225 SUBROUTINE dstevx( JOBZ, RANGE, N, D, E, VL, VU, IL, IU, ABSTOL,
226 $ M, W, Z, LDZ, WORK, IWORK, IFAIL, INFO )
233 CHARACTER JOBZ, RANGE
234 INTEGER IL, INFO, IU, LDZ, M, N
235 DOUBLE PRECISION ABSTOL, VL, VU
238 INTEGER IFAIL( * ), IWORK( * )
239 DOUBLE PRECISION D( * ), E( * ), ( * ), WORK( * ), Z( LDZ, * )
245 DOUBLE PRECISION ZERO, ONE
246 parameter( zero = 0.0d0, one = 1.0d0 )
249 LOGICAL , INDEIG, TEST, VALEIG, WANTZ
251 INTEGER I, IMAX, INDIBL, INDISP, INDIWO, INDWRK,
252 $ iscale, itmp1, j, jj, nsplit
253 DOUBLE PRECISION BIGNUM, EPS, RMAX, RMIN, SAFMIN, SIGMA, SMLNUM,
254 $ tmp1, tnrm, vll, vuu
258 DOUBLE PRECISION DLAMCH, DLANST
259 EXTERNAL lsame, dlamch, dlanst
272 wantz = lsame( jobz,
'V' )
273 alleig = lsame( range,
'A' )
274 valeig = lsame( range,
'V' )
275 indeig = lsame( range,
'I' )
278 IF( .NOT.( wantz .OR. lsame( jobz,
'N' ) ) )
THEN
280 ELSE IF( .NOT.( alleig .OR. valeig .OR. indeig ) )
THEN
282 ELSE IF( n.LT.0 )
THEN
286 IF( n.GT.0 .AND. vu.LE.vl )
288 ELSE IF( indeig )
THEN
289 IF( il.LT.1 .OR. il.GT.
max( 1, n ) )
THEN
291 ELSE IF( iu.LT.
min( n, il ) .OR. iu.GT.n )
THEN
302 CALL xerbla(
'DSTEVX', -info )
313 IF( alleig .OR. indeig )
THEN
317 IF( vl.LT.d( 1 ) .AND. vu.GE.d( 1 ) )
THEN
329 safmin = dlamch(
'Safe minimum' )
330 eps = dlamch(
'Precision' )
331 smlnum = safmin / eps
332 bignum = one / smlnum
333 rmin = sqrt( smlnum )
334 rmax =
min( sqrt( bignum ), one / sqrt( sqrt( safmin ) ) )
346 tnrm = dlanst(
'M', n, d, e )
347 IF( tnrm.GT.zero .AND. tnrm.LT.rmin )
THEN
350 ELSE IF( tnrm.GT.rmax )
THEN
354 IF( iscale.EQ.1 )
THEN
355 CALL dscal( n, sigma, d, 1 )
356 CALL dscal( n-1, sigma, e( 1 ), 1 )
369 IF( il.EQ.1 .AND. iu.EQ.n )
THEN
373 IF( ( alleig .OR. test ) .AND. ( abstol.LE.zero ) )
THEN
374 CALL dcopy( n, d, 1, w, 1 )
375 CALL dcopy( n-1, e( 1 ), 1, work( 1 ), 1 )
377 IF( .NOT.wantz )
THEN
378 CALL dsterf( n, w, work, info )
380 CALL dsteqr(
'I', n, w, work, z, ldz, work( indwrk ), info )
405 CALL dstebz( range, order, n, vll, vuu, il, iu, abstol, d, e, m,
406 $ nsplit, w, iwork( indibl ), iwork( indisp ),
407 $ work( indwrk ), iwork( indiwo ), info )
410 CALL dstein( n, d, e, m, w, iwork( indibl ), iwork( indisp ),
411 $ z, ldz, work( indwrk ), iwork( indiwo ), ifail,
418 IF( iscale.EQ.1 )
THEN
424 CALL dscal( imax, one / sigma, w, 1 )
435 IF( w( jj ).LT.tmp1 )
THEN
442 itmp1 = iwork( indibl+i-1 )
444 iwork( indibl+i-1 ) = iwork( indibl+j-1 )
446 iwork( indibl+j-1 ) = itmp1
447 CALL dswap( n, z( 1, i ), 1, z( 1, j ), 1 )
450 ifail( i ) = ifail( j )
subroutine dstebz(range, order, n, vl, vu, il, iu, abstol, d, e, m, nsplit, w, iblock, isplit, work, iwork, info)
DSTEBZ
subroutine dstevx(jobz, range, n, d, e, vl, vu, il, iu, abstol, m, w, z, ldz, work, iwork, ifail, info)
DSTEVX computes the eigenvalues and, optionally, the left and/or right eigenvectors for OTHER matrice...