166 SUBROUTINE cunmrq( SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC,
167 $ WORK, LWORK, INFO )
174 CHARACTER SIDE, TRANS
175 INTEGER INFO, K, LDA, LDC, , M, N
178 COMPLEX A( LDA, * ), C( LDC, * ), TAU( * ),
185 INTEGER NBMAX, , TSIZE
186 parameter( nbmax = 64, ldt = nbmax+1,
187 $ tsize = ldt*nbmax )
190 LOGICAL LEFT, LQUERY, NOTRAN
198 EXTERNAL lsame, ilaenv
211 left = lsame( side,
'L' )
212 notran = lsame( trans,
'N' )
213 lquery = ( lwork.EQ.-1 )
224 IF( .NOT.left
'R' ) )
THEN
226 ELSE IF( .NOT.notran .AND. .NOT.lsame( trans,
'C' ) )
THEN
228 ELSE IF( m.LT.0 )
THEN
230 ELSE IF( n.LT.0 )
THEN
232 ELSE IF( k.LT.0 .OR. k.GT.nq )
THEN
234 ELSE IF( lda.LT.
max( 1, k ) )
THEN
236 ELSE IF( ldc.LT.
max( 1, m ) )
THEN
238 ELSE IF( lwork.LT.nw .AND. .NOT.lquery )
THEN
246 IF( m.EQ.0 .OR. n.EQ.0 )
THEN
249 nb =
min( nbmax, ilaenv( 1,
'CUNMRQ', side // trans, m, n,
251 lwkopt = nw*nb + tsize
257 CALL xerbla(
'CUNMRQ', -info )
259 ELSE IF( lquery )
THEN
265 IF( m.EQ.0 .OR. n.EQ.0 )
THEN
271 IF( nb.GT.1 .AND. nb.LT.k )
THEN
272 IF( lwork.LT.lwkopt )
THEN
273 nb = (lwork-tsize) / ldwork
274 nbmin =
max( 2, ilaenv( 2,
'CUNMRQ', side // trans, m, n, k,
279 IF( nb.LT.nbmin .OR. nb.GE.k )
THEN
283 CALL cunmr2( side, trans, m, n, k, a, lda, tau, c, ldc, work,
290 IF( ( left .AND. .NOT.notran ) .OR.
291 $ ( .NOT.left .AND. notran ) )
THEN
296 i1 = ( ( k-1 ) / nb )*nb + 1
314 ib =
min( nb, k-i+1 )
319 CALL clarft(
'Backward',
'Rowwise', nq-k+i+ib-1, ib,
320 $ a( i, 1 ), lda, tau( i ), work( iwt ), ldt )
325 mi = m - k + i + ib - 1
330 ni = n - k + i + ib - 1
335 CALL clarfb( side, transt,
'Backward',
'Rowwise', mi, ni,
336 $ ib, a( i, 1 ), lda, work( iwt ), ldt, c, ldc,
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 clarft(direct, storev, n, k, v, ldv, tau, t, ldt)
CLARFT forms the triangular factor T of a block reflector H = I - vtvH
subroutine cunmrq(side, trans, m, n, k, a, lda, tau, c, ldc, work, lwork, info)
CUNMRQ
subroutine cunmr2(side, trans, m, n, k, a, lda, tau, c, ldc, work, info)
CUNMR2 multiplies a general matrix by the unitary matrix from a RQ factorization determined by cgerqf...