* - WritableRegion: enable wrapping IMemoryOwner<byte> - IVirtualMemoryManager impls of GetWritableRegion() use pooled memory when region is non-contiguous. - IVirtualMemoryManager: add GetReadOnlySequence() and impls - ByteMemoryPool: add new method RentCopy() - ByteMemoryPool: make class static, remove ctor and singleton field from earlier impl * - BytesReadOnlySequenceSegment: move from Ryujinx.Common.Memory to Ryujinx.Memory - BytesReadOnlySequenceSegment: add IsContiguousWith() and Replace() methods - VirtualMemoryManagerBase: - remove generic type parameters, instead use ulong for virtual addresses and nuint for host/physical addresses - implement IWritableBlock - add virtual GetReadOnlySequence() with coalescing of contiguous segments - add virtual GetSpan() - add virtual GetWritableRegion() - add abstract IsMapped() - add virtual MapForeign(ulong, nuint, ulong) - add virtual Read<T>() - add virtual Read(ulong, Span<byte>) - add virtual ReadTracked<T>() - add virtual SignalMemoryTracking() - add virtual Write() - add virtual Write<T>() - add virtual WriteUntracked() - add virtual WriteWithRedundancyCheck() - VirtualMemoryManagerRefCountedBase: remove generic type parameters - AddressSpaceManager: remove redundant methods, add required overrides - HvMemoryManager: remove redundant methods, add required overrides, add overrides for _invalidAccessHandler handling - MemoryManager: remove redundant methods, add required overrides, add overrides for _invalidAccessHandler handling - MemoryManagerHostMapped: remove redundant methods, add required overrides, add overrides for _invalidAccessHandler handling - NativeMemoryManager: add get properties for Pointer and Length - throughout: removed invalid <inheritdoc/> comments * - WritableRegion: enable wrapping IMemoryOwner<byte> - IVirtualMemoryManager impls of GetWritableRegion() use pooled memory when region is non-contiguous. - IVirtualMemoryManager: add GetReadOnlySequence() and impls - ByteMemoryPool: add new method RentCopy() - ByteMemoryPool: make class static, remove ctor and singleton field from earlier impl * add PagedMemoryRange enumerator types, use them in IVirtualMemoryManager implementations to consolidate page-handling logic and add a new capability - the coalescing of pages for consolidating memory copies and segmentation. * new: more tests for PagedMemoryRangeCoalescingEnumerator showing coalescing of contiguous segments * make some struct properties readonly * put braces around `foreach` bodies * encourage inlining of some PagedMemoryRange*Enumerator members * DynamicRingBuffer: - use ByteMemoryPool - make some methods return without locking when size/count argument = 0 - make generic Read<T>()/Write<T>() non-generic because its only usage is as T = byte - change Read(byte[]...) to Read(Span<byte>...) - change Write(byte[]...) to Write(Span<byte>...) * change IAudioRenderer.RequestUpdate() to take a ReadOnlySequence<byte>, enabling zero-copy audio rendering * HipcGenerator: support ReadOnlySequence<byte> as IPC method parameter * change IAudioRenderer/AudioRenderer RequestUpdate* methods to take input as ReadOnlySequence<byte> * MemoryManagerHostTracked: use rented memory when contiguous in `GetWritableRegion()` * rebase cleanup * dotnet format fixes * format and comment fixes * format long parameter list - take 2 * - add support to HipcGenerator for buffers of type `Memory<byte>` - change `AudioRenderer` `RequestUpdate()` and `RequestUpdateAuto()` to use Memory<byte> for output buffers, removing another memory block allocation/copy * SplitterContext `UpdateState()` and `UpdateData()` smooth out advance/rewind logic, only rewind if magic is invalid * DynamicRingBuffer.Write(): change Span<byte> to ReadOnlySpan<byte>
570 lines
18 KiB
C#
570 lines
18 KiB
C#
using ARMeilleure.Memory;
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using Ryujinx.Common.Memory;
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using Ryujinx.Cpu.Jit.HostTracked;
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using Ryujinx.Cpu.Signal;
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using Ryujinx.Memory;
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using Ryujinx.Memory.Range;
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using Ryujinx.Memory.Tracking;
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using System;
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using System.Buffers;
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using System.Collections.Generic;
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using System.Linq;
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using System.Runtime.CompilerServices;
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namespace Ryujinx.Cpu.Jit
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{
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/// <summary>
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/// Represents a CPU memory manager which maps guest virtual memory directly onto a host virtual region.
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/// </summary>
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public sealed class MemoryManagerHostTracked : VirtualMemoryManagerRefCountedBase, IMemoryManager, IVirtualMemoryManagerTracked
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{
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private readonly InvalidAccessHandler _invalidAccessHandler;
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private readonly bool _unsafeMode;
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private readonly MemoryBlock _backingMemory;
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public int AddressSpaceBits { get; }
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public MemoryTracking Tracking { get; }
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private readonly NativePageTable _nativePageTable;
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private readonly AddressSpacePartitioned _addressSpace;
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private readonly ManagedPageFlags _pages;
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protected override ulong AddressSpaceSize { get; }
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/// <inheritdoc/>
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public bool UsesPrivateAllocations => true;
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public IntPtr PageTablePointer => _nativePageTable.PageTablePointer;
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public MemoryManagerType Type => _unsafeMode ? MemoryManagerType.HostTrackedUnsafe : MemoryManagerType.HostTracked;
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public event Action<ulong, ulong> UnmapEvent;
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/// <summary>
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/// Creates a new instance of the host tracked memory manager.
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/// </summary>
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/// <param name="backingMemory">Physical backing memory where virtual memory will be mapped to</param>
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/// <param name="addressSpaceSize">Size of the address space</param>
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/// <param name="unsafeMode">True if unmanaged access should not be masked (unsafe), false otherwise.</param>
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/// <param name="invalidAccessHandler">Optional function to handle invalid memory accesses</param>
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public MemoryManagerHostTracked(MemoryBlock backingMemory, ulong addressSpaceSize, bool unsafeMode, InvalidAccessHandler invalidAccessHandler)
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{
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bool useProtectionMirrors = MemoryBlock.GetPageSize() > PageSize;
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Tracking = new MemoryTracking(this, PageSize, invalidAccessHandler, useProtectionMirrors);
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_backingMemory = backingMemory;
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_invalidAccessHandler = invalidAccessHandler;
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_unsafeMode = unsafeMode;
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AddressSpaceSize = addressSpaceSize;
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ulong asSize = PageSize;
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int asBits = PageBits;
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while (asSize < AddressSpaceSize)
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{
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asSize <<= 1;
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asBits++;
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}
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AddressSpaceBits = asBits;
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if (useProtectionMirrors && !NativeSignalHandler.SupportsFaultAddressPatching())
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{
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// Currently we require being able to change the fault address to something else
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// in order to "emulate" 4KB granularity protection on systems with larger page size.
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throw new PlatformNotSupportedException();
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}
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_pages = new ManagedPageFlags(asBits);
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_nativePageTable = new(asSize);
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_addressSpace = new(Tracking, backingMemory, _nativePageTable, useProtectionMirrors);
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}
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/// <inheritdoc/>
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public void Map(ulong va, ulong pa, ulong size, MemoryMapFlags flags)
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{
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AssertValidAddressAndSize(va, size);
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if (flags.HasFlag(MemoryMapFlags.Private))
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{
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_addressSpace.Map(va, pa, size);
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}
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_pages.AddMapping(va, size);
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_nativePageTable.Map(va, pa, size, _addressSpace, _backingMemory, flags.HasFlag(MemoryMapFlags.Private));
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Tracking.Map(va, size);
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}
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/// <inheritdoc/>
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public void Unmap(ulong va, ulong size)
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{
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AssertValidAddressAndSize(va, size);
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_addressSpace.Unmap(va, size);
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UnmapEvent?.Invoke(va, size);
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Tracking.Unmap(va, size);
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_pages.RemoveMapping(va, size);
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_nativePageTable.Unmap(va, size);
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}
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public override T ReadTracked<T>(ulong va)
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{
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try
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{
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return base.ReadTracked<T>(va);
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}
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catch (InvalidMemoryRegionException)
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{
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if (_invalidAccessHandler == null || !_invalidAccessHandler(va))
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{
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throw;
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}
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return default;
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}
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}
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public override void Read(ulong va, Span<byte> data)
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{
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if (data.Length == 0)
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{
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return;
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}
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try
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{
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AssertValidAddressAndSize(va, (ulong)data.Length);
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ulong endVa = va + (ulong)data.Length;
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int offset = 0;
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while (va < endVa)
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{
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(MemoryBlock memory, ulong rangeOffset, ulong copySize) = GetMemoryOffsetAndSize(va, (ulong)(data.Length - offset));
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memory.GetSpan(rangeOffset, (int)copySize).CopyTo(data.Slice(offset, (int)copySize));
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va += copySize;
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offset += (int)copySize;
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}
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}
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catch (InvalidMemoryRegionException)
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{
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if (_invalidAccessHandler == null || !_invalidAccessHandler(va))
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{
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throw;
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}
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}
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}
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public override bool WriteWithRedundancyCheck(ulong va, ReadOnlySpan<byte> data)
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{
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if (data.Length == 0)
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{
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return false;
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}
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SignalMemoryTracking(va, (ulong)data.Length, false);
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if (TryGetVirtualContiguous(va, data.Length, out MemoryBlock memoryBlock, out ulong offset))
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{
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var target = memoryBlock.GetSpan(offset, data.Length);
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bool changed = !data.SequenceEqual(target);
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if (changed)
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{
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data.CopyTo(target);
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}
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return changed;
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}
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else
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{
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WriteImpl(va, data);
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return true;
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}
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}
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public override ReadOnlySpan<byte> GetSpan(ulong va, int size, bool tracked = false)
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{
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if (size == 0)
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{
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return ReadOnlySpan<byte>.Empty;
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}
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if (tracked)
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{
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SignalMemoryTracking(va, (ulong)size, false);
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}
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if (TryGetVirtualContiguous(va, size, out MemoryBlock memoryBlock, out ulong offset))
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{
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return memoryBlock.GetSpan(offset, size);
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}
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else
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{
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Span<byte> data = new byte[size];
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Read(va, data);
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return data;
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}
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}
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public override WritableRegion GetWritableRegion(ulong va, int size, bool tracked = false)
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{
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if (size == 0)
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{
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return new WritableRegion(null, va, Memory<byte>.Empty);
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}
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if (tracked)
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{
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SignalMemoryTracking(va, (ulong)size, true);
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}
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if (TryGetVirtualContiguous(va, size, out MemoryBlock memoryBlock, out ulong offset))
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{
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return new WritableRegion(null, va, memoryBlock.GetMemory(offset, size));
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}
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else
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{
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IMemoryOwner<byte> memoryOwner = ByteMemoryPool.Rent(size);
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Read(va, memoryOwner.Memory.Span);
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return new WritableRegion(this, va, memoryOwner);
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}
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}
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public ref T GetRef<T>(ulong va) where T : unmanaged
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{
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if (!TryGetVirtualContiguous(va, Unsafe.SizeOf<T>(), out MemoryBlock memory, out ulong offset))
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{
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ThrowMemoryNotContiguous();
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}
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SignalMemoryTracking(va, (ulong)Unsafe.SizeOf<T>(), true);
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return ref memory.GetRef<T>(offset);
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public override bool IsMapped(ulong va)
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{
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return ValidateAddress(va) && _pages.IsMapped(va);
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}
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public bool IsRangeMapped(ulong va, ulong size)
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{
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AssertValidAddressAndSize(va, size);
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return _pages.IsRangeMapped(va, size);
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}
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private bool TryGetVirtualContiguous(ulong va, int size, out MemoryBlock memory, out ulong offset)
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{
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if (_addressSpace.HasAnyPrivateAllocation(va, (ulong)size, out PrivateRange range))
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{
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// If we have a private allocation overlapping the range,
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// then the access is only considered contiguous if it covers the entire range.
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if (range.Memory != null)
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{
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memory = range.Memory;
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offset = range.Offset;
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return true;
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}
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memory = null;
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offset = 0;
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return false;
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}
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memory = _backingMemory;
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offset = GetPhysicalAddressInternal(va);
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return IsPhysicalContiguous(va, size);
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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private bool IsPhysicalContiguous(ulong va, int size)
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{
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if (!ValidateAddress(va) || !ValidateAddressAndSize(va, (ulong)size))
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{
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return false;
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}
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int pages = GetPagesCount(va, (uint)size, out va);
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for (int page = 0; page < pages - 1; page++)
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{
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if (!ValidateAddress(va + PageSize))
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{
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return false;
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}
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if (GetPhysicalAddressInternal(va) + PageSize != GetPhysicalAddressInternal(va + PageSize))
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{
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return false;
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}
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va += PageSize;
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}
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return true;
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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private ulong GetContiguousSize(ulong va, ulong size)
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{
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ulong contiguousSize = PageSize - (va & PageMask);
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if (!ValidateAddress(va) || !ValidateAddressAndSize(va, size))
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{
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return contiguousSize;
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}
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int pages = GetPagesCount(va, size, out va);
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for (int page = 0; page < pages - 1; page++)
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{
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if (!ValidateAddress(va + PageSize))
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{
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return contiguousSize;
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}
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if (GetPhysicalAddressInternal(va) + PageSize != GetPhysicalAddressInternal(va + PageSize))
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{
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return contiguousSize;
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}
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va += PageSize;
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contiguousSize += PageSize;
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}
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return Math.Min(contiguousSize, size);
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}
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private (MemoryBlock, ulong, ulong) GetMemoryOffsetAndSize(ulong va, ulong size)
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{
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PrivateRange privateRange = _addressSpace.GetFirstPrivateAllocation(va, size, out ulong nextVa);
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if (privateRange.Memory != null)
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{
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return (privateRange.Memory, privateRange.Offset, privateRange.Size);
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}
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ulong physSize = GetContiguousSize(va, Math.Min(size, nextVa - va));
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return (_backingMemory, GetPhysicalAddressChecked(va), physSize);
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}
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public IEnumerable<HostMemoryRange> GetHostRegions(ulong va, ulong size)
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{
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if (!ValidateAddressAndSize(va, size))
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{
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return null;
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}
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var regions = new List<HostMemoryRange>();
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ulong endVa = va + size;
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try
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{
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while (va < endVa)
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{
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(MemoryBlock memory, ulong rangeOffset, ulong rangeSize) = GetMemoryOffsetAndSize(va, endVa - va);
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regions.Add(new((UIntPtr)memory.GetPointer(rangeOffset, rangeSize), rangeSize));
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va += rangeSize;
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}
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}
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catch (InvalidMemoryRegionException)
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{
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return null;
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}
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return regions;
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}
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public IEnumerable<MemoryRange> GetPhysicalRegions(ulong va, ulong size)
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{
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if (size == 0)
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{
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return Enumerable.Empty<MemoryRange>();
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}
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return GetPhysicalRegionsImpl(va, size);
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}
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private List<MemoryRange> GetPhysicalRegionsImpl(ulong va, ulong size)
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{
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if (!ValidateAddress(va) || !ValidateAddressAndSize(va, size))
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{
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return null;
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}
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int pages = GetPagesCount(va, (uint)size, out va);
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var regions = new List<MemoryRange>();
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ulong regionStart = GetPhysicalAddressInternal(va);
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ulong regionSize = PageSize;
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for (int page = 0; page < pages - 1; page++)
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{
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if (!ValidateAddress(va + PageSize))
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{
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return null;
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}
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ulong newPa = GetPhysicalAddressInternal(va + PageSize);
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if (GetPhysicalAddressInternal(va) + PageSize != newPa)
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{
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regions.Add(new MemoryRange(regionStart, regionSize));
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regionStart = newPa;
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regionSize = 0;
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}
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va += PageSize;
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regionSize += PageSize;
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}
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regions.Add(new MemoryRange(regionStart, regionSize));
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return regions;
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}
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/// <inheritdoc/>
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/// <remarks>
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/// This function also validates that the given range is both valid and mapped, and will throw if it is not.
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/// </remarks>
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public override void SignalMemoryTracking(ulong va, ulong size, bool write, bool precise = false, int? exemptId = null)
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{
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AssertValidAddressAndSize(va, size);
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if (precise)
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{
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Tracking.VirtualMemoryEvent(va, size, write, precise: true, exemptId);
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return;
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}
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// Software table, used for managed memory tracking.
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_pages.SignalMemoryTracking(Tracking, va, size, write, exemptId);
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}
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public RegionHandle BeginTracking(ulong address, ulong size, int id, RegionFlags flags = RegionFlags.None)
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{
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return Tracking.BeginTracking(address, size, id, flags);
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}
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public MultiRegionHandle BeginGranularTracking(ulong address, ulong size, IEnumerable<IRegionHandle> handles, ulong granularity, int id, RegionFlags flags = RegionFlags.None)
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{
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return Tracking.BeginGranularTracking(address, size, handles, granularity, id, flags);
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}
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public SmartMultiRegionHandle BeginSmartGranularTracking(ulong address, ulong size, ulong granularity, int id)
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{
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return Tracking.BeginSmartGranularTracking(address, size, granularity, id);
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}
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private ulong GetPhysicalAddressChecked(ulong va)
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{
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if (!IsMapped(va))
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{
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ThrowInvalidMemoryRegionException($"Not mapped: va=0x{va:X16}");
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}
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return GetPhysicalAddressInternal(va);
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}
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private ulong GetPhysicalAddressInternal(ulong va)
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{
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return _nativePageTable.GetPhysicalAddress(va);
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}
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/// <inheritdoc/>
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public void Reprotect(ulong va, ulong size, MemoryPermission protection)
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{
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// TODO
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}
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/// <inheritdoc/>
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public void TrackingReprotect(ulong va, ulong size, MemoryPermission protection, bool guest)
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{
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if (guest)
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{
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_addressSpace.Reprotect(va, size, protection);
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}
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else
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{
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_pages.TrackingReprotect(va, size, protection);
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}
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}
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/// <summary>
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/// Disposes of resources used by the memory manager.
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/// </summary>
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protected override void Destroy()
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{
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_addressSpace.Dispose();
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_nativePageTable.Dispose();
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}
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protected override Memory<byte> GetPhysicalAddressMemory(nuint pa, int size)
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=> _backingMemory.GetMemory(pa, size);
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protected override Span<byte> GetPhysicalAddressSpan(nuint pa, int size)
|
|
=> _backingMemory.GetSpan(pa, size);
|
|
|
|
protected override void WriteImpl(ulong va, ReadOnlySpan<byte> data)
|
|
{
|
|
try
|
|
{
|
|
AssertValidAddressAndSize(va, (ulong)data.Length);
|
|
|
|
ulong endVa = va + (ulong)data.Length;
|
|
int offset = 0;
|
|
|
|
while (va < endVa)
|
|
{
|
|
(MemoryBlock memory, ulong rangeOffset, ulong copySize) = GetMemoryOffsetAndSize(va, (ulong)(data.Length - offset));
|
|
|
|
data.Slice(offset, (int)copySize).CopyTo(memory.GetSpan(rangeOffset, (int)copySize));
|
|
|
|
va += copySize;
|
|
offset += (int)copySize;
|
|
}
|
|
}
|
|
catch (InvalidMemoryRegionException)
|
|
{
|
|
if (_invalidAccessHandler == null || !_invalidAccessHandler(va))
|
|
{
|
|
throw;
|
|
}
|
|
}
|
|
}
|
|
|
|
protected override nuint TranslateVirtualAddressChecked(ulong va)
|
|
=> (nuint)GetPhysicalAddressChecked(va);
|
|
|
|
protected override nuint TranslateVirtualAddressUnchecked(ulong va)
|
|
=> (nuint)GetPhysicalAddressInternal(va);
|
|
}
|
|
}
|