400 SUBROUTINE csyrfsx( UPLO, EQUED, N, NRHS, A, LDA, AF, LDAF, IPIV,
401 $ S, B, LDB, X, LDX, RCOND, BERR, N_ERR_BNDS,
402 $ ERR_BNDS_NORM, ERR_BNDS_COMP, NPARAMS, PARAMS,
403 $ WORK, RWORK, INFO )
411 CHARACTER UPLO, EQUED
412 INTEGER INFO, LDA, LDAF, LDB, LDX, N, NRHS, NPARAMS,
418 COMPLEX A( LDA, * ), AF( LDAF, * ), B( LDB, * ),
419 $ X( LDX, * ), WORK( * )
420 REAL S( * ), PARAMS( * ), BERR( * ), RWORK( * ),
421 $ err_bnds_norm( nrhs, * ),
422 $ err_bnds_comp( nrhs, * )
429 PARAMETER ( ZERO = 0.0e+0, one = 1.0e+0 )
430 REAL ITREF_DEFAULT, ITHRESH_DEFAULT,
431 $ componentwise_default
432 REAL RTHRESH_DEFAULT, DZTHRESH_DEFAULT
433 parameter( itref_default = 1.0 )
434 parameter( ithresh_default = 10.0 )
435 parameter( componentwise_default = 1.0 )
436 parameter( rthresh_default = 0.5 )
437 parameter( dzthresh_default = 0.25 )
438 INTEGER LA_LINRX_ITREF_I, LA_LINRX_ITHRESH_I,
440 parameter( la_linrx_itref_i = 1,
441 $ la_linrx_ithresh_i = 2 )
442 parameter( la_linrx_cwise_i = 3 )
443 INTEGER LA_LINRX_TRUST_I, LA_LINRX_ERR_I,
445 parameter( la_linrx_trust_i = 1, la_linrx_err_i = 2 )
446 parameter( la_linrx_rcond_i = 3 )
451 INTEGER J, PREC_TYPE, REF_TYPE
453 REAL ANORM, RCOND_TMP
454 REAL ILLRCOND_THRESH, ERR_LBND, CWISE_WRONG
457 REAL RTHRESH, UNSTABLE_THRESH
463 INTRINSIC max, sqrt, transfer
468 REAL SLAMCH, CLANSY, CLA_SYRCOND_X, CLA_SYRCOND_C
477 ref_type = int( itref_default )
478 IF ( nparams .GE. la_linrx_itref_i )
THEN
479 IF ( params( la_linrx_itref_i ) .LT. 0.0 )
THEN
480 params( la_linrx_itref_i ) = itref_default
482 ref_type = params( la_linrx_itref_i )
488 illrcond_thresh = real( n ) * slamch(
'Epsilon' )
489 ithresh = int( ithresh_default )
490 rthresh = rthresh_default
491 unstable_thresh = dzthresh_default
492 ignore_cwise = componentwise_default .EQ. 0.0
494 IF ( nparams.GE.la_linrx_ithresh_i )
THEN
495 IF ( params( la_linrx_ithresh_i ).LT.0.0 )
THEN
496 params( la_linrx_ithresh_i ) = ithresh
498 ithresh = int( params( la_linrx_ithresh_i ) )
501 IF ( nparams.GE.la_linrx_cwise_i )
THEN
502 IF ( params( la_linrx_cwise_i ).LT.0.0 )
THEN
503 IF ( ignore_cwise )
THEN
504 params( la_linrx_cwise_i ) = 0.0
506 params( la_linrx_cwise_i ) = 1.0
509 ignore_cwise = params( la_linrx_cwise_i ) .EQ. 0.0
512 IF ( ref_type .EQ. 0 .OR. n_err_bnds .EQ. 0 )
THEN
514 ELSE IF ( ignore_cwise )
THEN
520 rcequ = lsame( equed,
'Y' )
524 IF ( .NOT.lsame( uplo,
'U' ) .AND. .NOT.lsame( uplo,
'L' ) )
THEN
526 ELSE IF( .NOT.rcequ .AND. .NOT.lsame( equed,
'N' ) )
THEN
528 ELSE IF( n.LT.0 )
THEN
530 ELSE IF( nrhs.LT.0 )
THEN
532 ELSE IF( lda.LT.max( 1, n ) )
THEN
534 ELSE IF( ldaf.LT.max( 1, n ) )
THEN
536 ELSE IF( ldb.LT.max( 1, n ) )
THEN
538 ELSE IF( ldx.LT.max( 1, n ) )
THEN
542 CALL xerbla(
'CSYRFSX', -info )
548 IF( n.EQ.0 .OR. nrhs.EQ.0 )
THEN
552 IF ( n_err_bnds .GE. 1 )
THEN
553 err_bnds_norm( j, la_linrx_trust_i ) = 1.0
554 err_bnds_comp( j, la_linrx_trust_i ) = 1.0
556 IF ( n_err_bnds .GE. 2 )
THEN
557 err_bnds_norm( j, la_linrx_err_i ) = 0.0
558 err_bnds_comp( j, la_linrx_err_i ) = 0.0
560 IF ( n_err_bnds .GE. 3 )
THEN
561 err_bnds_norm( j, la_linrx_rcond_i ) = 1.0
562 err_bnds_comp( j, la_linrx_rcond_i ) = 1.0
573 IF ( n_err_bnds .GE. 1 )
THEN
574 err_bnds_norm( j, la_linrx_trust_i ) = 1.0
575 err_bnds_comp( j, la_linrx_trust_i ) = 1.0
577 IF ( n_err_bnds .GE. 2 )
THEN
578 err_bnds_norm( j, la_linrx_err_i ) = 1.0
579 err_bnds_comp( j, la_linrx_err_i ) = 1.0
581 IF ( n_err_bnds .GE. 3 )
THEN
582 err_bnds_norm( j, la_linrx_rcond_i ) = 0.0
583 err_bnds_comp( j, la_linrx_rcond_i ) = 0.0
591 anorm = clansy( norm, uplo, n, a, lda, rwork )
592 CALL csycon( uplo, n, af, ldaf, ipiv, anorm, rcond, work,
597 IF ( ref_type .NE. 0 )
THEN
599 prec_type = ilaprec(
'D' )
602 $ nrhs, a, lda, af, ldaf, ipiv, rcequ, s, b,
603 $ ldb, x, ldx, berr, n_norms, err_bnds_norm, err_bnds_comp,
604 $ work, rwork, work(n+1),
605 $ transfer(rwork(1:2*n), (/ (zero, zero) /), n), rcond,
606 $ ithresh, rthresh, unstable_thresh, ignore_cwise,
610 err_lbnd = max( 10.0, sqrt( real( n ) ) ) * slamch(
'Epsilon' )
611 IF (n_err_bnds .GE. 1 .AND. n_norms .GE. 1)
THEN
616 rcond_tmp = cla_syrcond_c( uplo, n, a, lda, af, ldaf, ipiv,
617 $ s, .true., info, work, rwork )
619 rcond_tmp = cla_syrcond_c( uplo, n, a, lda, af, ldaf, ipiv,
620 $ s, .false., info, work, rwork )
626 IF ( n_err_bnds .GE. la_linrx_err_i
627 $ .AND. err_bnds_norm( j, la_linrx_err_i ) .GT. 1.0 )
628 $ err_bnds_norm( j, la_linrx_err_i ) = 1.0
632 IF ( rcond_tmp .LT. illrcond_thresh )
THEN
633 err_bnds_norm( j, la_linrx_err_i ) = 1.0
634 err_bnds_norm( j, la_linrx_trust_i ) = 0.0
635 IF ( info .LE. n ) info = n + j
636 ELSE IF ( err_bnds_norm( j, la_linrx_err_i ) .LT. err_lbnd )
638 err_bnds_norm( j, la_linrx_err_i ) = err_lbnd
639 err_bnds_norm( j, la_linrx_trust_i ) = 1.0
644 IF ( n_err_bnds .GE. la_linrx_rcond_i )
THEN
645 err_bnds_norm( j, la_linrx_rcond_i ) = rcond_tmp
650 IF ( n_err_bnds .GE. 1 .AND. n_norms .GE. 2 )
THEN
660 cwise_wrong = sqrt( slamch(
'Epsilon' ) )
662 IF ( err_bnds_comp( j, la_linrx_err_i ) .LT. cwise_wrong )
664 rcond_tmp = cla_syrcond_x( uplo, n, a, lda, af, ldaf,
665 $ ipiv, x(1,j), info, work, rwork )
672 IF ( n_err_bnds .GE. la_linrx_err_i
673 $ .AND. err_bnds_comp( j, la_linrx_err_i ) .GT. 1.0 )
674 $ err_bnds_comp( j, la_linrx_err_i ) = 1.0
679 IF ( rcond_tmp .LT. illrcond_thresh )
THEN
680 err_bnds_comp( j, la_linrx_err_i ) = 1.0
681 err_bnds_comp( j, la_linrx_trust_i ) = 0.0
682 IF ( .NOT. ignore_cwise
683 $ .AND. info.LT.n + j ) info = n + j
684 ELSE IF ( err_bnds_comp( j, la_linrx_err_i )
685 $ .LT. err_lbnd )
THEN
686 err_bnds_comp( j, la_linrx_err_i ) = err_lbnd
687 err_bnds_comp( j, la_linrx_trust_i ) = 1.0
692 IF ( n_err_bnds .GE. la_linrx_rcond_i )
THEN
693 err_bnds_comp( j, la_linrx_rcond_i ) = rcond_tmp