136 SUBROUTINE crqt02( M, N, K, A, AF, Q, R, LDA, TAU, WORK, LWORK,
145 INTEGER K, LDA, LWORK, M, N
148 REAL RESULT( * ), RWORK( * )
149 COMPLEX A( LDA, * ), AF( LDA, * ), Q( LDA, * ),
150 $ r( lda, * ), tau( * ), work( lwork )
157 parameter( zero = 0.0e+0, one = 1.0e+0 )
159 parameter( rogue = ( -1.0e+10, -1.0e+10 ) )
163 REAL ANORM, EPS, RESID
166 REAL CLANGE, CLANSY, SLAMCH
167 EXTERNAL clange, clansy, slamch
173 INTRINSIC cmplx, max, real
179 COMMON / srnamc / srnamt
185 IF( m.EQ.0 .OR. n.EQ.0 .OR. k.EQ.0 )
THEN
191 eps = slamch(
'Epsilon' )
195 CALL claset(
'Full', m, n, rogue, rogue, q, lda )
197 $
CALL clacpy(
'Full', k, n-k, af( m-k+1, 1 ), lda,
198 $ q( m-k+1, 1 ), lda )
200 $
CALL clacpy(
'Lower', k-1, k-1, af( m-k+2, n-k+1 ), lda,
201 $ q( m-k+2, n-k+1 ), lda )
206 CALL cungrq( m, n, k, q, lda, tau( m-k+1 ), work, lwork, info )
210 CALL claset(
'Full', k, m, cmplx( zero ), cmplx( zero ),
211 $ r( m-k+1, n-m+1 ), lda )
212 CALL clacpy(
'Upper', k, k, af( m-k+1, n-k+1 ), lda,
213 $ r( m-k+1, n-k+1 ), lda )
217 CALL cgemm(
'No transpose',
'Conjugate transpose', k, m, n,
218 $ cmplx( -one ), a( m-k+1, 1 ), lda, q, lda,
219 $ cmplx( one ), r( m-k+1, n-m+1 ), lda )
223 anorm = clange(
'1', k, n, a( m-k+1, 1 ), lda, rwork )
224 resid = clange(
'1', k, m, r( m-k+1, n-m+1 ), lda, rwork )
225 IF( anorm.GT.zero )
THEN
226 result( 1 ) = ( ( resid / real( max( 1, n ) ) ) / anorm ) / eps
233 CALL claset(
'Full', m, m, cmplx( zero ), cmplx( one ), r, lda )
234 CALL cherk(
'Upper',
'No transpose', m, n, -one, q, lda, one, r,
239 resid = clansy(
'1',
'Upper', m, r, lda, rwork )
241 result( 2 ) = ( resid / real( max( 1, n ) ) ) / eps