125 SUBROUTINE zbdt05( M, N, A, LDA, S, NS, U, LDU,
126 $ VT, LDVT, WORK, RESID )
134 INTEGER LDA, LDU, LDVT, M, N, NS
135 DOUBLE PRECISION RESID
138 DOUBLE PRECISION S( * )
139 COMPLEX*16 A( LDA, * ), U( * ), VT( LDVT, * ), WORK( * )
145 DOUBLE PRECISION ZERO, ONE
146 parameter( zero = 0.0d+0, one = 1.0d+0 )
147 COMPLEX*16 CZERO, CONE
148 parameter( czero = ( 0.0d+0, 0.0d+0 ),
149 $ cone = ( 1.0d+0, 0.0d+0 ) )
153 DOUBLE PRECISION ANORM, EPS
156 DOUBLE PRECISION DUM( 1 )
161 DOUBLE PRECISION DASUM, DLAMCH, ZLANGE
162 EXTERNAL lsame, idamax, dasum, dlamch, zlange
163 DOUBLE PRECISION DZASUM
169 INTRINSIC abs, dble, max, min
176 IF( min( m, n ).LE.0 .OR. ns.LE.0 )
179 eps = dlamch(
'Precision' )
180 anorm = zlange(
'M', m, n, a, lda, dum )
184 CALL zgemm(
'N',
'C', m, ns, n, cone, a, lda, vt,
185 $ ldvt, czero, work( 1+ns*ns ), m )
186 CALL zgemm(
'C',
'N', ns, ns, m, -cone, u, ldu, work( 1+ns*ns ),
187 $ m, czero, work, ns )
193 work( j+i ) = work( j+i ) + dcmplx( s( i ), zero )
194 resid = max( resid, dzasum( ns, work( j+1 ), 1 ) )
198 IF( anorm.LE.zero )
THEN
202 IF( anorm.GE.resid )
THEN
203 resid = ( resid / anorm ) / ( dble( n )*eps )
205 IF( anorm.LT.one )
THEN
206 resid = ( min( resid, dble( n )*anorm ) / anorm ) /
209 resid = min( resid / anorm, dble( n ) ) /