31                                {
   32 
   34  JLimit_t&                        numberOfEvents = inputFiles.getLimit();
 
   35  string                           detectorFile;
   36  string                           outFile;
   39  double                           wavelength;
   42 
   46    
   47  try {
   48 
   50    
   56    zap[
'l'] = 
make_field(wavelength    , 
"LED wavelength [nm]") = 400.0;
 
   57    zap[
'T'] = 
make_field(selector                             ) = default_pmts; 
 
   58 
   59    zap(argc,argv);
   60  }
   61  catch(const exception &error) {
   62    ERROR(error.what() << endl);
 
   63  }
   64 
   67 
   69  
   70  JHitBuffer triggerBuffer;
   71  JHitBuffer snapshotBuffer;
   72  
   74 
   76 
   78 
   79  double cw = 
getSpeedOfLight() / jd.getIndexOfRefractionGroup(wavelength);
 
   80 
   83  int npairs = c.getNumberOfPairs();
   85 
   86  JManager < int, TH2D >* timeDifferences;
   87  timeDifferences = new JManager < int, TH2D > ( new TH2D("%", "", npairs, 0.5, npairs+0.5, 501, -250.5, 250.5) );
   88  
   90    
   92  
   93    triggerBuffer .clear();
   94    snapshotBuffer.clear();
   95    
   96    builder(*event, moduleRouter, true  , back_inserter(snapshotBuffer));
   97    builder(*event, moduleRouter, false , back_inserter( triggerBuffer)); 
   98 
   99    JHitBuffer::iterator __end = partition(triggerBuffer.begin(), triggerBuffer.end(), selector);
  100    if(triggerBuffer.begin() != __end){
  101 
  102      sort(triggerBuffer.begin(), __end, less<JHit>());
  103      JHitBuffer::iterator triggeredHit = triggerBuffer.begin();
  104                
  105      if( moduleRouter.hasModule( triggeredHit -> getModuleID() ) ){
  106        const JModule& triggeredModule = moduleRouter.getModule( triggeredHit -> getModuleID() );
 
  107 
  108        for(JHitBuffer::const_iterator snapshotHit = snapshotBuffer.begin(); snapshotHit != snapshotBuffer.end(); ++snapshotHit){
  109                         
  110          if( moduleRouter.hasModule( snapshotHit -> getModuleID() ) ){
  111            const JModule& snapshotModule = moduleRouter.getModule( snapshotHit -> getModuleID() );
 
  112 
  114 
  115              
  116              double Dt  = snapshotHit->getT() - triggeredHit->getT();
  117              double ToF = 
getDistance( triggeredHit->getPosition(), snapshotHit->getPosition() ) / cw;
 
  118              
  119              int xbin = c.getIndex( triggeredModule.
getFloor()-1 , snapshotModule.
getFloor()-1 ) + 1;
 
  121                (*timeDifferences)[triggeredModule.
getString()]->Fill(xbin,Dt-ToF);
 
  122              }
  123            }
  124          } else {
  125            FATAL(
"JModuleRouter trying to access non existing identifier: " << snapshotHit->getModuleID() );
 
  126          }
  127        }
  128 
  129      } else {
  130        FATAL(
"JModuleRouter trying to access non existing identifier: " << triggeredHit->getModuleID() );
 
  131      }     
  132    }
  133  }
  134  TFile output(outFile.c_str() , "recreate") ;
  135  timeDifferences -> Write(output);
  136}
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
 
int getFloor() const
Get floor number.
 
int getString() const
Get string number.
 
Router for direct addressing of module data in detector data structure.
 
Data structure for a composite optical module.
 
Utility class to parse command line options.
 
Implementation of dispersion for water in deep sea.
 
General purpose class for object reading from a list of file names.
 
virtual bool hasNext() override
Check availability of next element.
 
virtual const pointer_type & next() override
Get next element.
 
Data structure for L0 hit.
 
int getNumberOfFloors(const JDetector &detector)
Get number of floors.
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
 
double getDistance(const JFirst_t &first, const JSecond_t &second)
Get distance between objects.
 
bool comparepair(const pair_type &A, const pair_type &B)
 
const double getSpeedOfLight()
Get speed of light.
 
Auxiliary class to set-up Hit.
 
Auxiliary class for defining the range of iterations of objects.
 
static counter_type max()
Get maximum counter value.
 
Auxiliary data structure for set of PMT identifiers.