made let and letrec continuation-friendly
This commit is contained in:
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b2088d0891
commit
81d910a0e1
@ -316,7 +316,7 @@ Ada.Text_IO.Put_line ("TOO FEW ARGUMETNS FOR COMPARISON");
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-- Closure made of a lambda expression with a single formal argument
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-- e.g) (lambda x (car x))
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-- Apply the whole actual argument list to the closure.
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Put_Environment (Interp, Formal, Actual);
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Set_Current_Environment (Interp, Formal, Actual);
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else
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while Is_Cons(Formal) loop
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if not Is_Cons(Actual) then
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@ -325,7 +325,7 @@ Ada.Text_IO.Put_line ("TOO FEW ARGUMETNS FOR COMPARISON");
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end if;
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-- Insert the key/value pair into the environment
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Put_Environment (Interp, Get_Car(Formal), Get_Car(Actual));
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Set_Current_Environment (Interp, Get_Car(Formal), Get_Car(Actual));
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Formal := Get_Cdr(Formal);
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Actual := Get_Cdr(Actual);
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@ -336,7 +336,7 @@ Ada.Text_IO.Put_line ("TOO FEW ARGUMETNS FOR COMPARISON");
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-- The last formal argument to the closure is in a CDR.
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-- Assign the remaining actual arguments to the last formal argument
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-- e.g) ((lambda (x y . z) z) 1 2 3 4 5)
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Put_Environment (Interp, Formal, Actual);
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Set_Current_Environment (Interp, Formal, Actual);
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else
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-- The lambda evaluator must ensure all formal arguments are symbols.
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pragma Assert (Formal = Nil_Pointer);
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@ -7,6 +7,8 @@ procedure Evaluate is
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Car: aliased Object_Pointer;
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Cdr: aliased Object_Pointer;
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-- ----------------------------------------------------------------
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generic
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Result: Object_Pointer; -- Result to return if no <test> expressions exist.
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Opcode: Opcode_Type; -- Switch to this opcode to evaluate the next <test>.
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@ -41,6 +43,8 @@ procedure Evaluate is
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procedure Evaluate_And_Syntax is new Generic_And_Or_Syntax(True_Pointer, Opcode_And_Finish);
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procedure Evaluate_Or_Syntax is new Generic_And_Or_Syntax(False_Pointer, Opcode_Or_Finish);
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-- ----------------------------------------------------------------
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procedure Evaluate_Define_Syntax is
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pragma Inline (Evaluate_Define_Syntax);
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begin
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@ -84,6 +88,8 @@ raise Syntax_Error;
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end if;
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end Evaluate_Define_Syntax;
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-- ----------------------------------------------------------------
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procedure Evaluate_If_Syntax is
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pragma Inline (Evaluate_If_Syntax);
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begin
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@ -135,6 +141,8 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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Push_Subframe (Interp, Opcode_If_Finish, Operand);
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end Evaluate_If_Syntax;
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-- ----------------------------------------------------------------
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procedure Evaluate_Lambda_Syntax is
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pragma Inline (Evaluate_Lambda_Syntax);
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begin
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@ -213,6 +221,8 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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Return_Frame (Interp, Make_Closure(Interp.Self, Operand, Get_Frame_Environment(Interp.Stack)));
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end Evaluate_Lambda_Syntax;
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-- ----------------------------------------------------------------
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procedure Check_Let_Syntax is
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pragma Inline (Check_Let_Syntax);
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@ -297,20 +307,6 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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pragma Inline (Evaluate_Let_Syntax);
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Envir: aliased Object_Pointer;
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begin
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Check_Let_Syntax;
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-- Car: <bindings>, Cdr: <body>
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Set_Frame_Opcode (Interp.Stack, Opcode_Let_Finish);
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Set_Frame_Operand (Interp.Stack, Cdr);
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Clear_Frame_Result (Interp.Stack);
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-- Push a new environment onto the current frame.
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-- It's pushed even if <bindings> is empty because
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-- the new environment is still needed in such a case
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-- as shown in the first sample below.
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Envir := Make_Environment(Interp.Self, Get_Frame_Environment(Interp.Stack));
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Set_Frame_Environment (Interp.Stack, Envir);
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-- Some let samples:
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-- #1.
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-- (define x 99) ; define x in the root environment
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@ -327,22 +323,37 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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-- (define x (let ((x x)) x))
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--
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Check_Let_Syntax;
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-- Car: <bindings>, Cdr: <body>
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-- Switch the frame to Opcode_Grouped_Call and let its environment
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-- be the new environment created. Use Reload_Frame() instead
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-- of Switch_Frame() for continuation. This frame is executed once
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-- the Opcode_Let_Binding frame pushed in the 'if' block is finished.
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Reload_Frame (Interp, Opcode_Grouped_Call, Cdr);
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-- Create a new environment over the current environment.
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Envir := Make_Environment(Interp.Self, Get_Frame_Environment(Interp.Stack));
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Set_Frame_Environment (Interp.Stack, Envir); -- update the environment
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if Car /= Nil_Pointer then
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-- <bindings> is not empty
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Push_Top (Interp, Envir'Unchecked_Access);
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Envir := Get_Frame_Environment(Get_Frame_Parent(Interp.Stack));
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-- Create an array to hold the binding list and the evaluation result
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Cdr := Make_Array (Interp.Self, 3);
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Cdr.Pointer_Slot(1) := Car;
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-- Say, <bindings> is ((x 2) (y 2)).
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-- Get_Car(Car) is (x 2).
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-- To get x, Get_Car(Get_Car(Car))
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-- To get 2, Get_Car(Get_Cdr(Get_Car(Car)))
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-- The actual binding after evaluation must be performed in the
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-- new environment.
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Push_Frame (Interp, Opcode_Let_Binding, Cdr);
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-- Arrange to evaluate the first <binding> expression in the parent environment.
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Push_Frame_With_Environment (Interp, Opcode_Evaluate_Object, Get_Car(Get_Cdr(Get_Car(Car))), Envir);
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-- Arrange to perform actual binding. Pass the <binding> name as an intermediate
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-- and the next remaing <binding> list as an operand.
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Push_Subframe_With_Environment_And_Intermediate (Interp, Opcode_Let_Binding, Get_Cdr(Car), Envir, Get_Car(Get_Car(Car)));
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-- But evaluation must be done in the current environment which is
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-- the environment before the environment update above.
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Push_Frame_With_Environment (Interp, Opcode_Let_Evaluation, Cdr, Envir);
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Pop_Tops (Interp, 1);
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end if;
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end Evaluate_Let_Syntax;
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@ -354,7 +365,7 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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Check_Let_Syntax;
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-- Car: <bindings>, Cdr: <body>
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Set_Frame_Opcode (Interp.Stack, Opcode_Let_Finish);
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Set_Frame_Opcode (Interp.Stack, Opcode_Grouped_Call);
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Set_Frame_Operand (Interp.Stack, Cdr);
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Clear_Frame_Result (Interp.Stack);
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@ -376,26 +387,35 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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Check_Let_Syntax;
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-- Car: <bindings>, Cdr: <body>
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Set_Frame_Opcode (Interp.Stack, Opcode_Let_Finish);
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Set_Frame_Operand (Interp.Stack, Cdr);
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Clear_Frame_Result (Interp.Stack);
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-- Switch the frame to Opcode_Grouped_Call and let its environment
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-- be the new environment created. Use Reload_Frame() instead
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-- of Switch_Frame() for continuation. This frame is executed once
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-- the Opcode_Letrec_Binding frame pushed in the 'if' block is finished.
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Reload_Frame (Interp, Opcode_Grouped_Call, Cdr);
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-- Push a new environment.
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-- Create a new environment over the current environment.
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Envir := Make_Environment(Interp.Self, Get_Frame_Environment(Interp.Stack));
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Set_Frame_Environment (Interp.Stack, Envir);
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Set_Frame_Environment (Interp.Stack, Envir); -- update the environment
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if Car /= Nil_Pointer then
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-- <bindings> is not empty
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-- Arrange to perform evaluataion and binding in the
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-- new environment created.
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Cdr := Make_Array (Interp.Self, 3);
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Cdr.Pointer_Slot(1) := Car;
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Push_Frame (Interp, Opcode_Let_Binding, Cdr);
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Push_Frame (Interp, Opcode_Let_Evaluation, Cdr);
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-- Say, <bindings> is ((x 2) (y 2)).
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-- Get_Car(Car) is (x 2).
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-- To get x, Get_Car(Get_Car(Car))
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-- To get 2, Get_Car(Get_Cdr(Get_Car(Car)))
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-- Arrange to evaluate the first <binding> expression in the parent environment.
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Push_Frame (Interp, Opcode_Evaluate_Object, Get_Car(Get_Cdr(Get_Car(Car))));
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-- Arrange to perform actual binding. Pass the <binding> name as an intermediate
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-- and the next remaing <binding> list as an operand.
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Push_Subframe_With_Intermediate (Interp, Opcode_Letrec_Binding, Get_Cdr(Car), Get_Car(Get_Car(Car)));
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end if;
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end Evaluate_Letrec_Syntax;
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-- ----------------------------------------------------------------
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procedure Evaluate_Quote_Syntax is
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pragma Inline (Evaluate_Quote_Syntax);
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begin
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@ -412,6 +432,8 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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Return_Frame (Interp, Get_Car(Operand));
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end Evaluate_Quote_Syntax;
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-- ----------------------------------------------------------------
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procedure Evaluate_Set_Syntax is
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pragma Inline (Evaluate_Set_Syntax);
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begin
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@ -451,6 +473,8 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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end if;
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end Evaluate_Set_Syntax;
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-- ----------------------------------------------------------------
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begin
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Push_Top (Interp, Operand'Unchecked_Access);
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Push_Top (Interp, Car'Unchecked_Access);
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@ -21,7 +21,7 @@ procedure Execute (Interp: in out Interpreter_Record) is
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-- ----------------------------------------------------------------
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generic
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with function Is_Bool (X: in Object_Pointer) return Standard.Boolean;
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with function Is_Good_Result (X: in Object_Pointer) return Standard.Boolean;
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procedure Evaluate_While;
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procedure Evaluate_While is
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@ -36,7 +36,7 @@ procedure Execute (Interp: in out Interpreter_Record) is
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-- evaluate <test1>. Y must be valid even at the first time
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-- this procedure is called.
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if Is_Bool(Y) and then Is_Cons(X) then
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if Is_Good_Result(Y) and then Is_Cons(X) then
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-- The result is not what I look for.
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-- Yet there are still more tests to evaluate.
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--Switch_Frame (Interp.Stack, Get_Frame_Opcode(Interp.Stack), Get_Cdr(X), Nil_Pointer);
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@ -72,14 +72,14 @@ procedure Execute (Interp: in out Interpreter_Record) is
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X: Object_Pointer;
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Y: aliased Object_Pointer;
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begin
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-- Keep Y managed as Y is referenced beyond the gc point.
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-- Manage Y as it's referenced after the gc point.
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Push_Top (Interp, Y'Unchecked_Access);
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X := Get_Frame_Operand(Interp.Stack); -- symbol
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pragma Assert (Is_Symbol(X));
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Y := Get_Frame_Result(Interp.Stack); -- value list
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Put_Environment (Interp, X, Y); -- gc point
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Set_Current_Environment (Interp, X, Y); -- gc point
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Return_Frame (Interp, Y); -- Y is referenced here.
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Pop_Tops (Interp, 1); -- Unmanage Y
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end Do_Define_Finish;
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@ -101,10 +101,10 @@ procedure Execute (Interp: in out Interpreter_Record) is
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X := Get_Cdr(X); -- cons cell containing <alternate>
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if Is_Cons(X) then
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-- Switch the current current to evaluate <alternate>
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-- keeping the environment untouched. Use Pop_Frame and
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-- Push_Frame instead of Switch_Frame for continuation.
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-- If continuation has been created in <test>, continuation
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-- can be made to this frame.
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-- keeping the environment untouched. Use Reload_Frame
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-- instead of Switch_Frame for continuation. If continuation
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-- has been created in <test>, continuation can be made to
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-- this frame.
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--
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-- For example,
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-- (if (define xx (call/cc call/cc))
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@ -115,8 +115,7 @@ procedure Execute (Interp: in out Interpreter_Record) is
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-- <alternate>, its opcode must remain as Opcode_If_Finish.
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--Switch_Frame (Interp.Stack, Opcode_Evaluate_Object, Get_Car(X), Nil_Pointer);
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Pop_Frame (Interp);
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Push_Frame (Interp, Opcode_Evaluate_Object, Get_Car(X));
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Reload_Frame (Interp, Opcode_Evaluate_Object, Get_Car(X));
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else
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-- Return nil if no <alternate> is specified
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Return_Frame (Interp, Nil_Pointer);
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@ -124,11 +123,10 @@ procedure Execute (Interp: in out Interpreter_Record) is
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else
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-- All values except #f are true values. evaluate <consequent>.
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-- Switch the current current to evaluate <consequent> keeping
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-- the environment untouched. Use Pop_Frame and Push_Frame
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-- instead of Switch_Frame for continuation to work.
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-- the environment untouched. Use Reload_Frame instead of
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-- Switch_Frame for continuation to work.
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--Switch_Frame (Interp.Stack, Opcode_Evaluate_Object, Get_Car(X), Nil_Pointer);
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Pop_Frame (Interp);
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Push_Frame (Interp, Opcode_Evaluate_Object, Get_Car(X));
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Reload_Frame (Interp, Opcode_Evaluate_Object, Get_Car(X));
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end if;
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end Do_If_Finish;
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@ -189,8 +187,7 @@ procedure Execute (Interp: in out Interpreter_Record) is
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R := Make_Cons(Interp.Self, Get_Frame_Result(Interp.Stack), Nil_Pointer);
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X := Get_Frame_Operand(Interp.Stack);
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Pop_Frame (Interp);
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Push_Frame_With_Intermediate (Interp, Opcode_Apply, X, R);
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Reload_Frame_With_Intermediate (Interp, Opcode_Apply, X, R);
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--Pop_Tops (Interp, 2);
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end Do_Procedure_Call_Finish;
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@ -218,96 +215,56 @@ procedure Execute (Interp: in out Interpreter_Record) is
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end Do_Grouped_Call;
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-- ----------------------------------------------------------------
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procedure Do_Let_Evaluation is
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pragma Inline (Do_Let_Evaluation);
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X: aliased Object_Pointer;
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S: aliased Object_Pointer;
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R: aliased Object_Pointer;
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begin
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Push_Top (Interp, X'Unchecked_Access);
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Push_Top (Interp, S'Unchecked_Access);
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Push_Top (Interp, R'Unchecked_Access);
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X := Get_Frame_Operand(Interp.Stack);
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pragma Assert (Is_Array(X));
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R := X.Pointer_Slot(3);
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if R = Nil_Pointer then
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-- First call;
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X.Pointer_Slot(2) := X.Pointer_Slot(1);
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else
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-- Subsequent calls. Store the result in the room created
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-- in the previous call.
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pragma Assert (Is_Cons(R));
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Set_Car (R, Get_Frame_Result(Interp.Stack));
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end if;
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S := X.Pointer_Slot(2);
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if Is_Cons(S) then
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-- Handle each binding.
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-- Make an empty room to hold the result on the next call
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R := Make_Cons (Interp.Self, Nil_Pointer, R);
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X.Pointer_Slot(3) := R;
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-- Remember the next <operator> to evaluate
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X.Pointer_Slot(2) := Get_Cdr(S);
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-- Say, <bindings> is ((x 2) (y 2)).
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-- for the first call, Get_Car(S) is (x 2).
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-- To get x, Get_Car(Get_Car(S))
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-- To get 2, Get_Car(Get_Cdr(Get_Car(S)))
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Push_Frame (Interp, Opcode_Evaluate_Object, Get_Car(Get_Cdr(Get_Car(S))));
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else
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-- No more binding to handle.
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Pop_Frame (Interp);
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-- The operands at the Let_Evaluation and the Let_Binding frame
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-- must be the identical objects. this way, i don't need to carry
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-- over the binding result to the Let_Binding frame.
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pragma Assert (X = Get_Frame_Operand(Interp.Stack));
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pragma Assert (Get_Frame_Opcode(Interp.Stack) = Opcode_Let_Binding);
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--X := Get_Frame_Operand(Interp.Stack);
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--pragma Assert (Is_Array(X));
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--pragma Assert (X.Pointer_Slot(3) = Nil_Pointer);
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--X.Pointer_Slot(3) := R;
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end if;
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Pop_Tops (Interp, 3);
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end Do_Let_Evaluation;
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procedure Do_Let_Binding is
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pragma Inline (Do_Let_Binding);
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X: aliased Object_Pointer;
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S: aliased Object_Pointer;
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R: aliased Object_Pointer;
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O: aliased Object_Pointer;
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begin
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Push_Top (Interp, X'Unchecked_Access);
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Push_Top (Interp, S'Unchecked_Access);
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Push_Top (Interp, R'Unchecked_Access);
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-- Perform binding in the parent environment.
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Set_Parent_Environment (Interp, Get_Frame_Intermediate(Interp.Stack), Get_Frame_Result(Interp.Stack));
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X := Get_Frame_Operand(Interp.Stack); -- <bindings> and onward
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pragma Assert (Is_Array(X));
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O := Get_Frame_Operand(Interp.Stack);
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S := X.Pointer_Slot(1);
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R := X.Pointer_Slot(3);
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R := Reverse_Cons(R);
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-- Say, <bindings> is ((x 2) (y 2)).
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-- Get_Car(O) is (x 2).
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-- To get x, Get_Car(Get_Car(O))
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-- To get 2, Get_Car(Get_Cdr(Get_Car(O)))
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if Is_Cons(O) then
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Push_Top (Interp, O'Unchecked_Access);
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while Is_Cons(S) loop
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pragma Assert (Is_Cons(R));
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Put_Environment (Interp, Get_Car(Get_Car(S)), Get_Car(R));
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S := Get_Cdr(S);
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R := Get_Cdr(R);
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end loop;
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Reload_Frame (Interp, Opcode_Evaluate_Object, Get_Car(Get_Cdr(Get_Car(O))));
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Push_Subframe_With_Intermediate (Interp, Opcode_Let_Binding, Get_Cdr(O), Get_Car(Get_Car(O)));
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Pop_Tops (Interp, 1);
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else
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Pop_Frame (Interp); -- done.
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pragma Assert (Get_Frame_Opcode(Interp.Stack) = Opcode_Let_Finish);
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Pop_Tops (Interp, 3);
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end if;
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end Do_Let_Binding;
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procedure Do_Letrec_Binding is
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pragma Inline (Do_Letrec_Binding);
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O: aliased Object_Pointer;
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begin
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-- Perform binding in the parent environment.
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Set_Current_Environment (Interp, Get_Frame_Intermediate(Interp.Stack), Get_Frame_Result(Interp.Stack));
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O := Get_Frame_Operand(Interp.Stack);
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-- Say, <bindings> is ((x 2) (y 2)).
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-- Get_Car(O) is (x 2).
|
||||
-- To get x, Get_Car(Get_Car(O))
|
||||
-- To get 2, Get_Car(Get_Cdr(Get_Car(O)))
|
||||
if Is_Cons(O) then
|
||||
Push_Top (Interp, O'Unchecked_Access);
|
||||
|
||||
Reload_Frame (Interp, Opcode_Evaluate_Object, Get_Car(Get_Cdr(Get_Car(O))));
|
||||
Push_Subframe_With_Intermediate (Interp, Opcode_Letrec_Binding, Get_Cdr(O), Get_Car(Get_Car(O)));
|
||||
|
||||
Pop_Tops (Interp, 1);
|
||||
else
|
||||
Pop_Frame (Interp);
|
||||
end if;
|
||||
end Do_Letrec_Binding;
|
||||
|
||||
procedure Do_Letast_Binding is
|
||||
pragma Inline (Do_Letast_Binding);
|
||||
X: Object_Pointer;
|
||||
@ -336,7 +293,7 @@ procedure Execute (Interp: in out Interpreter_Record) is
|
||||
-- Push a new environment for each binding.
|
||||
Envir := Make_Environment(Interp.Self, Get_Frame_Environment(Interp.Stack));
|
||||
Set_Frame_Environment (Interp.Stack, Envir);
|
||||
Put_Environment (Interp, Get_Car(Get_Car(X)), Get_Frame_Result(Interp.Stack));
|
||||
Set_Current_Environment (Interp, Get_Car(Get_Car(X)), Get_Frame_Result(Interp.Stack));
|
||||
|
||||
X := Get_Cdr(X); -- next binding
|
||||
if Is_Cons(X) then
|
||||
@ -352,37 +309,28 @@ procedure Execute (Interp: in out Interpreter_Record) is
|
||||
Pop_Frame (Interp); -- Done
|
||||
|
||||
-- Update the environment of the Let_Finish frame.
|
||||
pragma Assert (Get_Frame_Opcode(Interp.Stack) = Opcode_Let_Finish);
|
||||
--pragma Assert (Get_Frame_Opcode(Interp.Stack) = Opcode_Let_Finish);
|
||||
Set_Frame_Environment (Interp.Stack, Envir);
|
||||
end if;
|
||||
|
||||
Pop_Tops (Interp, 2);
|
||||
end Do_Letast_Binding_Finish;
|
||||
|
||||
procedure Do_Let_Finish is
|
||||
pragma Inline (Do_Let_Finish);
|
||||
begin
|
||||
pragma Assert (Get_Frame_Result(Interp.Stack) = Nil_Pointer);
|
||||
-- Evaluate_Let_Syntax has places <body> in the operand of this frame.
|
||||
-- <body> can be evaluated as if it's in 'begin'.
|
||||
--Set_Frame_Opcode (Interp.Stack, Opcode_Evaluate_Group);
|
||||
Set_Frame_Opcode (Interp.Stack, Opcode_Grouped_Call);
|
||||
end Do_Let_Finish;
|
||||
|
||||
-- --------------------------------------------------------------------
|
||||
|
||||
procedure Do_Set_Finish is
|
||||
pragma Inline (Do_Set_Finish);
|
||||
X: aliased Object_Pointer;
|
||||
X: Object_Pointer;
|
||||
Y: aliased Object_Pointer;
|
||||
begin
|
||||
Push_Top (Interp, X'Unchecked_Access);
|
||||
Push_Top (Interp, Y'Unchecked_Access);
|
||||
|
||||
X := Get_Frame_Operand(Interp.Stack); -- symbol
|
||||
Y := Get_Frame_Result(Interp.Stack); -- value
|
||||
ada.text_io.put ("%%%%% FINISH SET SYNTAX => ");
|
||||
print (interp, Get_Frame_Result(Interp.Stack));
|
||||
ada.text_io.put ("%%%%% FINISH SET SYNTAX => [");
|
||||
print (interp, X);
|
||||
print (interp, Y);
|
||||
ada.text_io.put_line ("]");
|
||||
pragma Assert (Is_Symbol(X));
|
||||
|
||||
if Set_Environment(Interp.Self, X, Y) = null then
|
||||
@ -392,7 +340,7 @@ print (interp, Get_Frame_Result(Interp.Stack));
|
||||
|
||||
Return_Frame (Interp, Y);
|
||||
|
||||
Pop_Tops (Interp, 2);
|
||||
Pop_Tops (Interp, 1);
|
||||
end Do_Set_Finish;
|
||||
|
||||
procedure Evaluate is separate;
|
||||
@ -970,11 +918,8 @@ ada.text_io.put_line (Opcode_Type'Image(Get_Frame_Opcode(Interp.Stack)));
|
||||
when Opcode_Letast_Binding_Finish =>
|
||||
Do_Letast_Binding_Finish;
|
||||
|
||||
when Opcode_Let_Evaluation =>
|
||||
Do_Let_Evaluation;
|
||||
|
||||
when Opcode_Let_Finish =>
|
||||
Do_Let_Finish;
|
||||
when Opcode_Letrec_Binding =>
|
||||
Do_Letrec_Binding;
|
||||
|
||||
when Opcode_Or_Finish =>
|
||||
Do_Or_Finish;
|
||||
|
@ -106,8 +106,7 @@ package body H2.Scheme is
|
||||
Opcode_Let_Binding,
|
||||
Opcode_Letast_Binding,
|
||||
Opcode_Letast_Binding_Finish,
|
||||
Opcode_Let_Evaluation,
|
||||
Opcode_Let_Finish,
|
||||
Opcode_Letrec_Binding,
|
||||
Opcode_Procedure_Call,
|
||||
Opcode_Procedure_Call_Finish,
|
||||
Opcode_Set_Finish,
|
||||
@ -1440,7 +1439,7 @@ Ada.Text_IO.Put_Line ("Make_String...");
|
||||
Envir: Object_Pointer;
|
||||
Arr: Object_Pointer;
|
||||
begin
|
||||
-- Search the whole environment chain unlike Put_Environment().
|
||||
-- Search the whole environment chain unlike Set_Current_Environment().
|
||||
-- It is mainly for set!.
|
||||
pragma Assert (Is_Symbol(Key));
|
||||
|
||||
@ -1462,13 +1461,11 @@ Ada.Text_IO.Put_Line ("Make_String...");
|
||||
end Set_Environment;
|
||||
|
||||
procedure Put_Environment (Interp: in out Interpreter_Record;
|
||||
Envir: in Object_Pointer;
|
||||
Key: in Object_Pointer;
|
||||
Value: in Object_Pointer) is
|
||||
Arr: Object_Pointer;
|
||||
Envir: aliased Object_Pointer;
|
||||
begin
|
||||
Envir := Get_Frame_Environment(Interp.Stack);
|
||||
|
||||
-- Search the current environment only. It doesn't search the
|
||||
-- environment. If no key is found, add a new pair
|
||||
-- This is mainly for define.
|
||||
@ -1483,10 +1480,11 @@ Ada.Text_IO.Put_Line ("Make_String...");
|
||||
-- Add a new key/value pair in the current environment
|
||||
-- if no existing pair has been found.
|
||||
declare
|
||||
Aliased_Envir: aliased Object_Pointer := Envir;
|
||||
Aliased_Key: aliased Object_Pointer := Key;
|
||||
Aliased_Value: aliased Object_Pointer := Value;
|
||||
begin
|
||||
Push_Top (Interp, Envir'Unchecked_Access);
|
||||
Push_Top (Interp, Aliased_Envir'Unchecked_Access);
|
||||
Push_Top (Interp, Aliased_Key'Unchecked_Access);
|
||||
Push_Top (Interp, Aliased_Value'Unchecked_Access);
|
||||
|
||||
@ -1495,14 +1493,30 @@ Ada.Text_IO.Put_Line ("Make_String...");
|
||||
Arr.Pointer_Slot(2) := Aliased_Value;
|
||||
|
||||
-- Chain the pair to the head of the list
|
||||
Arr.Pointer_Slot(3) := Get_Car(Envir);
|
||||
Set_Car (Envir, Arr);
|
||||
Arr.Pointer_Slot(3) := Get_Car(Aliased_Envir);
|
||||
Set_Car (Aliased_Envir, Arr);
|
||||
|
||||
Pop_Tops (Interp, 3);
|
||||
end;
|
||||
end if;
|
||||
end Put_Environment;
|
||||
|
||||
procedure Set_Current_Environment (Interp: in out Interpreter_Record;
|
||||
Key: in Object_Pointer;
|
||||
Value: in Object_Pointer) is
|
||||
pragma Inline (Set_Current_Environment);
|
||||
begin
|
||||
Put_Environment (Interp, Get_Frame_Environment(Interp.Stack), Key, Value);
|
||||
end Set_Current_Environment;
|
||||
|
||||
procedure Set_Parent_Environment (Interp: in out Interpreter_Record;
|
||||
Key: in Object_Pointer;
|
||||
Value: in Object_Pointer) is
|
||||
pragma Inline (Set_Parent_Environment);
|
||||
begin
|
||||
Put_Environment (Interp, Get_Frame_Environment(Get_Frame_Parent(Interp.Stack)), Key, Value);
|
||||
end Set_Parent_Environment;
|
||||
|
||||
-----------------------------------------------------------------------------
|
||||
|
||||
function Make_Syntax (Interp: access Interpreter_Record;
|
||||
@ -1545,7 +1559,7 @@ Ada.Text_IO.Put_Line ("Make_String...");
|
||||
-- Link it to the top environement
|
||||
pragma Assert (Get_Frame_Environment(Interp.Stack) = Interp.Root_Environment);
|
||||
pragma Assert (Get_Environment(Interp.Self, Symbol) = null);
|
||||
Put_Environment (Interp.all, Symbol, Proc);
|
||||
Set_Current_Environment (Interp.all, Symbol, Proc);
|
||||
|
||||
Pop_Tops (Interp.all, 2);
|
||||
return Proc;
|
||||
@ -2154,6 +2168,16 @@ end if;
|
||||
Interp.Stack := Insert_Frame(Interp.Self, Interp.Stack, Opcode, Operand, Envir, Nil_Pointer);
|
||||
end Push_Frame_With_Environment;
|
||||
|
||||
procedure Push_Frame_With_Environment_And_Intermediate (Interp: in out Interpreter_Record;
|
||||
Opcode: in Opcode_Type;
|
||||
Operand: in Object_Pointer;
|
||||
Envir: in Object_Pointer;
|
||||
Interm: in Object_Pointer) is
|
||||
pragma Inline (Push_Frame_With_Environment_And_Intermediate);
|
||||
begin
|
||||
Interp.Stack := Insert_Frame(Interp.Self, Interp.Stack, Opcode, Operand, Envir, Interm);
|
||||
end Push_Frame_With_Environment_And_Intermediate;
|
||||
|
||||
procedure Push_Frame_With_Intermediate (Interp: in out Interpreter_Record;
|
||||
Opcode: in Opcode_Type;
|
||||
Operand: in Object_Pointer;
|
||||
@ -2193,6 +2217,17 @@ end if;
|
||||
Set_Frame_Parent (Interp.Stack, Insert_Frame(Interp.Self, Get_Frame_Parent(Interp.Stack), Opcode, Operand, Get_Frame_Environment(Interp.Stack), Interm));
|
||||
end Push_Subframe_With_Intermediate;
|
||||
|
||||
procedure Push_Subframe_With_Environment_And_Intermediate (Interp: in out Interpreter_Record;
|
||||
Opcode: in Opcode_Type;
|
||||
Operand: in Object_Pointer;
|
||||
Envir: in Object_Pointer;
|
||||
Interm: in Object_Pointer) is
|
||||
pragma Inline (Push_Subframe_With_Environment_And_Intermediate);
|
||||
begin
|
||||
-- Place a new frame below the existing top frame.
|
||||
Set_Frame_Parent (Interp.Stack, Insert_Frame(Interp.Self, Get_Frame_Parent(Interp.Stack), Opcode, Operand, Envir, Interm));
|
||||
end Push_Subframe_With_Environment_And_Intermediate;
|
||||
|
||||
procedure Pop_Frame (Interp: in out Interpreter_Record) is
|
||||
pragma Inline (Pop_Frame);
|
||||
begin
|
||||
@ -2211,6 +2246,31 @@ end if;
|
||||
Set_Frame_Result (Interp.Stack, Value);
|
||||
end Return_Frame;
|
||||
|
||||
procedure Reload_Frame (Interp: in out Interpreter_Record;
|
||||
Opcode: in Opcode_Type;
|
||||
Operand: in Object_Pointer) is
|
||||
pragma Inline (Reload_Frame);
|
||||
Envir: Object_Pointer;
|
||||
begin
|
||||
-- Change various frame fields keeping the environment.
|
||||
Envir := Get_Frame_Environment (Interp.Stack);
|
||||
Pop_Frame (Interp);
|
||||
Push_Frame_With_Environment (Interp, Opcode, Operand, Envir);
|
||||
end Reload_Frame;
|
||||
|
||||
procedure Reload_Frame_With_Intermediate (Interp: in out Interpreter_Record;
|
||||
Opcode: in Opcode_Type;
|
||||
Operand: in Object_Pointer;
|
||||
Interm: in Object_Pointer) is
|
||||
pragma Inline (Reload_Frame_With_Intermediate);
|
||||
Envir: Object_Pointer;
|
||||
begin
|
||||
-- Change various frame fields keeping the environment.
|
||||
Envir := Get_Frame_Environment (Interp.Stack);
|
||||
Pop_Frame (Interp);
|
||||
Push_Frame_With_Environment_And_Intermediate (Interp, Opcode, Operand, Envir, Interm);
|
||||
end Reload_Frame_With_Intermediate;
|
||||
|
||||
procedure Execute (Interp: in out Interpreter_Record) is separate;
|
||||
|
||||
procedure Evaluate (Interp: in out Interpreter_Record;
|
||||
|
@ -230,7 +230,13 @@ package H2.Scheme is
|
||||
Pointer_Slot: Object_Pointer_Array(1 .. Size) := (others => null);
|
||||
when Character_Object =>
|
||||
Character_Slot: Object_Character_Array(1 .. Size) := (others => Object_Character'First);
|
||||
Character_Terminator: Object_Character := Object_Character'First; -- TODO: can this guarantee terminating NULL? require some attribute for it to work?
|
||||
-- The character terminator is to ease integration with
|
||||
-- other languages using a terminating null.
|
||||
-- TODO: can this guarantee terminating NULL? is this
|
||||
-- terminator guaranteed to be placed after the
|
||||
-- character_slot without any gaps in between
|
||||
-- under the current alignement condition?
|
||||
Character_Terminator: Object_Character := Object_Character'First;
|
||||
when Byte_Object =>
|
||||
Byte_Slot: Object_Byte_Array(1 .. Size) := (others => 0);
|
||||
when Word_Object =>
|
||||
|
Loading…
x
Reference in New Issue
Block a user