298 $ IL, IU, ABSTOL, M, W, Z, LDZ, WORK,
299 $ LWORK, IWORK, IFAIL, INFO )
308 CHARACTER JOBZ, RANGE, UPLO
309 INTEGER IL, INFO, IU, LDA, LDZ, LWORK, M, N
310 DOUBLE PRECISION ABSTOL, VL, VU
313 INTEGER IFAIL( * ), IWORK( * )
314 DOUBLE PRECISION A( LDA, * ), W( * ), WORK( * ), Z( LDZ, * )
320 DOUBLE PRECISION ZERO, ONE
321 PARAMETER ( ZERO = 0.0d+0, one = 1.0d+0 )
324 LOGICAL ALLEIG, INDEIG, LOWER, LQUERY, TEST, VALEIG,
327 INTEGER I, IINFO, IMAX, INDD, INDE, INDEE, INDIBL,
328 $ indisp, indiwo, indtau, indwkn, indwrk, iscale,
329 $ itmp1, j, jj, llwork, llwrkn
330 $ nsplit, lwmin, lhtrd, lwtrd, kd, ib, indhous
331 DOUBLE PRECISION ABSTLL, ANRM, BIGNUM, EPS, RMAX, RMIN, SAFMIN,
332 $ SIGMA, SMLNUM, TMP1, VLL, VUU
337 DOUBLE PRECISION DLAMCH, DLANSY
338 EXTERNAL lsame, dlamch, dlansy, ilaenv2stage
352 lower = lsame( uplo,
'L' )
353 wantz = lsame( jobz,
'V' )
354 alleig = lsame( range, 'a' )
355 valeig = lsame( range,
'V' )
356 indeig = lsame( range,
'I' )
357 lquery = ( lwork.EQ.-1 )
360 IF( .NOT.( lsame( jobz,
'N' ) ) )
THEN
362 ELSE IF( .NOT.( alleig .OR. valeig .OR. indeig ) )
THEN
364 ELSE IF( .NOT.( lower .OR. lsame( uplo,
'U' ) ) )
THEN
366 ELSE IF( n.LT.0 )
THEN
368 ELSE IF( lda.LT.
max( 1, n ) )
THEN
372 IF( n.GT.0 .AND. vu.LE.vl )
374 ELSE IF( indeig )
THEN
375 IF( il.LT.1 .OR. il.GT.
max( 1, n ) )
THEN
377 ELSE IF( iu.LT.
min( n, il ) .OR. iu.GT.n )
THEN
383 IF( ldz.LT.1 .OR. ( wantz .AND. ldz.LT.n ) )
THEN
393 kd = ilaenv2stage( 1,
'DSYTRD_2STAGE', jobz,
395 ib = ilaenv2stage( 2,
'DSYTRD_2STAGE', jobz,
397 lhtrd = ilaenv2stage( 3,
'DSYTRD_2STAGE', jobz,
399 lwtrd = ilaenv2stage( 4,
'DSYTRD_2STAGE', jobz,
401 lwmin =
max( 8*n, 3*n + lhtrd + lwtrd )
405 IF( lwork.LT.lwmin .AND. .NOT.lquery )
410 CALL xerbla(
'DSYEVX_2STAGE', -info )
412 ELSE IF( lquery )
THEN
424 IF( alleig .OR. indeig )
THEN
428 IF( vl.LT.a( 1, 1 ) .AND. vu.GE.a( 1, 1 ) )
THEN
440 safmin = dlamch(
'Safe minimum' )
441 eps = dlamch(
'Precision' )
442 smlnum = safmin / eps
443 bignum = one / smlnum
444 rmin = sqrt( smlnum )
445 rmax =
min( sqrt( bignum ), one / sqrt( sqrt( safmin ) ) )
455 anrm = dlansy(
'M', uplo, n, a, lda, work )
456 IF( anrm.GT.zero .AND. anrm.LT.rmin )
THEN
459 ELSE IF( anrm.GT.rmax )
THEN
463 IF( iscale.EQ.1 )
THEN
466 CALL dscal( n-j+1, sigma, a( j, j ), 1 )
470 CALL dscal( j, sigma, a( 1, j ), 1 )
474 $ abstll = abstol*sigma
487 indwrk = indhous + lhtrd
488 llwork = lwork - indwrk + 1
491 $ work( inde ), work( indtau ), work( indhous ),
492 $ lhtrd, work( indwrk ), llwork, iinfo )
500 IF( il.EQ.1 .AND. iu.EQ.n )
THEN
504 IF( ( alleig .OR. test ) .AND. ( abstol.LE.zero ) )
THEN
505 CALL dcopy( n, work( indd ), 1, w, 1 )
507 IF( .NOT.wantz )
THEN
508 CALL dcopy( n-1, work( inde ), 1, work( indee ), 1 )
509 CALL dsterf( n, w, work( indee ), info )
511 CALL dlacpy(
'A', n, n, a, lda, z, ldz )
512 CALL dorgtr( uplo, n, z, ldz, work( indtau ),
513 $ work( indwrk ), llwork, iinfo )
514 CALL dcopy( n-1, work( inde ), 1, work( indee ), 1 )
515 CALL dsteqr( jobz, n, w, work( indee ), z, ldz,
516 $ work( indwrk ), info )
540 CALL dstebz( range, order, n, vll, vuu, il, iu, abstll,
541 $ work( indd ), work( inde ), m, nsplit, w,
542 $ iwork( indibl ), iwork( indisp ), work( indwrk ),
543 $ iwork( indiwo ), info )
546 CALL dstein( n, work( indd ), work( inde ), m, w,
547 $ iwork( indibl ), iwork( indisp ), z, ldz,
548 $ work( indwrk ), iwork( indiwo ), ifail, info )
554 llwrkn = lwork - indwkn + 1
555 CALL dormtr(
'L', uplo,
'N', n, m, a, lda, work( indtau ), z,
556 $ ldz, work( indwkn ), llwrkn, iinfo )
562 IF( iscale.EQ.1 )
THEN
568 CALL dscal( imax, one / sigma, w, 1 )
579 IF( w( jj ).LT.tmp1 )
THEN
586 itmp1 = iwork( indibl+i-1 )
588 iwork( indibl+i-1 ) = iwork( indibl+j-1 )
590 iwork( indibl+j-1 ) = itmp1
591 CALL dswap( n, z( 1, i ), 1, z( 1, j ), 1 )
594 ifail( i ) = ifail( j )