[multiple changes]
2012-10-02 Robert Dewar <dewar@adacore.com> * sem_ch8.adb: Minor reformatting. 2012-10-02 Javier Miranda <miranda@adacore.com> * exp_disp.adb (Set_CPP_Constructors): Handle constructor with default parameters that covers the default constructor. 2012-10-02 Yannick Moy <moy@adacore.com> * s-bignum.adb: Minor stylistic and comment corrections. 2012-10-02 Pascal Obry <obry@adacore.com> * prj-util.adb (For_Interface_Sources): Iterate over all sources in aggregate library projects. From-SVN: r191977
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@ -1,3 +1,21 @@
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2012-10-02 Robert Dewar <dewar@adacore.com>
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* sem_ch8.adb: Minor reformatting.
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2012-10-02 Javier Miranda <miranda@adacore.com>
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* exp_disp.adb (Set_CPP_Constructors): Handle constructor with default
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parameters that covers the default constructor.
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2012-10-02 Yannick Moy <moy@adacore.com>
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* s-bignum.adb: Minor stylistic and comment corrections.
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2012-10-02 Pascal Obry <obry@adacore.com>
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* prj-util.adb (For_Interface_Sources): Iterate over all sources in
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aggregate library projects.
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2012-10-02 Ed Schonberg <schonberg@adacore.com>
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* sem_ch8.adb (Find_Direct_Name): The left-hand side of an
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@ -8537,6 +8537,10 @@ package body Exp_Disp is
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Body_Stmts : List_Id;
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Init_Tags_List : List_Id;
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Covers_Default_Constructor : Entity_Id := Empty;
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-- Start of processing for Set_CPP_Constructor
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begin
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pragma Assert (Is_CPP_Class (Typ));
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@ -8622,7 +8626,9 @@ package body Exp_Disp is
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Defining_Identifier =>
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Make_Defining_Identifier (Loc,
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Chars (Defining_Identifier (P))),
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Parameter_Type => New_Copy_Tree (Parameter_Type (P))));
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Parameter_Type =>
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New_Copy_Tree (Parameter_Type (P)),
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Expression => New_Copy_Tree (Expression (P))));
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Next (P);
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end loop;
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end if;
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@ -8713,6 +8719,17 @@ package body Exp_Disp is
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Discard_Node (Wrapper_Body_Node);
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Set_Init_Proc (Typ, Wrapper_Id);
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-- If this constructor has parameters and all its parameters
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-- have defaults then it covers the default constructor. The
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-- semantic analyzer ensures that only one constructor with
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-- defaults covers the default constructor.
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if Present (Parameter_Specifications (Parent (E)))
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and then Needs_No_Actuals (E)
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then
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Covers_Default_Constructor := Wrapper_Id;
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end if;
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end if;
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Next_Entity (E);
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@ -8725,6 +8742,46 @@ package body Exp_Disp is
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Set_Is_Abstract_Type (Typ);
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end if;
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-- Handle constructor that has all its parameters with defaults and
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-- hence it covers the default constructor. We generate a wrapper IP
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-- which calls the covering constructor.
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if Present (Covers_Default_Constructor) then
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Loc := Sloc (Covers_Default_Constructor);
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Body_Stmts := New_List (
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Make_Procedure_Call_Statement (Loc,
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Name =>
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New_Reference_To (Covers_Default_Constructor, Loc),
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Parameter_Associations => New_List (
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Make_Identifier (Loc, Name_uInit))));
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Wrapper_Id :=
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Make_Defining_Identifier (Loc, Make_Init_Proc_Name (Typ));
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Wrapper_Body_Node :=
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Make_Subprogram_Body (Loc,
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Specification =>
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Make_Procedure_Specification (Loc,
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Defining_Unit_Name => Wrapper_Id,
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Parameter_Specifications => New_List (
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Make_Parameter_Specification (Loc,
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Defining_Identifier =>
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Make_Defining_Identifier (Loc, Name_uInit),
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Parameter_Type =>
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New_Reference_To (Typ, Loc)))),
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Declarations => No_List,
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Handled_Statement_Sequence =>
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Make_Handled_Sequence_Of_Statements (Loc,
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Statements => Body_Stmts,
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Exception_Handlers => No_List));
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Discard_Node (Wrapper_Body_Node);
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Set_Init_Proc (Typ, Wrapper_Id);
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end if;
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-- If the CPP type has constructors then it must import also the default
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-- C++ constructor. It is required for default initialization of objects
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-- of the type. It is also required to elaborate objects of Ada types
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@ -439,7 +439,7 @@ package body Prj.Util is
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-- Local declarations
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Iter : Source_Iterator := For_Each_Source (Tree, Project);
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Iter : Source_Iterator;
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Sid : Source_Id;
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ALI : ALI_Id;
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@ -451,6 +451,12 @@ package body Prj.Util is
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-- Start of processing for For_Interface_Sources
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begin
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if Project.Qualifier = Aggregate_Library then
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Iter := For_Each_Source (Tree);
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else
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Iter := For_Each_Source (Tree, Project);
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end if;
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-- First look at each spec, check if the body is needed
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loop
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@ -98,7 +98,7 @@ package body System.Bignums is
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procedure Free_Bignum (X : Bignum) is null;
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-- Called to free a Bignum value used in intermediate computations. In
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-- this implementation using the secondary stack, does nothing at all,
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-- this implementation using the secondary stack, it does nothing at all,
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-- because we rely on Mark/Release, but it may be of use for some
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-- alternative implementation.
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@ -115,12 +115,12 @@ package body System.Bignums is
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function Add (X, Y : Digit_Vector; X_Neg, Y_Neg : Boolean) return Bignum is
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begin
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-- If signs are the same we are doing an addition, it is convenient to
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-- ensure that the first operand is the longer of the two,
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-- If signs are the same, we are doing an addition, it is convenient to
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-- ensure that the first operand is the longer of the two.
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if X_Neg = Y_Neg then
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if X'Last < Y'Last then
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return Add (Y => X, X => Y, X_Neg => Y_Neg, Y_Neg => X_Neg);
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return Add (X => Y, Y => X, X_Neg => Y_Neg, Y_Neg => X_Neg);
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-- Here signs are the same, and the first operand is the longer
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@ -151,9 +151,9 @@ package body System.Bignums is
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end;
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end if;
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-- Signs are different so really this is an subtraction, we want to
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-- make sure that the largest magnitude operand is the first one, and
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-- then the result will have the sign of the first operand.
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-- Signs are different so really this is a subtraction, we want to make
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-- sure that the largest magnitude operand is the first one, and then
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-- the result will have the sign of the first operand.
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else
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declare
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return Normalize (Zero_Data);
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elsif CR = LT then
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return Add (Y => X, X => Y, X_Neg => Y_Neg, Y_Neg => X_Neg);
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return Add (X => Y, Y => X, X_Neg => Y_Neg, Y_Neg => X_Neg);
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else
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pragma Assert (X_Neg /= Y_Neg and then CR = GT);
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@ -173,7 +173,7 @@ package body System.Bignums is
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declare
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Diff : Digit_Vector (1 .. X'Length);
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RD : DD;
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RD : DD;
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begin
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RD := 0;
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@ -401,7 +401,7 @@ package body System.Bignums is
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-- Big_EQ --
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------------
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function Big_EQ (X, Y : Bignum) return Boolean is
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function Big_EQ (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) = EQ;
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end Big_EQ;
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@ -410,7 +410,7 @@ package body System.Bignums is
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-- Big_GE --
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------------
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function Big_GE (X, Y : Bignum) return Boolean is
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function Big_GE (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) /= LT;
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end Big_GE;
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@ -419,7 +419,7 @@ package body System.Bignums is
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-- Big_GT --
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------------
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function Big_GT (X, Y : Bignum) return Boolean is
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function Big_GT (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) = GT;
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end Big_GT;
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@ -428,7 +428,7 @@ package body System.Bignums is
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-- Big_LE --
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------------
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function Big_LE (X, Y : Bignum) return Boolean is
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function Big_LE (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) /= GT;
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end Big_LE;
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@ -437,7 +437,7 @@ package body System.Bignums is
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-- Big_LT --
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------------
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function Big_LT (X, Y : Bignum) return Boolean is
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function Big_LT (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) = LT;
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end Big_LT;
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@ -465,7 +465,7 @@ package body System.Bignums is
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-- 13 -5 -2 3 -13 -5 -3 -3
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-- 14 -5 -1 4 -14 -5 -4 -4
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function Big_Mod (X, Y : Bignum) return Bignum is
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function Big_Mod (X, Y : Bignum) return Bignum is
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Q, R : Bignum;
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begin
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if X.Neg = Y.Neg then
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return Big_Rem (X, Y);
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-- Case where mod is different
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-- Case where Mod is different
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else
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-- Do division
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-- Big_NE --
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------------
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function Big_NE (X, Y : Bignum) return Boolean is
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function Big_NE (X, Y : Bignum) return Boolean is
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begin
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return Compare (X.D, Y.D, X.Neg, Y.Neg) /= EQ;
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end Big_NE;
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-- 13 -5 3 -13 -5 -3
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-- 14 -5 4 -14 -5 -4
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function Big_Rem (X, Y : Bignum) return Bignum is
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function Big_Rem (X, Y : Bignum) return Bignum is
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Q, R : Bignum;
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begin
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Div_Rem (X, Y, Q, R, Discard_Quotient => True);
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R.Neg := R.Len > 0 and then X.Neg;
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R.Neg := R.Len > 0 and then X.Neg;
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return R;
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end Big_Rem;
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if Compare (X.D, Y.D, False, False) = LT then
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Remainder := Normalize (X.D);
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Quotient := Normalize (Zero_Data);
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Quotient := Normalize (Zero_Data);
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return;
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-- If both X and Y are comfortably less than 2**63-1 we can just use
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-- If both X and Y are comfortably less than 2**63-1, we can just use
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-- Long_Long_Integer arithmetic. Note it is good not to do an accurate
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-- range check here since -2**63 / -1 overflows!
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ND := ND rem Div;
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end loop;
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Quotient := Normalize (Result);
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Quotient := Normalize (Result);
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Remdr (1) := SD (ND);
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Remainder := Normalize (Remdr);
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return;
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end loop;
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B := Allocate_Bignum (X'Last - J + 1);
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B.Neg := B.Len > 0 and then Neg;
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B.Neg := B.Len > 0 and then Neg;
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B.D := X (J .. X'Last);
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return B;
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end Normalize;
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@ -5027,9 +5027,8 @@ package body Sem_Ch8 is
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if Ada_Version >= Ada_2012
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and then
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(Nkind (Parent (N)) in N_Subexpr
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or else
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Nkind_In (Parent (N), N_Object_Declaration,
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N_Assignment_Statement))
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or else Nkind_In (Parent (N), N_Object_Declaration,
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N_Assignment_Statement))
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then
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Check_Implicit_Dereference (N, Etype (E));
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end if;
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