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jeremybenn |
-- CXB2003.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 subprograms Shift_Left, Shift_Right,
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-- Shift_Right_Arithmetic, Rotate_Left, and Rotate_Right are available
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-- and produce correct results for values of signed and modular
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-- integer types of 32 bits.
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--
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-- TEST DESCRIPTION:
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-- This test uses the shift and rotate functions of package Interfaces
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-- with a modular type representative of 32 bits. The functions
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-- are used as the right hand of assignment statements, as part of
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-- conditional statements, and as arguments in other function calls.
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--
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-- APPLICABILITY CRITERIA:
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-- This test is applicable to all implementations that support signed
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-- and modular integer types of 32 bits.
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--
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--
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-- CHANGE HISTORY:
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-- 23 Aug 95 SAIC Initial prerelease version.
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-- 07 May 96 SAIC Incorporated reviewer comments for ACVC 2.1.
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-- 26 Oct 96 SAIC Removed all references to Big/Little endian.
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--
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--!
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with Report;
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with Interfaces;
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with Ada.Exceptions;
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procedure CXB2003 is
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begin
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Report.Test ("CXB2003",
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"Check that subprograms Shift_Left, Shift_Right, " &
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"Shift_Right_Arithmetic, Rotate_Left, and Rotate_Right " &
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"are available and produce correct results");
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Test_Block:
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declare
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use Interfaces;
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use Ada.Exceptions;
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TC_Amount : Natural := Natural'First;
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-- Range of type Unsigned_32 is 0..(2**32)-1 (0..Modulus-1).
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TC_Val_Unsigned_32,
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TC_Result_Unsigned_32 : Unsigned_32 := Unsigned_32'First;
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begin
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-- Note: The shifting and rotating subprograms operate on a bit-by-bit
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-- basis, using the binary representation of the value of the
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-- operands to yield a binary representation for the result.
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-- Function Shift_Left.
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TC_Amount := 2;
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TC_Val_Unsigned_32 := Unsigned_32'Last;
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TC_Result_Unsigned_32 := Shift_Left(TC_Val_Unsigned_32, TC_Amount);
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if TC_Result_Unsigned_32 /= Unsigned_32'Last - (2**0 + 2**1) then
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Report.Failed("Incorrect result from Shift_Left - 1");
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end if;
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TC_Result_Unsigned_32 := Unsigned_32'Last - (2**0 + 2**1 + 2**2 +
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2**3 + 2**4);
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if Shift_Left(TC_Val_Unsigned_32, 5) /= TC_Result_Unsigned_32 or
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Shift_Left(TC_Val_Unsigned_32, 0) /= Unsigned_32'Last
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then
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Report.Failed("Incorrect result from Shift_Left - 2");
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end if;
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-- Function Shift_Right.
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TC_Amount := 3;
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TC_Val_Unsigned_32 := Unsigned_32'Last;
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TC_Result_Unsigned_32 := Shift_Right(Value => TC_Val_Unsigned_32,
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Amount => TC_Amount);
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if TC_Result_Unsigned_32 /=
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Unsigned_32'Last - (2**31 + 2**30 + 2**29)
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then
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Report.Failed("Incorrect result from Shift_Right - 1");
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end if;
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if Shift_Right(TC_Val_Unsigned_32, 0) /= Unsigned_32'Last or
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Shift_Right(TC_Val_Unsigned_32, 2) /= Unsigned_32'Last -
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(2**31 + 2**30)
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then
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Report.Failed("Incorrect result from Shift_Right - 2");
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end if;
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-- Tests of Shift_Left and Shift_Right in combination.
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TC_Val_Unsigned_32 := Unsigned_32'Last;
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if Shift_Left(Shift_Right(TC_Val_Unsigned_32, 4), 4) /=
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Unsigned_32'Last - (2**0 + 2**1 + 2**2 + 2**3) or
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Shift_Left(Shift_Right(TC_Val_Unsigned_32, 3), 1) /=
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Unsigned_32'Last - (2**31 + 2**30 + 2**0) or
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Shift_Left(Shift_Right(TC_Val_Unsigned_32, 5), 3) /=
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Unsigned_32'Last - (2**31 + 2**30 + 2**2 + 2**1 + 2**0) or
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Shift_Right(Shift_Left(TC_Val_Unsigned_32, 2), 1) /=
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Unsigned_32'Last - (2**31 + 2**0)
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then
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Report.Failed("Incorrect result from Shift_Left - " &
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"Shift_Right functions used in combination");
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end if;
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-- Function Shift_Right_Arithmetic.
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-- Case where the parameter Value is less than
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-- one half of the modulus. Zero bits will be shifted in.
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TC_Amount := 3;
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TC_Val_Unsigned_32 := 2**15 + 2**10 + 2**1;
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TC_Result_Unsigned_32 := Shift_Right_Arithmetic(TC_Val_Unsigned_32,
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TC_Amount);
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if TC_Result_Unsigned_32 /= (2**12 + 2**7) then
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Report.Failed
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("Incorrect result from Shift_Right_Arithmetic - 1");
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end if;
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if Shift_Right_Arithmetic(TC_Val_Unsigned_32, 0) /=
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TC_Val_Unsigned_32 or
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Shift_Right_Arithmetic(TC_Val_Unsigned_32, 5) /=
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(2**10 + 2**5)
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then
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Report.Failed
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("Incorrect result from Shift_Right_Arithmetic - 2");
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end if;
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-- Case where the parameter Value is greater than or equal to
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-- one half of the modulus. One bits will be shifted in.
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TC_Amount := 1;
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TC_Val_Unsigned_32 := 2**31; -- One half of modulus
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TC_Result_Unsigned_32 := Shift_Right_Arithmetic(TC_Val_Unsigned_32,
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TC_Amount);
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if TC_Result_Unsigned_32 /= (2**31 + 2**30) then
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Report.Failed
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("Incorrect result from Shift_Right_Arithmetic - 3");
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end if;
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TC_Amount := 1;
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TC_Val_Unsigned_32 := (2**31 + 2**1);
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TC_Result_Unsigned_32 := Shift_Right_Arithmetic(TC_Val_Unsigned_32,
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TC_Amount);
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if TC_Result_Unsigned_32 /= (2**31 + 2**30 + 2**0) then
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Report.Failed
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("Incorrect result from Shift_Right_Arithmetic - 4");
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end if;
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if Shift_Right_Arithmetic(TC_Val_Unsigned_32, 0) /=
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TC_Val_Unsigned_32 or
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Shift_Right_Arithmetic(TC_Val_Unsigned_32, 3) /=
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(2**31 + 2**30 + 2**29 + 2**28)
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then
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Report.Failed
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("Incorrect result from Shift_Right_Arithmetic - 5");
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end if;
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-- Function Rotate_Left.
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TC_Amount := 3;
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TC_Val_Unsigned_32 := Unsigned_32'Last;
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TC_Result_Unsigned_32 := Rotate_Left(Value => TC_Val_Unsigned_32,
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Amount => TC_Amount);
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if TC_Result_Unsigned_32 /= Unsigned_32'Last then
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Report.Failed("Incorrect result from Rotate_Left - 1");
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end if;
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TC_Val_Unsigned_32 := 2**31 + 2**30;
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if Rotate_Left(TC_Val_Unsigned_32, 1) /= (2**31 + 2**0) or
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Rotate_Left(TC_Val_Unsigned_32, 5) /= (2**4 + 2**3) or
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Rotate_Left(TC_Val_Unsigned_32, 32) /= TC_Val_Unsigned_32
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then
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Report.Failed("Incorrect result from Rotate_Left - 2");
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end if;
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-- Function Rotate_Right.
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TC_Amount := 2;
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TC_Val_Unsigned_32 := (2**1 + 2**0);
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TC_Result_Unsigned_32 := Rotate_Right(Value => TC_Val_Unsigned_32,
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Amount => TC_Amount);
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if TC_Result_Unsigned_32 /= (2**31 + 2**30) then
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Report.Failed("Incorrect result from Rotate_Right - 1");
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end if;
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if Rotate_Right(TC_Val_Unsigned_32, 3) /= (2**30 + 2**29) or
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Rotate_Right(TC_Val_Unsigned_32, 6) /= (2**27 + 2**26) or
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Rotate_Right(TC_Val_Unsigned_32, 32) /= (2**1 + 2**0)
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then
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Report.Failed("Incorrect result from Rotate_Right - 2");
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end if;
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-- Tests of Rotate_Left and Rotate_Right in combination.
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TC_Val_Unsigned_32 := (2**31 + 2**15 + 2**3);
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if Rotate_Left(Rotate_Right(TC_Val_Unsigned_32, 4), 3) /=
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(2**30 + 2**14 + 2**2) or
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Rotate_Left(Rotate_Right(TC_Val_Unsigned_32, 1), 3) /=
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(2**17 + 2**5 + 2**1) or
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Rotate_Right(Rotate_Left(TC_Val_Unsigned_32, 3), 7) /=
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(2**31 + 2**27 + 2**11) or
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Rotate_Right(Rotate_Left(TC_Val_Unsigned_32, 1), 32) /=
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(2**16 + 2**4 + 2**0)
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then
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Report.Failed("Incorrect result from Rotate_Left - " &
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"Rotate_Right functions used in combination");
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end if;
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exception
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when The_Error : others =>
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Report.Failed ("The following exception was raised in the " &
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"Test_Block: " & Exception_Name(The_Error));
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end Test_Block;
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Report.Result;
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end CXB2003;
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