else {
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return;
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}
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}
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for (const ImageId image_id : it->second) {
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Image& image = slot_images[image_id];
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if (True(image.flags & ImageFlagBits::Picked)) {
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continue;
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}
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if (!image.OverlapsGPU(gpu_addr, size)) {
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continue;
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}
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image.flags |= ImageFlagBits::Picked;
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images.push_back(image_id);
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if constexpr (BOOL_BREAK) {
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if (func(image_id, image)) {
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return true;
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}
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} else {
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func(image_id, image);
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}
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}
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if constexpr (BOOL_BREAK) {
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return false;
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}
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});
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for (const ImageId image_id : images) {
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slot_images[image_id].flags &= ~ImageFlagBits::Picked;
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}
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@ -1988,8 +1996,9 @@ void TextureCache<P>::RegisterImage(ImageId image_id) {
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sparse_maps.push_back(map_id);
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});
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sparse_views.emplace(image_id, std::move(sparse_maps));
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ForEachGPUPage(image.gpu_addr, image.guest_size_bytes,
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[this, image_id](u64 page) { sparse_page_table[page].push_back(image_id); });
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ForEachGPUPage(image.gpu_addr, image.guest_size_bytes, [this, image_id](u64 page) {
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(*channel_state->sparse_page_table)[page].push_back(image_id);
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});
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}
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template <class P>
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@ -2042,7 +2051,7 @@ void TextureCache<P>::UnregisterImage(ImageId image_id) {
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return;
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}
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ForEachGPUPage(image.gpu_addr, image.guest_size_bytes, [this, &clear_page_table](u64 page) {
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clear_page_table(page, sparse_page_table);
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clear_page_table(page, (*channel_state->sparse_page_table));
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});
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auto it = sparse_views.find(image_id);
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ASSERT(it != sparse_views.end());
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@ -2496,13 +2505,15 @@ void TextureCache<P>::CreateChannel(struct Tegra::Control::ChannelState& channel
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const auto it = channel_map.find(channel.bind_id);
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auto* this_state = &channel_storage[it->second];
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const auto& this_as_ref = address_spaces[channel.memory_manager->GetID()];
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this_state->gpu_page_table = &gpu_page_table_storage[this_as_ref.storage_id];
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this_state->gpu_page_table = &gpu_page_table_storage[this_as_ref.storage_id * 2];
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this_state->sparse_page_table = &gpu_page_table_storage[this_as_ref.storage_id * 2 + 1];
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}
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/// Bind a channel for execution.
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template <class P>
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void TextureCache<P>::OnGPUASRegister([[maybe_unused]] size_t map_id) {
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gpu_page_table_storage.emplace_back();
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gpu_page_table_storage.emplace_back();
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}
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} // namespace VideoCommon
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@ -86,6 +86,7 @@ public:
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std::unordered_map<TSCEntry, SamplerId> samplers;
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TextureCacheGPUMap* gpu_page_table;
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TextureCacheGPUMap* sparse_page_table;
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};
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template <class P>
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@ -357,7 +358,7 @@ private:
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void ForEachImageInRegionGPU(size_t as_id, GPUVAddr gpu_addr, size_t size, Func&& func);
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template <typename Func>
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void ForEachSparseImageInRegion(GPUVAddr gpu_addr, size_t size, Func&& func);
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void ForEachSparseImageInRegion(size_t as_id, GPUVAddr gpu_addr, size_t size, Func&& func);
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/// Iterates over all the images in a region calling func
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template <typename Func>
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@ -431,7 +432,6 @@ private:
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std::unordered_map<RenderTargets, FramebufferId> framebuffers;
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std::unordered_map<u64, std::vector<ImageMapId>, Common::IdentityHash<u64>> page_table;
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std::unordered_map<u64, std::vector<ImageId>, Common::IdentityHash<u64>> sparse_page_table;
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std::unordered_map<ImageId, boost::container::small_vector<ImageViewId, 16>> sparse_views;
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DAddr virtual_invalid_space{};
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