903 lines
		
	
	
		
			29 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			903 lines
		
	
	
		
			29 KiB
		
	
	
	
		
			Fortran
		
	
	
	
| *> \brief \b DCHKAA
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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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| *       PROGRAM DCHKAA
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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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| *> DCHKAA is the main test program for the DOUBLE PRECISION LAPACK
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| *> linear equation routines
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| *>
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| *> The program must be driven by a short data file. The first 15 records
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| *> (not including the first comment  line) specify problem dimensions
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| *> and program options using list-directed input. The remaining lines
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| *> specify the LAPACK test paths and the number of matrix types to use
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| *> in testing.  An annotated example of a data file can be obtained by
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| *> deleting the first 3 characters from the following 40 lines:
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| *> Data file for testing DOUBLE PRECISION LAPACK linear eqn. routines
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| *> 7                      Number of values of M
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| *> 0 1 2 3 5 10 16        Values of M (row dimension)
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| *> 7                      Number of values of N
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| *> 0 1 2 3 5 10 16        Values of N (column dimension)
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| *> 1                      Number of values of NRHS
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| *> 2                      Values of NRHS (number of right hand sides)
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| *> 5                      Number of values of NB
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| *> 1 3 3 3 20             Values of NB (the blocksize)
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| *> 1 0 5 9 1              Values of NX (crossover point)
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| *> 3                      Number of values of RANK
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| *> 30 50 90               Values of rank (as a % of N)
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| *> 20.0                   Threshold value of test ratio
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| *> T                      Put T to test the LAPACK routines
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| *> T                      Put T to test the driver routines
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| *> T                      Put T to test the error exits
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| *> DGE   11               List types on next line if 0 < NTYPES < 11
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| *> DGB    8               List types on next line if 0 < NTYPES <  8
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| *> DGT   12               List types on next line if 0 < NTYPES < 12
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| *> DPO    9               List types on next line if 0 < NTYPES <  9
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| *> DPS    9               List types on next line if 0 < NTYPES <  9
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| *> DPP    9               List types on next line if 0 < NTYPES <  9
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| *> DPB    8               List types on next line if 0 < NTYPES <  8
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| *> DPT   12               List types on next line if 0 < NTYPES < 12
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| *> DSY   10               List types on next line if 0 < NTYPES < 10
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| *> DSR   10               List types on next line if 0 < NTYPES < 10
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| *> DSP   10               List types on next line if 0 < NTYPES < 10
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| *> DTR   18               List types on next line if 0 < NTYPES < 18
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| *> DTP   18               List types on next line if 0 < NTYPES < 18
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| *> DTB   17               List types on next line if 0 < NTYPES < 17
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| *> DQR    8               List types on next line if 0 < NTYPES <  8
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| *> DRQ    8               List types on next line if 0 < NTYPES <  8
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| *> DLQ    8               List types on next line if 0 < NTYPES <  8
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| *> DQL    8               List types on next line if 0 < NTYPES <  8
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| *> DQP    6               List types on next line if 0 < NTYPES <  6
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| *> DTZ    3               List types on next line if 0 < NTYPES <  3
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| *> DLS    6               List types on next line if 0 < NTYPES <  6
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| *> DEQ
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| *> DQT
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| *> DQX
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| *> \endverbatim
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| *
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| *  Parameters:
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| *  ==========
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| *
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| *> \verbatim
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| *>  NMAX    INTEGER
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| *>          The maximum allowable value for M and N.
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| *>
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| *>  MAXIN   INTEGER
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| *>          The number of different values that can be used for each of
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| *>          M, N, NRHS, NB, NX and RANK
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| *>
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| *>  MAXRHS  INTEGER
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| *>          The maximum number of right hand sides
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| *>
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| *>  MATMAX  INTEGER
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| *>          The maximum number of matrix types to use for testing
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| *>
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| *>  NIN     INTEGER
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| *>          The unit number for input
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| *>
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| *>  NOUT    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 April 2012
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| *
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| *> \ingroup double_lin
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| *
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| *  =====================================================================
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|       PROGRAM DCHKAA
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| *
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| *  -- LAPACK test routine (version 3.4.1) --
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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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| *     April 2012
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| *
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| *  =====================================================================
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| *
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| *     .. Parameters ..
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|       INTEGER            NMAX
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|       PARAMETER          ( NMAX = 132 )
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|       INTEGER            MAXIN
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|       PARAMETER          ( MAXIN = 12 )
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|       INTEGER            MAXRHS
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|       PARAMETER          ( MAXRHS = 16 )
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|       INTEGER            MATMAX
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|       PARAMETER          ( MATMAX = 30 )
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|       INTEGER            NIN, NOUT
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|       PARAMETER          ( NIN = 5, NOUT = 6 )
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|       INTEGER            KDMAX
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|       PARAMETER          ( KDMAX = NMAX+( NMAX+1 ) / 4 )
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| *     ..
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| *     .. Local Scalars ..
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|       LOGICAL            FATAL, TSTCHK, TSTDRV, TSTERR
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|       CHARACTER          C1
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|       CHARACTER*2        C2
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|       CHARACTER*3        PATH
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|       CHARACTER*10       INTSTR
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|       CHARACTER*72       ALINE
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|       INTEGER            I, IC, J, K, LA, LAFAC, LDA, NB, NM, NMATS, NN,
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|      $                   NNB, NNB2, NNS, NRHS, NTYPES, NRANK,
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|      $                   VERS_MAJOR, VERS_MINOR, VERS_PATCH
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|       DOUBLE PRECISION   EPS, S1, S2, THREQ, THRESH
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| *     ..
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| *     .. Local Arrays ..
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|       LOGICAL            DOTYPE( MATMAX )
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|       INTEGER            IWORK( 25*NMAX ), MVAL( MAXIN ),
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|      $                   NBVAL( MAXIN ), NBVAL2( MAXIN ),
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|      $                   NSVAL( MAXIN ), NVAL( MAXIN ), NXVAL( MAXIN ),
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|      $                   RANKVAL( MAXIN ), PIV( NMAX )
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|       DOUBLE PRECISION   A( ( KDMAX+1 )*NMAX, 7 ), B( NMAX*MAXRHS, 4 ),
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|      $                   RWORK( 5*NMAX+2*MAXRHS ), S( 2*NMAX ),
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|      $                   WORK( NMAX, NMAX+MAXRHS+30 )
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| *     ..
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| *     .. External Functions ..
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|       LOGICAL            LSAME, LSAMEN
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|       DOUBLE PRECISION   DLAMCH, DSECND
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|       EXTERNAL           LSAME, LSAMEN, DLAMCH, DSECND
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| *     ..
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| *     .. External Subroutines ..
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|       EXTERNAL           ALAREQ, DCHKEQ, DCHKGB, DCHKGE, DCHKGT, DCHKLQ,
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|      $                   DCHKPB, DCHKPO, DCHKPS, DCHKPP, DCHKPT, DCHKQ3,
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|      $                   DCHKQL, DCHKQP, DCHKQR, DCHKRQ, DCHKSP, DCHKSY,
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|      $                   DCHKTB, DCHKTP, DCHKTR, DCHKTZ,
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|      $                   DDRVGB, DDRVGE, DDRVGT, DDRVLS, DDRVPB, DDRVPO,
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|      $                   DDRVPP, DDRVPT, DDRVSP, DDRVSY,
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|      $                   ILAVER, DCHKQRT, DCHKQRTP
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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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| *     .. Arrays in Common ..
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|       INTEGER            IPARMS( 100 )
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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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|       COMMON             / CLAENV / IPARMS
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| *     ..
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| *     .. Data statements ..
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|       DATA               THREQ / 2.0D0 / , INTSTR / '0123456789' /
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| *     ..
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| *     .. Executable Statements ..
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| *
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|       S1 = DSECND( )
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|       LDA = NMAX
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|       FATAL = .FALSE.
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| *
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| *     Read a dummy line.
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| *
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|       READ( NIN, FMT = * )
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| *
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| *     Report values of parameters.
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| *
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|       CALL ILAVER( VERS_MAJOR, VERS_MINOR, VERS_PATCH )
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|       WRITE( NOUT, FMT = 9994 ) VERS_MAJOR, VERS_MINOR, VERS_PATCH
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| *
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| *     Read the values of M
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| *
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|       READ( NIN, FMT = * )NM
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|       IF( NM.LT.1 ) THEN
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|          WRITE( NOUT, FMT = 9996 )' NM ', NM, 1
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|          NM = 0
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|          FATAL = .TRUE.
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|       ELSE IF( NM.GT.MAXIN ) THEN
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|          WRITE( NOUT, FMT = 9995 )' NM ', NM, MAXIN
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|          NM = 0
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|          FATAL = .TRUE.
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|       END IF
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|       READ( NIN, FMT = * )( MVAL( I ), I = 1, NM )
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|       DO 10 I = 1, NM
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|          IF( MVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )' M  ', MVAL( I ), 0
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|             FATAL = .TRUE.
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|          ELSE IF( MVAL( I ).GT.NMAX ) THEN
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|             WRITE( NOUT, FMT = 9995 )' M  ', MVAL( I ), NMAX
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|             FATAL = .TRUE.
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|          END IF
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|    10 CONTINUE
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|       IF( NM.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'M   ', ( MVAL( I ), I = 1, NM )
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| *
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| *     Read the values of N
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| *
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|       READ( NIN, FMT = * )NN
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|       IF( NN.LT.1 ) THEN
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|          WRITE( NOUT, FMT = 9996 )' NN ', NN, 1
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|          NN = 0
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|          FATAL = .TRUE.
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|       ELSE IF( NN.GT.MAXIN ) THEN
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|          WRITE( NOUT, FMT = 9995 )' NN ', NN, MAXIN
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|          NN = 0
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|          FATAL = .TRUE.
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|       END IF
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|       READ( NIN, FMT = * )( NVAL( I ), I = 1, NN )
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|       DO 20 I = 1, NN
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|          IF( NVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )' N  ', NVAL( I ), 0
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|             FATAL = .TRUE.
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|          ELSE IF( NVAL( I ).GT.NMAX ) THEN
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|             WRITE( NOUT, FMT = 9995 )' N  ', NVAL( I ), NMAX
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|             FATAL = .TRUE.
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|          END IF
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|    20 CONTINUE
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|       IF( NN.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'N   ', ( NVAL( I ), I = 1, NN )
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| *
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| *     Read the values of NRHS
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| *
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|       READ( NIN, FMT = * )NNS
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|       IF( NNS.LT.1 ) THEN
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|          WRITE( NOUT, FMT = 9996 )' NNS', NNS, 1
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|          NNS = 0
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|          FATAL = .TRUE.
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|       ELSE IF( NNS.GT.MAXIN ) THEN
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|          WRITE( NOUT, FMT = 9995 )' NNS', NNS, MAXIN
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|          NNS = 0
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|          FATAL = .TRUE.
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|       END IF
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|       READ( NIN, FMT = * )( NSVAL( I ), I = 1, NNS )
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|       DO 30 I = 1, NNS
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|          IF( NSVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )'NRHS', NSVAL( I ), 0
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|             FATAL = .TRUE.
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|          ELSE IF( NSVAL( I ).GT.MAXRHS ) THEN
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|             WRITE( NOUT, FMT = 9995 )'NRHS', NSVAL( I ), MAXRHS
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|             FATAL = .TRUE.
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|          END IF
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|    30 CONTINUE
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|       IF( NNS.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'NRHS', ( NSVAL( I ), I = 1, NNS )
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| *
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| *     Read the values of NB
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| *
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|       READ( NIN, FMT = * )NNB
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|       IF( NNB.LT.1 ) THEN
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|          WRITE( NOUT, FMT = 9996 )'NNB ', NNB, 1
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|          NNB = 0
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|          FATAL = .TRUE.
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|       ELSE IF( NNB.GT.MAXIN ) THEN
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|          WRITE( NOUT, FMT = 9995 )'NNB ', NNB, MAXIN
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|          NNB = 0
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|          FATAL = .TRUE.
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|       END IF
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|       READ( NIN, FMT = * )( NBVAL( I ), I = 1, NNB )
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|       DO 40 I = 1, NNB
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|          IF( NBVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )' NB ', NBVAL( I ), 0
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|             FATAL = .TRUE.
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|          END IF
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|    40 CONTINUE
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|       IF( NNB.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'NB  ', ( NBVAL( I ), I = 1, NNB )
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| *
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| *     Set NBVAL2 to be the set of unique values of NB
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| *
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|       NNB2 = 0
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|       DO 60 I = 1, NNB
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|          NB = NBVAL( I )
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|          DO 50 J = 1, NNB2
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|             IF( NB.EQ.NBVAL2( J ) )
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|      $         GO TO 60
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|    50    CONTINUE
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|          NNB2 = NNB2 + 1
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|          NBVAL2( NNB2 ) = NB
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|    60 CONTINUE
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| *
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| *     Read the values of NX
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| *
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|       READ( NIN, FMT = * )( NXVAL( I ), I = 1, NNB )
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|       DO 70 I = 1, NNB
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|          IF( NXVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )' NX ', NXVAL( I ), 0
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|             FATAL = .TRUE.
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|          END IF
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|    70 CONTINUE
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|       IF( NNB.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'NX  ', ( NXVAL( I ), I = 1, NNB )
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| *
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| *     Read the values of RANKVAL
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| *
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|       READ( NIN, FMT = * )NRANK
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|       IF( NN.LT.1 ) THEN
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|          WRITE( NOUT, FMT = 9996 )' NRANK ', NRANK, 1
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|          NRANK = 0
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|          FATAL = .TRUE.
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|       ELSE IF( NN.GT.MAXIN ) THEN
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|          WRITE( NOUT, FMT = 9995 )' NRANK ', NRANK, MAXIN
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|          NRANK = 0
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|          FATAL = .TRUE.
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|       END IF
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|       READ( NIN, FMT = * )( RANKVAL( I ), I = 1, NRANK )
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|       DO I = 1, NRANK
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|          IF( RANKVAL( I ).LT.0 ) THEN
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|             WRITE( NOUT, FMT = 9996 )' RANK  ', RANKVAL( I ), 0
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|             FATAL = .TRUE.
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|          ELSE IF( RANKVAL( I ).GT.100 ) THEN
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|             WRITE( NOUT, FMT = 9995 )' RANK  ', RANKVAL( I ), 100
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|             FATAL = .TRUE.
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|          END IF
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|       END DO
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|       IF( NRANK.GT.0 )
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|      $   WRITE( NOUT, FMT = 9993 )'RANK % OF N',
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|      $   ( RANKVAL( I ), I = 1, NRANK )
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| *
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| *     Read the threshold value for the test ratios.
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| *
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|       READ( NIN, FMT = * )THRESH
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|       WRITE( NOUT, FMT = 9992 )THRESH
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| *
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| *     Read the flag that indicates whether to test the LAPACK routines.
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| *
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|       READ( NIN, FMT = * )TSTCHK
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| *
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| *     Read the flag that indicates whether to test the driver routines.
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| *
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|       READ( NIN, FMT = * )TSTDRV
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| *
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| *     Read the flag that indicates whether to test the error exits.
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| *
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|       READ( NIN, FMT = * )TSTERR
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| *
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|       IF( FATAL ) THEN
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|          WRITE( NOUT, FMT = 9999 )
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|          STOP
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|       END IF
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| *
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| *     Calculate and print the machine dependent constants.
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| *
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|       EPS = DLAMCH( 'Underflow threshold' )
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|       WRITE( NOUT, FMT = 9991 )'underflow', EPS
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|       EPS = DLAMCH( 'Overflow threshold' )
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|       WRITE( NOUT, FMT = 9991 )'overflow ', EPS
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|       EPS = DLAMCH( 'Epsilon' )
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|       WRITE( NOUT, FMT = 9991 )'precision', EPS
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|       WRITE( NOUT, FMT = * )
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| *
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|    80 CONTINUE
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| *
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| *     Read a test path and the number of matrix types to use.
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| *
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|       READ( NIN, FMT = '(A72)', END = 140 )ALINE
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|       PATH = ALINE( 1: 3 )
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|       NMATS = MATMAX
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|       I = 3
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|    90 CONTINUE
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|       I = I + 1
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|       IF( I.GT.72 ) THEN
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|          NMATS = MATMAX
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|          GO TO 130
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|       END IF
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|       IF( ALINE( I: I ).EQ.' ' )
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|      $   GO TO 90
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|       NMATS = 0
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|   100 CONTINUE
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|       C1 = ALINE( I: I )
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|       DO 110 K = 1, 10
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|          IF( C1.EQ.INTSTR( K: K ) ) THEN
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|             IC = K - 1
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|             GO TO 120
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|          END IF
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|   110 CONTINUE
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|       GO TO 130
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|   120 CONTINUE
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|       NMATS = NMATS*10 + IC
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|       I = I + 1
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|       IF( I.GT.72 )
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|      $   GO TO 130
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|       GO TO 100
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|   130 CONTINUE
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|       C1 = PATH( 1: 1 )
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|       C2 = PATH( 2: 3 )
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|       NRHS = NSVAL( 1 )
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| *
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| *     Check first character for correct precision.
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| *
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|       IF( .NOT.LSAME( C1, 'Double precision' ) ) THEN
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|          WRITE( NOUT, FMT = 9990 )PATH
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| *
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|       ELSE IF( NMATS.LE.0 ) THEN
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| *
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| *        Check for a positive number of tests requested.
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| *
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|          WRITE( NOUT, FMT = 9989 )PATH
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| *
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|       ELSE IF( LSAMEN( 2, C2, 'GE' ) ) THEN
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| *
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| *        GE:  general matrices
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| *
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|          NTYPES = 11
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|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
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| *
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|          IF( TSTCHK ) THEN
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|             CALL DCHKGE( DOTYPE, NM, MVAL, NN, NVAL, NNB2, NBVAL2, NNS,
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|      $                   NSVAL, THRESH, TSTERR, LDA, A( 1, 1 ),
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|      $                   A( 1, 2 ), A( 1, 3 ), B( 1, 1 ), B( 1, 2 ),
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|      $                   B( 1, 3 ), WORK, RWORK, IWORK, NOUT )
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|          ELSE
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|             WRITE( NOUT, FMT = 9989 )PATH
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|          END IF
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| *
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|          IF( TSTDRV ) THEN
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|             CALL DDRVGE( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
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|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
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|      $                   B( 1, 2 ), B( 1, 3 ), B( 1, 4 ), S, WORK,
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|      $                   RWORK, IWORK, NOUT )
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|          ELSE
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|             WRITE( NOUT, FMT = 9988 )PATH
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|          END IF
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| *
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|       ELSE IF( LSAMEN( 2, C2, 'GB' ) ) THEN
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| *
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| *        GB:  general banded matrices
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| *
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|          LA = ( 2*KDMAX+1 )*NMAX
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|          LAFAC = ( 3*KDMAX+1 )*NMAX
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|          NTYPES = 8
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|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
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| *
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|          IF( TSTCHK ) THEN
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|             CALL DCHKGB( DOTYPE, NM, MVAL, NN, NVAL, NNB2, NBVAL2, NNS,
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|      $                   NSVAL, THRESH, TSTERR, A( 1, 1 ), LA,
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|      $                   A( 1, 3 ), LAFAC, B( 1, 1 ), B( 1, 2 ),
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|      $                   B( 1, 3 ), WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVGB( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), LA, A( 1, 3 ), LAFAC, A( 1, 6 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), B( 1, 4 ), S,
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'GT' ) ) THEN
 | |
| *
 | |
| *        GT:  general tridiagonal matrices
 | |
| *
 | |
|          NTYPES = 12
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKGT( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), B( 1, 1 ), B( 1, 2 ),
 | |
|      $                   B( 1, 3 ), WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVGT( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), B( 1, 1 ), B( 1, 2 ),
 | |
|      $                   B( 1, 3 ), WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'PO' ) ) THEN
 | |
| *
 | |
| *        PO:  positive definite matrices
 | |
| *
 | |
|          NTYPES = 9
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKPO( DOTYPE, NN, NVAL, NNB2, NBVAL2, NNS, NSVAL,
 | |
|      $                   THRESH, TSTERR, LDA, A( 1, 1 ), A( 1, 2 ),
 | |
|      $                   A( 1, 3 ), B( 1, 1 ), B( 1, 2 ), B( 1, 3 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVPO( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), B( 1, 4 ), S, WORK,
 | |
|      $                   RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'PS' ) ) THEN
 | |
| *
 | |
| *        PS:  positive semi-definite matrices
 | |
| *
 | |
|          NTYPES = 9
 | |
| *
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKPS( DOTYPE, NN, NVAL, NNB2, NBVAL2, NRANK,
 | |
|      $                   RANKVAL, THRESH, TSTERR, LDA, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), A( 1, 3 ), PIV, WORK, RWORK,
 | |
|      $                   NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'PP' ) ) THEN
 | |
| *
 | |
| *        PP:  positive definite packed matrices
 | |
| *
 | |
|          NTYPES = 9
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKPP( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   LDA, A( 1, 1 ), A( 1, 2 ), A( 1, 3 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), WORK, RWORK,
 | |
|      $                   IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVPP( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), B( 1, 4 ), S, WORK,
 | |
|      $                   RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'PB' ) ) THEN
 | |
| *
 | |
| *        PB:  positive definite banded matrices
 | |
| *
 | |
|          NTYPES = 8
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKPB( DOTYPE, NN, NVAL, NNB2, NBVAL2, NNS, NSVAL,
 | |
|      $                   THRESH, TSTERR, LDA, A( 1, 1 ), A( 1, 2 ),
 | |
|      $                   A( 1, 3 ), B( 1, 1 ), B( 1, 2 ), B( 1, 3 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVPB( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), B( 1, 4 ), S, WORK,
 | |
|      $                   RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'PT' ) ) THEN
 | |
| *
 | |
| *        PT:  positive definite tridiagonal matrices
 | |
| *
 | |
|          NTYPES = 12
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKPT( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVPT( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'SY' ) ) THEN
 | |
| *
 | |
| *        SY:  symmetric indefinite matrices,
 | |
| *             with partial (Bunch-Kaufman) pivoting algorithm
 | |
| *
 | |
|          NTYPES = 10
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKSY( DOTYPE, NN, NVAL, NNB2, NBVAL2, NNS, NSVAL,
 | |
|      $                   THRESH, TSTERR, LDA, A( 1, 1 ), A( 1, 2 ),
 | |
|      $                   A( 1, 3 ), B( 1, 1 ), B( 1, 2 ), B( 1, 3 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVSY( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, IWORK,
 | |
|      $                   NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'SP' ) ) THEN
 | |
| *
 | |
| *        SP:  symmetric indefinite packed matrices,
 | |
| *             with partial (Bunch-Kaufman) pivoting algorithm
 | |
| *
 | |
|          NTYPES = 10
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKSP( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   LDA, A( 1, 1 ), A( 1, 2 ), A( 1, 3 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), WORK, RWORK,
 | |
|      $                   IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVSP( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, LDA,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), A( 1, 3 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, IWORK,
 | |
|      $                   NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'TR' ) ) THEN
 | |
| *
 | |
| *        TR:  triangular matrices
 | |
| *
 | |
|          NTYPES = 18
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKTR( DOTYPE, NN, NVAL, NNB2, NBVAL2, NNS, NSVAL,
 | |
|      $                   THRESH, TSTERR, LDA, A( 1, 1 ), A( 1, 2 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), WORK, RWORK,
 | |
|      $                   IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'TP' ) ) THEN
 | |
| *
 | |
| *        TP:  triangular packed matrices
 | |
| *
 | |
|          NTYPES = 18
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKTP( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   LDA, A( 1, 1 ), A( 1, 2 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, IWORK,
 | |
|      $                   NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'TB' ) ) THEN
 | |
| *
 | |
| *        TB:  triangular banded matrices
 | |
| *
 | |
|          NTYPES = 17
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKTB( DOTYPE, NN, NVAL, NNS, NSVAL, THRESH, TSTERR,
 | |
|      $                   LDA, A( 1, 1 ), A( 1, 2 ), B( 1, 1 ),
 | |
|      $                   B( 1, 2 ), B( 1, 3 ), WORK, RWORK, IWORK,
 | |
|      $                   NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'QR' ) ) THEN
 | |
| *
 | |
| *        QR:  QR factorization
 | |
| *
 | |
|          NTYPES = 8
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKQR( DOTYPE, NM, MVAL, NN, NVAL, NNB, NBVAL, NXVAL,
 | |
|      $                   NRHS, THRESH, TSTERR, NMAX, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), A( 1, 3 ), A( 1, 4 ), A( 1, 5 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), B( 1, 4 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'LQ' ) ) THEN
 | |
| *
 | |
| *        LQ:  LQ factorization
 | |
| *
 | |
|          NTYPES = 8
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKLQ( DOTYPE, NM, MVAL, NN, NVAL, NNB, NBVAL, NXVAL,
 | |
|      $                   NRHS, THRESH, TSTERR, NMAX, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), A( 1, 3 ), A( 1, 4 ), A( 1, 5 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), B( 1, 4 ),
 | |
|      $                   WORK, RWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'QL' ) ) THEN
 | |
| *
 | |
| *        QL:  QL factorization
 | |
| *
 | |
|          NTYPES = 8
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKQL( DOTYPE, NM, MVAL, NN, NVAL, NNB, NBVAL, NXVAL,
 | |
|      $                   NRHS, THRESH, TSTERR, NMAX, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), A( 1, 3 ), A( 1, 4 ), A( 1, 5 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), B( 1, 4 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'RQ' ) ) THEN
 | |
| *
 | |
| *        RQ:  RQ factorization
 | |
| *
 | |
|          NTYPES = 8
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKRQ( DOTYPE, NM, MVAL, NN, NVAL, NNB, NBVAL, NXVAL,
 | |
|      $                   NRHS, THRESH, TSTERR, NMAX, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), A( 1, 3 ), A( 1, 4 ), A( 1, 5 ),
 | |
|      $                   B( 1, 1 ), B( 1, 2 ), B( 1, 3 ), B( 1, 4 ),
 | |
|      $                   WORK, RWORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'QP' ) ) THEN
 | |
| *
 | |
| *        QP:  QR factorization with pivoting
 | |
| *
 | |
|          NTYPES = 6
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKQP( DOTYPE, NM, MVAL, NN, NVAL, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), B( 1, 1 ),
 | |
|      $                   B( 1, 3 ), WORK, IWORK, NOUT )
 | |
|             CALL DCHKQ3( DOTYPE, NM, MVAL, NN, NVAL, NNB, NBVAL, NXVAL,
 | |
|      $                   THRESH, A( 1, 1 ), A( 1, 2 ), B( 1, 1 ),
 | |
|      $                   B( 1, 3 ), WORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'TZ' ) ) THEN
 | |
| *
 | |
| *        TZ:  Trapezoidal matrix
 | |
| *
 | |
|          NTYPES = 3
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKTZ( DOTYPE, NM, MVAL, NN, NVAL, THRESH, TSTERR,
 | |
|      $                   A( 1, 1 ), A( 1, 2 ), B( 1, 1 ),
 | |
|      $                   B( 1, 3 ), WORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'LS' ) ) THEN
 | |
| *
 | |
| *        LS:  Least squares drivers
 | |
| *
 | |
|          NTYPES = 6
 | |
|          CALL ALAREQ( PATH, NMATS, DOTYPE, NTYPES, NIN, NOUT )
 | |
| *
 | |
|          IF( TSTDRV ) THEN
 | |
|             CALL DDRVLS( DOTYPE, NM, MVAL, NN, NVAL, NNS, NSVAL, NNB,
 | |
|      $                   NBVAL, NXVAL, THRESH, TSTERR, A( 1, 1 ),
 | |
|      $                   A( 1, 2 ), B( 1, 1 ), B( 1, 2 ), B( 1, 3 ),
 | |
|      $                   RWORK, RWORK( NMAX+1 ), WORK, IWORK, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9988 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'EQ' ) ) THEN
 | |
| *
 | |
| *        EQ:  Equilibration routines for general and positive definite
 | |
| *             matrices (THREQ should be between 2 and 10)
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKEQ( THREQ, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *         
 | |
|       ELSE IF( LSAMEN( 2, C2, 'QT' ) ) THEN
 | |
| *
 | |
| *        QT:  QRT routines for general matrices
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKQRT( THRESH, TSTERR, NM, MVAL, NN, NVAL, NNB, 
 | |
|      $                    NBVAL, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE IF( LSAMEN( 2, C2, 'QX' ) ) THEN
 | |
| *
 | |
| *        QX:  QRT routines for triangular-pentagonal matrices
 | |
| *
 | |
|          IF( TSTCHK ) THEN
 | |
|             CALL DCHKQRTP( THRESH, TSTERR, NM, MVAL, NN, NVAL, NNB, 
 | |
|      $                     NBVAL, NOUT )
 | |
|          ELSE
 | |
|             WRITE( NOUT, FMT = 9989 )PATH
 | |
|          END IF
 | |
| *
 | |
|       ELSE
 | |
| *
 | |
|          WRITE( NOUT, FMT = 9990 )PATH
 | |
|       END IF
 | |
| *
 | |
| *     Go back to get another input line.
 | |
| *
 | |
|       GO TO 80
 | |
| *
 | |
| *     Branch to this line when the last record is read.
 | |
| *
 | |
|   140 CONTINUE
 | |
|       CLOSE ( NIN )
 | |
|       S2 = DSECND( )
 | |
|       WRITE( NOUT, FMT = 9998 )
 | |
|       WRITE( NOUT, FMT = 9997 )S2 - S1
 | |
| *
 | |
|  9999 FORMAT( / ' Execution not attempted due to input errors' )
 | |
|  9998 FORMAT( / ' End of tests' )
 | |
|  9997 FORMAT( ' Total time used = ', F12.2, ' seconds', / )
 | |
|  9996 FORMAT( ' Invalid input value: ', A4, '=', I6, '; must be >=',
 | |
|      $      I6 )
 | |
|  9995 FORMAT( ' Invalid input value: ', A4, '=', I6, '; must be <=',
 | |
|      $      I6 )
 | |
|  9994 FORMAT( ' Tests of the DOUBLE PRECISION LAPACK routines ',
 | |
|      $      / ' LAPACK VERSION ', I1, '.', I1, '.', I1,
 | |
|      $      / / ' The following parameter values will be used:' )
 | |
|  9993 FORMAT( 4X, A4, ':  ', 10I6, / 11X, 10I6 )
 | |
|  9992 FORMAT( / ' Routines pass computational tests if test ratio is ',
 | |
|      $      'less than', F8.2, / )
 | |
|  9991 FORMAT( ' Relative machine ', A, ' is taken to be', D16.6 )
 | |
|  9990 FORMAT( / 1X, A3, ':  Unrecognized path name' )
 | |
|  9989 FORMAT( / 1X, A3, ' routines were not tested' )
 | |
|  9988 FORMAT( / 1X, A3, ' driver routines were not tested' )
 | |
| *
 | |
| *     End of DCHKAA
 | |
| *
 | |
|       END
 |