using System; using System.Collections.Generic; using Roslyn.Utilities; namespace Microsoft.CodeAnalysis.CSharp.Syntax.InternalSyntax; internal sealed class FunctionPointerUnmanagedCallingConventionSyntax : CSharpSyntaxNode { internal readonly SyntaxToken name; public SyntaxToken Name => name; internal FunctionPointerUnmanagedCallingConventionSyntax(SyntaxKind kind, SyntaxToken name, DiagnosticInfo[]? diagnostics, SyntaxAnnotation[]? annotations) : base(kind, diagnostics, annotations) { ((GreenNode)this).SlotCount = 1; ((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)name); this.name = name; } internal FunctionPointerUnmanagedCallingConventionSyntax(SyntaxKind kind, SyntaxToken name, SyntaxFactoryContext context) : base(kind) { SetFactoryContext(context); ((GreenNode)this).SlotCount = 1; ((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)name); this.name = name; } internal FunctionPointerUnmanagedCallingConventionSyntax(SyntaxKind kind, SyntaxToken name) : base(kind) { ((GreenNode)this).SlotCount = 1; ((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)name); this.name = name; } internal override GreenNode? GetSlot(int index) { if (index != 0) { return null; } return (GreenNode?)(object)name; } internal override SyntaxNode CreateRed(SyntaxNode? parent, int position) { return (SyntaxNode)(object)new Microsoft.CodeAnalysis.CSharp.Syntax.FunctionPointerUnmanagedCallingConventionSyntax(this, parent, position); } public override void Accept(CSharpSyntaxVisitor visitor) { visitor.VisitFunctionPointerUnmanagedCallingConvention(this); } public override TResult Accept(CSharpSyntaxVisitor visitor) { return visitor.VisitFunctionPointerUnmanagedCallingConvention(this); } public FunctionPointerUnmanagedCallingConventionSyntax Update(SyntaxToken name) { if (name != Name) { FunctionPointerUnmanagedCallingConventionSyntax functionPointerUnmanagedCallingConventionSyntax = SyntaxFactory.FunctionPointerUnmanagedCallingConvention(name); DiagnosticInfo[] diagnostics = ((GreenNode)this).GetDiagnostics(); if (diagnostics != null && diagnostics.Length != 0) { functionPointerUnmanagedCallingConventionSyntax = GreenNodeExtensions.WithDiagnosticsGreen(functionPointerUnmanagedCallingConventionSyntax, diagnostics); } SyntaxAnnotation[] annotations = ((GreenNode)this).GetAnnotations(); if (annotations != null && annotations.Length != 0) { functionPointerUnmanagedCallingConventionSyntax = GreenNodeExtensions.WithAnnotationsGreen(functionPointerUnmanagedCallingConventionSyntax, (IEnumerable)annotations); } return functionPointerUnmanagedCallingConventionSyntax; } return this; } internal override GreenNode SetDiagnostics(DiagnosticInfo[]? diagnostics) { return (GreenNode)(object)new FunctionPointerUnmanagedCallingConventionSyntax(base.Kind, name, diagnostics, ((GreenNode)this).GetAnnotations()); } internal override GreenNode SetAnnotations(SyntaxAnnotation[]? annotations) { return (GreenNode)(object)new FunctionPointerUnmanagedCallingConventionSyntax(base.Kind, name, ((GreenNode)this).GetDiagnostics(), annotations); } internal FunctionPointerUnmanagedCallingConventionSyntax(ObjectReader reader) : base(reader) { ((GreenNode)this).SlotCount = 1; SyntaxToken syntaxToken = (SyntaxToken)reader.ReadValue(); ((GreenNode)this).AdjustFlagsAndWidth((GreenNode)(object)syntaxToken); name = syntaxToken; } internal override void WriteTo(ObjectWriter writer) { ((GreenNode)this).WriteTo(writer); writer.WriteValue((IObjectWritable)(object)name); } static FunctionPointerUnmanagedCallingConventionSyntax() { ObjectBinder.RegisterTypeReader(typeof(FunctionPointerUnmanagedCallingConventionSyntax), (Func)((ObjectReader r) => (IObjectWritable)(object)new FunctionPointerUnmanagedCallingConventionSyntax(r))); } }