155 SUBROUTINE cunm2l( SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC,
163 CHARACTER SIDE, TRANS
164 INTEGER INFO, K, LDA, LDC, M, N
167 COMPLEX A( LDA, * ), C( LDC, * ), TAU( * ), WORK( * )
174 INTEGER I, I1, I2, I3, MI, NI, NQ
192 left = lsame( side,
'L' )
193 notran = lsame( trans,
'N' )
202 IF( .NOT.left .AND. .NOT.lsame( side,
'R' ) )
THEN
204 ELSE IF( .NOT.notran .AND. .NOT.lsame( trans,
'C' ) )
THEN
206 ELSE IF( m.LT.0 )
THEN
208 ELSE IF( n.LT.0 )
THEN
210 ELSE IF( k.LT.0 .OR. k.GT.nq )
THEN
212 ELSE IF( lda.LT.max( 1, nq ) )
THEN
214 ELSE IF( ldc.LT.max( 1, m ) )
THEN
218 CALL xerbla(
'CUNM2L', -info )
224 IF( m.EQ.0 .OR. n.EQ.0 .OR. k.EQ.0 )
227 IF( ( left .AND. notran .OR. .NOT.left .AND. .NOT.notran ) )
THEN
261 taui = conjg( tau( i ) )
263 CALL clarf1l( side, mi, ni, a( 1, i ), 1, taui, c, ldc,
subroutine clarf1l(side, m, n, v, incv, tau, c, ldc, work)
CLARF1L applies an elementary reflector to a general rectangular
subroutine cunm2l(side, trans, m, n, k, a, lda, tau, c, ldc, work, info)
CUNM2L multiplies a general matrix by the unitary matrix from a QL factorization determined by cgeqlf...