mirror of
https://git.naxdy.org/Mirror/Ryujinx.git
synced 2024-11-15 09:35:27 +00:00
316 lines
8.2 KiB
C#
316 lines
8.2 KiB
C#
namespace ChocolArm64.Memory
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{
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public class AMemoryMgr
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{
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public const long AddrSize = RamSize;
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public const long RamSize = 4L * 1024 * 1024 * 1024;
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private const int PTLvl0Bits = 11;
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private const int PTLvl1Bits = 13;
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private const int PTPageBits = 12;
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private const int PTLvl0Size = 1 << PTLvl0Bits;
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private const int PTLvl1Size = 1 << PTLvl1Bits;
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public const int PageSize = 1 << PTPageBits;
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private const int PTLvl0Mask = PTLvl0Size - 1;
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private const int PTLvl1Mask = PTLvl1Size - 1;
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public const int PageMask = PageSize - 1;
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private const int PTLvl0Bit = PTPageBits + PTLvl0Bits;
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private const int PTLvl1Bit = PTPageBits;
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private AMemoryAlloc Allocator;
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private enum PTMap
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{
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Unmapped,
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Mapped
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}
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private struct PTEntry
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{
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public PTMap Map;
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public AMemoryPerm Perm;
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public int Type;
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public int Attr;
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public PTEntry(PTMap Map, AMemoryPerm Perm, int Type, int Attr)
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{
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this.Map = Map;
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this.Perm = Perm;
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this.Type = Type;
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this.Attr = Attr;
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}
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}
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private PTEntry[][] PageTable;
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private bool IsHeapInitialized;
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public long HeapAddr { get; private set; }
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public long HeapSize { get; private set; }
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public AMemoryMgr(AMemoryAlloc Allocator)
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{
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this.Allocator = Allocator;
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PageTable = new PTEntry[PTLvl0Size][];
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}
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public long GetTotalMemorySize()
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{
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return Allocator.GetFreeMem() + GetUsedMemorySize();
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}
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public long GetUsedMemorySize()
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{
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long Size = 0;
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for (int L0 = 0; L0 < PageTable.Length; L0++)
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{
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if (PageTable[L0] == null)
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{
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continue;
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}
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for (int L1 = 0; L1 < PageTable[L0].Length; L1++)
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{
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Size += PageTable[L0][L1].Map != PTMap.Unmapped ? PageSize : 0;
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}
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}
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return Size;
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}
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public bool SetHeapAddr(long Position)
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{
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if (!IsHeapInitialized)
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{
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HeapAddr = Position;
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IsHeapInitialized = true;
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return true;
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}
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return false;
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}
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public void SetHeapSize(long Size, int Type)
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{
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//TODO: Return error when theres no enough space to allocate heap.
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Size = AMemoryHelper.PageRoundUp(Size);
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long Position = HeapAddr;
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if ((ulong)Size < (ulong)HeapSize)
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{
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//Try to free now free area if size is smaller than old size.
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Position += Size;
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while ((ulong)Size < (ulong)HeapSize)
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{
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Allocator.Free(Position);
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Position += PageSize;
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}
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}
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else
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{
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//Allocate extra needed size.
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Position += HeapSize;
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Size -= HeapSize;
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MapPhys(Position, Size, Type, AMemoryPerm.RW);
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}
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HeapSize = Size;
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}
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public void MapPhys(long Position, long Size, int Type, AMemoryPerm Perm)
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{
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while (Size > 0)
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{
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if (!IsMapped(Position))
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{
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SetPTEntry(Position, new PTEntry(PTMap.Mapped, Perm, Type, 0));
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}
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long CPgSize = PageSize - (Position & PageMask);
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Position += CPgSize;
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Size -= CPgSize;
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}
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}
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public void MapMirror(long Src, long Dst, long Size, int Type)
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{
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Src = AMemoryHelper.PageRoundDown(Src);
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Dst = AMemoryHelper.PageRoundDown(Dst);
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Size = AMemoryHelper.PageRoundUp(Size);
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long PagesCount = Size / PageSize;
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while (PagesCount-- > 0)
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{
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PTEntry SrcEntry = GetPTEntry(Src);
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PTEntry DstEntry = GetPTEntry(Dst);
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DstEntry.Map = PTMap.Mapped;
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DstEntry.Type = Type;
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DstEntry.Perm = SrcEntry.Perm;
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SrcEntry.Perm = AMemoryPerm.None;
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SrcEntry.Attr |= 1;
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SetPTEntry(Src, SrcEntry);
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SetPTEntry(Dst, DstEntry);
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Src += PageSize;
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Dst += PageSize;
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}
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}
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public void Reprotect(long Position, long Size, AMemoryPerm Perm)
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{
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Position = AMemoryHelper.PageRoundDown(Position);
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Size = AMemoryHelper.PageRoundUp(Size);
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long PagesCount = Size / PageSize;
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while (PagesCount-- > 0)
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{
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PTEntry Entry = GetPTEntry(Position);
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Entry.Perm = Perm;
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SetPTEntry(Position, Entry);
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Position += PageSize;
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}
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}
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public AMemoryMapInfo GetMapInfo(long Position)
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{
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Position = AMemoryHelper.PageRoundDown(Position);
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PTEntry BaseEntry = GetPTEntry(Position);
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bool IsSameSegment(long Pos)
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{
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PTEntry Entry = GetPTEntry(Pos);
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return Entry.Map == BaseEntry.Map &&
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Entry.Perm == BaseEntry.Perm &&
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Entry.Type == BaseEntry.Type &&
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Entry.Attr == BaseEntry.Attr;
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}
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long Start = Position;
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long End = Position + PageSize;
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while (Start > 0 && IsSameSegment(Start - PageSize))
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{
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Start -= PageSize;
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}
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while (End < AddrSize && IsSameSegment(End))
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{
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End += PageSize;
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}
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long Size = End - Start;
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return new AMemoryMapInfo(
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Start,
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Size,
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BaseEntry.Type,
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BaseEntry.Attr,
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BaseEntry.Perm);
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}
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public void ClearAttrBit(long Position, long Size, int Bit)
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{
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while (Size > 0)
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{
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PTEntry Entry = GetPTEntry(Position);
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Entry.Attr &= ~(1 << Bit);
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SetPTEntry(Position, Entry);
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Position += PageSize;
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Size -= PageSize;
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}
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}
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public void SetAttrBit(long Position, long Size, int Bit)
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{
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while (Size > 0)
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{
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PTEntry Entry = GetPTEntry(Position);
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Entry.Attr |= (1 << Bit);
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SetPTEntry(Position, Entry);
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Position += PageSize;
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Size -= PageSize;
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}
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}
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public bool HasPermission(long Position, AMemoryPerm Perm)
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{
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return GetPTEntry(Position).Perm.HasFlag(Perm);
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}
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public bool IsMapped(long Position)
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{
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if (Position >> PTLvl0Bits + PTLvl1Bits + PTPageBits != 0)
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{
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return false;
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}
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long L0 = (Position >> PTLvl0Bit) & PTLvl0Mask;
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long L1 = (Position >> PTLvl1Bit) & PTLvl1Mask;
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if (PageTable[L0] == null)
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{
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return false;
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}
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return PageTable[L0][L1].Map != PTMap.Unmapped;
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}
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private PTEntry GetPTEntry(long Position)
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{
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long L0 = (Position >> PTLvl0Bit) & PTLvl0Mask;
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long L1 = (Position >> PTLvl1Bit) & PTLvl1Mask;
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if (PageTable[L0] == null)
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{
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return default(PTEntry);
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}
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return PageTable[L0][L1];
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}
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private void SetPTEntry(long Position, PTEntry Entry)
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{
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long L0 = (Position >> PTLvl0Bit) & PTLvl0Mask;
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long L1 = (Position >> PTLvl1Bit) & PTLvl1Mask;
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if (PageTable[L0] == null)
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{
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PageTable[L0] = new PTEntry[PTLvl1Size];
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}
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PageTable[L0][L1] = Entry;
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}
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}
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} |