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10 CHARACTER SIDE, TRANS
11 INTEGER IA, IC, INFO, JA, JC, K, LWORK, M, N
12
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14 INTEGER DESCA( * ), DESCC( * )
15 COMPLEX A( * ), C( * ), TAU( * ), WORK( * )
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209 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
210 $ LLD_, MB_, M_, NB_, N_, RSRC_
211 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
212 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
213 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
214 COMPLEX ONE
215 parameter( one = ( 1.0e+0, 0.0e+0 ) )
216
217
218 LOGICAL LEFT, LQUERY, NOTRAN
219 CHARACTER COLBTOP, ROWBTOP
220 INTEGER I, I1, I2, I3, IACOL, ICCOL, ICOFFA, ICOFFC,
221 $ ICROW, ICTXT, IROFFC, LCM, LCMP, LWMIN, MI,
222 $ MPC0, MYCOL, MYROW, NI, NPCOL, NPROW, NQ, NQC0
223 COMPLEX AII
224
225
228 $ pb_topget, pb_topset,
pxerbla
229
230
231 LOGICAL LSAME
232 INTEGER ILCM, INDXG2P, NUMROC
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235
237
238
239
240
241
242 ictxt = desca( ctxt_ )
243 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
244
245
246
247 info = 0
248 IF( nprow.EQ.-1 ) THEN
249 info = -(900+ctxt_)
250 ELSE
251 left =
lsame( side,
'L' )
252 notran =
lsame( trans,
'N' )
253
254
255
256 IF( left ) THEN
257 nq = m
258 CALL chk1mat( k, 5, m, 3, ia, ja, desca, 9, info )
259 ELSE
260 nq = n
261 CALL chk1mat( k, 5, n, 4, ia, ja, desca, 9, info )
262 END IF
263 CALL chk1mat( m, 3, n, 4, ic, jc, descc, 14, info )
264 IF( info.EQ.0 ) THEN
265 icoffa = mod( ja-1, desca( nb_ ) )
266 iroffc = mod( ic-1, descc( mb_ ) )
267 icoffc = mod( jc-1, descc( nb_ ) )
268 iacol =
indxg2p( ja, desca( nb_ ), mycol, desca( csrc_ ),
269 $ npcol )
270 icrow =
indxg2p( ic, descc( mb_ ), myrow, descc( rsrc_ ),
271 $ nprow )
272 iccol =
indxg2p( jc, descc( nb_ ), mycol, descc( csrc_ ),
273 $ npcol )
274 mpc0 =
numroc( m+iroffc, descc( mb_ ), myrow, icrow, nprow )
275 nqc0 =
numroc( n+icoffc, descc( nb_ ), mycol, iccol, npcol )
276
277 IF( left ) THEN
278 lcm =
ilcm( nprow, npcol )
279 lcmp = lcm / nprow
281 $ m+iroffc, desca( mb_ ), 0, 0, nprow ),
282 $ desca( mb_ ), 0, 0, lcmp ) )
283 ELSE
284 lwmin = nqc0 +
max( 1, mpc0 )
285 END IF
286
287 work( 1 ) =
cmplx( real( lwmin ) )
288 lquery = ( lwork.EQ.-1 )
289 IF( .NOT.left .AND. .NOT.
lsame( side,
'R' ) )
THEN
290 info = -1
291 ELSE IF( .NOT.notran .AND. .NOT.
lsame( trans,
'C' ) )
THEN
292 info = -2
293 ELSE IF( k.LT.0 .OR. k.GT.nq ) THEN
294 info = -5
295 ELSE IF( left .AND. desca( nb_ ).NE.descc( mb_ ) ) THEN
296 info = -(900+nb_)
297 ELSE IF( left .AND. icoffa.NE.iroffc ) THEN
298 info = -12
299 ELSE IF( .NOT.left .AND. icoffa.NE.icoffc ) THEN
300 info = -13
301 ELSE IF( .NOT.left .AND. iacol.NE.iccol ) THEN
302 info = -13
303 ELSE IF( .NOT.left .AND. desca( nb_ ).NE.descc( nb_ ) ) THEN
304 info = -(1400+nb_)
305 ELSE IF( ictxt.NE.descc( ctxt_ ) ) THEN
306 info = -(1400+ctxt_)
307 ELSE IF( lwork.LT.lwmin .AND. .NOT.lquery ) THEN
308 info = -16
309 END IF
310 END IF
311 END IF
312
313 IF( info.NE.0 ) THEN
314 CALL pxerbla( ictxt,
'PCUNMR2', -info )
315 CALL blacs_abort( ictxt, 1 )
316 RETURN
317 ELSE IF( lquery ) THEN
318 RETURN
319 END IF
320
321
322
323 IF( m.EQ.0 .OR. n.EQ.0 .OR. k.EQ.0 )
324 $ RETURN
325
326 CALL pb_topget( ictxt, 'Broadcast', 'Rowwise', rowbtop )
327 CALL pb_topget( ictxt, 'Broadcast', 'Columnwise', colbtop )
328
329 IF( ( left .AND. .NOT.notran .OR. .NOT.left .AND. notran ) ) THEN
330 i1 = ia
331 i2 = ia + k - 1
332 i3 = 1
333 ELSE
334 i1 = ia + k - 1
335 i2 = ia
336 i3 = -1
337 END IF
338
339 IF( left ) THEN
340 ni = n
341 ELSE
342 mi = m
343 CALL pb_topset( ictxt, 'Broadcast', 'Rowwise', ' ' )
344 IF( notran ) THEN
345 CALL pb_topset( ictxt, 'Broadcast', 'Columnwise', 'I-ring' )
346 ELSE
347 CALL pb_topset( ictxt, 'Broadcast', 'Columnwise', 'D-ring' )
348 END IF
349 END IF
350
351 DO 10 i = i1, i2, i3
352 IF( left ) THEN
353
354
355
356 mi = m - k + i - ia + 1
357 ELSE
358
359
360
361 ni = n - k + i - ia + 1
362 END IF
363
364
365
366 CALL pclacgv( nq-k+i-ia, a, i, ja, desca, desca( m_ ) )
367 CALL pcelset2( aii, a, i, ja+nq-k+i-ia, desca, one )
368 IF( notran ) THEN
369 CALL pclarfc( side, mi, ni, a, i, ja, desca, desca( m_ ),
370 $ tau, c, ic, jc, descc, work )
371 ELSE
372 CALL pclarf( side, mi, ni, a, i, ja, desca, desca( m_ ),
373 $ tau, c, ic, jc, descc, work )
374 END IF
375 CALL pcelset( a, i, ja+nq-k+i-ia, desca, aii )
376 CALL pclacgv( nq-k+i-ia, a, i, ja, desca, desca( m_ ) )
377
378 10 CONTINUE
379
380 CALL pb_topset( ictxt, 'Broadcast', 'Rowwise', rowbtop )
381 CALL pb_topset( ictxt, 'Broadcast', 'Columnwise', colbtop )
382
383 work( 1 ) =
cmplx( real( lwmin ) )
384
385 RETURN
386
387
388
subroutine chk1mat(ma, mapos0, na, napos0, ia, ja, desca, descapos0, info)
integer function ilcm(m, n)
integer function indxg2p(indxglob, nb, iproc, isrcproc, nprocs)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine pcelset2(alpha, a, ia, ja, desca, beta)
subroutine pcelset(a, ia, ja, desca, alpha)
subroutine pclacgv(n, x, ix, jx, descx, incx)
subroutine pclarf(side, m, n, v, iv, jv, descv, incv, tau, c, ic, jc, descc, work)
subroutine pclarfc(side, m, n, v, iv, jv, descv, incv, tau, c, ic, jc, descc, work)
subroutine pxerbla(ictxt, srname, info)