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VideoCore: Rework Garbage Collection.
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parent
c20ea89390
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141
src/common/lru_cache.h
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141
src/common/lru_cache.h
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@ -0,0 +1,141 @@
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// Copyright 2021 yuzu Emulator Project
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// Licensed under GPLv2+ or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include <deque>
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#include <memory>
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#include <type_traits>
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#include "common/common_types.h"
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namespace Common {
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template <class Traits>
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class LeastRecentlyUsedCache {
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using ObjectType = typename Traits::ObjectType;
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using TickType = typename Traits::TickType;
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struct Item {
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ObjectType obj;
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TickType tick;
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Item* next{};
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Item* prev{};
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};
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public:
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LeastRecentlyUsedCache() : first_item{}, last_item{} {}
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~LeastRecentlyUsedCache() = default;
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size_t Insert(ObjectType obj, TickType tick) {
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const auto new_id = build();
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auto& item = item_pool[new_id];
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item.obj = obj;
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item.tick = tick;
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attach(item);
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return new_id;
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}
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void Touch(size_t id, TickType tick) {
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auto& item = item_pool[id];
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if (item.tick >= tick) {
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return;
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}
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item.tick = tick;
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if (&item == last_item) {
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return;
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}
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detach(item);
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attach(item);
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}
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void Free(size_t id) {
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auto& item = item_pool[id];
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detach(item);
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item.prev = nullptr;
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item.next = nullptr;
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free_items.push_back(id);
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}
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template <typename Func>
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void ForEachItemBelow(TickType tick, Func&& func) {
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static constexpr bool RETURNS_BOOL =
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std::is_same_v<std::invoke_result<Func, ObjectType>, bool>;
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Item* iterator = first_item;
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while (iterator) {
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if (static_cast<s64>(tick) - static_cast<s64>(iterator->tick) < 0) {
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return;
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}
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Item* next = iterator->next;
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if constexpr (RETURNS_BOOL) {
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if (func(iterator->obj)) {
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return;
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}
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} else {
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func(iterator->obj);
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}
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iterator = next;
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}
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}
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private:
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size_t build() {
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if (free_items.empty()) {
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const size_t item_id = item_pool.size();
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item_pool.emplace_back();
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auto& item = item_pool[item_id];
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item.next = nullptr;
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item.prev = nullptr;
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return item_id;
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}
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const size_t item_id = free_items.front();
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free_items.pop_front();
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auto& item = item_pool[item_id];
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item.next = nullptr;
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item.prev = nullptr;
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return item_id;
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}
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void attach(Item& item) {
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if (!first_item) {
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first_item = &item;
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}
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if (!last_item) {
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last_item = &item;
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} else {
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item.prev = last_item;
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last_item->next = &item;
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item.next = nullptr;
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last_item = &item;
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}
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}
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void detach(Item& item) {
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if (item.prev) {
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item.prev->next = item.next;
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}
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if (item.next) {
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item.next->prev = item.prev;
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}
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if (&item == first_item) {
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first_item = item.next;
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if (first_item) {
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first_item->prev = nullptr;
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}
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}
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if (&item == last_item) {
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last_item = item.prev;
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if (last_item) {
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last_item->next = nullptr;
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}
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}
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}
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std::deque<Item> item_pool;
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std::deque<size_t> free_items;
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Item* first_item;
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Item* last_item;
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};
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} // namespace Common
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@ -261,16 +261,6 @@ public:
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stream_score += score;
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}
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/// Sets the new frame tick
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void SetFrameTick(u64 new_frame_tick) noexcept {
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frame_tick = new_frame_tick;
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}
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/// Returns the new frame tick
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[[nodiscard]] u64 FrameTick() const noexcept {
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return frame_tick;
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}
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/// Returns the likeliness of this being a stream buffer
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[[nodiscard]] int StreamScore() const noexcept {
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return stream_score;
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@ -307,6 +297,8 @@ public:
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return words.size_bytes;
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}
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size_t lru_id;
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private:
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template <Type type>
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u64* Array() noexcept {
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@ -603,7 +595,6 @@ private:
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RasterizerInterface* rasterizer = nullptr;
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VAddr cpu_addr = 0;
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Words words;
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u64 frame_tick = 0;
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BufferFlagBits flags{};
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int stream_score = 0;
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};
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@ -20,6 +20,7 @@
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#include "common/common_types.h"
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#include "common/div_ceil.h"
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#include "common/literals.h"
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#include "common/lru_cache.h"
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#include "common/microprofile.h"
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#include "common/scope_exit.h"
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#include "common/settings.h"
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@ -77,7 +78,7 @@ class BufferCache {
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static constexpr BufferId NULL_BUFFER_ID{0};
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static constexpr u64 EXPECTED_MEMORY = 512_MiB;
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static constexpr u64 EXPECTED_MEMORY = 256_MiB;
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static constexpr u64 CRITICAL_MEMORY = 1_GiB;
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using Maxwell = Tegra::Engines::Maxwell3D::Regs;
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@ -330,7 +331,7 @@ private:
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template <bool insert>
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void ChangeRegister(BufferId buffer_id);
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void TouchBuffer(Buffer& buffer) const noexcept;
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void TouchBuffer(Buffer& buffer, BufferId buffer_id) noexcept;
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bool SynchronizeBuffer(Buffer& buffer, VAddr cpu_addr, u32 size);
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@ -428,7 +429,11 @@ private:
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size_t immediate_buffer_capacity = 0;
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std::unique_ptr<u8[]> immediate_buffer_alloc;
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typename SlotVector<Buffer>::Iterator deletion_iterator;
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struct LRUItemParams {
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using ObjectType = BufferId;
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using TickType = u64;
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};
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Common::LeastRecentlyUsedCache<LRUItemParams> lru_cache;
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u64 frame_tick = 0;
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u64 total_used_memory = 0;
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@ -445,7 +450,6 @@ BufferCache<P>::BufferCache(VideoCore::RasterizerInterface& rasterizer_,
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kepler_compute{kepler_compute_}, gpu_memory{gpu_memory_}, cpu_memory{cpu_memory_} {
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// Ensure the first slot is used for the null buffer
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void(slot_buffers.insert(runtime, NullBufferParams{}));
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deletion_iterator = slot_buffers.end();
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common_ranges.clear();
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}
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@ -454,20 +458,17 @@ void BufferCache<P>::RunGarbageCollector() {
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const bool aggressive_gc = total_used_memory >= CRITICAL_MEMORY;
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const u64 ticks_to_destroy = aggressive_gc ? 60 : 120;
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int num_iterations = aggressive_gc ? 64 : 32;
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for (; num_iterations > 0; --num_iterations) {
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if (deletion_iterator == slot_buffers.end()) {
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deletion_iterator = slot_buffers.begin();
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const auto clean_up = [this, &num_iterations](BufferId buffer_id) {
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if (num_iterations == 0) {
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return true;
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}
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++deletion_iterator;
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if (deletion_iterator == slot_buffers.end()) {
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break;
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}
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const auto [buffer_id, buffer] = *deletion_iterator;
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if (buffer->FrameTick() + ticks_to_destroy < frame_tick) {
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DownloadBufferMemory(*buffer);
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--num_iterations;
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auto& buffer = slot_buffers[buffer_id];
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DownloadBufferMemory(buffer);
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DeleteBuffer(buffer_id);
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}
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}
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return false;
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};
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lru_cache.ForEachItemBelow(frame_tick - ticks_to_destroy, clean_up);
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}
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template <class P>
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template <class P>
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void BufferCache<P>::BindHostIndexBuffer() {
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Buffer& buffer = slot_buffers[index_buffer.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, index_buffer.buffer_id);
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const u32 offset = buffer.Offset(index_buffer.cpu_addr);
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const u32 size = index_buffer.size;
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SynchronizeBuffer(buffer, index_buffer.cpu_addr, size);
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for (u32 index = 0; index < NUM_VERTEX_BUFFERS; ++index) {
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const Binding& binding = vertex_buffers[index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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SynchronizeBuffer(buffer, binding.cpu_addr, binding.size);
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if (!flags[Dirty::VertexBuffer0 + index]) {
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continue;
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const VAddr cpu_addr = binding.cpu_addr;
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const u32 size = std::min(binding.size, (*uniform_buffer_sizes)[stage][index]);
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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const bool use_fast_buffer = binding.buffer_id != NULL_BUFFER_ID &&
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size <= uniform_buffer_skip_cache_size &&
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!buffer.IsRegionGpuModified(cpu_addr, size);
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ForEachEnabledBit(enabled_storage_buffers[stage], [&](u32 index) {
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const Binding& binding = storage_buffers[stage][index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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const u32 size = binding.size;
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SynchronizeBuffer(buffer, binding.cpu_addr, size);
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@ -1128,7 +1129,7 @@ void BufferCache<P>::BindHostTransformFeedbackBuffers() {
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for (u32 index = 0; index < NUM_TRANSFORM_FEEDBACK_BUFFERS; ++index) {
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const Binding& binding = transform_feedback_buffers[index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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const u32 size = binding.size;
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SynchronizeBuffer(buffer, binding.cpu_addr, size);
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@ -1148,7 +1149,7 @@ void BufferCache<P>::BindHostComputeUniformBuffers() {
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ForEachEnabledBit(enabled_compute_uniform_buffer_mask, [&](u32 index) {
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const Binding& binding = compute_uniform_buffers[index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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const u32 size = std::min(binding.size, (*compute_uniform_buffer_sizes)[index]);
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SynchronizeBuffer(buffer, binding.cpu_addr, size);
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@ -1168,7 +1169,7 @@ void BufferCache<P>::BindHostComputeStorageBuffers() {
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ForEachEnabledBit(enabled_compute_storage_buffers, [&](u32 index) {
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const Binding& binding = compute_storage_buffers[index];
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Buffer& buffer = slot_buffers[binding.buffer_id];
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TouchBuffer(buffer);
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TouchBuffer(buffer, binding.buffer_id);
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const u32 size = binding.size;
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SynchronizeBuffer(buffer, binding.cpu_addr, size);
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@ -1513,11 +1514,11 @@ BufferId BufferCache<P>::CreateBuffer(VAddr cpu_addr, u32 wanted_size) {
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const OverlapResult overlap = ResolveOverlaps(cpu_addr, wanted_size);
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const u32 size = static_cast<u32>(overlap.end - overlap.begin);
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const BufferId new_buffer_id = slot_buffers.insert(runtime, rasterizer, overlap.begin, size);
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TouchBuffer(slot_buffers[new_buffer_id]);
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for (const BufferId overlap_id : overlap.ids) {
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JoinOverlap(new_buffer_id, overlap_id, !overlap.has_stream_leap);
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}
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Register(new_buffer_id);
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TouchBuffer(slot_buffers[new_buffer_id], new_buffer_id);
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return new_buffer_id;
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}
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@ -1534,12 +1535,14 @@ void BufferCache<P>::Unregister(BufferId buffer_id) {
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template <class P>
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template <bool insert>
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void BufferCache<P>::ChangeRegister(BufferId buffer_id) {
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const Buffer& buffer = slot_buffers[buffer_id];
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Buffer& buffer = slot_buffers[buffer_id];
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const auto size = buffer.SizeBytes();
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if (insert) {
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total_used_memory += Common::AlignUp(size, 1024);
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buffer.lru_id = lru_cache.Insert(buffer_id, frame_tick);
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} else {
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total_used_memory -= Common::AlignUp(size, 1024);
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lru_cache.Free(buffer.lru_id);
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}
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const VAddr cpu_addr_begin = buffer.CpuAddr();
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const VAddr cpu_addr_end = cpu_addr_begin + size;
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}
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template <class P>
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void BufferCache<P>::TouchBuffer(Buffer& buffer) const noexcept {
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buffer.SetFrameTick(frame_tick);
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void BufferCache<P>::TouchBuffer(Buffer& buffer, BufferId buffer_id) noexcept {
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if (buffer_id != NULL_BUFFER_ID) {
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lru_cache.Touch(buffer.lru_id, frame_tick);
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}
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}
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template <class P>
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@ -80,7 +80,7 @@ struct ImageBase {
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VAddr cpu_addr_end = 0;
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u64 modification_tick = 0;
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u64 frame_tick = 0;
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size_t lru_index = ~0;
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std::array<u32, MAX_MIP_LEVELS> mip_level_offsets{};
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@ -43,8 +43,6 @@ TextureCache<P>::TextureCache(Runtime& runtime_, VideoCore::RasterizerInterface&
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void(slot_image_views.insert(runtime, NullImageParams{}));
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void(slot_samplers.insert(runtime, sampler_descriptor));
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deletion_iterator = slot_images.begin();
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if constexpr (HAS_DEVICE_MEMORY_INFO) {
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const auto device_memory = runtime.GetDeviceLocalMemory();
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const u64 possible_expected_memory = (device_memory * 3) / 10;
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@ -64,65 +62,33 @@ template <class P>
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void TextureCache<P>::RunGarbageCollector() {
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const bool high_priority_mode = total_used_memory >= expected_memory;
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const bool aggressive_mode = total_used_memory >= critical_memory;
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const u64 ticks_to_destroy = high_priority_mode ? 60 : 100;
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int num_iterations = aggressive_mode ? 256 : (high_priority_mode ? 128 : 64);
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for (; num_iterations > 0; --num_iterations) {
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if (deletion_iterator == slot_images.end()) {
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deletion_iterator = slot_images.begin();
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if (deletion_iterator == slot_images.end()) {
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break;
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const u64 ticks_to_destroy = aggressive_mode ? 10ULL : high_priority_mode ? 50ULL : 100ULL;
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size_t num_iterations = aggressive_mode ? 10000 : (high_priority_mode ? 50 : 5);
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const auto clean_up = [this, &num_iterations, high_priority_mode](ImageId image_id) {
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if (num_iterations == 0) {
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return true;
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}
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--num_iterations;
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auto& image = slot_images[image_id];
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const bool must_download = image.IsSafeDownload();
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if (!high_priority_mode && must_download) {
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return false;
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}
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auto [image_id, image_tmp] = *deletion_iterator;
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Image* image = image_tmp; // fix clang error.
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const bool is_alias = True(image->flags & ImageFlagBits::Alias);
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const bool is_bad_overlap = True(image->flags & ImageFlagBits::BadOverlap);
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const bool must_download = image->IsSafeDownload();
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bool should_care = is_bad_overlap || is_alias || (high_priority_mode && !must_download);
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const u64 ticks_needed =
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is_bad_overlap
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? ticks_to_destroy >> 4
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: ((should_care && aggressive_mode) ? ticks_to_destroy >> 1 : ticks_to_destroy);
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should_care |= aggressive_mode;
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if (should_care && image->frame_tick + ticks_needed < frame_tick) {
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if (is_bad_overlap) {
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const bool overlap_check = std::ranges::all_of(
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image->overlapping_images, [&, image](const ImageId& overlap_id) {
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auto& overlap = slot_images[overlap_id];
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return overlap.frame_tick >= image->frame_tick;
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});
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if (!overlap_check) {
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++deletion_iterator;
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continue;
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}
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}
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if (!is_bad_overlap && must_download) {
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const bool alias_check = std::ranges::none_of(
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image->aliased_images, [&, image](const AliasedImage& alias) {
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auto& alias_image = slot_images[alias.id];
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return (alias_image.frame_tick < image->frame_tick) ||
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(alias_image.modification_tick < image->modification_tick);
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});
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if (alias_check) {
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auto map = runtime.DownloadStagingBuffer(image->unswizzled_size_bytes);
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const auto copies = FullDownloadCopies(image->info);
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image->DownloadMemory(map, copies);
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if (must_download) {
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auto map = runtime.DownloadStagingBuffer(image.unswizzled_size_bytes);
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const auto copies = FullDownloadCopies(image.info);
|
||||
image.DownloadMemory(map, copies);
|
||||
runtime.Finish();
|
||||
SwizzleImage(gpu_memory, image->gpu_addr, image->info, copies, map.mapped_span);
|
||||
SwizzleImage(gpu_memory, image.gpu_addr, image.info, copies, map.mapped_span);
|
||||
}
|
||||
}
|
||||
if (True(image->flags & ImageFlagBits::Tracked)) {
|
||||
UntrackImage(*image, image_id);
|
||||
if (True(image.flags & ImageFlagBits::Tracked)) {
|
||||
UntrackImage(image, image_id);
|
||||
}
|
||||
UnregisterImage(image_id);
|
||||
DeleteImage(image_id);
|
||||
if (is_bad_overlap) {
|
||||
++num_iterations;
|
||||
}
|
||||
}
|
||||
++deletion_iterator;
|
||||
}
|
||||
return false;
|
||||
};
|
||||
lru_cache.ForEachItemBelow(frame_tick - ticks_to_destroy, clean_up);
|
||||
}
|
||||
|
||||
template <class P>
|
||||
|
@ -1078,6 +1044,8 @@ void TextureCache<P>::RegisterImage(ImageId image_id) {
|
|||
tentative_size = EstimatedDecompressedSize(tentative_size, image.info.format);
|
||||
}
|
||||
total_used_memory += Common::AlignUp(tentative_size, 1024);
|
||||
image.lru_index = lru_cache.Insert(image_id, frame_tick);
|
||||
|
||||
ForEachGPUPage(image.gpu_addr, image.guest_size_bytes,
|
||||
[this, image_id](u64 page) { gpu_page_table[page].push_back(image_id); });
|
||||
if (False(image.flags & ImageFlagBits::Sparse)) {
|
||||
|
@ -1115,6 +1083,7 @@ void TextureCache<P>::UnregisterImage(ImageId image_id) {
|
|||
tentative_size = EstimatedDecompressedSize(tentative_size, image.info.format);
|
||||
}
|
||||
total_used_memory -= Common::AlignUp(tentative_size, 1024);
|
||||
lru_cache.Free(image.lru_index);
|
||||
const auto& clear_page_table =
|
||||
[this, image_id](
|
||||
u64 page,
|
||||
|
@ -1384,7 +1353,7 @@ void TextureCache<P>::PrepareImage(ImageId image_id, bool is_modification, bool
|
|||
if (is_modification) {
|
||||
MarkModification(image);
|
||||
}
|
||||
image.frame_tick = frame_tick;
|
||||
lru_cache.Touch(image.lru_index, frame_tick);
|
||||
}
|
||||
|
||||
template <class P>
|
||||
|
|
|
@ -14,6 +14,7 @@
|
|||
|
||||
#include "common/common_types.h"
|
||||
#include "common/literals.h"
|
||||
#include "common/lru_cache.h"
|
||||
#include "video_core/compatible_formats.h"
|
||||
#include "video_core/delayed_destruction_ring.h"
|
||||
#include "video_core/engines/fermi_2d.h"
|
||||
|
@ -370,6 +371,12 @@ private:
|
|||
std::vector<ImageId> uncommitted_downloads;
|
||||
std::queue<std::vector<ImageId>> committed_downloads;
|
||||
|
||||
struct LRUItemParams {
|
||||
using ObjectType = ImageId;
|
||||
using TickType = u64;
|
||||
};
|
||||
Common::LeastRecentlyUsedCache<LRUItemParams> lru_cache;
|
||||
|
||||
static constexpr size_t TICKS_TO_DESTROY = 6;
|
||||
DelayedDestructionRing<Image, TICKS_TO_DESTROY> sentenced_images;
|
||||
DelayedDestructionRing<ImageView, TICKS_TO_DESTROY> sentenced_image_view;
|
||||
|
@ -379,7 +386,6 @@ private:
|
|||
|
||||
u64 modification_tick = 0;
|
||||
u64 frame_tick = 0;
|
||||
typename SlotVector<Image>::Iterator deletion_iterator;
|
||||
};
|
||||
|
||||
} // namespace VideoCommon
|
||||
|
|
Loading…
Reference in a new issue