51   using namespace KM3NETDAQ;
 
   67     JParser<> zap(
"Monitoring of PMT time-over-threshold distributions.");
 
   69     zap[
'f'] = 
make_field(inputFile,      
"input file.");
 
   71     zap[
'n'] = 
make_field(numberOfEvents)                                                 = JLimit::max();
 
   72     zap[
'a'] = 
make_field(detectorFile,   
"detector file.");
 
   74     zap[
'c'] = 
make_field(ctMax,          
"maximal cosine space angle between PMT axes.") =   0.0;
 
   76     zap[
'D'] = 
make_field(deadTime_us,    
"L0 dead time (us)")                            = 10;
 
   77     zap[
'C'] = 
make_field(selector,       
"timeslice selector, e.g. JDAQTimesliceL1.")    = getROOTClassSelection<JDAQTimesliceTypes_t>();
 
   78     zap[
'O'] = 
make_field(option,         
"hit pre-processing option.")                   = JPreprocessor::getOptions();
 
   83   catch(
const exception &error) {
 
   84     FATAL(error.what() << endl);
 
   92   if (!T_ns.is_valid()) {
 
   93     FATAL(
"Invalid time window [ns] " << T_ns << endl);
 
   96   if (selector == JDAQTimeslice  ::Class_Name() ||
 
   97       selector == JDAQTimesliceL1::Class_Name()) {
 
  105       FATAL(
"No trigger parameters from input." << endl);
 
  108     if ((selector == JDAQTimeslice  ::Class_Name() && parameters.writeL1.prescale > 0) ||
 
  109         (selector == JDAQTimesliceL1::Class_Name())) {
 
  111       if (parameters.TMaxLocal_ns < T_ns.getUpperLimit()) {
 
  112         FATAL(
"Option -T <T_ns> = " << T_ns.getUpperLimit() << 
" is larger than in the trigger " << parameters.TMaxLocal_ns << endl);
 
  117   if (!multiplicity.is_valid())          { 
FATAL(
"Invalid multiplicity " << multiplicity << endl); }
 
  118   if ( multiplicity.getLowerLimit() < 1) { 
FATAL(
"Invalid multiplicity " << multiplicity << endl); }
 
  134     FATAL(
"Empty detector." << endl);
 
  143   const double zmin =   -0.5;   
 
  144   const double zmax =  256.5;   
 
  145   const int    nz   = (int) ((zmax-zmin) / 1.0);
 
  155   const double deadTime_ns  =  deadTime_us * 1e3;
 
  166   for (
counter_type counter = 0; 
in.hasNext() && counter != inputFile.getLimit(); ++counter) {
 
  168     STATUS(
"event: " << setw(10) << counter << 
'\r'); 
DEBUG(endl);
 
  180     for (JDAQTimeslice::const_iterator frame = timeslice->begin(); frame != timeslice->end(); ++frame) {
 
  182       if (router.hasModule(frame->getModuleID())) {
 
  184         TH2D*          h2     = manager[frame->getModuleID()];
 
  185         const JModule& module = router.getModule(frame->getModuleID());
 
  187         JSuperFrame2D_t& buffer = JSuperFrame2D_t::demultiplex(*frame, module);
 
  189         buffer.preprocess(option, match);
 
  191         JSuperFrame1D_t& 
data   = JSuperFrame1D_t::multiplex(buffer);
 
  195         for (JSuperFrame1D_t::const_iterator p = data.begin(); p != data.end(); ) {
 
  197           JSuperFrame1D_t::const_iterator q = p;
 
  201           double ct_max = -1.0;
 
  202           double dt_min =  numeric_limits<double>::max();
 
  204           while (++q != data.end() && q->getT() - p->getT() < T_ns.getUpperLimit()) {
 
  207             const double dt = q->getT() - p->getT();
 
  218           if (multiplicity(
distance(p,q)) && ct_max < ctMax && dt_min > T_ns.getLowerLimit()) {
 
  220             for (JSuperFrame1D_t::const_iterator i = p; i != q; ++i) {
 
  222               if (i->getT() > t0[i->getPMT()] + deadTime_ns) {
 
  223                 h2->Fill(i->getPMT(), i->getToT());
 
  226               t0[i->getPMT()] = i->getT();
 
Utility class to parse command line options. 
 
Data structure for a composite optical module. 
 
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance. 
 
int getDetectorID() const 
Get detector identifier. 
 
double getDot(const JNeutrinoDirection &first, const JNeutrinoDirection &second)
Dot product. 
 
Auxiliary class to select ROOT class based on class name. 
 
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
 
#define MAKE_CSTRING(A)
Make C-string. 
 
Long64_t counter_type
Type definition for counter. 
 
Auxiliary class for multiplexing object iterators. 
 
int getRunNumber() const 
Get run number. 
 
1-dimensional frame with time calibrated data from one optical module. 
 
Auxiliary class for defining the range of iterations of objects. 
 
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys...
 
Reduced data structure for L0 hit. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
bool putObject(TDirectory &dir, const TObject &object)
Write object to ROOT directory. 
 
const JPMT & getPMT(const int index) const 
Get PMT. 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
General purpose class for object reading from a list of file names. 
 
static const char *const _2SToT
Histogram naming. 
 
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. 
 
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 JAcoustics sh $DETECTOR_ID source JAcousticsToolkit sh CHECK_EXIT_CODE typeset A EMITTERS get_tripods $WORKDIR tripod txt EMITTERS get_transmitters $WORKDIR transmitter txt EMITTERS for EMITTER in
 
Auxiliary class for specifying the way of pre-processing of hits. 
 
JTriggerParameters getTriggerParameters(const JMultipleFileScanner_t &file_list)
Get trigger parameters. 
 
#define DEBUG(A)
Message macros.