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10 INTEGER , INFO, JA, LWORK, M, N
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13 INTEGER DESCA( * )
14 COMPLEX
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165 INTEGER , CSRC_, CTXT_, DLEN_, ,
166 $ LLD_, , M_, NB_, N_, RSRC_
167 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
168 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_
169 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
170
171
172 LOGICAL LQUERY
173 CHARACTER COLBTOP, ROWBTOP
174 INTEGER IACOL, IAROW, IINFO, ICTXT, IPW, J, JB, JL, JN,
175 $ K, LWMIN, MP0, MU, MYCOL, , NPCOL, NPROW,
176 $ NQ0, NU
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178
179 INTEGER IDUM1( 1 ), IDUM2( 1 )
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187 INTEGER ICEIL, INDXG2P, NUMROC
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197 ictxt = desca( ctxt_ )
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202 info = 0
203 IF( nprow.EQ.-1 ) THEN
204 info = -(600+ctxt_)
205 ELSE
206 CALL chk1mat( m, 1, n, 2, ia, ja, desca, 6, info )
207 IF( info.EQ.0 ) THEN
208 iarow =
indxg2p( ia, desca( mb_ ), myrow, desca( rsrc_ ),
209 $ nprow )
210 iacol =
indxg2p( ja, desca( nb_ ), mycol, desca( csrc_ ),
211 $ npcol )
212 mp0 =
numroc( m+mod( ia-1, desca( mb_ ) ), desca( mb_ ),
213 $ myrow, iarow, nprow )
214 nq0 =
numroc( n+mod( ja-1, desca( nb_ ) ), desca( nb_ ),
215 $ mycol, iacol, npcol )
216 lwmin = desca( nb_ ) * ( mp0 + nq0 + desca( nb_ ) )
217
218 work( 1 ) =
cmplx( real( lwmin ) )
219 lquery = ( lwork.EQ.-1 )
220 IF( lwork.LT.lwmin .AND. .NOT.lquery )
221 $ info = -9
222 END IF
223 IF( lwork.EQ.-1 ) THEN
224 idum1( 1 ) = -1
225 ELSE
226 idum1( 1 ) = 1
227 END IF
228 idum2( 1 ) = 9
229 CALL pchk1mat( m, 1, n, 2, ia, ja, desca, 6, 1, idum1, idum2,
230 $ info )
231 END IF
232
233 IF( info.NE.0 ) THEN
234 CALL pxerbla( ictxt,
'PCGEQLF', -info )
235 RETURN
236 ELSE IF( lquery ) THEN
237 RETURN
238 END IF
239
240
241
242 IF( m.EQ.0 .OR. n.EQ.0 )
243 $ RETURN
244
246 ipw = desca( nb_ ) * desca( nb_ ) + 1
247 jn =
min(
iceil( ja+n-k, desca( nb_ ) ) * desca( nb_ ), ja+n-1 )
248 jl =
max( ( (ja+n-2) / desca( nb_ ) ) * desca( nb_ ) + 1, ja )
249 CALL pb_topget( ictxt, 'Broadcast', 'Rowwise', rowbtop )
250 CALL pb_topget( ictxt, 'Broadcast', 'Columnwise', colbtop )
251 CALL pb_topset( ictxt, 'Broadcast', 'Rowwise', 'D-ring' )
252 CALL pb_topset( ictxt, 'Broadcast', 'Columnwise', ' ' )
253
254 IF( jl.GE.jn+1 ) THEN
255
256
257
258 DO 10 j = jl, jn+1, -desca( nb_ )
259 jb =
min( ja+n-j, desca( nb_ ) )
260
261
262
263
264 CALL pcgeql2( m-n+j+jb-ja, jb, a, ia, j, desca, tau, work,
265 $ lwork, iinfo )
266
267 IF( j.GT.ja ) THEN
268
269
270
271
272 CALL pclarft(
'Backward',
'Columnwise', m-n+j+jb-ja, jb,
273 $ a, ia, j, desca, tau, work, work( ipw ) )
274
275
276
277
278 CALL pclarfb(
'Left',
'Conjugate transpose',
'Backward',
279 $ 'Columnwise', m-n+j+jb-ja, j-ja, jb, a, ia,
280 $ j, desca, work, a, ia, ja, desca,
281 $ work( ipw ) )
282 END IF
283
284 10 CONTINUE
285
286 mu = m - n + jn - ja + 1
287 nu = jn - ja + 1
288
289 ELSE
290
291 mu = m
292 nu = n
293
294 END IF
295
296
297
298 IF( mu.GT.0 .AND. nu.GT.0 )
299 $
CALL pcgeql2( mu, nu, a, ia, ja, desca, tau, work, lwork,
300 $ iinfo )
301
302 CALL pb_topset( ictxt, 'Broadcast', 'Rowwise', rowbtop )
303 CALL pb_topset( ictxt, 'Broadcast', 'Columnwise', colbtop )
304
305 work( 1 ) =
cmplx( real( lwmin ) )
306
307 RETURN
308
309
310
integer function iceil(inum, idenom)
integer function indxg2p(indxglob, nb, iproc, isrcproc, nprocs)
subroutine chk1mat(ma, mapos0, na, napos0, ia, ja, desca, descapos0, info)
subroutine pxerbla(contxt, srname, info)
subroutine blacs_gridinfo(cntxt, nprow, npcol, myrow, mycol)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine pcgeql2(m, n, a, ia, ja, desca, tau, work, lwork, info)
subroutine pchk1mat(ma, mapos0, na, napos0, ia, ja, desca, descapos0, nextra, ex, expos, info)
subroutine pclarfb(side, trans, direct, storev, m, n, k, v, iv, jv, descv, t, c, ic, jc, descc, work)
subroutine pclarft(direct, storev, n, k, v, iv, jv, descv, tau, t, work)