45{
   49 
   51  JLimit_t&          numberOfEvents = inputFile.getLimit();
 
   53  string             detectorFile;
   54  double             TMax_ns;
   55  int                numberOfTimeslices;
   56  double             binWidth_ns;
   57  double             binWidth_min_timeEvolution;
   60 
   61  try { 
   62 
   63    JParser<> zap(
"Example program to search for out of sync shifts around integral timeslices evolving over time.");
 
   64    
   70    zap[
'N'] = 
make_field(numberOfTimeslices)  = 40;
 
   72    zap[
'M'] = 
make_field(binWidth_min_timeEvolution) = 2;
 
   75 
   76    zap(argc, argv);
   77  }
   78  catch(const exception& error) {
   79    FATAL(error.what() << endl);
 
   80  }
   81 
   82 
   83  
   85 
   86  const int WR     =  0x80000000;    
   87  
   88  MASK[808969848]  =  0x00000020;    
   89  MASK[809544061]  =  0x00000080;    
   90  MASK[808432835]  =  0x00004000;    
   91 
   92  
   94 
   95  try {
   97  }
  100  }
  101  
  103 
  104 
  106  
  109  vector  <hit_type> 
data;  
 
  110  
  112  
  114 
  116  
  117  if (selector == "") {
  118 
  124    } else {
  125      FATAL(
"No timeslice data." << endl);
 
  126    }
  127 
  128    NOTICE(
"Selected class " << ps->getClassName() << endl);
 
  129 
  130  } else {
  131 
  132    ps = zmap[selector];
  133    
  134    ps->configure(inputFile);
  135  }
  136 
  138 
  139  
  140  const Double_t ymin = -(numberOfTimeslices + 0.5);
  141  const Double_t ymax = +(numberOfTimeslices + 0.5);
  142  const Int_t    ny   = (Int_t) (ymax - ymin);
  143  
  145  const Double_t 
xmax = min(inputFile.getLimit().max(), ps->getEntries())*
getFrameTime()*1e-9; 
 
  146  const Int_t    nx   = (Int_t) ((xmax - xmin) / (60*binWidth_min_timeEvolution)) + 1;
  147  
  148  JManager_t manager(new TH2D("M2D_%", ";time [s];shift [timeslices]", nx, xmin, xmax, ny, ymin, ymax));
  149  
  151 
  152  map_type buffer;
  153    
  155 
  156    STATUS(
"event: " << setw(10) << in.getCounter() << 
'\r'); 
DEBUG(endl);
 
  157 
  159 
  160    
  161    
  162    double t0 = 0.0;
  163    
  165      t0 += 
getTime(*hit, router.getPMT(*hit));
 
  166    }
  167    
  170    
  171    buffer[event->getFrameIndex()].push_back(t0);
  172  }    
  174    
  175 
  176  while (ps->hasNext()) {
  177    
  178    STATUS(
"event: " << setw(10) << ps->getCounter() << 
'\r'); 
DEBUG(endl);
 
  179 
  181 
  182    map_type::const_iterator p = buffer.lower_bound(timeslice->
getFrameIndex() - numberOfTimeslices);
 
  183    map_type::const_iterator q = buffer.upper_bound(timeslice->
getFrameIndex() + numberOfTimeslices);
 
  184 
  185    int number_of_events = 0;
  186 
  187    for (map_type::const_iterator i = p; i != q; ++i) {
  188      number_of_events += i->second.size();
  189    }
  190 
  191    if (number_of_events == 0) {
  192      continue;
  193    }
  194    
  195    for (JDAQTimeslice::const_iterator frame = timeslice->begin(); frame != timeslice->end(); ++frame) {
  196 
  197      
  198          
  199      if ((frame->getStatus() & ~MASK[frame->getModuleID()] & ~WR) == 0) {
  200          
  202 
  203        buildL1(*frame, router.getModule(frame->getModuleID()), back_inserter(data));
  204        
  205        TH2D* h2 = manager[frame->getModuleID()];
  206        
  207        for (vector<hit_type>::const_iterator hit = 
data.begin(); hit != 
data.end(); ++hit) {
 
  208          
  209          const double t1 = *hit + frame->getFrameIndex() * 
getFrameTime();
 
  210          
  211          for (map_type::const_iterator i = p; i != q; ++i) {
  212            for (map_type::mapped_type::const_iterator 
j = i->second.begin(); 
j != i->second.end(); ++
j) {
 
  213 
  214              const double t0 = *
j;
 
  215 
  216          
  218          if ( abs(timeFromInt)*
getFrameTime() < binWidth_ns/2. ){
 
  220          }
  221            }
  222          }
  223        }
  224      }
  225    }
  226  }
  228 
  231  }
  232}
#define DEBUG(A)
Message macros.
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
 
Simple wrapper around JModuleRouter class for direct addressing of PMT data in detector data structur...
 
Auxialiary class to assert type conversion.
 
The template JSinglePointer class can be used to hold a pointer to an object.
 
Utility class to parse command line options.
 
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys.
 
Template definition for direct access of elements in ROOT TChain.
 
int getFrameIndex() const
Get frame index.
 
JTriggerCounter_t next()
Increment trigger counter.
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
 
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
 
std::set< JROOTClassSelector > getROOTClassSelection(const bool option=false)
Get ROOT class selection.
 
const char * getTime()
Get current local time conform ISO-8601 standard.
 
KM3NeT DAQ data structures and auxiliaries.
 
double getFrameTime()
Get frame time duration.
 
std::map< int, range_type > map_type
 
Auxiliary class for a type holder.
 
Auxiliary class to select ROOT class based on class name.
 
Auxiliary class to select JTreeScanner based on ROOT class name.
 
Auxiliary class for defining the range of iterations of objects.
 
static counter_type max()
Get maximum counter value.
 
Auxiliary data structure for L1 build parameters.