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jeremybenn |
-- CXA5A09.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 function Log provides correct results.
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--
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-- TEST DESCRIPTION:
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-- This test examines both the version of Log resulting from the
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-- instantiation of the Ada.Numerics.Generic_Elementary_Functions with
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-- with a type derived from type Float,as well as the preinstantiated
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-- version of this package for type Float.
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-- Prescribed results, including instances prescribed to raise
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-- exceptions, are examined in the test cases. In addition,
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-- certain evaluations are performed where the actual function result
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-- is compared with the expected result (within an epsilon range of
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-- accuracy).
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--
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-- TEST FILES:
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-- The following files comprise this test:
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--
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-- FXA5A00.A (foundation code)
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-- CXA5A09.A
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--
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--
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-- CHANGE HISTORY:
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-- 11 Apr 95 SAIC Initial prerelease version.
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-- 13 Jun 95 SAIC Incorporated use of Dont_Optimize procedure, and
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-- use of Result_Within_Range function overloaded for
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-- FXA5A00.New_Float_Type.
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-- 29 Jun 98 EDS Protected exception tests by first testing
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-- for 'Machine_Overflows
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--
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--!
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with Ada.Numerics.Elementary_Functions;
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with Ada.Numerics.Generic_Elementary_Functions;
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with FXA5A00;
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with Report;
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procedure CXA5A09 is
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begin
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Report.Test ("CXA5A09", "Check that the Log function provides " &
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"correct results");
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Test_Block:
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declare
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use Ada.Numerics;
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use FXA5A00;
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package GEF is new Ada.Numerics.Generic_Elementary_Functions(New_Float);
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package EF renames Ada.Numerics.Elementary_Functions;
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Arg,
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Float_Result : Float := 0.0;
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New_Float_Result : New_Float := 0.0;
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Incorrect_Inverse,
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Incorrect_Inverse_Base_2,
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Incorrect_Inverse_Base_8,
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Incorrect_Inverse_Base_10,
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Incorrect_Inverse_Base_16 : Boolean := False;
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procedure Dont_Optimize_Float is new Dont_Optimize(Float);
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procedure Dont_Optimize_New_Float is new Dont_Optimize(New_Float);
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begin
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-- Testing of Log Function, both instantiated and pre-instantiated
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-- version.
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-- Check that Argument_Error is raised when the parameter X is negative.
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begin
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New_Float_Result := GEF.Log(X => -1.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"when the input parameter is negative");
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Dont_Optimize_New_Float(New_Float_Result, 1);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"when the input parameter is negative");
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end;
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begin
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Float_Result := EF.Log(X => -FXA5A00.Large);
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Report.Failed("Argument_Error not raised by the Log function " &
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"when the input parameter is negative");
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Dont_Optimize_Float(Float_Result, 2);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"when the input parameter is negative");
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end;
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-- Check that Constraint_Error is raised when the Log function is
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-- provided an input parameter of zero.
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if New_Float'Machine_Overflows = True then
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begin
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New_Float_Result := GEF.Log(X => 0.0);
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Report.Failed("Constraint_Error not raised by the Log function " &
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"when the input parameter is zero");
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Dont_Optimize_New_Float(New_Float_Result, 3);
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exception
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when Constraint_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function "
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& "when the input parameter is zero");
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end;
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end if;
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-- Check for the reference manual prescribed results of the Log function.
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if GEF.Log(X => 1.0) /= 0.0 or
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EF.Log(X => 1.0) /= 0.0
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then
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Report.Failed("Incorrect result from Function Log when provided " &
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"an input parameter value of 1.0");
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end if;
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-- Check that the Log function provides correct results when provided
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-- a variety of input parameters.
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if not FXA5A00.Result_Within_Range(GEF.Log(0.015), -4.20, 0.01) or
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not FXA5A00.Result_Within_Range(GEF.Log(0.592), -0.524, 0.001) or
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not FXA5A00.Result_Within_Range(GEF.Log(0.997), -0.003, 0.001) or
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not FXA5A00.Result_Within_Range(GEF.Log(1.341), 0.293, 0.001) or
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not FXA5A00.Result_Within_Range( EF.Log(2.826), 1.04, 0.01) or
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not FXA5A00.Result_Within_Range( EF.Log(10.052), 2.31, 0.01) or
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not FXA5A00.Result_Within_Range( EF.Log(2569.143), 7.85, 0.01)
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then
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Report.Failed("Incorrect results from Function Log when provided " &
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"a variety of input parameter values");
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end if;
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Arg := 0.001;
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while Arg < 1.0 and not Incorrect_Inverse loop
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if not Result_Within_Range(EF."**"(e,EF.Log(Arg)), Arg, 0.001) then
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Incorrect_Inverse := True;
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end if;
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Arg := Arg + 0.001;
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end loop;
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if Incorrect_Inverse then
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Report.Failed("Incorrect inverse result comparing ""**"" and " &
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"Log function over argument range 0.001..1.0");
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Incorrect_Inverse := False;
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end if;
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Arg := 1.0;
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while Arg < 10.0 and not Incorrect_Inverse loop
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if not Result_Within_Range(EF."**"(e,EF.Log(Arg)), Arg, 0.01) then
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Incorrect_Inverse := True;
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end if;
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Arg := Arg + 0.01;
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end loop;
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if Incorrect_Inverse then
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Report.Failed("Incorrect inverse result comparing ""**"" and " &
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"Log function over argument range 1.0..10.0");
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Incorrect_Inverse := False;
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end if;
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Arg := 1.0;
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while Arg < 1000.0 and not Incorrect_Inverse loop
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if not Result_Within_Range(EF."**"(e,EF.Log(Arg)), Arg, 0.1) then
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Incorrect_Inverse := True;
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end if;
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Arg := Arg + 1.0;
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end loop;
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if Incorrect_Inverse then
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Report.Failed("Incorrect inverse result comparing ""**"" and " &
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"Log function over argument range 1.0..1000.0");
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end if;
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-- Testing of Log Function, with specified Base parameter, both
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-- instantiated and pre-instantiated versions.
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-- Check that Argument_Error is raised by the Log function with
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-- specified Base parameter, when the X parameter value is negative.
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begin
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New_Float_Result := GEF.Log(X => -1.0, Base => 16.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"with Base parameter, when the input parameter " &
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"value is -1.0");
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Dont_Optimize_New_Float(New_Float_Result, 4);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"with Base parameter, when the X parameter value " &
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"is -1.0");
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end;
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begin
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Float_Result := EF.Log(X => -FXA5A00.Large, Base => 8.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"with Base parameter, when the X parameter " &
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"value is a large negative value");
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Dont_Optimize_Float(Float_Result, 5);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"with Base parameter, when the X parameter " &
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"value is a large negative value");
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end;
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-- Check that Argument_Error is raised by the Log function when
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-- the specified Base parameter is zero.
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begin
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New_Float_Result := GEF.Log(X => 10.0, Base => 0.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"with Base parameter of 0.0");
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Dont_Optimize_New_Float(New_Float_Result, 6);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"with Base parameter of 0.0");
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end;
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-- Check that Argument_Error is raised by the Log function when
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-- the specified Base parameter is one.
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begin
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Float_Result := EF.Log(X => 12.3, Base => 1.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"with Base parameter of 1.0");
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Dont_Optimize_Float(Float_Result, 7);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"with Base parameter of 1.0");
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end;
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-- Check that Argument_Error is raised by the Log function when
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-- the specified Base parameter is negative.
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begin
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New_Float_Result := GEF.Log(X => 12.3, Base => -10.0);
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Report.Failed("Argument_Error not raised by the Log function " &
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"with negative Base parameter");
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Dont_Optimize_New_Float(New_Float_Result, 8);
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exception
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when Argument_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by the Log function " &
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"with negative Base parameter");
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end;
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-- Check that Constraint_Error is raised by the Log function when the
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-- input X parameter value is 0.0.
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if New_Float'Machine_Overflows = True then
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begin
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New_Float_Result := GEF.Log(X => 0.0, Base => 16.0);
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Report.Failed("Constraint_Error not raised by the Log function " &
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"with specified Base parameter, when the value of " &
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"the parameter X is 0.0");
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Dont_Optimize_New_Float(New_Float_Result, 9);
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exception
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when Constraint_Error => null; -- OK, expected exception.
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when others =>
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Report.Failed("Unexpected exception raised by Function Log" &
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"with specified Base parameter, when the value " &
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"of the parameter X is 0.0");
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end;
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end if;
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308 |
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309 |
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-- Check for the prescribed results of the Log function with specified
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-- Base parameter.
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if GEF.Log(X => 1.0, Base => 16.0) /= 0.0 or
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EF.Log(X => 1.0, Base => 10.0) /= 0.0 or
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GEF.Log(1.0, Base => 8.0) /= 0.0 or
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EF.Log(1.0, 2.0) /= 0.0
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then
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Report.Failed("Incorrect result from Function Log with specified " &
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"Base parameter when provided an parameter X input " &
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"value of 1.0");
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end if;
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-- Check that the Log function with specified Base parameter provides
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-- correct results when provided a variety of input parameters.
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if not Result_Within_Range(GEF.Log( 10.0, e), 2.30, 0.01) or
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not Result_Within_Range( EF.Log( 8.0, 2.0), 3.0, 0.01) or
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not Result_Within_Range(GEF.Log(256.0, 2.0), 8.0, 0.01) or
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not Result_Within_Range( EF.Log(512.0, 8.0), 3.0, 0.01) or
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not Result_Within_Range(GEF.Log(0.5649, e), -0.57, 0.01) or
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not Result_Within_Range( EF.Log(1.7714, e), 0.57, 0.01) or
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not Result_Within_Range(GEF.Log(0.5718, 10.0), -0.243, 0.001) or
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not Result_Within_Range( EF.Log(466.25, 10.0), 2.67, 0.01)
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then
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Report.Failed("Incorrect results from Function Log with specified " &
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336 |
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"Base parameter, when provided a variety of input " &
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"parameter values");
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end if;
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339 |
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340 |
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Arg := 1.0;
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while Arg < 1000.0 and
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not (Incorrect_Inverse_Base_2 and Incorrect_Inverse_Base_8 and
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344 |
|
|
Incorrect_Inverse_Base_10 and Incorrect_Inverse_Base_16)
|
345 |
|
|
loop
|
346 |
|
|
if not FXA5A00.Result_Within_Range(EF."**"(2.0,EF.Log(Arg,2.0)),
|
347 |
|
|
Arg,
|
348 |
|
|
0.001)
|
349 |
|
|
then
|
350 |
|
|
Incorrect_Inverse_Base_2 := True;
|
351 |
|
|
end if;
|
352 |
|
|
if not FXA5A00.Result_Within_Range(EF."**"(8.0,EF.Log(Arg,8.0)),
|
353 |
|
|
Arg,
|
354 |
|
|
0.001)
|
355 |
|
|
then
|
356 |
|
|
Incorrect_Inverse_Base_8 := True;
|
357 |
|
|
end if;
|
358 |
|
|
if not FXA5A00.Result_Within_Range(EF."**"(10.0,EF.Log(Arg,10.0)),
|
359 |
|
|
Arg,
|
360 |
|
|
0.001)
|
361 |
|
|
then
|
362 |
|
|
Incorrect_Inverse_Base_10 := True;
|
363 |
|
|
end if;
|
364 |
|
|
if not FXA5A00.Result_Within_Range(EF."**"(16.0,EF.Log(Arg,16.0)),
|
365 |
|
|
Arg,
|
366 |
|
|
0.001)
|
367 |
|
|
then
|
368 |
|
|
Incorrect_Inverse_Base_16 := True;
|
369 |
|
|
end if;
|
370 |
|
|
Arg := Arg + 1.0;
|
371 |
|
|
end loop;
|
372 |
|
|
|
373 |
|
|
if Incorrect_Inverse_Base_2 then
|
374 |
|
|
Report.Failed("Incorrect inverse result comparing ""**"" and " &
|
375 |
|
|
"Log function for Base 2");
|
376 |
|
|
end if;
|
377 |
|
|
|
378 |
|
|
if Incorrect_Inverse_Base_8 then
|
379 |
|
|
Report.Failed("Incorrect inverse result comparing ""**"" and " &
|
380 |
|
|
"Log function for Base 8");
|
381 |
|
|
end if;
|
382 |
|
|
|
383 |
|
|
if Incorrect_Inverse_Base_10 then
|
384 |
|
|
Report.Failed("Incorrect inverse result comparing ""**"" and " &
|
385 |
|
|
"Log function for Base 10");
|
386 |
|
|
end if;
|
387 |
|
|
|
388 |
|
|
if Incorrect_Inverse_Base_16 then
|
389 |
|
|
Report.Failed("Incorrect inverse result comparing ""**"" and " &
|
390 |
|
|
"Log function for Base 16");
|
391 |
|
|
end if;
|
392 |
|
|
|
393 |
|
|
|
394 |
|
|
exception
|
395 |
|
|
when others => Report.Failed ("Exception raised in Test_Block");
|
396 |
|
|
end Test_Block;
|
397 |
|
|
|
398 |
|
|
Report.Result;
|
399 |
|
|
|
400 |
|
|
end CXA5A09;
|