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MagBRod.cc

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00001 // #include "Utilities/Configuration/interface/Architecture.h"
00002 
00003 /*
00004  *  See header file for a description of this class.
00005  *
00006  *  $Date: 2007/02/03 16:15:59 $
00007  *  $Revision: 1.3 $
00008  *  \author N. Amapane - INFN Torino
00009  */
00010 
00011 #include "MagneticField/Layers/interface/MagBRod.h"
00012 #include "MagneticField/Layers/interface/MagBSlab.h"
00013 
00014 #include "MagneticField/Layers/interface/MagVerbosity.h"
00015 
00016 #include <iostream>
00017 
00018 using namespace std;
00019 
00020 MagBRod::MagBRod(vector<MagBSlab*>& slabs, Geom::Phi<float> phiMin) :
00021   theSlabs(slabs),
00022   thePhiMin(phiMin),
00023   theBinFinder(0)
00024 {
00025   // TOFIX
00026 //   if (verbose.debugOut) cout << "Building MagBRod with " << theSlabs.size()
00027 //                << " slabs, minPhi " << thePhiMin << endl;
00028   
00029   if (theSlabs.size()>1) { // Set the binfinder
00030     vector<double> zBorders;
00031     for (vector<MagBSlab *>::const_iterator islab = theSlabs.begin();
00032          islab != theSlabs.end(); ++islab) {
00033   // TOFIX
00034       if (verbose::debugOut) cout << (*islab)->minZ() <<endl;
00035       //FIXME assume layers are already sorted in Z
00036       zBorders.push_back((*islab)->minZ());
00037     }
00038     theBinFinder = new MagBinFinders::GeneralBinFinderInZ<double>(zBorders);
00039   }
00040 }
00041 
00042 MagBRod::~MagBRod() {
00043   delete theBinFinder;
00044   
00045   for (vector<MagBSlab *>::const_iterator islab = theSlabs.begin();
00046        islab != theSlabs.end(); ++islab) {
00047     delete (*islab);
00048   }
00049 }
00050 
00051 MagVolume * MagBRod::findVolume(const GlobalPoint & gp, double tolerance) const {
00052   MagVolume * result = 0;
00053   float Z = gp.z();
00054 
00055   int bin = 0;
00056   if (theBinFinder!=0) { // true if there is > 1 bin
00057     bin = theBinFinder->binIndex(Z);
00058   }
00059   
00060   // TOFIX
00061   if (verbose::debugOut) cout << "       Trying slab at Z " << theSlabs[bin]->minZ()
00062                               << " " << Z << endl ;
00063   result = theSlabs[bin]->findVolume(gp, tolerance);
00064   // TOFIX
00065   if (verbose::debugOut) cout << "***In guessed bslab"
00066                               << (result==0? " failed " : " OK ") <<endl;  
00067 
00068   return result;
00069 }
00070 
00071 
00072 

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