148 SUBROUTINE dgeqrfp( M, N, A, LDA, TAU, WORK, LWORK, INFO )
155 INTEGER INFO, LDA, LWORK, M, N
158 DOUBLE PRECISION A( LDA, * ), TAU( * ), WORK( * )
165 INTEGER , IB, IINFO, IWS, K, LDWORK, LWKOPT, NB,
183 nb = ilaenv( 1,
'DGEQRF',
' ', m, n, -1, -1 )
186 lquery = ( lwork.EQ.-1 )
189 ELSE IF( n.LT.0 )
THEN
191 ELSE IF( lda.LT.
max( 1, m ) )
THEN
193 ELSE IF( lwork.LT.
max( 1, n ) .AND. .NOT.lquery )
THEN
197 CALL xerbla(
'DGEQRFP', -info )
199 ELSE IF( lquery )
THEN
214 IF( nb.GT.1 .AND. nb.LT.k )
THEN
218 nx =
max( 0, ilaenv( 3,
'DGEQRF',
' ', m, n, -1, -1 ) )
225 IF( lwork.LT.iws )
THEN
231 nbmin =
max( 2, ilaenv( 2,
'DGEQRF',
' ', m, n, -1,
237 IF( nb.GE.nbmin .AND. nb.LT.k .AND. nx.LT.k )
THEN
241 DO 10 i = 1, k - nx, nb
242 ib =
min( k-i+1, nb )
247 CALL dgeqr2p( m-i+1, ib, a( i, i ), lda, tau( i ), work,
254 CALL dlarft(
'Forward', 'columnwise
', M-I+1, IB,
255 $ A( I, I ), LDA, TAU( I ), WORK, LDWORK )
259 CALL DLARFB( 'left
', 'transpose
', 'forward
',
260 $ 'columnwise
', M-I+1, N-I-IB+1, IB,
261 $ A( I, I ), LDA, WORK, LDWORK, A( I, I+IB ),
262 $ LDA, WORK( IB+1 ), LDWORK )
272 $ CALL DGEQR2P( M-I+1, N-I+1, A( I, I ), LDA, TAU( I ), WORK,
subroutine xerbla(srname, info)
XERBLA
subroutine dgeqr2p(m, n, a, lda, tau, work, info)
DGEQR2P computes the QR factorization of a general rectangular matrix with non-negative diagonal elem...
subroutine dgeqrfp(m, n, a, lda, tau, work, lwork, info)
DGEQRFP
subroutine dlarft(direct, storev, n, k, v, ldv, tau, t, ldt)
DLARFT forms the triangular factor T of a block reflector H = I - vtvH
subroutine dlarfb(side, trans, direct, storev, m, n, k, v, ldv, t, ldt, c, ldc, work, ldwork)
DLARFB applies a block reflector or its transpose to a general rectangular matrix.