Clang: format and ficx compile errors.
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ed4553806a
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@ -55,53 +55,53 @@ public:
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[[nodiscard]] std::pair<u64, u64> ModifiedCpuRegion(VAddr query_cpu_addr,
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u64 query_size) const noexcept {
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const u64 offset = query_cpu_addr - cpu_addr;
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return word_manager.ModifiedRegion<Type::CPU>(offset, query_size);
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return word_manager.template ModifiedRegion<Type::CPU>(offset, query_size);
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}
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/// Returns the inclusive GPU modified range in a begin end pair
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[[nodiscard]] std::pair<u64, u64> ModifiedGpuRegion(VAddr query_cpu_addr,
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u64 query_size) const noexcept {
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const u64 offset = query_cpu_addr - cpu_addr;
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return word_manager.ModifiedRegion<Type::GPU>(offset, query_size);
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return word_manager.template ModifiedRegion<Type::GPU>(offset, query_size);
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}
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/// Returns true if a region has been modified from the CPU
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[[nodiscard]] bool IsRegionCpuModified(VAddr query_cpu_addr, u64 query_size) const noexcept {
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const u64 offset = query_cpu_addr - cpu_addr;
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return word_manager.IsRegionModified<Type::CPU>(offset, query_size);
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return word_manager.template IsRegionModified<Type::CPU>(offset, query_size);
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}
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/// Returns true if a region has been modified from the GPU
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[[nodiscard]] bool IsRegionGpuModified(VAddr query_cpu_addr, u64 query_size) const noexcept {
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const u64 offset = query_cpu_addr - cpu_addr;
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return word_manager.IsRegionModified<Type::GPU>(offset, query_size);
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return word_manager.template IsRegionModified<Type::GPU>(offset, query_size);
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}
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/// Mark region as CPU modified, notifying the rasterizer about this change
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void MarkRegionAsCpuModified(VAddr dirty_cpu_addr, u64 size) {
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word_manager.ChangeRegionState<Type::CPU, true>(dirty_cpu_addr, size);
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word_manager.template ChangeRegionState<Type::CPU, true>(dirty_cpu_addr, size);
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}
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/// Unmark region as CPU modified, notifying the rasterizer about this change
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void UnmarkRegionAsCpuModified(VAddr dirty_cpu_addr, u64 size) {
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word_manager.ChangeRegionState<Type::CPU, false>(dirty_cpu_addr, size);
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word_manager.template ChangeRegionState<Type::CPU, false>(dirty_cpu_addr, size);
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}
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/// Mark region as modified from the host GPU
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void MarkRegionAsGpuModified(VAddr dirty_cpu_addr, u64 size) noexcept {
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word_manager.ChangeRegionState<Type::GPU, true>(dirty_cpu_addr, size);
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word_manager.template ChangeRegionState<Type::GPU, true>(dirty_cpu_addr, size);
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}
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/// Unmark region as modified from the host GPU
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void UnmarkRegionAsGpuModified(VAddr dirty_cpu_addr, u64 size) noexcept {
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word_manager.ChangeRegionState<Type::GPU, false>(dirty_cpu_addr, size);
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word_manager.template ChangeRegionState<Type::GPU, false>(dirty_cpu_addr, size);
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}
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/// Mark region as modified from the CPU
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/// but don't mark it as modified until FlusHCachedWrites is called.
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void CachedCpuWrite(VAddr dirty_cpu_addr, u64 size) {
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flags |= BufferFlagBits::CachedWrites;
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word_manager.ChangeRegionState<Type::CachedCPU, true>(dirty_cpu_addr, size);
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word_manager.template ChangeRegionState<Type::CachedCPU, true>(dirty_cpu_addr, size);
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}
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/// Flushes cached CPU writes, and notify the rasterizer about the deltas
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@ -113,24 +113,24 @@ public:
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/// Call 'func' for each CPU modified range and unmark those pages as CPU modified
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template <typename Func>
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void ForEachUploadRange(VAddr query_cpu_range, u64 size, Func&& func) {
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word_manager.ForEachModifiedRange<Type::CPU>(query_cpu_range, size, true, func);
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word_manager.template ForEachModifiedRange<Type::CPU>(query_cpu_range, size, true, func);
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}
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/// Call 'func' for each GPU modified range and unmark those pages as GPU modified
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template <typename Func>
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void ForEachDownloadRange(VAddr query_cpu_range, u64 size, bool clear, Func&& func) {
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word_manager.ForEachModifiedRange<Type::GPU>(query_cpu_range, size, clear, func);
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word_manager.template ForEachModifiedRange<Type::GPU>(query_cpu_range, size, clear, func);
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}
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template <typename Func>
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void ForEachDownloadRangeAndClear(VAddr query_cpu_range, u64 size, Func&& func) {
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word_manager.ForEachModifiedRange<Type::GPU>(query_cpu_range, size, true, func);
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word_manager.template ForEachModifiedRange<Type::GPU>(query_cpu_range, size, true, func);
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}
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/// Call 'func' for each GPU modified range and unmark those pages as GPU modified
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template <typename Func>
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void ForEachDownloadRange(Func&& func) {
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word_manager.ForEachModifiedRange<Type::GPU>(cpu_addr, SizeBytes(), true, func);
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word_manager.template ForEachModifiedRange<Type::GPU>(cpu_addr, SizeBytes(), true, func);
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}
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/// Mark buffer as picked
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@ -1395,10 +1395,10 @@ bool BufferCache<P>::SynchronizeBufferNoModified(Buffer& buffer, VAddr cpu_addr,
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auto make_copies = [&] {
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for (auto& interval : found_sets) {
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const std::size_t sub_size = interval.upper() - interval.lower();
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const VAddr cpu_addr = interval.lower();
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const VAddr cpu_addr_ = interval.lower();
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copies.push_back(BufferCopy{
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.src_offset = total_size_bytes,
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.dst_offset = cpu_addr - buffer.CpuAddr(),
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.dst_offset = cpu_addr_ - buffer.CpuAddr(),
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.size = sub_size,
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});
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total_size_bytes += sub_size;
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@ -5,6 +5,7 @@
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#include <algorithm>
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#include <array>
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#include <functional>
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#include <memory>
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#include <mutex>
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#include <numeric>
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@ -16,10 +17,13 @@
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#define BOOST_NO_MT
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#include <boost/pool/detail/mutex.hpp>
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#undef BOOST_NO_MT
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#include <boost/icl/interval.hpp>
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#include <boost/icl/interval_base_set.hpp>
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#include <boost/icl/interval_set.hpp>
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#include <boost/icl/split_interval_map.hpp>
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#include <boost/pool/pool.hpp>
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#include <boost/pool/pool_alloc.hpp>
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#include <boost/pool/poolfwd.hpp>
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#include "common/common_types.h"
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#include "common/div_ceil.h"
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@ -42,7 +46,6 @@
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#include "video_core/texture_cache/slot_vector.h"
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#include "video_core/texture_cache/types.h"
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namespace boost {
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template <typename T>
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class fast_pool_allocator<T, default_user_allocator_new_delete, details::pool::null_mutex, 4096, 0>;
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@ -116,11 +119,10 @@ class BufferCache : public VideoCommon::ChannelSetupCaches<VideoCommon::ChannelI
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using Async_Buffer = typename P::Async_Buffer;
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using MemoryTracker = typename P::MemoryTracker;
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using IntervalCompare = ICL_COMPARE_INSTANCE(ICL_COMPARE_DEFAULT, VAddr);
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using IntervalInstance = ICL_INTERVAL_INSTANCE(ICL_INTERVAL_DEFAULT, VAddr, IntervalCompare);
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using IntervalAllocator = boost::fast_pool_allocator;
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using IntervalSet =
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boost::icl::interval_set<VAddr, IntervalCompare, IntervalInstance, IntervalAllocator>;
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using IntervalCompare = std::less<VAddr>;
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using IntervalInstance = boost::icl::interval_type_default<VAddr, std::less>;
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using IntervalAllocator = boost::fast_pool_allocator<VAddr>;
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using IntervalSet = boost::icl::interval_set<VAddr>;
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using IntervalType = typename IntervalSet::interval_type;
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template <typename Type>
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@ -141,12 +143,9 @@ class BufferCache : public VideoCommon::ChannelSetupCaches<VideoCommon::ChannelI
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static void version(Type&){};
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};
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using OverlapCombine = ICL_COMBINE_INSTANCE(counter_add_functor, int);
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using OverlapSection = ICL_SECTION_INSTANCE(boost::icl::inter_section, int);
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using OverlapCounter =
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boost::icl::split_interval_map<VAddr, int, boost::icl::partial_absorber, IntervalCompare,
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OverlapCombine, OverlapSection, IntervalInstance,
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IntervalAllocator>;
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using OverlapCombine = counter_add_functor<int>;
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using OverlapSection = boost::icl::inter_section<int>;
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using OverlapCounter = boost::icl::split_interval_map<VAddr, int>;
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struct Empty {};
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@ -262,7 +261,8 @@ public:
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/// Return true when a CPU region is modified from the CPU
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[[nodiscard]] bool IsRegionCpuModified(VAddr addr, size_t size);
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void SetDrawIndirect(const Tegra::Engines::DrawManager::IndirectParams* current_draw_indirect_) {
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void SetDrawIndirect(
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const Tegra::Engines::DrawManager::IndirectParams* current_draw_indirect_) {
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current_draw_indirect = current_draw_indirect_;
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}
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@ -349,7 +349,8 @@ private:
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}
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}
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void RemoveEachInOverlapCounter(OverlapCounter& current_range, const IntervalType search_interval, int subtract_value) {
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void RemoveEachInOverlapCounter(OverlapCounter& current_range,
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const IntervalType search_interval, int subtract_value) {
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bool any_removals = false;
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current_range.add(std::make_pair(search_interval, subtract_value));
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do {
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@ -469,7 +470,8 @@ private:
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void NotifyBufferDeletion();
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[[nodiscard]] Binding StorageBufferBinding(GPUVAddr ssbo_addr, u32 cbuf_index, bool is_written) const;
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[[nodiscard]] Binding StorageBufferBinding(GPUVAddr ssbo_addr, u32 cbuf_index,
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bool is_written) const;
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[[nodiscard]] TextureBufferBinding GetTextureBufferBinding(GPUVAddr gpu_addr, u32 size,
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PixelFormat format);
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@ -35,67 +35,71 @@ public:
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/// Returns the inclusive CPU modified range in a begin end pair
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[[nodiscard]] std::pair<u64, u64> ModifiedCpuRegion(VAddr query_cpu_addr,
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u64 query_size) noexcept {
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return IteratePairs<true>(query_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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return manager->ModifiedRegion<Type::CPU>(offset, size);
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});
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return IteratePairs<true>(
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query_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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return manager->template ModifiedRegion<Type::CPU>(offset, size);
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});
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}
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/// Returns the inclusive GPU modified range in a begin end pair
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[[nodiscard]] std::pair<u64, u64> ModifiedGpuRegion(VAddr query_cpu_addr,
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u64 query_size) noexcept {
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return IteratePairs<false>(query_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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return manager->ModifiedRegion<Type::GPU>(offset, size);
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});
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return IteratePairs<false>(
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query_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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return manager->template ModifiedRegion<Type::GPU>(offset, size);
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});
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}
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/// Returns true if a region has been modified from the CPU
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[[nodiscard]] bool IsRegionCpuModified(VAddr query_cpu_addr, u64 query_size) noexcept {
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return IteratePages<true>(query_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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return manager->IsRegionModified<Type::CPU>(offset, size);
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});
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return IteratePages<true>(
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query_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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return manager->template IsRegionModified<Type::CPU>(offset, size);
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});
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}
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/// Returns true if a region has been modified from the GPU
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[[nodiscard]] bool IsRegionGpuModified(VAddr query_cpu_addr, u64 query_size) noexcept {
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return IteratePages<false>(query_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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return manager->IsRegionModified<Type::GPU>(offset, size);
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});
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return IteratePages<false>(
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query_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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return manager->template IsRegionModified<Type::GPU>(offset, size);
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});
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}
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/// Mark region as CPU modified, notifying the rasterizer about this change
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void MarkRegionAsCpuModified(VAddr dirty_cpu_addr, u64 query_size) {
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IteratePages<true>(
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dirty_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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manager->ChangeRegionState<Type::CPU, true>(manager->GetCpuAddr() + offset, size);
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});
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IteratePages<true>(dirty_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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manager->template ChangeRegionState<Type::CPU, true>(
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manager->GetCpuAddr() + offset, size);
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});
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}
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/// Unmark region as CPU modified, notifying the rasterizer about this change
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void UnmarkRegionAsCpuModified(VAddr dirty_cpu_addr, u64 query_size) {
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IteratePages<true>(
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dirty_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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manager->ChangeRegionState<Type::CPU, false>(manager->GetCpuAddr() + offset, size);
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});
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IteratePages<true>(dirty_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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manager->template ChangeRegionState<Type::CPU, false>(
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manager->GetCpuAddr() + offset, size);
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});
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}
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/// Mark region as modified from the host GPU
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void MarkRegionAsGpuModified(VAddr dirty_cpu_addr, u64 query_size) noexcept {
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IteratePages<true>(
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dirty_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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manager->ChangeRegionState<Type::GPU, true>(manager->GetCpuAddr() + offset, size);
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});
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IteratePages<true>(dirty_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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manager->template ChangeRegionState<Type::GPU, true>(
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manager->GetCpuAddr() + offset, size);
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});
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}
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/// Unmark region as modified from the host GPU
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void UnmarkRegionAsGpuModified(VAddr dirty_cpu_addr, u64 query_size) noexcept {
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IteratePages<true>(
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dirty_cpu_addr, query_size, [](Manager* manager, u64 offset, size_t size) {
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manager->ChangeRegionState<Type::GPU, false>(manager->GetCpuAddr() + offset, size);
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});
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IteratePages<true>(dirty_cpu_addr, query_size,
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[](Manager* manager, u64 offset, size_t size) {
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manager->template ChangeRegionState<Type::GPU, false>(
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manager->GetCpuAddr() + offset, size);
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});
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}
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/// Mark region as modified from the CPU
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@ -104,7 +108,7 @@ public:
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IteratePages<true>(
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dirty_cpu_addr, query_size, [this](Manager* manager, u64 offset, size_t size) {
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const VAddr cpu_address = manager->GetCpuAddr() + offset;
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manager->ChangeRegionState<Type::CachedCPU, true>(cpu_address, size);
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manager->template ChangeRegionState<Type::CachedCPU, true>(cpu_address, size);
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cached_pages.insert(static_cast<u32>(cpu_address >> HIGHER_PAGE_BITS));
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});
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}
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@ -128,7 +132,7 @@ public:
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void ForEachUploadRange(VAddr query_cpu_range, u64 query_size, Func&& func) {
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IteratePages<true>(query_cpu_range, query_size,
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[&func](Manager* manager, u64 offset, size_t size) {
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manager->ForEachModifiedRange<Type::CPU>(
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manager->template ForEachModifiedRange<Type::CPU>(
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manager->GetCpuAddr() + offset, size, true, func);
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});
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}
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@ -138,7 +142,7 @@ public:
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void ForEachDownloadRange(VAddr query_cpu_range, u64 query_size, bool clear, Func&& func) {
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IteratePages<false>(query_cpu_range, query_size,
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[&func, clear](Manager* manager, u64 offset, size_t size) {
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manager->ForEachModifiedRange<Type::GPU>(
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manager->template ForEachModifiedRange<Type::GPU>(
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manager->GetCpuAddr() + offset, size, clear, func);
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});
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}
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void ForEachDownloadRangeAndClear(VAddr query_cpu_range, u64 query_size, Func&& func) {
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IteratePages<false>(query_cpu_range, query_size,
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[&func](Manager* manager, u64 offset, size_t size) {
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manager->ForEachModifiedRange<Type::GPU>(
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manager->template ForEachModifiedRange<Type::GPU>(
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manager->GetCpuAddr() + offset, size, true, func);
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});
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}
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@ -218,7 +222,11 @@ private:
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page_offset = 0;
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remaining_size -= copy_amount;
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}
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return begin < end ? std::make_pair(begin, end) : std::make_pair(0ULL, 0ULL);
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if (begin < end) {
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return std::make_pair(begin, end);
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} else {
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return std::make_pair(0ULL, 0ULL);
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}
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}
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void CreateRegion(std::size_t page_index) {
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@ -3,7 +3,7 @@
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#pragma once
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#include "video_core/buffer_cache/buffer_cache.h"
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#include "video_core/buffer_cache/buffer_cache_base.h"
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#include "video_core/buffer_cache/memory_tracker_base.h"
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#include "video_core/engines/maxwell_3d.h"
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#include "video_core/renderer_vulkan/vk_compute_pass.h"
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