c26f3774bd
* Implement VMULL, VMLSL, VQRSHRN, VQRSHRUN AArch32 instructions plus other fixes * Re-align opcode table * Re-enable undefined, use subclasses to fix checks * Add test and fix VRSHR instruction * PR feedback
279 lines
10 KiB
C#
279 lines
10 KiB
C#
using ARMeilleure.Decoders;
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using ARMeilleure.IntermediateRepresentation;
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using ARMeilleure.State;
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using ARMeilleure.Translation;
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using System;
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using System.Diagnostics;
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using static ARMeilleure.Instructions.InstEmitSimdHelper32;
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using static ARMeilleure.IntermediateRepresentation.OperandHelper;
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namespace ARMeilleure.Instructions
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{
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static partial class InstEmit32
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{
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public static void Vqrshrn(ArmEmitterContext context)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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EmitRoundShrImmSaturatingNarrowOp(context, op.U ? ShrImmSaturatingNarrowFlags.VectorZxZx : ShrImmSaturatingNarrowFlags.VectorSxSx);
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}
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public static void Vqrshrun(ArmEmitterContext context)
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{
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EmitRoundShrImmSaturatingNarrowOp(context, ShrImmSaturatingNarrowFlags.VectorSxZx);
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}
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public static void Vrshr(ArmEmitterContext context)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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int shift = GetImmShr(op);
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long roundConst = 1L << (shift - 1);
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if (op.U)
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{
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if (op.Size < 2)
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{
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EmitVectorUnaryOpZx32(context, (op1) =>
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{
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op1 = context.Add(op1, Const(op1.Type, roundConst));
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return context.ShiftRightUI(op1, Const(shift));
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});
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}
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else if (op.Size == 2)
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{
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EmitVectorUnaryOpZx32(context, (op1) =>
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{
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op1 = context.ZeroExtend32(OperandType.I64, op1);
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op1 = context.Add(op1, Const(op1.Type, roundConst));
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return context.ConvertI64ToI32(context.ShiftRightUI(op1, Const(shift)));
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});
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}
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else /* if (op.Size == 3) */
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{
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EmitVectorUnaryOpZx32(context, (op1) => EmitShrImm64(context, op1, signed: false, roundConst, shift));
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}
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}
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else
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{
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if (op.Size < 2)
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{
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EmitVectorUnaryOpSx32(context, (op1) =>
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{
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op1 = context.Add(op1, Const(op1.Type, roundConst));
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return context.ShiftRightSI(op1, Const(shift));
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});
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}
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else if (op.Size == 2)
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{
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EmitVectorUnaryOpSx32(context, (op1) =>
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{
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op1 = context.SignExtend32(OperandType.I64, op1);
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op1 = context.Add(op1, Const(op1.Type, roundConst));
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return context.ConvertI64ToI32(context.ShiftRightSI(op1, Const(shift)));
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});
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}
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else /* if (op.Size == 3) */
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{
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EmitVectorUnaryOpZx32(context, (op1) => EmitShrImm64(context, op1, signed: true, roundConst, shift));
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}
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}
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}
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public static void Vshl(ArmEmitterContext context)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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EmitVectorUnaryOpZx32(context, (op1) => context.ShiftLeft(op1, Const(op.Shift)));
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}
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public static void Vshl_I(ArmEmitterContext context)
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{
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OpCode32SimdReg op = (OpCode32SimdReg)context.CurrOp;
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if (op.U)
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{
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EmitVectorBinaryOpZx32(context, (op1, op2) => EmitShlRegOp(context, op2, op1, op.Size, true));
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}
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else
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{
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EmitVectorBinaryOpSx32(context, (op1, op2) => EmitShlRegOp(context, op2, op1, op.Size, false));
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}
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}
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public static void Vshr(ArmEmitterContext context)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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int shift = GetImmShr(op);
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int maxShift = (8 << op.Size) - 1;
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if (op.U)
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{
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EmitVectorUnaryOpZx32(context, (op1) => (shift > maxShift) ? Const(op1.Type, 0) : context.ShiftRightUI(op1, Const(shift)));
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}
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else
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{
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EmitVectorUnaryOpSx32(context, (op1) => context.ShiftRightSI(op1, Const(Math.Min(maxShift, shift))));
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}
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}
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public static void Vshrn(ArmEmitterContext context)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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int shift = GetImmShr(op);
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EmitVectorUnaryNarrowOp32(context, (op1) => context.ShiftRightUI(op1, Const(shift)));
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}
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private static Operand EmitShlRegOp(ArmEmitterContext context, Operand op, Operand shiftLsB, int size, bool unsigned)
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{
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if (shiftLsB.Type == OperandType.I64)
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{
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shiftLsB = context.ConvertI64ToI32(shiftLsB);
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}
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shiftLsB = context.SignExtend8(OperandType.I32, shiftLsB);
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Debug.Assert((uint)size < 4u);
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Operand negShiftLsB = context.Negate(shiftLsB);
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Operand isPositive = context.ICompareGreaterOrEqual(shiftLsB, Const(0));
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Operand shl = context.ShiftLeft(op, shiftLsB);
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Operand shr = unsigned ? context.ShiftRightUI(op, negShiftLsB) : context.ShiftRightSI(op, negShiftLsB);
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Operand res = context.ConditionalSelect(isPositive, shl, shr);
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if (unsigned)
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{
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Operand isOutOfRange = context.BitwiseOr(
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context.ICompareGreaterOrEqual(shiftLsB, Const(8 << size)),
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context.ICompareGreaterOrEqual(negShiftLsB, Const(8 << size)));
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return context.ConditionalSelect(isOutOfRange, Const(op.Type, 0), res);
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}
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else
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{
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Operand isOutOfRange0 = context.ICompareGreaterOrEqual(shiftLsB, Const(8 << size));
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Operand isOutOfRangeN = context.ICompareGreaterOrEqual(negShiftLsB, Const(8 << size));
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// Also zero if shift is too negative, but value was positive.
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isOutOfRange0 = context.BitwiseOr(isOutOfRange0, context.BitwiseAnd(isOutOfRangeN, context.ICompareGreaterOrEqual(op, Const(op.Type, 0))));
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Operand min = (op.Type == OperandType.I64) ? Const(-1L) : Const(-1);
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return context.ConditionalSelect(isOutOfRange0, Const(op.Type, 0), context.ConditionalSelect(isOutOfRangeN, min, res));
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}
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}
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[Flags]
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private enum ShrImmSaturatingNarrowFlags
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{
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Scalar = 1 << 0,
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SignedSrc = 1 << 1,
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SignedDst = 1 << 2,
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Round = 1 << 3,
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ScalarSxSx = Scalar | SignedSrc | SignedDst,
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ScalarSxZx = Scalar | SignedSrc,
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ScalarZxZx = Scalar,
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VectorSxSx = SignedSrc | SignedDst,
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VectorSxZx = SignedSrc,
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VectorZxZx = 0
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}
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private static void EmitRoundShrImmSaturatingNarrowOp(ArmEmitterContext context, ShrImmSaturatingNarrowFlags flags)
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{
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EmitShrImmSaturatingNarrowOp(context, ShrImmSaturatingNarrowFlags.Round | flags);
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}
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private static void EmitShrImmSaturatingNarrowOp(ArmEmitterContext context, ShrImmSaturatingNarrowFlags flags)
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{
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OpCode32SimdShImm op = (OpCode32SimdShImm)context.CurrOp;
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bool scalar = (flags & ShrImmSaturatingNarrowFlags.Scalar) != 0;
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bool signedSrc = (flags & ShrImmSaturatingNarrowFlags.SignedSrc) != 0;
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bool signedDst = (flags & ShrImmSaturatingNarrowFlags.SignedDst) != 0;
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bool round = (flags & ShrImmSaturatingNarrowFlags.Round) != 0;
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if (scalar)
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{
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// TODO: Support scalar operation.
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throw new NotImplementedException();
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}
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int shift = GetImmShr(op);
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long roundConst = 1L << (shift - 1);
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EmitVectorUnaryNarrowOp32(context, (op1) =>
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{
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if (op.Size <= 1 || !round)
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{
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if (round)
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{
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op1 = context.Add(op1, Const(op1.Type, roundConst));
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}
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op1 = signedSrc ? context.ShiftRightSI(op1, Const(shift)) : context.ShiftRightUI(op1, Const(shift));
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}
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else /* if (op.Size == 2 && round) */
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{
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op1 = EmitShrImm64(context, op1, signedSrc, roundConst, shift); // shift <= 32
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}
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return EmitSatQ(context, op1, 8 << op.Size, signedDst);
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}, signedSrc);
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}
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private static int GetImmShr(OpCode32SimdShImm op)
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{
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return (8 << op.Size) - op.Shift; // Shr amount is flipped.
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}
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// dst64 = (Int(src64, signed) + roundConst) >> shift;
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private static Operand EmitShrImm64(
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ArmEmitterContext context,
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Operand value,
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bool signed,
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long roundConst,
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int shift)
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{
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Delegate dlg = signed
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? (Delegate)new _S64_S64_S64_S32(SoftFallback.SignedShrImm64)
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: (Delegate)new _U64_U64_S64_S32(SoftFallback.UnsignedShrImm64);
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return context.Call(dlg, value, Const(roundConst), Const(shift));
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}
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private static Operand EmitSatQ(ArmEmitterContext context, Operand value, int eSize, bool signed)
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{
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Debug.Assert(eSize <= 32);
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long intMin = signed ? -(1L << (eSize - 1)) : 0;
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long intMax = signed ? (1L << (eSize - 1)) - 1 : (1L << eSize) - 1;
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Operand gt = context.ICompareGreater(value, Const(value.Type, intMax));
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Operand lt = context.ICompareLess(value, Const(value.Type, intMin));
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value = context.ConditionalSelect(gt, Const(value.Type, intMax), value);
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value = context.ConditionalSelect(lt, Const(value.Type, intMin), value);
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Operand lblNoSat = Label();
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context.BranchIfFalse(lblNoSat, context.BitwiseOr(gt, lt));
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// TODO: Set QC (to 1) on FPSCR here.
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context.MarkLabel(lblNoSat);
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return value;
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}
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}
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}
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