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top - downloadIndex: ┃ B L T ┃
Length: 1804 (0x70c) Types: TextFile Names: »B«, »L«
└─⟦a7d1ea751⟧ Bits:30000550 8mm tape, Rational 1000, !users!projects 94_04_11 └─ ⟦129cab021⟧ »DATA« └─⟦this⟧ └─⟦2f6cfab89⟧ Bits:30000547 8mm tape, Rational 1000, !projects 94-01-04 └─ ⟦d65440be7⟧ »DATA« └─⟦this⟧
with Expression, More_Statements, Scanner, Object; package body Statements is type Node_Structure is record Rule : Natural range 0 .. 2 := 0; Expr : Expression.Node := Expression.Empty_Node; More : More_Statements.Node := More_Statements.Empty_Node; end record; procedure Parse (N : in out Node; Error : out Boolean) is Failed : Boolean := False; begin N := new Node_Structure; if Expression.Is_First (Scanner.Symbol) then N.Rule := 1; Expression.Parse (N.Expr, Failed); if not Failed then More_Statements.Parse (N.More, Failed); end if; else case Scanner.Symbol is when Scanner.Renvoyer => N.Rule := 2; Scanner.Next; Expression.Parse (N.Expr, Failed); when Other => null; end case; end if; Error := Failed; end Parse; function Is_First (T : Scanner.Token) return Boolean is use Scanner; begin return T = Renvoyer or else Expression.Is_First (T); end Is_First; function Interpret (N : Node; Inherited : Object.Reference := Object.Void_Reference) return Object.Reference is Result : Object.Reference; begin case N.Rule is when 0 => Result := Inherited; when 1 => Result := Expression.Interpret (N.Expr); Result := More_Statements.Interpret (N.More, Result); when 2 => Result := Expression.Interpret (N.Expr); end case; return Result; end Interpret; end Statements;