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12 CHARACTER UPLO
13 INTEGER IB, INFO, JA, LAF, LWORK, N, NRHS
14
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16 INTEGER DESCA( * ), DESCB( * )
17 COMPLEX AF( * ), B( * ), E( * ), WORK( * )
18 REAL D( * )
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377 REAL ONE, ZERO
378 parameter( one = 1.0e+0 )
379 parameter( zero = 0.0e+0 )
380 COMPLEX CONE, CZERO
381 parameter( cone = ( 1.0e+0, 0.0e+0 ) )
382 parameter( czero = ( 0.0e+0, 0.0e+0 ) )
383 INTEGER INT_ONE
384 parameter( int_one = 1 )
385 INTEGER DESCMULT, BIGNUM
386 parameter(descmult = 100, bignum = descmult * descmult)
387 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
388 $ LLD_, MB_, M_, NB_, N_, RSRC_
389 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
390 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
391 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
392
393
394 INTEGER CSRC, FIRST_PROC, I, ICTXT, ICTXT_NEW,
395 $ ICTXT_SAVE, IDUM1, IDUM3, JA_NEW, LLDA, LLDB,
396 $ MYCOL, MYROW, MY_NUM_COLS, NB, NP, NPCOL,
397 $ NPROW, NP_SAVE, ODD_SIZE, PART_OFFSET,
398 $ PART_SIZE, RETURN_CODE, STORE_M_B,
399 $ STORE_N_A, TEMP, WORK_SIZE_MIN
400
401
402 INTEGER DESCA_1XP( 7 ), DESCB_PX1( 7 ),
403 $ PARAM_CHECK( 15, 3 )
404
405
408
409
410 LOGICAL LSAME
411 INTEGER NUMROC
413
414
415 INTRINSIC ichar,
min, mod
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417
418
419
420
421 info = 0
422
423
424
425
426 desca_1xp( 1 ) = 501
427 descb_px1( 1 ) = 502
428
429 temp = desca( dtype_ )
430 IF( temp .EQ. 502 ) THEN
431
432 desca( dtype_ ) = 501
433 ENDIF
434
436
437 desca( dtype_ ) = temp
438
439 IF( return_code .NE. 0) THEN
440 info = -( 6*100 + 2 )
441 ENDIF
442
444
445 IF( return_code .NE. 0) THEN
446 info = -( 9*100 + 2 )
447 ENDIF
448
449
450
451
452 IF( desca_1xp( 2 ) .NE. descb_px1( 2 ) ) THEN
453 info = -( 9*100 + 2 )
454 ENDIF
455
456
457
458
459
460 IF( desca_1xp( 4 ) .NE. descb_px1( 4 ) ) THEN
461 info = -( 9*100 + 4 )
462 ENDIF
463
464
465
466 IF( desca_1xp( 5 ) .NE. descb_px1( 5 ) ) THEN
467 info = -( 9*100 + 5 )
468 ENDIF
469
470
471
472 ictxt = desca_1xp( 2 )
473 csrc = desca_1xp( 5 )
474 nb = desca_1xp( 4 )
475 llda = desca_1xp( 6 )
476 store_n_a = desca_1xp( 3 )
477 lldb = descb_px1( 6 )
478 store_m_b = descb_px1( 3 )
479
480
481
482
483 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
484 np = nprow * npcol
485
486
487
488 IF(
lsame( uplo,
'U' ) )
THEN
489 idum1 = ichar( 'U' )
490 ELSE IF (
lsame( uplo,
'L' ) )
THEN
491 idum1 = ichar( 'L' )
492 ELSE
493 info = -1
494 END IF
495
496 IF( lwork .LT. -1) THEN
497 info = -13
498 ELSE IF ( lwork .EQ. -1 ) THEN
499 idum3 = -1
500 ELSE
501 idum3 = 1
502 ENDIF
503
504 IF( n .LT. 0 ) THEN
505 info = -2
506 ENDIF
507
508 IF( n+ja-1 .GT. store_n_a ) THEN
509 info = -( 6*100 + 6 )
510 ENDIF
511
512 IF( n+ib-1 .GT. store_m_b ) THEN
513 info = -( 9*100 + 3 )
514 ENDIF
515
516 IF( lldb .LT. nb ) THEN
517 info = -( 9*100 + 6 )
518 ENDIF
519
520 IF( nrhs .LT. 0 ) THEN
521 info = -3
522 ENDIF
523
524
525
526 IF( ja .NE. ib) THEN
527 info = -5
528 ENDIF
529
530
531
532 IF( nprow .NE. 1 ) THEN
533 info = -( 6*100+2 )
534 ENDIF
535
536 IF( n .GT. np*nb-mod( ja-1, nb )) THEN
537 info = -( 2 )
539 $ 'PCPTTRS, D&C alg.: only 1 block per proc',
540 $ -info )
541 RETURN
542 ENDIF
543
544 IF((ja+n-1.GT.nb) .AND. ( nb.LT.2*int_one )) THEN
545 info = -( 6*100+4 )
547 $ 'PCPTTRS, D&C alg.: NB too small',
548 $ -info )
549 RETURN
550 ENDIF
551
552
553 work_size_min =
554 $ (10+2*
min(100,nrhs))*npcol+4*nrhs
555
556 work( 1 ) = work_size_min
557
558 IF( lwork .LT. work_size_min ) THEN
559 IF( lwork .NE. -1 ) THEN
560 info = -13
562 $ 'PCPTTRS: worksize error',
563 $ -info )
564 ENDIF
565 RETURN
566 ENDIF
567
568
569
570 param_check( 15, 1 ) = descb(5)
571 param_check( 14, 1 ) = descb(4)
572 param_check( 13, 1 ) = descb(3)
573 param_check( 12, 1 ) = descb(2)
574 param_check( 11, 1 ) = descb(1)
575 param_check( 10, 1 ) = ib
576 param_check( 9, 1 ) = desca(5)
577 param_check( 8, 1 ) = desca(4)
578 param_check( 7, 1 ) = desca(3)
579 param_check( 6, 1 ) = desca(1)
580 param_check( 5, 1 ) = ja
581 param_check( 4, 1 ) = nrhs
582 param_check( 3, 1 ) = n
583 param_check( 2, 1 ) = idum3
584 param_check( 1, 1 ) = idum1
585
586 param_check( 15, 2 ) = 905
587 param_check( 14, 2 ) = 904
588 param_check( 13, 2 ) = 903
589 param_check( 12, 2 ) = 902
590 param_check( 11, 2 ) = 901
591 param_check( 10, 2 ) = 8
592 param_check( 9, 2 ) = 605
593 param_check( 8, 2 ) = 604
594 param_check( 7, 2 ) = 603
595 param_check( 6, 2 ) = 601
596 param_check( 5, 2 ) = 5
597 param_check( 4, 2 ) = 3
598 param_check( 3, 2 ) = 2
599 param_check( 2, 2 ) = 13
600 param_check( 1, 2 ) = 1
601
602
603
604
605
606 IF( info.GE.0 ) THEN
607 info = bignum
608 ELSE IF( info.LT.-descmult ) THEN
609 info = -info
610 ELSE
611 info = -info * descmult
612 END IF
613
614
615
616 CALL globchk( ictxt, 15, param_check, 15,
617 $ param_check( 1, 3 ), info )
618
619
620
621
622 IF( info.EQ.bignum ) THEN
623 info = 0
624 ELSE IF( mod( info, descmult ) .EQ. 0 ) THEN
625 info = -info / descmult
626 ELSE
627 info = -info
628 END IF
629
630 IF( info.LT.0 ) THEN
631 CALL pxerbla( ictxt,
'PCPTTRS', -info )
632 RETURN
633 END IF
634
635
636
637 IF( n.EQ.0 )
638 $ RETURN
639
640 IF( nrhs.EQ.0 )
641 $ RETURN
642
643
644
645
646
647 part_offset = nb*( (ja-1)/(npcol*nb) )
648
649 IF ( (mycol-csrc) .LT. (ja-part_offset-1)/nb ) THEN
650 part_offset = part_offset + nb
651 ENDIF
652
653 IF ( mycol .LT. csrc ) THEN
654 part_offset = part_offset - nb
655 ENDIF
656
657
658
659
660
661
662
663 first_proc = mod( ( ja-1 )/nb+csrc, npcol )
664
665
666
667 ja_new = mod( ja-1, nb ) + 1
668
669
670
671 np_save = np
672 np = ( ja_new+n-2 )/nb + 1
673
674
675
676 CALL reshape( ictxt, int_one, ictxt_new, int_one,
677 $ first_proc, int_one, np )
678
679
680
681 ictxt_save = ictxt
682 ictxt = ictxt_new
683 desca_1xp( 2 ) = ictxt_new
684 descb_px1( 2 ) = ictxt_new
685
686
687
688 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
689
690
691
692 IF( myrow .LT. 0 ) THEN
693 GOTO 1234
694 ENDIF
695
696
697
698
699
700
701 part_size = nb
702
703
704
705 my_num_cols =
numroc( n, part_size, mycol, 0, npcol )
706
707
708
709 IF ( mycol .EQ. 0 ) THEN
710 part_offset = part_offset+mod( ja_new-1, part_size )
711 my_num_cols = my_num_cols - mod(ja_new-1, part_size )
712 ENDIF
713
714
715
716 odd_size = my_num_cols
717 IF ( mycol .LT. np-1 ) THEN
718 odd_size = odd_size - int_one
719 ENDIF
720
721
722
723
724
725 info = 0
726
727
728
729 IF(
lsame( uplo,
'L' ) )
THEN
730
731 CALL pcpttrsv(
'L',
'N', n, nrhs, d( part_offset+1 ),
732 $ e( part_offset+1 ), ja_new, desca_1xp, b, ib,
733 $ descb_px1, af, laf, work, lwork, info )
734
735 ELSE
736
737 CALL pcpttrsv(
'U',
'C', n, nrhs, d( part_offset+1 ),
738 $ e( part_offset+1 ), ja_new, desca_1xp, b, ib,
739 $ descb_px1, af, laf, work, lwork, info )
740
741 ENDIF
742
743
744
745
746
747 DO 10 i=part_offset+1, part_offset+odd_size
748 CALL cscal( nrhs,
cmplx( cone/d( i ) ), b( i ), lldb )
749 10 CONTINUE
750
751
752
753 IF( mycol .LT. npcol-1 ) THEN
754 i=part_offset+odd_size+1
755 CALL cscal( nrhs, cone/af( odd_size+2 ), b( i ), lldb )
756 ENDIF
757
758
759
760 IF(
lsame( uplo,
'L' ) )
THEN
761
762 CALL pcpttrsv(
'L',
'C', n, nrhs, d( part_offset+1 ),
763 $ e( part_offset+1 ), ja_new, desca_1xp, b, ib,
764 $ descb_px1, af, laf, work, lwork, info )
765
766 ELSE
767
768 CALL pcpttrsv(
'U',
'N', n, nrhs, d( part_offset+1 ),
769 $ e( part_offset+1 ), ja_new, desca_1xp, b, ib,
770 $ descb_px1, af, laf, work, lwork, info )
771
772 ENDIF
773 1000 CONTINUE
774
775
776
777
778 IF( ictxt_save .NE. ictxt_new ) THEN
779 CALL blacs_gridexit( ictxt_new )
780 ENDIF
781
782 1234 CONTINUE
783
784
785
786 ictxt = ictxt_save
787 np = np_save
788
789
790
791 work( 1 ) = work_size_min
792
793
794 RETURN
795
796
797
subroutine desc_convert(desc_in, desc_out, info)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine globchk(ictxt, n, x, ldx, iwork, info)
subroutine pcpttrsv(uplo, trans, n, nrhs, d, e, ja, desca, b, ib, descb, af, laf, work, lwork, info)
subroutine pxerbla(ictxt, srname, info)
void reshape(Int *context_in, Int *major_in, Int *context_out, Int *major_out, Int *first_proc, Int *nprow_new, Int *npcol_new)