246 lines
		
	
	
		
			7.0 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			246 lines
		
	
	
		
			7.0 KiB
		
	
	
	
		
			Fortran
		
	
	
	
*> \brief \b DERRGT
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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 DERRGT( PATH, NUNIT )
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* 
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*       .. Scalar Arguments ..
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*       CHARACTER*3        PATH
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*       INTEGER            NUNIT
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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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*> DERRGT tests the error exits for the DOUBLE PRECISION tridiagonal
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*> routines.
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*> \endverbatim
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*
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*  Arguments:
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*  ==========
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*
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*> \param[in] PATH
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*> \verbatim
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*>          PATH is CHARACTER*3
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*>          The LAPACK path name for the routines to be tested.
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*> \endverbatim
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*>
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*> \param[in] NUNIT
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*> \verbatim
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*>          NUNIT 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 double_lin
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*
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*  =====================================================================
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      SUBROUTINE DERRGT( PATH, NUNIT )
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*
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*  -- LAPACK test routine (version 3.4.0) --
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*  -- LAPACK is a software package provided by Univ. of Tennessee,    --
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*  -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
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*     November 2011
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*
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*     .. Scalar Arguments ..
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      CHARACTER*3        PATH
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      INTEGER            NUNIT
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*     ..
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*
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*  =====================================================================
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*
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*     .. Parameters ..
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      INTEGER            NMAX
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      PARAMETER          ( NMAX = 2 )
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*     ..
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*     .. Local Scalars ..
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      CHARACTER*2        C2
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      INTEGER            INFO
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      DOUBLE PRECISION   ANORM, RCOND
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*     ..
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*     .. Local Arrays ..
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      INTEGER            IP( NMAX ), IW( NMAX )
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      DOUBLE PRECISION   B( NMAX ), C( NMAX ), CF( NMAX ), D( NMAX ),
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     $                   DF( NMAX ), E( NMAX ), EF( NMAX ), F( NMAX ),
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     $                   R1( NMAX ), R2( NMAX ), W( NMAX ), X( NMAX )
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*     ..
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*     .. External Functions ..
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      LOGICAL            LSAMEN
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      EXTERNAL           LSAMEN
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*     ..
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*     .. External Subroutines ..
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      EXTERNAL           ALAESM, CHKXER, DGTCON, DGTRFS, DGTTRF, DGTTRS,
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     $                   DPTCON, DPTRFS, DPTTRF, DPTTRS
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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, NOUT
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*     ..
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*     .. Common blocks ..
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      COMMON             / INFOC / INFOT, NOUT, OK, LERR
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      COMMON             / SRNAMC / SRNAMT
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*     ..
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*     .. Executable Statements ..
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*
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      NOUT = NUNIT
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      WRITE( NOUT, FMT = * )
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      C2 = PATH( 2: 3 )
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      D( 1 ) = 1.D0
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      D( 2 ) = 2.D0
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      DF( 1 ) = 1.D0
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      DF( 2 ) = 2.D0
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      E( 1 ) = 3.D0
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      E( 2 ) = 4.D0
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      EF( 1 ) = 3.D0
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      EF( 2 ) = 4.D0
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      ANORM = 1.0D0
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      OK = .TRUE.
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*
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      IF( LSAMEN( 2, C2, 'GT' ) ) THEN
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*
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*        Test error exits for the general tridiagonal routines.
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*
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*        DGTTRF
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*
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         SRNAMT = 'DGTTRF'
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         INFOT = 1
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         CALL DGTTRF( -1, C, D, E, F, IP, INFO )
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         CALL CHKXER( 'DGTTRF', INFOT, NOUT, LERR, OK )
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*
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*        DGTTRS
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*
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         SRNAMT = 'DGTTRS'
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         INFOT = 1
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         CALL DGTTRS( '/', 0, 0, C, D, E, F, IP, X, 1, INFO )
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         CALL CHKXER( 'DGTTRS', INFOT, NOUT, LERR, OK )
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         INFOT = 2
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         CALL DGTTRS( 'N', -1, 0, C, D, E, F, IP, X, 1, INFO )
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         CALL CHKXER( 'DGTTRS', INFOT, NOUT, LERR, OK )
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         INFOT = 3
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         CALL DGTTRS( 'N', 0, -1, C, D, E, F, IP, X, 1, INFO )
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         CALL CHKXER( 'DGTTRS', INFOT, NOUT, LERR, OK )
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         INFOT = 10
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         CALL DGTTRS( 'N', 2, 1, C, D, E, F, IP, X, 1, INFO )
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         CALL CHKXER( 'DGTTRS', INFOT, NOUT, LERR, OK )
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*
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*        DGTRFS
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*
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         SRNAMT = 'DGTRFS'
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         INFOT = 1
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         CALL DGTRFS( '/', 0, 0, C, D, E, CF, DF, EF, F, IP, B, 1, X, 1,
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     $                R1, R2, W, IW, INFO )
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         CALL CHKXER( 'DGTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 2
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         CALL DGTRFS( 'N', -1, 0, C, D, E, CF, DF, EF, F, IP, B, 1, X,
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     $                1, R1, R2, W, IW, INFO )
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         CALL CHKXER( 'DGTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 3
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         CALL DGTRFS( 'N', 0, -1, C, D, E, CF, DF, EF, F, IP, B, 1, X,
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     $                1, R1, R2, W, IW, INFO )
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         CALL CHKXER( 'DGTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 13
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         CALL DGTRFS( 'N', 2, 1, C, D, E, CF, DF, EF, F, IP, B, 1, X, 2,
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     $                R1, R2, W, IW, INFO )
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         CALL CHKXER( 'DGTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 15
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         CALL DGTRFS( 'N', 2, 1, C, D, E, CF, DF, EF, F, IP, B, 2, X, 1,
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     $                R1, R2, W, IW, INFO )
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         CALL CHKXER( 'DGTRFS', INFOT, NOUT, LERR, OK )
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*
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*        DGTCON
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*
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         SRNAMT = 'DGTCON'
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         INFOT = 1
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         CALL DGTCON( '/', 0, C, D, E, F, IP, ANORM, RCOND, W, IW,
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     $                INFO )
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         CALL CHKXER( 'DGTCON', INFOT, NOUT, LERR, OK )
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         INFOT = 2
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         CALL DGTCON( 'I', -1, C, D, E, F, IP, ANORM, RCOND, W, IW,
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     $                INFO )
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         CALL CHKXER( 'DGTCON', INFOT, NOUT, LERR, OK )
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         INFOT = 8
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         CALL DGTCON( 'I', 0, C, D, E, F, IP, -ANORM, RCOND, W, IW,
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     $                INFO )
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         CALL CHKXER( 'DGTCON', INFOT, NOUT, LERR, OK )
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*
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      ELSE IF( LSAMEN( 2, C2, 'PT' ) ) THEN
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*
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*        Test error exits for the positive definite tridiagonal
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*        routines.
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*
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*        DPTTRF
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*
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         SRNAMT = 'DPTTRF'
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         INFOT = 1
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         CALL DPTTRF( -1, D, E, INFO )
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         CALL CHKXER( 'DPTTRF', INFOT, NOUT, LERR, OK )
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*
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*        DPTTRS
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*
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         SRNAMT = 'DPTTRS'
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         INFOT = 1
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         CALL DPTTRS( -1, 0, D, E, X, 1, INFO )
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         CALL CHKXER( 'DPTTRS', INFOT, NOUT, LERR, OK )
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         INFOT = 2
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         CALL DPTTRS( 0, -1, D, E, X, 1, INFO )
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         CALL CHKXER( 'DPTTRS', INFOT, NOUT, LERR, OK )
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         INFOT = 6
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         CALL DPTTRS( 2, 1, D, E, X, 1, INFO )
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         CALL CHKXER( 'DPTTRS', INFOT, NOUT, LERR, OK )
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*
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*        DPTRFS
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*
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         SRNAMT = 'DPTRFS'
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         INFOT = 1
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         CALL DPTRFS( -1, 0, D, E, DF, EF, B, 1, X, 1, R1, R2, W, INFO )
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         CALL CHKXER( 'DPTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 2
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         CALL DPTRFS( 0, -1, D, E, DF, EF, B, 1, X, 1, R1, R2, W, INFO )
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         CALL CHKXER( 'DPTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 8
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         CALL DPTRFS( 2, 1, D, E, DF, EF, B, 1, X, 2, R1, R2, W, INFO )
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         CALL CHKXER( 'DPTRFS', INFOT, NOUT, LERR, OK )
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         INFOT = 10
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         CALL DPTRFS( 2, 1, D, E, DF, EF, B, 2, X, 1, R1, R2, W, INFO )
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         CALL CHKXER( 'DPTRFS', INFOT, NOUT, LERR, OK )
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*
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*        DPTCON
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*
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         SRNAMT = 'DPTCON'
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         INFOT = 1
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         CALL DPTCON( -1, D, E, ANORM, RCOND, W, INFO )
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         CALL CHKXER( 'DPTCON', INFOT, NOUT, LERR, OK )
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         INFOT = 4
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         CALL DPTCON( 0, D, E, -ANORM, RCOND, W, INFO )
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         CALL CHKXER( 'DPTCON', INFOT, NOUT, LERR, OK )
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      END IF
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*
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*     Print a summary line.
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*
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      CALL ALAESM( PATH, OK, NOUT )
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*
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      RETURN
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*
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*     End of DERRGT
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*
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      END
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