mirror of
https://github.com/ryujinx-mirror/ryujinx.git
synced 2024-11-26 20:13:01 +00:00
cb171f6ebf
Support shared color masks (used by Nouveau and maybe the NVIDIA driver). Support draw buffers (also required by OpenGL). Support viewport transform disable (disabled for now as it breaks some games). Fix instanced rendering draw being ignored for multi draw. Fix IADD and IADD3 immediate shader encodings, that was not matching some ops. Implement FFMA32I shader instruction. Implement IMAD shader instruction.
186 lines
No EOL
14 KiB
C#
186 lines
No EOL
14 KiB
C#
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
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using System;
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namespace Ryujinx.Graphics.Shader.StructuredIr
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{
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static class InstructionInfo
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{
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private struct InstInfo
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{
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public VariableType DestType { get; }
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public VariableType[] SrcTypes { get; }
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public InstInfo(VariableType destType, params VariableType[] srcTypes)
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{
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DestType = destType;
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SrcTypes = srcTypes;
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}
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}
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private static InstInfo[] _infoTbl;
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static InstructionInfo()
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{
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_infoTbl = new InstInfo[(int)Instruction.Count];
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// Inst Destination type Source 1 type Source 2 type Source 3 type Source 4 type
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Add(Instruction.AtomicAdd, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicAnd, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicCompareAndSwap, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32, VariableType.U32);
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Add(Instruction.AtomicMaxS32, VariableType.S32, VariableType.S32, VariableType.S32, VariableType.S32);
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Add(Instruction.AtomicMaxU32, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicMinS32, VariableType.S32, VariableType.S32, VariableType.S32, VariableType.S32);
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Add(Instruction.AtomicMinU32, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicOr, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicSwap, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.AtomicXor, VariableType.U32, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.Absolute, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.Add, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.Ballot, VariableType.U32, VariableType.Bool);
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Add(Instruction.BitCount, VariableType.Int, VariableType.Int);
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Add(Instruction.BitfieldExtractS32, VariableType.S32, VariableType.S32, VariableType.S32, VariableType.S32);
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Add(Instruction.BitfieldExtractU32, VariableType.U32, VariableType.U32, VariableType.S32, VariableType.S32);
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Add(Instruction.BitfieldInsert, VariableType.Int, VariableType.Int, VariableType.Int, VariableType.S32, VariableType.S32);
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Add(Instruction.BitfieldReverse, VariableType.Int, VariableType.Int);
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Add(Instruction.BitwiseAnd, VariableType.Int, VariableType.Int, VariableType.Int);
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Add(Instruction.BitwiseExclusiveOr, VariableType.Int, VariableType.Int, VariableType.Int);
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Add(Instruction.BitwiseNot, VariableType.Int, VariableType.Int);
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Add(Instruction.BitwiseOr, VariableType.Int, VariableType.Int, VariableType.Int);
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Add(Instruction.BranchIfTrue, VariableType.None, VariableType.Bool);
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Add(Instruction.BranchIfFalse, VariableType.None, VariableType.Bool);
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Add(Instruction.Ceiling, VariableType.F32, VariableType.F32, VariableType.F32);
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Add(Instruction.Clamp, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.ClampU32, VariableType.U32, VariableType.U32, VariableType.U32, VariableType.U32);
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Add(Instruction.CompareEqual, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.CompareGreater, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.CompareGreaterOrEqual, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.CompareGreaterOrEqualU32, VariableType.Bool, VariableType.U32, VariableType.U32);
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Add(Instruction.CompareGreaterU32, VariableType.Bool, VariableType.U32, VariableType.U32);
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Add(Instruction.CompareLess, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.CompareLessOrEqual, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.CompareLessOrEqualU32, VariableType.Bool, VariableType.U32, VariableType.U32);
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Add(Instruction.CompareLessU32, VariableType.Bool, VariableType.U32, VariableType.U32);
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Add(Instruction.CompareNotEqual, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.ConditionalSelect, VariableType.Scalar, VariableType.Bool, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.ConvertFPToS32, VariableType.S32, VariableType.F32);
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Add(Instruction.ConvertFPToU32, VariableType.U32, VariableType.F32);
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Add(Instruction.ConvertS32ToFP, VariableType.F32, VariableType.S32);
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Add(Instruction.ConvertU32ToFP, VariableType.F32, VariableType.U32);
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Add(Instruction.Cosine, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.Ddx, VariableType.F32, VariableType.F32);
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Add(Instruction.Ddy, VariableType.F32, VariableType.F32);
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Add(Instruction.Divide, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.ExponentB2, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.FindFirstSetS32, VariableType.S32, VariableType.S32);
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Add(Instruction.FindFirstSetU32, VariableType.S32, VariableType.U32);
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Add(Instruction.Floor, VariableType.F32, VariableType.F32);
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Add(Instruction.FusedMultiplyAdd, VariableType.F32, VariableType.F32, VariableType.F32, VariableType.F32);
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Add(Instruction.ImageLoad, VariableType.F32);
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Add(Instruction.ImageStore, VariableType.None);
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Add(Instruction.IsNan, VariableType.Bool, VariableType.F32);
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Add(Instruction.LoadAttribute, VariableType.F32, VariableType.S32, VariableType.S32);
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Add(Instruction.LoadConstant, VariableType.F32, VariableType.S32, VariableType.S32);
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Add(Instruction.LoadGlobal, VariableType.U32, VariableType.S32, VariableType.S32);
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Add(Instruction.LoadLocal, VariableType.U32, VariableType.S32);
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Add(Instruction.LoadShared, VariableType.U32, VariableType.S32);
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Add(Instruction.LoadStorage, VariableType.U32, VariableType.S32, VariableType.S32);
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Add(Instruction.LogarithmB2, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.LogicalAnd, VariableType.Bool, VariableType.Bool, VariableType.Bool);
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Add(Instruction.LogicalExclusiveOr, VariableType.Bool, VariableType.Bool, VariableType.Bool);
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Add(Instruction.LogicalNot, VariableType.Bool, VariableType.Bool);
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Add(Instruction.LogicalOr, VariableType.Bool, VariableType.Bool, VariableType.Bool);
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Add(Instruction.ShiftLeft, VariableType.Int, VariableType.Int, VariableType.Int);
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Add(Instruction.ShiftRightS32, VariableType.S32, VariableType.S32, VariableType.Int);
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Add(Instruction.ShiftRightU32, VariableType.U32, VariableType.U32, VariableType.Int);
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Add(Instruction.Shuffle, VariableType.F32, VariableType.F32, VariableType.U32, VariableType.U32);
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Add(Instruction.ShuffleDown, VariableType.F32, VariableType.F32, VariableType.U32, VariableType.U32);
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Add(Instruction.ShuffleUp, VariableType.F32, VariableType.F32, VariableType.U32, VariableType.U32);
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Add(Instruction.ShuffleXor, VariableType.F32, VariableType.F32, VariableType.U32, VariableType.U32);
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Add(Instruction.Maximum, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.MaximumU32, VariableType.U32, VariableType.U32, VariableType.U32);
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Add(Instruction.Minimum, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.MinimumU32, VariableType.U32, VariableType.U32, VariableType.U32);
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Add(Instruction.Multiply, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.MultiplyHighS32, VariableType.S32, VariableType.S32, VariableType.S32);
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Add(Instruction.MultiplyHighU32, VariableType.U32, VariableType.U32, VariableType.U32);
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Add(Instruction.Negate, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.PackHalf2x16, VariableType.U32, VariableType.F32, VariableType.F32);
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Add(Instruction.ReciprocalSquareRoot, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.Round, VariableType.F32, VariableType.F32);
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Add(Instruction.Sine, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.SquareRoot, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.StoreGlobal, VariableType.None, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.StoreLocal, VariableType.None, VariableType.S32, VariableType.U32);
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Add(Instruction.StoreShared, VariableType.None, VariableType.S32, VariableType.U32);
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Add(Instruction.StoreStorage, VariableType.None, VariableType.S32, VariableType.S32, VariableType.U32);
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Add(Instruction.Subtract, VariableType.Scalar, VariableType.Scalar, VariableType.Scalar);
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Add(Instruction.SwizzleAdd, VariableType.F32, VariableType.F32, VariableType.F32, VariableType.S32);
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Add(Instruction.TextureSample, VariableType.F32);
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Add(Instruction.TextureSize, VariableType.S32, VariableType.S32, VariableType.S32);
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Add(Instruction.Truncate, VariableType.F32, VariableType.F32);
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Add(Instruction.UnpackHalf2x16, VariableType.F32, VariableType.U32);
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Add(Instruction.VoteAll, VariableType.Bool, VariableType.Bool);
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Add(Instruction.VoteAllEqual, VariableType.Bool, VariableType.Bool);
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Add(Instruction.VoteAny, VariableType.Bool, VariableType.Bool);
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}
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private static void Add(Instruction inst, VariableType destType, params VariableType[] srcTypes)
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{
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_infoTbl[(int)inst] = new InstInfo(destType, srcTypes);
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}
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public static VariableType GetDestVarType(Instruction inst)
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{
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return GetFinalVarType(_infoTbl[(int)(inst & Instruction.Mask)].DestType, inst);
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}
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public static VariableType GetSrcVarType(Instruction inst, int index)
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{
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// TODO: Return correct type depending on source index,
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// that can improve the decompiler output.
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if (inst == Instruction.TextureSample ||
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inst == Instruction.ImageLoad ||
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inst == Instruction.ImageStore)
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{
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return VariableType.F32;
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}
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return GetFinalVarType(_infoTbl[(int)(inst & Instruction.Mask)].SrcTypes[index], inst);
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}
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private static VariableType GetFinalVarType(VariableType type, Instruction inst)
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{
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if (type == VariableType.Scalar)
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{
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return (inst & Instruction.FP) != 0
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? VariableType.F32
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: VariableType.S32;
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}
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else if (type == VariableType.Int)
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{
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return VariableType.S32;
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}
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else if (type == VariableType.None)
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{
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throw new ArgumentException($"Invalid operand for instruction \"{inst}\".");
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}
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return type;
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}
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public static bool IsUnary(Instruction inst)
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{
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if (inst == Instruction.Copy)
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{
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return true;
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}
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else if (inst == Instruction.TextureSample)
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{
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return false;
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}
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return _infoTbl[(int)(inst & Instruction.Mask)].SrcTypes.Length == 1;
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}
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}
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} |