373 lines
		
	
	
		
			9.2 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			373 lines
		
	
	
		
			9.2 KiB
		
	
	
	
		
			Fortran
		
	
	
	
| *> \brief \b DLATB9
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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 DLATB9( PATH, IMAT, M, P, N, TYPE, KLA, KUA, KLB, KUB,
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| *                          ANORM, BNORM, MODEA, MODEB, CNDNMA, CNDNMB,
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| *                          DISTA, DISTB )
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| * 
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| *       .. Scalar Arguments ..
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| *       CHARACTER          DISTA, DISTB, TYPE
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| *       CHARACTER*3        PATH
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| *       INTEGER            IMAT, KLA, KLB, KUA, KUB, M, MODEA, MODEB, N, P
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| *       DOUBLE PRECISION   ANORM, BNORM, CNDNMA, CNDNMB
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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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| *> DLATB9 sets parameters for the matrix generator based on the type of
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| *> matrix to be generated.
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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] PATH
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| *> \verbatim
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| *>          PATH is CHARACTER*3
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| *>          The LAPACK path name.
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| *> \endverbatim
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| *>
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| *> \param[in] IMAT
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| *> \verbatim
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| *>          IMAT is INTEGER
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| *>          An integer key describing which matrix to generate for this
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| *>          path.
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| *>          = 1:   A: diagonal, B: upper triangular
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| *>          = 2:   A: upper triangular, B: upper triangular
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| *>          = 3:   A: lower triangular, B: upper triangular
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| *>          Else:  A: general dense, B: general dense
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| *> \endverbatim
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| *>
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| *> \param[in] M
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| *> \verbatim
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| *>          M is INTEGER
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| *>          The number of rows in the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[in] P
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| *> \verbatim
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| *>          P is INTEGER
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| *> \endverbatim
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| *>
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| *> \param[in] N
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| *> \verbatim
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| *>          N is INTEGER
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| *>          The number of columns in the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[out] TYPE
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| *> \verbatim
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| *>          TYPE is CHARACTER*1
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| *>          The type of the matrix to be generated:
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| *>          = 'S':  symmetric matrix;
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| *>          = 'P':  symmetric positive (semi)definite matrix;
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| *>          = 'N':  nonsymmetric matrix.
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| *> \endverbatim
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| *>
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| *> \param[out] KLA
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| *> \verbatim
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| *>          KLA is INTEGER
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| *>          The lower band width of the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[out] KUA
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| *> \verbatim
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| *>          KUA is INTEGER
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| *>          The upper band width of the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[out] KLB
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| *> \verbatim
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| *>          KLB is INTEGER
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| *>          The lower band width of the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[out] KUB
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| *> \verbatim
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| *>          KUA is INTEGER
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| *>          The upper band width of the matrix to be generated.
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| *> \endverbatim
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| *>
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| *> \param[out] ANORM
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| *> \verbatim
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| *>          ANORM is DOUBLE PRECISION
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| *>          The desired norm of the matrix to be generated.  The diagonal
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| *>          matrix of singular values or eigenvalues is scaled by this
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| *>          value.
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| *> \endverbatim
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| *>
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| *> \param[out] BNORM
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| *> \verbatim
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| *>          BNORM is DOUBLE PRECISION
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| *>          The desired norm of the matrix to be generated.  The diagonal
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| *>          matrix of singular values or eigenvalues is scaled by this
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| *>          value.
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| *> \endverbatim
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| *>
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| *> \param[out] MODEA
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| *> \verbatim
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| *>          MODEA is INTEGER
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| *>          A key indicating how to choose the vector of eigenvalues.
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| *> \endverbatim
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| *>
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| *> \param[out] MODEB
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| *> \verbatim
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| *>          MODEB is INTEGER
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| *>          A key indicating how to choose the vector of eigenvalues.
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| *> \endverbatim
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| *>
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| *> \param[out] CNDNMA
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| *> \verbatim
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| *>          CNDNMA is DOUBLE PRECISION
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| *>          The desired condition number.
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| *> \endverbatim
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| *>
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| *> \param[out] CNDNMB
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| *> \verbatim
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| *>          CNDNMB is DOUBLE PRECISION
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| *>          The desired condition number.
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| *> \endverbatim
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| *>
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| *> \param[out] DISTA
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| *> \verbatim
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| *>          DISTA is CHARACTER*1
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| *>          The type of distribution to be used by the random number
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| *>          generator.
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| *> \endverbatim
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| *>
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| *> \param[out] DISTB
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| *> \verbatim
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| *>          DISTB is CHARACTER*1
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| *>          The type of distribution to be used by the random number
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| *>          generator.
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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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| *> \date November 2011
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| *
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| *> \ingroup double_eig
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| *
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| *  =====================================================================
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|       SUBROUTINE DLATB9( PATH, IMAT, M, P, N, TYPE, KLA, KUA, KLB, KUB,
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|      $                   ANORM, BNORM, MODEA, MODEB, CNDNMA, CNDNMB,
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|      $                   DISTA, DISTB )
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| *
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| *  -- LAPACK test routine (version 3.4.0) --
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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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| *     November 2011
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| *
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| *     .. Scalar Arguments ..
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|       CHARACTER          DISTA, DISTB, TYPE
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|       CHARACTER*3        PATH
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|       INTEGER            IMAT, KLA, KLB, KUA, KUB, M, MODEA, MODEB, N, P
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|       DOUBLE PRECISION   ANORM, BNORM, CNDNMA, CNDNMB
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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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|       DOUBLE PRECISION   SHRINK, TENTH
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|       PARAMETER          ( SHRINK = 0.25D0, TENTH = 0.1D+0 )
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|       DOUBLE PRECISION   ONE, TEN
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|       PARAMETER          ( ONE = 1.0D+0, TEN = 1.0D+1 )
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| *     ..
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| *     .. Local Scalars ..
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|       LOGICAL            FIRST
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|       DOUBLE PRECISION   BADC1, BADC2, EPS, LARGE, SMALL
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| *     ..
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| *     .. External Functions ..
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|       LOGICAL            LSAMEN
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|       DOUBLE PRECISION   DLAMCH
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|       EXTERNAL           LSAMEN, DLAMCH
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| *     ..
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| *     .. Intrinsic Functions ..
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|       INTRINSIC          MAX, SQRT
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| *     ..
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| *     .. External Subroutines ..
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|       EXTERNAL           DLABAD
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| *     ..
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| *     .. Save statement ..
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|       SAVE               EPS, SMALL, LARGE, BADC1, BADC2, FIRST
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| *     ..
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| *     .. Data statements ..
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|       DATA               FIRST / .TRUE. /
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| *     ..
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| *     .. Executable Statements ..
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| *
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| *     Set some constants for use in the subroutine.
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| *
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|       IF( FIRST ) THEN
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|          FIRST = .FALSE.
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|          EPS = DLAMCH( 'Precision' )
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|          BADC2 = TENTH / EPS
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|          BADC1 = SQRT( BADC2 )
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|          SMALL = DLAMCH( 'Safe minimum' )
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|          LARGE = ONE / SMALL
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| *
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| *        If it looks like we're on a Cray, take the square root of
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| *        SMALL and LARGE to avoid overflow and underflow problems.
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| *
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|          CALL DLABAD( SMALL, LARGE )
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|          SMALL = SHRINK*( SMALL / EPS )
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|          LARGE = ONE / SMALL
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|       END IF
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| *
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| *     Set some parameters we don't plan to change.
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| *
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|       TYPE = 'N'
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|       DISTA = 'S'
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|       DISTB = 'S'
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|       MODEA = 3
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|       MODEB = 4
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| *
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| *     Set the lower and upper bandwidths.
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| *
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|       IF( LSAMEN( 3, PATH, 'GRQ' ) .OR. LSAMEN( 3, PATH, 'LSE' ) .OR.
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|      $    LSAMEN( 3, PATH, 'GSV' ) ) THEN
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| *
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| *        A: M by N, B: P by N
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| *
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|          IF( IMAT.EQ.1 ) THEN
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| *
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| *           A: diagonal, B: upper triangular
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| *
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|             KLA = 0
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|             KUA = 0
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|             KLB = 0
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|             KUB = MAX( N-1, 0 )
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| *
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|          ELSE IF( IMAT.EQ.2 ) THEN
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| *
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| *           A: upper triangular, B: upper triangular
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| *
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|             KLA = 0
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|             KUA = MAX( N-1, 0 )
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|             KLB = 0
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|             KUB = MAX( N-1, 0 )
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| *
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|          ELSE IF( IMAT.EQ.3 ) THEN
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| *
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| *           A: lower triangular, B: upper triangular
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| *
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|             KLA = MAX( M-1, 0 )
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|             KUA = 0
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|             KLB = 0
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|             KUB = MAX( N-1, 0 )
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| *
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|          ELSE
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| *
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| *           A: general dense, B: general dense
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| *
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|             KLA = MAX( M-1, 0 )
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|             KUA = MAX( N-1, 0 )
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|             KLB = MAX( P-1, 0 )
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|             KUB = MAX( N-1, 0 )
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| *
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|          END IF
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| *
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|       ELSE IF( LSAMEN( 3, PATH, 'GQR' ) .OR. LSAMEN( 3, PATH, 'GLM' ) )
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|      $          THEN
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| *
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| *        A: N by M, B: N by P
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| *
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|          IF( IMAT.EQ.1 ) THEN
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| *
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| *           A: diagonal, B: lower triangular
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| *
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|             KLA = 0
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|             KUA = 0
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|             KLB = MAX( N-1, 0 )
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|             KUB = 0
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|          ELSE IF( IMAT.EQ.2 ) THEN
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| *
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| *           A: lower triangular, B: diagonal
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| *
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|             KLA = MAX( N-1, 0 )
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|             KUA = 0
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|             KLB = 0
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|             KUB = 0
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| *
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|          ELSE IF( IMAT.EQ.3 ) THEN
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| *
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| *           A: lower triangular, B: upper triangular
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| *
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|             KLA = MAX( N-1, 0 )
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|             KUA = 0
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|             KLB = 0
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|             KUB = MAX( P-1, 0 )
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| *
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|          ELSE
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| *
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| *           A: general dense, B: general dense
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| *
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|             KLA = MAX( N-1, 0 )
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|             KUA = MAX( M-1, 0 )
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|             KLB = MAX( N-1, 0 )
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|             KUB = MAX( P-1, 0 )
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|          END IF
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| *
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|       END IF
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| *
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| *     Set the condition number and norm.
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| *
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|       CNDNMA = TEN*TEN
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|       CNDNMB = TEN
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|       IF( LSAMEN( 3, PATH, 'GQR' ) .OR. LSAMEN( 3, PATH, 'GRQ' ) .OR.
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|      $    LSAMEN( 3, PATH, 'GSV' ) ) THEN
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|          IF( IMAT.EQ.5 ) THEN
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|             CNDNMA = BADC1
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|             CNDNMB = BADC1
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|          ELSE IF( IMAT.EQ.6 ) THEN
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|             CNDNMA = BADC2
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|             CNDNMB = BADC2
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|          ELSE IF( IMAT.EQ.7 ) THEN
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|             CNDNMA = BADC1
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|             CNDNMB = BADC2
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|          ELSE IF( IMAT.EQ.8 ) THEN
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|             CNDNMA = BADC2
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|             CNDNMB = BADC1
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|          END IF
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|       END IF
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| *
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|       ANORM = TEN
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|       BNORM = TEN*TEN*TEN
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|       IF( LSAMEN( 3, PATH, 'GQR' ) .OR. LSAMEN( 3, PATH, 'GRQ' ) ) THEN
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|          IF( IMAT.EQ.7 ) THEN
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|             ANORM = SMALL
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|             BNORM = LARGE
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|          ELSE IF( IMAT.EQ.8 ) THEN
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|             ANORM = LARGE
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|             BNORM = SMALL
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|          END IF
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|       END IF
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| *
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|       IF( N.LE.1 ) THEN
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|          CNDNMA = ONE
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|          CNDNMB = ONE
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|       END IF
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| *
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|       RETURN
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| *
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| *     End of DLATB9
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| *
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|       END
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