512 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			512 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Fortran
		
	
	
	
*> \brief \b CCHKPP
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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 CCHKPP( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
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*                          NMAX, A, AFAC, AINV, B, X, XACT, WORK, RWORK,
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*                          NOUT )
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* 
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*       .. Scalar Arguments ..
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*       LOGICAL            TSTERR
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*       INTEGER            NMAX, NN, NNS, 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            NSVAL( * ), NVAL( * )
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*       REAL               RWORK( * )
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*       COMPLEX            A( * ), AFAC( * ), AINV( * ), B( * ),
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*      $                   WORK( * ), X( * ), XACT( * )
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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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*> CCHKPP tests CPPTRF, -TRI, -TRS, -RFS, and -CON
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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] 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 dimension N.
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*> \endverbatim
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*>
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*> \param[in] NNS
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*> \verbatim
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*>          NNS is INTEGER
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*>          The number of values of NRHS contained in the vector NSVAL.
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*> \endverbatim
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*>
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*> \param[in] NSVAL
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*> \verbatim
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*>          NSVAL is INTEGER array, dimension (NNS)
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*>          The values of the number of right hand sides NRHS.
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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[in] NMAX
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*> \verbatim
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*>          NMAX is INTEGER
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*>          The maximum value permitted for N, used in dimensioning the
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*>          work arrays.
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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
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*>                      (NMAX*(NMAX+1)/2)
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*> \endverbatim
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*>
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*> \param[out] AFAC
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*> \verbatim
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*>          AFAC is COMPLEX array, dimension
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*>                      (NMAX*(NMAX+1)/2)
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*> \endverbatim
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*>
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*> \param[out] AINV
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*> \verbatim
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*>          AINV is COMPLEX array, dimension
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*>                      (NMAX*(NMAX+1)/2)
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*> \endverbatim
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*>
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*> \param[out] B
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*> \verbatim
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*>          B is COMPLEX array, dimension (NMAX*NSMAX)
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*>          where NSMAX is the largest entry in NSVAL.
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*> \endverbatim
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*>
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*> \param[out] X
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*> \verbatim
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*>          X is COMPLEX array, dimension (NMAX*NSMAX)
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*> \endverbatim
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*>
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*> \param[out] XACT
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*> \verbatim
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*>          XACT is COMPLEX array, dimension (NMAX*NSMAX)
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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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*>                      (NMAX*max(3,NSMAX))
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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
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*>                      (max(NMAX,2*NSMAX))
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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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*> \date November 2011
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*
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*> \ingroup complex_lin
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*
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*  =====================================================================
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      SUBROUTINE CCHKPP( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
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     $                   NMAX, A, AFAC, AINV, B, X, XACT, WORK, RWORK,
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     $                   NOUT )
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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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      LOGICAL            TSTERR
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      INTEGER            NMAX, NN, NNS, 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            NSVAL( * ), NVAL( * )
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      REAL               RWORK( * )
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      COMPLEX            A( * ), AFAC( * ), AINV( * ), B( * ),
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     $                   WORK( * ), X( * ), XACT( * )
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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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      REAL               ZERO
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      PARAMETER          ( ZERO = 0.0E+0 )
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      INTEGER            NTYPES
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      PARAMETER          ( NTYPES = 9 )
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      INTEGER            NTESTS
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      PARAMETER          ( NTESTS = 8 )
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*     ..
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*     .. Local Scalars ..
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      LOGICAL            ZEROT
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      CHARACTER          DIST, PACKIT, TYPE, UPLO, XTYPE
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      CHARACTER*3        PATH
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      INTEGER            I, IMAT, IN, INFO, IOFF, IRHS, IUPLO, IZERO, K,
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     $                   KL, KU, LDA, MODE, N, NERRS, NFAIL, NIMAT, NPP,
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     $                   NRHS, NRUN
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      REAL               ANORM, CNDNUM, RCOND, RCONDC
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*     ..
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*     .. Local Arrays ..
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      CHARACTER          PACKS( 2 ), UPLOS( 2 )
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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               CLANHP, SGET06
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      EXTERNAL           CLANHP, SGET06
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*     ..
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*     .. External Subroutines ..
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      EXTERNAL           ALAERH, ALAHD, ALASUM, CCOPY, CERRPO, CGET04,
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     $                   CLACPY, CLAIPD, CLARHS, CLATB4, CLATMS, CPPCON,
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     $                   CPPRFS, CPPT01, CPPT02, CPPT03, CPPT05, CPPTRF,
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     $                   CPPTRI, CPPTRS
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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, NUNIT
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*     ..
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*     .. Common blocks ..
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      COMMON             / INFOC / INFOT, NUNIT, OK, LERR
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      COMMON             / SRNAMC / SRNAMT
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*     ..
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*     .. Intrinsic Functions ..
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      INTRINSIC          MAX
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*     ..
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*     .. Data statements ..
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      DATA               ISEEDY / 1988, 1989, 1990, 1991 /
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      DATA               UPLOS / 'U', 'L' / , PACKS / 'C', 'R' /
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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 ) = 'PP'
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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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*
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*     Test the error exits
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*
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      IF( TSTERR )
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     $   CALL CERRPO( PATH, NOUT )
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      INFOT = 0
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*
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*     Do for each value of N in NVAL
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*
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      DO 110 IN = 1, NN
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         N = NVAL( IN )
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         LDA = MAX( N, 1 )
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         XTYPE = 'N'
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         NIMAT = NTYPES
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         IF( N.LE.0 )
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     $      NIMAT = 1
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*
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         DO 100 IMAT = 1, NIMAT
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*
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*           Do the tests only if DOTYPE( IMAT ) is true.
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*
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            IF( .NOT.DOTYPE( IMAT ) )
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     $         GO TO 100
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*
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*           Skip types 3, 4, or 5 if the matrix size is too small.
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*
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            ZEROT = IMAT.GE.3 .AND. IMAT.LE.5
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            IF( ZEROT .AND. N.LT.IMAT-2 )
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     $         GO TO 100
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*
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*           Do first for UPLO = 'U', then for UPLO = 'L'
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*
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            DO 90 IUPLO = 1, 2
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               UPLO = UPLOS( IUPLO )
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               PACKIT = PACKS( IUPLO )
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*
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*              Set up parameters with CLATB4 and generate a test matrix
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*              with CLATMS.
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*
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               CALL CLATB4( PATH, IMAT, N, N, TYPE, KL, KU, ANORM, MODE,
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     $                      CNDNUM, DIST )
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*
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               SRNAMT = 'CLATMS'
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               CALL CLATMS( N, N, DIST, ISEED, TYPE, RWORK, MODE,
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     $                      CNDNUM, ANORM, KL, KU, PACKIT, A, LDA, WORK,
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     $                      INFO )
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*
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*              Check error code from CLATMS.
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*
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               IF( INFO.NE.0 ) THEN
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                  CALL ALAERH( PATH, 'CLATMS', INFO, 0, UPLO, N, N, -1,
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     $                         -1, -1, IMAT, NFAIL, NERRS, NOUT )
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                  GO TO 90
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               END IF
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*
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*              For types 3-5, zero one row and column of the matrix to
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*              test that INFO is returned correctly.
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*
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               IF( ZEROT ) THEN
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                  IF( IMAT.EQ.3 ) THEN
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                     IZERO = 1
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                  ELSE IF( IMAT.EQ.4 ) THEN
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                     IZERO = N
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                  ELSE
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                     IZERO = N / 2 + 1
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                  END IF
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*
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*                 Set row and column IZERO of A to 0.
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*
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                  IF( IUPLO.EQ.1 ) THEN
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                     IOFF = ( IZERO-1 )*IZERO / 2
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                     DO 20 I = 1, IZERO - 1
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                        A( IOFF+I ) = ZERO
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   20                CONTINUE
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                     IOFF = IOFF + IZERO
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                     DO 30 I = IZERO, N
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                        A( IOFF ) = ZERO
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                        IOFF = IOFF + I
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   30                CONTINUE
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                  ELSE
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                     IOFF = IZERO
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                     DO 40 I = 1, IZERO - 1
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                        A( IOFF ) = ZERO
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                        IOFF = IOFF + N - I
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   40                CONTINUE
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                     IOFF = IOFF - IZERO
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                     DO 50 I = IZERO, N
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                        A( IOFF+I ) = ZERO
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   50                CONTINUE
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                  END IF
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               ELSE
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                  IZERO = 0
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               END IF
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*
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*              Set the imaginary part of the diagonals.
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*
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               IF( IUPLO.EQ.1 ) THEN
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                  CALL CLAIPD( N, A, 2, 1 )
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               ELSE
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                  CALL CLAIPD( N, A, N, -1 )
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               END IF
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*
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*              Compute the L*L' or U'*U factorization of the matrix.
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*
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               NPP = N*( N+1 ) / 2
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               CALL CCOPY( NPP, A, 1, AFAC, 1 )
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               SRNAMT = 'CPPTRF'
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               CALL CPPTRF( UPLO, N, AFAC, INFO )
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*
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*              Check error code from CPPTRF.
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*
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               IF( INFO.NE.IZERO ) THEN
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                  CALL ALAERH( PATH, 'CPPTRF', INFO, IZERO, UPLO, N, N,
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     $                         -1, -1, -1, IMAT, NFAIL, NERRS, NOUT )
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                  GO TO 90
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               END IF
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*
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*              Skip the tests if INFO is not 0.
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*
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               IF( INFO.NE.0 )
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     $            GO TO 90
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*
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*+    TEST 1
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*              Reconstruct matrix from factors and compute residual.
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*
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               CALL CCOPY( NPP, AFAC, 1, AINV, 1 )
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               CALL CPPT01( UPLO, N, A, AINV, RWORK, RESULT( 1 ) )
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*
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*+    TEST 2
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*              Form the inverse and compute the residual.
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*
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               CALL CCOPY( NPP, AFAC, 1, AINV, 1 )
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               SRNAMT = 'CPPTRI'
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               CALL CPPTRI( UPLO, N, AINV, INFO )
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*
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*              Check error code from CPPTRI.
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*
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               IF( INFO.NE.0 )
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     $            CALL ALAERH( PATH, 'CPPTRI', INFO, 0, UPLO, N, N, -1,
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     $                         -1, -1, IMAT, NFAIL, NERRS, NOUT )
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*
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               CALL CPPT03( UPLO, N, A, AINV, WORK, LDA, RWORK, RCONDC,
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     $                      RESULT( 2 ) )
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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 60 K = 1, 2
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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 )UPLO, N, IMAT, K,
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     $                  RESULT( K )
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                     NFAIL = NFAIL + 1
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                  END IF
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   60          CONTINUE
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               NRUN = NRUN + 2
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*
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               DO 80 IRHS = 1, NNS
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                  NRHS = NSVAL( IRHS )
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*
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*+    TEST 3
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*              Solve and compute residual for  A * X = B.
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*
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                  SRNAMT = 'CLARHS'
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                  CALL CLARHS( PATH, XTYPE, UPLO, ' ', N, N, KL, KU,
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     $                         NRHS, A, LDA, XACT, LDA, B, LDA, ISEED,
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     $                         INFO )
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                  CALL CLACPY( 'Full', N, NRHS, B, LDA, X, LDA )
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*
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                  SRNAMT = 'CPPTRS'
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                  CALL CPPTRS( UPLO, N, NRHS, AFAC, X, LDA, INFO )
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*
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*              Check error code from CPPTRS.
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*
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                  IF( INFO.NE.0 )
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     $               CALL ALAERH( PATH, 'CPPTRS', INFO, 0, UPLO, N, N,
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     $                            -1, -1, NRHS, IMAT, NFAIL, NERRS,
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     $                            NOUT )
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*
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                  CALL CLACPY( 'Full', N, NRHS, B, LDA, WORK, LDA )
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                  CALL CPPT02( UPLO, N, NRHS, A, X, LDA, WORK, LDA,
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     $                         RWORK, RESULT( 3 ) )
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*
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*+    TEST 4
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*              Check solution from generated exact solution.
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*
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                  CALL CGET04( N, NRHS, X, LDA, XACT, LDA, RCONDC,
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     $                         RESULT( 4 ) )
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*
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*+    TESTS 5, 6, and 7
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*              Use iterative refinement to improve the solution.
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*
 | 
						|
                  SRNAMT = 'CPPRFS'
 | 
						|
                  CALL CPPRFS( UPLO, N, NRHS, A, AFAC, B, LDA, X, LDA,
 | 
						|
     $                         RWORK, RWORK( NRHS+1 ), WORK,
 | 
						|
     $                         RWORK( 2*NRHS+1 ), INFO )
 | 
						|
*
 | 
						|
*              Check error code from CPPRFS.
 | 
						|
*
 | 
						|
                  IF( INFO.NE.0 )
 | 
						|
     $               CALL ALAERH( PATH, 'CPPRFS', INFO, 0, UPLO, N, N,
 | 
						|
     $                            -1, -1, NRHS, IMAT, NFAIL, NERRS,
 | 
						|
     $                            NOUT )
 | 
						|
*
 | 
						|
                  CALL CGET04( N, NRHS, X, LDA, XACT, LDA, RCONDC,
 | 
						|
     $                         RESULT( 5 ) )
 | 
						|
                  CALL CPPT05( UPLO, N, NRHS, A, B, LDA, X, LDA, XACT,
 | 
						|
     $                         LDA, RWORK, RWORK( NRHS+1 ),
 | 
						|
     $                         RESULT( 6 ) )
 | 
						|
*
 | 
						|
*                 Print information about the tests that did not pass
 | 
						|
*                 the threshold.
 | 
						|
*
 | 
						|
                  DO 70 K = 3, 7
 | 
						|
                     IF( RESULT( K ).GE.THRESH ) THEN
 | 
						|
                        IF( NFAIL.EQ.0 .AND. NERRS.EQ.0 )
 | 
						|
     $                     CALL ALAHD( NOUT, PATH )
 | 
						|
                        WRITE( NOUT, FMT = 9998 )UPLO, N, NRHS, IMAT,
 | 
						|
     $                     K, RESULT( K )
 | 
						|
                        NFAIL = NFAIL + 1
 | 
						|
                     END IF
 | 
						|
   70             CONTINUE
 | 
						|
                  NRUN = NRUN + 5
 | 
						|
   80          CONTINUE
 | 
						|
*
 | 
						|
*+    TEST 8
 | 
						|
*              Get an estimate of RCOND = 1/CNDNUM.
 | 
						|
*
 | 
						|
               ANORM = CLANHP( '1', UPLO, N, A, RWORK )
 | 
						|
               SRNAMT = 'CPPCON'
 | 
						|
               CALL CPPCON( UPLO, N, AFAC, ANORM, RCOND, WORK, RWORK,
 | 
						|
     $                      INFO )
 | 
						|
*
 | 
						|
*              Check error code from CPPCON.
 | 
						|
*
 | 
						|
               IF( INFO.NE.0 )
 | 
						|
     $            CALL ALAERH( PATH, 'CPPCON', INFO, 0, UPLO, N, N, -1,
 | 
						|
     $                         -1, -1, IMAT, NFAIL, NERRS, NOUT )
 | 
						|
*
 | 
						|
               RESULT( 8 ) = SGET06( RCOND, RCONDC )
 | 
						|
*
 | 
						|
*              Print the test ratio if greater than or equal to THRESH.
 | 
						|
*
 | 
						|
               IF( RESULT( 8 ).GE.THRESH ) THEN
 | 
						|
                  IF( NFAIL.EQ.0 .AND. NERRS.EQ.0 )
 | 
						|
     $               CALL ALAHD( NOUT, PATH )
 | 
						|
                  WRITE( NOUT, FMT = 9999 )UPLO, N, IMAT, 8,
 | 
						|
     $               RESULT( 8 )
 | 
						|
                  NFAIL = NFAIL + 1
 | 
						|
               END IF
 | 
						|
               NRUN = NRUN + 1
 | 
						|
*
 | 
						|
   90       CONTINUE
 | 
						|
  100    CONTINUE
 | 
						|
  110 CONTINUE
 | 
						|
*
 | 
						|
*     Print a summary of the results.
 | 
						|
*
 | 
						|
      CALL ALASUM( PATH, NOUT, NFAIL, NRUN, NERRS )
 | 
						|
*
 | 
						|
 9999 FORMAT( ' UPLO = ''', A1, ''', N =', I5, ', type ', I2, ', test ',
 | 
						|
     $      I2, ', ratio =', G12.5 )
 | 
						|
 9998 FORMAT( ' UPLO = ''', A1, ''', N =', I5, ', NRHS=', I3, ', type ',
 | 
						|
     $      I2, ', test(', I2, ') =', G12.5 )
 | 
						|
      RETURN
 | 
						|
*
 | 
						|
*     End of CCHKPP
 | 
						|
*
 | 
						|
      END
 |