303 SUBROUTINE slarre( RANGE, N, VL, VU, IL, IU, D, E, E2,
304 $ RTOL1, RTOL2, SPLTOL, NSPLIT, ISPLIT, M,
305 $ W, WERR, WGAP, IBLOCK, INDEXW, GERS, PIVMIN,
306 $ WORK, IWORK, INFO )
315 INTEGER IL, INFO, IU, M, N, NSPLIT
316 REAL PIVMIN, RTOL1, RTOL2, SPLTOL, VL, VU
319 INTEGER IBLOCK( * ), ISPLIT( * ), IWORK( * ),
321 REAL D( * ), E( * ), E2( * ), GERS( * ),
322 $ w( * ),werr( * ), wgap( * ), work( * )
328 REAL FAC, FOUR, FOURTH, FUDGE, HALF, HNDRD,
329 $ MAXGROWTH, ONE, PERT, TWO, ZERO
330 PARAMETER ( ZERO = 0.0e0, one = 1.0e0,
331 $ two = 2.0e0, four=4.0e0,
334 $ half = one/two, fourth = one/four, fac= half,
335 $ maxgrowth = 64.0e0, fudge = 2.0e0 )
336 INTEGER MAXTRY, ALLRNG, INDRNG, VALRNG
337 PARAMETER ( MAXTRY = 6, allrng = 1, indrng = 2,
341 LOGICAL FORCEB, NOREP, USEDQD
342 INTEGER CNT, CNT1, CNT2, I, IBEGIN, IDUM, IEND, IINFO,
343 $ IN, INDL, INDU, IRANGE, J, JBLK, MB, MM,
345 REAL AVGAP, BSRTOL, CLWDTH, DMAX, DPIVOT, EABS,
346 $ EMAX, EOLD, EPS, GL, GU, ISLEFT, ISRGHT, RTL,
347 $ RTOL, S1, S2, SAFMIN, SGNDEF, SIGMA, SPDIAM,
358 EXTERNAL SLAMCH, LSAME
366 INTRINSIC abs, max, min
382 IF( lsame( range,
'A' ) )
THEN
384 ELSE IF( lsame( range,
'V' ) )
THEN
386 ELSE IF( lsame( range,
'I' ) )
THEN
393 safmin = slamch(
'S' )
402 bsrtol = sqrt(eps)*(0.5e-3)
406 IF( (irange.EQ.allrng).OR.
407 $ ((irange.EQ.valrng).AND.(d(1).GT.vl).AND.(d(1).LE.vu)).OR.
408 $ ((irange.EQ.indrng).AND.(il.EQ.1).AND.(iu.EQ.1)) )
THEN
437 IF( eabs .GE. emax )
THEN
441 gers( 2*i-1) = d(i) - tmp1
442 gl = min( gl, gers( 2*i - 1))
443 gers( 2*i ) = d(i) + tmp1
444 gu = max( gu, gers(2*i) )
448 pivmin = safmin * max( one, emax**2 )
454 CALL slarra( n, d, e, e2, spltol, spdiam,
455 $ nsplit, isplit, iinfo )
463 usedqd = (( irange.EQ.allrng ) .AND. (.NOT.forceb))
465 IF( (irange.EQ.allrng) .AND. (.NOT. forceb) )
THEN
476 CALL slarrd( range,
'B', n, vl, vu, il, iu, gers,
477 $ bsrtol, d, e, e2, pivmin, nsplit, isplit,
478 $ mm, w, werr, vl, vu, iblock, indexw,
479 $ work, iwork, iinfo )
480 IF( iinfo.NE.0 )
THEN
498 DO 170 jblk = 1, nsplit
499 iend = isplit( jblk )
500 in = iend - ibegin + 1
504 IF( (irange.EQ.allrng).OR.( (irange.EQ.valrng).AND.
505 $ ( d( ibegin ).GT.vl ).AND.( d( ibegin ).LE.vu ) )
506 $ .OR. ( (irange.EQ.indrng).AND.(iblock(wbegin).EQ.jblk))
532 DO 15 i = ibegin , iend
533 gl = min( gers( 2*i-1 ), gl )
534 gu = max( gers( 2*i ), gu )
538 IF(.NOT. ((irange.EQ.allrng).AND.(.NOT.forceb)) )
THEN
542 IF( iblock(i).EQ.jblk )
THEN
559 usedqd = ( (mb .GT. fac*in) .AND. (.NOT.forceb) )
560 wend = wbegin + mb - 1
565 DO 30 i = wbegin, wend - 1
566 wgap( i ) = max( zero,
567 $ w(i+1)-werr(i+1) - (w(i)+werr(i)) )
569 wgap( wend ) = max( zero,
570 $ vu - sigma - (w( wend )+werr( wend )))
572 indl = indexw(wbegin)
573 indu = indexw( wend )
576 IF(( (irange.EQ.allrng) .AND. (.NOT. forceb) ).OR.usedqd)
THEN
579 CALL slarrk( in, 1, gl, gu, d(ibegin),
580 $ e2(ibegin), pivmin, rtl, tmp, tmp1, iinfo )
581 IF( iinfo.NE.0 )
THEN
585 isleft = max(gl, tmp - tmp1
586 $ - hndrd * eps* abs(tmp - tmp1))
588 CALL slarrk( in, in, gl, gu, d(ibegin),
589 $ e2(ibegin), pivmin, rtl, tmp, tmp1, iinfo )
590 IF( iinfo.NE.0 )
THEN
594 isrght = min(gu, tmp + tmp1
595 $ + hndrd * eps * abs(tmp + tmp1))
597 spdiam = isrght - isleft
601 isleft = max(gl, w(wbegin) - werr(wbegin)
602 $ - hndrd * eps*abs(w(wbegin)- werr(wbegin) ))
603 isrght = min(gu,w(wend) + werr(wend)
604 $ + hndrd * eps * abs(w(wend)+ werr(wend)))
616 IF( ( irange.EQ.allrng ) .AND. (.NOT.forceb) )
THEN
624 wend = wbegin + mb - 1
626 s1 = isleft + fourth * spdiam
627 s2 = isrght - fourth * spdiam
633 s1 = isleft + fourth * spdiam
634 s2 = isrght - fourth * spdiam
636 tmp = min(isrght,vu) - max(isleft,vl)
637 s1 = max(isleft,vl) + fourth * tmp
638 s2 = min(isrght,vu) - fourth * tmp
644 CALL slarrc(
'T', in, s1, s2, d(ibegin),
645 $ e(ibegin), pivmin, cnt, cnt1, cnt2, iinfo)
651 ELSEIF( cnt1 - indl .GE. indu - cnt2 )
THEN
652 IF( ( irange.EQ.allrng ) .AND. (.NOT.forceb) )
THEN
653 sigma = max(isleft,gl)
654 ELSEIF( usedqd )
THEN
661 sigma = max(isleft,vl)
665 IF( ( irange.EQ.allrng ) .AND. (.NOT.forceb) )
THEN
666 sigma = min(isrght,gu)
667 ELSEIF( usedqd )
THEN
674 sigma = min(isrght,vu)
688 tau = spdiam*eps*n + two*pivmin
689 tau = max( tau,two*eps*abs(sigma) )
692 clwdth = w(wend) + werr(wend) - w(wbegin) - werr(wbegin)
693 avgap = abs(clwdth / real(wend-wbegin))
694 IF( sgndef.EQ.one )
THEN
695 tau = half*max(wgap(wbegin),avgap)
696 tau = max(tau,werr(wbegin))
698 tau = half*max(wgap(wend-1),avgap)
699 tau = max(tau,werr(wend))
706 DO 80 idum = 1, maxtry
710 dpivot = d( ibegin ) - sigma
712 dmax = abs( work(1) )
715 work( 2*in+i ) = one / work( i )
716 tmp = e( j )*work( 2*in+i )
718 dpivot = ( d( j+1 )-sigma ) - tmp*e( j )
720 dmax = max( dmax, abs(dpivot) )
724 IF( dmax .GT. maxgrowth*spdiam )
THEN
729 IF( usedqd .AND. .NOT.norep )
THEN
733 tmp = sgndef*work( i )
734 IF( tmp.LT.zero ) norep = .true.
741 IF( idum.EQ.maxtry-1 )
THEN
742 IF( sgndef.EQ.one )
THEN
745 $ gl - fudge*spdiam*eps*n - fudge*two*pivmin
748 $ gu + fudge*spdiam*eps*n + fudge*two*pivmin
751 sigma = sigma - sgndef * tau
770 CALL scopy( in, work, 1, d( ibegin ), 1 )
771 CALL scopy( in-1, work( in+1 ), 1, e( ibegin ), 1 )
784 CALL slarnv(2, iseed, 2*in-1, work(1))
786 d(ibegin+i-1) = d(ibegin+i-1)*(one+eps*pert*work(i))
787 e(ibegin+i-1) = e(ibegin+i-1)*(one+eps*pert*work(in+i))
789 d(iend) = d(iend)*(one+eps*four*work(in))
799 IF ( .NOT.usedqd )
THEN
807 werr(j) = werr(j) + abs(w(j)) * eps
811 DO 135 i = ibegin, iend-1
812 work( i ) = d( i ) * e( i )**2
815 CALL slarrb(in, d(ibegin), work(ibegin),
816 $ indl, indu, rtol1, rtol2, indl-1,
817 $ w(wbegin), wgap(wbegin), werr(wbegin),
818 $ work( 2*n+1 ), iwork, pivmin, spdiam,
820 IF( iinfo .NE. 0 )
THEN
826 wgap( wend ) = max( zero,
827 $ ( vu-sigma ) - ( w( wend ) + werr( wend ) ) )
828 DO 138 i = indl, indu
845 rtol = log(real(in)) * four * eps
848 work( 2*i-1 ) = abs( d( j ) )
849 work( 2*i ) = e( j )*e( j )*work( 2*i-1 )
852 work( 2*in-1 ) = abs( d( iend ) )
854 CALL slasq2( in, work, iinfo )
855 IF( iinfo .NE. 0 )
THEN
864 IF( work( i ).LT.zero )
THEN
870 IF( sgndef.GT.zero )
THEN
871 DO 150 i = indl, indu
873 w( m ) = work( in-i+1 )
878 DO 160 i = indl, indu
886 DO 165 i = m - mb + 1, m
888 werr( i ) = rtol * abs( w(i) )
890 DO 166 i = m - mb + 1, m - 1
892 wgap( i ) = max( zero,
893 $ w(i+1)-werr(i+1) - (w(i)+werr(i)) )
895 wgap( m ) = max( zero,
896 $ ( vu-sigma ) - ( w( m ) + werr( m ) ) )