Cloned library LAPACK-3.11.0 with extra build files for internal package management.
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.
 
 
 
 
 

196 lines
6.2 KiB

*> \brief \b ZCHKEC
*
* =========== DOCUMENTATION ===========
*
* Online html documentation available at
* http://www.netlib.org/lapack/explore-html/
*
* Definition:
* ===========
*
* SUBROUTINE ZCHKEC( THRESH, TSTERR, NIN, NOUT )
*
* .. Scalar Arguments ..
* LOGICAL TSTERR
* INTEGER NIN, NOUT
* DOUBLE PRECISION THRESH
* ..
*
*
*> \par Purpose:
* =============
*>
*> \verbatim
*>
*> ZCHKEC tests eigen- condition estimation routines
*> ZTRSYL, CTREXC, CTRSNA, CTRSEN
*>
*> In all cases, the routine runs through a fixed set of numerical
*> examples, subjects them to various tests, and compares the test
*> results to a threshold THRESH. In addition, ZTRSNA and CTRSEN are
*> tested by reading in precomputed examples from a file (on input unit
*> NIN). Output is written to output unit NOUT.
*> \endverbatim
*
* Arguments:
* ==========
*
*> \param[in] THRESH
*> \verbatim
*> THRESH is DOUBLE PRECISION
*> Threshold for residual tests. A computed test ratio passes
*> the threshold if it is less than THRESH.
*> \endverbatim
*>
*> \param[in] TSTERR
*> \verbatim
*> TSTERR is LOGICAL
*> Flag that indicates whether error exits are to be tested.
*> \endverbatim
*>
*> \param[in] NIN
*> \verbatim
*> NIN is INTEGER
*> The logical unit number for input.
*> \endverbatim
*>
*> \param[in] NOUT
*> \verbatim
*> NOUT is INTEGER
*> The logical unit number for output.
*> \endverbatim
*
* Authors:
* ========
*
*> \author Univ. of Tennessee
*> \author Univ. of California Berkeley
*> \author Univ. of Colorado Denver
*> \author NAG Ltd.
*
*> \ingroup complex16_eig
*
* =====================================================================
SUBROUTINE ZCHKEC( THRESH, TSTERR, NIN, NOUT )
*
* -- LAPACK test routine --
* -- LAPACK is a software package provided by Univ. of Tennessee, --
* -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
*
* .. Scalar Arguments ..
LOGICAL TSTERR
INTEGER NIN, NOUT
DOUBLE PRECISION THRESH
* ..
*
* =====================================================================
*
* .. Local Scalars ..
LOGICAL OK
CHARACTER*3 PATH
INTEGER KTREXC, KTRSEN, KTRSNA, KTRSYL, KTRSYL3,
$ LTREXC, LTRSYL, NTESTS, NTREXC, NTRSYL
DOUBLE PRECISION EPS, RTREXC, SFMIN
* ..
* .. Local Arrays ..
INTEGER FTRSYL( 3 ), ITRSYL( 2 ), LTRSEN( 3 ),
$ LTRSNA( 3 ), NTRSEN( 3 ), NTRSNA( 3 )
DOUBLE PRECISION RTRSEN( 3 ), RTRSNA( 3 ), RTRSYL( 2 )
* ..
* .. External Subroutines ..
EXTERNAL ZERREC, ZGET35, ZGET36, ZGET37, ZGET38, ZSYL01
* ..
* .. External Functions ..
DOUBLE PRECISION DLAMCH
EXTERNAL DLAMCH
* ..
* .. Executable Statements ..
*
PATH( 1: 1 ) = 'Zomplex precision'
PATH( 2: 3 ) = 'EC'
EPS = DLAMCH( 'P' )
SFMIN = DLAMCH( 'S' )
WRITE( NOUT, FMT = 9994 )
WRITE( NOUT, FMT = 9993 )EPS, SFMIN
WRITE( NOUT, FMT = 9992 )THRESH
*
* Test error exits if TSTERR is .TRUE.
*
IF( TSTERR )
$ CALL ZERREC( PATH, NOUT )
*
OK = .TRUE.
CALL ZGET35( RTRSYL( 1 ), LTRSYL, NTRSYL, KTRSYL, NIN )
IF( RTRSYL( 1 ).GT.THRESH ) THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9999 )RTRSYL( 1 ), LTRSYL, NTRSYL, KTRSYL
END IF
*
CALL ZSYL01( THRESH, FTRSYL, RTRSYL, ITRSYL, KTRSYL3 )
IF( FTRSYL( 1 ).GT.0 ) THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9970 )FTRSYL( 1 ), RTRSYL( 1 ), THRESH
END IF
IF( FTRSYL( 2 ).GT.0 ) THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9971 )FTRSYL( 2 ), RTRSYL( 2 ), THRESH
END IF
IF( FTRSYL( 3 ).GT.0 ) THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9972 )FTRSYL( 3 )
END IF
*
CALL ZGET36( RTREXC, LTREXC, NTREXC, KTREXC, NIN )
IF( RTREXC.GT.THRESH .OR. NTREXC.GT.0 ) THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9998 )RTREXC, LTREXC, NTREXC, KTREXC
END IF
*
CALL ZGET37( RTRSNA, LTRSNA, NTRSNA, KTRSNA, NIN )
IF( RTRSNA( 1 ).GT.THRESH .OR. RTRSNA( 2 ).GT.THRESH .OR.
$ NTRSNA( 1 ).NE.0 .OR. NTRSNA( 2 ).NE.0 .OR. NTRSNA( 3 ).NE.0 )
$ THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9997 )RTRSNA, LTRSNA, NTRSNA, KTRSNA
END IF
*
CALL ZGET38( RTRSEN, LTRSEN, NTRSEN, KTRSEN, NIN )
IF( RTRSEN( 1 ).GT.THRESH .OR. RTRSEN( 2 ).GT.THRESH .OR.
$ NTRSEN( 1 ).NE.0 .OR. NTRSEN( 2 ).NE.0 .OR. NTRSEN( 3 ).NE.0 )
$ THEN
OK = .FALSE.
WRITE( NOUT, FMT = 9996 )RTRSEN, LTRSEN, NTRSEN, KTRSEN
END IF
*
NTESTS = KTRSYL + KTRSYL3 + KTREXC + KTRSNA + KTRSEN
IF( OK )
$ WRITE( NOUT, FMT = 9995 )PATH, NTESTS
*
9999 FORMAT( ' Error in ZTRSYL: RMAX =', D12.3, / ' LMAX = ', I8,
$ ' NINFO=', I8, ' KNT=', I8 )
9998 FORMAT( ' Error in ZTREXC: RMAX =', D12.3, / ' LMAX = ', I8,
$ ' NINFO=', I8, ' KNT=', I8 )
9997 FORMAT( ' Error in ZTRSNA: RMAX =', 3D12.3, / ' LMAX = ', 3I8,
$ ' NINFO=', 3I8, ' KNT=', I8 )
9996 FORMAT( ' Error in ZTRSEN: RMAX =', 3D12.3, / ' LMAX = ', 3I8,
$ ' NINFO=', 3I8, ' KNT=', I8 )
9995 FORMAT( / 1X, 'All tests for ', A3,
$ ' routines passed the threshold ( ', I6, ' tests run)' )
9994 FORMAT( ' Tests of the Nonsymmetric eigenproblem condition',
$ ' estimation routines', / ' ZTRSYL, ZTREXC, ZTRSNA, ZTRSEN',
$ / )
9993 FORMAT( ' Relative machine precision (EPS) = ', D16.6,
$ / ' Safe minimum (SFMIN) = ', D16.6, / )
9992 FORMAT( ' Routines pass computational tests if test ratio is ',
$ 'less than', F8.2, / / )
9970 FORMAT( 'Error in ZTRSYL: ', I8, ' tests fail the threshold.', /
$ 'Maximum test ratio =', D12.3, ' threshold =', D12.3 )
9971 FORMAT( 'Error in ZTRSYL3: ', I8, ' tests fail the threshold.', /
$ 'Maximum test ratio =', D12.3, ' threshold =', D12.3 )
9972 FORMAT( 'ZTRSYL and ZTRSYL3 compute an inconsistent scale ',
$ 'factor in ', I8, ' tests.')
RETURN
*
* End of ZCHKEC
*
END