65 int main(
int argc, 
char **argv)
 
   69   using namespace KM3NETDAQ;
 
   72   typedef JParallelFileScanner_t::multi_pointer_type               multi_pointer_type;
 
   78   JParallelFileScanner_t   inputFile;
 
   82   JCalibration_t           calibrationFile;
 
   86   histogram_type           calibrate;
 
   93     JParser<> zap(
"Program to perform detector calibration using reconstructed muon trajectories.");
 
  100     zap[
'n'] = 
make_field(numberOfEvents)      = JLimit::max();
 
  102     zap[
'c'] = 
make_field(calibrate, 
"Histogram for time calibration per optical module.");
 
  108   catch(
const exception& error) {
 
  109     FATAL(error.what() << endl);
 
  114   if (!calibrate.is_valid()) {
 
  115     FATAL(
"Invalid calibration data " << calibrate << endl);
 
  119     WARNING(
"Number of prefits " << 
parameters.numberOfPrefits << 
" != " << 1 << endl);
 
  136   dynamics.
load(calibrationFile);
 
  153   TH2D       ha(
"ha", NULL, 256, -0.5, 255.5, 
 
  154                 calibrate.getNumberOfBins(), calibrate.getLowerLimit(), calibrate.getUpperLimit());
 
  156   TProfile   hb(
"hb", NULL, 256, -0.5, 255.5);
 
  158   TProfile   hr(
"hr", NULL,  60,  0.0, 150.0);
 
  161                 calibrate.getNumberOfBins(), calibrate.getLowerLimit(), calibrate.getUpperLimit());
 
  163   JManager_t 
g1(
new TProfile(
"%", NULL, 
detector.size(), -0.5, 
detector.size() - 0.5, -1.0, +1.0));
 
  166   while (inputFile.hasNext()) {
 
  168     STATUS(
"event: " << setw(10) << inputFile.getCounter() << 
'\r'); 
DEBUG(endl);
 
  170     multi_pointer_type ps = inputFile.next();
 
  181     buildL0(*tev, router, 
true, back_inserter(dataL0));
 
  183     for (JFIT::JEvt::const_iterator track = in->begin(); track != in->end(); ++track) {
 
  199       for (JDataL0_t::const_iterator i = dataL0.begin(); i != dataL0.end(); ++i) {
 
  201         double rate_Hz = summary.
getRate(*i);
 
  203         if (rate_Hz <= 0.0) {
 
  218       sort(data.begin(), data.end(), JMuonGandalf::compare);
 
  220       JDataW0_t::iterator __end = unique(data.begin(), data.end(), equal_to<JDAQPMTIdentifier>());
 
  225       if (track->getE() > 0.1)
 
  226         fit.JRegressor_t::E_GeV   = track->getE();
 
  232       for (JDataW0_t::const_iterator hit = data.begin(); hit != __end; ++hit) {
 
  233         buffer.insert(hit->getModuleID());
 
  242         if (
distance(data.begin(), q) - fit.parameters.size() > 0) {
 
  244           fit(ta, data.begin(), q);                   
 
  246           for (JDataW0_t::const_iterator hit = q; hit != __end; ++hit) {
 
  248             const int    index    = router.
getIndex(*
id);
 
  249             const double t1       = fit.value.getT(hit->getPosition());
 
  250             JTrack3D     gradient = fit(fit.value, *hit).gradient;
 
  254             ha.Fill(hit->getToT(), hit->getT1() - t1);
 
  255             hb.Fill(hit->getToT(), gradient.
getT());
 
  257             hr.Fill(fit.value.getDistance(*hit), gradient.
getT());
 
  259             h2.Fill(index, hit->getT() - t1);
 
  261             g1[
"T"]->Fill(index, gradient.
getT());
 
  262             g1[
"X"]->Fill(index, gradient.
getX());
 
  263             g1[
"Y"]->Fill(index, gradient.
getY());
 
  264             g1[
"Z"]->Fill(index, gradient.
getZ());
 
Utility class to parse command line options. 
 
JPredicate< JResult_t T::*, JComparison::eq > make_predicate(JResult_t T::*member, const JResult_t value)
Helper method to create predicate for data member. 
 
int main(int argc, char *argv[])
 
ROOT TTree parameter settings of various packages. 
 
static JDetectorMechanics getMechanics
Function object to get string mechanics. 
 
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance. 
 
Template specialisation of L0 builder for JHitL0 data type. 
 
void update(const JDAQHeader &header)
Update router. 
 
const int getIndex(const JObjectID &id) const 
Get index of module. 
 
Router for direct addressing of module data in detector data structure. 
 
double getRate() const 
Get default rate. 
 
*fatal Wrong number of arguments esac JCookie sh typeset Z DETECTOR typeset Z SOURCE_RUN typeset Z TARGET_RUN set_variable PARAMETERS_FILE $WORKDIR parameters
 
General purpose class for parallel reading of objects from a single file or multiple files...
 
Template specialisation of class JModel to match hit with muon trajectory along z-axis. 
 
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
 
Data structure for fit of straight line in positive z-direction. 
 
Dynamic ROOT object management. 
 
Basic data structure for time and time over threshold information of hit. 
 
Data structure for detector geometry and calibration. 
 
Wrapper class to make final fit of muon trajectory. 
 
Basic data structure for L0 hit. 
 
void load(JObjectIterator_t &input)
Load calibration data. 
 
Auxiliary class for defining the range of iterations of objects. 
 
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys...
 
JAxis3D & rotate(const JRotation3D &R)
Rotate axis. 
 
JDirection3D getDirection(const Vec &dir)
Get direction. 
 
Auxiliary class for recursive type list generation. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
Parallel scanning of objects from a single file or multiple files according a format that follows fro...
 
JPosition3D getPosition(const Vec &pos)
Get position. 
 
JAxis3D & rotate_back(const JRotation3D &R)
Rotate back axis. 
 
Dynamic detector calibration. 
 
File router for fast addressing of summary data. 
 
double getY() const 
Get y position. 
 
void load(const std::string &file_name)
Load mechanical model parameters from file. 
 
Data structure for fit parameters. 
 
then usage $script[distance] fi case set_variable R
 
double getT(const JVector3D &pos) const 
Get arrival time of Cherenkov light at given position. 
 
General purpose messaging. 
 
Direct access to module in detector data structure. 
 
Dynamic detector calibration. 
 
Auxiliary class for a hit with background rate value. 
 
static const int JSTART_LENGTH_METRES
distance between first and last hits in metres from JStart.cc 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
Data structure for set of track fit results. 
 
General purpose class for object reading from a list of file names. 
 
Utility class to parse command line options. 
 
Data structure for fit of straight line paralel to z-axis. 
 
double getX() const 
Get x position. 
 
const JLimit & getLimit() const 
Get limit. 
 
do set_variable DETECTOR_TXT $WORKDIR detector
 
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable INPUT_FILE $argv[2] eval JPrintDetector a $DETECTOR O IDENTIFIER eval JPrintDetector a $DETECTOR O SUMMARY source JAcoustics sh $DETECTOR_ID CHECK_EXIT_CODE typeset A TRIPODS get_tripods $WORKDIR tripod txt TRIPODS for EMITTER in
 
JPosition3D & rotate(const JRotation3D &R)
Rotate. 
 
void select(const JSelector_t &selector)
Select fits. 
 
double getZ() const 
Get z position. 
 
JTOOLS::JRange< double > JZRange
 
bool qualitySorter(const JRECONSTRUCTION::JFit &first, const JRECONSTRUCTION::JFit &second)
Comparison of fit results. 
 
#define DEBUG(A)
Message macros. 
 
bool putObject(TDirectory *dir, const T &object)
Write object to ROOT directory. 
 
Double_t g1(const Double_t x)
Function.