65int main(
int argc,
char **argv)
72 typedef JParallelFileScanner_t::multi_pointer_type multi_pointer_type;
78 JParallelFileScanner_t inputFile;
82 JCalibration_t calibrationFile;
86 histogram_type calibrate;
94 JParser<> zap(
"Program to perform detector calibration using reconstructed muon trajectories.");
103 zap[
'c'] =
make_field(calibrate,
"histogram for time calibration.");
110 catch(
const exception& error) {
111 FATAL(error.what() << endl);
115 if (!calibrate.is_valid()) {
116 FATAL(
"Invalid calibration data " << calibrate << endl);
132 unique_ptr<JDynamics> dynamics;
134 if (!calibrationFile.empty()) {
140 dynamics->load(calibrationFile);
142 catch(
const exception& error) {
154 FATAL(
"No valid target; check option -R" << endl);
160 const JMuonGandalf::storage_type storage(pdfFile, parameters.
TTS_ns);
172 TH2D ha(
"ha", NULL, 256, -0.5, 255.5,
173 calibrate.getNumberOfBins(), calibrate.getLowerLimit(), calibrate.getUpperLimit());
175 TProfile hb(
"hb", NULL, 256, -0.5, 255.5);
177 TProfile hr(
"hr", NULL, 60, 0.0, 150.0);
179 TH2D h2(
"h2", NULL, rpm->
getN(), -0.5, rpm->
getN() - 0.5,
180 calibrate.getNumberOfBins(), calibrate.getLowerLimit(), calibrate.getUpperLimit());
182 JManager_t
g1(
new TProfile(
"%", NULL, rpm->
getN(), -0.5, rpm->
getN() - 0.5, -1.0, +1.0));
185 while (inputFile.hasNext()) {
187 STATUS(
"event: " << setw(10) << inputFile.getCounter() <<
'\r');
DEBUG(endl);
189 multi_pointer_type ps = inputFile.next();
197 dynamics->update(*tev);
204 buildL0(*tev, router,
true, back_inserter(dataL0));
206 for (JFIT::JEvt::const_iterator track = in->begin(); track != in->end(); ++track) {
222 for (JDataL0_t::const_iterator i = dataL0.begin(); i != dataL0.end(); ++i) {
224 double rate_Hz = summary.
getRate(*i);
226 if (rate_Hz <= 0.0) {
243 JDataW0_t::iterator __end = unique(data.begin(), data.end(), equal_to<JDAQPMTIdentifier>());
248 if (track->getE() > 0.1)
249 fit.JRegressor_t::E_GeV = track->getE();
251 fit.JRegressor_t::E_GeV = parameters.
E_GeV;
255 for (JDataW0_t::const_iterator hit = data.begin(); hit != __end; ++hit) {
256 buffer.insert(rpm->
getIndex(hit->getModuleID()));
261 for (
const int index : buffer) {
263 JDataW0_t::iterator q = partition(data.begin(), __end, [rpm, index](
const JHitW0& hit) { return rpm->getIndex(hit.getModuleID()) != index; });
265 if (
distance(data.begin(), q) - fit.parameters.size() > 0) {
267 fit(ta, data.begin(), q);
269 for (JDataW0_t::const_iterator hit = q; hit != __end; ++hit) {
271 const double t1 = fit.value.getT(hit->
getPosition());
272 JTrack3D gradient = fit(fit.value, *hit).gradient;
279 hr.Fill(fit.value.getDistance(*hit), gradient.
getT());
281 h2.Fill(index, hit->
getT() - t1);
283 g1[
"T"]->Fill(index, gradient.
getT());
284 g1[
"X"]->Fill(index, gradient.
getX());
285 g1[
"Y"]->Fill(index, gradient.
getY());
286 g1[
"Z"]->Fill(index, gradient.
getZ());
int main(int argc, char **argv)
Data structure for detector geometry and calibration.
Dynamic detector calibration.
Basic data structure for L0 hit.
Dynamic ROOT object management.
General purpose messaging.
#define DEBUG(A)
Message macros.
Direct access to module in detector data structure.
Parallel scanning of objects from a single file or multiple files according a format that follows fro...
Utility class to parse command line options.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Double_t g1(const Double_t x)
Function.
ROOT TTree parameter settings of various packages.
Basic data structure for time and time over threshold information of hit.
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance.
Router for direct addressing of module data in detector data structure.
Data structure for set of track fit results.
void select(const JSelector_t &selector)
Select fits.
Data structure for fit of straight line paralel to z-axis.
Data structure for fit of straight line in positive z-direction.
JAxis3D & rotate_back(const JRotation3D &R)
Rotate back axis.
JAxis3D & rotate(const JRotation3D &R)
Rotate axis.
JPosition3D & rotate(const JRotation3D &R)
Rotate.
const JPosition3D & getPosition() const
Get position.
double getT(const JVector3D &pos) const
Get arrival time of Cherenkov light at given position.
double getY() const
Get y position.
double getZ() const
Get z position.
double getX() const
Get x position.
Utility class to parse command line options.
Auxiliary class for a hit with background rate value.
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys.
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.
void update(const JDAQHeader &header)
Update router.
double getRate() const
Get default rate.
double getT1() const
Get leading edge of hit.
double getToT() const
Get calibrated time over threshold of hit.
double getT() const
Get calibrated time of hit.
static const int JSTART_LENGTH_METRES
distance between projected positions on the track of optical modules for which the response does not ...
JDirection3D getDirection(const Vec &dir)
Get direction.
JPosition3D getPosition(const Vec &pos)
Get position.
static const std::string string_t
string
const char *const module_t
routing by module
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
JTOOLS::JRange< double > JZRange
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
bool qualitySorter(const JFit &first, const JFit &second)
Comparison of fit results.
bool putObject(TDirectory &dir, const TObject &object)
Write object to ROOT directory.
KM3NeT DAQ data structures and auxiliaries.
Interface for routing module identifier to index and vice versa.
virtual int getIndex(const int id) const =0
Get index.
virtual size_t getN() const =0
Get number of indices.
Dynamic detector calibration.
Auxiliary class to match data points with given model.
Auxiliary class for recursive type list generation.
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
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 ZMax_m
maximal z-positon [m]
double ZMin_m
minimal z-positon [m]
double R_Hz
default rate [Hz]
size_t numberOfPrefits
number of prefits
Wrapper class to make final fit of muon trajectory.
Auxiliary class for defining the range of iterations of objects.
const JLimit & getLimit() const
Get limit.
static counter_type max()
Get maximum counter value.
Auxiliary data structure for sorting of hits.