193 SUBROUTINE slamswlq( SIDE, TRANS, M, N, K, MB, NB, A, LDA, T,
194 $ LDT, C, LDC, WORK, LWORK, INFO )
201 CHARACTER side, trans
202 INTEGER info, lda, m, n, k, mb, nb, ldt, lwork, ldc
205 REAL a( lda, * ), work( * ), c(ldc, * ),
213 LOGICAL left, right, tran, notran, lquery
214 INTEGER i, ii, kk, lw, ctr
227 notran =
lsame( trans,
'N' )
228 tran =
lsame( trans,
'T' )
229 left =
lsame( side,
'L' )
230 right =
lsame( side,
'R' )
238 IF( .NOT.left .AND. .NOT.right )
THEN 240 ELSE IF( .NOT.tran .AND. .NOT.notran )
THEN 242 ELSE IF( k.LT.0 )
THEN 244 ELSE IF( m.LT.k )
THEN 246 ELSE IF( n.LT.0 )
THEN 248 ELSE IF( k.LT.mb .OR. mb.LT.1)
THEN 250 ELSE IF( lda.LT.max( 1, k ) )
THEN 252 ELSE IF( ldt.LT.max( 1, mb) )
THEN 254 ELSE IF( ldc.LT.max( 1, m ) )
THEN 256 ELSE IF(( lwork.LT.max(1,lw)).AND.(.NOT.lquery))
THEN 261 CALL xerbla(
'SLAMSWLQ', -info )
264 ELSE IF (lquery)
THEN 271 IF( min(m,n,k).EQ.0 )
THEN 275 IF((nb.LE.k).OR.(nb.GE.max(m,n,k)))
THEN 276 CALL sgemlqt( side, trans, m, n, k, mb, a, lda,
277 $ t, ldt, c, ldc, work, info)
281 IF(left.AND.tran)
THEN 285 kk = mod((m-k),(nb-k))
290 CALL stpmlqt(
'L',
'T',kk , n, k, 0, mb, a(1,ii), lda,
291 $ t(1,ctr*k+1), ldt, c(1,1), ldc,
292 $ c(ii,1), ldc, work, info )
297 DO i=ii-(nb-k),nb+1,-(nb-k)
302 CALL stpmlqt(
'L',
'T',nb-k , n, k, 0,mb, a(1,i), lda,
303 $ t(1,ctr*k+1),ldt, c(1,1), ldc,
304 $ c(i,1), ldc, work, info )
309 CALL sgemlqt(
'L',
'T',nb , n, k, mb, a(1,1), lda, t
310 $ ,ldt ,c(1,1), ldc, work, info )
312 ELSE IF (left.AND.notran)
THEN 316 kk = mod((m-k),(nb-k))
319 CALL sgemlqt(
'L',
'N',nb , n, k, mb, a(1,1), lda, t
320 $ ,ldt ,c(1,1), ldc, work, info )
322 DO i=nb+1,ii-nb+k,(nb-k)
326 CALL stpmlqt(
'L',
'N',nb-k , n, k, 0,mb, a(1,i), lda,
327 $ t(1,ctr * k+1), ldt, c(1,1), ldc,
328 $ c(i,1), ldc, work, info )
336 CALL stpmlqt(
'L',
'N',kk , n, k, 0, mb, a(1,ii), lda,
337 $ t(1,ctr*k+1), ldt, c(1,1), ldc,
338 $ c(ii,1), ldc, work, info )
342 ELSE IF(right.AND.notran)
THEN 346 kk = mod((n-k),(nb-k))
350 CALL stpmlqt(
'R',
'N',m , kk, k, 0, mb, a(1, ii), lda,
351 $ t(1,ctr*k+1), ldt, c(1,1), ldc,
352 $ c(1,ii), ldc, work, info )
357 DO i=ii-(nb-k),nb+1,-(nb-k)
362 CALL stpmlqt(
'R',
'N', m, nb-k, k, 0, mb, a(1, i), lda,
363 $ t(1,ctr*k+1), ldt, c(1,1), ldc,
364 $ c(1,i), ldc, work, info )
370 CALL sgemlqt(
'R',
'N',m , nb, k, mb, a(1,1), lda, t
371 $ ,ldt ,c(1,1), ldc, work, info )
373 ELSE IF (right.AND.tran)
THEN 377 kk = mod((n-k),(nb-k))
380 CALL sgemlqt(
'R',
'T',m , nb, k, mb, a(1,1), lda, t
381 $ ,ldt ,c(1,1), ldc, work, info )
383 DO i=nb+1,ii-nb+k,(nb-k)
387 CALL stpmlqt(
'R',
'T',m , nb-k, k, 0,mb, a(1,i), lda,
388 $ t(1, ctr*k+1), ldt, c(1,1), ldc,
389 $ c(1,i), ldc, work, info )
397 CALL stpmlqt(
'R',
'T',m , kk, k, 0,mb, a(1,ii), lda,
398 $ t(1,ctr*k+1),ldt, c(1,1), ldc,
399 $ c(1,ii), ldc, work, info )
logical function lsame(CA, CB)
LSAME
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine stpmlqt(SIDE, TRANS, M, N, K, L, MB, V, LDV, T, LDT, A, LDA, B, LDB, WORK, INFO)
STPMLQT
subroutine sgemlqt(SIDE, TRANS, M, N, K, MB, V, LDV, T, LDT, C, LDC, WORK, INFO)
SGEMLQT