262 lines
7.8 KiB
ObjectPascal
262 lines
7.8 KiB
ObjectPascal
unit Myc.Ast.Compiler.TCO;
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interface
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uses
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System.SysUtils,
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System.Classes,
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System.Generics.Collections,
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Myc.Data.Value,
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Myc.Ast.Nodes,
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Myc.Ast.Visitor,
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Myc.Ast.Scope,
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Myc.Ast.Types,
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Myc.Ast;
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type
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IAstTCO = interface(IAstVisitor)
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function Execute(const RootNode: IAstNode): IAstNode;
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end;
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// This transformer runs *after* the Lowerer (Phase 4/5) and Specializer.
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// Its sole responsibility is to identify tail calls (TCO)
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// and set the `IsTailCall` flag on TFunctionCallNode.
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TAstTCO = class(TAstTransformer, IAstTCO)
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private
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FIsTailStack: TStack<Boolean>;
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FNextIsTail: Boolean;
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protected
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function Accept(const Node: IAstNode): IAstNode; override;
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// Overrides for TCO propagation
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function VisitBlockExpression(const Node: IBlockExpressionNode): IAstNode; override;
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function VisitIfExpression(const Node: IIfExpressionNode): IAstNode; override;
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function VisitTernaryExpression(const Node: ITernaryExpressionNode): IAstNode; override;
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function VisitLambdaExpression(const Node: ILambdaExpressionNode): IAstNode; override;
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function VisitRecurNode(const Node: IRecurNode): IAstNode; override;
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function VisitMacroExpansionNode(const Node: IMacroExpansionNode): IAstNode; override;
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// The core TCO logic
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function VisitFunctionCall(const Node: IFunctionCallNode): IAstNode; override;
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public
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constructor Create;
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destructor Destroy; override;
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function Execute(const RootNode: IAstNode): IAstNode;
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class function Optimize(const RootNode: IAstNode): IAstNode; static;
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end;
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implementation
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{ TAstTCO }
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constructor TAstTCO.Create;
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begin
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inherited Create;
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FIsTailStack := TStack<Boolean>.Create;
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FNextIsTail := True; // The root expression is in tail position
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end;
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destructor TAstTCO.Destroy;
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begin
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FIsTailStack.Free;
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inherited;
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end;
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class function TAstTCO.Optimize(const RootNode: IAstNode): IAstNode;
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begin
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var optimizer := TAstTCO.Create as IAstTCO;
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Result := optimizer.Execute(RootNode);
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end;
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function TAstTCO.Execute(const RootNode: IAstNode): IAstNode;
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begin
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Result := Accept(RootNode);
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if not Assigned(Result) then
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Result := TAst.Block([]);
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end;
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function TAstTCO.Accept(const Node: IAstNode): IAstNode;
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begin
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if (not Assigned(Node)) then
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begin
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Result := nil;
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exit;
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end;
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FIsTailStack.Push(FNextIsTail);
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try
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// Call inherited Accept
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Result := inherited Accept(Node);
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finally
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FNextIsTail := FIsTailStack.Pop;
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end;
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end;
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function TAstTCO.VisitBlockExpression(const Node: IBlockExpressionNode): IAstNode;
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var
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isContextTail: Boolean;
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newExprs: TArray<IAstNode>;
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begin
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isContextTail := FIsTailStack.Peek;
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var nTail := High(Node.Expressions);
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newExprs :=
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AcceptNodes(
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Node.Expressions,
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function(idx: Integer; Node: IAstNode): IAstNode
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begin
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// Only the last expression in the block inherits the tail position status
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FNextIsTail := isContextTail and (idx = nTail);
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Result := Accept(Node);
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end
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);
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if newExprs = Node.Expressions then
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Result := Node
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else
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Result := TAst.Block(newExprs, Node.StaticType);
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end;
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function TAstTCO.VisitIfExpression(const Node: IIfExpressionNode): IAstNode;
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var
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isContextTail: Boolean;
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newCond, newThen, newElse: IAstNode;
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begin
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isContextTail := FIsTailStack.Peek;
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// Condition is never in tail position
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FNextIsTail := False;
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newCond := Accept(Node.Condition);
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// Then/Else branches ARE in tail position if the IfExpr is
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FNextIsTail := isContextTail;
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newThen := Accept(Node.ThenBranch);
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newElse := Accept(Node.ElseBranch);
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if (newCond = Node.Condition) and (newThen = Node.ThenBranch) and (newElse = Node.ElseBranch) then
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Result := Node
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else
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Result := TAst.IfExpr(newCond, newThen, newElse, Node.StaticType);
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end;
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function TAstTCO.VisitTernaryExpression(const Node: ITernaryExpressionNode): IAstNode;
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var
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isContextTail: Boolean;
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newCond, newThen, newElse: IAstNode;
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begin
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isContextTail := FIsTailStack.Peek;
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// Condition is never in tail position
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FNextIsTail := False;
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newCond := Accept(Node.Condition);
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// Then/Else branches ARE in tail position if the TernaryExpr is
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FNextIsTail := isContextTail;
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newThen := Accept(Node.ThenBranch);
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newElse := Accept(Node.ElseBranch);
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if (newCond = Node.Condition) and (newThen = Node.ThenBranch) and (newElse = Node.ElseBranch) then
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Result := Node
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else
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Result := TAst.TernaryExpr(newCond, newThen, newElse, Node.StaticType);
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end;
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function TAstTCO.VisitLambdaExpression(const Node: ILambdaExpressionNode): IAstNode;
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var
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newParams: TArray<IIdentifierNode>;
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newBody: IAstNode;
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begin
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// Parameters are not in tail position
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FNextIsTail := False;
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newParams := AcceptParameters(Node.Parameters);
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// The body of a lambda is *always* a tail position (relative to the lambda execution)
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FNextIsTail := True;
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newBody := Accept(Node.Body);
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if (newParams = Node.Parameters) and (newBody = Node.Body) then
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Result := Node
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else
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begin
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// Rebuild using factory.
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// IMPORTANT: Pass Layout AND Descriptor (TCO runs after TypeChecker).
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// (* FIX: Pass Node.IsPure to preserve it *)
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Result :=
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TAst.LambdaExpr(
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newParams,
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newBody,
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Node.Layout,
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Node.Descriptor,
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Node.Upvalues,
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Node.HasNestedLambdas,
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Node.IsPure,
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Node.StaticType
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);
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end;
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end;
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function TAstTCO.VisitRecurNode(const Node: IRecurNode): IAstNode;
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var
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newArgs: TArray<IAstNode>;
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begin
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if not FIsTailStack.Peek then
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raise Exception.Create('''recur'' can only be used in a tail position.');
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// Arguments are not in tail position
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FNextIsTail := False;
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newArgs := AcceptNodes(Node.Arguments);
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if newArgs = Node.Arguments then
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Result := Node
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else
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Result := TAst.Recur(newArgs, Node.StaticType);
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end;
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function TAstTCO.VisitMacroExpansionNode(const Node: IMacroExpansionNode): IAstNode;
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var
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newBody: IAstNode;
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begin
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// Propagate tail call status to the expanded body
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FNextIsTail := FIsTailStack.Peek;
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newBody := Accept(Node.ExpandedBody);
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if newBody = Node.ExpandedBody then
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Result := Node
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else
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Result := TAst.MacroExpansionNode(Node.CallNode, newBody);
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end;
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function TAstTCO.VisitFunctionCall(const Node: IFunctionCallNode): IAstNode;
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var
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isTailCall: Boolean;
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newCallee: IAstNode;
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newArgs: TArray<IAstNode>;
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begin
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isTailCall := FIsTailStack.Peek;
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// Callee/Arguments are not in tail position
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FNextIsTail := False;
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newCallee := Accept(Node.Callee);
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newArgs := AcceptNodes(Node.Arguments);
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// CoW check: Create a new node only if children changed OR IsTailCall needs update
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if (newCallee = Node.Callee) and (newArgs = Node.Arguments) and (isTailCall = Node.IsTailCall) then
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begin
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Result := Node;
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exit;
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end;
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// Use factory to create new node, passing the *new* TCO status
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Result :=
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TAst.FunctionCall(
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newCallee,
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newArgs,
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Node.StaticType,
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isTailCall,
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Node.StaticTarget, // Preserve the static target from Specializer
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Node.IsTargetPure // (* FIX: Preserve the purity flag from Specializer! *)
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);
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end;
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end.
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