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235 lines
7.3 KiB
235 lines
7.3 KiB
// Copyright (c) 2014 Daniel Grunwald
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy of this
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// software and associated documentation files (the "Software"), to deal in the Software
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// without restriction, including without limitation the rights to use, copy, modify, merge,
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// publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons
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// to whom the Software is furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in all copies or
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// substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
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// INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
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// PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE
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// FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
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// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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// DEALINGS IN THE SOFTWARE.
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using System;
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using System.Diagnostics;
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using ICSharpCode.Decompiler.CSharp.Syntax;
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using ICSharpCode.Decompiler.TypeSystem;
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using ICSharpCode.Decompiler.Util;
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namespace ICSharpCode.Decompiler.IL
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{
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public enum ComparisonKind : byte
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{
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Equality,
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Inequality,
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LessThan,
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LessThanOrEqual,
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GreaterThan,
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GreaterThanOrEqual
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}
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static class ComparisonKindExtensions
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{
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public static bool IsEqualityOrInequality(this ComparisonKind kind)
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{
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return kind == ComparisonKind.Equality || kind == ComparisonKind.Inequality;
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}
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public static ComparisonKind Negate(this ComparisonKind kind)
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{
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switch (kind)
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{
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case ComparisonKind.Equality:
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return ComparisonKind.Inequality;
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case ComparisonKind.Inequality:
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return ComparisonKind.Equality;
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case ComparisonKind.LessThan:
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return ComparisonKind.GreaterThanOrEqual;
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case ComparisonKind.LessThanOrEqual:
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return ComparisonKind.GreaterThan;
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case ComparisonKind.GreaterThan:
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return ComparisonKind.LessThanOrEqual;
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case ComparisonKind.GreaterThanOrEqual:
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return ComparisonKind.LessThan;
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default:
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throw new ArgumentOutOfRangeException();
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}
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}
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public static BinaryOperatorType ToBinaryOperatorType(this ComparisonKind kind)
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{
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switch (kind)
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{
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case ComparisonKind.Equality:
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return BinaryOperatorType.Equality;
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case ComparisonKind.Inequality:
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return BinaryOperatorType.InEquality;
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case ComparisonKind.LessThan:
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return BinaryOperatorType.LessThan;
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case ComparisonKind.LessThanOrEqual:
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return BinaryOperatorType.LessThanOrEqual;
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case ComparisonKind.GreaterThan:
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return BinaryOperatorType.GreaterThan;
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case ComparisonKind.GreaterThanOrEqual:
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return BinaryOperatorType.GreaterThanOrEqual;
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default:
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throw new ArgumentOutOfRangeException();
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}
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}
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public static string GetToken(this ComparisonKind kind)
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{
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return BinaryOperatorExpression.GetOperatorRole(kind.ToBinaryOperatorType()).Token;
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}
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}
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public enum ComparisonLiftingKind
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{
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/// <summary>
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/// Not a lifted comparison.
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/// </summary>
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None,
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/// <summary>
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/// C#-style lifted comparison:
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/// * operands that have a ResultType != this.InputType are expected to return a value of
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/// type Nullable{T}, where T.GetStackType() == this.InputType.
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/// * if both operands are <c>null</c>, equality comparisons evaluate to 1, all other comparisons to 0.
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/// * if one operand is <c>null</c>, inequality comparisons evaluate to 1, all other comparisons to 0.
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/// * if neither operand is <c>null</c>, the underlying comparison is performed.
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///
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/// Note that even though C#-style lifted comparisons set IsLifted=true,
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/// the ResultType remains I4 as with normal comparisons.
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/// </summary>
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CSharp,
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/// <summary>
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/// SQL-style lifted comparison: works like a lifted binary numeric instruction,
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/// that is, if any input operand is <c>null</c>, the comparison evaluates to <c>null</c>.
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/// </summary>
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/// <remarks>
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/// This lifting kind is currently only used for operator! on bool?.
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/// </remarks>
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ThreeValuedLogic
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}
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partial class Comp : ILiftableInstruction
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{
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ComparisonKind kind;
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public ComparisonKind Kind {
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get { return kind; }
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set {
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kind = value;
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MakeDirty();
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}
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}
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public readonly ComparisonLiftingKind LiftingKind;
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/// <summary>
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/// Gets the stack type of the comparison inputs.
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/// For lifted comparisons, this is the underlying input type.
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/// </summary>
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public StackType InputType;
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/// <summary>
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/// If this is an integer comparison, specifies the sign used to interpret the integers.
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/// </summary>
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public readonly Sign Sign;
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public Comp(ComparisonKind kind, Sign sign, ILInstruction left, ILInstruction right) : base(OpCode.Comp, left, right)
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{
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this.kind = kind;
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this.LiftingKind = ComparisonLiftingKind.None;
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this.InputType = left.ResultType;
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this.Sign = sign;
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Debug.Assert(left.ResultType == right.ResultType);
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}
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public Comp(ComparisonKind kind, ComparisonLiftingKind lifting, StackType inputType, Sign sign, ILInstruction left, ILInstruction right) : base(OpCode.Comp, left, right)
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{
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this.kind = kind;
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this.LiftingKind = lifting;
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this.InputType = inputType;
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this.Sign = sign;
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}
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public override StackType ResultType => LiftingKind == ComparisonLiftingKind.ThreeValuedLogic ? StackType.O : StackType.I4;
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public bool IsLifted => LiftingKind != ComparisonLiftingKind.None;
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public StackType UnderlyingResultType => StackType.I4;
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internal override void CheckInvariant(ILPhase phase)
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{
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base.CheckInvariant(phase);
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if (LiftingKind == ComparisonLiftingKind.None)
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{
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Debug.Assert(Left.ResultType == InputType);
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Debug.Assert(Right.ResultType == InputType);
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}
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else
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{
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Debug.Assert(Left.ResultType == InputType || Left.ResultType == StackType.O);
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Debug.Assert(Right.ResultType == InputType || Right.ResultType == StackType.O);
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}
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}
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public override void WriteTo(ITextOutput output, ILAstWritingOptions options)
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{
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WriteILRange(output, options);
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if (options.UseLogicOperationSugar && MatchLogicNot(out var arg))
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{
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output.Write("logic.not(");
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arg.WriteTo(output, options);
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output.Write(')');
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return;
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}
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output.Write(OpCode);
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output.Write('.');
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output.Write(InputType.ToString().ToLower());
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switch (Sign)
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{
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case Sign.Signed:
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output.Write(".signed");
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break;
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case Sign.Unsigned:
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output.Write(".unsigned");
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break;
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}
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switch (LiftingKind)
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{
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case ComparisonLiftingKind.CSharp:
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output.Write(".lifted[C#]");
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break;
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case ComparisonLiftingKind.ThreeValuedLogic:
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output.Write(".lifted[3VL]");
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break;
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}
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output.Write('(');
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Left.WriteTo(output, options);
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output.Write(' ');
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output.Write(Kind.GetToken());
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output.Write(' ');
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Right.WriteTo(output, options);
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output.Write(')');
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}
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public static Comp LogicNot(ILInstruction arg)
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{
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return new Comp(ComparisonKind.Equality, Sign.None, arg, new LdcI4(0));
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}
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public static Comp LogicNot(ILInstruction arg, bool isLifted)
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{
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var liftingKind = isLifted ? ComparisonLiftingKind.ThreeValuedLogic : ComparisonLiftingKind.None;
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return new Comp(ComparisonKind.Equality, liftingKind, StackType.I4, Sign.None, arg, new LdcI4(0));
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}
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}
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}
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