151 SUBROUTINE cgemlqt( SIDE, TRANS, M, N, K, MB, V, LDV, T, LDT,
152 $ C, LDC, WORK, INFO )
159 CHARACTER SIDE, TRANS
160 INTEGER INFO, K, LDV, LDC, M, N, MB, LDT
163 COMPLEX V( LDV, * ), C( LDC, * ), T( LDT, * ), WORK( * )
170 LOGICAL LEFT, RIGHT, TRAN, NOTRAN
171 INTEGER I, IB, LDWORK, KF
188 left = lsame( side,
'L' )
189 right = lsame( side,
'R' )
190 tran = lsame( trans,
'C' )
191 notran = lsame( trans,
'N' )
195 ELSE IF ( right )
THEN
198 IF( .NOT.left .AND. .NOT.right )
THEN
200 ELSE IF( .NOT.tran .AND. .NOT.notran )
THEN
202 ELSE IF( m.LT.0 )
THEN
204 ELSE IF( n.LT.0 )
THEN
206 ELSE IF( k.LT.0)
THEN
208 ELSE IF( mb.LT.1 .OR. (mb.GT.k .AND. k.GT.0))
THEN
210 ELSE IF( ldv.LT.max( 1, k ) )
THEN
212 ELSE IF( ldt.LT.mb )
THEN
214 ELSE IF( ldc.LT.max( 1, m ) )
THEN
219 CALL xerbla(
'CGEMLQT', -info )
225 IF( m.EQ.0 .OR. n.EQ.0 .OR. k.EQ.0 )
RETURN
227 IF( left .AND. notran )
THEN
230 ib = min( mb, k-i+1 )
231 CALL clarfb(
'L',
'C',
'F',
'R', m-i+1, n, ib,
232 $ v( i, i ), ldv, t( 1, i ), ldt,
233 $ c( i, 1 ), ldc, work, ldwork )
236 ELSE IF( right .AND. tran )
THEN
239 ib = min( mb, k-i+1 )
240 CALL clarfb(
'R',
'N',
'F',
'R', m, n-i+1, ib,
241 $ v( i, i ), ldv, t( 1, i ), ldt,
242 $ c( 1, i ), ldc, work, ldwork )
245 ELSE IF( left .AND. tran )
THEN
249 ib = min( mb, k-i+1 )
250 CALL clarfb(
'L',
'N',
'F',
'R', m-i+1, n, ib,
251 $ v( i, i ), ldv, t( 1, i ), ldt,
252 $ c( i, 1 ), ldc, work, ldwork )
255 ELSE IF( right .AND. notran )
THEN
259 ib = min( mb, k-i+1 )
260 CALL clarfb(
'R',
'C',
'F',
'R', m, n-i+1, ib,
261 $ v( i, i ), ldv, t( 1, i ), ldt,
262 $ c( 1, i ), ldc, work, ldwork )
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine clarfb(SIDE, TRANS, DIRECT, STOREV, M, N, K, V, LDV, T, LDT, C, LDC, WORK, LDWORK)
CLARFB applies a block reflector or its conjugate-transpose to a general rectangular matrix.
subroutine cgemlqt(SIDE, TRANS, M, N, K, MB, V, LDV, T, LDT, C, LDC, WORK, INFO)
CGEMLQT