195 SUBROUTINE zlamtsqr( SIDE, TRANS, M, N, K, MB, NB, A, LDA, T,
196 $ LDT, C, LDC, WORK, LWORK, INFO )
203 CHARACTER side, trans
204 INTEGER info, lda, m, n, k, mb, nb, ldt, lwork, ldc
207 COMPLEX*16 a( lda, * ), work( * ), c(ldc, * ),
215 LOGICAL left, right, tran, notran, lquery
216 INTEGER i, ii, kk, lw, ctr, q
229 notran =
lsame( trans,
'N' )
230 tran =
lsame( trans,
'C' )
231 left =
lsame( side,
'L' )
232 right =
lsame( side,
'R' )
242 IF( .NOT.left .AND. .NOT.right )
THEN 244 ELSE IF( .NOT.tran .AND. .NOT.notran )
THEN 246 ELSE IF( m.LT.k )
THEN 248 ELSE IF( n.LT.0 )
THEN 250 ELSE IF( k.LT.0 )
THEN 252 ELSE IF( k.LT.nb .OR. nb.LT.1 )
THEN 254 ELSE IF( lda.LT.max( 1, q ) )
THEN 256 ELSE IF( ldt.LT.max( 1, nb) )
THEN 258 ELSE IF( ldc.LT.max( 1, m ) )
THEN 260 ELSE IF(( lwork.LT.max(1,lw)).AND.(.NOT.lquery))
THEN 271 CALL xerbla(
'ZLAMTSQR', -info )
273 ELSE IF (lquery)
THEN 279 IF( min(m,n,k).EQ.0 )
THEN 283 IF((mb.LE.k).OR.(mb.GE.max(m,n,k)))
THEN 284 CALL zgemqrt( side, trans, m, n, k, nb, a, lda,
285 $ t, ldt, c, ldc, work, info)
289 IF(left.AND.notran)
THEN 293 kk = mod((m-k),(mb-k))
297 CALL ztpmqrt(
'L',
'N',kk , n, k, 0, nb, a(ii,1), lda,
298 $ t(1, ctr * k + 1),ldt , c(1,1), ldc,
299 $ c(ii,1), ldc, work, info )
304 DO i=ii-(mb-k),mb+1,-(mb-k)
309 CALL ztpmqrt(
'L',
'N',mb-k , n, k, 0,nb, a(i,1), lda,
310 $ t(1,ctr * k + 1),ldt, c(1,1), ldc,
311 $ c(i,1), ldc, work, info )
317 CALL zgemqrt(
'L',
'N',mb , n, k, nb, a(1,1), lda, t
318 $ ,ldt ,c(1,1), ldc, work, info )
320 ELSE IF (left.AND.tran)
THEN 324 kk = mod((m-k),(mb-k))
327 CALL zgemqrt(
'L',
'C',mb , n, k, nb, a(1,1), lda, t
328 $ ,ldt ,c(1,1), ldc, work, info )
330 DO i=mb+1,ii-mb+k,(mb-k)
334 CALL ztpmqrt(
'L',
'C',mb-k , n, k, 0,nb, a(i,1), lda,
335 $ t(1,ctr * k + 1),ldt, c(1,1), ldc,
336 $ c(i,1), ldc, work, info )
344 CALL ztpmqrt(
'L',
'C',kk , n, k, 0,nb, a(ii,1), lda,
345 $ t(1, ctr * k + 1), ldt, c(1,1), ldc,
346 $ c(ii,1), ldc, work, info )
350 ELSE IF(right.AND.tran)
THEN 354 kk = mod((n-k),(mb-k))
358 CALL ztpmqrt(
'R',
'C',m , kk, k, 0, nb, a(ii,1), lda,
359 $ t(1,ctr * k + 1), ldt, c(1,1), ldc,
360 $ c(1,ii), ldc, work, info )
365 DO i=ii-(mb-k),mb+1,-(mb-k)
370 CALL ztpmqrt(
'R',
'C',m , mb-k, k, 0,nb, a(i,1), lda,
371 $ t(1, ctr * k + 1), ldt, c(1,1), ldc,
372 $ c(1,i), ldc, work, info )
378 CALL zgemqrt(
'R',
'C',m , mb, k, nb, a(1,1), lda, t
379 $ ,ldt ,c(1,1), ldc, work, info )
381 ELSE IF (right.AND.notran)
THEN 385 kk = mod((n-k),(mb-k))
388 CALL zgemqrt(
'R',
'N', m, mb , k, nb, a(1,1), lda, t
389 $ ,ldt ,c(1,1), ldc, work, info )
391 DO i=mb+1,ii-mb+k,(mb-k)
395 CALL ztpmqrt(
'R',
'N', m, mb-k, k, 0,nb, a(i,1), lda,
396 $ t(1, ctr * k + 1),ldt, c(1,1), ldc,
397 $ c(1,i), ldc, work, info )
405 CALL ztpmqrt(
'R',
'N', m, kk , k, 0,nb, a(ii,1), lda,
406 $ t(1,ctr * k + 1),ldt, c(1,1), ldc,
407 $ c(1,ii), ldc, work, info )
logical function lsame(CA, CB)
LSAME
subroutine zgemqrt(SIDE, TRANS, M, N, K, NB, V, LDV, T, LDT, C, LDC, WORK, INFO)
ZGEMQRT
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine ztpmqrt(SIDE, TRANS, M, N, K, L, NB, V, LDV, T, LDT, A, LDA, B, LDB, WORK, INFO)
ZTPMQRT