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10 INTEGER IA, INFO, JA, LWORK, M, N
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13 INTEGER DESCA( * )
14 DOUBLE PRECISION D( * ), E( * )
15 COMPLEX*16 A( * ), TAUP( * ), TAUQ( * ), WORK( * )
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240 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
241 $ LLD_, MB_, M_, NB_, N_, RSRC_
242 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
243 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
244 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
245 COMPLEX*16 ONE, ZERO
246 parameter( one = ( 1.0d+0, 0.0d+0 ),
247 $ zero = ( 0.0d+0, 0.0d+0 ) )
248
249
250 LOGICAL LQUERY
251 INTEGER I, IACOL, IAROW, ICOFFA, ICTXT, II, IROFFA, J,
252 $ JJ, K, LWMIN, MPA0, MYCOL, MYROW, NPCOL, NPROW,
253 $ NQA0
254 COMPLEX*16 ALPHA
255
256
257 INTEGER DESCD( DLEN_ ), DESCE( DLEN_ )
258
259
264 $ zlarfg
265
266
267 INTEGER INDXG2P, NUMROC
269
270
271 INTRINSIC dble, dcmplx,
max,
min, mod
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273
274
275
276
277 ictxt = desca( ctxt_ )
278 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
279
280
281
282 info = 0
283 IF( nprow.EQ.-1 ) THEN
284 info = -(600+ctxt_)
285 ELSE
286 CALL chk1mat( m, 1, n, 2, ia, ja, desca, 6, info )
287 IF( info.EQ.0 ) THEN
288 iroffa = mod( ia-1, desca( mb_ ) )
289 icoffa = mod( ja-1, desca( nb_ ) )
290 iarow =
indxg2p( ia, desca( mb_ ), myrow, desca( rsrc_ ),
291 $ nprow )
292 iacol =
indxg2p( ja, desca( nb_ ), mycol, desca( csrc_ ),
293 $ npcol )
294 mpa0 =
numroc( m+iroffa, desca( mb_ ), myrow, iarow, nprow )
295 nqa0 =
numroc( n+icoffa, desca( nb_ ), mycol, iacol, npcol )
296 lwmin =
max( mpa0, nqa0 )
297
298 work( 1 ) = dcmplx( dble( lwmin ) )
299 lquery = ( lwork.EQ.-1 )
300 IF( iroffa.NE.icoffa ) THEN
301 info = -5
302 ELSE IF( desca( mb_ ).NE.desca( nb_ ) ) THEN
303 info = -(600+nb_)
304 ELSE IF( lwork.LT.lwmin .AND. .NOT.lquery ) THEN
305 info = -12
306 END IF
307 END IF
308 END IF
309
310 IF( info.LT.0 ) THEN
311 CALL pxerbla( ictxt,
'PZGEBD2', -info )
312 CALL blacs_abort( ictxt, 1 )
313 RETURN
314 ELSE IF( lquery ) THEN
315 RETURN
316 END IF
317
318 CALL infog2l( ia, ja, desca, nprow, npcol, myrow, mycol, ii, jj,
319 $ iarow, iacol )
320
321 IF( m.EQ.1 .AND. n.EQ.1 ) THEN
322 IF( mycol.EQ.iacol ) THEN
323 IF( myrow.EQ.iarow ) THEN
324 i = ii+(jj-1)*desca( lld_ )
325 CALL zlarfg( 1, a( i ), a( i ), 1, tauq( jj ) )
326 d( jj ) = dble( a( i ) )
327 CALL dgebs2d( ictxt, 'Columnwise', ' ', 1, 1, d( jj ),
328 $ 1 )
329 CALL zgebs2d( ictxt, 'Columnwise', ' ', 1, 1, tauq( jj ),
330 $ 1 )
331 ELSE
332 CALL dgebr2d( ictxt, 'Columnwise', ' ', 1, 1, d( jj ),
333 $ 1, iarow, iacol )
334 CALL zgebr2d( ictxt, 'Columnwise', ' ', 1, 1, tauq( jj ),
335 $ 1, iarow, iacol )
336 END IF
337 END IF
338 IF( myrow.EQ.iarow )
339 $ taup( ii ) = zero
340 RETURN
341 END IF
342
343 alpha = zero
344
345 IF( m.GE.n ) THEN
346
347
348
349 CALL descset( descd, 1, ja+
min(m,n)-1, 1, desca( nb_ ), myrow,
350 $ desca( csrc_ ), desca( ctxt_ ), 1 )
351 CALL descset( desce, ia+
min(m,n)-1, 1, desca( mb_ ), 1,
352 $ desca( rsrc_ ), mycol, desca( ctxt_ ),
353 $ desca( lld_ ) )
354 DO 10 k = 1, n
355 i = ia + k - 1
356 j = ja + k - 1
357
358
359
360
361 CALL pzlarfg( m-k+1, alpha, i, j, a,
min( i+1, m+ia-1 ),
362 $ j, desca, 1, tauq )
363 CALL pdelset( d, 1, j, descd, dble( alpha ) )
364 CALL pzelset( a, i, j, desca, one )
365
366
367
368 CALL pzlarfc(
'Left', m-k+1, n-k, a, i, j, desca, 1, tauq,
369 $ a, i, j+1, desca, work )
370 CALL pzelset( a, i, j, desca, dcmplx( dble( alpha ) ) )
371
372 IF( k.LT.n ) THEN
373
374
375
376
377 CALL pzlacgv( n-k, a, i, j+1, desca, desca( m_ ) )
378 CALL pzlarfg( n-k, alpha, i, j+1, a, i,
379 $
min( j+2, ja+n-1 ), desca, desca( m_ ),
380 $ taup )
381 CALL pdelset( e, i, 1, desce, dble( alpha ) )
382 CALL pzelset( a, i, j+1, desca, one )
383
384
385
386 CALL pzlarf(
'Right', m-k, n-k, a, i, j+1, desca,
387 $ desca( m_ ), taup, a, i+1, j+1, desca,
388 $ work )
389 CALL pzelset( a, i, j+1, desca, dcmplx( dble( alpha ) ) )
390 CALL pzlacgv( n-k, a, i, j+1, desca, desca( m_ ) )
391 ELSE
392 CALL pzelset( taup, i, 1, desce, zero )
393 END IF
394 10 CONTINUE
395
396 ELSE
397
398
399
400 CALL descset( descd, ia+
min(m,n)-1, 1, desca( mb_ ), 1,
401 $ desca( rsrc_ ), mycol, desca( ctxt_ ),
402 $ desca( lld_ ) )
403 CALL descset( desce, 1, ja+
min(m,n)-1, 1, desca( nb_ ), myrow,
404 $ desca( csrc_ ), desca( ctxt_ ), 1 )
405 DO 20 k = 1, m
406 i = ia + k - 1
407 j = ja + k - 1
408
409
410
411
412 CALL pzlacgv( n-k+1, a, i, j, desca, desca( m_ ) )
413 CALL pzlarfg( n-k+1, alpha, i, j, a, i,
414 $
min( j+1, ja+n-1 ), desca, desca( m_ ), taup )
415 CALL pdelset( d, i, 1, descd, dble( alpha ) )
416 CALL pzelset( a, i, j, desca, one )
417
418
419
420 CALL pzlarf(
'Right', m-k, n-k+1, a, i, j, desca,
421 $ desca( m_ ), taup, a,
min( i+1, ia+m-1 ), j,
422 $ desca, work )
423 CALL pzelset( a, i, j, desca, dcmplx( dble( alpha ) ) )
424 CALL pzlacgv( n-k+1, a, i, j, desca, desca( m_ ) )
425
426 IF( k.LT.m ) THEN
427
428
429
430
431 CALL pzlarfg( m-k, alpha, i+1, j, a,
432 $
min( i+2, ia+m-1 ), j, desca, 1, tauq )
433 CALL pdelset( e, 1, j, desce, dble( alpha ) )
434 CALL pzelset( a, i+1, j, desca, one )
435
436
437
438 CALL pzlarfc(
'Left', m-k, n-k, a, i+1, j, desca, 1,
439 $ tauq, a, i+1, j+1, desca, work )
440 CALL pzelset( a, i+1, j, desca, dcmplx( dble( alpha ) ) )
441 ELSE
442 CALL pzelset( tauq, 1, j, desce, zero )
443 END IF
444 20 CONTINUE
445 END IF
446
447 work( 1 ) = dcmplx( dble( lwmin ) )
448
449 RETURN
450
451
452
subroutine chk1mat(ma, mapos0, na, napos0, ia, ja, desca, descapos0, info)
subroutine descset(desc, m, n, mb, nb, irsrc, icsrc, ictxt, lld)
integer function indxg2p(indxglob, nb, iproc, isrcproc, nprocs)
subroutine infog2l(grindx, gcindx, desc, nprow, npcol, myrow, mycol, lrindx, lcindx, rsrc, csrc)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine pdelset(a, ia, ja, desca, alpha)
subroutine pxerbla(ictxt, srname, info)
subroutine pzelset(a, ia, ja, desca, alpha)
subroutine pzlacgv(n, x, ix, jx, descx, incx)
subroutine pzlarf(side, m, n, v, iv, jv, descv, incv, tau, c, ic, jc, descc, work)
subroutine pzlarfc(side, m, n, v, iv, jv, descv, incv, tau, c, ic, jc, descc, work)
subroutine pzlarfg(n, alpha, iax, jax, x, ix, jx, descx, incx, tau)