167 SUBROUTINE dormqr( SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC,
168 $ WORK, LWORK, INFO )
176 CHARACTER SIDE, TRANS
177 INTEGER INFO, K, LDA, LDC, LWORK, M, N
180 DOUBLE PRECISION A( lda, * ), C( ldc, * ), TAU( * ), WORK( * )
186 INTEGER NBMAX, LDT, TSIZE
187 parameter( nbmax = 64, ldt = nbmax+1,
188 $ tsize = ldt*nbmax )
191 LOGICAL LEFT, LQUERY, NOTRAN
192 INTEGER I, I1, I2, I3, IB, IC, IINFO, IWT, JC, LDWORK,
193 $ lwkopt, mi, nb, nbmin, ni, nq, nw
198 EXTERNAL lsame, ilaenv
211 left = lsame( side,
'L' )
212 notran = lsame( trans,
'N' )
213 lquery = ( lwork.EQ.-1 )
224 IF( .NOT.left .AND. .NOT.lsame( side,
'R' ) )
THEN 226 ELSE IF( .NOT.notran .AND. .NOT.lsame( trans,
'T' ) )
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, nq ) )
THEN 236 ELSE IF( ldc.LT.max( 1, m ) )
THEN 238 ELSE IF( lwork.LT.max( 1, nw ) .AND. .NOT.lquery )
THEN 246 nb = min( nbmax, ilaenv( 1,
'DORMQR', side // trans, m, n, k,
248 lwkopt = max( 1, nw )*nb + tsize
253 CALL xerbla(
'DORMQR', -info )
255 ELSE IF( lquery )
THEN 261 IF( m.EQ.0 .OR. n.EQ.0 .OR. k.EQ.0 )
THEN 268 IF( nb.GT.1 .AND. nb.LT.k )
THEN 269 IF( lwork.LT.nw*nb+tsize )
THEN 270 nb = (lwork-tsize) / ldwork
271 nbmin = max( 2, ilaenv( 2,
'DORMQR', side // trans, m, n, k,
276 IF( nb.LT.nbmin .OR. nb.GE.k )
THEN 280 CALL dorm2r( side, trans, m, n, k, a, lda, tau, c, ldc, work,
287 IF( ( left .AND. .NOT.notran ) .OR.
288 $ ( .NOT.left .AND. notran ) )
THEN 293 i1 = ( ( k-1 ) / nb )*nb + 1
307 ib = min( nb, k-i+1 )
312 CALL dlarft(
'Forward',
'Columnwise', nq-i+1, ib, a( i, i ),
313 $ lda, tau( i ), work( iwt ), ldt )
330 CALL dlarfb( side, trans,
'Forward',
'Columnwise', mi, ni,
331 $ ib, a( i, i ), lda, work( iwt ), ldt,
332 $ c( ic, jc ), ldc, work, ldwork )
subroutine dorm2r(SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC, WORK, INFO)
DORM2R multiplies a general matrix by the orthogonal matrix from a QR factorization determined by sge...
subroutine dormqr(SIDE, TRANS, M, N, K, A, LDA, TAU, C, LDC, WORK, LWORK, INFO)
DORMQR
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 xerbla(SRNAME, INFO)
XERBLA
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.