added numeric comparison procedures
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24e62d6f81
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@ -206,6 +206,90 @@ Ada.Text_IO.Put ("NOT INTEGER FOR MULTIPLY"); Print (Interp, Car);
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Chain_Frame_Result (Interp, Interp.Stack, Integer_To_Pointer(Num));
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end Apply_Quotient_Procedure;
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generic
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with function Validate (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean;
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with function Compare (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean;
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procedure Apply_Compare_Procedure;
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procedure Apply_Compare_Procedure is
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-- TODO: support other values
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Ptr: Object_Pointer := Args;
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X: Object_Pointer;
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Y: Object_Pointer;
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Bool: Object_Pointer := True_Pointer;
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begin
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if Is_Cons(Ptr) and then Is_Cons(Get_Cdr(Ptr)) then
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-- at least 2 actual arguments
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X := Get_Car(Ptr);
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Ptr := Get_Cdr(Ptr);
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while Is_Cons(Ptr) loop
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Y := Get_Car(Ptr);
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if not Validate(X, Y) then
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ADA.TEXT_IO.PUT_LINE ("NON INTEGER FOR COMPARISION");
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raise Evaluation_Error;
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end if;
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if not Compare(X, Y) then
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Bool := False_Pointer;
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exit;
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end if;
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X := Y;
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Ptr := Get_Cdr(Ptr);
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end loop;
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Pop_Frame (Interp); -- Done with the current frame
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Chain_Frame_Result (Interp, Interp.Stack, Bool);
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else
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Ada.Text_IO.Put_line ("TOO FEW ARGUMETNS FOR COMPARISON");
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raise Syntax_Error;
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end if;
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end Apply_Compare_Procedure;
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function Validate_Numeric (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Is_Integer(X) and then Is_Integer(Y);
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end Validate_Numeric;
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function Equal_To (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Pointer_To_Integer(X) = Pointer_To_Integer(Y);
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end Equal_To;
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function Greater_Than (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Pointer_To_Integer(X) > Pointer_To_Integer(Y);
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end Greater_Than;
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function Less_Than (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Pointer_To_Integer(X) < Pointer_To_Integer(Y);
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end Less_Than;
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function Greater_Or_Equal (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Pointer_To_Integer(X) >= Pointer_To_Integer(Y);
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end Greater_Or_Equal;
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function Less_Or_Equal (X: in Object_Pointer; Y: in Object_Pointer) return Standard.Boolean is
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-- TODO: support BIGNUM, OTHER DATA TYPES
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begin
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return Pointer_To_Integer(X) <= Pointer_To_Integer(Y);
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end Less_Or_Equal;
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procedure Apply_EQ_Procedure is new Apply_Compare_Procedure (Validate_Numeric, Equal_To);
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procedure Apply_GT_Procedure is new Apply_Compare_Procedure (Validate_Numeric, Greater_Than);
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procedure Apply_LT_Procedure is new Apply_Compare_Procedure (Validate_Numeric, Less_Than);
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procedure Apply_GE_Procedure is new Apply_Compare_Procedure (Validate_Numeric, Greater_Or_Equal);
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procedure Apply_LE_Procedure is new Apply_Compare_Procedure (Validate_Numeric, Less_Or_Equal);
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procedure Apply_Closure is
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Fbody: aliased Object_Pointer;
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Formal: aliased Object_Pointer;
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@ -219,7 +303,7 @@ Ada.Text_IO.Put ("NOT INTEGER FOR MULTIPLY"); Print (Interp, Car);
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-- Get_Closure_Code(Func) returns "((x y) (+ x y) (* x y))"
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-- Push a new environmen for the closure
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Interp.Environment := Make_Environment (Interp.Self, Get_Closure_Environment(Func));
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Interp.Environment := Make_Environment(Interp.Self, Get_Closure_Environment(Func));
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Fbody := Get_Closure_Code(Func);
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pragma Assert (Is_Cons(Fbody)); -- the lambda evaluator must ensure this.
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@ -307,7 +391,6 @@ Print (Interp, Operand);
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when Setcdr_Procedure =>
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Apply_Setcdr_Procedure;
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when Add_Procedure =>
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Apply_Add_Procedure;
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when Subtract_Procedure =>
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@ -319,6 +402,16 @@ Print (Interp, Operand);
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--when Remainder_Procedure =>
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-- Apply_Remainder_Procedure;
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when EQ_Procedure =>
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Apply_EQ_Procedure;
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when GT_Procedure =>
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Apply_GT_Procedure;
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when LT_Procedure =>
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Apply_LT_Procedure;
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when GE_Procedure =>
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Apply_GE_Procedure;
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when LE_Procedure =>
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Apply_LE_Procedure;
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when others =>
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raise Internal_Error;
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end case;
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@ -10,6 +10,8 @@ procedure Evaluate is
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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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-- TODO: limit the context where define can be used.
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-- (define x 10)
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-- (define (add x y) (+ x y)) -> (define add (lambda (x y) (+ x y)))
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Operand := Cdr; -- Skip "define"
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@ -114,10 +116,10 @@ Ada.Text_IO.Put_Line ("NO ALTERNATE");
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end if;
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Car := Get_Car(Operand); -- <formals>
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if Is_Symbol(Car) then
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-- (lambda x ...)
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-- nothing to do.
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null;
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if Car = Nil_Pointer or else Is_Symbol(Car) then
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-- (lambda () ...) or (lambda x ...)
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-- nothing to do
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null;
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elsif Is_Cons(Car) then
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declare
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Formals: Object_Pointer := Car;
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@ -46,13 +46,18 @@ package body H2.Scheme is
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Label_Car: constant Object_Character_Array := (Ch.LC_C, Ch.LC_A, Ch.LC_R); -- "car"
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Label_Cdr: constant Object_Character_Array := (Ch.LC_C, Ch.LC_D, Ch.LC_R); -- "cdr"
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Label_Cons: constant Object_Character_Array := (Ch.LC_C, Ch.LC_O, Ch.LC_N, Ch.LC_S); -- "cons"
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Label_EQ: constant Object_Character_Array := (1 => Ch.Equal_Sign); -- "="
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Label_GE: constant Object_Character_Array := (Ch.Greater_Than_Sign, Ch.Equal_Sign); -- ">="
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Label_GT: constant Object_Character_Array := (1 => Ch.Greater_Than_Sign); -- ">"
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Label_LE: constant Object_Character_Array := (Ch.Less_Than_Sign, Ch.Equal_Sign); -- "<="
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Label_LT: constant Object_Character_Array := (1 => Ch.Less_Than_Sign); -- "<"
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Label_Minus: constant Object_Character_Array := (1 => Ch.Minus_Sign); -- "-"
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Label_Multiply: constant Object_Character_Array := (1 => Ch.Asterisk); -- "*"
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Label_Plus: constant Object_Character_Array := (1 => Ch.Plus_Sign); -- "+"
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Label_Quotient: constant Object_Character_Array := (Ch.LC_Q, Ch.LC_U, Ch.LC_O, Ch.LC_T, Ch.LC_I, Ch.LC_E, Ch.LC_N, Ch.LC_T); -- "quotient"
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Label_Remainder: constant Object_Character_Array := (Ch.LC_R, Ch.LC_E, Ch.LC_M, Ch.LC_A, Ch.LC_I, Ch.LC_N, Ch.LC_D, Ch.LC_E, Ch.LC_R); -- "remainder"
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Label_Setcar: constant Object_Character_Array := (Ch.LC_S, Ch.LC_E, Ch.LC_T, Ch.Minus_Sign, Ch.LC_C, Ch.LC_A, Ch.LC_R, Ch.Exclamation); -- "set-car!"
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Label_Setcdr: constant Object_Character_Array := (Ch.LC_S, Ch.LC_E, Ch.LC_T, Ch.Minus_Sign, Ch.LC_C, Ch.LC_D, Ch.LC_R, Ch.Exclamation); -- "set-cdr!"
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Label_Plus: constant Object_Character_Array := (1 => Ch.Plus_Sign); -- "+"
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Label_Minus: constant Object_Character_Array := (1 => Ch.Minus_Sign); -- "-"
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Label_Multiply: constant Object_Character_Array := (1 => Ch.Asterisk); -- "*"
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Label_Newline: constant Object_Character_Array := (Ch.LC_N, Ch.LC_E, Ch.LC_W, Ch.LC_L, Ch.LC_I, Ch.LC_N, Ch.LC_E); -- "newline"
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@ -548,25 +553,17 @@ ada.text_io.put_line ("HEAP SOURCE IS NIL");
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Original_Symbol_Table: Object_Pointer;
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--function To_Object_Pointer is new Ada.Unchecked_Conversion (Heap_Element_Pointer, Object_Pointer);
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function Move_One_Object (Source: in Object_Pointer) return Object_Pointer is
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begin
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pragma Assert (Is_Normal_Pointer(Source));
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--if Is_Special_Pointer(Source) then
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--Print_Object_Pointer ("Moving special ...", Source);
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-- return Source;
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--end if;
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if Source.Kind = Moved_Object then
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--Print_Object_Pointer ("Moving NOT ...", Source);
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-- the object has moved to the new heap.
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-- the size field has been updated to the new object
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-- in the 'else' block below. i can simply return it
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-- without further migration.
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return Get_New_Location (Source);
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else
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--Print_Object_Pointer ("Moving REALLY ...", Source);
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declare
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Bytes: Heap_Size;
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@ -608,8 +605,6 @@ ada.text_io.put_line ("HEAP SOURCE IS NIL");
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-- if the object is marked with FLAG_MOVED;
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Set_New_Location (Source, Ptr);
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--Ada.Text_IO.Put_Line (Object_Word'Image(Pointer_To_Word(Source)) & Object_Word'Image(Pointer_To_Word(New_Object)));
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--Ada.Text_IO.Put_Line (" Flags....after " & Object_Kind'Image(Source.Kind) & " New Size " & Object_Size'Image(Source.Size) & " New Loc: " & Object_Word'Image(Pointer_To_Word(Source.New_Pointer)));
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-- Return the new object
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return New_Object;
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end;
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@ -728,6 +723,11 @@ ada.text_io.put_line ("HEAP SOURCE IS NIL");
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end if;
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end loop;
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-- Migrate some known symbols
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Interp.Symbol.Arrow := Move_One_Object(Interp.Symbol.Arrow);
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Interp.Symbol.Quasiquote := Move_One_Object(Interp.Symbol.Quasiquote);
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Interp.Symbol.Quote := Move_One_Object(Interp.Symbol.Quote);
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--Ada.Text_IO.Put_Line (">>> [GC SCANNING NEW HEAP]");
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-- Scan the heap
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Last_Pos := Scan_New_Heap(Interp.Heap(New_Heap).Space'First);
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@ -742,9 +742,6 @@ ada.text_io.put_line ("HEAP SOURCE IS NIL");
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--Print_Object_Pointer (">>> [GC MOVING SYMBOL TABLE]", Interp.Symbol_Table);
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-- Migrate the symbol table itself
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Interp.Symbol_Table := Move_One_Object(Interp.Symbol_Table);
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Interp.Symbol.Arrow := Move_One_Object(Interp.Symbol.Arrow);
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Interp.Symbol.Quasiquote := Move_One_Object(Interp.Symbol.Quasiquote);
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Interp.Symbol.Quote := Move_One_Object(Interp.Symbol.Quote);
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-- Update temporary object pointers that were pointing to the symbol table
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if Original_Symbol_Table /= null then
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@ -1626,16 +1623,21 @@ Ada.Text_IO.Put_Line ("Make_String...");
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procedure Make_Procedure_Objects is
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Dummy: Object_Pointer;
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begin
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Dummy := Make_Procedure (Interp.Self, Add_Procedure, Label_Plus); -- "+"
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Dummy := Make_Procedure (Interp.Self, Car_Procedure, Label_Car); -- "car"
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Dummy := Make_Procedure (Interp.Self, Cdr_Procedure, Label_Cdr); -- "cdr"
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Dummy := Make_Procedure (Interp.Self, Cons_Procedure, Label_Cons); -- "cons"
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Dummy := Make_Procedure (Interp.Self, Multiply_Procedure, Label_Multiply); -- "*"
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Dummy := Make_Procedure (Interp.Self, Quotient_Procedure, Label_Quotient); -- "quotient"
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Dummy := Make_Procedure (Interp.Self, Remainder_Procedure, Label_Remainder); -- "remainder"
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Dummy := Make_Procedure (Interp.Self, Setcar_Procedure, Label_Setcar); -- "set-car!"
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Dummy := Make_Procedure (Interp.Self, Setcdr_Procedure, Label_Setcdr); -- "set-cdr!"
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Dummy := Make_Procedure (Interp.Self, Subtract_Procedure, Label_Minus); -- "-"
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Dummy := Make_Procedure (Interp.Self, Add_Procedure, Label_Plus); -- "+"
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Dummy := Make_Procedure (Interp.Self, Car_Procedure, Label_Car); -- "car"
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Dummy := Make_Procedure (Interp.Self, Cdr_Procedure, Label_Cdr); -- "cdr"
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Dummy := Make_Procedure (Interp.Self, Cons_Procedure, Label_Cons); -- "cons"
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Dummy := Make_Procedure (Interp.Self, EQ_Procedure, Label_EQ); -- "="
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Dummy := Make_Procedure (Interp.Self, GE_Procedure, Label_GE); -- ">="
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Dummy := Make_Procedure (Interp.Self, GT_Procedure, Label_GT); -- ">"
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Dummy := Make_Procedure (Interp.Self, LE_Procedure, Label_LE); -- "<="
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Dummy := Make_Procedure (Interp.Self, LT_Procedure, Label_LT); -- "<"
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Dummy := Make_Procedure (Interp.Self, Multiply_Procedure, Label_Multiply); -- "*"
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Dummy := Make_Procedure (Interp.Self, Quotient_Procedure, Label_Quotient); -- "quotient"
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Dummy := Make_Procedure (Interp.Self, Remainder_Procedure, Label_Remainder); -- "remainder"
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Dummy := Make_Procedure (Interp.Self, Setcar_Procedure, Label_Setcar); -- "set-car!"
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Dummy := Make_Procedure (Interp.Self, Setcdr_Procedure, Label_Setcdr); -- "set-cdr!"
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Dummy := Make_Procedure (Interp.Self, Subtract_Procedure, Label_Minus); -- "-"
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end Make_Procedure_Objects;
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procedure Make_Common_Symbol_Objects is
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@ -182,16 +182,21 @@ package H2.Scheme is
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Set_Syntax: constant Syntax_Code := Syntax_Code'(14);
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subtype Procedure_Code is Object_Integer;
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Add_Procedure: constant Procedure_Code := Procedure_Code'(0);
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Car_Procedure: constant Procedure_Code := Procedure_Code'(1);
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Cdr_Procedure: constant Procedure_Code := Procedure_Code'(2);
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Cons_Procedure: constant Procedure_Code := Procedure_Code'(3);
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Multiply_Procedure: constant Procedure_Code := Procedure_Code'(4);
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Quotient_Procedure: constant Procedure_Code := Procedure_Code'(5);
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Remainder_Procedure: constant Procedure_Code := Procedure_Code'(6);
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Setcar_Procedure: constant Procedure_Code := Procedure_Code'(7);
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Setcdr_Procedure: constant Procedure_Code := Procedure_Code'(8);
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Subtract_Procedure: constant Procedure_Code := Procedure_Code'(9);
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Add_Procedure: constant Procedure_Code := Procedure_Code'(0);
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Car_Procedure: constant Procedure_Code := Procedure_Code'(1);
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Cdr_Procedure: constant Procedure_Code := Procedure_Code'(2);
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Cons_Procedure: constant Procedure_Code := Procedure_Code'(3);
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EQ_Procedure: constant Procedure_Code := Procedure_Code'(4);
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GT_Procedure: constant Procedure_Code := Procedure_Code'(5);
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LT_Procedure: constant Procedure_Code := Procedure_Code'(6);
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GE_Procedure: constant Procedure_Code := Procedure_Code'(7);
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LE_Procedure: constant Procedure_Code := Procedure_Code'(8);
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Multiply_Procedure: constant Procedure_Code := Procedure_Code'(9);
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Quotient_Procedure: constant Procedure_Code := Procedure_Code'(10);
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Remainder_Procedure: constant Procedure_Code := Procedure_Code'(11);
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Setcar_Procedure: constant Procedure_Code := Procedure_Code'(12);
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Setcdr_Procedure: constant Procedure_Code := Procedure_Code'(13);
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Subtract_Procedure: constant Procedure_Code := Procedure_Code'(14);
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type Object_Tag is (
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Unknown_Object,
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