161 SUBROUTINE ddrvge( DOTYPE, NN, NVAL, NRHS, THRESH, TSTERR, NMAX,
162 $ A, AFAC, ASAV, B, BSAV, X, XACT, S, WORK,
163 $ RWORK, IWORK, NOUT )
171 INTEGER NMAX, NN, NOUT, NRHS
172 DOUBLE PRECISION THRESH
176 INTEGER IWORK( * ), ( * )
177 DOUBLE PRECISION A( * ), AFAC( * ), ASAV( * ), B( * ),
178 $ bsav( * ), rwork( * ), s( * ), work( * ),
185 DOUBLE PRECISION ONE, ZERO
186 PARAMETER ( ONE = 1.0d+0, zero = 0.0d+0 )
188 parameter( ntypes = 11 )
190 parameter( ntests = 7 )
192 parameter( ntran = 3 )
195 LOGICAL EQUIL, NOFACT, PREFAC, TRFCON, ZEROT
196 CHARACTER DIST, EQUED, FACT, TRANS,
TYPE, XTYPE
198 INTEGER I, , IFACT, IMAT, IN, INFO, IOFF, ITRAN,
199 $ izero, k, k1, kl, ku, lda, lwork, mode, n, nb,
200 $ nbmin, nerrs, nfact, nfail, nimat, nrun, nt
201 DOUBLE PRECISION AINVNM, AMAX, ANORM, ANORMI, ANORMO, CNDNUM,
202 $ COLCND, RCOND, RCONDC, RCONDI, , ROLDC,
203 $ roldi, roldo, rowcnd, rpvgrw
206 CHARACTER EQUEDS( 4 ), FACTS( 3 ), TRANSS( NTRAN )
207 INTEGER ISEED( 4 ), ISEEDY( 4 )
208 DOUBLE PRECISION RESULT( NTESTS )
212 DOUBLE PRECISION DGET06, DLAMCH, DLANGE, DLANTR
213 EXTERNAL lsame, dget06, dlamch, dlange, dlantr
230 COMMON / infoc / infot, nunit, ok, lerr
231 COMMON / srnamc / srnamt
234 DATA iseedy / 1988, 1989, 1990, 1991 /
235 DATA transs /
'N',
'T',
'C' /
236 DATA facts /
'F',
'N',
'E' /
237 DATA equeds /
'N',
'R',
'C',
'B' /
243 path( 1: 1 ) =
'Double precision'
249 iseed( i ) = iseedy( i )
255 $
CALL derrvx( path, nout )
275 DO 80 imat = 1, nimat
279 IF( .NOT.dotype( imat ) )
284 zerot = imat.GE.5 .AND. imat.LE.7
285 IF( zerot .AND. n.LT.imat-4 )
291 CALL dlatb4( path, imat, n, n,
TYPE, , , anorm, mode,
293 rcondc = one / cndnum
296 CALL dlatms( n, n, dist, iseed,
TYPE, rwork, mode, cndnum,
297 $ anorm, kl, ku,
'No packing', a, lda, work,
303 CALL alaerh( path,
'DLATMS', info, 0,
' ', n, n, -1, -1,
304 $ -1, imat, nfail, nerrs, nout )
314 ELSE IF( imat.EQ.6 )
THEN
319 ioff = ( izero-1 )*lda
325 CALL dlaset(
'Full', n, n-izero+1, zero, zero,
334 CALL dlacpy(
'Full', n, n, a, lda, asav, lda )
337 equed = equeds( iequed )
338 IF( iequed.EQ.1 )
THEN
344 DO 60 ifact = 1, nfact
345 fact = facts( ifact )
346 prefac = lsame( fact,
'F' )
347 nofact = lsame( fact,
'N' )
348 equil = lsame( fact,
'E' )
356 ELSE IF( .NOT.nofact )
THEN
363 CALL dlacpy(
'Full', n, n, asav, lda, afac, lda )
364 IF( equil .OR. iequed.GT.1 )
THEN
369 CALL dgeequ( n, n, afac, lda, s, s( n+1 ),
370 $ rowcnd, colcnd, amax, info )
371 IF( info.EQ.0 .AND. n.GT.0 )
THEN
372 IF( lsame( equed,
'R' ) )
THEN
375 ELSE IF( lsame( equed, 'c
' ) ) THEN
378 ELSE IF( LSAME( EQUED, 'b
' ) ) THEN
385 CALL DLAQGE( N, N, AFAC, LDA, S, S( N+1 ),
386 $ ROWCND, COLCND, AMAX, EQUED )
400 ANORMO = DLANGE( '1
', N, N, AFAC, LDA, RWORK )
401 ANORMI = DLANGE( 'i
', N, N, AFAC, LDA, RWORK )
406 CALL DGETRF( N, N, AFAC, LDA, IWORK, INFO )
410 CALL DLACPY( 'full
', N, N, AFAC, LDA, A, LDA )
411 LWORK = NMAX*MAX( 3, NRHS )
413 CALL DGETRI( N, A, LDA, IWORK, WORK, LWORK, INFO )
417 AINVNM = DLANGE( '1
', N, N, A, LDA, RWORK )
418.LE..OR..LE.
IF( ANORMOZERO AINVNMZERO ) THEN
421 RCONDO = ( ONE / ANORMO ) / AINVNM
426 AINVNM = DLANGE( 'i
', N, N, A, LDA, RWORK )
427.LE..OR..LE.
IF( ANORMIZERO AINVNMZERO ) THEN
430 RCONDI = ( ONE / ANORMI ) / AINVNM
434 DO 50 ITRAN = 1, NTRAN
438 TRANS = TRANSS( ITRAN )
439.EQ.
IF( ITRAN1 ) THEN
447 CALL DLACPY( 'full
', N, N, ASAV, LDA, A, LDA )
452 CALL DLARHS( PATH, XTYPE, 'full
', TRANS, N, N, KL,
453 $ KU, NRHS, A, LDA, XACT, LDA, B, LDA,
456 CALL DLACPY( 'full
', N, NRHS, B, LDA, BSAV, LDA )
458.AND..EQ.
IF( NOFACT ITRAN1 ) THEN
465 CALL DLACPY( 'full
', N, N, A, LDA, AFAC, LDA )
466 CALL DLACPY( 'full
', N, NRHS, B, LDA, X, LDA )
469 CALL DGESV( N, NRHS, AFAC, LDA, IWORK, X, LDA,
475 $ CALL ALAERH( PATH, 'dgesv ', INFO, IZERO,
476 $ ' ', N, N, -1, -1, NRHS, IMAT,
477 $ NFAIL, NERRS, NOUT )
482 CALL DGET01( N, N, A, LDA, AFAC, LDA, IWORK,
483 $ RWORK, RESULT( 1 ) )
485.EQ.
IF( IZERO0 ) THEN
489 CALL DLACPY( 'full
', N, NRHS, B, LDA, WORK,
491 CALL DGET02( 'no transpose
', N, N, NRHS, A,
492 $ LDA, X, LDA, WORK, LDA, RWORK,
497 CALL DGET04( N, NRHS, X, LDA, XACT, LDA,
498 $ RCONDC, RESULT( 3 ) )
506.GE.
IF( RESULT( K )THRESH ) THEN
507.EQ..AND..EQ.
IF( NFAIL0 NERRS0 )
508 $ CALL ALADHD( NOUT, PATH )
509 WRITE( NOUT, FMT = 9999 )'dgesv ', N,
510 $ IMAT, K, RESULT( K )
520 $ CALL DLASET( 'full
', N, N, ZERO, ZERO, AFAC,
522 CALL DLASET( 'full
', N, NRHS, ZERO, ZERO, X, LDA )
523.GT..AND..GT.
IF( IEQUED1 N0 ) THEN
528 CALL DLAQGE( N, N, A, LDA, S, S( N+1 ), ROWCND,
529 $ COLCND, AMAX, EQUED )
536 CALL dgesvx( fact, trans, n, nrhs, a, lda, afac,
537 $ lda, iwork, equed, s, s( n+1 ), b,
539 $ rwork( nrhs+1 ), work, iwork( n+1 ),
545 $
CALL alaerh( path,
'DGESVX', info, izero,
546 $ fact // trans, n, n, -1, -1, nrhs,
547 $ imat, nfail, nerrs, nout )
552 IF( info.NE.0 .AND. info.LE.n)
THEN
553 rpvgrw = dlantr(
'M',
'U',
'N', info, info,
555 IF( rpvgrw.EQ.zero )
THEN
558 rpvgrw = dlange(
'M', n, info, a, lda,
562 rpvgrw = dlantr(
'M',
'U',
'N', n, n, afac, lda,
564 IF( rpvgrw.EQ.zero )
THEN
567 rpvgrw = dlange(
'M', n, n, a, lda, work ) /
571 result( 7 ) = abs( rpvgrw-work( 1 ) ) /
572 $
max( work( 1 ), rpvgrw ) /
575 IF( .NOT.prefac )
THEN
580 CALL dget01( n, n, a, lda, afac, lda, iwork,
581 $ rwork( 2*nrhs+1 ), result( 1 ) )
592 CALL dlacpy(
'Full', n, nrhs, bsav, lda, work,
594 CALL dget02( trans, n, n, nrhs, asav, lda, x,
595 $ lda, work, lda, rwork( 2*nrhs+1 ),
600 IF( nofact .OR. ( prefac .AND. lsame( equed,
602 CALL dget04( n, nrhs, x, lda, xact, lda,
603 $ rcondc, result( 3 ) )
605 IF( itran.EQ.1 )
THEN
610 CALL dget04( n, nrhs, x, lda, xact, lda,
611 $ roldc, result( 3 ) )
617 CALL dget07( trans, n, nrhs, asav, lda, b, lda,
618 $ x, lda, xact, lda, rwork, .true.,
619 $ rwork( nrhs+1 ), result( 4 ) )
627 result( 6 ) = dget06( rcond, rcondc )
632 IF( .NOT.trfcon )
THEN
634 IF( result( k ).GE.thresh )
THEN
635 IF( nfail.EQ.0 .AND. nerrs.EQ.0 )
636 $
CALL aladhd( nout, path )
638 WRITE( nout, fmt = 9997 )
'DGESVX',
639 $ fact, trans, n, equed, imat, k,
642 WRITE( nout, fmt
'DGESVX',
643 $ fact, trans, n, imat, k, result( k )
648 nrun = nrun + ntests - k1 + 1
650 IF( result( 1 ).GE.thresh .AND. .NOT.prefac )
652 IF( nfail.EQ.0 .AND. nerrs.EQ.0 )
653 $
CALL aladhd( nout, path )
655 WRITE( nout, fmt = 9997 )
'DGESVX', fact,
656 $ trans, n, equed, imat, 1, result( 1 )
658 WRITE( nout, fmt = 9998 )
'DGESVX', fact,
659 $ trans, n, imat, 1, result( 1 )
664 IF( result( 6 ).GE.thresh )
THEN
665 IF( nfail.EQ.0 .AND. nerrs.EQ.0 )
666 $
CALL aladhd( nout, path )
668 WRITE( nout, fmt
'DGESVX', fact,
669 $ trans, n, equed, imat, 6, result( 6 )
671 WRITE( nout, fmt = 9998 )'
dgesvx', FACT,
672 $ TRANS, N, IMAT, 6, RESULT( 6 )
677.GE.
IF( RESULT( 7 )THRESH ) THEN
678.EQ..AND..EQ.
IF( NFAIL0 NERRS0 )
679 $ CALL ALADHD( NOUT, PATH )
681 WRITE( NOUT, FMT = 9997 )'dgesvx', FACT,
682 $ TRANS, N, EQUED, IMAT, 7, RESULT( 7 )
684 WRITE( NOUT, FMT = 9998 )'dgesvx', fact,
685 $ trans, n, imat, 7, result( 7 )
701 CALL alasvm( path, nout, nfail, nrun, nerrs )
703 9999
FORMAT( 1x, a,
', N =', i5,
', type ', i2,
', test(', i2,
') =',
705 9998
FORMAT( 1x, a,
', FACT=''', a1,
''', TRANS=''', a1,
''', N=', i5,
706 $
', type ', i2,
', test(', i1,
')=', g12.5 )
707 9997
FORMAT( 1x, a,
', FACT=''', a1,
''', TRANS=''', a1,
''', N='
708 $
', EQUED=''', a1,
''', type ', i2,
', test(', i1,
')=',