176 SUBROUTINE zlahef( UPLO, N, NB, KB, A, LDA, IPIV, W, LDW, INFO )
184 INTEGER INFO, KB, LDA, LDW, N, NB
194 DOUBLE PRECISION ZERO, ONE
195 parameter( zero = 0.0d+0, one = 1.0d+0 )
198 DOUBLE PRECISION EIGHT,
199 parameter( eight = 8.0d+0, sevten = 17.0d+0 )
202 INTEGER IMAX, J, JB, JJ, JMAX, JP, K, KK, KKW, KP,
204 DOUBLE PRECISION ABSAKK, ALPHA, COLMAX, R1, ROWMAX, T
205 COMPLEX*16 D11, D21, D22,
210 EXTERNAL lsame, izamax
216 INTRINSIC abs, dble, dconjg, dimag,
max,
min, sqrt
219 DOUBLE PRECISION CABS1
222 cabs1( z ) = abs( dble( z ) ) + abs( dimag( z ) )
230 alpha = ( one+sqrt( sevten ) ) / eight
232 IF( lsame( uplo,
'U' ) )
THEN
248 IF( ( k.LE.n-nb+1 .AND. nb.LT.n ) .OR. k.LT.1 )
255 CALL zcopy( k-1, a( 1, k ), 1, w( 1, kw ), 1 )
256 w( k, kw ) = dble( a( k, k ) )
258 CALL zgemv(
'No transpose', k, n-k, -cone, a( 1, k+1 ), lda,
259 $ w( k, kw+1 ), ldw, cone, w( 1, kw ), 1 )
260 w( k, kw ) = dble( w( k, kw ) )
266 absakk = abs( dble( w( k, kw ) ) )
273 imax = izamax( k-1, w( 1, kw ), 1 )
274 colmax = cabs1( w( imax, kw ) )
279 IF(
max( absakk, colmax ).EQ.zero )
THEN
286 a( k, k ) = dble( a( k, k ) )
294 IF( absakk.GE.alpha*colmax )
THEN
306 CALL zcopy( imax-1, a( 1, imax ), 1, w( 1, kw-1 ), 1 )
307 w( imax, kw-1 ) = dble( a( imax, imax ) )
308 CALL zcopy( k-imax, a( imax, imax+1 ), lda,
309 $ w( imax+1, kw-1 ), 1 )
310 CALL zlacgv( k-imax, w( imax+1, kw-1 ), 1 )
312 CALL zgemv(
'No transpose', k, n-k, -cone,
313 $ a( 1, k+1 ), lda, w( imax, kw+1 ), ldw,
314 $ cone, w( 1, kw-1 ), 1 )
315 w( imax, kw-1 ) = dble( w( imax, kw-1 ) )
322 jmax = imax + izamax( k-imax, w( imax+1, kw-1 ), 1 )
323 rowmax = cabs1( w( jmax, kw-1 ) )
325 jmax = izamax( imax-1, w( 1, kw-1 ), 1 )
326 rowmax =
max( rowmax, cabs1( w( jmax, kw-1 ) ) )
330 IF( absakk.GE.alpha*colmax*( colmax / rowmax ) )
THEN
337 ELSE IF( abs( dble( w( imax, kw-1 ) ) ).GE.alpha*rowmax )
347 CALL zcopy( k, w( 1, kw-1 ), 1, w( 1, kw ), 1 )
386 a( kp, kp ) = dble( a( kk, kk ) )
387 CALL zcopy( kk-1-kp, a( kp+1, kk ), 1, a( kp, kp+1 ),
389 CALL zlacgv( kk-1-kp, a( kp, kp+1 ), lda )
391 $
CALL zcopy( kp-1, a( 1, kk ), 1, a( 1, kp ), 1 )
401 CALL zswap( n-kk+1, w( kk, kkw ), ldw, w( kp, kkw ),
405 IF( kstep.EQ.1 )
THEN
423 CALL zcopy( k, w( 1, kw ), 1, a( 1, k ), 1 )
430 r1 = one / dble( a( k, k ) )
431 CALL zdscal( k-1, r1, a( 1, k ), 1 )
435 CALL zlacgv( k-1, w( 1, kw ), 1 )
500 d11 = w( k, kw ) / dconjg( d21 )
501 d22 = w( k-1, kw-1 ) / d21
502 t = one / ( dble( d11*d22 )-one )
510 a( j, k-1 ) = d21*( d11*w( j, kw-1 )-w( j, kw ) )
511 a( j, k ) = dconjg( d21 )*
512 $ ( d22*w( j, kw )-w( j, kw-1 ) )
518 a( k-1, k-1 ) = w( k-1, kw-1 )
519 a( k-1, k ) = w( k-1, kw )
520 a( k, k ) = w( k, kw )
524 CALL zlacgv( k-1, w( 1, kw ), 1 )
525 CALL zlacgv( k-2, w( 1, kw-1 ), 1 )
533 IF( kstep.EQ.1 )
THEN
554 DO 50 j = ( ( k-1 ) / nb )*nb + 1, 1, -nb
555 jb =
min( nb, k-j+1 )
559 DO 40 jj = j, j + jb - 1
560 a( jj, jj ) = dble( a( jj, jj ) )
561 CALL zgemv(
'No transpose', jj-j+1, n-k, -cone,
562 $ a( j, k+1 ), lda, w( jj, kw+1 ), ldw, cone,
564 a( jj, jj ) = dble( a( jj, jj ) )
569 CALL zgemm(
'No transpose',
'Transpose', j-1, jb, n-k,
570 $ -cone, a( 1, k+1 ), lda, w( j, kw+1 ), ldw,
571 $ cone, a( 1, j ), lda )
594 IF( jp.NE.jj .AND. j.LE.n )
595 $
CALL zswap( n-j+1, a( jp, j ), lda, a( jj, j ), lda )
616 IF( ( k.GE.nb .AND. nb.LT.n ) .OR. k.GT.n )
623 w( k, k ) = dble( a( k, k ) )
625 $
CALL zcopy( n-k, a( k+1, k ), 1, w( k+1, k ), 1 )
626 CALL zgemv(
'No transpose', n-k+1, k-1, -cone, a( k, 1 ), lda,
627 $ w( k, 1 ), ldw, cone, w( k, k ), 1 )
628 w( k, k ) = dble( w( k, k ) )
633 absakk = abs( dble( w( k, k ) ) )
640 imax = k + izamax( n-k, w( k+1, k ), 1 )
641 colmax = cabs1( w( imax, k ) )
646 IF(
max( absakk, colmax ).EQ.zero )
THEN
653 a( k, k ) = dble( a( k, k ) )
661 IF( absakk.GE.alpha*colmax )
THEN
673 CALL zcopy( imax-k, a( imax, k ), lda, w( k, k+1 ), 1 )
674 CALL zlacgv( imax-k, w( k, k+1 ), 1 )
675 w( imax, k+1 ) = dble( a( imax, imax ) )
677 $
CALL zcopy( n-imax, a( imax+1, imax ), 1,
678 $ w( imax+1, k+1 ), 1 )
679 CALL zgemv(
'No transpose', n-k+1, k-1, -cone, a( k, 1 ),
680 $ lda, w( imax, 1 ), ldw, cone, w( k, k+1 ),
682 w( imax, k+1 ) = dble( w( imax, k+1 ) )
688 jmax = k - 1 + izamax( imax-k, w( k, k+1 ), 1 )
691 jmax = imax + izamax( n-imax, w( imax+1, k+1 ), 1 )
692 rowmax =
max( rowmax, cabs1( w( jmax, k+1 ) ) )
696 IF( absakk.GE.alpha*colmax*( colmax / rowmax ) )
THEN
703 ELSE IF( abs( dble( w( imax, k+1 ) ) ).GE.alpha*rowmax )
713 CALL zcopy( n-k+1, w( k, k+1 ), 1, w( k, k ), 1 )
748 a( kp, kp ) = dble( a( kk, kk ) )
749 CALL zcopy( kp-kk-1, a( kk+1, kk ), 1, a( kp, kk+1 ),
751 CALL zlacgv( kp-kk-1, a( kp, kk+1 ), lda )
753 $
CALL zcopy( n-kp, a( kp+1, kk ), 1, a( kp+1, kp ), 1 )
761 $
CALL zswap( k-1, a( kk, 1 ), lda, a( kp, 1 ), lda )
762 CALL zswap( kk, w( kk, 1 ), ldw, w( kp, 1 ), ldw )
765 IF( kstep.EQ.1 )
THEN
783 CALL zcopy( n-k+1, w( k, k ), 1, a( k, k ), 1 )
790 r1 = one / dble( a( k, k ) )
791 CALL zdscal( n-k, r1, a( k+1, k ), 1 )
795 CALL zlacgv( n-k, w( k+1, k ), 1 )
860 d11 = w( k+1, k+1 ) / d21
861 d22 = w( k, k ) / dconjg( d21 )
862 t = one / ( dble( d11*d22 )-one )
870 a( j, k ) = dconjg( d21 )*
871 $ ( d11*w( j, k )-w( j, k+1 ) )
872 a( j, k+1 ) = d21*( d22*w( j, k+1 )-w( j, k ) )
878 a( k, k ) = w( k, k )
879 a( k+1, k ) = w( k+1, k )
880 a( k+1, k+1 ) = w( k+1, k+1 )
884 CALL zlacgv( n-k, w( k+1, k ), 1 )
885 CALL zlacgv( n-k-1, w( k+2, k+1 ), 1 )
893 IF( kstep.EQ.1 )
THEN
915 jb =
min( nb, n-j+1 )
919 DO 100 jj = j, j + jb - 1
920 a( jj, jj ) = dble( a( jj, jj ) )
921 CALL zgemv(
'No transpose', j+jb-jj, k-1, -cone,
922 $ a( jj, 1 ), lda, w( jj, 1 ), ldw, cone,
924 a( jj, jj ) = dble( a( jj, jj ) )
930 $
CALL zgemm(
'No transpose',
'Transpose', n-j-jb+1, jb,
931 $ k-1, -cone, a( j+jb, 1 ), lda, w( j, 1 ),
932 $ ldw, cone, a( j+jb, j ), lda )
955 IF( jp.NE.jj .AND. j.GE.1 )
956 $
CALL zswap( j, a( jp, 1 ), lda, a( jj, 1 ), lda )