304 SUBROUTINE sgegv( JOBVL, JOBVR, N, A, LDA, B, LDB, ALPHAR, ALPHAI,
305 $ BETA, VL, LDVL, VR, LDVR, WORK, LWORK, INFO )
312 CHARACTER jobvl, jobvr
313 INTEGER info, lda, ldb, ldvl, ldvr, lwork, n
316 REAL a( lda, * ), alphai( * ), alphar( * ),
317 $ b( ldb, * ), beta( * ), vl( ldvl, * ),
318 $ vr( ldvr, * ), work( * )
325 parameter( zero = 0.0e0, one = 1.0e0 )
328 LOGICAL ilimit, ilv, ilvl, ilvr, lquery
330 INTEGER icols, ihi, iinfo, ijobvl, ijobvr, ileft, ilo,
331 $ in, iright, irows, itau, iwork, jc, jr, lopt,
332 $ lwkmin, lwkopt, nb, nb1, nb2, nb3
333 REAL absai, absar, absb, anrm, anrm1, anrm2, bnrm,
334 $ bnrm1, bnrm2, eps, onepls, safmax, safmin,
335 $ salfai, salfar, sbeta, scale, temp
351 INTRINSIC abs, int, max
357 IF(
lsame( jobvl,
'N' ) )
THEN 360 ELSE IF(
lsame( jobvl,
'V' ) )
THEN 368 IF(
lsame( jobvr,
'N' ) )
THEN 371 ELSE IF(
lsame( jobvr,
'V' ) )
THEN 382 lwkmin = max( 8*n, 1 )
385 lquery = ( lwork.EQ.-1 )
387 IF( ijobvl.LE.0 )
THEN 389 ELSE IF( ijobvr.LE.0 )
THEN 391 ELSE IF( n.LT.0 )
THEN 393 ELSE IF( lda.LT.max( 1, n ) )
THEN 395 ELSE IF( ldb.LT.max( 1, n ) )
THEN 397 ELSE IF( ldvl.LT.1 .OR. ( ilvl .AND. ldvl.LT.n ) )
THEN 399 ELSE IF( ldvr.LT.1 .OR. ( ilvr .AND. ldvr.LT.n ) )
THEN 401 ELSE IF( lwork.LT.lwkmin .AND. .NOT.lquery )
THEN 406 nb1 =
ilaenv( 1,
'SGEQRF',
' ', n, n, -1, -1 )
407 nb2 =
ilaenv( 1,
'SORMQR',
' ', n, n, n, -1 )
408 nb3 =
ilaenv( 1,
'SORGQR',
' ', n, n, n, -1 )
409 nb = max( nb1, nb2, nb3 )
410 lopt = 2*n + max( 6*n, n*(nb+1) )
415 CALL xerbla(
'SGEGV ', -info )
417 ELSE IF( lquery )
THEN 430 safmin = safmin + safmin
431 safmax = one / safmin
432 onepls = one + ( 4*eps )
436 anrm =
slange(
'M', n, n, a, lda, work )
439 IF( anrm.LT.one )
THEN 440 IF( safmax*anrm.LT.one )
THEN 446 IF( anrm.GT.zero )
THEN 447 CALL slascl(
'G', -1, -1, anrm, one, n, n, a, lda, iinfo )
448 IF( iinfo.NE.0 )
THEN 456 bnrm =
slange(
'M', n, n, b, ldb, work )
459 IF( bnrm.LT.one )
THEN 460 IF( safmax*bnrm.LT.one )
THEN 466 IF( bnrm.GT.zero )
THEN 467 CALL slascl(
'G', -1, -1, bnrm, one, n, n, b, ldb, iinfo )
468 IF( iinfo.NE.0 )
THEN 481 CALL sggbal(
'P', n, a, lda, b, ldb, ilo, ihi, work( ileft ),
482 $ work( iright ), work( iwork ), iinfo )
483 IF( iinfo.NE.0 )
THEN 492 irows = ihi + 1 - ilo
500 CALL sgeqrf( irows, icols, b( ilo, ilo ), ldb, work( itau ),
501 $ work( iwork ), lwork+1-iwork, iinfo )
503 $ lwkopt = max( lwkopt, int( work( iwork ) )+iwork-1 )
504 IF( iinfo.NE.0 )
THEN 509 CALL sormqr(
'L',
'T', irows, icols, irows, b( ilo, ilo ), ldb,
510 $ work( itau ), a( ilo, ilo ), lda, work( iwork ),
511 $ lwork+1-iwork, iinfo )
513 $ lwkopt = max( lwkopt, int( work( iwork ) )+iwork-1 )
514 IF( iinfo.NE.0 )
THEN 520 CALL slaset(
'Full', n, n, zero, one, vl, ldvl )
521 CALL slacpy(
'L', irows-1, irows-1, b( ilo+1, ilo ), ldb,
522 $ vl( ilo+1, ilo ), ldvl )
523 CALL sorgqr( irows, irows, irows, vl( ilo, ilo ), ldvl,
524 $ work( itau ), work( iwork ), lwork+1-iwork,
527 $ lwkopt = max( lwkopt, int( work( iwork ) )+iwork-1 )
528 IF( iinfo.NE.0 )
THEN 535 $
CALL slaset(
'Full', n, n, zero, one, vr, ldvr )
543 CALL sgghrd( jobvl, jobvr, n, ilo, ihi, a, lda, b, ldb, vl,
544 $ ldvl, vr, ldvr, iinfo )
546 CALL sgghrd(
'N',
'N', irows, 1, irows, a( ilo, ilo ), lda,
547 $ b( ilo, ilo ), ldb, vl, ldvl, vr, ldvr, iinfo )
549 IF( iinfo.NE.0 )
THEN 564 CALL shgeqz( chtemp, jobvl, jobvr, n, ilo, ihi, a, lda, b, ldb,
565 $ alphar, alphai, beta, vl, ldvl, vr, ldvr,
566 $ work( iwork ), lwork+1-iwork, iinfo )
568 $ lwkopt = max( lwkopt, int( work( iwork ) )+iwork-1 )
569 IF( iinfo.NE.0 )
THEN 570 IF( iinfo.GT.0 .AND. iinfo.LE.n )
THEN 572 ELSE IF( iinfo.GT.n .AND. iinfo.LE.2*n )
THEN 594 CALL stgevc( chtemp,
'B', ldumma, n, a, lda, b, ldb, vl, ldvl,
595 $ vr, ldvr, n, in, work( iwork ), iinfo )
596 IF( iinfo.NE.0 )
THEN 604 CALL sggbak(
'P',
'L', n, ilo, ihi, work( ileft ),
605 $ work( iright ), n, vl, ldvl, iinfo )
606 IF( iinfo.NE.0 )
THEN 611 IF( alphai( jc ).LT.zero )
614 IF( alphai( jc ).EQ.zero )
THEN 616 temp = max( temp, abs( vl( jr, jc ) ) )
620 temp = max( temp, abs( vl( jr, jc ) )+
621 $ abs( vl( jr, jc+1 ) ) )
627 IF( alphai( jc ).EQ.zero )
THEN 629 vl( jr, jc ) = vl( jr, jc )*temp
633 vl( jr, jc ) = vl( jr, jc )*temp
634 vl( jr, jc+1 ) = vl( jr, jc+1 )*temp
640 CALL sggbak(
'P',
'R', n, ilo, ihi, work( ileft ),
641 $ work( iright ), n, vr, ldvr, iinfo )
642 IF( iinfo.NE.0 )
THEN 647 IF( alphai( jc ).LT.zero )
650 IF( alphai( jc ).EQ.zero )
THEN 652 temp = max( temp, abs( vr( jr, jc ) ) )
656 temp = max( temp, abs( vr( jr, jc ) )+
657 $ abs( vr( jr, jc+1 ) ) )
663 IF( alphai( jc ).EQ.zero )
THEN 665 vr( jr, jc ) = vr( jr, jc )*temp
669 vr( jr, jc ) = vr( jr, jc )*temp
670 vr( jr, jc+1 ) = vr( jr, jc+1 )*temp
689 absar = abs( alphar( jc ) )
690 absai = abs( alphai( jc ) )
691 absb = abs( beta( jc ) )
692 salfar = anrm*alphar( jc )
693 salfai = anrm*alphai( jc )
694 sbeta = bnrm*beta( jc )
700 IF( abs( salfai ).LT.safmin .AND. absai.GE.
701 $ max( safmin, eps*absar, eps*absb ) )
THEN 703 scale = ( onepls*safmin / anrm1 ) /
704 $ max( onepls*safmin, anrm2*absai )
706 ELSE IF( salfai.EQ.zero )
THEN 711 IF( alphai( jc ).LT.zero .AND. jc.GT.1 )
THEN 712 alphai( jc-1 ) = zero
713 ELSE IF( alphai( jc ).GT.zero .AND. jc.LT.n )
THEN 714 alphai( jc+1 ) = zero
720 IF( abs( salfar ).LT.safmin .AND. absar.GE.
721 $ max( safmin, eps*absai, eps*absb ) )
THEN 723 scale = max( scale, ( onepls*safmin / anrm1 ) /
724 $ max( onepls*safmin, anrm2*absar ) )
729 IF( abs( sbeta ).LT.safmin .AND. absb.GE.
730 $ max( safmin, eps*absar, eps*absai ) )
THEN 732 scale = max( scale, ( onepls*safmin / bnrm1 ) /
733 $ max( onepls*safmin, bnrm2*absb ) )
739 temp = ( scale*safmin )*max( abs( salfar ), abs( salfai ),
742 $ scale = scale / temp
750 salfar = ( scale*alphar( jc ) )*anrm
751 salfai = ( scale*alphai( jc ) )*anrm
752 sbeta = ( scale*beta( jc ) )*bnrm
754 alphar( jc ) = salfar
755 alphai( jc ) = salfai
integer function ilaenv(ISPEC, NAME, OPTS, N1, N2, N3, N4)
ILAENV
subroutine stgevc(SIDE, HOWMNY, SELECT, N, S, LDS, P, LDP, VL, LDVL, VR, LDVR, MM, M, WORK, INFO)
STGEVC
logical function lsame(CA, CB)
LSAME
subroutine shgeqz(JOB, COMPQ, COMPZ, N, ILO, IHI, H, LDH, T, LDT, ALPHAR, ALPHAI, BETA, Q, LDQ, Z, LDZ, WORK, LWORK, INFO)
SHGEQZ
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine sorgqr(M, N, K, A, LDA, TAU, WORK, LWORK, INFO)
SORGQR
subroutine sggbak(JOB, SIDE, N, ILO, IHI, LSCALE, RSCALE, M, V, LDV, INFO)
SGGBAK
subroutine slascl(TYPE, KL, KU, CFROM, CTO, M, N, A, LDA, INFO)
SLASCL multiplies a general rectangular matrix by a real scalar defined as cto/cfrom.
subroutine sormqr(SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC, WORK, LWORK, INFO)
SORMQR
real function slange(NORM, M, N, A, LDA, WORK)
SLANGE returns the value of the 1-norm, Frobenius norm, infinity-norm, or the largest absolute value ...
subroutine slaset(UPLO, M, N, ALPHA, BETA, A, LDA)
SLASET initializes the off-diagonal elements and the diagonal elements of a matrix to given values...
subroutine sggbal(JOB, N, A, LDA, B, LDB, ILO, IHI, LSCALE, RSCALE, WORK, INFO)
SGGBAL
subroutine sgghrd(COMPQ, COMPZ, N, ILO, IHI, A, LDA, B, LDB, Q, LDQ, Z, LDZ, INFO)
SGGHRD
real function slamch(CMACH)
SLAMCH
subroutine sgeqrf(M, N, A, LDA, TAU, WORK, LWORK, INFO)
SGEQRF
subroutine slacpy(UPLO, M, N, A, LDA, B, LDB)
SLACPY copies all or part of one two-dimensional array to another.