140 lines
4.3 KiB
ObjectPascal
140 lines
4.3 KiB
ObjectPascal
unit Myc.Ast.Lowering;
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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.Scalar,
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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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IAstLowerer = 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* TypeChecker (Phase 3).
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// It "lowers" the AST by rewriting complex nodes into simpler ones
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// that the evaluator can understand (e.g., operator folding).
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TAstLowerer = class(TAstTransformer, IAstLowerer)
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private
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FBinaryOperators: TDictionary<string, TScalar.TBinaryOp>;
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FUnaryOperators: TDictionary<string, TScalar.TUnaryOp>;
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protected
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// Override to find nodes to lower
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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 Lower(const RootNode: IAstNode): IAstNode; static;
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end;
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implementation
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uses
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System.Generics.Defaults,
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Myc.Data.Keyword;
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{ TAstLowerer }
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constructor TAstLowerer.Create;
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var
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op: TScalar.TBinaryOp;
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uOp: TScalar.TUnaryOp; // Added for unary
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begin
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inherited Create;
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// Operator folding maps
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FBinaryOperators := TDictionary<string, TScalar.TBinaryOp>.Create;
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for op := Low(TScalar.TBinaryOp) to High(TScalar.TBinaryOp) do
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FBinaryOperators.Add(op.ToString, op);
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FUnaryOperators := TDictionary<string, TScalar.TUnaryOp>.Create;
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for uOp := Low(TScalar.TUnaryOp) to High(TScalar.TUnaryOp) do // Changed
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FUnaryOperators.Add(uOp.ToString, uOp);
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// Note: '-' is handled as a special case in VisitFunctionCall
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end;
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destructor TAstLowerer.Destroy;
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begin
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FUnaryOperators.Free;
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FBinaryOperators.Free;
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inherited;
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end;
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class function TAstLowerer.Lower(const RootNode: IAstNode): IAstNode;
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begin
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var lowerer := TAstLowerer.Create as IAstLowerer;
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Result := lowerer.Execute(RootNode);
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end;
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function TAstLowerer.Execute(const RootNode: IAstNode): IAstNode;
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begin
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Result := Accept(RootNode); // Use IAstNode-returning Accept
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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 TAstLowerer.VisitFunctionCall(const Node: IFunctionCallNode): IAstNode;
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var
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calleeIdentifier: IIdentifierNode;
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binaryOp: TScalar.TBinaryOp;
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unaryOp: TScalar.TUnaryOp;
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left, right: IAstNode;
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nodeType: IStaticType;
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begin
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// --- Optimization: Operator Folding ---
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if Node.Callee.Kind = akIdentifier then
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begin
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calleeIdentifier := Node.Callee.AsIdentifier;
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// Get the type *before* replacing the node (it's an IAstTypedNode)
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nodeType := Node.AsTypedNode.StaticType;
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if (Length(Node.Arguments) = 2) then
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begin
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if FBinaryOperators.TryGetValue(calleeIdentifier.Name, binaryOp) then
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begin
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// Note: We MUST visit children *before* creating the new node
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left := Accept(Node.Arguments[0]);
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right := Accept(Node.Arguments[1]);
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// Call constructor directly, passing the inferred type
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Result := TBinaryExpressionNode.Create(left, binaryOp, right, nodeType);
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exit;
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end;
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end;
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if (Length(Node.Arguments) = 1) then
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begin
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if FUnaryOperators.TryGetValue(calleeIdentifier.Name, unaryOp) then
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begin
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right := Accept(Node.Arguments[0]);
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// Call constructor directly, passing the inferred type
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Result := TUnaryExpressionNode.Create(unaryOp, right, nodeType);
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exit;
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end;
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if (calleeIdentifier.Name = '-') then
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begin
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right := Accept(Node.Arguments[0]);
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// Call constructor directly, passing the inferred type
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Result := TUnaryExpressionNode.Create(TScalar.TUnaryOp.Negate, right, nodeType);
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exit;
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end;
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end;
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end;
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// If no rewrite matched, continue traversal using the base implementation
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Result := inherited VisitFunctionCall(Node);
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end;
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end.
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