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1 706 jeremybenn
------------------------------------------------------------------------------
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--                                                                          --
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--                         GNAT COMPILER COMPONENTS                         --
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--                                                                          --
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--              S Y S T E M . S T A N D A R D _ L I B R A R Y               --
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--                                                                          --
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--                                 S p e c                                  --
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--                                                                          --
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--          Copyright (C) 1992-2010, Free Software Foundation, Inc.         --
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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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--  This package is included in all programs. It contains declarations that
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--  are required to be part of every Ada program. A special mechanism is
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--  required to ensure that these are loaded, since it may be the case in
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--  some programs that the only references to these required packages are
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--  from C code or from code generated directly by Gigi, and in both cases
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--  the binder is not aware of such references.
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--  System.Standard_Library also includes data that must be present in every
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--  program, in particular data for all the standard exceptions, and also some
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--  subprograms that must be present in every program.
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--  The binder unconditionally includes s-stalib.ali, which ensures that this
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--  package and the packages it references are included in all Ada programs,
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--  together with the included data.
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pragma Compiler_Unit;
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pragma Polling (Off);
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--  We must turn polling off for this unit, because otherwise we get
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--  elaboration circularities with Ada.Exceptions if polling is on.
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with Ada.Unchecked_Conversion;
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package System.Standard_Library is
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   pragma Warnings (Off);
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   pragma Preelaborate_05;
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   pragma Warnings (On);
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   subtype Big_String is String (1 .. Positive'Last);
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   pragma Suppress_Initialization (Big_String);
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   --  Type used to obtain string access to given address. Initialization is
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   --  suppressed, since we never want to have variables of this type, and
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   --  we never want to attempt initialiazation of virtual variables of this
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   --  type (e.g. when pragma Normalize_Scalars is used).
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   type Big_String_Ptr is access all Big_String;
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   for Big_String_Ptr'Storage_Size use 0;
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   --  We use this access type to pass a pointer to an area of storage to be
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   --  accessed as a string. Of course when this pointer is used, it is the
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   --  responsibility of the accessor to ensure proper bounds. The storage
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   --  size clause ensures we do not allocate variables of this type.
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   function To_Ptr is
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     new Ada.Unchecked_Conversion (System.Address, Big_String_Ptr);
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   ---------------------------------------------
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   -- Type For Enumeration Image Index Tables --
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   ---------------------------------------------
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   --  Note: these types are declared at the start of this unit, since
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   --  they must appear before any enumeration types declared in this
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   --  unit. Note that the spec of system is already elaborated at
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   --  this point (since we are a child of system), which means that
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   --  enumeration types in package System cannot use these types.
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   type Image_Index_Table_8 is
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     array (Integer range <>) of Short_Short_Integer;
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   type Image_Index_Table_16 is
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     array (Integer range <>) of Short_Integer;
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   type Image_Index_Table_32 is
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     array (Integer range <>) of Integer;
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   --  These types are used to generate the index vector used for enumeration
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   --  type image tables. See spec of Exp_Imgv in the main GNAT sources for a
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   --  full description of the data structures that are used here.
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   -------------------------------------
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   -- Exception Declarations and Data --
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   -------------------------------------
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   type Raise_Action is access procedure;
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   --  A pointer to a procedure used in the Raise_Hook field
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   type Exception_Data;
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   type Exception_Data_Ptr is access all Exception_Data;
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   --  An equivalent of Exception_Id that is public
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   type Exception_Code is mod 2 ** Integer'Size;
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   --  A scalar value bound to some exception data. Typically used for
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   --  imported or exported exceptions on VMS. Having a separate type for this
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   --  is useful to enforce consistency throughout the various run-time units
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   --  handling such codes, and having it unsigned is the most appropriate
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   --  choice for it's currently single use on VMS.
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   --  ??? The construction in Cstand has no way to access the proper type
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   --  node for Exception_Code, and currently uses Standard_Unsigned as a
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   --  fallback. The representations shall match, and the size clause below
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   --  is aimed at ensuring that.
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   for Exception_Code'Size use Integer'Size;
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   --  The following record defines the underlying representation of exceptions
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   --  WARNING! Any changes to this may need to be reflected in the following
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   --  locations in the compiler and runtime code:
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127
   --    1. The Internal_Exception routine in s-exctab.adb
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   --    2. The processing in gigi that tests Not_Handled_By_Others
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   --    3. Expand_N_Exception_Declaration in Exp_Ch11
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   --    4. The construction of the exception type in Cstand
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   type Exception_Data is record
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      Not_Handled_By_Others : Boolean;
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      --  Normally set False, indicating that the exception is handled in the
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      --  usual way by others (i.e. an others handler handles the exception).
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      --  Set True to indicate that this exception is not caught by others
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      --  handlers, but must be explicitly named in a handler. This latter
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      --  setting is currently used by the Abort_Signal.
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      Lang : Character;
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      --  A character indicating the language raising the exception.
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      --  Set to "A" for exceptions defined by an Ada program.
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      --  Set to "V" for imported VMS exceptions.
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      Name_Length : Natural;
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      --  Length of fully expanded name of exception
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      Full_Name : System.Address;
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      --  Fully expanded name of exception, null terminated
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      --  You can use To_Ptr to convert this to a string.
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      HTable_Ptr : Exception_Data_Ptr;
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      --  Hash table pointer used to link entries together in the hash table
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      --  built (by Register_Exception in s-exctab.adb) for converting between
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      --  identities and names.
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      Import_Code : Exception_Code;
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      --  Value for imported exceptions. Needed only for the handling of
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      --  Import/Export_Exception for the VMS case, but present in all
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      --  implementations (we might well extend this mechanism for other
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      --  systems in the future).
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      Raise_Hook : Raise_Action;
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      --  This field can be used to place a "hook" on an exception. If the
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      --  value is non-null, then it points to a procedure which is called
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      --  whenever the exception is raised. This call occurs immediately,
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      --  before any other actions taken by the raise (and in particular
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      --  before any unwinding of the stack occurs).
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   end record;
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   --  Definitions for standard predefined exceptions defined in Standard,
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   --  Why are the NULs necessary here, seems like they should not be
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   --  required, since Gigi is supposed to add a Nul to each name ???
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   Constraint_Error_Name : constant String := "CONSTRAINT_ERROR" & ASCII.NUL;
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   Program_Error_Name    : constant String := "PROGRAM_ERROR"    & ASCII.NUL;
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   Storage_Error_Name    : constant String := "STORAGE_ERROR"    & ASCII.NUL;
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   Tasking_Error_Name    : constant String := "TASKING_ERROR"    & ASCII.NUL;
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   Abort_Signal_Name     : constant String := "_ABORT_SIGNAL"    & ASCII.NUL;
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   Numeric_Error_Name    : constant String := "NUMERIC_ERROR"    & ASCII.NUL;
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   --  This is used only in the Ada 83 case, but it is not worth having a
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   --  separate version of s-stalib.ads for use in Ada 83 mode.
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   Constraint_Error_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => False,
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      Lang                  => 'A',
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      Name_Length           => Constraint_Error_Name'Length,
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      Full_Name             => Constraint_Error_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   Numeric_Error_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => False,
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      Lang                  => 'A',
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      Name_Length           => Numeric_Error_Name'Length,
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      Full_Name             => Numeric_Error_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   Program_Error_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => False,
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      Lang                  => 'A',
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      Name_Length           => Program_Error_Name'Length,
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      Full_Name             => Program_Error_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   Storage_Error_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => False,
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      Lang                  => 'A',
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      Name_Length           => Storage_Error_Name'Length,
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      Full_Name             => Storage_Error_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   Tasking_Error_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => False,
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      Lang                  => 'A',
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      Name_Length           => Tasking_Error_Name'Length,
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      Full_Name             => Tasking_Error_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   Abort_Signal_Def : aliased Exception_Data :=
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     (Not_Handled_By_Others => True,
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      Lang                  => 'A',
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      Name_Length           => Abort_Signal_Name'Length,
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      Full_Name             => Abort_Signal_Name'Address,
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      HTable_Ptr            => null,
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      Import_Code           => 0,
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      Raise_Hook            => null);
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   pragma Export (C, Constraint_Error_Def, "constraint_error");
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   pragma Export (C, Numeric_Error_Def,    "numeric_error");
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   pragma Export (C, Program_Error_Def,    "program_error");
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   pragma Export (C, Storage_Error_Def,    "storage_error");
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   pragma Export (C, Tasking_Error_Def,    "tasking_error");
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   pragma Export (C, Abort_Signal_Def,     "_abort_signal");
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   Local_Partition_ID : Natural := 0;
248
   --  This variable contains the local Partition_ID that will be used when
249
   --  building exception occurrences. In distributed mode, it will be
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   --  set by each partition to the correct value during the elaboration.
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252
   type Exception_Trace_Kind is
253
     (RM_Convention,
254
      --  No particular trace is requested, only unhandled exceptions
255
      --  in the environment task (following the RM) will be printed.
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      --  This is the default behavior.
257
 
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      Every_Raise,
259
      --  Denotes every possible raise event, either explicit or due to
260
      --  a specific language rule, within the context of a task or not.
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262
      Unhandled_Raise
263
      --  Denotes the raise events corresponding to exceptions for which
264
      --  there is no user defined handler.
265
     );
266
   --  Provide a way to denote different kinds of automatic traces related
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   --  to exceptions that can be requested.
268
 
269
   Exception_Trace : Exception_Trace_Kind := RM_Convention;
270
   pragma Atomic (Exception_Trace);
271
   --  By default, follow the RM convention
272
 
273
   -----------------
274
   -- Subprograms --
275
   -----------------
276
 
277
   procedure Abort_Undefer_Direct;
278
   pragma Inline (Abort_Undefer_Direct);
279
   --  A little procedure that just calls Abort_Undefer.all, for use in
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   --  clean up procedures, which only permit a simple subprogram name.
281
 
282
   procedure Adafinal;
283
   --  Performs the Ada Runtime finalization the first time it is invoked.
284
   --  All subsequent calls are ignored.
285
 
286
end System.Standard_Library;

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