314 RECURSIVE SUBROUTINE cuncsd( JOBU1, JOBU2, JOBV1T, JOBV2T, TRANS,
315 $ SIGNS, M, P, Q, X11, LDX11, X12,
316 $ LDX12, X21, LDX21, X22, LDX22, THETA,
317 $ U1, LDU1, U2, LDU2, V1T, LDV1T, V2T,
318 $ LDV2T, WORK, LWORK, RWORK, LRWORK,
326 CHARACTER jobu1, jobu2, jobv1t, jobv2t, signs, trans
334 COMPLEX u1( ldu1, * ), u2( , * ), v1t( ldv1t, * ),
335 $ v2t( ldv2t, * ), work( * ), x11( ldx11, * ),
336 $ x12( ldx12, * ), x21( ldx21, * ), x22( ldx22,
344 PARAMETER ( one = (1.0e0,0.0e0),
345 $ zero = (0.0e0,0.0e0) )
348 CHARACTER transt, signst
349 INTEGER childinfo, i, ib11d, ib11e, ib12d, ib12e,
350 $ ib21d, ib21e, ib22d, ib22e, , iorbdb,
351 $ iorglq, iorgqr, iphi
354 $ lorbdbworkopt, lorglqwork, lorglqworkmin,
355 $ lorglqworkopt, lorgqrwork, lorgqrworkmin,
356 $ lorgqrworkopt, lworkmin, lworkopt, p1, q1
357 LOGICAL colmajor, defaultsigns, lquery, wantu1, wantu2,
359 INTEGER lrworkmin, lrworkopt
378 wantu1 =
lsame( jobu1,
'Y' )
379 wantu2 =
lsame( jobu2,
'Y' )
380 wantv1t =
lsame( jobv1t,
'Y' )
381 wantv2t =
lsame( jobv2t,
'Y' )
382 colmajor = .NOT.
lsame( trans,
'T' )
383 defaultsigns = .NOT.
lsame( signs,
'O' )
384 lquery = lwork .EQ. -1
385 lrquery = lrwork .EQ. -1
388 ELSE IF( p .LT. 0 .OR. p .GT. m )
THEN
390 ELSE IF( q .LT. 0 .OR. q .GT. m )
THEN
392 ELSE IF ( colmajor .AND. ldx11 .LT.
max( 1, p ) )
THEN
394 ELSE IF (.NOT. colmajor .AND. ldx11 .LT.
max( 1, q ) )
THEN
396 ELSE IF (colmajor .AND. ldx12 .LT.
max( 1, p ) )
THEN
398 ELSE IF (.NOT. colmajor .AND. ldx12 .LT.
max( 1, m-q ) )
THEN
400 ELSE IF (colmajor .AND. ldx21 .LT.
max( 1, m-p ) )
THEN
402 ELSE IF (.NOT. colmajor .AND. ldx21 .LT.
max( 1, q ) )
THEN
404 ELSE IF (colmajor .AND. ldx22 .LT.
max( 1, m-p ) )
THEN
406 ELSE IF (.NOT. colmajor .AND. ldx22 .LT.
max( 1, m-q ) )
THEN
408 ELSE IF( wantu1 .AND. ldu1 .LT. p )
THEN
410 ELSE IF( wantu2 .AND. ldu2 .LT. m-p )
THEN
412 ELSE IF( wantv1t .AND. ldv1t .LT. q )
THEN
414 ELSE IF( wantv2t .AND. ldv2t .LT. m-q )
THEN
420 IF( info .EQ. 0 .AND.
min( p, m-p ) .LT.
min( q, m-q ) )
THEN
426 IF( defaultsigns )
THEN
431 CALL cuncsd( jobv1t, jobv2t, jobu1, jobu2, transt, signst, m,
432 $ q, p, x11, ldx11, x21, ldx21, x12, ldx12, x22,
433 $ ldx22, theta, v1t, ldv1t, v2t, ldv2t, u1, ldu1,
434 $ u2, ldu2, work, lwork, rwork, lrwork, iwork,
442 IF( info .EQ. 0 .AND. m-q .LT. q )
THEN
443 IF( defaultsigns )
THEN
448 CALL cuncsd( jobu2, jobu1, jobv2t, jobv1t, trans, signst, m,
449 $ m-p, m-q, x22, ldx22, x21, ldx21, x12, ldx12, x11,
450 $ ldx11, theta, u2, ldu2, u1, ldu1, v2t, ldv2t, v1t,
451 $ ldv1t, work, lwork, rwork, lrwork, iwork, info )
457 IF( info .EQ. 0 )
THEN
462 ib11d = iphi +
max( 1, q - 1 )
463 ib11e = ib11d +
max( 1, q )
464 ib12d = ib11e +
max( 1, q - 1 )
465 ib12e = ib12d +
max( 1, q )
466 ib21d = ib12e +
max( 1, q - 1 )
467 ib21e = ib21d +
max( 1, q )
468 ib22d = ib21e +
max( 1, q - 1 )
469 ib22e = ib22d +
max( 1, q )
470 ibbcsd = ib22e +
max( 1, q - 1 )
471 CALL cbbcsd( jobu1, jobu2, jobv1t, jobv2t, trans, m, p, q,
472 $ theta, theta, u1, ldu1, u2, ldu2, v1t, ldv1t,
473 $ v2t, ldv2t, theta, theta, theta, theta, theta,
474 $ theta, theta, theta, rwork, -1, childinfo )
475 lbbcsdworkopt = int( rwork(1) )
476 lbbcsdworkmin = lbbcsdworkopt
477 lrworkopt = ibbcsd + lbbcsdworkopt - 1
478 lrworkmin = ibbcsd + lbbcsdworkmin - 1
485 itauq1 = itaup2 +
max( 1, m - p )
486 itauq2 = itauq1 +
max( 1, q )
487 iorgqr = itauq2 +
max( 1, m - q )
488 CALL cungqr( m-q, m-q, m-q, u1,
max(1,m-q), u1, work, -1,
490 lorgqrworkopt = int( work(1) )
491 lorgqrworkmin =
max( 1, m - q )
492 iorglq = itauq2 +
max( 1, m - q )
493 CALL cunglq( m-q, m-q, m-q, u1,
max(1,m-q), u1, work, -1,
495 lorglqworkopt = int( work(1) )
496 lorglqworkmin =
max( 1, m - q )
497 iorbdb = itauq2 +
max( 1, m - q )
498 CALL cunbdb( trans, signs, m, p, q, x11, ldx11, x12, ldx12,
499 $ x21, ldx21, x22, ldx22, theta, theta, u1, u2,
500 $ v1t, v2t, work, -1, childinfo )
501 lorbdbworkopt = int( work(1) )
502 lorbdbworkmin = lorbdbworkopt
503 lworkopt =
max( iorgqr + lorgqrworkopt, iorglq + lorglqworkopt,
504 $ iorbdb + lorbdbworkopt ) - 1
505 lworkmin =
max( iorgqr + lorgqrworkmin, iorglq + lorglqworkmin,
506 $ iorbdb + lorbdbworkmin ) - 1
507 work(1) =
max(lworkopt,lworkmin)
509 IF( lwork .LT. lworkmin
510 $ .AND. .NOT. ( lquery .OR. lrquery ) )
THEN
512 ELSE IF( lrwork .LT. lrworkmin
513 $ .AND. .NOT. ( lquery .OR. lrquery ) )
THEN
516 lorgqrwork = lwork - iorgqr + 1
517 lorglqwork = lwork - iorglq + 1
518 lorbdbwork = lwork - iorbdb + 1
519 lbbcsdwork = lrwork - ibbcsd + 1
525 IF( info .NE. 0 )
THEN
526 CALL xerbla(
'CUNCSD', -info )
528 ELSE IF( lquery .OR. lrquery )
THEN
534 CALL cunbdb( trans, signs, m, p, q, x11, ldx11, x12, ldx12, x21,
535 $ ldx21, x22, ldx22, theta, rwork(iphi), work(itaup1),
536 $ work(itaup2), work(itauq1), work(itauq2),
537 $ work(iorbdb), lorbdbwork, childinfo )
542 IF( wantu1 .AND. p .GT. 0 )
THEN
543 CALL clacpy(
'L', p, q, x11, ldx11, u1, ldu1 )
544 CALL cungqr( p, p, q, u1, ldu1, work(itaup1), work(iorgqr),
547 IF( wantu2 .AND. m-p .GT. 0 )
THEN
548 CALL clacpy(
'L', m-p, q, x21, ldx21, u2, ldu2 )
549 CALL cungqr( m-p, m-p, q, u2, ldu2, work(itaup2),
550 $ work(iorgqr), lorgqrwork, info )
552 IF( wantv1t .AND. q .GT. 0 )
THEN
553 CALL clacpy(
'U', q-1, q-1, x11(1,2), ldx11, v1t(2,2),
560 CALL cunglq( q-1, q-1, q-1, v1t(2,2), ldv1t, work(itauq1),
561 $ work(iorglq), lorglqwork, info )
563 IF( wantv2t .AND. m-q .GT. 0 )
THEN
564 CALL clacpy(
'U', p, m-q, x12, ldx12, v2t, ldv2t )
565 IF( m-p .GT. q )
THEN
566 CALL clacpy(
'U', m-p-q, m-p-q, x22(q+1,p+1), ldx22,
567 $ v2t(p+1,p+1), ldv2t )
570 CALL cunglq( m-q, m-q, m-q, v2t, ldv2t, work(itauq2),
571 $ work(iorglq), lorglqwork, info )
575 IF( wantu1 .AND. p .GT. 0 )
THEN
576 CALL clacpy(
'U', q, p, x11, ldx11, u1, ldu1 )
577 CALL cunglq( p, p, q, u1, ldu1, work(itaup1), work(iorglq),
580 IF( wantu2 .AND. m-p .GT. 0 )
THEN
581 CALL clacpy(
'U', q, m-p, x21, ldx21, u2, ldu2 )
582 CALL cunglq( m-p, m-p, q, u2, ldu2, work(itaup2),
583 $ work(iorglq), lorglqwork, info )
585 IF( wantv1t .AND. q .GT. 0 )
THEN
586 CALL clacpy(
'L', q-1, q-1, x11(2,1), ldx11, v1t(2,2),
593 CALL cungqr( q-1, q-1, q-1, v1t(2,2), ldv1t, work(itauq1),
594 $ work(iorgqr), lorgqrwork, info )
596 IF( wantv2t .AND. m-q .GT. 0 )
THEN
599 CALL clacpy(
'L', m-q, p, x12, ldx12, v2t, ldv2t )
600 IF ( m .GT. p+q )
THEN
601 CALL clacpy(
'L', m-p-q, m-p-q, x22(p1,q1), ldx22,
602 $ v2t(p+1,p+1), ldv2t )
604 CALL cungqr( m-q, m-q, m-q, v2t, ldv2t, work(itauq2),
605 $ work(iorgqr), lorgqrwork, info )
611 CALL cbbcsd( jobu1, jobu2, jobv1t, jobv2t, trans, m, p, q, theta,
612 $ rwork(iphi), u1, ldu1, u2, ldu2, v1t, ldv1t, v2t,
613 $ ldv2t, rwork(ib11d), rwork(ib11e), rwork(ib12d),
614 $ rwork(ib12e), rwork(ib21d), rwork(ib21e),
615 $ rwork(ib22d), rwork(ib22e), rwork(ibbcsd),
623 IF( q .GT. 0 .AND. wantu2 )
THEN
631 CALL clapmt( .false., m-p, m-p, u2, ldu2, iwork )
636 IF( m .GT. 0 .AND. wantv2t )
THEN
638 iwork(i) = m - p - q + i
643 IF( .NOT. colmajor )
THEN
644 CALL clapmt( .false., m-q, m-q, v2t, ldv2t, iwork )
646 CALL clapmr( .false., m-q, m-q, v2t, ldv2t, iwork )