383 $ AF, LDAF, COLEQU, C, B, LDB, Y,
384 $ LDY, BERR_OUT, N_NORMS,
385 $ ERR_BNDS_NORM, ERR_BNDS_COMP, RES,
386 $ AYB, DY, Y_TAIL, RCOND, ITHRESH,
387 $ RTHRESH, DZ_UB, IGNORE_CWISE,
396 INTEGER INFO, LDA, LDAF, LDB, LDY, N, NRHS, PREC_TYPE,
399 LOGICAL COLEQU, IGNORE_CWISE
400 DOUBLE PRECISION RTHRESH, DZ_UB
403 DOUBLE PRECISION A( LDA, * ), AF( LDAF, * ), B( LDB, * ),
404 $ y( ldy, * ), res( * ), dy( * ), y_tail( * )
405 DOUBLE PRECISION C( * ), AYB(*), RCOND, BERR_OUT( * ),
406 $ err_bnds_norm( nrhs, * ),
407 $ err_bnds_comp( nrhs, * )
413 INTEGER UPLO2, CNT, I, J, X_STATE, Z_STATE
414 DOUBLE PRECISION YK, DYK, YMIN, NORMY, NORMX, NORMDX, DXRAT,
415 $ DZRAT, PREVNORMDX, PREV_DZ_Z, DXRATMAX,
416 $ DZRATMAX, DX_X, DZ_Z, FINAL_DX_X, FINAL_DZ_Z,
417 $ EPS, HUGEVAL, INCR_THRESH
421 INTEGER UNSTABLE_STATE, WORKING_STATE, CONV_STATE,
422 $ NOPROG_STATE, Y_PREC_STATE, BASE_RESIDUAL,
423 $ EXTRA_RESIDUAL, EXTRA_Y
424 parameter( unstable_state = 0, working_state = 1,
425 $ conv_state = 2, noprog_state = 3 )
426 parameter( base_residual = 0, extra_residual = 1,
428 INTEGER FINAL_NRM_ERR_I, FINAL_CMP_ERR_I, BERR_I
429 INTEGER RCOND_I, NRM_RCOND_I, NRM_ERR_I, CMP_RCOND_I
430 INTEGER CMP_ERR_I, PIV_GROWTH_I
431 PARAMETER ( FINAL_NRM_ERR_I = 1, final_cmp_err_i = 2,
433 parameter( rcond_i = 4, nrm_rcond_i = 5, nrm_err_i = 6 )
434 parameter( cmp_rcond_i = 7, cmp_err_i = 8,
436 INTEGER LA_LINRX_ITREF_I, LA_LINRX_ITHRESH_I,
438 parameter( la_linrx_itref_i = 1,
439 $ la_linrx_ithresh_i = 2 )
440 parameter( la_linrx_cwise_i = 3 )
441 INTEGER LA_LINRX_TRUST_I, LA_LINRX_ERR_I,
443 parameter( la_linrx_trust_i = 1, la_linrx_err_i = 2 )
444 parameter( la_linrx_rcond_i = 3 )
455 DOUBLE PRECISION DLAMCH
458 INTRINSIC abs, max, min
462 IF (info.NE.0)
RETURN
463 eps = dlamch(
'Epsilon' )
464 hugeval = dlamch(
'Overflow' )
466 hugeval = hugeval * hugeval
468 incr_thresh = dble( n ) * eps
470 IF ( lsame( uplo,
'L' ) )
THEN
471 uplo2 = ilauplo(
'L' )
473 uplo2 = ilauplo(
'U' )
477 y_prec_state = extra_residual
478 IF ( y_prec_state .EQ. extra_y )
THEN
495 x_state = working_state
496 z_state = unstable_state
504 CALL dcopy( n, b( 1, j ), 1, res, 1 )
505 IF ( y_prec_state .EQ. base_residual )
THEN
506 CALL dsymv( uplo, n, -1.0d+0, a, lda, y(1,j), 1,
508 ELSE IF ( y_prec_state .EQ. extra_residual )
THEN
509 CALL blas_dsymv_x( uplo2, n, -1.0d+0, a, lda,
510 $ y( 1, j ), 1, 1.0d+0, res, 1, prec_type )
512 CALL blas_dsymv2_x(uplo2, n, -1.0d+0, a, lda,
513 $ y(1, j), y_tail, 1, 1.0d+0, res, 1, prec_type)
517 CALL dcopy( n, res, 1, dy, 1 )
518 CALL dpotrs( uplo, n, 1, af, ldaf, dy, n, info )
529 yk = abs( y( i, j ) )
532 IF ( yk .NE. 0.0d+0 )
THEN
533 dz_z = max( dz_z, dyk / yk )
534 ELSE IF ( dyk .NE. 0.0d+0 )
THEN
538 ymin = min( ymin, yk )
540 normy = max( normy, yk )
543 normx = max( normx, yk * c( i ) )
544 normdx = max( normdx, dyk * c( i ) )
547 normdx = max( normdx, dyk )
551 IF ( normx .NE. 0.0d+0 )
THEN
552 dx_x = normdx / normx
553 ELSE IF ( normdx .EQ. 0.0d+0 )
THEN
559 dxrat = normdx / prevnormdx
560 dzrat = dz_z / prev_dz_z
564 IF ( ymin*rcond .LT. incr_thresh*normy
565 $ .AND. y_prec_state .LT. extra_y )
568 IF ( x_state .EQ. noprog_state .AND. dxrat .LE. rthresh )
569 $ x_state = working_state
570 IF ( x_state .EQ. working_state )
THEN
571 IF ( dx_x .LE. eps )
THEN
573 ELSE IF ( dxrat .GT. rthresh )
THEN
574 IF ( y_prec_state .NE. extra_y )
THEN
577 x_state = noprog_state
580 IF ( dxrat .GT. dxratmax ) dxratmax = dxrat
582 IF ( x_state .GT. working_state ) final_dx_x = dx_x
585 IF ( z_state .EQ. unstable_state .AND. dz_z .LE. dz_ub )
586 $ z_state = working_state
587 IF ( z_state .EQ. noprog_state .AND. dzrat .LE. rthresh )
588 $ z_state = working_state
589 IF ( z_state .EQ. working_state )
THEN
590 IF ( dz_z .LE. eps )
THEN
592 ELSE IF ( dz_z .GT. dz_ub )
THEN
593 z_state = unstable_state
596 ELSE IF ( dzrat .GT. rthresh )
THEN
597 IF ( y_prec_state .NE. extra_y )
THEN
600 z_state = noprog_state
603 IF ( dzrat .GT. dzratmax ) dzratmax = dzrat
605 IF ( z_state .GT. working_state ) final_dz_z = dz_z
608 IF ( x_state.NE.working_state.AND.
609 $ ( ignore_cwise.OR.z_state.NE.working_state ) )
612 IF ( incr_prec )
THEN
614 y_prec_state = y_prec_state + 1
625 IF (y_prec_state .LT. extra_y)
THEN
626 CALL daxpy( n, 1.0d+0, dy, 1, y(1,j), 1 )
637 IF ( x_state .EQ. working_state ) final_dx_x = dx_x
638 IF ( z_state .EQ. working_state ) final_dz_z = dz_z
642 IF ( n_norms .GE. 1 )
THEN
643 err_bnds_norm( j, la_linrx_err_i ) =
644 $ final_dx_x / (1 - dxratmax)
646 IF ( n_norms .GE. 2 )
THEN
647 err_bnds_comp( j, la_linrx_err_i ) =
648 $ final_dz_z / (1 - dzratmax)
659 CALL dcopy( n, b( 1, j ), 1, res, 1 )
660 CALL dsymv( uplo, n, -1.0d+0, a, lda, y(1,j), 1, 1.0d+0, res,
664 ayb( i ) = abs( b( i, j ) )
670 $ a, lda, y(1, j), 1, 1.0d+0, ayb, 1 )