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jeremybenn |
-- CC70001.A
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--
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-- Grant of Unlimited Rights
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--
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-- Under contracts F33600-87-D-0337, F33600-84-D-0280, MDA903-79-C-0687,
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-- F08630-91-C-0015, and DCA100-97-D-0025, the U.S. Government obtained
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-- unlimited rights in the software and documentation contained herein.
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-- Unlimited rights are defined in DFAR 252.227-7013(a)(19). By making
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-- this public release, the Government intends to confer upon all
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-- recipients unlimited rights equal to those held by the Government.
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-- These rights include rights to use, duplicate, release or disclose the
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-- released technical data and computer software in whole or in part, in
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-- any manner and for any purpose whatsoever, and to have or permit others
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-- to do so.
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--
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-- DISCLAIMER
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--
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-- ALL MATERIALS OR INFORMATION HEREIN RELEASED, MADE AVAILABLE OR
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-- DISCLOSED ARE AS IS. THE GOVERNMENT MAKES NO EXPRESS OR IMPLIED
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-- WARRANTY AS TO ANY MATTER WHATSOEVER, INCLUDING THE CONDITIONS OF THE
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-- SOFTWARE, DOCUMENTATION OR OTHER INFORMATION RELEASED, MADE AVAILABLE
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-- OR DISCLOSED, OR THE OWNERSHIP, MERCHANTABILITY, OR FITNESS FOR A
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-- PARTICULAR PURPOSE OF SAID MATERIAL.
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--*
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--
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-- OBJECTIVE:
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-- Check that the template for a generic formal package may be a child
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-- package, and that a child instance which is an instance of the
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-- template may be passed as an actual to the formal package. Check that
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-- the visible part of the generic formal package includes the first list
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-- of basic declarative items of the package specification.
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--
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-- TEST DESCRIPTION:
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-- Declare a list abstraction in a generic package which manages lists of
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-- elements of any nonlimited type. Declare a generic child package of
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-- this package which defines additional list operations. Declare a
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-- generic subprogram which operates on lists of elements of discrete
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-- types. Provide the generic subprogram with three formal parameters:
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-- (1) a formal discrete type which represents a list element type, (2)
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-- a generic formal package with the parent list generic as template, and
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-- (3) a generic formal package with the child list generic as template.
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-- Use the formal discrete type as the generic formal actual part for the
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-- parent formal package. In the main program, declare an instance of
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-- parent, then declare an instance of the child which is itself a child
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-- the parent's instance. Pass these instances as actuals to the generic
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-- subprogram instance.
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--
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--
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-- CHANGE HISTORY:
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-- 06 Dec 94 SAIC ACVC 2.0
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-- 05 Nov 95 SAIC ACVC 2.0.1 fixes: Corrected syntax of formal
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-- package declaration.
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-- 27 Feb 97 PWB.CTA Added an elaboration pragma.
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--!
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generic
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type Element_Type is private; -- List elems may be of any nonlimited type.
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package CC70001_0 is -- List abstraction.
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type List_Type is limited private;
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-- Return true if current element is last in the list.
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function End_Of_List (L : List_Type) return Boolean;
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-- Set "current" pointer to first list element.
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procedure Reset (L : in out List_Type);
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private
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type Node_Type;
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type Node_Pointer is access Node_Type;
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type Node_Type is record
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Item : Element_Type;
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Next : Node_Pointer;
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end record;
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type List_Type is record
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First : Node_Pointer;
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Current : Node_Pointer;
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Last : Node_Pointer;
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end record;
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end CC70001_0;
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--==================================================================--
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package body CC70001_0 is
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function End_Of_List (L : List_Type) return Boolean is
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begin
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return (L.Current = null);
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end End_Of_List;
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procedure Reset (L : in out List_Type) is
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begin
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L.Current := L.First; -- Set "current" pointer to first
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end Reset; -- list element.
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end CC70001_0;
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--==================================================================--
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-- Child must be generic since parent is generic. A formal parameter for
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-- "element type" can not be provided here, because then the type of list
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-- element assumed by these new operations would be different from that
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-- defined by the list type declared in the parent.
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generic
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package CC70001_0.CC70001_1 is -- Additional list operations.
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-- Read from current element and advance "current" pointer.
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procedure Read_Element (L : in out List_Type; E : out Element_Type);
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-- Write to current element and advance "current" pointer.
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procedure Write_Element (L : in out List_Type; E : in Element_Type);
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-- Add element to end of list.
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procedure Add_Element (L : in out List_Type; E : in Element_Type);
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end CC70001_0.CC70001_1;
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--==================================================================--
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package body CC70001_0.CC70001_1 is
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procedure Read_Element (L : in out List_Type; E : out Element_Type) is
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begin
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-- ... Error-checking code omitted for brevity.
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E := L.Current.Item; -- Retrieve current element.
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L.Current := L.Current.Next; -- Advance "current" pointer.
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end Read_Element;
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procedure Write_Element (L : in out List_Type; E : in Element_Type) is
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begin
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-- ... Error-checking code omitted for brevity.
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L.Current.Item := E; -- Write to current element.
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L.Current := L.Current.Next; -- Advance "current" pointer.
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end Write_Element;
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procedure Add_Element (L : in out List_Type; E : in Element_Type) is
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New_Node : Node_Pointer := new Node_Type'(E, null);
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begin
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if L.First = null then -- No elements in list, so add new
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L.First := New_Node; -- element at beginning of list.
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else
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L.Last.Next := New_Node; -- Add new element at end of list.
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end if;
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L.Last := New_Node; -- Set last-in-list pointer.
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end Add_Element;
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end CC70001_0.CC70001_1;
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--==================================================================--
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with CC70001_0.CC70001_1; -- Generic list abstraction + additional operations.
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generic
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-- Import the list abstraction defined in CC70001_0, as well as the
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-- additional operations defined in CC70001_0.CC70001_1. Declare a formal
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-- discrete type. Restrict this generic procedure to operate only on lists
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-- of discrete elements by passing the formal discrete type as an actual
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-- parameter to the formal (parent) package.
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type Elem_Type is (<>); -- Discrete types only.
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with package List_Mgr is new CC70001_0 (Elem_Type);
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with package List_Ops is new List_Mgr.CC70001_1 (<>);
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procedure CC70001_2 (L : in out List_Mgr.List_Type);
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--==================================================================--
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procedure CC70001_2 (L : in out List_Mgr.List_Type) is
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begin
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List_Mgr.Reset (L);
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while not List_Mgr.End_Of_List (L) loop
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List_Ops.Write_Element (L, Elem_Type'First);
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end loop;
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end CC70001_2;
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--==================================================================--
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package CC70001_3 is
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type Points is range 0 .. 10;
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-- ... Various other types used by the application.
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end CC70001_3;
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-- No body for CC70001_3;
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--==================================================================--
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-- Declare instances of the generic list packages for the discrete type.
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-- In order to establish that the type passed as an actual to the parent
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-- generic (CC70001_0) is the one utilized by the child generic (CC70001_1),
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-- the instance of the child must itself be declared as a child of the
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-- instance of the parent. Since only library units may have or be children,
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-- both instances must be library units.
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with CC70001_0; -- Generic list abstraction.
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with CC70001_3; -- Package containing discrete type declaration.
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pragma Elaborate (CC70001_0);
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package CC70001_4 is new CC70001_0 (CC70001_3.Points);
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with CC70001_0.CC70001_1; -- Generic extension to list abstraction.
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with CC70001_4;
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package CC70001_4.CC70001_5 is new CC70001_4.CC70001_1;
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--==================================================================--
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with CC70001_2; -- Generic "zeroing" op for lists of discrete types.
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with CC70001_3; -- Types for application.
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with CC70001_4.CC70001_5; -- Discrete list abstraction + additional ops.
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with Report;
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procedure CC70001 is
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package Lists_Of_Scores renames CC70001_4;
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package Score_Ops renames CC70001_4.CC70001_5;
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Scores : Lists_Of_Scores.List_Type; -- List of points.
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procedure Reset_All_Scores is new CC70001_2 -- Operation on lists of
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(Elem_Type => CC70001_3.Points, -- points.
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List_Mgr => Lists_Of_Scores,
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List_Ops => Score_Ops);
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-- Begin test code declarations: -----------------------
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type TC_Score_Array is array (1 .. 3) of CC70001_3.Points;
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TC_Initial_Values : constant TC_Score_Array := (2, 4, 6);
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TC_Final_Values : constant TC_Score_Array := (0, 0, 0);
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TC_Correct_Initial_Values : Boolean := False;
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TC_Correct_Final_Values : Boolean := False;
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procedure TC_Initialize_List (L : in out Lists_of_Scores.List_Type) is
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begin -- Initial list contains 3 scores
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for I in TC_Score_Array'Range loop -- with the values 2, 4, and 6.
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Score_Ops.Add_Element (L, TC_Initial_Values(I));
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end loop;
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end TC_Initialize_List;
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procedure TC_Verify_List (L : in out Lists_of_Scores.List_Type;
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Expected : in TC_Score_Array;
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OK : out Boolean) is
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Actual : TC_Score_Array;
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begin -- Verify that all scores have been
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Lists_of_Scores.Reset (L); -- set to zero.
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for I in TC_Score_Array'Range loop
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Score_Ops.Read_Element (L, Actual(I));
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end loop;
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OK := (Actual = Expected);
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end TC_Verify_List;
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-- End test code declarations. -------------------------
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begin
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Report.Test ("CC70001", "Check that the template for a generic formal " &
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"package may be a child package, and that a child instance " &
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"which is an instance of the template may be passed as an " &
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"actual to the formal package. Check that the visible part " &
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"of the generic formal package includes the first list of " &
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"basic declarative items of the package specification");
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TC_Initialize_List (Scores);
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TC_Verify_List (Scores, TC_Initial_Values, TC_Correct_Initial_Values);
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if not TC_Correct_Initial_Values then
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Report.Failed ("List contains incorrect initial values");
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end if;
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Reset_All_Scores (Scores);
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TC_Verify_List (Scores, TC_Final_Values, TC_Correct_Final_Values);
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if not TC_Correct_Final_Values then
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Report.Failed ("List contains incorrect final values");
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end if;
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Report.Result;
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end CC70001;
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