mirror of
https://github.com/Ryujinx/Ryujinx.git
synced 2024-11-08 16:48:40 +00:00
00579927e4
* Initial implementation of KProcess * Some improvements to the memory manager, implement back guest stack trace printing * Better GetInfo implementation, improve checking in some places with information from process capabilities * Allow the cpu to read/write from the correct memory locations for accesses crossing a page boundary * Change long -> ulong for address/size on memory related methods to avoid unnecessary casts * Attempt at implementing ldr:ro with new KProcess * Allow BSS with size 0 on ldr:ro * Add checking for memory block slab heap usage, return errors if full, exit gracefully * Use KMemoryBlockSize const from KMemoryManager * Allow all methods to read from non-contiguous locations * Fix for TransactParcelAuto * Address PR feedback, additionally fix some small issues related to the KIP loader and implement SVCs GetProcessId, GetProcessList, GetSystemInfo, CreatePort and ManageNamedPort * Fix wrong check for source pages count from page list on MapPhysicalMemory * Fix some issues with UnloadNro on ldr:ro
410 lines
13 KiB
C#
410 lines
13 KiB
C#
using Ryujinx.Common.Logging;
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using Ryujinx.Graphics.Gal;
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using Ryujinx.Graphics.Memory;
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using Ryujinx.HLE.HOS.Kernel;
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using Ryujinx.HLE.HOS.Services.Nv.NvGpuAS;
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using Ryujinx.HLE.HOS.Services.Nv.NvMap;
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using System;
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using System.Collections.Generic;
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using System.IO;
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using System.Text;
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using System.Threading;
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using static Ryujinx.HLE.HOS.Services.Android.Parcel;
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namespace Ryujinx.HLE.HOS.Services.Android
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{
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class NvFlinger : IDisposable
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{
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private delegate long ServiceProcessParcel(ServiceCtx Context, BinaryReader ParcelReader);
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private Dictionary<(string, int), ServiceProcessParcel> Commands;
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private KEvent BinderEvent;
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private IGalRenderer Renderer;
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private const int BufferQueueCount = 0x40;
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private const int BufferQueueMask = BufferQueueCount - 1;
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[Flags]
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private enum HalTransform
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{
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FlipX = 1 << 0,
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FlipY = 1 << 1,
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Rotate90 = 1 << 2
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}
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private enum BufferState
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{
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Free,
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Dequeued,
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Queued,
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Acquired
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}
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private struct Rect
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{
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public int Top;
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public int Left;
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public int Right;
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public int Bottom;
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}
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private struct BufferEntry
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{
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public BufferState State;
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public HalTransform Transform;
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public Rect Crop;
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public GbpBuffer Data;
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}
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private BufferEntry[] BufferQueue;
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private AutoResetEvent WaitBufferFree;
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private bool Disposed;
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public NvFlinger(IGalRenderer Renderer, KEvent BinderEvent)
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{
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Commands = new Dictionary<(string, int), ServiceProcessParcel>()
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{
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{ ("android.gui.IGraphicBufferProducer", 0x1), GbpRequestBuffer },
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{ ("android.gui.IGraphicBufferProducer", 0x3), GbpDequeueBuffer },
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{ ("android.gui.IGraphicBufferProducer", 0x4), GbpDetachBuffer },
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{ ("android.gui.IGraphicBufferProducer", 0x7), GbpQueueBuffer },
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{ ("android.gui.IGraphicBufferProducer", 0x8), GbpCancelBuffer },
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{ ("android.gui.IGraphicBufferProducer", 0x9), GbpQuery },
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{ ("android.gui.IGraphicBufferProducer", 0xa), GbpConnect },
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{ ("android.gui.IGraphicBufferProducer", 0xb), GbpDisconnect },
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{ ("android.gui.IGraphicBufferProducer", 0xe), GbpPreallocBuffer }
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};
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this.Renderer = Renderer;
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this.BinderEvent = BinderEvent;
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BufferQueue = new BufferEntry[0x40];
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WaitBufferFree = new AutoResetEvent(false);
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}
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public long ProcessParcelRequest(ServiceCtx Context, byte[] ParcelData, int Code)
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{
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using (MemoryStream MS = new MemoryStream(ParcelData))
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{
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BinaryReader Reader = new BinaryReader(MS);
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MS.Seek(4, SeekOrigin.Current);
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int StrSize = Reader.ReadInt32();
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string InterfaceName = Encoding.Unicode.GetString(Reader.ReadBytes(StrSize * 2));
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long Remainder = MS.Position & 0xf;
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if (Remainder != 0)
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{
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MS.Seek(0x10 - Remainder, SeekOrigin.Current);
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}
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MS.Seek(0x50, SeekOrigin.Begin);
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if (Commands.TryGetValue((InterfaceName, Code), out ServiceProcessParcel ProcReq))
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{
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Logger.PrintDebug(LogClass.ServiceVi, $"{InterfaceName} {ProcReq.Method.Name}");
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return ProcReq(Context, Reader);
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}
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else
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{
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throw new NotImplementedException($"{InterfaceName} {Code}");
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}
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}
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}
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private long GbpRequestBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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int Slot = ParcelReader.ReadInt32();
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using (MemoryStream MS = new MemoryStream())
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{
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BinaryWriter Writer = new BinaryWriter(MS);
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BufferEntry Entry = BufferQueue[Slot];
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int BufferCount = 1; //?
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long BufferSize = Entry.Data.Size;
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Writer.Write(BufferCount);
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Writer.Write(BufferSize);
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Entry.Data.Write(Writer);
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Writer.Write(0);
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return MakeReplyParcel(Context, MS.ToArray());
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}
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}
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private long GbpDequeueBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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//TODO: Errors.
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int Format = ParcelReader.ReadInt32();
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int Width = ParcelReader.ReadInt32();
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int Height = ParcelReader.ReadInt32();
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int GetTimestamps = ParcelReader.ReadInt32();
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int Usage = ParcelReader.ReadInt32();
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int Slot = GetFreeSlotBlocking(Width, Height);
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return MakeReplyParcel(Context, Slot, 1, 0x24, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
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}
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private long GbpQueueBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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Context.Device.Statistics.RecordGameFrameTime();
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//TODO: Errors.
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int Slot = ParcelReader.ReadInt32();
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int Unknown4 = ParcelReader.ReadInt32();
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int Unknown8 = ParcelReader.ReadInt32();
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int Unknownc = ParcelReader.ReadInt32();
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int Timestamp = ParcelReader.ReadInt32();
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int IsAutoTimestamp = ParcelReader.ReadInt32();
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int CropTop = ParcelReader.ReadInt32();
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int CropLeft = ParcelReader.ReadInt32();
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int CropRight = ParcelReader.ReadInt32();
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int CropBottom = ParcelReader.ReadInt32();
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int ScalingMode = ParcelReader.ReadInt32();
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int Transform = ParcelReader.ReadInt32();
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int StickyTransform = ParcelReader.ReadInt32();
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int Unknown34 = ParcelReader.ReadInt32();
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int Unknown38 = ParcelReader.ReadInt32();
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int IsFenceValid = ParcelReader.ReadInt32();
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int Fence0Id = ParcelReader.ReadInt32();
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int Fence0Value = ParcelReader.ReadInt32();
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int Fence1Id = ParcelReader.ReadInt32();
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int Fence1Value = ParcelReader.ReadInt32();
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BufferQueue[Slot].Transform = (HalTransform)Transform;
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BufferQueue[Slot].Crop.Top = CropTop;
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BufferQueue[Slot].Crop.Left = CropLeft;
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BufferQueue[Slot].Crop.Right = CropRight;
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BufferQueue[Slot].Crop.Bottom = CropBottom;
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BufferQueue[Slot].State = BufferState.Queued;
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SendFrameBuffer(Context, Slot);
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if (Context.Device.EnableDeviceVsync)
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{
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Context.Device.VsyncEvent.WaitOne();
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}
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return MakeReplyParcel(Context, 1280, 720, 0, 0, 0);
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}
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private long GbpDetachBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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return MakeReplyParcel(Context, 0);
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}
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private long GbpCancelBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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//TODO: Errors.
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int Slot = ParcelReader.ReadInt32();
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BufferQueue[Slot].State = BufferState.Free;
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WaitBufferFree.Set();
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return MakeReplyParcel(Context, 0);
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}
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private long GbpQuery(ServiceCtx Context, BinaryReader ParcelReader)
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{
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return MakeReplyParcel(Context, 0, 0);
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}
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private long GbpConnect(ServiceCtx Context, BinaryReader ParcelReader)
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{
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return MakeReplyParcel(Context, 1280, 720, 0, 0, 0);
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}
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private long GbpDisconnect(ServiceCtx Context, BinaryReader ParcelReader)
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{
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return MakeReplyParcel(Context, 0);
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}
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private long GbpPreallocBuffer(ServiceCtx Context, BinaryReader ParcelReader)
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{
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int Slot = ParcelReader.ReadInt32();
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int BufferCount = ParcelReader.ReadInt32();
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if (BufferCount > 0)
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{
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long BufferSize = ParcelReader.ReadInt64();
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BufferQueue[Slot].State = BufferState.Free;
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BufferQueue[Slot].Data = new GbpBuffer(ParcelReader);
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}
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return MakeReplyParcel(Context, 0);
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}
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private long MakeReplyParcel(ServiceCtx Context, params int[] Ints)
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{
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using (MemoryStream MS = new MemoryStream())
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{
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BinaryWriter Writer = new BinaryWriter(MS);
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foreach (int Int in Ints)
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{
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Writer.Write(Int);
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}
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return MakeReplyParcel(Context, MS.ToArray());
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}
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}
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private long MakeReplyParcel(ServiceCtx Context, byte[] Data)
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{
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(long ReplyPos, long ReplySize) = Context.Request.GetBufferType0x22();
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byte[] Reply = MakeParcel(Data, new byte[0]);
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Context.Memory.WriteBytes(ReplyPos, Reply);
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return 0;
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}
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private void SendFrameBuffer(ServiceCtx Context, int Slot)
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{
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int FbWidth = BufferQueue[Slot].Data.Width;
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int FbHeight = BufferQueue[Slot].Data.Height;
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int NvMapHandle = BitConverter.ToInt32(BufferQueue[Slot].Data.RawData, 0x4c);
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int BufferOffset = BitConverter.ToInt32(BufferQueue[Slot].Data.RawData, 0x50);
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NvMapHandle Map = NvMapIoctl.GetNvMap(Context, NvMapHandle);;
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long FbAddr = Map.Address + BufferOffset;
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BufferQueue[Slot].State = BufferState.Acquired;
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Rect Crop = BufferQueue[Slot].Crop;
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bool FlipX = BufferQueue[Slot].Transform.HasFlag(HalTransform.FlipX);
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bool FlipY = BufferQueue[Slot].Transform.HasFlag(HalTransform.FlipY);
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//Note: Rotation is being ignored.
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int Top = Crop.Top;
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int Left = Crop.Left;
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int Right = Crop.Right;
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int Bottom = Crop.Bottom;
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NvGpuVmm Vmm = NvGpuASIoctl.GetASCtx(Context).Vmm;
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Renderer.QueueAction(() =>
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{
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if (!Renderer.Texture.TryGetImage(FbAddr, out GalImage Image))
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{
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Image = new GalImage(
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FbWidth,
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FbHeight, 1, 16,
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GalMemoryLayout.BlockLinear,
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GalImageFormat.RGBA8 | GalImageFormat.Unorm);
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}
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Context.Device.Gpu.ResourceManager.ClearPbCache();
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Context.Device.Gpu.ResourceManager.SendTexture(Vmm, FbAddr, Image);
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Renderer.RenderTarget.SetTransform(FlipX, FlipY, Top, Left, Right, Bottom);
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Renderer.RenderTarget.Present(FbAddr);
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ReleaseBuffer(Slot);
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});
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}
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private void ReleaseBuffer(int Slot)
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{
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BufferQueue[Slot].State = BufferState.Free;
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BinderEvent.ReadableEvent.Signal();
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WaitBufferFree.Set();
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}
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private int GetFreeSlotBlocking(int Width, int Height)
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{
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int Slot;
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do
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{
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if ((Slot = GetFreeSlot(Width, Height)) != -1)
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{
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break;
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}
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if (Disposed)
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{
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break;
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}
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WaitBufferFree.WaitOne();
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}
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while (!Disposed);
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return Slot;
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}
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private int GetFreeSlot(int Width, int Height)
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{
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lock (BufferQueue)
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{
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for (int Slot = 0; Slot < BufferQueue.Length; Slot++)
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{
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if (BufferQueue[Slot].State != BufferState.Free)
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{
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continue;
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}
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GbpBuffer Data = BufferQueue[Slot].Data;
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if (Data.Width == Width &&
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Data.Height == Height)
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{
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BufferQueue[Slot].State = BufferState.Dequeued;
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return Slot;
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}
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}
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}
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return -1;
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}
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public void Dispose()
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{
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Dispose(true);
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}
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protected virtual void Dispose(bool Disposing)
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{
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if (Disposing && !Disposed)
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{
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Disposed = true;
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WaitBufferFree.Set();
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WaitBufferFree.Dispose();
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}
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}
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}
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} |