a-numaux-libc-x86.ads   [plain text]


------------------------------------------------------------------------------
--                                                                          --
--                         GNAT RUNTIME COMPONENTS                          --
--                                                                          --
--                     A D A . N U M E R I C S . A U X                      --
--                                                                          --
--                                 S p e c                                  --
--                       (C Library Version for x86)                        --
--                                                                          --
--          Copyright (C) 1992-2003 Free Software Foundation, Inc.          --
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-- As a special exception,  if other files  instantiate  generics from this --
-- unit, or you link  this unit with other files  to produce an executable, --
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------------------------------------------------------------------------------

--  This package provides the basic computational interface for the generic
--  elementary functions. The C library version interfaces with the routines
--  in the C mathematical library, and is thus quite portable, although it may
--  not necessarily meet the requirements for accuracy in the numerics annex.
--  One advantage of using this package is that it will interface directly to
--  hardware instructions, such as the those provided on the Intel x86.

--  Note: there are two versions of this package. One using the 80-bit x86
--  long double format (which is this version), and one using 64-bit IEEE
--  double (see file a-numaux.ads).

package Ada.Numerics.Aux is
pragma Pure (Aux);

   pragma Linker_Options ("-lm");

   type Double is digits 18;

   --  We import these functions directly from C. Note that we label them
   --  all as pure functions, because indeed all of them are in fact pure!

   function Sin (X : Double) return Double;
   pragma Import (C, Sin, "sinl");
   pragma Pure_Function (Sin);

   function Cos (X : Double) return Double;
   pragma Import (C, Cos, "cosl");
   pragma Pure_Function (Cos);

   function Tan (X : Double) return Double;
   pragma Import (C, Tan, "tanl");
   pragma Pure_Function (Tan);

   function Exp (X : Double) return Double;
   pragma Import (C, Exp, "expl");
   pragma Pure_Function (Exp);

   function Sqrt (X : Double) return Double;
   pragma Import (C, Sqrt, "sqrtl");
   pragma Pure_Function (Sqrt);

   function Log (X : Double) return Double;
   pragma Import (C, Log, "logl");
   pragma Pure_Function (Log);

   function Acos (X : Double) return Double;
   pragma Import (C, Acos, "acosl");
   pragma Pure_Function (Acos);

   function Asin (X : Double) return Double;
   pragma Import (C, Asin, "asinl");
   pragma Pure_Function (Asin);

   function Atan (X : Double) return Double;
   pragma Import (C, Atan, "atanl");
   pragma Pure_Function (Atan);

   function Sinh (X : Double) return Double;
   pragma Import (C, Sinh, "sinhl");
   pragma Pure_Function (Sinh);

   function Cosh (X : Double) return Double;
   pragma Import (C, Cosh, "coshl");
   pragma Pure_Function (Cosh);

   function Tanh (X : Double) return Double;
   pragma Import (C, Tanh, "tanhl");
   pragma Pure_Function (Tanh);

   function Pow (X, Y : Double) return Double;
   pragma Import (C, Pow, "powl");
   pragma Pure_Function (Pow);

end Ada.Numerics.Aux;