Files
MycLib/Src/AST/Myc.Ast.Visitor.pas
T
Michael Schimmel 8b765487ae Implementing Pipes
2025-12-21 16:30:09 +01:00

1030 lines
36 KiB
ObjectPascal

unit Myc.Ast.Visitor;
interface
uses
System.SysUtils,
System.Generics.Collections,
Myc.Data.Value,
Myc.Ast,
Myc.Ast.Types,
Myc.Ast.Nodes,
Myc.Ast.Identities;
type
TAstVisitor<T> = class abstract(TInterfacedObject, IAstVisitor)
strict private
// IAstVisitor explicit implementation (bridge methods)
function IAstVisitor.VisitConstant = DoVisitConstant;
function IAstVisitor.VisitIdentifier = DoVisitIdentifier;
function IAstVisitor.VisitKeyword = DoVisitKeyword;
function IAstVisitor.VisitParameterList = DoVisitParameterList;
function IAstVisitor.VisitArgumentList = DoVisitArgumentList;
function IAstVisitor.VisitExpressionList = DoVisitExpressionList;
function IAstVisitor.VisitRecordFieldList = DoVisitRecordFieldList;
function IAstVisitor.VisitRecordField = DoVisitRecordField;
function IAstVisitor.VisitIfExpression = DoVisitIfExpression;
function IAstVisitor.VisitCondExpression = DoVisitCondExpression;
function IAstVisitor.VisitLambdaExpression = DoVisitLambdaExpression;
function IAstVisitor.VisitFunctionCall = DoVisitFunctionCall;
function IAstVisitor.VisitMacroExpansionNode = DoVisitMacroExpansionNode;
function IAstVisitor.VisitBlockExpression = DoVisitBlockExpression;
function IAstVisitor.VisitVariableDeclaration = DoVisitVariableDeclaration;
function IAstVisitor.VisitAssignment = DoVisitAssignment;
function IAstVisitor.VisitMacroDefinition = DoVisitMacroDefinition;
function IAstVisitor.VisitQuasiquote = DoVisitQuasiquote;
function IAstVisitor.VisitUnquote = DoVisitUnquote;
function IAstVisitor.VisitUnquoteSplicing = DoVisitUnquoteSplicing;
function IAstVisitor.VisitIndexer = DoVisitIndexer;
function IAstVisitor.VisitMemberAccess = DoVisitMemberAccess;
function IAstVisitor.VisitRecordLiteral = DoVisitRecordLiteral;
function IAstVisitor.VisitCreateSeries = DoVisitCreateSeries;
function IAstVisitor.VisitAddSeriesItem = DoVisitAddSeriesItem;
function IAstVisitor.VisitSeriesLength = DoVisitSeriesLength;
function IAstVisitor.VisitRecurNode = DoVisitRecurNode;
function IAstVisitor.VisitNop = DoVisitNop;
// Pipe Support
function IAstVisitor.VisitPipeInput = DoVisitPipeInput;
function IAstVisitor.VisitPipeSelectorList = DoVisitPipeSelectorList;
function IAstVisitor.VisitPipeInputList = DoVisitPipeInputList;
function IAstVisitor.VisitPipe = DoVisitPipe;
// Private bridge method implementations
function DoVisitConstant(const Node: IConstantNode): TDataValue;
function DoVisitIdentifier(const Node: IIdentifierNode): TDataValue;
function DoVisitKeyword(const Node: IKeywordNode): TDataValue;
function DoVisitParameterList(const Node: IParameterList): TDataValue;
function DoVisitArgumentList(const Node: IArgumentList): TDataValue;
function DoVisitExpressionList(const Node: IExpressionList): TDataValue;
function DoVisitRecordFieldList(const Node: IRecordFieldList): TDataValue;
function DoVisitRecordField(const Node: IRecordFieldNode): TDataValue;
function DoVisitIfExpression(const Node: IIfExpressionNode): TDataValue;
function DoVisitCondExpression(const Node: ICondExpressionNode): TDataValue;
function DoVisitLambdaExpression(const Node: ILambdaExpressionNode): TDataValue;
function DoVisitFunctionCall(const Node: IFunctionCallNode): TDataValue;
function DoVisitMacroExpansionNode(const Node: IMacroExpansionNode): TDataValue;
function DoVisitBlockExpression(const Node: IBlockExpressionNode): TDataValue;
function DoVisitVariableDeclaration(const Node: IVariableDeclarationNode): TDataValue;
function DoVisitAssignment(const Node: IAssignmentNode): TDataValue;
function DoVisitMacroDefinition(const Node: IMacroDefinitionNode): TDataValue;
function DoVisitQuasiquote(const Node: IQuasiquoteNode): TDataValue;
function DoVisitUnquote(const Node: IUnquoteNode): TDataValue;
function DoVisitUnquoteSplicing(const Node: IUnquoteSplicingNode): TDataValue;
function DoVisitIndexer(const Node: IIndexerNode): TDataValue;
function DoVisitMemberAccess(const Node: IMemberAccessNode): TDataValue;
function DoVisitRecordLiteral(const Node: IRecordLiteralNode): TDataValue;
function DoVisitCreateSeries(const Node: ICreateSeriesNode): TDataValue;
function DoVisitAddSeriesItem(const Node: IAddSeriesItemNode): TDataValue;
function DoVisitSeriesLength(const Node: ISeriesLengthNode): TDataValue;
function DoVisitRecurNode(const Node: IRecurNode): TDataValue;
function DoVisitNop(const Node: INopNode): TDataValue;
function DoVisitPipeInput(const Node: IPipeInputNode): TDataValue;
function DoVisitPipeSelectorList(const Node: IPipeSelectorList): TDataValue;
function DoVisitPipeInputList(const Node: IPipeInputList): TDataValue;
function DoVisitPipe(const Node: IPipeNode): TDataValue;
protected
// Visit a node.
function Accept(const Node: IAstNode): T; virtual;
// Default visitor functions implemented analogous to TAstVisitor
function VisitConstant(const Node: IConstantNode): T; virtual;
function VisitIdentifier(const Node: IIdentifierNode): T; virtual;
function VisitKeyword(const Node: IKeywordNode): T; virtual;
function VisitParameterList(const Node: IParameterList): T; virtual;
function VisitArgumentList(const Node: IArgumentList): T; virtual;
function VisitExpressionList(const Node: IExpressionList): T; virtual;
function VisitRecordFieldList(const Node: IRecordFieldList): T; virtual;
function VisitRecordField(const Node: IRecordFieldNode): T; virtual;
function VisitIfExpression(const Node: IIfExpressionNode): T; virtual;
function VisitCondExpression(const Node: ICondExpressionNode): T; virtual;
function VisitLambdaExpression(const Node: ILambdaExpressionNode): T; virtual;
function VisitFunctionCall(const Node: IFunctionCallNode): T; virtual;
function VisitMacroExpansionNode(const Node: IMacroExpansionNode): T; virtual;
function VisitBlockExpression(const Node: IBlockExpressionNode): T; virtual;
function VisitVariableDeclaration(const Node: IVariableDeclarationNode): T; virtual;
function VisitAssignment(const Node: IAssignmentNode): T; virtual;
function VisitMacroDefinition(const Node: IMacroDefinitionNode): T; virtual;
function VisitQuasiquote(const Node: IQuasiquoteNode): T; virtual;
function VisitUnquote(const Node: IUnquoteNode): T; virtual;
function VisitUnquoteSplicing(const Node: IUnquoteSplicingNode): T; virtual;
function VisitIndexer(const Node: IIndexerNode): T; virtual;
function VisitMemberAccess(const Node: IMemberAccessNode): T; virtual;
function VisitRecordLiteral(const Node: IRecordLiteralNode): T; virtual;
function VisitCreateSeries(const Node: ICreateSeriesNode): T; virtual;
function VisitAddSeriesItem(const Node: IAddSeriesItemNode): T; virtual;
function VisitSeriesLength(const Node: ISeriesLengthNode): T; virtual;
function VisitRecurNode(const Node: IRecurNode): T; virtual;
function VisitNop(const Node: INopNode): T; virtual;
function VisitPipeInput(const Node: IPipeInputNode): T; virtual;
function VisitPipeSelectorList(const Node: IPipeSelectorList): T; virtual;
function VisitPipeInputList(const Node: IPipeInputList): T; virtual;
function VisitPipe(const Node: IPipeNode): T; virtual;
end;
TAstTransformer = class abstract(TAstVisitor<IAstNode>)
protected
function VisitConstant(const Node: IConstantNode): IAstNode; override;
function VisitIdentifier(const Node: IIdentifierNode): IAstNode; override;
function VisitKeyword(const Node: IKeywordNode): IAstNode; override;
function VisitParameterList(const Node: IParameterList): IAstNode; override;
function VisitArgumentList(const Node: IArgumentList): IAstNode; override;
function VisitExpressionList(const Node: IExpressionList): IAstNode; override;
function VisitRecordFieldList(const Node: IRecordFieldList): IAstNode; override;
function VisitRecordField(const Node: IRecordFieldNode): IAstNode; override;
function VisitIfExpression(const Node: IIfExpressionNode): IAstNode; override;
function VisitCondExpression(const Node: ICondExpressionNode): IAstNode; override;
function VisitLambdaExpression(const Node: ILambdaExpressionNode): IAstNode; override;
function VisitFunctionCall(const Node: IFunctionCallNode): IAstNode; override;
function VisitMacroExpansionNode(const Node: IMacroExpansionNode): IAstNode; override;
function VisitBlockExpression(const Node: IBlockExpressionNode): IAstNode; override;
function VisitVariableDeclaration(const Node: IVariableDeclarationNode): IAstNode; override;
function VisitAssignment(const Node: IAssignmentNode): IAstNode; override;
function VisitMacroDefinition(const Node: IMacroDefinitionNode): IAstNode; override;
function VisitQuasiquote(const Node: IQuasiquoteNode): IAstNode; override;
function VisitUnquote(const Node: IUnquoteNode): IAstNode; override;
function VisitUnquoteSplicing(const Node: IUnquoteSplicingNode): IAstNode; override;
function VisitIndexer(const Node: IIndexerNode): IAstNode; override;
function VisitMemberAccess(const Node: IMemberAccessNode): IAstNode; override;
function VisitRecordLiteral(const Node: IRecordLiteralNode): IAstNode; override;
function VisitCreateSeries(const Node: ICreateSeriesNode): IAstNode; override;
function VisitAddSeriesItem(const Node: IAddSeriesItemNode): IAstNode; override;
function VisitSeriesLength(const Node: ISeriesLengthNode): IAstNode; override;
function VisitRecurNode(const Node: IRecurNode): IAstNode; override;
function VisitNop(const Node: INopNode): IAstNode; override;
function VisitPipeInput(const Node: IPipeInputNode): IAstNode; override;
function VisitPipeSelectorList(const Node: IPipeSelectorList): IAstNode; override;
function VisitPipeInputList(const Node: IPipeInputList): IAstNode; override;
function VisitPipe(const Node: IPipeNode): IAstNode; override;
end;
TVoid = record
end;
TAstVisitor = class(TAstVisitor<TVoid>);
implementation
{ TAstVisitor<T> }
function TAstVisitor<T>.Accept(const Node: IAstNode): T;
begin
if Assigned(Node) then
Result := Node.Accept(Self).AsGeneric<T>
else
Result := Default(T);
end;
function TAstVisitor<T>.DoVisitConstant(const Node: IConstantNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitConstant(Node));
end;
function TAstVisitor<T>.DoVisitIdentifier(const Node: IIdentifierNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitIdentifier(Node));
end;
function TAstVisitor<T>.DoVisitKeyword(const Node: IKeywordNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitKeyword(Node));
end;
function TAstVisitor<T>.DoVisitParameterList(const Node: IParameterList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitParameterList(Node));
end;
function TAstVisitor<T>.DoVisitArgumentList(const Node: IArgumentList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitArgumentList(Node));
end;
function TAstVisitor<T>.DoVisitExpressionList(const Node: IExpressionList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitExpressionList(Node));
end;
function TAstVisitor<T>.DoVisitRecordFieldList(const Node: IRecordFieldList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitRecordFieldList(Node));
end;
function TAstVisitor<T>.DoVisitRecordField(const Node: IRecordFieldNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitRecordField(Node));
end;
function TAstVisitor<T>.DoVisitIfExpression(const Node: IIfExpressionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitIfExpression(Node));
end;
function TAstVisitor<T>.DoVisitCondExpression(const Node: ICondExpressionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitCondExpression(Node));
end;
function TAstVisitor<T>.DoVisitLambdaExpression(const Node: ILambdaExpressionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitLambdaExpression(Node));
end;
function TAstVisitor<T>.DoVisitFunctionCall(const Node: IFunctionCallNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitFunctionCall(Node));
end;
function TAstVisitor<T>.DoVisitMacroExpansionNode(const Node: IMacroExpansionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitMacroExpansionNode(Node));
end;
function TAstVisitor<T>.DoVisitBlockExpression(const Node: IBlockExpressionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitBlockExpression(Node));
end;
function TAstVisitor<T>.DoVisitVariableDeclaration(const Node: IVariableDeclarationNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitVariableDeclaration(Node));
end;
function TAstVisitor<T>.DoVisitAssignment(const Node: IAssignmentNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitAssignment(Node));
end;
function TAstVisitor<T>.DoVisitMacroDefinition(const Node: IMacroDefinitionNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitMacroDefinition(Node));
end;
function TAstVisitor<T>.DoVisitQuasiquote(const Node: IQuasiquoteNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitQuasiquote(Node));
end;
function TAstVisitor<T>.DoVisitUnquote(const Node: IUnquoteNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitUnquote(Node));
end;
function TAstVisitor<T>.DoVisitUnquoteSplicing(const Node: IUnquoteSplicingNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitUnquoteSplicing(Node));
end;
function TAstVisitor<T>.DoVisitIndexer(const Node: IIndexerNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitIndexer(Node));
end;
function TAstVisitor<T>.DoVisitMemberAccess(const Node: IMemberAccessNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitMemberAccess(Node));
end;
function TAstVisitor<T>.DoVisitRecordLiteral(const Node: IRecordLiteralNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitRecordLiteral(Node));
end;
function TAstVisitor<T>.DoVisitCreateSeries(const Node: ICreateSeriesNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitCreateSeries(Node));
end;
function TAstVisitor<T>.DoVisitAddSeriesItem(const Node: IAddSeriesItemNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitAddSeriesItem(Node));
end;
function TAstVisitor<T>.DoVisitSeriesLength(const Node: ISeriesLengthNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitSeriesLength(Node));
end;
function TAstVisitor<T>.DoVisitRecurNode(const Node: IRecurNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitRecurNode(Node));
end;
function TAstVisitor<T>.DoVisitNop(const Node: INopNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitNop(Node));
end;
function TAstVisitor<T>.DoVisitPipeInput(const Node: IPipeInputNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitPipeInput(Node));
end;
function TAstVisitor<T>.DoVisitPipeSelectorList(const Node: IPipeSelectorList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitPipeSelectorList(Node));
end;
function TAstVisitor<T>.DoVisitPipeInputList(const Node: IPipeInputList): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitPipeInputList(Node));
end;
function TAstVisitor<T>.DoVisitPipe(const Node: IPipeNode): TDataValue;
begin
Result := TDataValue.FromGeneric<T>(VisitPipe(Node));
end;
// --- Default implementations (analogous to TAstVisitor) ---
function TAstVisitor<T>.VisitConstant(const Node: IConstantNode): T;
begin
Result := Default(T);
end;
function TAstVisitor<T>.VisitIdentifier(const Node: IIdentifierNode): T;
begin
Result := Default(T);
end;
function TAstVisitor<T>.VisitKeyword(const Node: IKeywordNode): T;
begin
Result := Default(T);
end;
function TAstVisitor<T>.VisitParameterList(const Node: IParameterList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitArgumentList(const Node: IArgumentList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitExpressionList(const Node: IExpressionList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitRecordFieldList(const Node: IRecordFieldList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitRecordField(const Node: IRecordFieldNode): T;
begin
Result := Default(T);
Accept(Node.Key);
Accept(Node.Value);
end;
function TAstVisitor<T>.VisitIfExpression(const Node: IIfExpressionNode): T;
begin
Result := Default(T);
Accept(Node.Condition);
Accept(Node.ThenBranch);
Accept(Node.ElseBranch);
end;
function TAstVisitor<T>.VisitCondExpression(const Node: ICondExpressionNode): T;
var
pair: TCondPair;
begin
Result := Default(T);
for pair in Node.Pairs do
begin
Accept(pair.Condition);
Accept(pair.Branch);
end;
Accept(Node.ElseBranch);
end;
function TAstVisitor<T>.VisitLambdaExpression(const Node: ILambdaExpressionNode): T;
begin
Result := Default(T);
Accept(Node.Parameters);
Accept(Node.Body);
end;
function TAstVisitor<T>.VisitFunctionCall(const Node: IFunctionCallNode): T;
begin
Result := Default(T);
Accept(Node.Callee);
Accept(Node.Arguments);
end;
function TAstVisitor<T>.VisitMacroExpansionNode(const Node: IMacroExpansionNode): T;
begin
Result := Default(T);
Accept(Node.CallNode);
Accept(Node.ExpandedBody);
end;
function TAstVisitor<T>.VisitBlockExpression(const Node: IBlockExpressionNode): T;
begin
Result := Default(T);
Accept(Node.Expressions);
end;
function TAstVisitor<T>.VisitVariableDeclaration(const Node: IVariableDeclarationNode): T;
begin
Result := Default(T);
Accept(Node.Target);
Accept(Node.Initializer);
end;
function TAstVisitor<T>.VisitAssignment(const Node: IAssignmentNode): T;
begin
Result := Default(T);
Accept(Node.Target);
Accept(Node.Value);
end;
function TAstVisitor<T>.VisitMacroDefinition(const Node: IMacroDefinitionNode): T;
begin
Result := Default(T);
Accept(Node.Name);
Accept(Node.Parameters);
Accept(Node.Body);
end;
function TAstVisitor<T>.VisitQuasiquote(const Node: IQuasiquoteNode): T;
begin
Result := Default(T);
Accept(Node.Expression);
end;
function TAstVisitor<T>.VisitUnquote(const Node: IUnquoteNode): T;
begin
Result := Default(T);
Accept(Node.Expression);
end;
function TAstVisitor<T>.VisitUnquoteSplicing(const Node: IUnquoteSplicingNode): T;
begin
Result := Default(T);
Accept(Node.Expression);
end;
function TAstVisitor<T>.VisitIndexer(const Node: IIndexerNode): T;
begin
Result := Default(T);
Accept(Node.Base);
Accept(Node.Index);
end;
function TAstVisitor<T>.VisitMemberAccess(const Node: IMemberAccessNode): T;
begin
Result := Default(T);
Accept(Node.Base);
Accept(Node.Member);
end;
function TAstVisitor<T>.VisitRecordLiteral(const Node: IRecordLiteralNode): T;
begin
Result := Default(T);
Accept(Node.Fields);
end;
function TAstVisitor<T>.VisitCreateSeries(const Node: ICreateSeriesNode): T;
begin
Result := Default(T);
end;
function TAstVisitor<T>.VisitAddSeriesItem(const Node: IAddSeriesItemNode): T;
begin
Result := Default(T);
Accept(Node.Series);
Accept(Node.Value);
Accept(Node.Lookback);
end;
function TAstVisitor<T>.VisitSeriesLength(const Node: ISeriesLengthNode): T;
begin
Result := Default(T);
Accept(Node.Series);
end;
function TAstVisitor<T>.VisitRecurNode(const Node: IRecurNode): T;
begin
Result := Default(T);
Accept(Node.Arguments);
end;
function TAstVisitor<T>.VisitNop(const Node: INopNode): T;
begin
Result := Default(T);
end;
function TAstVisitor<T>.VisitPipeInput(const Node: IPipeInputNode): T;
begin
Result := Default(T);
Accept(Node.StreamSource);
Accept(Node.Selectors); // Now visits SelectorList
end;
function TAstVisitor<T>.VisitPipeSelectorList(const Node: IPipeSelectorList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitPipeInputList(const Node: IPipeInputList): T;
begin
Result := Default(T);
for var Item in Node do
Accept(Item);
end;
function TAstVisitor<T>.VisitPipe(const Node: IPipeNode): T;
begin
Result := Default(T);
Accept(Node.Inputs);
Accept(Node.Transformation);
end;
{ TAstTransformer }
// --- Base Virtual Implementations ---
function TAstTransformer.VisitConstant(const Node: IConstantNode): IAstNode;
begin
Result := Node;
end;
function TAstTransformer.VisitIdentifier(const Node: IIdentifierNode): IAstNode;
begin
Result := Node;
end;
function TAstTransformer.VisitKeyword(const Node: IKeywordNode): IAstNode;
begin
Result := Node;
end;
function TAstTransformer.VisitNop(const Node: INopNode): IAstNode;
begin
Result := Node;
end;
function TAstTransformer.VisitCreateSeries(const Node: ICreateSeriesNode): IAstNode;
begin
Result := Node;
end;
// --- List Transformations ---
function TAstTransformer.VisitParameterList(const Node: IParameterList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IIdentifierNode>;
item, newItem: IIdentifierNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
newItem := Accept(item).AsIdentifier;
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
// Manually reconstruct using concrete class to verify transformation
Result := TParameterList.Create(newItems, Node.Identity);
end;
function TAstTransformer.VisitArgumentList(const Node: IArgumentList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IAstNode>;
item, newItem: IAstNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
newItem := Accept(item);
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
Result := TArgumentList.Create(newItems, Node.Identity);
end;
function TAstTransformer.VisitExpressionList(const Node: IExpressionList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IAstNode>;
item, newItem: IAstNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
newItem := Accept(item);
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
Result := TExpressionList.Create(newItems, Node.Identity);
end;
function TAstTransformer.VisitRecordFieldList(const Node: IRecordFieldList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IRecordFieldNode>;
item, newItem: IRecordFieldNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
// Ensure we transform the field node itself via Accept to trigger VisitRecordField
newItem := Accept(item).AsRecordField;
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
Result := TRecordFieldList.Create(newItems, Node.Identity);
end;
function TAstTransformer.VisitRecordField(const Node: IRecordFieldNode): IAstNode;
var
newKey: IKeywordNode;
newValue: IAstNode;
begin
newKey := Accept(Node.Key).AsKeyword;
newValue := Accept(Node.Value);
if (newKey = Node.Key) and (newValue = Node.Value) then
Result := Node
else
Result := TAst.RecordField(newKey, newValue, Node.Identity.Location);
end;
// --- Node Transformations ---
function TAstTransformer.VisitIfExpression(const Node: IIfExpressionNode): IAstNode;
var
newCond, newThen, newElse: IAstNode;
begin
newCond := Accept(Node.Condition);
newThen := Accept(Node.ThenBranch);
newElse := Accept(Node.ElseBranch);
if (newCond = Node.Condition) and (newThen = Node.ThenBranch) and (newElse = Node.ElseBranch) then
Result := Node
else
Result := TAst.IfExpr(Node.Identity, newCond, newThen, newElse, Node.StaticType);
end;
function TAstTransformer.VisitCondExpression(const Node: ICondExpressionNode): IAstNode;
var
newPairs: TArray<TCondPair>;
newElse: IAstNode;
hasChanged: Boolean;
i: Integer;
newCond, newBranch: IAstNode;
begin
hasChanged := False;
SetLength(newPairs, Length(Node.Pairs));
for i := 0 to High(Node.Pairs) do
begin
newCond := Accept(Node.Pairs[i].Condition);
newBranch := Accept(Node.Pairs[i].Branch);
newPairs[i] := TCondPair.Create(newCond, newBranch);
if (newCond <> Node.Pairs[i].Condition) or (newBranch <> Node.Pairs[i].Branch) then
hasChanged := True;
end;
newElse := Accept(Node.ElseBranch); // Accept handles nil
if newElse <> Node.ElseBranch then
hasChanged := True;
if not hasChanged then
Result := Node
else
Result := TAst.CondExpr(Node.Identity, newPairs, newElse, Node.StaticType);
end;
function TAstTransformer.VisitLambdaExpression(const Node: ILambdaExpressionNode): IAstNode;
var
newParams: IParameterList;
newBody: IAstNode;
begin
newParams := Accept(Node.Parameters).AsParameterList;
newBody := Accept(Node.Body);
if (newParams = Node.Parameters) and (newBody = Node.Body) then
Result := Node
else
begin
// Rebuild Lambda via concrete constructor to keep Layout/Descriptor info
// TAst factory would reset layout info.
Result :=
TLambdaExpressionNode.Create(
newParams,
newBody,
Node.StaticType,
Node.Layout,
Node.Descriptor,
Node.Upvalues,
Node.HasNestedLambdas,
Node.IsPure,
Node.Identity
);
end;
end;
function TAstTransformer.VisitFunctionCall(const Node: IFunctionCallNode): IAstNode;
var
newCallee: IAstNode;
newArgs: IArgumentList;
begin
newCallee := Accept(Node.Callee);
newArgs := Accept(Node.Arguments).AsArgumentList;
if (newCallee = Node.Callee) and (newArgs = Node.Arguments) then
Result := Node
else
begin
Result :=
TFunctionCallNode
.Create(newCallee, newArgs, Node.StaticType, Node.IsTailCall, Node.StaticTarget, Node.IsTargetPure, Node.Identity);
end;
end;
function TAstTransformer.VisitMacroExpansionNode(const Node: IMacroExpansionNode): IAstNode;
var
newBody: IAstNode;
begin
newBody := Accept(Node.ExpandedBody);
if newBody = Node.ExpandedBody then
exit(Node);
// Macro Expansion Nodes are structural, reuse identity.
// Note: We don't visit the CallNode as it is the "source" which doesn't change during this transformation typically
Result := TAst.MacroExpansionNode(Node.Identity, Node.CallNode, newBody);
end;
function TAstTransformer.VisitBlockExpression(const Node: IBlockExpressionNode): IAstNode;
var
newExprs: IExpressionList;
begin
newExprs := Accept(Node.Expressions).AsExpressionList;
if newExprs = Node.Expressions then
Result := Node
else
// Rebuild manually to preserve type
Result := TBlockExpressionNode.Create(newExprs, Node.StaticType, Node.Identity);
end;
function TAstTransformer.VisitVariableDeclaration(const Node: IVariableDeclarationNode): IAstNode;
var
newTarget: IAstNode;
newInit: IAstNode;
begin
newTarget := Accept(Node.Target);
newInit := Accept(Node.Initializer);
if (newTarget = Node.Target) and (newInit = Node.Initializer) then
Result := Node
else
begin
Result := TAst.VarDecl(Node.Identity, newTarget, newInit, Node.StaticType, Node.IsBoxed);
end;
end;
function TAstTransformer.VisitAssignment(const Node: IAssignmentNode): IAstNode;
var
newTarget: IAstNode;
newValue: IAstNode;
begin
newTarget := Accept(Node.Target);
newValue := Accept(Node.Value);
if (newTarget = Node.Target) and (newValue = Node.Value) then
Result := Node
else
Result := TAst.Assign(Node.Identity, newTarget, newValue, Node.StaticType);
end;
function TAstTransformer.VisitMacroDefinition(const Node: IMacroDefinitionNode): IAstNode;
begin
// Macro definitions are usually stripped/ignored in transformers,
// but we return them as-is to support partial pipelines.
Result := Node;
end;
function TAstTransformer.VisitQuasiquote(const Node: IQuasiquoteNode): IAstNode;
var
newExpr: IAstNode;
begin
newExpr := Accept(Node.Expression);
if newExpr = Node.Expression then
Result := Node
else
Result := TAst.Quasiquote(Node.Identity, newExpr);
end;
function TAstTransformer.VisitUnquote(const Node: IUnquoteNode): IAstNode;
var
newExpr: IAstNode;
begin
newExpr := Accept(Node.Expression);
if newExpr = Node.Expression then
Result := Node
else
Result := TAst.Unquote(Node.Identity, newExpr);
end;
function TAstTransformer.VisitUnquoteSplicing(const Node: IUnquoteSplicingNode): IAstNode;
var
newExpr: IAstNode;
begin
newExpr := Accept(Node.Expression);
if (newExpr = Node.Expression) then
Result := Node
else
Result := TAst.UnquoteSplicing(Node.Identity, newExpr.AsQuasiquote);
end;
function TAstTransformer.VisitIndexer(const Node: IIndexerNode): IAstNode;
var
newBase, newIndex: IAstNode;
begin
newBase := Accept(Node.Base);
newIndex := Accept(Node.Index);
if (newBase = Node.Base) and (newIndex = Node.Index) then
Result := Node
else
Result := TAst.Indexer(Node.Identity, newBase, newIndex, Node.StaticType);
end;
function TAstTransformer.VisitMemberAccess(const Node: IMemberAccessNode): IAstNode;
var
newBase: IAstNode;
newMember: IKeywordNode;
begin
newBase := Accept(Node.Base);
newMember := Accept(Node.Member).AsKeyword;
if (newBase = Node.Base) and (newMember = Node.Member) then
Result := Node
else
Result := TAst.MemberAccess(Node.Identity, newBase, newMember, Node.StaticType);
end;
function TAstTransformer.VisitRecordLiteral(const Node: IRecordLiteralNode): IAstNode;
var
newFields: IRecordFieldList;
begin
newFields := Accept(Node.Fields).AsRecordFieldList;
if newFields = Node.Fields then
Result := Node
else
begin
Result := TRecordLiteralNode.Create(newFields, Node.ScalarDefinition, Node.GenericDefinition, Node.StaticType, Node.Identity);
end;
end;
function TAstTransformer.VisitAddSeriesItem(const Node: IAddSeriesItemNode): IAstNode;
var
newSeries: IIdentifierNode;
newValue, newLookback: IAstNode;
begin
newSeries := Accept(Node.Series).AsIdentifier;
newValue := Accept(Node.Value);
newLookback := Accept(Node.Lookback);
if (newSeries = Node.Series) and (newValue = Node.Value) and (newLookback = Node.Lookback) then
Result := Node
else
Result := TAst.AddSeriesItem(Node.Identity, newSeries, newValue, newLookback, Node.StaticType);
end;
function TAstTransformer.VisitSeriesLength(const Node: ISeriesLengthNode): IAstNode;
var
newSeries: IIdentifierNode;
begin
newSeries := Accept(Node.Series).AsIdentifier;
if newSeries = Node.Series then
Result := Node
else
Result := TAst.SeriesLength(Node.Identity, newSeries, Node.StaticType);
end;
function TAstTransformer.VisitRecurNode(const Node: IRecurNode): IAstNode;
var
newArgs: IArgumentList;
begin
newArgs := Accept(Node.Arguments).AsArgumentList;
if newArgs = Node.Arguments then
Result := Node
else
Result := TRecurNode.Create(newArgs, Node.StaticType, Node.Identity);
end;
function TAstTransformer.VisitPipeInput(const Node: IPipeInputNode): IAstNode;
var
newSource: IIdentifierNode;
newSels: IPipeSelectorList;
begin
newSource := Accept(Node.StreamSource).AsIdentifier;
newSels := Accept(Node.Selectors).AsPipeSelectorList;
if (newSource = Node.StreamSource) and (newSels = Node.Selectors) then
Result := Node
else
Result := TAst.PipeInput(newSource, newSels, Node.Identity.Location);
end;
function TAstTransformer.VisitPipeSelectorList(const Node: IPipeSelectorList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IKeywordNode>;
item, newItem: IKeywordNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
newItem := Accept(item).AsKeyword;
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
// Manually reconstruct using helper
Result := TAst.PipeSelectorList(newItems, Node.Identity.Location);
end;
function TAstTransformer.VisitPipeInputList(const Node: IPipeInputList): IAstNode;
var
hasChanged: Boolean;
newItems: TArray<IPipeInputNode>;
item, newItem: IPipeInputNode;
i: Integer;
begin
hasChanged := False;
SetLength(newItems, Node.Count);
for i := 0 to Node.Count - 1 do
begin
item := Node[i];
newItem := Accept(item).AsPipeInput; // Explicit cast via new helper
newItems[i] := newItem;
if item <> newItem then
hasChanged := True;
end;
if not hasChanged then
Result := Node
else
// Using TList implementation directly implies we are creating the list structure
// Since IPipeInputList is just INodeList<IPipeInputNode>, we reuse TPipeInputList
Result := TPipeInputList.Create(newItems, Node.Identity);
end;
function TAstTransformer.VisitPipe(const Node: IPipeNode): IAstNode;
var
newInputs: IPipeInputList;
newTrans: ILambdaExpressionNode;
begin
newInputs := Accept(Node.Inputs).AsPipeInputList;
newTrans := Accept(Node.Transformation).AsLambdaExpression;
if (newInputs = Node.Inputs) and (newTrans = Node.Transformation) then
Result := Node
else
Result := TAst.Pipe(Node.Identity, newInputs, newTrans, Node.StaticType);
end;
end.