240 lines
9.9 KiB
Ada
240 lines
9.9 KiB
Ada
------------------------------------------------------------------------------
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-- --
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-- GNAT RUN-TIME LIBRARY (GNARL) COMPONENTS --
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-- --
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-- S Y S T E M . S T A C K _ C H E C K I N G . O P E R A T I O N S --
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-- --
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-- B o d y --
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-- --
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-- Copyright (C) 1999-2006 Free Software Foundation, Inc. --
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-- --
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-- GNARL 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 2, or (at your option) any later ver- --
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-- sion. GNARL 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. See the GNU General Public License --
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-- for more details. You should have received a copy of the GNU General --
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-- Public License distributed with GNARL; see file COPYING. If not, write --
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-- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
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-- Boston, MA 02110-1301, USA. --
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-- --
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-- As a special exception, if other files instantiate generics from this --
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-- unit, or you link this unit with other files to produce an executable, --
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-- this unit does not by itself cause the resulting executable to be --
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-- covered by the GNU General Public License. This exception does not --
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-- however invalidate any other reasons why the executable file might be --
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-- covered by the GNU Public License. --
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-- --
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-- GNARL was developed by the GNARL team at Florida State 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 is the VxWorks version of this package.
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-- This file should be kept synchronized with the general implementation
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-- provided by s-stchop.adb.
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pragma Restrictions (No_Elaboration_Code);
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-- We want to guarantee the absence of elaboration code because the
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-- binder does not handle references to this package.
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with Ada.Exceptions;
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with System.Storage_Elements; use System.Storage_Elements;
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with System.Parameters; use System.Parameters;
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with System.Soft_Links;
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with Interfaces.C;
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with System.OS_Interface;
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package body System.Stack_Checking.Operations is
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-- In order to have stack checking working appropriately on
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-- VxWorks we need to extract the stack size information from the
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-- VxWorks kernel itself. It means that the library for showing
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-- task-related information needs to be linked into the VxWorks
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-- system, when using stack checking. The TaskShow library can be
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-- linked into the VxWorks system by either:
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-- * defining INCLUDE_SHOW_ROUTINES in config.h when using
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-- configuration header files, or
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-- * selecting INCLUDE_TASK_SHOW when using the Tornado project
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-- facility.
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function Set_Stack_Info (Stack : access Stack_Access) return Stack_Access;
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-- The function Set_Stack_Info is the actual function that updates
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-- the cache containing a pointer to the Stack_Info. It may also
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-- be used for detecting asynchronous abort in combination with
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-- Invalidate_Self_Cache.
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-- Set_Stack_Info should do the following things in order:
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-- 1) Get the Stack_Access value for the current task
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-- 2) Set Stack.all to the value obtained in 1)
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-- 3) Optionally Poll to check for asynchronous abort
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-- This order is important because if at any time a write to
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-- the stack cache is pending, that write should be followed
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-- by a Poll to prevent loosing signals.
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-- Note: This function must be compiled with Polling turned off
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-- Note: on systems like VxWorks and OS/2 with real thread-local storage,
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-- Set_Stack_Info should return an access value for such local
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-- storage. In those cases the cache will always be up-to-date.
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-- The following constants should be imported from some system-specific
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-- constants package. The constants must be static for performance reasons.
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----------------------------
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-- Invalidate_Stack_Cache --
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----------------------------
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procedure Invalidate_Stack_Cache (Any_Stack : Stack_Access) is
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pragma Warnings (Off, Any_Stack);
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begin
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Cache := Null_Stack;
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end Invalidate_Stack_Cache;
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--------------------
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-- Set_Stack_Info --
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--------------------
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function Set_Stack_Info
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(Stack : access Stack_Access) return Stack_Access
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is
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-- Task descriptor that is handled internally by the VxWorks kernel
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type Td_Events_Storage is array (1 .. 4) of Interfaces.C.int;
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pragma Convention (C, Td_Events_Storage);
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type Task_Descriptor is record
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T_Id : Interfaces.C.int; -- task identifier
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Td_Name : System.Address; -- task name
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Td_Priority : Interfaces.C.int; -- task priority
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Td_Status : Interfaces.C.int; -- task status
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Td_Options : Interfaces.C.int; -- task option bits (see below)
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Td_Entry : System.Address; -- original entry point of task
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Td_Sp : System.Address; -- saved stack pointer
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Td_PStackBase : System.Address; -- the bottom of the stack
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Td_PStackLimit : System.Address; -- the effective end of the stack
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Td_PStackEnd : System.Address; -- the actual end of the stack
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Td_StackSize : Interfaces.C.int; -- size of stack in bytes
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Td_StackCurrent : Interfaces.C.int; -- current stack usage in bytes
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Td_StackHigh : Interfaces.C.int; -- maximum stack usage in bytes
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Td_StackMargin : Interfaces.C.int; -- current stack margin in bytes
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Td_ErrorStatus : Interfaces.C.int; -- most recent task error status
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Td_Delay : Interfaces.C.int; -- delay/timeout ticks
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Td_Events : Td_Events_Storage; -- task events, post t2.0
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end record;
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pragma Convention (C, Task_Descriptor);
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-- This VxWorks procedure fills in a specified task descriptor
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-- for a specified task.
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procedure TaskInfoGet (T_Id : System.OS_Interface.t_id;
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Task_Desc : access Task_Descriptor);
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pragma Import (C, TaskInfoGet, "taskInfoGet");
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My_Stack : Stack_Access;
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Task_Desc : aliased Task_Descriptor;
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begin
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-- The order of steps 1 .. 3 is important, see specification.
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-- 1) Get the Stack_Access value for the current task
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My_Stack := Soft_Links.Get_Stack_Info.all;
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if My_Stack.Base = Null_Address then
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-- First invocation. Ask the VxWorks kernel about stack
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-- values.
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TaskInfoGet (System.OS_Interface.taskIdSelf, Task_Desc'Access);
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My_Stack.Size := System.Storage_Elements.Storage_Offset
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(Task_Desc.Td_StackSize);
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My_Stack.Base := Task_Desc.Td_PStackBase;
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My_Stack.Limit := Task_Desc.Td_PStackLimit;
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end if;
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-- 2) Set Stack.all to the value obtained in 1)
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Stack.all := My_Stack;
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-- 3) Optionally Poll to check for asynchronous abort
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if Soft_Links.Check_Abort_Status.all /= 0 then
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raise Standard'Abort_Signal;
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end if;
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return My_Stack; -- Never trust the cached value, but return local copy!
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end Set_Stack_Info;
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-----------------
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-- Stack_Check --
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-----------------
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function Stack_Check
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(Stack_Address : System.Address) return Stack_Access
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is
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type Frame_Marker is null record;
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Marker : Frame_Marker;
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Cached_Stack : constant Stack_Access := Cache;
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Frame_Address : constant System.Address := Marker'Address;
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begin
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-- This function first does a "cheap" check which is correct
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-- if it succeeds. In case of failure, the full check is done.
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-- Ideally the cheap check should be done in an optimized manner,
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-- or be inlined.
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if (Stack_Grows_Down and then
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(Frame_Address <= Cached_Stack.Base
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and
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Stack_Address > Cached_Stack.Limit))
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or else
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(not Stack_Grows_Down and then
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(Frame_Address >= Cached_Stack.Base
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and
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Stack_Address < Cached_Stack.Limit))
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then
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-- Cached_Stack is valid as it passed the stack check
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return Cached_Stack;
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end if;
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Full_Check :
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declare
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My_Stack : constant Stack_Access := Set_Stack_Info (Cache'Access);
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-- At this point Stack.all might already be invalid, so
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-- it is essential to use our local copy of Stack!
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begin
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if (Stack_Grows_Down and then
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Stack_Address < My_Stack.Limit)
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or else
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(not Stack_Grows_Down and then
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Stack_Address > My_Stack.Limit)
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then
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Ada.Exceptions.Raise_Exception
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(E => Storage_Error'Identity,
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Message => "stack overflow detected");
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end if;
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return My_Stack;
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end Full_Check;
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end Stack_Check;
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------------------------
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-- Update_Stack_Cache --
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------------------------
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procedure Update_Stack_Cache (Stack : Stack_Access) is
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begin
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if not Multi_Processor then
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Cache := Stack;
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end if;
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end Update_Stack_Cache;
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end System.Stack_Checking.Operations;
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