Files
2026-08-27 10:56:38 -06:00

273 lines
10 KiB
C#

using System;
using System.Collections.Generic;
using Microsoft.CodeAnalysis.Syntax.InternalSyntax;
using Roslyn.Utilities;
namespace Microsoft.CodeAnalysis.CSharp.Syntax.InternalSyntax;
internal sealed class ParenthesizedLambdaExpressionSyntax : LambdaExpressionSyntax
{
internal readonly GreenNode? attributeLists;
internal readonly GreenNode? modifiers;
internal readonly TypeSyntax? returnType;
internal readonly ParameterListSyntax parameterList;
internal readonly SyntaxToken arrowToken;
internal readonly BlockSyntax? block;
internal readonly ExpressionSyntax? expressionBody;
public override SyntaxList<AttributeListSyntax> AttributeLists => new SyntaxList<AttributeListSyntax>(attributeLists);
public override SyntaxList<SyntaxToken> Modifiers => new SyntaxList<SyntaxToken>(modifiers);
public TypeSyntax? ReturnType => returnType;
public ParameterListSyntax ParameterList => parameterList;
public override SyntaxToken ArrowToken => arrowToken;
public override BlockSyntax? Block => block;
public override ExpressionSyntax? ExpressionBody => expressionBody;
internal ParenthesizedLambdaExpressionSyntax(SyntaxKind kind, GreenNode? attributeLists, GreenNode? modifiers, TypeSyntax? returnType, ParameterListSyntax parameterList, SyntaxToken arrowToken, BlockSyntax? block, ExpressionSyntax? expressionBody, DiagnosticInfo[]? diagnostics, SyntaxAnnotation[]? annotations)
: base(kind, diagnostics, annotations)
{
((GreenNode)this).SlotCount = 7;
if (attributeLists != null)
{
((GreenNode)this).AdjustFlagsAndWidth(attributeLists);
this.attributeLists = attributeLists;
}
if (modifiers != null)
{
((GreenNode)this).AdjustFlagsAndWidth(modifiers);
this.modifiers = modifiers;
}
if (returnType != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)returnType);
this.returnType = returnType;
}
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)parameterList);
this.parameterList = parameterList;
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)arrowToken);
this.arrowToken = arrowToken;
if (block != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)block);
this.block = block;
}
if (expressionBody != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)expressionBody);
this.expressionBody = expressionBody;
}
}
internal ParenthesizedLambdaExpressionSyntax(SyntaxKind kind, GreenNode? attributeLists, GreenNode? modifiers, TypeSyntax? returnType, ParameterListSyntax parameterList, SyntaxToken arrowToken, BlockSyntax? block, ExpressionSyntax? expressionBody, SyntaxFactoryContext context)
: base(kind)
{
SetFactoryContext(context);
((GreenNode)this).SlotCount = 7;
if (attributeLists != null)
{
((GreenNode)this).AdjustFlagsAndWidth(attributeLists);
this.attributeLists = attributeLists;
}
if (modifiers != null)
{
((GreenNode)this).AdjustFlagsAndWidth(modifiers);
this.modifiers = modifiers;
}
if (returnType != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)returnType);
this.returnType = returnType;
}
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)parameterList);
this.parameterList = parameterList;
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)arrowToken);
this.arrowToken = arrowToken;
if (block != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)block);
this.block = block;
}
if (expressionBody != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)expressionBody);
this.expressionBody = expressionBody;
}
}
internal ParenthesizedLambdaExpressionSyntax(SyntaxKind kind, GreenNode? attributeLists, GreenNode? modifiers, TypeSyntax? returnType, ParameterListSyntax parameterList, SyntaxToken arrowToken, BlockSyntax? block, ExpressionSyntax? expressionBody)
: base(kind)
{
((GreenNode)this).SlotCount = 7;
if (attributeLists != null)
{
((GreenNode)this).AdjustFlagsAndWidth(attributeLists);
this.attributeLists = attributeLists;
}
if (modifiers != null)
{
((GreenNode)this).AdjustFlagsAndWidth(modifiers);
this.modifiers = modifiers;
}
if (returnType != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)returnType);
this.returnType = returnType;
}
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)parameterList);
this.parameterList = parameterList;
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)arrowToken);
this.arrowToken = arrowToken;
if (block != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)block);
this.block = block;
}
if (expressionBody != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)expressionBody);
this.expressionBody = expressionBody;
}
}
internal override GreenNode? GetSlot(int index)
{
return (GreenNode?)(index switch
{
0 => attributeLists,
1 => modifiers,
2 => returnType,
3 => parameterList,
4 => arrowToken,
5 => block,
6 => expressionBody,
_ => null,
});
}
internal override SyntaxNode CreateRed(SyntaxNode? parent, int position)
{
return (SyntaxNode)(object)new Microsoft.CodeAnalysis.CSharp.Syntax.ParenthesizedLambdaExpressionSyntax(this, parent, position);
}
public override void Accept(CSharpSyntaxVisitor visitor)
{
visitor.VisitParenthesizedLambdaExpression(this);
}
public override TResult Accept<TResult>(CSharpSyntaxVisitor<TResult> visitor)
{
return visitor.VisitParenthesizedLambdaExpression(this);
}
public ParenthesizedLambdaExpressionSyntax Update(SyntaxList<AttributeListSyntax> attributeLists, SyntaxList<SyntaxToken> modifiers, TypeSyntax returnType, ParameterListSyntax parameterList, SyntaxToken arrowToken, BlockSyntax block, ExpressionSyntax expressionBody)
{
//IL_0000: Unknown result type (might be due to invalid IL or missing references)
//IL_0002: Unknown result type (might be due to invalid IL or missing references)
//IL_004d: Unknown result type (might be due to invalid IL or missing references)
//IL_004e: Unknown result type (might be due to invalid IL or missing references)
//IL_000e: Unknown result type (might be due to invalid IL or missing references)
//IL_0010: Unknown result type (might be due to invalid IL or missing references)
if (attributeLists != AttributeLists || modifiers != Modifiers || returnType != ReturnType || parameterList != ParameterList || arrowToken != ArrowToken || block != Block || expressionBody != ExpressionBody)
{
ParenthesizedLambdaExpressionSyntax parenthesizedLambdaExpressionSyntax = SyntaxFactory.ParenthesizedLambdaExpression(attributeLists, modifiers, returnType, parameterList, arrowToken, block, expressionBody);
DiagnosticInfo[] diagnostics = ((GreenNode)this).GetDiagnostics();
if (diagnostics != null && diagnostics.Length != 0)
{
parenthesizedLambdaExpressionSyntax = GreenNodeExtensions.WithDiagnosticsGreen<ParenthesizedLambdaExpressionSyntax>(parenthesizedLambdaExpressionSyntax, diagnostics);
}
SyntaxAnnotation[] annotations = ((GreenNode)this).GetAnnotations();
if (annotations != null && annotations.Length != 0)
{
parenthesizedLambdaExpressionSyntax = GreenNodeExtensions.WithAnnotationsGreen<ParenthesizedLambdaExpressionSyntax>(parenthesizedLambdaExpressionSyntax, (IEnumerable<SyntaxAnnotation>)annotations);
}
return parenthesizedLambdaExpressionSyntax;
}
return this;
}
internal override GreenNode SetDiagnostics(DiagnosticInfo[]? diagnostics)
{
return (GreenNode)(object)new ParenthesizedLambdaExpressionSyntax(base.Kind, attributeLists, modifiers, returnType, parameterList, arrowToken, block, expressionBody, diagnostics, ((GreenNode)this).GetAnnotations());
}
internal override GreenNode SetAnnotations(SyntaxAnnotation[]? annotations)
{
return (GreenNode)(object)new ParenthesizedLambdaExpressionSyntax(base.Kind, attributeLists, modifiers, returnType, parameterList, arrowToken, block, expressionBody, ((GreenNode)this).GetDiagnostics(), annotations);
}
internal ParenthesizedLambdaExpressionSyntax(ObjectReader reader)
: base(reader)
{
//IL_0014: Unknown result type (might be due to invalid IL or missing references)
//IL_001a: Expected O, but got Unknown
//IL_0031: Unknown result type (might be due to invalid IL or missing references)
//IL_0037: Expected O, but got Unknown
((GreenNode)this).SlotCount = 7;
GreenNode val = (GreenNode)reader.ReadValue();
if (val != null)
{
((GreenNode)this).AdjustFlagsAndWidth(val);
attributeLists = val;
}
GreenNode val2 = (GreenNode)reader.ReadValue();
if (val2 != null)
{
((GreenNode)this).AdjustFlagsAndWidth(val2);
modifiers = val2;
}
TypeSyntax typeSyntax = (TypeSyntax)reader.ReadValue();
if (typeSyntax != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)typeSyntax);
returnType = typeSyntax;
}
ParameterListSyntax parameterListSyntax = (ParameterListSyntax)reader.ReadValue();
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)parameterListSyntax);
parameterList = parameterListSyntax;
SyntaxToken syntaxToken = (SyntaxToken)reader.ReadValue();
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)syntaxToken);
arrowToken = syntaxToken;
BlockSyntax blockSyntax = (BlockSyntax)reader.ReadValue();
if (blockSyntax != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)blockSyntax);
block = blockSyntax;
}
ExpressionSyntax expressionSyntax = (ExpressionSyntax)reader.ReadValue();
if (expressionSyntax != null)
{
((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)expressionSyntax);
expressionBody = expressionSyntax;
}
}
internal override void WriteTo(ObjectWriter writer)
{
((GreenNode)this).WriteTo(writer);
writer.WriteValue((IObjectWritable)(object)attributeLists);
writer.WriteValue((IObjectWritable)(object)modifiers);
writer.WriteValue((IObjectWritable)(object)returnType);
writer.WriteValue((IObjectWritable)(object)parameterList);
writer.WriteValue((IObjectWritable)(object)arrowToken);
writer.WriteValue((IObjectWritable)(object)block);
writer.WriteValue((IObjectWritable)(object)expressionBody);
}
static ParenthesizedLambdaExpressionSyntax()
{
ObjectBinder.RegisterTypeReader(typeof(ParenthesizedLambdaExpressionSyntax), (Func<ObjectReader, IObjectWritable>)((ObjectReader r) => (IObjectWritable)(object)new ParenthesizedLambdaExpressionSyntax(r)));
}
}