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Functions
JTriggerTester.cc File Reference

Auxiliary program to verify processing of Monte Carlo events. More...

#include <string>
#include <iostream>
#include <iomanip>
#include <utility>
#include "km3net-dataformat/offline/Head.hh"
#include "km3net-dataformat/offline/Evt.hh"
#include "km3net-dataformat/offline/Hit.hh"
#include "JAAnet/JHead.hh"
#include "JAAnet/JHeadToolkit.hh"
#include "JAAnet/JAAnetToolkit.hh"
#include "JPhysics/JK40Rates.hh"
#include "km3net-dataformat/online/JDAQ.hh"
#include "JDetector/JDetector.hh"
#include "JDetector/JDetectorToolkit.hh"
#include "JDetector/JPMTRouter.hh"
#include "JDetector/JModuleRouter.hh"
#include "JDetector/JPMTParametersMap.hh"
#include "JDetector/JPMTParametersToolkit.hh"
#include "JTrigger/JTriggerParameters.hh"
#include "JSupport/JMultipleFileScanner.hh"
#include "JSupport/JMonteCarloFileSupportkit.hh"
#include "JSupport/JSupport.hh"
#include "JTools/JHashMap.hh"
#include "JTools/JWeight.hh"
#include "JTools/JQuantile.hh"
#include "Jeep/JPrint.hh"
#include "Jeep/JParser.hh"
#include "Jeep/JMessage.hh"

Go to the source code of this file.

Functions

int main (int argc, char **argv)
 

Detailed Description

Auxiliary program to verify processing of Monte Carlo events.

Note that the available options are identical to those of JTriggerEfficiency.cc.

Author
mdejong

Definition in file JTriggerTester.cc.

Function Documentation

◆ main()

int main ( int  argc,
char **  argv 
)

Definition at line 84 of file JTriggerTester.cc.

85 {
86  using namespace std;
87  using namespace JPP;
88 
89  JMultipleFileScanner<Evt> inputFile;
90  JLimit_t& numberOfEvents = inputFile.getLimit();
91  string detectorFileA;
92  string detectorFileB;
93  JTriggerParameters parameters;
94  JPMTParametersMap pmtParameters;
95  JK40Rates rates_Hz;
96  int debug;
97 
98  try {
99 
100  JParser<> zap("Auxiliary program to verify processing of Monte Carlo events.");
101 
102  zap['f'] = make_field(inputFile, "input file (output of detector simulation)");
103  zap['n'] = make_field(numberOfEvents) = JLimit::max();
104  zap['a'] = make_field(detectorFileA, "detector used for converion from Monte Carlo truth to raw data.");
105  zap['b'] = make_field(detectorFileB, "detector used for conversion of raw data to calibrated data.") = "";
106  zap['@'] = make_field(parameters, "Trigger parameters (or corresponding file name)") = JPARSER::initialised();
107  zap['P'] = make_field(pmtParameters, "PMT simulation data (or corresponding file name)") = JPARSER::initialised();
108  zap['B'] = make_field(rates_Hz, "background rates [Hz]") = JPARSER::initialised();
109  zap['d'] = make_field(debug, "debug") = 2;
110 
111  zap(argc, argv);
112  }
113  catch(const exception &error) {
114  FATAL(error.what() << endl);
115  }
116 
117 
118  if (detectorFileB == "") {
119  detectorFileB = detectorFileA;
120  }
121 
122 
123  JDetector detectorA;
124  JDetector detectorB;
125 
126  try {
127  load(detectorFileA, detectorA);
128  load(detectorFileB, detectorB);
129  }
130  catch(const JException& error) {
131  FATAL(error);
132  }
133 
134  NOTICE("Number of modules in detector A <" << detectorFileA << ">: " << setw(4) << detectorA.size() << endl);
135  NOTICE("Number of modules in detector B <" << detectorFileB << ">: " << setw(4) << detectorB.size() << endl);
136 
137  JPMTParametersMap::Throw(true);
138 
139  if (!pmtParameters.is_valid()) {
140  FATAL("Invalid PMT parameters " << pmtParameters << endl);
141  }
142 
143  if (pmtParameters.getQE() != 1.0) {
144 
145  NOTICE("Correct background rates with global efficiency " << pmtParameters.getQE() << endl);
146 
147  rates_Hz.correct(pmtParameters.getQE());
148 
149  NOTICE("Back ground rates: " << rates_Hz << endl);
150  }
151 
152  const JPMTRouter pmtRouter (detectorA);
153  const JModuleRouter moduleRouter(detectorB);
154 
155  parameters.set(getMaximalDistance(detectorB));
156 
157  DEBUG("Trigger:" << endl << parameters << endl);
158  DEBUG("PMT parameters:" << endl << pmtParameters << endl);
159 
160  Head header;
161 
162  try {
163  header = getHeader(inputFile);
164  }
165  catch(const JException& error) {
166  FATAL(error);
167  }
168 
169 
174 
175  JQuantile QT;
176 
177  while (inputFile.hasNext()) {
178 
179  STATUS("event: " << setw(10) << inputFile.getCounter() << '\r');
180 
181  Evt* event = inputFile.next();
182 
183  if (!event->mc_hits.empty()) {
184  QT.put(getTimeRange(*event).getLength());
185  }
186 
187  for (vector<Hit>::const_iterator hit = event->mc_hits.begin(); hit != event->mc_hits.end(); ++hit) {
188 
189  if (!pmtRouter.hasPMT(hit->pmt_id)) {
190 
191  miss[hit->pmt_id].put(getNPE(*hit));
192 
193  continue;
194  }
195 
196  const JPMTIdentifier pmt = pmtRouter.getIdentifier(hit->pmt_id);
197 
198  if (!moduleRouter.hasModule(pmt.getID())) {
199 
200  lost[pmt].put(getNPE(*hit));
201 
202  continue;
203  }
204 
205  const double t0 = getTime(*hit);
206  const double t1 = putTime(t0, pmtRouter .getPMT(hit->pmt_id));
207  const double t2 = getTime(t1, moduleRouter.getPMT(pmt));
208 
209  if (fabs(t2 - t0) > parameters.TMaxLocal_ns) {
210  slip[pmt].put(getNPE(*hit));
211  }
212 
213  const JPMTParameters data = pmtParameters.getPMTParameters(pmt);
214  const double P = getSurvivalProbability(data);
215 
216  npe[pmt][0].put(getNPE(*hit));
217  npe[pmt][1].put(getNPE(*hit) * P);
218  npe[pmt][2].put(getNPE(*hit) * P * data.QE);
219  }
220  }
221  STATUS(endl);
222 
223 
224  NOTICE("Number of PMTs absent in detector A: " << setw(6) << miss.size() << endl);
225 
226  for (JHashMap<int, JWeight>::const_iterator i = miss.begin(); i != miss.end(); ++i) {
227  DEBUG(setw(5) << i->first << ' ' << FIXED(8,0) << i->second.getTotal() << endl);
228  }
229 
230  NOTICE("Number of PMTs absent in detector B: " << setw(6) << lost.size() << endl);
231 
232  for (JHashMap<JPMTIdentifier, JWeight>::const_iterator i = lost.begin(); i != lost.end(); ++i) {
233  DEBUG(setw(8) << i->first.getModuleID() << "[" << setw(2) << i->first.getPMTAddress() << "] " << FIXED(8,0) << i->second.getTotal() << endl);
234  }
235 
236  NOTICE("Number of PMTs with t0 detector A - B > " << FIXED(4,1) << parameters.TMaxLocal_ns << " [ns]: " << setw(6) << slip.size() << endl);
237 
238  for (JHashMap<JPMTIdentifier, JWeight>::const_iterator i = slip.begin(); i != slip.end(); ++i) {
239  DEBUG(setw(8) << i->first.getModuleID() << "[" << setw(2) << i->first.getPMTAddress() << "] " << FIXED(8,0) << i->second.getTotal() << endl);
240  }
241 
242 
243  NOTICE("Number of true photo-electrons, passed threshold and survived QE." << endl);
244 
245  tuple_type total;
246 
247  for (JHashMap<JPMTIdentifier, tuple_type>::const_iterator p = npe.begin(); p != npe.end(); ++p) {
248 
249  DEBUG(setw(8) << p->first.getModuleID() << "[" << setw(2) << p->first.getPMTAddress() << "]");
250 
251  for (size_t i = 0; i != p->second.size(); ++i) {
252  DEBUG(' ' << FIXED(8,0) << p->second[i].getTotal());
253  }
254  DEBUG(endl);
255 
256  for (size_t i = 0; i != p->second.size(); ++i) {
257  total[i].put(p->second[i].getTotal());
258  }
259  }
260 
261  NOTICE(setw(12) << "total");
262 
263  for (size_t i = 0; i != total.size(); ++i) {
264  NOTICE(' ' << FIXED(8,0) << total[i].getTotal());
265  }
266 
267  NOTICE(endl);
268 
269  NOTICE("Time range of hits [ns]: " << QT.getXmin() << " - " << QT.getXmax() << endl);
270 }
#define DEBUG(A)
Message macros.
Definition: JMessage.hh:62
#define STATUS(A)
Definition: JMessage.hh:63
#define NOTICE(A)
Definition: JMessage.hh:64
#define FATAL(A)
Definition: JMessage.hh:67
int debug
debug level
Definition: JSirene.cc:69
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Definition: JParser.hh:2142
Detector data structure.
Definition: JDetector.hh:96
Router for direct addressing of module data in detector data structure.
Auxiliary class for map of PMT parameters.
const JPMTParameters & getPMTParameters(const JPMTIdentifier &id) const
Get PMT parameters.
double getQE(const JPMTIdentifier &id) const
Get QE of given PMT.
bool is_valid() const
Check validity of PMT parameters.
Data structure for PMT parameters.
Router for direct addressing of PMT data in detector data structure.
Definition: JPMTRouter.hh:37
General exception.
Definition: JException.hh:24
int getID() const
Get identifier.
Definition: JObjectID.hh:50
Utility class to parse command line options.
Definition: JParser.hh:1698
virtual bool hasNext() override
Check availability of next element.
counter_type getCounter() const
Get counter.
virtual const pointer_type & next() override
Get next element.
T getLength() const
Get length (difference between upper and lower limit).
Definition: JRange.hh:289
JTimeRange getTimeRange(const Evt &event)
Get time range (i.e. time between earliest and latest hit) of Monte Carlo event.
double getTime(const Hit &hit)
Get true time of hit.
double getNPE(const Hit &hit)
Get true charge of hit.
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
double getSurvivalProbability(const JPMTParameters &parameters)
Get model dependent probability that a one photo-electron hit survives the simulation of the PMT assu...
double getMaximalDistance(const JDetector &detector, const bool option=false)
Get maximal distance between modules in detector.
double putTime(const T &t1, const JCalibration &cal)
Get de-calibrated time.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
Head getHeader(const JMultipleFileScanner_t &file_list)
Get Monte Carlo header.
Definition: JSTDTypes.hh:14
The Evt class respresent a Monte Carlo (MC) event as well as an offline event.
Definition: Evt.hh:21
Auxiliary data structure for floating point format specification.
Definition: JManip.hh:448
The Head class reflects the header of Monte-Carlo event files, which consists of keys (also referred ...
Definition: Head.hh:65
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
Definition: JParser.hh:68
Auxiliary class for K40 rates.
Definition: JK40Rates.hh:41
void correct(const double QE)
Correct rates for global efficiency,.
Definition: JK40Rates.hh:130
Auxiliary class for defining the range of iterations of objects.
Definition: JLimit.hh:45
General purpose class for hash map of unique keys.
Definition: JHashMap.hh:75
container_type::const_iterator const_iterator
Definition: JHashMap.hh:86
void put(typename JClass< key_type > ::argument_type key, typename JClass< mapped_type >::argument_type value)
Put pair-wise element (key,value) into collection.
Auxiliary data structure for running average, standard deviation and quantiles.
Definition: JQuantile.hh:46
double getXmin() const
Get minimum value.
Definition: JQuantile.hh:208
void put(const double x, const double w=1.0)
Put value.
Definition: JQuantile.hh:133
double getXmax() const
Get maximum value.
Definition: JQuantile.hh:219