unit Myc.Ast; interface uses System.SysUtils, System.Classes, System.Generics.Collections, Myc.Data.Scalar, Myc.Data.Value, Myc.Data.Keyword, Myc.Ast.Nodes, // Contains TAstNodeKind, IAstNode, etc. Myc.Ast.Scope, Myc.Ast.Types; type // Record acting as a namespace for the factory functions. TAst = record public type TRegisterLibraryProc = reference to procedure(const Scope: IExecutionScope); private class var FLibraries: TList; class constructor Create; class destructor Destroy; public class procedure RegisterLibrary(const AProc: TRegisterLibraryProc); static; class function CreateScope(Parent: IExecutionScope; const Descriptor: IScopeDescriptor = nil): IExecutionScope; static; // A No-Operation node, used as a placeholder/stub (e.g., for UI drop targets). // This node is illegal in the compiler (Binder/TypeChecker will reject it). class function Nop: IAstNode; static; // --- Factory functions --- class function Constant(const AValue: TDataValue): IConstantNode; overload; static; class function Constant(const AValue: String): IConstantNode; overload; static; class function Keyword(const AName: string): IKeywordNode; static; class function Identifier(AName: string): IIdentifierNode; static; class function BinaryExpr(ALeft: IAstNode; AOperator: TScalar.TBinaryOp; ARight: IAstNode): IBinaryExpressionNode; static; class function UnaryExpr(const AOperator: TScalar.TUnaryOp; const ARight: IAstNode): IUnaryExpressionNode; static; class function IfExpr(const ACondition: IAstNode; const AThenBranch, AElseBranch: IAstNode): IIfExpressionNode; static; class function TernaryExpr(const ACondition: IAstNode; const AThenBranch, AElseBranch: IAstNode): ITernaryExpressionNode; static; class function LambdaExpr(const AParameters: TArray; const ABody: IAstNode): ILambdaExpressionNode; static; class function MacroDef( const AName: IIdentifierNode; const AParameters: TArray; const ABody: IAstNode ): IMacroDefinitionNode; static; class function Quasiquote(const AExpression: IAstNode): IQuasiquoteNode; static; class function Unquote(const AExpression: IAstNode): IUnquoteNode; static; class function UnquoteSplicing(const AExpression: IQuasiquoteNode): IUnquoteSplicingNode; static; class function FunctionCall(const ACallee: IAstNode; const AArguments: TArray): IFunctionCallNode; static; class function MacroExpansionNode( const AOriginalCallNode: IFunctionCallNode; const AExpandedBody: IAstNode ): IMacroExpansionNode; static; class function Recur(const AArguments: array of IAstNode): IRecurNode; static; class function Block(const AExpressions: array of IAstNode): IBlockExpressionNode; static; class function VarDecl(const AIdentifier: IIdentifierNode; AInitializer: IAstNode = nil): IVariableDeclarationNode; static; class function Assign(const AIdentifier: IIdentifierNode; const AValue: IAstNode): IAssignmentNode; static; class function AssignResult(const AValue: IAstNode): IAssignmentNode; static; deprecated; class function Indexer(const ABase: IAstNode; const AIndex: IAstNode): IIndexerNode; static; class function MemberAccess(const ABase: IAstNode; const AMember: IKeywordNode): IMemberAccessNode; static; class function RecordLiteral(const AFields: TArray): IRecordLiteralNode; static; class function CreateSeries(const ADefinition: String): ICreateSeriesNode; static; class function AddSeriesItem( const ASeries: IIdentifierNode; const AValue: IAstNode; const ALookback: IAstNode = nil ): IAddSeriesItemNode; static; class function SeriesLength(const ASeries: IIdentifierNode): ISeriesLengthNode; static; class function BoundIdentifier(AName: string; const Address: TResolvedAddress): IBoundIdentifierNode; static; end; // Common base class for AST nodes to reduce boilerplate. TAstNode = class(TInterfacedObject, IAstNode) private function GetKind: TAstNodeKind; virtual; abstract; public constructor Create; function Accept(const Visitor: IAstVisitor): TDataValue; virtual; abstract; // --- As... Accessors Implementation --- function AsConstant: IConstantNode; virtual; function AsIdentifier: IIdentifierNode; virtual; function AsKeyword: IKeywordNode; virtual; function AsBinaryExpression: IBinaryExpressionNode; virtual; function AsUnaryExpression: IUnaryExpressionNode; virtual; function AsIfExpression: IIfExpressionNode; virtual; function AsTernaryExpression: ITernaryExpressionNode; virtual; function AsLambdaExpression: ILambdaExpressionNode; virtual; function AsFunctionCall: IFunctionCallNode; virtual; function AsMacroExpansion: IMacroExpansionNode; virtual; function AsBlockExpression: IBlockExpressionNode; virtual; function AsVariableDeclaration: IVariableDeclarationNode; virtual; function AsAssignment: IAssignmentNode; virtual; function AsMacroDefinition: IMacroDefinitionNode; virtual; function AsQuasiquote: IQuasiquoteNode; virtual; function AsUnquote: IUnquoteNode; virtual; function AsUnquoteSplicing: IUnquoteSplicingNode; virtual; function AsIndexer: IIndexerNode; virtual; function AsMemberAccess: IMemberAccessNode; virtual; function AsRecordLiteral: IRecordLiteralNode; virtual; function AsCreateSeries: ICreateSeriesNode; virtual; function AsAddSeriesItem: IAddSeriesItemNode; virtual; function AsSeriesLength: ISeriesLengthNode; virtual; function AsRecur: IRecurNode; virtual; function AsNop: INopNode; virtual; // Added Nop function AsBoundIdentifierNode: IBoundIdentifierNode; virtual; function AsTypedNode: IAstTypedNode; virtual; property Kind: TAstNodeKind read GetKind; end; TAstTypedNode = class(TAstNode, IAstTypedNode) private FStaticType: IStaticType; function GetStaticType: IStaticType; public constructor Create(const AStaticType: IStaticType); function AsTypedNode: IAstTypedNode; override; property StaticType: IStaticType read GetStaticType; end; TConstantNode = class(TAstTypedNode, IConstantNode) private FValue: TDataValue; function GetValue: TDataValue; function GetKind: TAstNodeKind; override; public constructor Create(const AValue: TDataValue; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsConstant: IConstantNode; override; property Value: TDataValue read GetValue; // Value ist immutable end; TIdentifierNode = class(TAstTypedNode, IIdentifierNode) private FName: string; function GetName: string; function GetKind: TAstNodeKind; override; public constructor Create(const AName: string; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsIdentifier: IIdentifierNode; override; property Name: string read FName; // Name ist immutable end; TBoundIdentifierNode = class(TIdentifierNode, IBoundIdentifierNode) private FAddress: TResolvedAddress; function GetAddress: TResolvedAddress; function GetKind: TAstNodeKind; override; public constructor Create(const AName: string; const AAddress: TResolvedAddress; const AStaticType: IStaticType); function AsBoundIdentifierNode: IBoundIdentifierNode; override; property Address: TResolvedAddress read GetAddress; end; TKeywordNode = class(TAstTypedNode, IKeywordNode) private FValue: IKeyword; function GetValue: IKeyword; function GetKind: TAstNodeKind; override; public constructor Create(const AValue: IKeyword); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsKeyword: IKeywordNode; override; property Value: IKeyword read FValue; // Value ist immutable end; TBinaryExpressionNode = class(TAstTypedNode, IBinaryExpressionNode) private FLeft: IAstNode; FOperator: TScalar.TBinaryOp; FRight: IAstNode; function GetLeft: IAstNode; function GetOperator: TScalar.TBinaryOp; function GetRight: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const ALeft: IAstNode; AOperator: TScalar.TBinaryOp; const ARight: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsBinaryExpression: IBinaryExpressionNode; override; property Left: IAstNode read FLeft write FLeft; // Writeable property Operator: TScalar.TBinaryOp read FOperator write FOperator; // Writeable property Right: IAstNode read FRight write FRight; // Writeable end; TUnaryExpressionNode = class(TAstTypedNode, IUnaryExpressionNode) private FOperator: TScalar.TUnaryOp; FRight: IAstNode; function GetOperator: TScalar.TUnaryOp; function GetRight: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AOperator: TScalar.TUnaryOp; const ARight: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsUnaryExpression: IUnaryExpressionNode; override; property Operator: TScalar.TUnaryOp read FOperator write FOperator; // Writeable property Right: IAstNode read FRight write FRight; // Writeable end; TIfExpressionNode = class(TAstTypedNode, IIfExpressionNode) private FCondition: IAstNode; FThenBranch: IAstNode; FElseBranch: IAstNode; function GetCondition: IAstNode; function GetThenBranch: IAstNode; function GetElseBranch: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const ACondition, AThenBranch, AElseBranch: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsIfExpression: IIfExpressionNode; override; property Condition: IAstNode read FCondition write FCondition; // Writeable property ThenBranch: IAstNode read FThenBranch write FThenBranch; // Writeable property ElseBranch: IAstNode read FElseBranch write FElseBranch; // Writeable end; TTernaryExpressionNode = class(TAstTypedNode, ITernaryExpressionNode) private FCondition: IAstNode; FThenBranch: IAstNode; FElseBranch: IAstNode; function GetCondition: IAstNode; function GetThenBranch: IAstNode; function GetElseBranch: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const ACondition, AThenBranch, AElseBranch: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsTernaryExpression: ITernaryExpressionNode; override; property Condition: IAstNode read FCondition write FCondition; // Writeable property ThenBranch: IAstNode read FThenBranch write FThenBranch; // Writeable property ElseBranch: IAstNode read FElseBranch write FElseBranch; // Writeable end; TLambdaExpressionNode = class(TAstTypedNode, ILambdaExpressionNode) private FParameters: TArray; FBody: IAstNode; FScopeDescriptor: IScopeDescriptor; FUpvalues: TArray; FHasNestedLambdas: Boolean; function GetParameters: TArray; function GetBody: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AParameters: TArray; const ABody: IAstNode; const AStaticType: IStaticType); destructor Destroy; override; function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsLambdaExpression: ILambdaExpressionNode; override; property Body: IAstNode read FBody write FBody; // Writeable property Parameters: TArray read FParameters write FParameters; property ScopeDescriptor: IScopeDescriptor read FScopeDescriptor write FScopeDescriptor; property Upvalues: TArray read FUpvalues write FUpvalues; property HasNestedLambdas: Boolean read FHasNestedLambdas write FHasNestedLambdas; end; TMacroDefinitionNode = class(TAstNode, IMacroDefinitionNode) private FName: IIdentifierNode; FParameters: TArray; FBody: IAstNode; function GetName: IIdentifierNode; function GetParameters: TArray; function GetBody: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AName: IIdentifierNode; const AParameters: TArray; const ABody: IAstNode); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsMacroDefinition: IMacroDefinitionNode; override; property Name: IIdentifierNode read GetName write FName; // Writeable property Parameters: TArray read FParameters write FParameters; property Body: IAstNode read FBody write FBody; // Writeable end; TQuasiquoteNode = class(TAstNode, IQuasiquoteNode) private FExpression: IAstNode; function GetExpression: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AExpression: IAstNode); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsQuasiquote: IQuasiquoteNode; override; property Expression: IAstNode read GetExpression write FExpression; // Writeable end; TUnquoteNode = class(TAstNode, IUnquoteNode) private FExpression: IAstNode; function GetExpression: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AExpression: IAstNode); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsUnquote: IUnquoteNode; override; property Expression: IAstNode read GetExpression write FExpression; // Writeable end; TUnquoteSplicingNode = class(TAstNode, IUnquoteSplicingNode) private FExpression: IQuasiquoteNode; function GetExpression: IQuasiquoteNode; function GetKind: TAstNodeKind; override; public constructor Create(const AExpression: IQuasiquoteNode); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsUnquoteSplicing: IUnquoteSplicingNode; override; property Expression: IQuasiquoteNode read GetExpression write FExpression; end; TFunctionCallNode = class(TAstTypedNode, IFunctionCallNode) private FCallee: IAstNode; FArguments: TArray; FIsTailCall: Boolean; function GetCallee: IAstNode; function GetArguments: TArray; function GetKind: TAstNodeKind; override; public constructor Create(const ACallee: IAstNode; const AArguments: TArray; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsFunctionCall: IFunctionCallNode; override; property Callee: IAstNode read FCallee write FCallee; // Writeable property Arguments: TArray read FArguments write FArguments; // Writeable property IsTailCall: Boolean read FIsTailCall write FIsTailCall; end; TRecurNode = class(TAstTypedNode, IRecurNode) private FArguments: TArray; function GetArguments: TArray; function GetKind: TAstNodeKind; override; public constructor Create(const AArguments: TArray; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsRecur: IRecurNode; override; property Arguments: TArray read FArguments write FArguments; // Writeable end; TMacroExpansionNode = class(TFunctionCallNode, IMacroExpansionNode) private FExpandedBody: IAstNode; function GetExpandedBody: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AOriginalCallNode: IFunctionCallNode; const AExpandedBody: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsMacroExpansion: IMacroExpansionNode; override; property ExpandedBody: IAstNode read FExpandedBody write FExpandedBody; // Writeable end; TBlockExpressionNode = class(TAstTypedNode, IBlockExpressionNode) private FExpressions: TArray; function GetExpressions: TArray; function GetKind: TAstNodeKind; override; public constructor Create(const AExpressions: array of IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsBlockExpression: IBlockExpressionNode; override; property Expressions: TArray read FExpressions write FExpressions; // Writeable end; TVariableDeclarationNode = class(TAstTypedNode, IVariableDeclarationNode) private FIdentifier: IIdentifierNode; FInitializer: IAstNode; FIsBoxed: Boolean; function GetIdentifier: IIdentifierNode; function GetInitializer: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AIdentifier: IIdentifierNode; AInitializer: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsVariableDeclaration: IVariableDeclarationNode; override; property Identifier: IIdentifierNode read FIdentifier write FIdentifier; // Writeable property Initializer: IAstNode read FInitializer write FInitializer; // Writeable property IsBoxed: Boolean read FIsBoxed write FIsBoxed; end; TAssignmentNode = class(TAstTypedNode, IAssignmentNode) private FIdentifier: IIdentifierNode; FValue: IAstNode; function GetIdentifier: IIdentifierNode; function GetValue: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const AIdentifier: IIdentifierNode; const AValue: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsAssignment: IAssignmentNode; override; property Identifier: IIdentifierNode read FIdentifier write FIdentifier; property Value: IAstNode read FValue write FValue; // Writeable end; TIndexerNode = class(TAstTypedNode, IIndexerNode) private FBase: IAstNode; FIndex: IAstNode; function GetBase: IAstNode; function GetIndex: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create(const ABase: IAstNode; const AIndex: IAstNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsIndexer: IIndexerNode; override; property Base: IAstNode read FBase write FBase; // Writeable property Index: IAstNode read FIndex write FIndex; // Writeable end; TMemberAccessNode = class(TAstTypedNode, IMemberAccessNode) private FBase: IAstNode; FMember: IKeywordNode; function GetBase: IAstNode; function GetMember: IKeywordNode; function GetKind: TAstNodeKind; override; public constructor Create(const ABase: IAstNode; const AMember: IKeywordNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsMemberAccess: IMemberAccessNode; override; property Base: IAstNode read FBase write FBase; // Writeable property Member: IKeywordNode read FMember write FMember; end; TRecordLiteralNode = class(TAstTypedNode, IRecordLiteralNode) private FFields: TArray; FDefinition: IScalarRecordDefinition; function GetFields: TArray; function GetKind: TAstNodeKind; override; public constructor Create(const AFields: TArray; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsRecordLiteral: IRecordLiteralNode; override; property Fields: TArray read FFields write FFields; // Writeable property Definition: IScalarRecordDefinition read FDefinition write FDefinition; end; TGenericRecordLiteralNode = class(TRecordLiteralNode, IRecordLiteralNode) private FGenericDefinition: IGenericRecordDefinition; public constructor Create(const AFields: TArray; const AStaticType: IStaticType); property GenericDefinition: IGenericRecordDefinition read FGenericDefinition write FGenericDefinition; end; TCreateSeriesNode = class(TAstTypedNode, ICreateSeriesNode) private FDefinition: String; function GetDefinition: String; function GetKind: TAstNodeKind; override; public constructor Create(const ADefinition: String; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsCreateSeries: ICreateSeriesNode; override; end; TAddSeriesItemNode = class(TAstTypedNode, IAddSeriesItemNode) private FSeries: IIdentifierNode; FValue: IAstNode; FLookback: IAstNode; function GetSeries: IIdentifierNode; function GetValue: IAstNode; function GetLookback: IAstNode; function GetKind: TAstNodeKind; override; public constructor Create( const ASeries: IIdentifierNode; const AValue: IAstNode; const ALookback: IAstNode; const AStaticType: IStaticType ); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsAddSeriesItem: IAddSeriesItemNode; override; property Series: IIdentifierNode read FSeries write FSeries; property Value: IAstNode read FValue write FValue; // Writeable property Lookback: IAstNode read FLookback write FLookback; // Writeable end; TSeriesLengthNode = class(TAstTypedNode, ISeriesLengthNode) private FSeries: IIdentifierNode; function GetSeries: IIdentifierNode; function GetKind: TAstNodeKind; override; public constructor Create(const ASeries: IIdentifierNode; const AStaticType: IStaticType); function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsSeriesLength: ISeriesLengthNode; override; property Series: IIdentifierNode read FSeries write FSeries; end; implementation uses System.Generics.Defaults; // Added Nop type TNopNode = class(TAstNode, INopNode) private function GetKind: TAstNodeKind; override; public constructor Create; function Accept(const Visitor: IAstVisitor): TDataValue; override; function AsNop: INopNode; override; end; { TAst } class function TAst.CreateScope(Parent: IExecutionScope; const Descriptor: IScopeDescriptor): IExecutionScope; begin if Assigned(Descriptor) then Result := Descriptor.CreateScope(Parent) else Result := TScope.CreateScope(Parent, nil, nil); // Register libraries in the *new* scope for var libProc in FLibraries do libProc(Result); end; class function TAst.CreateSeries(const ADefinition: String): ICreateSeriesNode; begin Result := TCreateSeriesNode.Create(ADefinition, TTypes.Unknown); end; class function TAst.AddSeriesItem( const ASeries: IIdentifierNode; const AValue: IAstNode; const ALookback: IAstNode = nil ): IAddSeriesItemNode; begin Result := TAddSeriesItemNode.Create(ASeries, AValue, ALookback, TTypes.Unknown); end; class function TAst.SeriesLength(const ASeries: IIdentifierNode): ISeriesLengthNode; begin Result := TSeriesLengthNode.Create(ASeries, TTypes.Unknown); end; class function TAst.Assign(const AIdentifier: IIdentifierNode; const AValue: IAstNode): IAssignmentNode; begin Result := TAssignmentNode.Create(AIdentifier, AValue, TTypes.Unknown); end; class function TAst.AssignResult(const AValue: IAstNode): IAssignmentNode; begin // The parser ensures 'Result' is a valid identifier, so we create one. // The binder will resolve it. Result := TAssignmentNode.Create(TAst.Identifier('Result'), AValue, TTypes.Unknown); end; class function TAst.BinaryExpr(ALeft: IAstNode; AOperator: TScalar.TBinaryOp; ARight: IAstNode): IBinaryExpressionNode; begin Result := TBinaryExpressionNode.Create(ALeft, AOperator, ARight, TTypes.Unknown); end; class function TAst.Block(const AExpressions: array of IAstNode): IBlockExpressionNode; begin Result := TBlockExpressionNode.Create(AExpressions, TTypes.Unknown); end; class function TAst.Constant(const AValue: TDataValue): IConstantNode; begin Result := TConstantNode.Create(AValue, TTypes.Unknown); end; class function TAst.Constant(const AValue: String): IConstantNode; begin Result := TConstantNode.Create(AValue, TTypes.Unknown); end; class constructor TAst.Create; begin FLibraries := TList.Create; end; class destructor TAst.Destroy; begin FLibraries.Free; end; class function TAst.BoundIdentifier(AName: string; const Address: TResolvedAddress): IBoundIdentifierNode; begin Result := TBoundIdentifierNode.Create(AName, Address, TTypes.Unknown); end; class procedure TAst.RegisterLibrary(const AProc: TRegisterLibraryProc); begin FLibraries.Add(AProc); end; class function TAst.FunctionCall(const ACallee: IAstNode; const AArguments: TArray): IFunctionCallNode; begin Result := TFunctionCallNode.Create(ACallee, AArguments, TTypes.Unknown); end; class function TAst.Identifier(AName: string): IIdentifierNode; begin Result := TIdentifierNode.Create(AName, TTypes.Unknown); end; class function TAst.IfExpr(const ACondition: IAstNode; const AThenBranch, AElseBranch: IAstNode): IIfExpressionNode; begin Result := TIfExpressionNode.Create(ACondition, AThenBranch, AElseBranch, TTypes.Unknown); end; class function TAst.Indexer(const ABase: IAstNode; const AIndex: IAstNode): IIndexerNode; begin Result := TIndexerNode.Create(ABase, AIndex, TTypes.Unknown); end; class function TAst.Keyword(const AName: string): IKeywordNode; begin Result := TKeywordNode.Create(TKeywordRegistry.Intern(AName)); end; class function TAst.LambdaExpr(const AParameters: TArray; const ABody: IAstNode): ILambdaExpressionNode; begin Result := TLambdaExpressionNode.Create(AParameters, ABody, TTypes.Unknown); end; class function TAst.MacroDef( const AName: IIdentifierNode; const AParameters: TArray; const ABody: IAstNode ): IMacroDefinitionNode; begin Result := TMacroDefinitionNode.Create(AName, AParameters, ABody); end; class function TAst.MacroExpansionNode(const AOriginalCallNode: IFunctionCallNode; const AExpandedBody: IAstNode): IMacroExpansionNode; begin Result := TMacroExpansionNode.Create(AOriginalCallNode, AExpandedBody, TTypes.Unknown); end; class function TAst.MemberAccess(const ABase: IAstNode; const AMember: IKeywordNode): IMemberAccessNode; begin Result := TMemberAccessNode.Create(ABase, AMember, TTypes.Unknown); end; class function TAst.Nop: IAstNode; begin // Factory function for the new Nop node Result := TNopNode.Create; end; class function TAst.Quasiquote(const AExpression: IAstNode): IQuasiquoteNode; begin Result := TQuasiquoteNode.Create(AExpression); end; class function TAst.Recur(const AArguments: array of IAstNode): IRecurNode; begin var args: TArray; SetLength(args, Length(AArguments)); for var i := 0 to High(AArguments) do args[i] := AArguments[i]; Result := TRecurNode.Create(args, TTypes.Unknown); end; class function TAst.RecordLiteral(const AFields: TArray): IRecordLiteralNode; begin // By default, the parser creates the generic (most flexible) node type. // The TypeChecker (Phase 3) is responsible for "lowering" this to a // TRecordLiteralNode if it determines all fields are scalar. Result := TGenericRecordLiteralNode.Create(AFields, TTypes.Unknown); end; class function TAst.TernaryExpr(const ACondition: IAstNode; const AThenBranch, AElseBranch: IAstNode): ITernaryExpressionNode; begin Result := TTernaryExpressionNode.Create(ACondition, AThenBranch, AElseBranch, TTypes.Unknown); end; class function TAst.UnaryExpr(const AOperator: TScalar.TUnaryOp; const ARight: IAstNode): IUnaryExpressionNode; begin Result := TUnaryExpressionNode.Create(AOperator, ARight, TTypes.Unknown); end; class function TAst.Unquote(const AExpression: IAstNode): IUnquoteNode; begin Result := TUnquoteNode.Create(AExpression); end; class function TAst.UnquoteSplicing(const AExpression: IQuasiquoteNode): IUnquoteSplicingNode; begin Result := TUnquoteSplicingNode.Create(AExpression); end; class function TAst.VarDecl(const AIdentifier: IIdentifierNode; AInitializer: IAstNode = nil): IVariableDeclarationNode; begin Result := TVariableDeclarationNode.Create(AIdentifier, AInitializer, TTypes.Unknown); end; { TNopNode } constructor TNopNode.Create; begin inherited Create; end; function TNopNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitNop(Self); end; function TNopNode.AsNop: INopNode; begin Result := Self; end; function TNopNode.GetKind: TAstNodeKind; begin Result := akNop; end; { TAstNode } constructor TAstNode.Create; begin inherited Create; end; function TAstNode.AsAddSeriesItem: IAddSeriesItemNode; begin raise ETypeException.Create('Node is not an AddSeriesItem'); end; function TAstNode.AsAssignment: IAssignmentNode; begin raise ETypeException.Create('Node is not an Assignment'); end; function TAstNode.AsBinaryExpression: IBinaryExpressionNode; begin raise ETypeException.Create('Node is not a BinaryExpression'); end; function TAstNode.AsBlockExpression: IBlockExpressionNode; begin raise ETypeException.Create('Node is not a BlockExpression'); end; function TAstNode.AsBoundIdentifierNode: IBoundIdentifierNode; begin raise ETypeException.Create('Node is not a bound identifier'); end; function TAstNode.AsConstant: IConstantNode; begin raise ETypeException.Create('Node is not a Constant'); end; function TAstNode.AsCreateSeries: ICreateSeriesNode; begin raise ETypeException.Create('Node is not a CreateSeries'); end; function TAstNode.AsFunctionCall: IFunctionCallNode; begin raise ETypeException.Create('Node is not a FunctionCall'); end; function TAstNode.AsIdentifier: IIdentifierNode; begin raise ETypeException.Create('Node is not an Identifier'); end; function TAstNode.AsIfExpression: IIfExpressionNode; begin raise ETypeException.Create('Node is not an IfExpression'); end; function TAstNode.AsIndexer: IIndexerNode; begin raise ETypeException.Create('Node is not an Indexer'); end; function TAstNode.AsKeyword: IKeywordNode; begin raise ETypeException.Create('Node is not a Keyword'); end; function TAstNode.AsLambdaExpression: ILambdaExpressionNode; begin raise ETypeException.Create('Node is not a LambdaExpression'); end; function TAstNode.AsMacroDefinition: IMacroDefinitionNode; begin raise ETypeException.Create('Node is not a MacroDefinition'); end; function TAstNode.AsMacroExpansion: IMacroExpansionNode; begin raise ETypeException.Create('Node is not a MacroExpansion'); end; function TAstNode.AsMemberAccess: IMemberAccessNode; begin raise ETypeException.Create('Node is not a MemberAccess'); end; function TAstNode.AsNop: INopNode; begin // Added Nop implementation raise ETypeException.Create('Node is not a Nop'); end; function TAstNode.AsQuasiquote: IQuasiquoteNode; begin raise ETypeException.Create('Node is not a Quasiquote'); end; function TAstNode.AsRecordLiteral: IRecordLiteralNode; begin raise ETypeException.Create('Node is not a RecordLiteral'); end; function TAstNode.AsRecur: IRecurNode; begin raise ETypeException.Create('Node is not a Recur'); end; function TAstNode.AsSeriesLength: ISeriesLengthNode; begin raise ETypeException.Create('Node is not a SeriesLength'); end; function TAstNode.AsTernaryExpression: ITernaryExpressionNode; begin raise ETypeException.Create('Node is not a TernaryExpression'); end; function TAstNode.AsTypedNode: IAstTypedNode; begin raise ETypeException.Create('Node has no type'); end; function TAstNode.AsUnaryExpression: IUnaryExpressionNode; begin raise ETypeException.Create('Node is not an UnaryExpression'); end; function TAstNode.AsUnquote: IUnquoteNode; begin raise ETypeException.Create('Node is not an Unquote'); end; function TAstNode.AsUnquoteSplicing: IUnquoteSplicingNode; begin raise ETypeException.Create('Node is not an UnquoteSplicing'); end; function TAstNode.AsVariableDeclaration: IVariableDeclarationNode; begin raise ETypeException.Create('Node is not a VariableDeclaration'); end; { TAstTypedNode } constructor TAstTypedNode.Create(const AStaticType: IStaticType); begin inherited Create; FStaticType := AStaticType; Assert(FStaticType <> nil); end; function TAstTypedNode.AsTypedNode: IAstTypedNode; begin Result := Self; end; function TAstTypedNode.GetStaticType: IStaticType; begin Result := FStaticType; end; { TConstantNode } constructor TConstantNode.Create(const AValue: TDataValue; const AStaticType: IStaticType); begin inherited Create(AStaticType); FValue := AValue; end; function TConstantNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitConstant(Self); end; function TConstantNode.AsConstant: IConstantNode; begin Result := Self; end; function TConstantNode.GetValue: TDataValue; begin Result := FValue; end; function TConstantNode.GetKind: TAstNodeKind; begin Result := akConstant; end; { TIdentifierNode } constructor TIdentifierNode.Create(const AName: string; const AStaticType: IStaticType); begin inherited Create(AStaticType); FName := AName; end; function TIdentifierNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitIdentifier(Self); end; function TIdentifierNode.AsIdentifier: IIdentifierNode; begin Result := Self; end; function TIdentifierNode.GetName: string; begin Result := FName; end; function TIdentifierNode.GetKind: TAstNodeKind; begin Result := akIdentifier; end; { TKeywordNode } constructor TKeywordNode.Create(const AValue: IKeyword); begin inherited Create(TTypes.Keyword); FValue := AValue; end; function TKeywordNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitKeyword(Self); end; function TKeywordNode.AsKeyword: IKeywordNode; begin Result := Self; end; function TKeywordNode.GetValue: IKeyword; begin Result := FValue; end; function TKeywordNode.GetKind: TAstNodeKind; begin Result := akKeyword; end; { TBinaryExpressionNode } constructor TBinaryExpressionNode.Create( const ALeft: IAstNode; AOperator: TScalar.TBinaryOp; const ARight: IAstNode; const AStaticType: IStaticType ); begin inherited Create(AStaticType); FLeft := ALeft; FOperator := AOperator; FRight := ARight; end; function TBinaryExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitBinaryExpression(Self); end; function TBinaryExpressionNode.AsBinaryExpression: IBinaryExpressionNode; begin Result := Self; end; function TBinaryExpressionNode.GetLeft: IAstNode; begin Result := FLeft; end; function TBinaryExpressionNode.GetOperator: TScalar.TBinaryOp; begin Result := FOperator; end; function TBinaryExpressionNode.GetRight: IAstNode; begin Result := FRight; end; function TBinaryExpressionNode.GetKind: TAstNodeKind; begin Result := akBinaryExpression; end; { TUnaryExpressionNode } constructor TUnaryExpressionNode.Create(const AOperator: TScalar.TUnaryOp; const ARight: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FOperator := AOperator; FRight := ARight; end; function TUnaryExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitUnaryExpression(Self); end; function TUnaryExpressionNode.AsUnaryExpression: IUnaryExpressionNode; begin Result := Self; end; function TUnaryExpressionNode.GetOperator: TScalar.TUnaryOp; begin Result := FOperator; end; function TUnaryExpressionNode.GetRight: IAstNode; begin Result := FRight; end; function TUnaryExpressionNode.GetKind: TAstNodeKind; begin Result := akUnaryExpression; end; { TIfExpressionNode } constructor TIfExpressionNode.Create(const ACondition, AThenBranch, AElseBranch: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FCondition := ACondition; FThenBranch := AThenBranch; FElseBranch := AElseBranch; end; function TIfExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitIfExpression(Self); end; function TIfExpressionNode.AsIfExpression: IIfExpressionNode; begin Result := Self; end; function TIfExpressionNode.GetCondition: IAstNode; begin Result := FCondition; end; function TIfExpressionNode.GetElseBranch: IAstNode; begin Result := FElseBranch; end; function TIfExpressionNode.GetThenBranch: IAstNode; begin Result := FThenBranch; end; function TIfExpressionNode.GetKind: TAstNodeKind; begin Result := akIfExpression; end; { TTernaryExpressionNode } constructor TTernaryExpressionNode.Create(const ACondition, AThenBranch, AElseBranch: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FCondition := ACondition; FThenBranch := AThenBranch; FElseBranch := AElseBranch; end; function TTernaryExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitTernaryExpression(Self); end; function TTernaryExpressionNode.AsTernaryExpression: ITernaryExpressionNode; begin Result := Self; end; function TTernaryExpressionNode.GetCondition: IAstNode; begin Result := FCondition; end; function TTernaryExpressionNode.GetElseBranch: IAstNode; begin Result := FElseBranch; end; function TTernaryExpressionNode.GetThenBranch: IAstNode; begin Result := FThenBranch; end; function TTernaryExpressionNode.GetKind: TAstNodeKind; begin Result := akTernaryExpression; end; { TLambdaExpressionNode } constructor TLambdaExpressionNode.Create(const AParameters: TArray; const ABody: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FParameters := AParameters; FBody := ABody; end; destructor TLambdaExpressionNode.Destroy; begin // FScopeDescriptor is an interface, managed by ARC inherited; end; function TLambdaExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitLambdaExpression(Self); end; function TLambdaExpressionNode.AsLambdaExpression: ILambdaExpressionNode; begin Result := Self; end; function TLambdaExpressionNode.GetBody: IAstNode; begin Result := FBody; end; function TLambdaExpressionNode.GetParameters: TArray; begin Result := FParameters; end; function TLambdaExpressionNode.GetKind: TAstNodeKind; begin Result := akLambdaExpression; end; { TMacroDefinitionNode } constructor TMacroDefinitionNode.Create(const AName: IIdentifierNode; const AParameters: TArray; const ABody: IAstNode); begin inherited Create; FName := AName; FParameters := AParameters; FBody := ABody; end; function TMacroDefinitionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitMacroDefinition(Self); end; function TMacroDefinitionNode.AsMacroDefinition: IMacroDefinitionNode; begin Result := Self; end; function TMacroDefinitionNode.GetBody: IAstNode; begin Result := FBody; end; function TMacroDefinitionNode.GetName: IIdentifierNode; begin Result := FName; end; function TMacroDefinitionNode.GetParameters: TArray; begin Result := FParameters; end; function TMacroDefinitionNode.GetKind: TAstNodeKind; begin Result := akMacroDefinition; end; { TQuasiquoteNode } constructor TQuasiquoteNode.Create(const AExpression: IAstNode); begin inherited Create; FExpression := AExpression; end; function TQuasiquoteNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitQuasiquote(Self); end; function TQuasiquoteNode.AsQuasiquote: IQuasiquoteNode; begin Result := Self; end; function TQuasiquoteNode.GetExpression: IAstNode; begin Result := FExpression; end; function TQuasiquoteNode.GetKind: TAstNodeKind; begin Result := akQuasiquote; end; { TUnquoteNode } constructor TUnquoteNode.Create(const AExpression: IAstNode); begin inherited Create; FExpression := AExpression; end; function TUnquoteNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitUnquote(Self); end; function TUnquoteNode.AsUnquote: IUnquoteNode; begin Result := Self; end; function TUnquoteNode.GetExpression: IAstNode; begin Result := FExpression; end; function TUnquoteNode.GetKind: TAstNodeKind; begin Result := akUnquote; end; { TUnquoteSplicingNode } constructor TUnquoteSplicingNode.Create(const AExpression: IQuasiquoteNode); begin inherited Create; FExpression := AExpression; end; function TUnquoteSplicingNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitUnquoteSplicing(Self); end; function TUnquoteSplicingNode.AsUnquoteSplicing: IUnquoteSplicingNode; begin Result := Self; end; function TUnquoteSplicingNode.GetExpression: IQuasiquoteNode; begin Result := FExpression; end; function TUnquoteSplicingNode.GetKind: TAstNodeKind; begin Result := akUnquoteSplicing; end; { TFunctionCallNode } constructor TFunctionCallNode.Create(const ACallee: IAstNode; const AArguments: TArray; const AStaticType: IStaticType); begin inherited Create(AStaticType); FCallee := ACallee; FArguments := AArguments; FIsTailCall := False; end; function TFunctionCallNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitFunctionCall(Self); end; function TFunctionCallNode.AsFunctionCall: IFunctionCallNode; begin Result := Self; end; function TFunctionCallNode.GetArguments: TArray; begin Result := FArguments; end; function TFunctionCallNode.GetCallee: IAstNode; begin Result := FCallee; end; function TFunctionCallNode.GetKind: TAstNodeKind; begin Result := akFunctionCall; end; { TMacroExpansionNode } constructor TMacroExpansionNode.Create( const AOriginalCallNode: IFunctionCallNode; const AExpandedBody: IAstNode; const AStaticType: IStaticType ); begin // Copy properties from the original call node inherited Create(AOriginalCallNode.Callee, AOriginalCallNode.Arguments, AStaticType); FExpandedBody := AExpandedBody; end; function TMacroExpansionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitMacroExpansionNode(Self); end; function TMacroExpansionNode.AsMacroExpansion: IMacroExpansionNode; begin Result := Self; end; function TMacroExpansionNode.GetExpandedBody: IAstNode; begin Result := FExpandedBody; end; function TMacroExpansionNode.GetKind: TAstNodeKind; begin Result := akMacroExpansion; end; { TRecurNode } constructor TRecurNode.Create(const AArguments: TArray; const AStaticType: IStaticType); begin inherited Create(AStaticType); FArguments := AArguments; end; function TRecurNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitRecurNode(Self); end; function TRecurNode.AsRecur: IRecurNode; begin Result := Self; end; function TRecurNode.GetArguments: TArray; begin Result := FArguments; end; function TRecurNode.GetKind: TAstNodeKind; begin Result := akRecur; end; { TBlockExpressionNode } constructor TBlockExpressionNode.Create(const AExpressions: array of IAstNode; const AStaticType: IStaticType); var i: Integer; begin inherited Create(AStaticType); SetLength(FExpressions, Length(AExpressions)); for i := 0 to High(AExpressions) do FExpressions[i] := AExpressions[i]; end; function TBlockExpressionNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitBlockExpression(Self); end; function TBlockExpressionNode.AsBlockExpression: IBlockExpressionNode; begin Result := Self; end; function TBlockExpressionNode.GetExpressions: TArray; begin Result := FExpressions; end; function TBlockExpressionNode.GetKind: TAstNodeKind; begin Result := akBlockExpression; end; { TVariableDeclarationNode } constructor TVariableDeclarationNode.Create(const AIdentifier: IIdentifierNode; AInitializer: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FIdentifier := AIdentifier; FInitializer := AInitializer; FIsBoxed := False; end; function TVariableDeclarationNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitVariableDeclaration(Self); end; function TVariableDeclarationNode.AsVariableDeclaration: IVariableDeclarationNode; begin Result := Self; end; function TVariableDeclarationNode.GetIdentifier: IIdentifierNode; begin Result := FIdentifier; end; function TVariableDeclarationNode.GetInitializer: IAstNode; begin Result := FInitializer; end; function TVariableDeclarationNode.GetKind: TAstNodeKind; begin Result := akVariableDeclaration; end; { TAssignmentNode } constructor TAssignmentNode.Create(const AIdentifier: IIdentifierNode; const AValue: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FIdentifier := AIdentifier; FValue := AValue; end; function TAssignmentNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitAssignment(Self); end; function TAssignmentNode.AsAssignment: IAssignmentNode; begin Result := Self; end; function TAssignmentNode.GetIdentifier: IIdentifierNode; begin Result := FIdentifier; end; function TAssignmentNode.GetValue: IAstNode; begin Result := FValue; end; function TAssignmentNode.GetKind: TAstNodeKind; begin Result := akAssignment; end; { TIndexerNode } constructor TIndexerNode.Create(const ABase: IAstNode; const AIndex: IAstNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FBase := ABase; FIndex := AIndex; end; function TIndexerNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitIndexer(Self); end; function TIndexerNode.AsIndexer: IIndexerNode; begin Result := Self; end; function TIndexerNode.GetBase: IAstNode; begin Result := FBase; end; function TIndexerNode.GetIndex: IAstNode; begin Result := FIndex; end; function TIndexerNode.GetKind: TAstNodeKind; begin Result := akIndexer; end; { TMemberAccessNode } constructor TMemberAccessNode.Create(const ABase: IAstNode; const AMember: IKeywordNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FBase := ABase; FMember := AMember; end; function TMemberAccessNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitMemberAccess(Self); end; function TMemberAccessNode.AsMemberAccess: IMemberAccessNode; begin Result := Self; end; function TMemberAccessNode.GetBase: IAstNode; begin Result := FBase; end; function TMemberAccessNode.GetMember: IKeywordNode; begin Result := FMember; end; function TMemberAccessNode.GetKind: TAstNodeKind; begin Result := akMemberAccess; end; { TRecordLiteralNode } constructor TRecordLiteralNode.Create(const AFields: TArray; const AStaticType: IStaticType); begin inherited Create(AStaticType); FFields := AFields; end; function TRecordLiteralNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitRecordLiteral(Self); end; function TRecordLiteralNode.AsRecordLiteral: IRecordLiteralNode; begin Result := Self; end; function TRecordLiteralNode.GetFields: TArray; begin Result := FFields; end; function TRecordLiteralNode.GetKind: TAstNodeKind; begin Result := akRecordLiteral; end; { TGenericRecordLiteralNode } constructor TGenericRecordLiteralNode.Create(const AFields: TArray; const AStaticType: IStaticType); begin inherited Create(AFields, AStaticType); end; { TCreateSeriesNode } constructor TCreateSeriesNode.Create(const ADefinition: String; const AStaticType: IStaticType); begin inherited Create(AStaticType); FDefinition := ADefinition; end; function TCreateSeriesNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitCreateSeries(Self); end; function TCreateSeriesNode.AsCreateSeries: ICreateSeriesNode; begin Result := Self; end; function TCreateSeriesNode.GetDefinition: String; begin Result := FDefinition; end; function TCreateSeriesNode.GetKind: TAstNodeKind; begin Result := akCreateSeries; end; { TAddSeriesItemNode } constructor TAddSeriesItemNode.Create( const ASeries: IIdentifierNode; const AValue: IAstNode; const ALookback: IAstNode; const AStaticType: IStaticType ); begin inherited Create(AStaticType); FSeries := ASeries; FValue := AValue; FLookback := ALookback; end; function TAddSeriesItemNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitAddSeriesItem(Self); end; function TAddSeriesItemNode.AsAddSeriesItem: IAddSeriesItemNode; begin Result := Self; end; function TAddSeriesItemNode.GetLookback: IAstNode; begin Result := FLookback; end; function TAddSeriesItemNode.GetSeries: IIdentifierNode; begin Result := FSeries; end; function TAddSeriesItemNode.GetValue: IAstNode; begin Result := FValue; end; function TAddSeriesItemNode.GetKind: TAstNodeKind; begin Result := akAddSeriesItem; end; { TSeriesLengthNode } constructor TSeriesLengthNode.Create(const ASeries: IIdentifierNode; const AStaticType: IStaticType); begin inherited Create(AStaticType); FSeries := ASeries; end; function TSeriesLengthNode.Accept(const Visitor: IAstVisitor): TDataValue; begin Result := Visitor.VisitSeriesLength(Self); end; function TSeriesLengthNode.AsSeriesLength: ISeriesLengthNode; begin Result := Self; end; function TSeriesLengthNode.GetSeries: IIdentifierNode; begin Result := FSeries; end; function TSeriesLengthNode.GetKind: TAstNodeKind; begin Result := akSeriesLength; end; { TBoundIdentifierNode } constructor TBoundIdentifierNode.Create(const AName: string; const AAddress: TResolvedAddress; const AStaticType: IStaticType); begin inherited Create(AName, AStaticType); FAddress := AAddress; end; function TBoundIdentifierNode.AsBoundIdentifierNode: IBoundIdentifierNode; begin Result := Self; end; function TBoundIdentifierNode.GetAddress: TResolvedAddress; begin Result := FAddress; end; function TBoundIdentifierNode.GetKind: TAstNodeKind; begin Result := akBoundIdentifier; end; end.