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/*
* Method Mtbl_cf::display
*
* (see file mtbl_cf.h for documentation).
*
*/
/*
* Copyright (c) 2003 Eric Gourgoulhon
*
* This file is part of LORENE.
*
* LORENE is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2
* as published by the Free Software Foundation.
*
* LORENE is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with LORENE; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
*/
char mtbl_cf_display_C[] = "$Header: /cvsroot/Lorene/C++/Source/Mtbl_cf/mtbl_cf_display.C,v 1.3 2014/10/13 08:53:08 j_novak Exp $" ;
/*
* $Id: mtbl_cf_display.C,v 1.3 2014/10/13 08:53:08 j_novak Exp $
* $Log: mtbl_cf_display.C,v $
* Revision 1.3 2014/10/13 08:53:08 j_novak
* Lorene classes and functions now belong to the namespace Lorene.
*
* Revision 1.2 2014/10/06 15:13:15 j_novak
* Modified #include directives to use c++ syntax.
*
* Revision 1.1 2003/10/19 19:51:58 e_gourgoulhon
* First version
*
*
*
* $Header: /cvsroot/Lorene/C++/Source/Mtbl_cf/mtbl_cf_display.C,v 1.3 2014/10/13 08:53:08 j_novak Exp $
*
*/
// C headers
#include <cstdlib>
#include <cmath>
// Lorene headers
#include "mtbl_cf.h"
namespace Lorene {
void Mtbl_cf::display(double thres, int precis, ostream& ost) const {
ost << "Spectral expansion (Mtbl_cf, threshold for display = "
<< thres << ")" << endl ;
ost << base << endl ;
if (etat == ETATNONDEF) {
ost << " state: UNDEFINED" << endl ;
return ;
}
if (etat == ETATZERO) {
ost << " state: ZERO" << endl ;
return ;
}
ost.precision(precis);
ost.setf(ios::showpoint);
assert(etat == ETATQCQ) ;
char namep[12] ;
char namet[12] ;
char namer[12] ;
for (int l=0; l<nzone; l++) {
int nr = mg->get_nr(l) ;
int nt = mg->get_nt(l) ;
int np = mg->get_np(l) ;
ost << " --------- Domain no. " << l << " ------- nr x nt x np = "
<< nr << " x " << nt << " x " << np << " ------" << endl ;
const Tbl& tcf = *(t[l]) ;
if (tcf.get_etat() == ETATZERO) {
ost << "*** identically ZERO ***" << endl << endl ;
continue ;
}
if (tcf.get_etat() == ETATNONDEF) {
ost << "*** UNDEFINED ***" << endl << endl ;
continue ;
}
assert( tcf.get_etat() == ETATQCQ ) ;
for (int k=0; k<=np; k++) {
base.name_phi(l, k, namep) ;
if (namep[0] == 'u') continue ; // unused phi coefficient
for (int j=0; j<nt; j++) {
bool test_display = false ;
for (int i=0; i<nr; i++) {
if (fabs( tcf(k, j, i) ) >= thres) test_display = true ;
}
base.name_theta(l, k, j, namet) ;
test_display = test_display && ( namet[0] != 'u' ) ;
if (test_display) {
ost << "# " << namep << " " << namet << " :" ;
for (int i=0; i<nr; i++) {
double cx = tcf(k, j, i) ;
if (fabs( cx ) >= thres) {
base.name_r(l, k, j, i, namer) ;
if (namer[0] == 'u') continue ; // unused r coefficient
if ( (i>0) && (cx >= 0.) ) {
ost << " +" << setw(precis) << cx
<< " " << namer ;
}
else {
ost << " " << setw(precis) << cx
<< " " << namer ;
}
}
}
ost << endl ;
}
} // end of theta loop (index j)
} // end of phi loop (index k)
ost << endl ;
} // end of loop on the domains (index l)
}
}
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