126 SUBROUTINE dqlt01( M, N, A, AF, Q, L, LDA, TAU, WORK, LWORK,
135 INTEGER LDA, LWORK, M, N
138 DOUBLE PRECISION A( LDA, * ), AF( LDA, * ), L( LDA, * ),
139 $ q( lda, * ), result( * ), rwork( * ), tau( * ),
146 DOUBLE PRECISION ZERO, ONE
147 parameter( zero = 0.0d+0, one = 1.0d+0 )
148 DOUBLE PRECISION ROGUE
149 parameter( rogue = -1.0d+10 )
153 DOUBLE PRECISION ANORM, EPS, RESID
156 DOUBLE PRECISION DLAMCH, DLANGE, DLANSY
157 EXTERNAL dlamch, dlange, dlansy
163 INTRINSIC dble, max, min
169 COMMON / srnamc / srnamt
174 eps = dlamch(
'Epsilon' )
178 CALL dlacpy(
'Full', m, n, a, lda, af, lda )
183 CALL dgeqlf( m, n, af, lda, tau, work, lwork, info )
187 CALL dlaset(
'Full', m, m, rogue, rogue, q, lda )
189 IF( n.LT.m .AND. n.GT.0 )
190 $
CALL dlacpy(
'Full', m-n, n, af, lda, q( 1, m-n+1 ), lda )
192 $
CALL dlacpy(
'Upper', n-1, n-1, af( m-n+1, 2 ), lda,
193 $ q( m-n+1, m-n+2 ), lda )
196 $
CALL dlacpy(
'Upper', m-1, m-1, af( 1, n-m+2 ), lda,
203 CALL dorgql( m, m, minmn, q, lda, tau, work, lwork, info )
207 CALL dlaset(
'Full', m, n, zero, zero, l, lda )
210 $
CALL dlacpy(
'Lower', n, n, af( m-n+1, 1 ), lda,
211 $ l( m-n+1, 1 ), lda )
213 IF( n.GT.m .AND. m.GT.0 )
214 $
CALL dlacpy(
'Full', m, n-m, af, lda, l, lda )
216 $
CALL dlacpy(
'Lower', m, m, af( 1, n-m+1 ), lda,
217 $ l( 1, n-m+1 ), lda )
222 CALL dgemm(
'Transpose',
'No transpose', m, n, m, -one, q, lda, a,
227 anorm = dlange(
'1', m, n, a, lda, rwork )
228 resid = dlange(
'1', m, n, l, lda, rwork )
229 IF( anorm.GT.zero )
THEN
230 result( 1 ) = ( ( resid / dble( max( 1, m ) ) ) / anorm ) / eps
237 CALL dlaset(
'Full', m, m, zero, one, l, lda )
238 CALL dsyrk(
'Upper',
'Transpose', m, m, -one, q, lda, one, l,
243 resid = dlansy(
'1',
'Upper', m, l, lda, rwork )
245 result( 2 ) = ( resid / dble( max( 1, m ) ) ) / eps