234 SUBROUTINE cgsvj1( JOBV, M, N, N1, A, LDA, D, SVA, MV, V, LDV,
235 $ EPS, SFMIN, TOL, NSWEEP, WORK, LWORK, INFO )
247 COMPLEX A( LDA, * ), D( N ), V( LDV, * ), WORK( LWORK )
255 parameter( zero = 0.0e0, half = 0.5e0, one = 1.0e0)
259 REAL AAPP, AAPP0, AAPQ1, AAQQ, APOAQ, AQOAP, BIG,
260 $ bigtheta, cs, mxaapq, mxsinj, rootbig,
261 $ rooteps, rootsfmin, roottol, small, sn, t,
262 $ temp1, theta, thsign
263 INTEGER BLSKIP, EMPTSW, i, ibr, igl, IERR, IJBLSK,
264 $ iswrot, jbc, jgl, kbl, mvl, notrot, nblc, nblr,
265 $ p, pskipped, q, rowskip, swband
266 LOGICAL APPLV, ROTOK, RSVEC
270 INTRINSIC abs,
max, conjg, real,
min, sign, sqrt
277 EXTERNAL isamax, lsame, cdotc, scnrm2
289 applv = lsame( jobv,
'A' )
290 rsvec = lsame( jobv,
'V' )
291 IF( .NOT.( rsvec .OR. applv .OR. lsame( jobv,
'N' ) ) )
THEN
293 ELSE IF( m.LT.0 )
THEN
295 ELSE IF( ( n.LT.0 ) .OR. ( n.GT.m ) )
THEN
297 ELSE IF( n1.LT.0 )
THEN
299 ELSE IF( lda.LT.m )
THEN
301 ELSE IF( ( rsvec.OR.applv ) .AND. ( mv.LT.0 ) )
THEN
303 ELSE IF( ( rsvec.AND.( ldv.LT.n ) ).OR.
304 $ ( applv.AND.( ldv.LT.mv ) ) )
THEN
306 ELSE IF( tol.LE.eps )
THEN
308 ELSE IF( nsweep.LT.0 )
THEN
310 ELSE IF( lwork.LT.m )
THEN
318 CALL xerbla(
'CGSVJ1', -info )
324 ELSE IF( applv )
THEN
327 rsvec = rsvec .OR. applv
329 rooteps = sqrt( eps )
330 rootsfmin = sqrt( sfmin )
333 rootbig = one / rootsfmin
335 bigtheta = one / rooteps
336 roottol = sqrt( tol )
349 IF( ( nblr*kbl ).NE.n1 )nblr = nblr + 1
353 nblc = ( n-n1 ) / kbl
354 IF( ( nblc*kbl ).NE.( n-n1 ) )nblc = nblc + 1
355 blskip = ( kbl**2 ) + 1
358 rowskip =
min( 5, kbl )
374 DO 1993 i = 1, nsweep
390 DO 2000 ibr = 1, nblr
392 igl = ( ibr-1 )*kbl + 1
398 igl = ( ibr-1 )*kbl + 1
401 DO 2010 jbc = 1, nblc
403 jgl = ( jbc-1 )*kbl + n1 + 1
408 DO 2100 p = igl,
min( igl+kbl-1, n1 )
411 IF( aapp.GT.zero )
THEN
415 DO 2200 q = jgl,
min( jgl+kbl-1, n )
418 IF( aaqq.GT.zero )
THEN
425 IF( aaqq.GE.one )
THEN
426 IF( aapp.GE.aaqq )
THEN
427 rotok = ( small*aapp ).LE.aaqq
429 rotok = ( small*aaqq ).LE.aapp
431 IF( aapp.LT.( big / aaqq ) )
THEN
432 aapq = ( cdotc( m, a( 1, p ), 1,
433 $ a( 1, q ), 1 ) / aaqq ) / aapp
435 CALL ccopy( m, a( 1, p ), 1,
437 CALL clascl(
'G', 0, 0, aapp,
440 aapq = cdotc( m, work, 1,
441 $ a( 1, q ), 1 ) / aaqq
444 IF( aapp.GE.aaqq )
THEN
445 rotok = aapp.LE.( aaqq / small )
447 rotok = aaqq.LE.( aapp / small )
449 IF( aapp.GT.( small / aaqq ) )
THEN
450 aapq = ( cdotc( m, a( 1, p ), 1,
451 $ a( 1, q ), 1 ) /
max(aaqq,aapp) )
454 CALL ccopy( m, a( 1, q ), 1,
456 CALL clascl(
'G', 0, 0, aaqq,
459 aapq = cdotc( m, a( 1, p ), 1,
466 mxaapq =
max( mxaapq, -aapq1 )
470 IF( abs( aapq1 ).GT.tol )
THEN
471 ompq = aapq / abs(aapq)
481 theta = -half*abs( aqoap-apoaq )/ aapq1
482 IF( aaqq.GT.aapp0 )theta = -theta
484 IF( abs( theta ).GT.bigtheta )
THEN
487 CALL crot( m, a(1,p), 1, a(1,q), 1,
488 $ cs, conjg(ompq)*t )
490 CALL crot( mvl, v(1,p), 1,
491 $ v(1,q), 1, cs, conjg(ompq)*t )
493 sva( q ) = aaqq*sqrt(
max( zero,
494 $ one+t*apoaq*aapq1 ) )
495 aapp = aapp*sqrt(
max( zero,
496 $ one-t*aqoap*aapq1 ) )
497 mxsinj =
max( mxsinj, abs( t ) )
502 thsign = -sign( one, aapq1 )
503 IF( aaqq.GT.aapp0 )thsign = -thsign
504 t = one / ( theta+thsign*
506 cs = sqrt( one / ( one+t
508 mxsinj =
max( mxsinj, abs( sn ) )
509 sva( q ) = aaqq*sqrt(
max( zero,
510 $ one+t*apoaq*aapq1 ) )
511 aapp = aapp*sqrt(
max( zero,
512 $ one-t*aqoap*aapq1 ) )
514 CALL crot( m, a(1,p), 1, a(1,q), 1,
515 $ cs, conjg(ompq)*sn )
517 CALL crot( mvl, v(1,p), 1,
518 $ v(1,q), 1, cs, conjg(ompq)*sn )
525 IF( aapp.GT.aaqq )
THEN
526 CALL ccopy( m, a( 1, p ), 1,
528 CALL clascl(
'G', 0, 0, aapp, one,
531 CALL clascl(
'G', 0, 0, aaqq, one,
532 $ m, 1, a( 1, q ), lda,
534 CALL caxpy( m, -aapq, work,
536 CALL clascl(
'G', 0, 0, one, aaqq,
537 $ m, 1, a( 1, q ), lda,
539 sva( q ) = aaqq*sqrt(
max( zero,
540 $ one-aapq1*aapq1 ) )
541 mxsinj =
max( mxsinj, sfmin )
543 CALL ccopy( m, a( 1, q ), 1,
545 CALL clascl(
'G', 0, 0, aaqq, one,
548 CALL clascl(
'G', 0, 0, aapp, one,
549 $ m, 1, a( 1, p ), lda,
551 CALL caxpy( m, -conjg(aapq),
552 $ work, 1, a( 1, p ), 1 )
553 CALL clascl(
'G', 0, 0, one, aapp,
554 $ m, 1, a( 1, p ), lda,
556 sva( p ) = aapp*sqrt(
max( zero,
557 $ one-aapq1*aapq1 ) )
558 mxsinj =
max( mxsinj, sfmin )
565 IF( ( sva( q ) / aaqq )**2.LE.rooteps )
567 IF( ( aaqq.LT.rootbig ) .AND.
568 $ ( aaqq.GT.rootsfmin ) )
THEN
569 sva( q ) = scnrm2( m, a( 1, q ), 1)
573 CALL classq( m, a( 1, q ), 1, t,
575 sva( q ) = t*sqrt( aaqq )
578 IF( ( aapp / aapp0 )**2.LE.rooteps )
THEN
579 IF( ( aapp.LT.rootbig ) .AND.
580 $ ( aapp.GT.rootsfmin ) )
THEN
581 aapp = scnrm2( m, a( 1, p ), 1 )
585 CALL classq( m, a( 1, p ), 1, t,
587 aapp = t*sqrt( aapp )
595 pskipped = pskipped + 1
600 pskipped = pskipped + 1
604 IF( ( i.LE.swband ) .AND. ( ijblsk.GE.blskip ) )
610 IF( ( i.LE.swband ) .AND.
611 $ ( pskipped.GT.rowskip ) )
THEN
625 IF( aapp.EQ.zero )notrot = notrot +
626 $
min( jgl+kbl-1, n ) - jgl + 1
627 IF( aapp.LT.zero )notrot = 0
637 DO 2012 p = igl,
min( igl+kbl-1, n )
638 sva( p ) = abs( sva( p ) )
645 IF( ( sva( n ).LT.rootbig ) .AND. ( sva( n ).GT.rootsfmin ) )
647 sva( n ) = scnrm2( m, a( 1, n ), 1 )
651 CALL classq( m, a( 1, n ), 1, t, aapp )
652 sva( n ) = t*sqrt( aapp )
657 IF( ( i.LT.swband ) .AND. ( ( mxaapq.LE.roottol ) .OR.
658 $ ( iswrot.LE.n ) ) )swband = i
660 IF( ( i.GT.swband+1 ) .AND. ( mxaapq.LT.sqrt( real( n ) )*
661 $ tol ) .AND. ( real( n )*mxaapq*mxsinj.LT.tol ) )
THEN
665 IF( notrot.GE.emptsw )
GO TO 1994
684 q = isamax( n-p+1, sva( p ), 1 ) + p - 1
692 CALL cswap( m, a( 1, p ), 1, a( 1, q ), 1 )
693 IF( rsvec )
CALL cswap( mvl, v( 1, p ), 1, v( 1, q ), 1 )