53 int main(
int argc,
char **argv)
57 using namespace KM3NETDAQ;
69 JParser<> zap(
"Example program to determine time slewing of L1 hits.");
74 zap[
'n'] =
make_field(numberOfEvents) = JLimit::max();
81 catch(
const exception& error) {
82 FATAL(error.what() << endl);
108 const double xmin = -25.0;
109 const double xmax = +25.0;
115 os <<
"M[" << setfill(
'0') << setw(2) << i <<
"]";
117 H1D.push_back(
new TH1D(os.str().c_str(), NULL, nx,
xmin,
xmax));
129 while (inputFile.hasNext()) {
131 STATUS(
"event: " << setw(10) << inputFile.getCounter() <<
'\r');
DEBUG(endl);
136 const Evt*
event = ps;
142 if (muon != event->mc_trks.end()) {
151 buildL0(*tev, router,
true, back_inserter(dataL0));
152 buildL2(*tev, router,
true, back_inserter(dataL2));
156 sort(dataL2.begin(), dataL2.end(), timeSorter<JHitL2>);
158 dataL2.erase(unique(dataL2.begin(), dataL2.end(), equal_to<JDAQModuleIdentifier>()), dataL2.end());
160 for (JDataL0_t::const_iterator hit = dataL0.begin(); hit != dataL0.end(); ++hit) {
162 const double t0 = trk.
getT(*hit);
163 const double t1 = converter.
getTime(hit->getT());
165 H1D[1]->Fill(t1 - t0);
169 for (JDataL2_t::const_iterator hit = dataL2.begin(); hit != dataL2.end(); ++hit) {
171 const double t0 = trk.
getT(*hit);
172 const double t1 = converter.
getTime(hit->begin()->getT());
173 const size_t index = min(hit->size(), H1D.size() - 1);
175 H1D[index]->Fill(t1 - t0);
182 TF1
f1(
"f1",
"[0]*exp(-0.5*(x-[1])*(x-[1])/([2]*[2])) + [3]");
184 string option =
"LL";
197 Double_t
sigma = 2.0;
200 for (
int i = 1; i != (*h1)->GetNbinsX(); ++i) {
202 const Double_t
x = (*h1)->GetBinCenter (i);
203 const Double_t y = (*h1)->GetBinContent(i);
211 f1.SetParameter(0, ymax);
212 f1.SetParameter(1, x0);
213 f1.SetParameter(2, sigma);
214 f1.FixParameter(3, ymin);
219 (*h1)->Fit(&f1, option.c_str(),
"same", x0 - 3 *
sigma, x0 + 3 *
sigma);
222 cout <<
"\tt0.push_back(" << showpos <<
FIXED(4,2) << f1.GetParameter(1) <<
");" << endl;
Utility class to parse command line options.
int main(int argc, char *argv[])
ROOT TTree parameter settings of various packages.
JTrack3E getTrack(const Trk &track)
Get track.
Algorithms for hit clustering and sorting.
Synchronously read DAQ events and Monte Carlo events (and optionally other events).
Template specialisation of L0 builder for JHitL0 data type.
bool is_muon(const Trk &track)
Test whether given track is a (anti-)muon.
Router for direct addressing of module data in detector data structure.
Auxiliary class to synchronously read DAQ events and Monte Carlo events (and optionally other events)...
then for HISTOGRAM in h0 h1
Auxiliary class to convert DAQ hit time to/from Monte Carlo hit time.
Auxiliary data structure for floating point format specification.
Basic data structure for time and time over threshold information of hit.
Data structure for detector geometry and calibration.
Head getHeader(const JMultipleFileScanner_t &file_list)
Get Monte Carlo header.
Basic data structure for L0 hit.
const JPolynome f1(1.0, 2.0, 3.0)
Function.
Auxiliary class for defining the range of iterations of objects.
I/O formatting auxiliaries.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Template specialisation of L2 builder for JHitL2 data type.
double getT(const JVector3D &pos) const
Get arrival time of Cherenkov light at given position.
General purpose messaging.
Auxiliary include file for time conversion between DAQ/trigger hit and Monte Carlo hit...
Direct access to module in detector data structure.
Data structure for L2 parameters.
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
Utility class to parse command line options.
2-dimensional frame with time calibrated data from one optical module.
const JLimit & getLimit() const
Get limit.
do set_variable DETECTOR_TXT $WORKDIR detector
static const int NUMBER_OF_PMTS
Total number of PMTs in module.
General purpose class for multiple pointers.
double getTime() const
Get DAQ/trigger time minus Monte Carlo time.
Basic data structure for L1 hit.
The Evt class respresent a Monte Carlo (MC) event as well as an offline event.
#define DEBUG(A)
Message macros.