214 SUBROUTINE dgees( JOBVS, SORT, SELECT, N, A, LDA, SDIM, WR, WI,
215 $ VS, LDVS, WORK, LWORK, BWORK, INFO )
222 CHARACTER JOBVS, SORT
223 INTEGER INFO, LDA, LDVS, LWORK, N, SDIM
227 DOUBLE PRECISION A( lda, * ), VS( ldvs, * ), WI( * ), WORK( * ),
238 DOUBLE PRECISION ZERO, ONE
239 parameter( zero = 0.0d0, one = 1.0d0 )
242 LOGICAL CURSL, LASTSL, LQUERY, LST2SL, SCALEA, WANTST,
244 INTEGER HSWORK, I, I1, I2, IBAL, ICOND, IERR, IEVAL,
245 $ ihi, ilo, inxt, ip, itau, iwrk, maxwrk, minwrk
246 DOUBLE PRECISION ANRM, BIGNUM, CSCALE, EPS, S, SEP, SMLNUM
250 DOUBLE PRECISION DUM( 1 )
259 DOUBLE PRECISION DLAMCH, DLANGE
260 EXTERNAL lsame, ilaenv, dlamch, dlange
270 lquery = ( lwork.EQ.-1 )
271 wantvs = lsame( jobvs,
'V' )
272 wantst = lsame( sort,
'S' )
273 IF( ( .NOT.wantvs ) .AND. ( .NOT.lsame( jobvs,
'N' ) ) )
THEN 275 ELSE IF( ( .NOT.wantst ) .AND. ( .NOT.lsame( sort,
'N' ) ) )
THEN 277 ELSE IF( n.LT.0 )
THEN 279 ELSE IF( lda.LT.max( 1, n ) )
THEN 281 ELSE IF( ldvs.LT.1 .OR. ( wantvs .AND. ldvs.LT.n ) )
THEN 300 maxwrk = 2*n + n*ilaenv( 1,
'DGEHRD',
' ', n, 1, n, 0 )
303 CALL dhseqr(
'S', jobvs, n, 1, n, a, lda, wr, wi, vs, ldvs,
305 hswork = int( work( 1 ) )
307 IF( .NOT.wantvs )
THEN 308 maxwrk = max( maxwrk, n + hswork )
310 maxwrk = max( maxwrk, 2*n + ( n - 1 )*ilaenv( 1,
311 $
'DORGHR',
' ', n, 1, n, -1 ) )
312 maxwrk = max( maxwrk, n + hswork )
317 IF( lwork.LT.minwrk .AND. .NOT.lquery )
THEN 323 CALL xerbla(
'DGEES ', -info )
325 ELSE IF( lquery )
THEN 339 smlnum = dlamch(
'S' )
340 bignum = one / smlnum
341 CALL dlabad( smlnum, bignum )
342 smlnum = sqrt( smlnum ) / eps
343 bignum = one / smlnum
347 anrm = dlange(
'M', n, n, a, lda, dum )
349 IF( anrm.GT.zero .AND. anrm.LT.smlnum )
THEN 352 ELSE IF( anrm.GT.bignum )
THEN 357 $
CALL dlascl(
'G', 0, 0, anrm, cscale, n, n, a, lda, ierr )
363 CALL dgebal(
'P', n, a, lda, ilo, ihi, work( ibal ), ierr )
370 CALL dgehrd( n, ilo, ihi, a, lda, work( itau ), work( iwrk ),
371 $ lwork-iwrk+1, ierr )
377 CALL dlacpy(
'L', n, n, a, lda, vs, ldvs )
382 CALL dorghr( n, ilo, ihi, vs, ldvs, work( itau ), work( iwrk ),
383 $ lwork-iwrk+1, ierr )
392 CALL dhseqr(
'S', jobvs, n, ilo, ihi, a, lda, wr, wi, vs, ldvs,
393 $ work( iwrk ), lwork-iwrk+1, ieval )
399 IF( wantst .AND. info.EQ.0 )
THEN 401 CALL dlascl(
'G', 0, 0, cscale, anrm, n, 1, wr, n, ierr )
402 CALL dlascl(
'G', 0, 0, cscale, anrm, n, 1, wi, n, ierr )
405 bwork( i ) =
SELECT( wr( i ), wi( i ) )
411 CALL dtrsen(
'N', jobvs, bwork, n, a, lda, vs, ldvs, wr, wi,
412 $ sdim, s, sep, work( iwrk ), lwork-iwrk+1, idum, 1,
423 CALL dgebak(
'P',
'R', n, ilo, ihi, work( ibal ), n, vs, ldvs,
431 CALL dlascl(
'H', 0, 0, cscale, anrm, n, n, a, lda, ierr )
432 CALL dcopy( n, a, lda+1, wr, 1 )
433 IF( cscale.EQ.smlnum )
THEN 439 IF( ieval.GT.0 )
THEN 442 CALL dlascl(
'G', 0, 0, cscale, anrm, ilo-1, 1, wi,
443 $ max( ilo-1, 1 ), ierr )
444 ELSE IF( wantst )
THEN 455 IF( wi( i ).EQ.zero )
THEN 458 IF( a( i+1, i ).EQ.zero )
THEN 461 ELSE IF( a( i+1, i ).NE.zero .AND. a( i, i+1 ).EQ.
466 $
CALL dswap( i-1, a( 1, i ), 1, a( 1, i+1 ), 1 )
468 $
CALL dswap( n-i-1, a( i, i+2 ), lda,
469 $ a( i+1, i+2 ), lda )
471 CALL dswap( n, vs( 1, i ), 1, vs( 1, i+1 ), 1 )
473 a( i, i+1 ) = a( i+1, i )
483 CALL dlascl(
'G', 0, 0, cscale, anrm, n-ieval, 1,
484 $ wi( ieval+1 ), max( n-ieval, 1 ), ierr )
487 IF( wantst .AND. info.EQ.0 )
THEN 496 cursl =
SELECT( wr( i ), wi( i ) )
497 IF( wi( i ).EQ.zero )
THEN 501 IF( cursl .AND. .NOT.lastsl )
508 cursl = cursl .OR. lastsl
513 IF( cursl .AND. .NOT.lst2sl )
subroutine dtrsen(JOB, COMPQ, SELECT, N, T, LDT, Q, LDQ, WR, WI, M, S, SEP, WORK, LWORK, IWORK, LIWORK, INFO)
DTRSEN
subroutine dgebal(JOB, N, A, LDA, ILO, IHI, SCALE, INFO)
DGEBAL
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine dorghr(N, ILO, IHI, A, LDA, TAU, WORK, LWORK, INFO)
DORGHR
subroutine dlacpy(UPLO, M, N, A, LDA, B, LDB)
DLACPY copies all or part of one two-dimensional array to another.
subroutine dhseqr(JOB, COMPZ, N, ILO, IHI, H, LDH, WR, WI, Z, LDZ, WORK, LWORK, INFO)
DHSEQR
subroutine dgees(JOBVS, SORT, SELECT, N, A, LDA, SDIM, WR, WI, VS, LDVS, WORK, LWORK, BWORK, INFO)
DGEES computes the eigenvalues, the Schur form, and, optionally, the matrix of Schur vectors for GE ...
subroutine dlascl(TYPE, KL, KU, CFROM, CTO, M, N, A, LDA, INFO)
DLASCL multiplies a general rectangular matrix by a real scalar defined as cto/cfrom.
subroutine dswap(N, DX, INCX, DY, INCY)
DSWAP
subroutine dlabad(SMALL, LARGE)
DLABAD
subroutine dcopy(N, DX, INCX, DY, INCY)
DCOPY
subroutine dgehrd(N, ILO, IHI, A, LDA, TAU, WORK, LWORK, INFO)
DGEHRD
subroutine dgebak(JOB, SIDE, N, ILO, IHI, SCALE, M, V, LDV, INFO)
DGEBAK