190 SUBROUTINE zgebd2( M, N, A, LDA, D, E, TAUQ, TAUP, WORK, INFO )
198 INTEGER info, lda, m, n
201 DOUBLE PRECISION d( * ), e( * )
202 COMPLEX*16 a( lda, * ), taup( * ), tauq( * ), work( * )
209 parameter( zero = ( 0.0d+0, 0.0d+0 ),
210 $ one = ( 1.0d+0, 0.0d+0 ) )
220 INTRINSIC dconjg, max, min
229 ELSE IF( n.LT.0 )
THEN
231 ELSE IF( lda.LT.max( 1, m ) )
THEN
235 CALL
xerbla(
'ZGEBD2', -info )
248 CALL
zlarfg( m-i+1, alpha, a( min( i+1, m ), i ), 1,
256 $ CALL
zlarf(
'Left', m-i+1, n-i, a( i, i ), 1,
257 $ dconjg( tauq( i ) ), a( i, i+1 ), lda, work )
265 CALL
zlacgv( n-i, a( i, i+1 ), lda )
267 CALL
zlarfg( n-i, alpha, a( i, min( i+2, n ) ), lda,
274 CALL
zlarf(
'Right', m-i, n-i, a( i, i+1 ), lda,
275 $ taup( i ), a( i+1, i+1 ), lda, work )
276 CALL
zlacgv( n-i, a( i, i+1 ), lda )
290 CALL
zlacgv( n-i+1, a( i, i ), lda )
292 CALL
zlarfg( n-i+1, alpha, a( i, min( i+1, n ) ), lda,
300 $ CALL
zlarf(
'Right', m-i, n-i+1, a( i, i ), lda,
301 $ taup( i ), a( i+1, i ), lda, work )
302 CALL
zlacgv( n-i+1, a( i, i ), lda )
311 CALL
zlarfg( m-i, alpha, a( min( i+2, m ), i ), 1,
318 CALL
zlarf(
'Left', m-i, n-i, a( i+1, i ), 1,
319 $ dconjg( tauq( i ) ), a( i+1, i+1 ), lda,