45int main(
int argc,
char **argv)
53 JLimit_t& numberOfEvents = inputFile.getLimit();
62 JParser<> zap(
"Example program to verify Monte Carlo data.");
74 catch(
const exception &error) {
75 FATAL(error.what() << endl);
81 if (detectorFile !=
"") {
96 NOTICE(
"Apply detector offset " << offset << endl);
104 for ( ; x < -10.0; x += 5.0) { X.push_back(x); }
105 for ( ; x < +20.0; x += 1.0) { X.push_back(x); }
106 for ( ; x < +50.0; x += 2.0) { X.push_back(x); }
107 for ( ; x < +100.0; x += 5.0) { X.push_back(x); }
108 for ( ; x < +250.0; x += 10.0) { X.push_back(x); }
109 for ( ; x < +500.0; x += 25.0) { X.push_back(x); }
110 for ( ; x < +900.0; x += 50.0) { X.push_back(x); }
116 size_t number_of_events = 0;
122 const Evt*
event = inputFile.
next();
124 if (!event->mc_hits.empty()) {
128 size_t number_of_muons = 0;
130 for (vector<Trk>::const_iterator track = event->mc_trks.begin(); track != event->mc_trks.end(); ++track) {
132 number_of_muons += 1;
136 if (!M(number_of_muons)) {
140 if (event->mc_hits.size() < L_cut)
continue;
142 for (vector<Hit>::const_iterator hit = event->mc_hits.begin(); hit != event->mc_hits.end(); ++hit) {
144 npe[hit->type] += hit->a;
146 const double t1 =
getTime(*hit);
148 vector<Trk>::const_iterator track = find_if(event->mc_trks.begin(),
149 event->mc_trks.end(),
150 make_predicate(&
Trk::id, hit->origin));
152 if (track != event->mc_trks.end() &&
is_muon(*track)) {
156 if (router.
hasPMT(hit->pmt_id)) {
159 const double t0 = muon.
getT(pmt);
161 H1[pmt.
getID()]->Fill(t1 - t0, hit->a);
163 H1->Fill(t1 - t0, hit->a);
170 if (number_of_events != 0) {
172 const double W = 1.0 / (double) number_of_events;
183 cout <<
"photon-electron statistics" << endl;
185 for (
const auto& i : npe) {
186 cout << setw(3) << i.first <<
' ' << setw(6) << i.second << endl;
Data structure for detector geometry and calibration.
Dynamic ROOT object management.
General purpose messaging.
#define DEBUG(A)
Message macros.
Scanning of objects from multiple files according a format that follows from the extension of each fi...
Direct access to PMT in detector data structure.
Utility class to parse command line options.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
I/O formatting auxiliaries.
Auxiliary class to define a range between two values.
ROOT TTree parameter settings of various packages.
Router for direct addressing of PMT data in detector data structure.
bool hasPMT(const JObjectID &id) const
Has PMT.
const JPMT & getPMT(const JPMTAddress &address) const
Get PMT.
Data structure for PMT geometry, calibration and status.
double getT(const JVector3D &pos) const
Get arrival time of Cherenkov light at given position.
int getID() const
Get identifier.
Utility class to parse command line options.
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys.
void Write(TDirectory &out, const bool wm=false)
Write objects to file.
General purpose class for object reading from a list of file names.
virtual bool hasNext() override
Check availability of next element.
counter_type getCounter() const
Get counter.
virtual const pointer_type & next() override
Get next element.
int main(int argc, char **argv)
JTrack3E getTrack(const Trk &track)
Get track.
JPosition3D getPosition(const Vec &pos)
Get position.
bool is_muon(const Trk &track)
Test whether given track is a (anti-)muon.
Vec getOffset(const JHead &header)
Get offset.
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
void convertToPDF(TH1 &h1, const std::string &option="NW", const double factor=1.0)
Convert 1D histogram to PDF.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
Head getHeader(const JMultipleFileScanner_t &file_list)
Get Monte Carlo header.
const char * getTime()
Get current local time conform ISO-8601 standard.
The Evt class respresent a Monte Carlo (MC) event as well as an offline event.
Type definition of range.
Auxiliary class for defining the range of iterations of objects.
static counter_type max()
Get maximum counter value.
The Vec class is a straightforward 3-d vector, which also works in pyroot.