319 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			319 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			Fortran
		
	
	
	
| *> \brief \b CCHKTZ
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| *
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| *  =========== DOCUMENTATION ===========
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| *
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| * Online html documentation available at
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| *            http://www.netlib.org/lapack/explore-html/
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| *
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| *  Definition:
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| *  ===========
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| *
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| *       SUBROUTINE CCHKTZ( DOTYPE, NM, MVAL, NN, NVAL, THRESH, TSTERR, A,
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| *                          COPYA, S, TAU, WORK, RWORK, NOUT )
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| *
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| *       .. Scalar Arguments ..
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| *       LOGICAL            TSTERR
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| *       INTEGER            NM, NN, NOUT
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| *       REAL               THRESH
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| *       ..
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| *       .. Array Arguments ..
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| *       LOGICAL            DOTYPE( * )
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| *       INTEGER            MVAL( * ), NVAL( * )
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| *       REAL               S( * ), RWORK( * )
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| *       COMPLEX            A( * ), COPYA( * ), TAU( * ), WORK( * )
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| *       ..
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| *
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| *
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| *> \par Purpose:
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| *  =============
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| *>
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| *> \verbatim
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| *>
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| *> CCHKTZ tests CTZRZF.
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| *> \endverbatim
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| *
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| *  Arguments:
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| *  ==========
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| *
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| *> \param[in] DOTYPE
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| *> \verbatim
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| *>          DOTYPE is LOGICAL array, dimension (NTYPES)
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| *>          The matrix types to be used for testing.  Matrices of type j
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| *>          (for 1 <= j <= NTYPES) are used for testing if DOTYPE(j) =
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| *>          .TRUE.; if DOTYPE(j) = .FALSE., then type j is not used.
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| *> \endverbatim
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| *>
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| *> \param[in] NM
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| *> \verbatim
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| *>          NM is INTEGER
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| *>          The number of values of M contained in the vector MVAL.
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| *> \endverbatim
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| *>
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| *> \param[in] MVAL
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| *> \verbatim
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| *>          MVAL is INTEGER array, dimension (NM)
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| *>          The values of the matrix row dimension M.
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| *> \endverbatim
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| *>
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| *> \param[in] NN
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| *> \verbatim
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| *>          NN is INTEGER
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| *>          The number of values of N contained in the vector NVAL.
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| *> \endverbatim
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| *>
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| *> \param[in] NVAL
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| *> \verbatim
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| *>          NVAL is INTEGER array, dimension (NN)
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| *>          The values of the matrix column dimension N.
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| *> \endverbatim
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| *>
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| *> \param[in] THRESH
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| *> \verbatim
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| *>          THRESH is REAL
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| *>          The threshold value for the test ratios.  A result is
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| *>          included in the output file if RESULT >= THRESH.  To have
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| *>          every test ratio printed, use THRESH = 0.
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| *> \endverbatim
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| *>
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| *> \param[in] TSTERR
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| *> \verbatim
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| *>          TSTERR is LOGICAL
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| *>          Flag that indicates whether error exits are to be tested.
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| *> \endverbatim
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| *>
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| *> \param[out] A
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| *> \verbatim
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| *>          A is COMPLEX array, dimension (MMAX*NMAX)
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| *>          where MMAX is the maximum value of M in MVAL and NMAX is the
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| *>          maximum value of N in NVAL.
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| *> \endverbatim
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| *>
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| *> \param[out] COPYA
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| *> \verbatim
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| *>          COPYA is COMPLEX array, dimension (MMAX*NMAX)
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| *> \endverbatim
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| *>
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| *> \param[out] S
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| *> \verbatim
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| *>          S is REAL array, dimension
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| *>                      (min(MMAX,NMAX))
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| *> \endverbatim
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| *>
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| *> \param[out] TAU
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| *> \verbatim
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| *>          TAU is COMPLEX array, dimension (MMAX)
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| *> \endverbatim
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| *>
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| *> \param[out] WORK
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| *> \verbatim
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| *>          WORK is COMPLEX array, dimension
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| *>                      (MMAX*NMAX + 4*NMAX + MMAX)
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| *> \endverbatim
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| *>
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| *> \param[out] RWORK
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| *> \verbatim
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| *>          RWORK is REAL array, dimension (2*NMAX)
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| *> \endverbatim
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| *>
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| *> \param[in] NOUT
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| *> \verbatim
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| *>          NOUT is INTEGER
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| *>          The unit number for output.
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| *> \endverbatim
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| *
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| *  Authors:
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| *  ========
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| *
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| *> \author Univ. of Tennessee
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| *> \author Univ. of California Berkeley
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| *> \author Univ. of Colorado Denver
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| *> \author NAG Ltd.
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| *
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| *> \ingroup complex_lin
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| *
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| *  =====================================================================
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|       SUBROUTINE CCHKTZ( DOTYPE, NM, MVAL, NN, NVAL, THRESH, TSTERR, A,
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|      $                   COPYA, S, TAU, WORK, RWORK, NOUT )
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| *
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| *  -- LAPACK test routine --
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| *  -- LAPACK is a software package provided by Univ. of Tennessee,    --
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| *  -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
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| *
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| *     .. Scalar Arguments ..
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|       LOGICAL            TSTERR
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|       INTEGER            NM, NN, NOUT
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|       REAL               THRESH
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| *     ..
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| *     .. Array Arguments ..
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|       LOGICAL            DOTYPE( * )
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|       INTEGER            MVAL( * ), NVAL( * )
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|       REAL               S( * ), RWORK( * )
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|       COMPLEX            A( * ), COPYA( * ), TAU( * ), WORK( * )
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| *     ..
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| *
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| *  =====================================================================
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| *
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| *     .. Parameters ..
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|       INTEGER            NTYPES
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|       PARAMETER          ( NTYPES = 3 )
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|       INTEGER            NTESTS
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|       PARAMETER          ( NTESTS = 3 )
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|       REAL               ONE, ZERO
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|       PARAMETER          ( ONE = 1.0E0, ZERO = 0.0E0 )
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| *     ..
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| *     .. Local Scalars ..
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|       CHARACTER*3        PATH
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|       INTEGER            I, IM, IMODE, IN, INFO, K, LDA, LWORK, M,
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|      $                   MNMIN, MODE, N, NERRS, NFAIL, NRUN
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|       REAL               EPS
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| *     ..
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| *     .. Local Arrays ..
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|       INTEGER            ISEED( 4 ), ISEEDY( 4 )
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|       REAL               RESULT( NTESTS )
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| *     ..
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| *     .. External Functions ..
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|       REAL               CQRT12, CRZT01, CRZT02, SLAMCH
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|       EXTERNAL           CQRT12, CRZT01, CRZT02, SLAMCH
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| *     ..
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| *     .. External Subroutines ..
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|       EXTERNAL           ALAHD, ALASUM, CERRTZ, CGEQR2, CLACPY, CLASET,
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|      $                   CLATMS, CTZRZF, SLAORD
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| *     ..
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| *     .. Intrinsic Functions ..
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|       INTRINSIC          CMPLX, MAX, MIN
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| *     ..
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| *     .. Scalars in Common ..
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|       LOGICAL            LERR, OK
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|       CHARACTER*32       SRNAMT
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|       INTEGER            INFOT, IOUNIT
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| *     ..
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| *     .. Common blocks ..
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|       COMMON             / INFOC / INFOT, IOUNIT, OK, LERR
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|       COMMON             / SRNAMC / SRNAMT
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| *     ..
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| *     .. Data statements ..
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|       DATA               ISEEDY / 1988, 1989, 1990, 1991 /
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| *     ..
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| *     .. Executable Statements ..
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| *
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| *     Initialize constants and the random number seed.
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| *
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|       PATH( 1: 1 ) = 'Complex precision'
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|       PATH( 2: 3 ) = 'TZ'
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|       NRUN = 0
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|       NFAIL = 0
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|       NERRS = 0
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|       DO 10 I = 1, 4
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|          ISEED( I ) = ISEEDY( I )
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|    10 CONTINUE
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|       EPS = SLAMCH( 'Epsilon' )
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| *
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| *     Test the error exits
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| *
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|       IF( TSTERR )
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|      $   CALL CERRTZ( PATH, NOUT )
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|       INFOT = 0
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| *
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|       DO 70 IM = 1, NM
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| *
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| *        Do for each value of M in MVAL.
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| *
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|          M = MVAL( IM )
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|          LDA = MAX( 1, M )
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| *
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|          DO 60 IN = 1, NN
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| *
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| *           Do for each value of N in NVAL for which M .LE. N.
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| *
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|             N = NVAL( IN )
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|             MNMIN = MIN( M, N )
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|             LWORK = MAX( 1, N*N+4*M+N )
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| *
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|             IF( M.LE.N ) THEN
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|                DO 50 IMODE = 1, NTYPES
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|                   IF( .NOT.DOTYPE( IMODE ) )
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|      $               GO TO 50
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| *
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| *                 Do for each type of singular value distribution.
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| *                    0:  zero matrix
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| *                    1:  one small singular value
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| *                    2:  exponential distribution
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| *
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|                   MODE = IMODE - 1
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| *
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| *                 Test CTZRZF
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| *
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| *                 Generate test matrix of size m by n using
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| *                 singular value distribution indicated by `mode'.
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| *
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|                   IF( MODE.EQ.0 ) THEN
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|                      CALL CLASET( 'Full', M, N, CMPLX( ZERO ),
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|      $                            CMPLX( ZERO ), A, LDA )
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|                      DO 30 I = 1, MNMIN
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|                         S( I ) = ZERO
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|    30                CONTINUE
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|                   ELSE
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|                      CALL CLATMS( M, N, 'Uniform', ISEED,
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|      $                            'Nonsymmetric', S, IMODE,
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|      $                            ONE / EPS, ONE, M, N, 'No packing', A,
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|      $                            LDA, WORK, INFO )
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|                      CALL CGEQR2( M, N, A, LDA, WORK, WORK( MNMIN+1 ),
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|      $                            INFO )
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|                      CALL CLASET( 'Lower', M-1, N, CMPLX( ZERO ),
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|      $                            CMPLX( ZERO ), A( 2 ), LDA )
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|                      CALL SLAORD( 'Decreasing', MNMIN, S, 1 )
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|                   END IF
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| *
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| *                 Save A and its singular values
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| *
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|                   CALL CLACPY( 'All', M, N, A, LDA, COPYA, LDA )
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| *
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| *                 Call CTZRZF to reduce the upper trapezoidal matrix to
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| *                 upper triangular form.
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| *
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|                   SRNAMT = 'CTZRZF'
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|                   CALL CTZRZF( M, N, A, LDA, TAU, WORK, LWORK, INFO )
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| *
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| *                 Compute norm(svd(a) - svd(r))
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| *
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|                   RESULT( 1 ) = CQRT12( M, M, A, LDA, S, WORK,
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|      $                          LWORK, RWORK )
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| *
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| *                 Compute norm( A - R*Q )
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| *
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|                   RESULT( 2 ) = CRZT01( M, N, COPYA, A, LDA, TAU, WORK,
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|      $                          LWORK )
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| *
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| *                 Compute norm(Q'*Q - I).
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| *
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|                   RESULT( 3 ) = CRZT02( M, N, A, LDA, TAU, WORK, LWORK )
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| *
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| *                 Print information about the tests that did not pass
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| *                 the threshold.
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| *
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|                   DO 40 K = 1, NTESTS
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|                      IF( RESULT( K ).GE.THRESH ) THEN
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|                         IF( NFAIL.EQ.0 .AND. NERRS.EQ.0 )
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|      $                     CALL ALAHD( NOUT, PATH )
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|                         WRITE( NOUT, FMT = 9999 )M, N, IMODE, K,
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|      $                     RESULT( K )
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|                         NFAIL = NFAIL + 1
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|                      END IF
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|    40             CONTINUE
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|                   NRUN = NRUN + 3
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|    50          CONTINUE
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|             END IF
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|    60    CONTINUE
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|    70 CONTINUE
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| *
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| *     Print a summary of the results.
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| *
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|       CALL ALASUM( PATH, NOUT, NFAIL, NRUN, NERRS )
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| *
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|  9999 FORMAT( ' M =', I5, ', N =', I5, ', type ', I2, ', test ', I2,
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|      $      ', ratio =', G12.5 )
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| *
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| *     End if CCHKTZ
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| *
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|       END
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