174 SUBROUTINE cgrqts( M, P, N, A, AF, Q, R, LDA, TAUA, B, BF, Z, T,
175 $ BWK, LDB, TAUB, WORK, LWORK, RWORK, RESULT )
182 INTEGER LDA, LDB, LWORK, M, P, N
185 REAL RESULT( 4 ), RWORK( * )
186 COMPLEX A( LDA, * ), AF( LDA, * ), R( LDA
188 $ t( ldb, * ), z( ldb, * ), bwk( ldb, * ),
189 $ taua( * ), taub( * ), work( lwork )
196 parameter( zero = 0.0e+0, one = 1.0e+0 )
198 parameter( czero = ( 0.0e+0, 0.0e+0 ),
199 $ cone = ( 1.0e+0, 0.0e+0 ) )
201 parameter( crogue = ( -1.0e+10, 0.0e+0 ) )
205 REAL ANORM, BNORM, ULP, UNFL, RESID
208 REAL SLAMCH, CLANGE, CLANHE
209 EXTERNAL slamch, clange, clanhe
220 ulp = slamch(
'Precision' )
221 unfl = slamch(
'Safe minimum' )
225 CALL clacpy(
'Full', m, n, a, lda, af, lda )
226 CALL clacpy(
'Full', p, n, b, ldb, bf, ldb )
228 anorm =
max( clange(
'1', m, n, a, lda, rwork ), unfl )
229 bnorm =
max( clange(
'1', p, n, b, ldb, rwork ), unfl )
233 CALL cggrqf( m, p, n, af, lda, taua, bf, ldb, taub, work,
238 CALL claset(
'Full', n, n, crogue, crogue, q, lda )
240 IF( m.GT.0 .AND. m.LT.n )
241 $
CALL clacpy(
'Full', m, n-m, af, lda, q( n-m+1, 1 ), lda )
243 $
CALL clacpy(
'Lower', m-1, m-1, af( 2, n-m+1 ), lda,
244 $ q( n-m+2, n-m+1 ), lda )
247 $
CALL clacpy(
'Lower', n-1, n-1, af( m-n+2, 1 ), lda,
250 CALL cungrq( n, n,
min( m, n ), q, lda, taua, work, lwork, info )
254 CALL claset(
'Full', p, p, crogue, crogue, z, ldb )
256 $
CALL clacpy(
'Lower', p-1, n, bf( 2,1 ), ldb, z( 2,1 ), ldb )
257 CALL cungqr( p, p,
min( p,n ), z, ldb, taub, work, lwork, info )
261 CALL claset(
'Full', m, n, czero, czero, r, lda )
263 CALL clacpy(
'Upper', m, m, af( 1, n-m+1 ), lda, r( 1, n-m+1 ),
266 CALL clacpy(
'Full', m-n, n, af, lda, r, lda )
267 CALL clacpy(
'Upper', n, n, af( m-n+1, 1 ), lda, r( m-n+1, 1 ),
273 CALL claset(
'Full', p, n, czero, czero, t, ldb )
274 CALL clacpy(
'Upper', p, n, bf, ldb, t, ldb )
278 CALL cgemm(
'No transpose',
'Conjugate transpose', m, n, n, -cone,
279 $ a, lda, q, lda, cone, r, lda )
283 resid = clange(
'1', m, n, r, lda, rwork )
284 IF( anorm.GT.zero )
THEN
285 result( 1 ) = ( ( resid / real(
max(1,m,n) ) ) / anorm ) / ulp
292 CALL cgemm(
'Conjugate transpose',
'No transpose', p, n, p, cone,
293 $ z, ldb, b, ldb, czero, bwk, ldb )
294 CALL cgemm(
'No transpose',
'No transpose', p, n, n, cone, t, ldb,
295 $ q, lda, -cone, bwk, ldb )
299 resid = clange( '1
', P, N, BWK, LDB, RWORK )
300.GT.
IF( BNORMZERO ) THEN
301 RESULT( 2 ) = ( ( RESID / REAL( MAX( 1,P,M ) ) )/BNORM ) / ULP
308 CALL CLASET( 'full
', N, N, CZERO, CONE, R, LDA )
309 CALL CHERK( 'upper
', 'no transpose
', N, N, -ONE, Q, LDA, ONE, R,
314 RESID = CLANHE( '1
', 'upper
', N, R, LDA, RWORK )
315 RESULT( 3 ) = ( RESID / REAL( MAX( 1,N ) ) ) / ULP
319 CALL CLASET( 'full
', P, P, CZERO, CONE, T, LDB )
320 CALL CHERK( 'upper
', 'conjugate transpose
', P, P, -ONE, Z, LDB,
325 RESID = CLANHE( '1
', 'upper
', P, T, LDB, RWORK )
326 RESULT( 4 ) = ( RESID / REAL( MAX( 1,P ) ) ) / ULP