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geant4/examples/extended/gdml/libgdml/subscribers/src/trapSubscriber.cc
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//
// ********************************************************************
// * DISCLAIMER *
// * *
// * The following disclaimer summarizes all the specific disclaimers *
// * of contributors to this software. The specific disclaimers,which *
// * govern, are listed with their locations in: *
// * http://cern.ch/geant4/license *
// * *
// * Neither the authors of this software system, nor their employing *
// * institutes,nor the agencies providing financial support for this *
// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. *
// * *
// * This code implementation is the intellectual property of the *
// * GEANT4 collaboration. *
// * By copying, distributing or modifying the Program (or any work *
// * based on the Program) you indicate your acceptance of this *
// * statement, and all its terms. *
// ********************************************************************
//
//
// $Id: trapSubscriber.cc,v 1.3 2002/06/03 12:09:35 radoone Exp $
// GEANT4 tag $Name: geant4-05-00 $
//
//
// --------------------------------------------------------------
// Comments
//
// --------------------------------------------------------------
//
#include "SAXSubscriber.hh"
#include "SAXComponentFactory.hh"
#include "GDMLProcessor.hh"
#include "GDMLExpressionEvaluator.hh"
#include "trap.hh"
#include "G4VSolid.hh"
#include "G4Trap.hh"
#include <iostream>
class trapSubscriber : public SAXSubscriber
{
public:
virtual const SAXComponentObject* Build() const {
return this;
}
public:
trapSubscriber() {
Subscribe( "trap" );
}
virtual ~trapSubscriber() {
}
// The activation callback invoked by SAXProcessor whenever it has
// a new object created from XML and a corresponding subcriber exists
virtual void Activate( const SAXObject* object ) {
//std::cout << "GENERAL TRAPEZOID SUBSCRIBER:: ";
if( object != 0 ) {
try {
const trap* obj = dynamic_cast<const trap*>( object );
//std::cout << "GOT GENERAL TRAPEZOID " << obj->get_name() << std::endl;
GDMLExpressionEvaluator* calc = GDMLProcessor::GetInstance()->GetEvaluator();
const std::string& name = obj->get_name();
std::string lunit = obj->get_lunit();
std::string aunit = obj->get_aunit();
std::string sval = obj->get_x1();
sval += "*"+lunit;
double dx1 = calc->Eval( sval ); dx1 = dx1/2.;
sval = obj->get_x2();
sval += "*"+lunit;
double dx2 = calc->Eval( sval ); dx2 = dx2/2.;
sval = obj->get_x3();
sval += "*"+lunit;
double dx3 = calc->Eval( sval ); dx3 = dx3/2.;
sval = obj->get_x4();
sval += "*"+lunit;
double dx4 = calc->Eval( sval ); dx4 = dx4/2.;
sval = obj->get_y1();
sval += "*"+lunit;
double dy1 = calc->Eval( sval ); dy1 = dy1/2.;
sval = obj->get_y2();
sval += "*"+lunit;
double dy2 = calc->Eval( sval ); dy2 = dy2/2.;
sval = obj->get_z();
sval += "*"+lunit;
double dz = calc->Eval( sval ); dz = dz/2.;
sval = obj->get_theta();
sval += "*"+aunit;
double dtheta = calc->Eval( sval );
sval = obj->get_phi();
sval += "*"+aunit;
double dphi = calc->Eval( sval );
sval = obj->get_alpha1();
sval += "*"+aunit;
double dalpha1 = calc->Eval( sval );
sval = obj->get_alpha1();
sval += "*"+aunit;
double dalpha2 = calc->Eval( sval );
// std::cout << "x1: " << obj->get_x1() << lunit << " dx1: " << dx1 << std::endl;
// std::cout << "x2: " << obj->get_x2() << lunit << " dx2: " << dx2 << std::endl;
// std::cout << "x3: " << obj->get_x3() << lunit << " dx3: " << dx3 << std::endl;
// std::cout << "x4: " << obj->get_x4() << lunit << " dx4: " << dx4 << std::endl;
// std::cout << "y1: " << obj->get_y1() << lunit << " dy1: " << dy1 << std::endl;
// std::cout << "y2: " << obj->get_y2() << lunit << " dy2: " << dy2 << std::endl;
// std::cout << "z: " << obj->get_z() << lunit << " dz: " << dz << std::endl;
// std::cout << "theta: " << obj->get_theta() << lunit << " dtheta: " << dtheta << std::endl;
// std::cout << "phi: " << obj->get_phi() << aunit << " dphi: " << dphi << std::endl;
// std::cout << "alpha1: " << obj->get_alpha1() << aunit << " dalpha1: " << dalpha1 << std::endl;
// std::cout << "alpha1: " << obj->get_alpha2() << aunit << " dalpha2: " << dalpha2 << std::endl;
G4VSolid* newobj = new G4Trap( name, dz, dtheta, dphi, dy1, dx1, dx2, dalpha1,
dy2, dx3, dx4, dalpha2);
GDMLProcessor::GetInstance()->AddSolid( name, newobj );
} catch(...) {
std::cerr << "GOT INTO BAD_CAST TROUBLE!" << std::endl;
}
} else {
std::cerr << "GOT ZERO DATA POINTER!" << std::endl;
}
delete object;
}
};
DECLARE_SUBSCRIBER_FACTORY(trapSubscriber)