c960001.a

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-- C960001.A ----                             Grant of Unlimited Rights----     Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,--     F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained --     unlimited rights in the software and documentation contained herein.--     Unlimited rights are defined in DFAR 252.227-7013(a)(19).  By making --     this public release, the Government intends to confer upon all --     recipients unlimited rights  equal to those held by the Government.  --     These rights include rights to use, duplicate, release or disclose the --     released technical data and computer software in whole or in part, in --     any manner and for any purpose whatsoever, and to have or permit others --     to do so.----                                    DISCLAIMER----     ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR--     DISCLOSED ARE AS IS.  THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED --     WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE--     SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE --     OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A--     PARTICULAR PURPOSE OF SAID MATERIAL.--*---- OBJECTIVE:--      Confirm that a simple Delay Until statement is performed.  Check--      that the delay does not complete before the requested time and that it--      does complete thereafter---- TEST DESCRIPTION:--      Simulate a task that sends a "pulse" at regular intervals.  The Delay--      Until statement is used to avoid accumulated drift.  For the--      test, we expect the delay to return very close to the requested time;--      we use an additional Pulse_Time_Delta for the limit.  The test--      driver (main) artificially limits the number of iterations by setting--      the Stop_Pulse Boolean after a small number.------ CHANGE HISTORY:--      06 Dec 94   SAIC    ACVC 2.0--      15 Nov 95   SAIC    Fixed global variable problem for ACVC 2.0.1----!with Report;with Ada.Calendar;with ImpDef;         procedure C960001 isbegin   Report.Test ("C960001", "Simple Delay Until");   declare  -- To get the Report.Result after all has completed      function "+" (Left : Ada.Calendar.Time; Right: Duration)                            return Ada.Calendar.Time renames Ada.Calendar."+";      function "<" (Left, Right : Ada.Calendar.Time)                            return Boolean       renames Ada.Calendar."<";      function ">" (Left, Right : Ada.Calendar.Time)                            return Boolean       renames Ada.Calendar.">";      TC_Loop_Count : integer range 0..4 := 0;            -- control over stopping tasks      protected Control is         procedure Stop_Now;         function Stop return Boolean;      private         Halt : Boolean := False;      end Control;      protected body Control is         procedure Stop_Now is         begin            Halt := True;         end Stop_Now;         function Stop return Boolean is         begin            return Halt;         end Stop;      end Control;       task Pulse_Task is          entry Trigger;      end Pulse_Task;         -- Task to synchronize all qualified receivers.        -- The entry Trigger starts the synchronization; Control.Stop       -- becoming true terminates the task.      --      task body Pulse_Task is         Pulse_Time       : Ada.Calendar.Time;         Pulse_Time_Delta : duration :=  ImpDef.Clear_Ready_Queue;         TC_Last_Time : Ada.Calendar.Time;         TC_Current   : Ada.Calendar.Time;         -- This routine transmits a synchronizing "pulse" to         -- all receivers         procedure Pulse is         begin            null;  -- Stub            Report.Comment (".......PULSE........");         end Pulse;               begin         accept Trigger;         Pulse_Time   := Ada.Calendar.Clock + Pulse_Time_Delta;          TC_Last_Time := Pulse_Time;         while not Control.Stop loop            delay until Pulse_Time;            Pulse;            -- Calculate time for next pulse.  Note: this is based on the            -- last pulse time, not the time we returned from the delay            --            Pulse_Time := Pulse_Time + Pulse_Time_Delta;                        -- Test Control:            TC_Current := Ada.Calendar.Clock;            if TC_Current < TC_Last_Time then               Report.Failed ("Delay expired before requested time");            end if;            if TC_Current > Pulse_Time then               Report.Failed ("Delay too long");            end if;                           TC_Last_Time := Pulse_Time;            TC_Loop_Count := TC_Loop_Count +1;         end loop;       exception         when others =>                Report.Failed ("Unexpected exception in Pulse_Task");      end Pulse_Task;   begin -- declare      Pulse_Task.Trigger;      -- Start test                                  -- Artificially limit the number of iterations      while TC_Loop_Count < 3 loop         delay ImpDef.Minimum_Task_Switch;      end loop;      --      Control.Stop_Now;      -- End test   end; -- declare   Report.Result;end C960001;

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