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jeremybenn |
------------------------------------------------------------------------------
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-- --
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-- GNAT RUN-TIME COMPONENTS --
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-- --
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-- S Y S T E M --
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-- --
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-- S p e c --
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-- (OpenVMS 64bit GCC_ZCX DEC Threads Version) --
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-- --
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-- Copyright (C) 1992-2009, Free Software Foundation, Inc. --
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-- --
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-- This specification is derived from the Ada Reference Manual for use with --
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-- GNAT. The copyright notice above, and the license provisions that follow --
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-- apply solely to the contents of the part following the private keyword. --
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-- --
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-- GNAT is free software; you can redistribute it and/or modify it under --
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-- terms of the GNU General Public License as published by the Free Soft- --
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-- ware Foundation; either version 3, or (at your option) any later ver- --
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-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
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-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
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-- or FITNESS FOR A PARTICULAR PURPOSE. --
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-- --
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-- As a special exception under Section 7 of GPL version 3, you are granted --
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-- additional permissions described in the GCC Runtime Library Exception, --
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-- version 3.1, as published by the Free Software Foundation. --
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-- --
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-- You should have received a copy of the GNU General Public License and --
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-- a copy of the GCC Runtime Library Exception along with this program; --
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-- see the files COPYING3 and COPYING.RUNTIME respectively. If not, see --
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-- <http://www.gnu.org/licenses/>. --
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-- --
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-- GNAT was originally developed by the GNAT team at New York University. --
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-- Extensive contributions were provided by Ada Core Technologies Inc. --
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-- --
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------------------------------------------------------------------------------
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package System is
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pragma Pure;
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-- Note that we take advantage of the implementation permission to make
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-- this unit Pure instead of Preelaborable; see RM 13.7.1(15). In Ada
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-- 2005, this is Pure in any case (AI-362).
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type Name is (SYSTEM_NAME_GNAT);
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System_Name : constant Name := SYSTEM_NAME_GNAT;
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-- System-Dependent Named Numbers
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Min_Int : constant := Long_Long_Integer'First;
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Max_Int : constant := Long_Long_Integer'Last;
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Max_Binary_Modulus : constant := 2 ** Long_Long_Integer'Size;
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Max_Nonbinary_Modulus : constant := 2 ** Integer'Size - 1;
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Max_Base_Digits : constant := Long_Long_Float'Digits;
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Max_Digits : constant := Long_Long_Float'Digits;
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Max_Mantissa : constant := 63;
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Fine_Delta : constant := 2.0 ** (-Max_Mantissa);
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Tick : constant := 0.01;
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-- Storage-related Declarations
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type Address is new Long_Integer;
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Null_Address : constant Address;
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-- Although this is declared as an integer type, no arithmetic operations
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-- are available (see abstract declarations below), and furthermore there
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-- is special processing in the compiler that prevents the use of integer
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-- literals with this type (use To_Address to convert integer literals).
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--
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-- Conversion to and from Short_Address is however freely permitted, and
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-- is indeed the reason that Address is declared as an integer type.
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Storage_Unit : constant := 8;
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Word_Size : constant := 64;
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Memory_Size : constant := 2 ** 64;
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-- Address comparison
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function "<" (Left, Right : Address) return Boolean;
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function "<=" (Left, Right : Address) return Boolean;
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function ">" (Left, Right : Address) return Boolean;
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function ">=" (Left, Right : Address) return Boolean;
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function "=" (Left, Right : Address) return Boolean;
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pragma Import (Intrinsic, "<");
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pragma Import (Intrinsic, "<=");
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pragma Import (Intrinsic, ">");
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pragma Import (Intrinsic, ">=");
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pragma Import (Intrinsic, "=");
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-- Abstract declarations for arithmetic operations on type address.
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-- These declarations are needed when Address is non-private. They
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-- avoid excessive visibility of arithmetic operations on address
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-- which are typically available elsewhere (e.g. Storage_Elements)
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-- and which would cause excessive ambiguities in application code.
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function "+" (Left, Right : Address) return Address is abstract;
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function "-" (Left, Right : Address) return Address is abstract;
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function "/" (Left, Right : Address) return Address is abstract;
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function "*" (Left, Right : Address) return Address is abstract;
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function "mod" (Left, Right : Address) return Address is abstract;
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-- Other System-Dependent Declarations
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type Bit_Order is (High_Order_First, Low_Order_First);
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Default_Bit_Order : constant Bit_Order := Low_Order_First;
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pragma Warnings (Off, Default_Bit_Order); -- kill constant condition warning
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-- Priority-related Declarations (RM D.1)
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Max_Priority : constant Positive := 30;
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Max_Interrupt_Priority : constant Positive := 31;
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subtype Any_Priority is Integer range 0 .. 31;
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subtype Priority is Any_Priority range 0 .. 30;
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subtype Interrupt_Priority is Any_Priority range 31 .. 31;
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Default_Priority : constant Priority := 15;
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private
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Null_Address : constant Address := 0;
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--------------------------------------
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-- System Implementation Parameters --
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--------------------------------------
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-- These parameters provide information about the target that is used
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-- by the compiler. They are in the private part of System, where they
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-- can be accessed using the special circuitry in the Targparm unit
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-- whose source should be consulted for more detailed descriptions
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-- of the individual switch values.
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Backend_Divide_Checks : constant Boolean := False;
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Backend_Overflow_Checks : constant Boolean := True;
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Command_Line_Args : constant Boolean := True;
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Configurable_Run_Time : constant Boolean := False;
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Denorm : constant Boolean := False;
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Duration_32_Bits : constant Boolean := False;
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Exit_Status_Supported : constant Boolean := True;
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Fractional_Fixed_Ops : constant Boolean := False;
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Frontend_Layout : constant Boolean := False;
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Machine_Overflows : constant Boolean := False;
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Machine_Rounds : constant Boolean := True;
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OpenVMS : constant Boolean := True;
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Preallocated_Stacks : constant Boolean := False;
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Signed_Zeros : constant Boolean := True;
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Stack_Check_Default : constant Boolean := True;
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Stack_Check_Probes : constant Boolean := True;
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Stack_Check_Limits : constant Boolean := False;
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Support_64_Bit_Divides : constant Boolean := True;
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Support_Aggregates : constant Boolean := True;
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Support_Composite_Assign : constant Boolean := True;
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Support_Composite_Compare : constant Boolean := True;
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Support_Long_Shifts : constant Boolean := True;
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Always_Compatible_Rep : constant Boolean := True;
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Suppress_Standard_Library : constant Boolean := False;
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Use_Ada_Main_Program_Name : constant Boolean := False;
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ZCX_By_Default : constant Boolean := True;
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GCC_ZCX_Support : constant Boolean := True;
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--------------------------
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-- Underlying Priorities --
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---------------------------
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-- Important note: this section of the file must come AFTER the
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-- definition of the system implementation parameters to ensure
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-- that the value of these parameters is available for analysis
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-- of the declarations here (using Rtsfind at compile time).
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-- The underlying priorities table provides a generalized mechanism
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-- for mapping from Ada priorities to system priorities. In some
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-- cases a 1-1 mapping is not the convenient or optimal choice.
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-- For DEC Threads OpenVMS, we use the full range of 31 priorities
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-- in the Ada model, but map them by compression onto the more limited
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-- range of priorities available in OpenVMS.
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-- To replace the default values of the Underlying_Priorities mapping,
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-- copy this source file into your build directory, edit the file to
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-- reflect your desired behavior, and recompile with the command:
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-- $ gcc -c -O3 -gnatpgn system.ads
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-- then recompile the run-time parts that depend on this package:
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-- $ gnatmake -a -gnatn -O3 <your application>
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-- then force rebuilding your application if you need different options:
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-- $ gnatmake -f <your options> <your application>
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type Priorities_Mapping is array (Any_Priority) of Integer;
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pragma Suppress_Initialization (Priorities_Mapping);
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-- Suppress initialization in case gnat.adc specifies Normalize_Scalars
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Underlying_Priorities : constant Priorities_Mapping :=
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(Priority'First => 16,
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1 => 17,
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2 => 18,
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3 => 18,
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4 => 18,
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5 => 18,
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6 => 19,
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7 => 19,
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8 => 19,
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9 => 20,
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10 => 20,
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11 => 21,
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12 => 21,
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13 => 22,
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14 => 23,
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Default_Priority => 24,
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16 => 25,
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17 => 25,
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18 => 25,
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19 => 26,
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20 => 26,
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21 => 26,
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22 => 27,
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23 => 27,
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24 => 27,
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25 => 28,
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26 => 28,
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27 => 29,
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28 => 29,
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29 => 30,
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Priority'Last => 30,
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Interrupt_Priority => 31);
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----------------------------
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-- Special VMS Interfaces --
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----------------------------
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procedure Lib_Stop (I : Integer);
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pragma Interface (C, Lib_Stop);
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pragma Import_Procedure (Lib_Stop, "LIB$STOP", Mechanism => (Value));
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-- Interface to VMS condition handling. Used by RTSfind and pragma
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-- {Import,Export}_Exception. Put here because this is the only
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-- VMS specific package that doesn't drag in tasking.
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ADA_GNAT : constant Boolean := True;
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pragma Export_Object (ADA_GNAT, "ADA$GNAT");
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-- Ubiquitous global symbol identifying a GNAT compiled image to VMS Debug.
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-- Do not remove!
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end System;
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