mirror of
https://github.com/Ryujinx/Ryujinx.git
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e7559f128f
* Call OpenGL functions directly, remove the pfifo thread, some refactoring * Fix PerformanceStatistics calculating the wrong host fps, remove wait event on PFIFO as this wasn't exactly was causing the freezes (may replace with an exception later) * Organized the Gpu folder a bit more, renamed a few things, address PR feedback * Make PerformanceStatistics thread safe * Remove unused constant * Use unlimited update rate for better pref
302 lines
No EOL
9.4 KiB
C#
302 lines
No EOL
9.4 KiB
C#
using ChocolArm64.Memory;
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using Ryujinx.HLE.Gpu.Memory;
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using Ryujinx.HLE.Logging;
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using Ryujinx.HLE.OsHle.Utilities;
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using System.Collections.Concurrent;
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namespace Ryujinx.HLE.OsHle.Services.Nv.NvMap
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{
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class NvMapIoctl
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{
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private const int FlagNotFreedYet = 1;
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private static ConcurrentDictionary<Process, IdDictionary> Maps;
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static NvMapIoctl()
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{
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Maps = new ConcurrentDictionary<Process, IdDictionary>();
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}
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public static int ProcessIoctl(ServiceCtx Context, int Cmd)
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{
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switch (Cmd & 0xffff)
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{
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case 0x0101: return Create(Context);
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case 0x0103: return FromId(Context);
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case 0x0104: return Alloc (Context);
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case 0x0105: return Free (Context);
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case 0x0109: return Param (Context);
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case 0x010e: return GetId (Context);
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}
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Unsupported Ioctl command 0x{Cmd:x8}!");
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return NvResult.NotSupported;
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}
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private static int Create(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapCreate Args = AMemoryHelper.Read<NvMapCreate>(Context.Memory, InputPosition);
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if (Args.Size == 0)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid size 0x{Args.Size:x8}!");
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return NvResult.InvalidInput;
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}
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int Size = IntUtils.RoundUp(Args.Size, NvGpuVmm.PageSize);
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Args.Handle = AddNvMap(Context, new NvMapHandle(Size));
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Context.Ns.Log.PrintInfo(LogClass.ServiceNv, $"Created map {Args.Handle} with size 0x{Size:x8}!");
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return NvResult.Success;
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}
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private static int FromId(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapFromId Args = AMemoryHelper.Read<NvMapFromId>(Context.Memory, InputPosition);
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NvMapHandle Map = GetNvMap(Context, Args.Id);
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if (Map == null)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid handle 0x{Args.Handle:x8}!");
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return NvResult.InvalidInput;
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}
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Map.IncrementRefCount();
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Args.Handle = Args.Id;
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return NvResult.Success;
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}
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private static int Alloc(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapAlloc Args = AMemoryHelper.Read<NvMapAlloc>(Context.Memory, InputPosition);
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NvMapHandle Map = GetNvMap(Context, Args.Handle);
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if (Map == null)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid handle 0x{Args.Handle:x8}!");
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return NvResult.InvalidInput;
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}
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if ((Args.Align & (Args.Align - 1)) != 0)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid alignment 0x{Args.Align:x8}!");
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return NvResult.InvalidInput;
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}
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if ((uint)Args.Align < NvGpuVmm.PageSize)
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{
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Args.Align = NvGpuVmm.PageSize;
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}
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int Result = NvResult.Success;
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if (!Map.Allocated)
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{
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Map.Allocated = true;
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Map.Align = Args.Align;
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Map.Kind = (byte)Args.Kind;
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int Size = IntUtils.RoundUp(Map.Size, NvGpuVmm.PageSize);
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long Address = Args.Address;
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if (Address == 0)
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{
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//When the address is zero, we need to allocate
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//our own backing memory for the NvMap.
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if (!Context.Ns.Os.Allocator.TryAllocate((uint)Size, out Address))
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{
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Result = NvResult.OutOfMemory;
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}
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}
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if (Result == NvResult.Success)
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{
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Map.Size = Size;
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Map.Address = Address;
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}
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}
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return Result;
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}
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private static int Free(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapFree Args = AMemoryHelper.Read<NvMapFree>(Context.Memory, InputPosition);
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NvMapHandle Map = GetNvMap(Context, Args.Handle);
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if (Map == null)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid handle 0x{Args.Handle:x8}!");
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return NvResult.InvalidInput;
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}
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long OldRefCount = Map.DecrementRefCount();
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if (OldRefCount <= 1)
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{
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DeleteNvMap(Context, Args.Handle);
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Context.Ns.Log.PrintInfo(LogClass.ServiceNv, $"Deleted map {Args.Handle}!");
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Args.Flags = 0;
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}
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else
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{
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Args.Flags = FlagNotFreedYet;
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}
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Args.RefCount = OldRefCount;
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Args.Size = Map.Size;
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return NvResult.Success;
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}
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private static int Param(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapParam Args = AMemoryHelper.Read<NvMapParam>(Context.Memory, InputPosition);
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NvMapHandle Map = GetNvMap(Context, Args.Handle);
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if (Map == null)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid handle 0x{Args.Handle:x8}!");
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return NvResult.InvalidInput;
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}
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switch ((NvMapHandleParam)Args.Param)
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{
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case NvMapHandleParam.Size: Args.Result = Map.Size; break;
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case NvMapHandleParam.Align: Args.Result = Map.Align; break;
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case NvMapHandleParam.Heap: Args.Result = 0x40000000; break;
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case NvMapHandleParam.Kind: Args.Result = Map.Kind; break;
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case NvMapHandleParam.Compr: Args.Result = 0; break;
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//Note: Base is not supported and returns an error.
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//Any other value also returns an error.
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default: return NvResult.InvalidInput;
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}
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return NvResult.Success;
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}
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private static int GetId(ServiceCtx Context)
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{
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long InputPosition = Context.Request.GetBufferType0x21().Position;
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long OutputPosition = Context.Request.GetBufferType0x22().Position;
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NvMapGetId Args = AMemoryHelper.Read<NvMapGetId>(Context.Memory, InputPosition);
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NvMapHandle Map = GetNvMap(Context, Args.Handle);
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if (Map == null)
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{
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Context.Ns.Log.PrintWarning(LogClass.ServiceNv, $"Invalid handle 0x{Args.Handle:x8}!");
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return NvResult.InvalidInput;
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}
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Args.Id = Args.Handle;
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AMemoryHelper.Write(Context.Memory, OutputPosition, Args);
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return NvResult.Success;
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}
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private static int AddNvMap(ServiceCtx Context, NvMapHandle Map)
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{
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IdDictionary Dict = Maps.GetOrAdd(Context.Process, (Key) =>
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{
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IdDictionary NewDict = new IdDictionary();
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NewDict.Add(0, new NvMapHandle());
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return NewDict;
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});
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return Dict.Add(Map);
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}
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private static bool DeleteNvMap(ServiceCtx Context, int Handle)
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{
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if (Maps.TryGetValue(Context.Process, out IdDictionary Dict))
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{
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return Dict.Delete(Handle) != null;
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}
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return false;
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}
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public static void InitializeNvMap(ServiceCtx Context)
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{
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IdDictionary Dict = Maps.GetOrAdd(Context.Process, (Key) =>new IdDictionary());
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Dict.Add(0, new NvMapHandle());
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}
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public static NvMapHandle GetNvMapWithFb(ServiceCtx Context, int Handle)
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{
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if (Maps.TryGetValue(Context.Process, out IdDictionary Dict))
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{
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return Dict.GetData<NvMapHandle>(Handle);
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}
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return null;
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}
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public static NvMapHandle GetNvMap(ServiceCtx Context, int Handle)
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{
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if (Handle != 0 && Maps.TryGetValue(Context.Process, out IdDictionary Dict))
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{
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return Dict.GetData<NvMapHandle>(Handle);
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}
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return null;
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}
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public static void UnloadProcess(Process Process)
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{
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Maps.TryRemove(Process, out _);
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}
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}
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} |