297 lines
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			297 lines
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Fortran
		
	
	
	
*> \brief \b CCHKRFP
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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 CCHKRFP
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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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*> CCHKRFP is the main test program for the COMPLEX linear equation
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*> routines with RFP storage format
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*>
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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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*> \verbatim
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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, or NB
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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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*>  NTYPES  INTEGER
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*>
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*>  NMAX    INTEGER
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*>          The maximum allowable value for N.
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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 complex_lin
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*
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*  =====================================================================
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      PROGRAM CCHKRFP
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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            MAXIN
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      PARAMETER          ( MAXIN = 12 )
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      INTEGER            NMAX
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      PARAMETER          ( NMAX =  50 )
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      INTEGER            MAXRHS
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      PARAMETER          ( MAXRHS = 16 )
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      INTEGER            NTYPES
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      PARAMETER          ( NTYPES = 9 )
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      INTEGER            NIN, NOUT
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      PARAMETER          ( NIN = 5, NOUT = 6 )
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*     ..
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*     .. Local Scalars ..
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      LOGICAL            FATAL, TSTERR
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      INTEGER            VERS_MAJOR, VERS_MINOR, VERS_PATCH
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      INTEGER            I, NN, NNS, NNT
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      REAL               EPS, S1, S2, THRESH
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*     ..
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*     .. Local Arrays ..
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      INTEGER            NVAL( MAXIN ), NSVAL( MAXIN ), NTVAL( NTYPES )
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      COMPLEX            WORKA( NMAX, NMAX )
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      COMPLEX            WORKASAV( NMAX, NMAX )
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      COMPLEX            WORKB( NMAX, MAXRHS )
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      COMPLEX            WORKXACT( NMAX, MAXRHS )
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      COMPLEX            WORKBSAV( NMAX, MAXRHS )
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      COMPLEX            WORKX( NMAX, MAXRHS )
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      COMPLEX            WORKAFAC( NMAX, NMAX )
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      COMPLEX            WORKAINV( NMAX, NMAX )
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      COMPLEX            WORKARF( (NMAX*(NMAX+1))/2 )
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      COMPLEX            WORKAP( (NMAX*(NMAX+1))/2 )
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      COMPLEX            WORKARFINV( (NMAX*(NMAX+1))/2 )
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      COMPLEX            C_WORK_CLATMS( 3 * NMAX )
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      COMPLEX            C_WORK_CPOT02( NMAX, MAXRHS )
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      COMPLEX            C_WORK_CPOT03( NMAX, NMAX )
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      REAL               S_WORK_CLATMS( NMAX )
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      REAL               S_WORK_CLANHE( NMAX )
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      REAL               S_WORK_CPOT01( NMAX )
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      REAL               S_WORK_CPOT02( NMAX )
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      REAL               S_WORK_CPOT03( NMAX )
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*     ..
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*     .. External Functions ..
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      REAL               SLAMCH, SECOND
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      EXTERNAL           SLAMCH, SECOND
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*     ..
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*     .. External Subroutines ..
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      EXTERNAL           ILAVER, CDRVRFP, CDRVRF1, CDRVRF2, CDRVRF3,
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     +                   CDRVRF4
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*     ..
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*     .. Executable Statements ..
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*
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      S1 = SECOND( )
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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 LAPACK version tag (e.g. LAPACK-3.2.0)
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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 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 10 I = 1, NN
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         IF( NVAL( I ).LT.0 ) THEN
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            WRITE( NOUT, FMT = 9996 )' M  ', 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 )' M  ', NVAL( 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( 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 matrix types
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*
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      READ( NIN, FMT = * )NNT
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      IF( NNT.LT.1 ) THEN
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         WRITE( NOUT, FMT = 9996 )' NMA', NNT, 1
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         NNT = 0
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         FATAL = .TRUE.
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      ELSE IF( NNT.GT.NTYPES ) THEN
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         WRITE( NOUT, FMT = 9995 )' NMA', NNT, NTYPES
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         NNT = 0
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         FATAL = .TRUE.
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      END IF
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      READ( NIN, FMT = * )( NTVAL( I ), I = 1, NNT )
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      DO 320 I = 1, NNT
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         IF( NTVAL( I ).LT.0 ) THEN
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            WRITE( NOUT, FMT = 9996 )'TYPE', NTVAL( I ), 0
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            FATAL = .TRUE.
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         ELSE IF( NTVAL( I ).GT.NTYPES ) THEN
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            WRITE( NOUT, FMT = 9995 )'TYPE', NTVAL( I ), NTYPES
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            FATAL = .TRUE.
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         END IF
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  320 CONTINUE
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      IF( NNT.GT.0 )
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     $   WRITE( NOUT, FMT = 9993 )'TYPE', ( NTVAL( I ), I = 1, NNT )
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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 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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      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 = SLAMCH( 'Underflow threshold' )
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      WRITE( NOUT, FMT = 9991 )'underflow', EPS
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      EPS = SLAMCH( 'Overflow threshold' )
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      WRITE( NOUT, FMT = 9991 )'overflow ', EPS
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      EPS = SLAMCH( '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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*     Test the error exit of:
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*
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      IF( TSTERR )
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     $   CALL CERRRFP( NOUT )
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*
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*    Test the routines: cpftrf, cpftri, cpftrs (as in CDRVPO).
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*    This also tests the routines: ctfsm, ctftri, ctfttr, ctrttf.
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*
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      CALL CDRVRFP( NOUT, NN, NVAL, NNS, NSVAL, NNT, NTVAL, THRESH,
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     $              WORKA, WORKASAV, WORKAFAC, WORKAINV, WORKB,
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     $              WORKBSAV, WORKXACT, WORKX, WORKARF, WORKARFINV,
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     $              C_WORK_CLATMS, C_WORK_CPOT02,
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     $              C_WORK_CPOT03, S_WORK_CLATMS, S_WORK_CLANHE,
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     $              S_WORK_CPOT01, S_WORK_CPOT02, S_WORK_CPOT03 )
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*
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*    Test the routine: clanhf
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*
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      CALL CDRVRF1( NOUT, NN, NVAL, THRESH, WORKA, NMAX, WORKARF,
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     +              S_WORK_CLANHE )
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*
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*    Test the convertion routines:
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*       chfttp, ctpthf, ctfttr, ctrttf, ctrttp and ctpttr.
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*
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      CALL CDRVRF2( NOUT, NN, NVAL, WORKA, NMAX, WORKARF,
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     +              WORKAP, WORKASAV )
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*
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*    Test the routine: ctfsm
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*
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      CALL CDRVRF3( NOUT, NN, NVAL, THRESH, WORKA, NMAX, WORKARF,
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     +              WORKAINV, WORKAFAC, S_WORK_CLANHE,
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     +              C_WORK_CPOT03, C_WORK_CPOT02 )
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*
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*
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*    Test the routine: chfrk
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*
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      CALL CDRVRF4( NOUT, NN, NVAL, THRESH, WORKA, WORKAFAC, NMAX,
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     +              WORKARF, WORKAINV, NMAX, S_WORK_CLANHE)
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*
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      CLOSE ( NIN )
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      S2 = SECOND( )
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      WRITE( NOUT, FMT = 9998 )
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      WRITE( NOUT, FMT = 9997 )S2 - S1
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*
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 9999 FORMAT( / ' Execution not attempted due to input errors' )
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 9998 FORMAT( / ' End of tests' )
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 9997 FORMAT( ' Total time used = ', F12.2, ' seconds', / )
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 9996 FORMAT( ' !! Invalid input value: ', A4, '=', I6, '; must be >=',
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     $      I6 )
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 9995 FORMAT( ' !! Invalid input value: ', A4, '=', I6, '; must be <=',
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     $      I6 )
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 9994 FORMAT( /  ' Tests of the COMPLEX LAPACK RFP routines ',
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     $      / ' LAPACK VERSION ', I1, '.', I1, '.', I1,
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     $      / / ' The following parameter values will be used:' )
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 9993 FORMAT( 4X, A4, ':  ', 10I6, / 11X, 10I6 )
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 9992 FORMAT( / ' Routines pass computational tests if test ratio is ',
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     $      'less than', F8.2, / )
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 9991 FORMAT( ' Relative machine ', A, ' is taken to be', D16.6 )
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*
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*     End of CCHKRFP
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*
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      END
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