288   typedef JParallelFileScanner_t::multi_pointer_type               multi_pointer_type;
 
  294   JLimit_t&                numberOfEvents = inputFile.getLimit();
 
  296   JCalibration_t           calibrationFile;
 
  300   bool                     overwriteDetector;
 
  303   int                      number_of_iterations    =  1000;
 
  304   int                      number_of_extra_steps   =     0;
 
  310   const int DEFAULT_ID = -1;
 
  321     JParser<> zap(
"Program to determine inter-string time calibration.");
 
  327     zap[
'n'] = 
make_field(numberOfEvents)      = JLimit::max();
 
  330     zap[
'A'] = 
make_field(overwriteDetector, 
"overwrite detector file provided through '-a' with fitted time offsets.");
 
  334     zap[
'N'] = 
make_field(threads,           
"number of threads")                                = 1;
 
  339   catch(
const exception& error) {
 
  340     FATAL(error.what() << endl);
 
  344   if (strings.empty() == modules.empty()) {
 
  345     FATAL(
"Set either strings (option -S) or modules (option -M)." << endl);
 
  357   unique_ptr<JDynamics> dynamics;
 
  363     dynamics->load(calibrationFile);
 
  365   catch(
const exception& error) {
 
  366     if (!calibrationFile.empty()) {
 
  373   NOTICE(
"Reading PDFs... " << flush);
 
  380   JRegressor_t::T_ns.setRange(parameters.
TMin_ns, parameters.
TMax_ns);
 
  381   JRegressor_t::Vmax_npe           = parameters.
VMax_npe;
 
  382   JRegressor_t::MAXIMUM_ITERATIONS = parameters.
NMax;
 
  398     for (JParallelFileScanner_t in(*i); (skip -= in.skip(skip)) == 0 && in.hasNext() && counter != numberOfEvents; ++counter) {
 
  400       STATUS(
"event: " << setw(10) << counter << 
'\r'); 
DEBUG(endl);
 
  402       multi_pointer_type ps  = in.next();
 
  407       summary.update(*tev);
 
  410         dynamics->update(*tev);
 
  417         buildL0(*tev, router, 
true, back_inserter(dataL0));
 
  438           JHitW0 hit(*i, summary.getRate(i->getPMTIdentifier()));
 
  443             buffer.push_back(hit);
 
  451         buffer_type::const_iterator __end = unique(buffer.begin(), buffer.end(), equal_to<JDAQPMTIdentifier>());
 
  457         for (buffer_type::const_iterator hit = buffer.begin(); hit != __end; ++hit) {
 
  459           const JModule& module = router.getModule(hit->getModuleID());
 
  461           if (!strings.empty()) { 
map[module.
getString()].push_back(*hit); }
 
  462           if (!modules.empty()) { 
map[module.
getID()]    .push_back(*hit); }
 
  484   const double   chi2  = fit(perth);
 
  486   STATUS(
"result: " << 
FIXED(12,6) << chi2 << 
' ' << setw(6) << fit.numberOfIterations << endl);
 
  488   for (
size_t i = 0; i != fit.size(); ++i) {
 
  492       if (p != NULL) { 
STATUS(fit[i].name << 
' ' << 
FIXED(9,3) << p->
t0 << 
" [ns]" << endl); }
 
  497   if (overwriteDetector) {
 
  503     for (
size_t i = 0; i != fit.size(); ++i) {
 
  514     for (JDetector::iterator module = 
detector.begin(); module != 
detector.end(); ++module) {
 
  516       if (!module->empty()) {
 
  529     NOTICE(
"Store calibration data on file " << detectorFile << endl);
 
#define DEBUG(A)
Message macros.
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
 
#define MAKE_STRING(A)
Make string.
 
#define gmake_property(A)
macros to convert (template) parameter to JPropertiesElement object
 
void addT0(const double t0)
Add time offset.
 
int getString() const
Get string number.
 
Router for direct addressing of module data in detector data structure.
 
Data structure for a composite optical module.
 
const JPMT & getPMT(const int index) const
Get PMT.
 
Utility class to parse parameter values.
 
Data structure for set of track fit results.
 
Data structure for track fit results with history and optional associated values.
 
const std::vector< double > & getW() const
Get associated values.
 
double getT() const
Get time.
 
bool hasW(const int i) const
Check availability of value.
 
Data structure for fit of straight line paralel to z-axis.
 
int getID() const
Get identifier.
 
Utility class to parse command line options.
 
Auxiliary class for a hit with background rate value.
 
General purpose class for object reading from a list of file names.
 
General purpose class for parallel reading of objects from a single file or multiple files.
 
File router for fast addressing of summary data.
 
Template specialisation of L0 builder for JHitL0 data type.
 
static const int JSTART_LENGTH_METRES
distance between first and last hits in metres from JStart.cc
 
JDirection3D getDirection(const Vec &dir)
Get direction.
 
JPosition3D getPosition(const Vec &pos)
Get position.
 
std::set< int > getStringIDs(const JDetector &detector)
Get list of strings identifiers.
 
std::set< int > getModuleIDs(const JDetector &detector, const bool option=false)
Get list of modules identifiers.
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
 
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file.
 
JTOOLS::JRange< double > JZRange
 
const array_type< JValue_t > & get_values(const std::map< JKey_t, JValue_t, JComparator_t, JAllocator_t > &data)
Method to create array of values of map.
 
std::iterator_traits< T >::value_type getAverage(T __begin, T __end)
Get average.
 
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
 
std::map< int, buffer_type > map_type
identifier -> hits
 
Long64_t counter_type
Type definition for counter.
 
KM3NeT DAQ data structures and auxiliaries.
 
static const int NUMBER_OF_PMTS
Total number of PMTs in module.
 
Auxiliary data structure for sequence of same character.
 
Auxiliary data structure for floating point format specification.
 
Data structure for measured coincidence rates of all pairs of PMTs in optical module.
 
Dynamic detector calibration.
 
Template specialisation of class JModel to match hit with muon trajectory along z-axis.
 
Auxiliary data structure for editable parameter.
 
Template data structure for storage for PDF tables.
 
Auxiliary class for recursive type list generation.
 
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
 
Auxiliary class for editing time offset.
 
double t0
time offset [ns]
 
Data structure for fit parameters.
 
double TTS_ns
transition-time spread [ns]
 
double TMin_ns
minimal time w.r.t. Cherenkov hypothesis [ns]
 
double roadWidth_m
road width [m]
 
double TMax_ns
maximal time w.r.t. Cherenkov hypothesis [ns]
 
double VMax_npe
maximum number of of photo-electrons
 
double ZMax_m
maximal z-positon [m]
 
double ZMin_m
minimal z-positon [m]
 
int NMax
maximum number of iterations
 
double R_Hz
default rate [Hz]
 
Auxiliary data structure for chi2 function object.
 
Auxiliary class for defining the range of iterations of objects.
 
Auxiliary data structure for sorting of hits.