473 SUBROUTINE sgejsv( JOBA, JOBU, JOBV, JOBR, JOBT, JOBP,
474 $ M, N, A, LDA, SVA, U, LDU, V, LDV,
475 $ WORK, LWORK, IWORK, INFO )
483 INTEGER INFO, LDA, LDU, LDV, LWORK, M, N
486 REAL A( LDA, * ), SVA( N ), U( LDU, * ), V( LDV, * ),
489 CHARACTER*1 JOBA, JOBP, JOBR, JOBT, , JOBV
496 PARAMETER ( ZERO = 0.0e0, one = 1.0e0 )
499 REAL AAPP, AAQQ, AATMAX, AATMIN, BIG, BIG1, COND_OK,
500 $ CONDR1, CONDR2, ENTRA, ENTRAT, EPSLN, MAXPRJ, SCALEM,
501 $ sconda, sfmin, small, temp1, uscal1, uscal2, xsc
502 INTEGER IERR, N1, NR, NUMRANK, p, q, WARNING
503 LOGICAL ALMORT, DEFR, ERREST, GOSCAL, JRACC, KILL, LSVEC,
504 $ l2aber, l2kill, l2pert, l2rank, l2tran,
505 $ noscal, rowpiv, rsvec, transp
508 INTRINSIC abs, alog,
max,
min, float, nint, sign, sqrt
514 EXTERNAL isamax, lsame, slamch, snrm2
526 lsvec = lsame( jobu,
'U' ) .OR. lsame( jobu,
'F' )
527 jracc = lsame( jobv,
'J' )
528 rsvec = lsame( jobv,
'V' ) .OR. jracc
529 rowpiv = lsame( joba,
'F' ) .OR. lsame( joba,
'G' )
530 l2rank = lsame( joba,
'R' )
531 l2aber = lsame( joba,
'A' )
532 errest = lsame( joba,
'E' ) .OR. lsame( joba,
'G' )
533 l2tran = lsame( jobt,
'T' )
534 l2kill = lsame( jobr,
'R' )
535 defr = lsame( jobr,
'N' )
536 l2pert = lsame( jobp,
'P' )
538 IF ( .NOT.(rowpiv .OR. l2rank .OR. l2aber .OR.
539 $ errest .OR. lsame( joba,
'C' ) ))
THEN
541 ELSE IF ( .NOT.( lsvec .OR. lsame( jobu,
'N' ) .OR.
542 $ lsame( jobu,
'W' )) )
THEN
544 ELSE IF ( .NOT.( rsvec .OR. lsame( jobv,
'N' ) .OR.
545 $ lsame( jobv,
'W' )) .OR. ( jracc .AND. (.NOT.lsvec) ) )
THEN
547 ELSE IF ( .NOT. ( l2kill .OR. defr ) )
THEN
549 ELSE IF ( .NOT. ( l2tran .OR. lsame( jobt,
'N' ) ) )
THEN
551 ELSE IF ( .NOT. ( l2pert .OR. lsame( jobp,
'N' ) ) )
THEN
553 ELSE IF ( m .LT. 0 )
THEN
555 ELSE IF ( ( n .LT. 0 ) .OR. ( n .GT. m ) )
THEN
557 ELSE IF ( lda .LT. m )
THEN
559 ELSE IF ( lsvec .AND. ( ldu .LT. m ) )
THEN
561 ELSE IF ( rsvec .AND. ( ldv .LT. n ) )
THEN
563 ELSE IF ( (.NOT.(lsvec .OR. rsvec .OR. errest).AND.
564 $ (lwork .LT.
max(7,4*n+1,2*m+n))) .OR.
566 $ (lwork .LT.
max(7,4*n+n*n,2*m+n))) .OR.
567 $ (lsvec .AND. (.NOT.rsvec) .AND. (lwork .LT.
max(7,2*m+n,4*n+1)))
569 $ (rsvec .AND. (.NOT.lsvec) .AND. (lwork .LT.
max(7,2*m+n,4*n+1)))
571 $ (lsvec .AND. rsvec .AND. (.NOT.jracc) .AND.
572 $ (lwork.LT.
max(2*m+n,6*n+2*n*n)))
573 $ .OR. (lsvec .AND. rsvec .AND. jracc .AND.
574 $ lwork.LT.
max(2*m+n,4*n+n*n,2*n+n*n+6)))
582 IF ( info .NE. 0 )
THEN
584 CALL xerbla(
'SGEJSV', - info )
590 IF ( ( m .EQ. 0 ) .OR. ( n .EQ. 0 ) )
THEN
600 IF ( lsame
'F' ) ) n1 = m
607 epsln = slamch(
'Epsilon')
608 sfmin = slamch(
'SafeMinimum')
609 small = sfmin / epsln
619 scalem = one / sqrt(float(m)*float(n))
625 CALL slassq( m, a(1,p), 1, aapp, aaqq )
626 IF ( aapp .GT. big )
THEN
628 CALL xerbla(
'SGEJSV', -info )
632 IF ( ( aapp .LT. (big / aaqq) ) .AND. noscal )
THEN
636 sva(p) = aapp * ( aaqq * scalem )
639 CALL sscal( p-1, scalem, sva, 1 )
644 IF ( noscal ) scalem = one
649 aapp =
max( aapp, sva(p) )
650 IF ( sva(p) .NE. zero ) aaqq =
min( aaqq, sva(p) )
655 IF ( aapp .EQ. zero )
THEN
656 IF ( lsvec )
CALL slaset(
'G', m, n1, zero, one, u, ldu )
657 IF ( rsvec )
CALL slaset(
'G', n, n, zero, one, v, ldv )
660 IF ( errest ) work(3) = one
661 IF ( lsvec .AND. rsvec )
THEN
680 IF ( aaqq .LE. sfmin )
THEN
691 CALL slascl(
'G',0,0,sva(1),scalem, m,1,a(1,1),lda,ierr )
692 CALL slacpy(
'A', m, 1, a, lda, u, ldu )
694 IF ( n1 .NE. n )
THEN
695 CALL sgeqrf( m, n, u,ldu, work, work(n+1),lwork-n,ierr )
696 CALL sorgqr( m,n1,1, u,ldu,work,work(n+1),lwork-n,ierr )
697 CALL scopy( m, a(1,1), 1, u(1,1), 1 )
703 IF ( sva(1) .LT. (big*scalem) )
THEN
704 sva(1) = sva(1) / scalem
707 work(1) = one / scalem
709 IF ( sva(1) .NE. zero )
THEN
711 IF ( ( sva(1) / scalem) .GE. sfmin )
THEN
721 IF ( errest ) work(3) = one
722 IF ( lsvec .AND. rsvec )
THEN
735 l2tran = l2tran .AND. ( m .EQ. n )
739 IF ( rowpiv .OR. l2tran )
THEN
750 CALL slassq( n, a(p,1), lda, xsc, temp1 )
753 work(m+n+p) = xsc * scalem
754 work(n+p) = xsc * (scalem*sqrt(temp1))
755 aatmax =
max( aatmax, work(n+p) )
756 IF (work(n+p) .NE. zero) aatmin =
min(aatmin,work(n+p))
760 work(m+n+p) = scalem*abs( a(p,isamax(n,a(p,1),lda)) )
761 aatmax =
max( aatmax, work(m+n+p) )
762 aatmin =
min( aatmin, work(m+n+p) )
781 CALL slassq( n, sva, 1, xsc, temp1 )
786 big1 = ( ( sva(p) / xsc )**2 ) * temp1
787 IF ( big1 .NE. zero ) entra = entra + big1 * alog(big1)
789 entra = - entra / alog(float(n))
799 big1 = ( ( work(p) / xsc )**2 ) * temp1
800 IF ( big1 .NE. zero ) entrat = entrat + big1 * alog(big1)
802 entrat = - entrat / alog(float(m))
807 transp = ( entrat .LT. entra )
853 temp1 = sqrt( big / float(n) )
855 CALL slascl(
'G', 0, 0, aapp, temp1, n, 1, sva, n, ierr )
856 IF ( aaqq .GT. (aapp * sfmin) )
THEN
857 aaqq = ( aaqq / aapp ) * temp1
859 aaqq = ( aaqq * temp1 ) / aapp
861 temp1 = temp1 * scalem
862 CALL slascl(
'G', 0, 0, aapp, temp1, m, n, a, lda, ierr )
886 IF ( ( aaqq.LT.sqrt(sfmin) ) .AND. lsvec
THEN
893 IF ( sva(p) .LT. xsc )
THEN
894 CALL slaset(
'A', m, 1, zero, zero, a(1,p), lda )
909 q = isamax( m-p+1, work(m+n+p), 1 ) + p - 1
913 work(m+n+p) = work(m+n+q)
917 CALL slaswp( n, a, lda, 1, m-1, iwork(2*n+1), 1 )
939 CALL sgeqp3( m,n,a,lda, iwork,work, work(n+1),lwork-n, ierr )
957 IF ( abs(a(p,p)) .GE. (temp1*abs(a(1,1))) )
THEN
964 ELSE IF ( l2rank )
THEN
970 IF ( ( abs(a(p,p)) .LT. (epsln*abs(a(p-1,p-1))) ) .OR.
971 $ ( abs(a(p,p)) .LT. small ) .OR.
972 $ ( l2kill .AND. (abs(a(p,p)) .LT. temp1) ) )
GO TO 3402
987 IF ( ( abs(a(p,p)) .LT. small ) .OR.
988 $ ( l2kill .AND. (abs(a(p,p)) .LT. temp1) ) )
GO TO 3302
996 IF ( nr .EQ. n )
THEN
999 temp1 = abs(a(p,p)) / sva(iwork(p))
1000 maxprj =
min( maxprj, temp1 )
1002 IF ( maxprj**2 .GE. one - float(n)*epsln ) almort = .true.
1011 IF ( n .EQ. nr )
THEN
1014 CALL slacpy(
'U', n, n, a, lda, v, ldv )
1016 temp1 = sva(iwork(p))
1017 CALL sscal( p, one/temp1, v(1,p), 1 )
1019 CALL spocon(
'U', n, v, ldv, one,
1020 $ work(n+1), iwork(2*n+m+1), ierr )
1021 ELSE IF ( lsvec )
THEN
1023 CALL slacpy(
'U', n, n, a, lda, u, ldu )
1025 temp1 = sva(iwork(p))
1026 CALL sscal( p, one/temp1, u(1,p), 1 )
1028 CALL spocon(
'U', n, u, ldu, one, temp1,
1029 $ work(n+1), iwork(2*n+m+1), ierr )
1031 CALL slacpy(
'U', n, n, a, lda, work(n+1), n )
1033 temp1 = sva(iwork(p))
1034 CALL sscal( p, one/temp1, work(n+(p-1)*n+1), 1 )
1037 CALL spocon(
'U', n, work(n+1), n, one, temp1,
1038 $ work(n+n*n+1), iwork(2*n+m+1), ierr )
1040 sconda = one / sqrt(temp1)
1048 l2pert = l2pert .AND. ( abs( a(1,1)/a(nr,nr) ) .GT. sqrt(big1) )
1053 IF ( .NOT. ( rsvec .OR. lsvec ) )
THEN
1058 DO 1946 p = 1,
min( n-1, nr )
1059 CALL scopy( n-p, a(p,p+1), lda, a(p+1,p), 1 )
1074 IF ( .NOT. almort )
THEN
1078 xsc = epsln / float(n)
1080 temp1 = xsc*abs(a(q,q))
1082 IF ( ( (p.GT.q) .AND. (abs(a(p,q)).LE.temp1) )
1083 $ .OR. ( p .LT. q ) )
1084 $ a(p,q) = sign( temp1, a(p,q) )
1088 CALL slaset(
'U', nr-1,nr-1, zero,zero, a(1,2),lda )
1093 CALL sgeqrf( n,nr, a,lda, work, work(n+1),lwork-n, ierr )
1096 DO 1948 p = 1, nr - 1
1097 CALL scopy( nr-p, a(p,p+1), lda, a(p+1,p), 1 )
1108 xsc = epsln / float(n)
1110 temp1 = xsc*abs(a(q,q))
1112 IF ( ( (p.GT.q) .AND. (abs(a(p,q)).LE.temp1) )
1113 $ .OR. ( p .LT. q ) )
1114 $ a(p,q) = sign( temp1, a(p,q) )
1118 CALL slaset(
'U', nr-1, nr-1, zero, zero, a(1,2), lda )
1125 CALL sgesvj(
'L',
'NoU',
'NoV', nr, nr, a, lda, sva,
1126 $ n, v, ldv, work, lwork, info )
1129 numrank = nint(work(2))
1132 ELSE IF ( rsvec .AND. ( .NOT. lsvec ) )
THEN
1140 CALL scopy( n-p+1, a(p,p), lda, v(p,p), 1 )
1142 CALL slaset(
'Upper', nr-1, nr-1, zero, zero, v(1,2), ldv )
1144 CALL sgesvj(
'L',
'U',
'N', n, nr, v,ldv, sva, nr, a,lda,
1145 $ work, lwork, info )
1147 numrank = nint(work(2))
1154 CALL slaset(
'Lower', nr-1, nr-1, zero, zero, a(2,1), lda )
1155 CALL sgelqf( nr, n, a, lda, work, work(n+1), lwork-n, ierr)
1156 CALL slacpy(
'Lower', nr, nr, a, lda, v, ldv )
1157 CALL slaset(
'Upper', nr-1, nr-1, zero, zero, v(1,2), ldv )
1158 CALL sgeqrf( nr, nr, v, ldv, work(n+1), work(2*n+1),
1161 CALL scopy( nr-p+1, v(p,p), ldv, v(p,p), 1 )
1163 CALL slaset(
'Upper', nr-1, nr-1, zero, zero, v(1,2), ldv )
1165 CALL sgesvj(
'Lower',
'U',
'N', nr, nr, v,ldv, sva, nr, u,
1166 $ ldu, work(n+1), lwork-n, info )
1168 numrank = nint(work(n+2))
1169 IF ( nr .LT. n )
THEN
1170 CALL slaset(
'A',n-nr, nr, zero,zero, v(nr+1,1), ldv )
1171 CALL slaset(
'A',nr, n-nr, zero,zero, v(1,nr+1), ldv )
1172 CALL slaset(
'A',n-nr,n-nr,zero,one, v(nr+1,nr+1), ldv )
1175 CALL sormlq(
'Left',
'Transpose', n, n, nr, a, lda, work,
1176 $ v, ldv, work(n+1), lwork-n, ierr )
1181 CALL scopy( n, v(p,1), ldv, a(iwork(p),1), lda )
1183 CALL slacpy(
'All', n, n, a, lda, v, ldv )
1186 CALL slacpy(
'All', n, n, v, ldv, u, ldu )
1189 ELSE IF ( lsvec .AND. ( .NOT. rsvec ) )
THEN
1196 CALL scopy( n-p+1, a(p,p), lda, u(p,p), 1 )
1198 CALL slaset(
'Upper', nr-1, nr-1, zero, zero, u(1,2), ldu )
1200 CALL sgeqrf( n, nr, u, ldu, work(n+1), work(2*n+1),
1203 DO 1967 p = 1, nr - 1
1204 CALL scopy( nr-p, u(p,p+1), ldu, u(p+1,p), 1 )
1206 CALL slaset(
'Upper', nr-1, nr-1, zero, zero, u(1,2), ldu )
1208 CALL sgesvj(
'Lower',
'U',
'N', nr,nr, u, ldu, sva, nr, a,
1209 $ lda, work(n+1), lwork-n, info )
1211 numrank = nint(work(n+2))
1213 IF ( nr .LT. m )
THEN
1214 CALL slaset(
'A', m-nr, nr,zero, zero, u(nr+1,1), ldu )
1215 IF ( nr .LT. n1 )
THEN
1216 CALL slaset(
'A',nr, n1-nr, zero, zero, u(1,nr+1), ldu )
1217 CALL slaset(
'A',m-nr,n1-nr,zero,one,u(nr+1,nr+1), ldu )
1221 CALL sormqr(
'Left',
'No Tr', m, n1, n, a, lda, work, u,
1222 $ ldu, work(n+1), lwork-n, ierr )
1228 xsc = one / snrm2( m, u(1,p), 1 )
1229 CALL sscal( m, xsc, u(1,p), 1 )
1233 CALL slacpy(
'All', n, n, u, ldu, v, ldv )
1240 IF ( .NOT. jracc )
THEN
1242 IF ( .NOT. almort )
THEN
1252 CALL scopy( n-p+1, a
1270 temp1 = xsc*abs( v(q,q) )
1272 IF ( ( p .GT. q ) .AND. ( abs(v(p,q)) .LE. temp1 )
1273 $ .OR. ( p .LT. q ) )
1274 $ v(p,q) = sign( temp1, v(p,q) )
1275 IF ( p .LT. q ) v(p,q) = - v(p,q)
1279 CALL slaset(
'U', nr-1, nr-1, zero, zero, v(1,2), ldv )
1286 CALL slacpy(
'L', nr, nr, v, ldv, work(2*n+1), nr )
1288 temp1 = snrm2(nr-p+1,work(2*n+(p-1)*nr+p),1)
1289 CALL sscal(nr-p+1,one/temp1,work(2*n+(p-1)*nr+p),1)
1291 CALL spocon(
'Lower',nr,work(2*n+1),nr,one,temp1,
1293 condr1 = one / sqrt(temp1)
1299 cond_ok = sqrt(float(nr))
1302 IF ( condr1 .LT. cond_ok )
THEN
1307 CALL sgeqrf( n, nr, v, ldv, work(n+1), work(2*n+1),
1311 xsc = sqrt(small)/epsln
1313 DO 3958 q = 1, p - 1
1314 temp1 = xsc *
min(abs(v(p,p)),abs(v(q,q)))
1315 IF ( abs(v(q,p)) .LE. temp1 )
1316 $ v(q,p) = sign( temp1, v(q,p) )
1322 $
CALL slacpy(
'A', n, nr, v, ldv, work(2*n+1), n )
1326 DO 1969 p = 1, nr - 1
1327 CALL scopy( nr-p, v(p,p+1), ldv, v(p+1,p), 1 )
1345 CALL sgeqp3( n, nr, v, ldv, iwork(n+1), work(n+1),
1346 $ work(2*n+1), lwork-2*n, ierr )
1352 DO 3968 q = 1, p - 1
1353 temp1 = xsc *
min(abs(v(p,p)),abs(v(q,q)))
1354 IF ( abs(v(q,p)) .LE. temp1 )
1355 $ v(q,p) = sign( temp1, v(q,p) )
1360 CALL slacpy(
'A', n, nr, v, ldv, work(2*n+1), n )
1365 DO 8971 q = 1, p - 1
1366 temp1 = xsc *
min(abs(v(p,p)),abs(v(q,q)))
1367 v(p,q) = - sign( temp1, v(q,p) )
1371 CALL slaset(
'L',nr-1,nr-1,zero,zero,v(2,1),ldv )
1374 CALL sgelqf( nr, nr, v, ldv, work(2*n+n*nr+1),
1375 $ work(2*n+n*nr+nr+1), lwork-2*n-n*nr-nr, ierr )
1377 CALL slacpy(
'L',nr,nr,v,ldv,work(2*n+n*nr+nr+1),nr )
1379 temp1 = snrm2( p, work(2*n+n*nr+nr+p), nr )
1380 CALL sscal( p, one/temp1, work(2*n+n*nr+nr+p), nr )
1382 CALL spocon(
'L',nr,work(2*n+n*nr+nr+1),nr,one,temp1,
1383 $ work(2*n+n*nr+nr+nr*nr+1),iwork(m+2*n+1),ierr )
1384 condr2 = one / sqrt(temp1)
1386 IF ( condr2 .GE. cond_ok )
THEN
1391 CALL slacpy(
'U', nr, nr, v, ldv, work(2*n+1), n )
1401 temp1 = xsc * v(q,q)
1402 DO 4969 p = 1, q - 1
1404 v(p,q) = - sign( temp1, v(p,q) )
1408 CALL slaset(
'U', nr-1,nr-1, zero,zero, v(1,2), ldv )
1417 IF ( condr1 .LT. cond_ok )
THEN
1419 CALL sgesvj(
'L',
'U',
'N',nr,nr,v,ldv,sva,nr,u,
1420 $ ldu,work(2*n+n*nr+nr+1),lwork-2*n-n*nr-nr,info )
1421 scalem = work(2*n+n*nr+nr+1)
1422 numrank = nint(work(2*n+n*nr+nr+2))
1424 CALL scopy( nr, v(1,p), 1, u(1,p), 1 )
1425 CALL sscal( nr, sva(p), v(1,p), 1 )
1430 IF ( nr .EQ. n )
THEN
1435 CALL strsm(
'L',
'U',
'N',
'N', nr,nr,one, a,lda, v,ldv )
1441 CALL strsm(
'L',
'U',
'T',
'N',nr,nr,one,work(2*n+1),
1443 IF ( nr .LT. n )
THEN
1444 CALL slaset(
'A',n-nr,nr,zero,zero,v(nr+1,1),ldv)
1445 CALL slaset(
'A',nr,n-nr,zero,zero,v(1,nr+1),ldv)
1446 CALL slaset(
'A',n-nr,n-nr,zero,one,v(nr+1,nr+1),ldv)
1448 CALL sormqr(
'L',
'N',n,n,nr,work(2*n+1),n,work(n+1),
1449 $ v,ldv,work(2*n+n*nr+nr+1),lwork-2*n-n*nr-nr,ierr)
1452 ELSE IF ( condr2 .LT. cond_ok )
THEN
1460 CALL sgesvj(
'L',
'U',
'N', nr, nr, v, ldv, sva, nr, u,
1461 $ ldu, work(2*n+n*nr+nr+1), lwork-2*n-n*nr-nr, info )
1462 scalem = work(2*n+n*nr+nr+1)
1463 numrank = nint(work(2*n+n*nr+nr+2))
1465 CALL scopy( nr, v(1,p), 1, u(1,p), 1 )
1466 CALL sscal( nr, sva(p), u(1,p), 1 )
1468 CALL strsm(
'L',
'U',
'N',
'N',nr,nr,one,work(2*n+1),n,u,ldu)
1475 u(p,q) = work(2*n+n*nr+nr+p)
1478 IF ( nr .LT. n )
THEN
1479 CALL slaset(
'A',n-nr,nr,zero,zero,v(nr+1,1),ldv )
1480 CALL slaset(
'A',nr,n-nr,zero,zero,v(1,nr+1),ldv )
1481 CALL slaset(
'A',n-nr,n-nr,zero,one,v(nr+1,nr+1),ldv )
1483 CALL sormqr(
'L',
'N',n,n,nr,work(2*n+1),n,work(n+1),
1484 $ v,ldv,work(2*n+n*nr+nr+1),lwork-2*n-n*nr-nr,ierr )
1497 CALL sgesvj(
'L',
'U',
'V', nr, nr, v, ldv, sva, nr, u,
1498 $ ldu, work(2*n+n*nr+nr+1), lwork-2*n-n*nr-nr, info )
1499 scalem = work(2*n+n*nr+nr+1)
1500 numrank = nint(work(2*n+n*nr+nr+2))
1501 IF ( nr .LT. n )
THEN
1502 CALL slaset(
'A',n-nr,nr,zero,zero,v(nr+1,1),ldv )
1503 CALL slaset(
'A',nr,n-nr,zero,zero,v(1,nr+1),ldv )
1504 CALL slaset(
'A',n-nr,n-nr,zero,one,v(nr+1,nr+1),ldv )
1506 CALL sormqr(
'L',
'N',n,n,nr,work(2*n+1),n,work(n+1),
1507 $ v,ldv,work(2*n+n*nr+nr+1),lwork-2*n-n*nr-nr,ierr )
1509 CALL sormlq(
'L',
'T', nr, nr, nr, work(2*n+1), n,
1510 $ work(2*n+n*nr+1), u, ldu, work(2*n+n*nr+nr+1),
1511 $ lwork-2*n-n*nr-nr, ierr )
1514 work(2*n+n*nr+nr+iwork(n+p)) = u(p,q)
1517 u(p,q) = work(2*n+n*nr+nr+p)
1527 temp1 = sqrt(float(n)) * epsln
1530 work(2*n+n*nr+nr+iwork(p)) = v(p,q)
1533 v(p,q) = work(2*n+n*nr+nr+p)
1535 xsc = one / snrm2( n, v(1,q), 1 )
1536 IF ( (xsc .LT. (one-temp1)) .OR. (xsc .GT. (one+temp1)) )
1537 $
CALL sscal( n, xsc, v(1,q), 1 )
1541 IF ( nr .LT. m )
THEN
1542 CALL slaset(
'A', m-nr, nr, zero, zero, u(nr+1,1), ldu )
1543 IF ( nr .LT. n1 )
THEN
1544 CALL slaset(
'A',nr,n1-nr,zero,zero,u(1,nr+1),ldu)
1545 CALL slaset(
'A',m-nr,n1-nr,zero,one,u(nr+1,nr+1),ldu)
1552 CALL sormqr(
'Left',
'No_Tr', m, n1, n, a, lda, work, u,
1553 $ ldu, work(n+1), lwork-n, ierr )
1556 temp1 = sqrt(float(m)) * epsln
1558 xsc = one / snrm2( m, u(1,p), 1 )
1559 IF ( (xsc .LT. (one-temp1)) .OR. (xsc .GT. (one+temp1)) )
1560 $
CALL sscal( m, xsc, u(1,p), 1 )
1567 $
CALL slaswp( n1, u, ldu, 1, m-1, iwork(2*n+1), -1 )
1574 CALL slacpy(
'Upper', n, n, a, lda, work(n+1), n )
1578 temp1 = xsc * work( n + (p-1)*n + p )
1579 DO 5971 q = 1, p - 1
1580 work(n+(q-1)*n+p)=-sign(temp1,work(n+(p-1)*n+q))
1584 CALL slaset(
'Lower',n-1,n-1,zero,zero,work(n+2),n
1587 CALL sgesvj(
'Upper',
'U',
'N', n, n, work(n+1), n, sva,
1588 $ n, u, ldu, work(n+n*n+1), lwork-n-n*n, info )
1590 scalem = work(n+n*n+1)
1591 numrank = nint(work(n+n*n+2))
1593 CALL scopy( n, work(n+(p-1)*n+1), 1, u(1,p), 1 )
1594 CALL sscal( n, sva(p), work(n+(p-1)*n+1), 1 )
1597 CALL strsm(
'Left',
'Upper',
'NoTrans',
'No UD', n, n,
1600 CALL scopy( n, work(n+p), n, v(iwork(p),1), ldv )
1602 temp1 = sqrt(float(n))*epsln
1604 xsc = one / snrm2( n, v(1,p), 1 )
1605 IF ( (xsc .LT. (one-temp1)) .OR. (xsc .GT. (one+temp1)) )
1606 $
CALL sscal( n, xsc, v(1,p), 1 )
1611 IF ( n .LT. m )
THEN
1612 CALL slaset(
'A', m-n, n, zero, zero, u(n+1,1), ldu )
1613 IF ( n .LT. n1 )
THEN
1614 CALL slaset(
'A',n, n1-n, zero, zero, u(1,n+1),ldu )
1615 CALL slaset(
'A',m-n,n1-n, zero, one,u(n+1,n+1),ldu )
1618 CALL sormqr(
'Left',
'No Tr', m, n1, n, a, lda, work, u,
1619 $ ldu, work(n+1), lwork-n, ierr )
1620 temp1 = sqrt(float(m))*epsln
1622 xsc = one / snrm2( m, u(1,p), 1 )
1623 IF ( (xsc .LT. (one-temp1)) .OR. (xsc .GT. (one+temp1)) )
1624 $
CALL sscal( m, xsc, u(1,p), 1 )
1628 $
CALL slaswp( n1, u, ldu, 1, m-1, iwork(2*n+1), -1 )
1647 CALL scopy( n-p+1, a(p,p), lda, v(p,p), 1 )
1651 xsc = sqrt(small/epsln)
1653 temp1 = xsc*abs( v(q,q) )
1655 IF ( ( p .GT. q ) .AND. ( abs(v(p,q)) .LE. temp1 )
1656 $ .OR. ( p .LT. q ) )
1657 $ v(p,q) = sign( temp1, v(p,q) )
1658 IF ( p .LT. q ) v(p,q) = - v(p,q)
1662 CALL slaset(
'U', nr-1, nr-1, zero, zero, v(1,2), ldv )
1665 CALL sgeqrf( n, nr, v, ldv, work(n+1), work(2*n+1),
1667 CALL slacpy( 'l
', N, NR, V, LDV, WORK(2*N+1), N )
1670 CALL SCOPY( NR-p+1, V(p,p), LDV, U(p,p), 1 )
1674 XSC = SQRT(SMALL/EPSLN)
1676 DO 9971 p = 1, q - 1
1677 TEMP1 = XSC * MIN(ABS(U(p,p)),ABS(U(q,q)))
1678 U(p,q) = - SIGN( TEMP1, U(q,p) )
1682 CALL SLASET('u
', NR-1, NR-1, ZERO, ZERO, U(1,2), LDU )
1685 CALL SGESVJ( 'l
', 'u
', 'v
', NR, NR, U, LDU, SVA,
1686 $ N, V, LDV, WORK(2*N+N*NR+1), LWORK-2*N-N*NR, INFO )
1687 SCALEM = WORK(2*N+N*NR+1)
1688 NUMRANK = NINT(WORK(2*N+N*NR+2))
1690.LT.
IF ( NR N ) THEN
1691 CALL SLASET( 'a
',N-NR,NR,ZERO,ZERO,V(NR+1,1),LDV )
1692 CALL SLASET( 'a
',NR,N-NR,ZERO,ZERO,V(1,NR+1),LDV )
1693 CALL SLASET( 'a
',N-NR,N-NR,ZERO,ONE,V(NR+1,NR+1),LDV )
1696 CALL SORMQR( 'l
','n
',N,N,NR,WORK(2*N+1),N,WORK(N+1),
1697 $ V,LDV,WORK(2*N+N*NR+NR+1),LWORK-2*N-N*NR-NR,IERR )
1703 TEMP1 = SQRT(FLOAT(N)) * EPSLN
1706 WORK(2*N+N*NR+NR+IWORK(p)) = V(p,q)
1709 V(p,q) = WORK(2*N+N*NR+NR+p)
1711 XSC = ONE / SNRM2( N, V(1,q), 1 )
1712.LT..OR..GT.
IF ( (XSC (ONE-TEMP1)) (XSC (ONE+TEMP1)) )
1713 $ CALL SSCAL( N, XSC, V(1,q), 1 )
1719.LT.
IF ( NR M ) THEN
1720 CALL SLASET( 'a
', M-NR, NR, ZERO, ZERO, U(NR+1,1), LDU )
1721.LT.
IF ( NR N1 ) THEN
1722 CALL SLASET( 'a
',NR, N1-NR, ZERO, ZERO, U(1,NR+1),LDU )
1723 CALL SLASET( 'a
',M-NR,N1-NR, ZERO, ONE,U(NR+1,NR+1),LDU )
1727 CALL SORMQR( 'left
', 'no tr
', M, N1, N, A, LDA, WORK, U,
1728 $ LDU, WORK(N+1), LWORK-N, IERR )
1731 $ CALL SLASWP( N1, U, LDU, 1, M-1, IWORK(2*N+1), -1 )
1738 CALL SSWAP( N, U(1,p), 1, V(1,p), 1 )
1747.LE.
IF ( USCAL2 (BIG/SVA(1))*USCAL1 ) THEN
1748 CALL SLASCL( 'g
', 0, 0, USCAL1, USCAL2, NR, 1, SVA, N, IERR )
1753.LT.
IF ( NR N ) THEN
1759 WORK(1) = USCAL2 * SCALEM
1761 IF ( ERREST ) WORK(3) = SCONDA
1762.AND.
IF ( LSVEC RSVEC ) THEN