Texture Cache: Implement OnCPUWrite and SyncGuestHost
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@ -192,6 +192,22 @@ public:
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index = index_;
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index = index_;
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}
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}
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void SetMemoryMarked(bool is_memory_marked_) {
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is_memory_marked = is_memory_marked_;
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}
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bool IsMemoryMarked() const {
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return is_memory_marked;
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}
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void SetSyncPending(bool is_sync_pending_) {
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is_sync_pending = is_sync_pending_;
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}
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bool IsSyncPending() const {
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return is_sync_pending;
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}
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void MarkAsPicked(bool is_picked_) {
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void MarkAsPicked(bool is_picked_) {
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is_picked = is_picked_;
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is_picked = is_picked_;
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}
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}
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@ -303,6 +319,8 @@ private:
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bool is_target{};
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bool is_target{};
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bool is_registered{};
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bool is_registered{};
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bool is_picked{};
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bool is_picked{};
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bool is_memory_marked{};
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bool is_sync_pending{};
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u32 index{NO_RT};
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u32 index{NO_RT};
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u64 modification_tick{};
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u64 modification_tick{};
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};
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};
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@ -6,6 +6,7 @@
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#include <algorithm>
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#include <algorithm>
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#include <array>
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#include <array>
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#include <list>
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#include <memory>
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#include <memory>
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#include <mutex>
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#include <mutex>
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#include <set>
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#include <set>
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@ -62,6 +63,30 @@ public:
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}
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}
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}
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}
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void OnCPUWrite(CacheAddr addr, std::size_t size) {
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std::lock_guard lock{mutex};
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for (const auto& surface : GetSurfacesInRegion(addr, size)) {
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if (surface->IsMemoryMarked()) {
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Unmark(surface);
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surface->SetSyncPending(true);
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marked_for_unregister.emplace_back(surface);
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}
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}
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}
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void SyncGuestHost() {
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std::lock_guard lock{mutex};
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for (const auto& surface : marked_for_unregister) {
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if (surface->IsRegistered()) {
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surface->SetSyncPending(false);
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Unregister(surface);
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}
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}
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marked_for_unregister.clear();
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}
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/**
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/**
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* Guarantees that rendertargets don't unregister themselves if the
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* Guarantees that rendertargets don't unregister themselves if the
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* collide. Protection is currently only done on 3D slices.
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* collide. Protection is currently only done on 3D slices.
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@ -85,7 +110,9 @@ public:
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return a->GetModificationTick() < b->GetModificationTick();
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return a->GetModificationTick() < b->GetModificationTick();
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});
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});
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for (const auto& surface : surfaces) {
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for (const auto& surface : surfaces) {
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mutex.unlock();
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FlushSurface(surface);
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FlushSurface(surface);
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mutex.lock();
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}
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}
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}
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}
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@ -345,9 +372,20 @@ protected:
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surface->SetCpuAddr(*cpu_addr);
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surface->SetCpuAddr(*cpu_addr);
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RegisterInnerCache(surface);
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RegisterInnerCache(surface);
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surface->MarkAsRegistered(true);
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surface->MarkAsRegistered(true);
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surface->SetMemoryMarked(true);
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rasterizer.UpdatePagesCachedCount(*cpu_addr, size, 1);
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rasterizer.UpdatePagesCachedCount(*cpu_addr, size, 1);
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}
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}
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void Unmark(TSurface surface) {
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if (!surface->IsMemoryMarked()) {
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return;
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}
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const std::size_t size = surface->GetSizeInBytes();
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const VAddr cpu_addr = surface->GetCpuAddr();
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rasterizer.UpdatePagesCachedCount(cpu_addr, size, -1);
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surface->SetMemoryMarked(false);
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}
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void Unregister(TSurface surface) {
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void Unregister(TSurface surface) {
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if (guard_render_targets && surface->IsProtected()) {
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if (guard_render_targets && surface->IsProtected()) {
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return;
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return;
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@ -355,9 +393,11 @@ protected:
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if (!guard_render_targets && surface->IsRenderTarget()) {
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if (!guard_render_targets && surface->IsRenderTarget()) {
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ManageRenderTargetUnregister(surface);
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ManageRenderTargetUnregister(surface);
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}
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}
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const std::size_t size = surface->GetSizeInBytes();
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Unmark(surface);
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const VAddr cpu_addr = surface->GetCpuAddr();
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if (surface->IsSyncPending()) {
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rasterizer.UpdatePagesCachedCount(cpu_addr, size, -1);
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marked_for_unregister.remove(surface);
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surface->SetSyncPending(false);
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}
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UnregisterInnerCache(surface);
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UnregisterInnerCache(surface);
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surface->MarkAsRegistered(false);
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surface->MarkAsRegistered(false);
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ReserveSurface(surface->GetSurfaceParams(), surface);
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ReserveSurface(surface->GetSurfaceParams(), surface);
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@ -1150,6 +1190,8 @@ private:
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std::unordered_map<u32, TSurface> invalid_cache;
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std::unordered_map<u32, TSurface> invalid_cache;
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std::vector<u8> invalid_memory;
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std::vector<u8> invalid_memory;
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std::list<TSurface> marked_for_unregister;
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StagingCache staging_cache;
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StagingCache staging_cache;
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std::recursive_mutex mutex;
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std::recursive_mutex mutex;
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};
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};
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