64 int main(
int argc, 
char **argv)
 
   67   using namespace KM3NETDAQ;
 
   83     JParser<> zap(
"Auxiliary program to trigger time slice data.");
 
   85     zap[
'f'] = 
make_field(inputFile,      
"input file.");
 
   87     zap[
'n'] = 
make_field(numberOfEvents)      = JLimit::max();
 
   88     zap[
'a'] = 
make_field(detectorFile,   
"detector file.");
 
   91     zap[
'C'] = 
make_field(selector,       
"timeslice selector, e.g. JDAQTimesliceL1.")    = getROOTClassSelection<JDAQTimesliceTypes_t>();
 
   96   catch(
const exception &error) {
 
   97     FATAL(error.what() << endl);
 
  105   DEBUG(
"Reset time [ms] " << 
getRTS()       * 1e-6 << endl);
 
  123   typedef double        hit_type;
 
  136   JTimer timerCC(
"Calibration");
 
  141   JTimer timerRX(
"Timeslice router");
 
  142   JTimer timerTR(
"Trigger");
 
  143   JTimer timerTX(
"Trigger router");
 
  144   JTimer timerTW(
"Timeslice writer");
 
  145   JTimer timerSW(
"Summary writer");
 
  168     DEBUG(
"Input file has no Monte Carlo header.");
 
  171   unsigned int numberOfTriggers = 0;
 
  177   for ( ; in.
hasNext() && counter != inputFile.getLimit(); ++counter) {
 
  179     STATUS(
"event: " << setw(10) << counter << 
'\r'); 
DEBUG(endl);
 
  183     DEBUG(*timeslice << endl);
 
  198     for (JDAQTimeslice::const_iterator super_frame = timeslice->begin(); super_frame != timeslice->end(); ++super_frame) {
 
  200       if (moduleRouter.
hasModule(super_frame->getModuleID())) {
 
  207         JSuperFrame2D_t& buffer = JSuperFrame2D_t::demultiplex(*super_frame, module);
 
  213         buffer.applyHighRateVeto(
parameters.highRateVeto_Hz);
 
  219         timesliceL0.push_back(JSuperFrame1D_t(buffer));
 
  227           JSuperFrame2D_t::iterator __end = partition(buffer.begin(), buffer.end(), 
parameters.triggerNB.pmts); 
 
  229           if (buffer.begin() != __end) {
 
  231             timesliceNB.push_back(JSuperFrame1D_t(super_frame->getDAQChronometer(),
 
  232                                                   super_frame->getModuleIdentifier(),
 
  235             JSuperFrame1D_t zbuf;
 
  237             buildL1(buffer.begin(), __end , back_inserter(zbuf));
 
  239             buildNB(buffer.begin() , __end, zbuf, back_inserter(*timesliceNB.rbegin()));
 
  247         timesliceL1.push_back(JSuperFrame1D_t(super_frame->getDAQChronometer(),
 
  248                                               super_frame->getModuleIdentifier(),
 
  251         buildL1(*timesliceL0.rbegin(), back_inserter(*timesliceL1.rbegin()));
 
  259         timesliceL2.push_back(JSuperFrame1D_t(super_frame->getDAQChronometer(),
 
  260                                               super_frame->getModuleIdentifier(),
 
  263         buildL2(buffer, *timesliceL1.rbegin(), back_inserter(*timesliceL2.rbegin()));
 
  271         timesliceSN.push_back(JSuperFrame1D_t(super_frame->getDAQChronometer(),
 
  272                                               super_frame->getModuleIdentifier(),
 
  275         buildSN(buffer, *timesliceL1.rbegin(), back_inserter(*timesliceSN.rbegin()));
 
  289       for (JTriggerInput::const_iterator hit = trigger_input.begin(); hit != trigger_input.
end(); ++hit) {
 
  314     trigger3DMuon  (trigger_input, back_inserter(trigger_output));
 
  315     trigger3DShower(trigger_input, back_inserter(trigger_output));
 
  316     triggerMXShower(trigger_input, timesliceL0, back_inserter(trigger_output));
 
  320     numberOfTriggers += trigger_output.size();
 
  324     DEBUG(
"Number of triggers: " << trigger_output.size() << endl);
 
  326     for (JTriggerOutput::const_iterator event = trigger_output.begin(); 
event != trigger_output.end(); ++event) {
 
  390     const double factor = 1.0 / (double) counter;
 
  392     for (
const JTimer* p : { &timerCC, &timerL0, &timerL1, &timerL2, &timerSN, &timerRX, &timerTR, &timerTX, &timerTW, &timerSW }) {
 
  393       p->print(cout, factor);
 
  396     NOTICE(
"Number of trigger/slices " << numberOfTriggers << 
"/" << counter << endl);
 
  397     NOTICE(
"Trigger rate [Hz]        " << numberOfTriggers * 1.0e9 * factor / 
getFrameTime() << endl);
 
Utility class to parse command line options. 
 
JTriggerMask_t getTriggerMask(const unsigned int bit)
Convert trigger bit to trigger mask. 
 
ROOT TTree parameter settings of various packages. 
 
const JModule & getModule(const JObjectID &id) const 
Get module parameters. 
 
Data structure for a composite optical module. 
 
void configure(const JDAQTimeslice ×lice)
Configure. 
 
Auxiliary class to select ROOT class based on class name. 
 
Recording of objects on file according a format that follows from the file name extension. 
 
Router for direct addressing of module data in detector data structure. 
 
*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
 
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
 
Long64_t counter_type
Type definition for counter. 
 
Auxiliary class for multiplexing object iterators. 
 
Basic data structure for time and time over threshold information of hit. 
 
Data structure for detector geometry and calibration. 
 
1-dimensional frame with time calibrated data from one optical module. 
 
JTimeRange getTimeRange(const Evt &event)
Get time range (i.e. time between earliest and latest hit) of Monte Carlo event. 
 
Head getHeader(const JMultipleFileScanner_t &file_list)
Get Monte Carlo header. 
 
Basic data structure for L0 hit. 
 
void setDAQLongprint(const bool option)
Set DAQ print option. 
 
Auxiliary class for defining the range of iterations of objects. 
 
double getMaximalDistance(const JDetector &detector)
Get maximal distance between modules in detector. 
 
void merge(const JMatch_t &match)
Merge events. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
Router for fast addressing of hits in KM3NETDAQ::JDAQTimeslice data structure as a function of the op...
 
double getFrameTime()
Get frame time duration. 
 
Auxiliary class for CPU timing and usage. 
 
const JDAQChronometer & getDAQChronometer() const 
Get DAQ chronometer. 
 
Auxiliary class to build JDAQEvent for a triggered event. 
 
virtual const pointer_type & next() override
Get next element. 
 
Auxiliary class to set DAQ system clock parameters. 
 
virtual bool hasNext() override
Check availability of next element. 
 
const JPosition3D & getPosition() const 
Get position. 
 
General purpose messaging. 
 
The Head class reflects the header of Monte-Carlo event files, which consists of keys (also referred ...
 
Scanning of objects from multiple files according a format that follows from the extension of each fi...
 
Direct access to module in detector data structure. 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
Auxiliary class to build JDAQTimeslice for L1 timeslice. 
 
double getRTS()
Get TDC dynamic range. 
 
General purpose class for object reading from a list of file names. 
 
Utility class to parse command line options. 
 
JTriggerbit_t getTriggerBit() const 
Get the trigger bit. 
 
bool hasModule(const JObjectID &id) const 
Has module. 
 
2-dimensional frame with time calibrated data from one optical module. 
 
const JLimit & getLimit() const 
Get limit. 
 
do set_variable DETECTOR_TXT $WORKDIR detector
 
KM3NeT DAQ constants, bit handling, etc. 
 
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 typeset A TRIPODS get_tripods $WORKDIR tripod txt TRIPODS for EMITTER in
 
Match of two events considering overlap in time. 
 
Basic data structure for L1 hit. 
 
Time slice with calibrated data. 
 
#define DEBUG(A)
Message macros. 
 
int main(int argc, char *argv[])