59 static const char*
const rates_t =
"rates";
60 static const char*
const count_t =
"counts";
61 static const char*
const tails_t =
"tails";
62 static const char*
const rndms_t =
"randoms";
67 static const double ToTmax_ns = 250;
103 const Int_t nx = this->getNumberOfPairs();
104 const Double_t
xmin = -0.5;
105 const Double_t
xmax = nx - 0.5;
123 return (h2s != NULL &&
144 inline double getP(
const double E1,
const double E2,
const double ED,
const int M_min,
const int M_max)
148 double P = E1 * E2 *
exp(-(E1 + E2 + ED));
154 for ( ; MD + 2 <= M_min; ++MD) {
162 for ( ; MD + 2 <= M_max; ++MD) {
200 int main(
int argc,
char **argv)
204 using namespace KM3NETDAQ;
223 JParser<> zap(
"Auxiliary program to determine PMT parameters from K40 data.");
225 zap[
'f'] =
make_field(inputFile,
"input file.");
227 zap[
'n'] =
make_field(numberOfEvents) = JLimit::max();
228 zap[
'a'] =
make_field(detectorFile,
"detector file.");
229 zap[
'T'] =
make_field(TMax_ns,
"time window [ns].") = 20.0;
231 zap[
't'] =
make_field(totRange_ns,
"PMT time-over-threshold range [ns].") = { 4.0, 7.0, ToTmax_ns };
232 zap[
'b'] =
make_field(background,
"background estimation method.") = rates_t, count_t, tails_t, rndms_t;
235 zap[
'D'] =
make_field(deadTime_us,
"L1 dead time (us)") = 0.0;
236 zap[
'C'] =
make_field(selector,
"timeslice selector, e.g. JDAQTimesliceL1.") = getROOTClassSelection<JDAQTimesliceTypes_t>();
237 zap[
'O'] =
make_field(option,
"hit pre-processing option.") = JPreprocessor::getOptions(JPreprocessor::filter_t);
242 catch(
const exception &error) {
243 FATAL(error.what() << endl);
251 if (selector == JDAQTimesliceL2::Class_Name() ||
252 selector == JDAQTimesliceSN::Class_Name()) {
253 FATAL(
"Option -C <selector> " << selector <<
" not compatible with calibration method." << endl);
256 if (selector == JDAQTimeslice ::Class_Name() ||
257 selector == JDAQTimesliceL1::Class_Name()) {
265 FATAL(
"No trigger parameters from input:" << error.
what() << endl);
268 if ((selector == JDAQTimeslice ::Class_Name() && parameters.writeL1.prescale > 0) ||
269 (selector == JDAQTimesliceL1::Class_Name())) {
271 if (parameters.TMaxLocal_ns < TMax_ns) {
272 FATAL(
"Option -T <TMax_ns> = " << TMax_ns <<
" is larger than in the trigger " << parameters.TMaxLocal_ns << endl);
275 if (background == rndms_t ||
276 background == count_t) {
277 FATAL(
"Option -C <selector> " << selector <<
" incompatible with option -b <background> " << background << endl);
282 if (!multiplicity.is_valid() || multiplicity.getLowerLimit() < 2 || multiplicity.getUpperLimit() >
NUMBER_OF_PMTS) {
283 FATAL(
"Invalid option -M <multiplicity> " << multiplicity << endl);
286 if (totRange_ns[0] > totRange_ns[1] ||
287 totRange_ns[1] > totRange_ns[2]) {
288 FATAL(
"Invalid option -t <totRange_ns> " <<
JEEPZ() << totRange_ns << endl);
291 if (background == tails_t) {
293 if (!Tail_ns.is_valid()) {
294 FATAL(
"Invalid option -B <Tail_ns> " << Tail_ns << endl);
297 if (Tail_ns.getUpperLimit() > TMax_ns) {
298 FATAL(
"Invalid option -B <Tail_ns> " << Tail_ns <<
"; upper limit larger than option -T <TMax_ns> " << TMax_ns << endl);
316 FATAL(
"Empty detector." << endl);
328 t0.push_back(
i * 2 * TMax_ns);
338 const double RTU = (cpu.getIntegralOfChargeProbability(cpu.getNPE(totRange_ns[0]), cpu.getNPE(totRange_ns[2]), NPE)
340 cpu.getIntegralOfChargeProbability(cpu.getNPE(0.0), cpu.getNPE(ToTmax_ns), NPE));
349 const Double_t ymin = -floor(TMax_ns) + 0.5;
350 const Double_t ymax = +floor(TMax_ns) - 0.5;
351 const Int_t ny = (Int_t) ((ymax - ymin) / 1.0);
353 for (JDetector::iterator module =
detector.begin(); module !=
detector.end(); ++module) {
357 if (!module->empty()) {
359 NOTICE(
"Booking histograms for module " << module->
getID() << endl);
372 const double deadTime_ns = deadTime_us * 1e3;
381 for (JMultipleFileScanner_t::const_iterator
i = inputFile.begin();
i != inputFile.end(); ++
i) {
383 STATUS(
"Processing: " << *
i << endl);
392 STATUS(
"event: " << setw(10) << counter <<
'\r');
DEBUG(endl);
404 if (background == rates_t) {
410 ERROR(
"Frame indices do not match at "
411 <<
"[counter = " << counter <<
"]"
419 for (JDAQTimeslice::const_iterator frame = timeslice->begin(); frame != timeslice->end(); ++frame) {
421 if (router.
hasModule(frame->getModuleID())) {
432 if (background == count_t) {
438 }
else if (background == tails_t) {
442 }
else if (background == rndms_t) {
446 }
else if (background == rates_t) {
459 FATAL(
"Summary frame of module " << frame->getModuleID() <<
" not found at frame index " << timeslice->
getFrameIndex() << endl);
471 !rateRange_Hz(rate_Hz[
i])) {
477 const JCombinatorics& combinatorics = histogram.getCombinatorics();
479 TH2D* h2s = histogram.h2s;
480 TH1D* h1b = histogram.h1b;
481 TH1D* h1L = histogram.h1L;
487 JSuperFrame2D_t& buffer = JSuperFrame2D_t::demultiplex(*frame, module);
489 buffer.preprocess(option, match);
491 for (JSuperFrame2D_t::iterator
i = buffer.begin();
i != buffer.end(); ++
i) {
492 if (veto[
i->getPMTAddress()]) {
497 JSuperFrame1D_t&
data = JSuperFrame1D_t::multiplex(buffer);
499 DEBUG(
"Number of hits " << timeslice->
getFrameIndex() <<
":" << frame->getModuleID() <<
' ' << frame->size() <<
' ' << data.size() << endl);
504 size_t numberOfSignalEvents = 0;
506 double t1 = numeric_limits<double>::lowest();
512 while (++q != data.end() && q->getT() - p->getT() <= TMax_ns) {}
516 if (multiplicity(N)) {
518 numberOfSignalEvents += 1;
520 if (p->getT() > t1 + deadTime_ns) {
525 if ((__p->getToT() >= totRange_ns[0]) &&
526 (__q->getToT() >= totRange_ns[0]) &&
527 (__p->getToT() >= totRange_ns[1] ||
528 __q->getToT() >= totRange_ns[1]) &&
529 (__p->getToT() <= totRange_ns[2]) &&
530 (__q->getToT() <= totRange_ns[2])) {
532 h2s->Fill((
double) combinatorics.getIndex(__p->getPMT(),__q->getPMT()),
533 JCombinatorics::getSign(__p->getPMT(),__q->getPMT()) * (__q->getT() - __p->getT()));
548 if (background == rndms_t) {
554 sort(data.begin(), data.end());
556 double t1 = numeric_limits<double>::lowest();
562 while (++q != data.end() && q->getT() - p->getT() <= TMax_ns) {}
566 if (multiplicity(N)) {
568 if (p->getT() > t1 + deadTime_ns) {
573 if ((__p->getToT() >= totRange_ns[0]) &&
574 (__q->getToT() >= totRange_ns[0]) &&
575 (__p->getToT() >= totRange_ns[1] ||
576 __q->getToT() >= totRange_ns[1]) &&
577 (__p->getToT() <= totRange_ns[2]) &&
578 (__q->getToT() <= totRange_ns[2])) {
580 h1b->Fill((
double) combinatorics.getIndex(p->getPMT(),q->getPMT()), 1.0);
592 }
else if (background == rates_t ||
593 background == count_t) {
606 if (!veto[
i] && !veto[
j]) {
608 const double R1 = rate_Hz[
i];
609 const double R2 = rate_Hz[
j];
616 const double N =
getP((R1) * 2 * TMax_ns * 1e-9,
617 (R2) * 2 * TMax_ns * 1e-9,
618 (Rs - R1 - R2) * 2 * TMax_ns * 1e-9,
619 multiplicity.getLowerLimit(),
620 multiplicity.getUpperLimit()) *
getFrameTime() / (2*TMax_ns);
622 h1b->Fill((
double) combinatorics.getIndex(
i,j),
N);
634 for (
size_t i = 0;
i < combinatorics.getNumberOfPairs(); ++
i) {
636 const int pmt1 = combinatorics.getPair(
i).first;
637 const int pmt2 = combinatorics.getPair(
i).second;
639 if (!veto[pmt1] && !veto[pmt2]) {
640 h1L->Fill(
i, livetime_s);
649 if (background == tails_t ) {
651 const double R = (2.0*TMax_ns) / ((ymax - ymin)/ny);
655 if (hr->is_valid()) {
660 for (
int ix = 1; ix <= h1b->GetXaxis()->GetNbins(); ++ix) {
666 for (
int iy = 1; iy <= h2s->GetYaxis()->GetNbins(); ++iy) {
668 const double y = h2s->GetYaxis()->GetBinCenter(iy) ;
670 if (Tail_ns(fabs(y))) {
671 Y += h2s->GetBinContent(ix,iy);
672 W += h2s->GetBinError (ix,iy) * h2s->GetBinError(ix,iy);
677 h1b->SetBinContent(ix, Y/N * R);
678 h1b->SetBinError (ix, sqrt(W/N) * R);
691 weights_hist.GetXaxis()->SetBinLabel(2,
WS_t);
692 weights_hist.GetXaxis()->SetBinLabel(3,
WB_t);
695 weights_hist.Fill(
WS_t, (ymax - ymin)/ny);
696 weights_hist.Fill(
WB_t, 2.0*TMax_ns);
Utility class to parse command line options.
Auxiliaries for pre-processing of hits.
int main(int argc, char *argv[])
ROOT TTree parameter settings of various packages.
double getRate(const int tdc, const double factor=1.0) const
Get count rate.
Basic data structure for L0 hit.
const JModule & getModule(const JObjectID &id) const
Get module parameters.
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.
static const char *const WB_t
Named bin for value of TMax_ns in JCalibrateK40.
bool is_valid(const json &js)
Check validity of JSon data.
void update(const JDAQHeader &header)
Update router.
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.
then warning Cannot perform comparison test for histogram
then fatal Wrong number of arguments fi set_variable STRING $argv[1] set_variable DETECTORXY_TXT $WORKDIR $DETECTORXY_TXT tail read X Y CHI2 RMS printf optimum n $X $Y $CHI2 $RMS awk v Y
const JDAQSummaryFrame & getSummaryFrame() const
Get default summary frame.
Auxiliary class for multiplexing object iterators.
int getRunNumber() const
Get run number.
Data structure for detector geometry and calibration.
then echo The file $DIR KM3NeT_00000001_00000000 root already please rename or remove it first
int getFrameIndex() const
Get frame index.
1-dimensional frame with time calibrated data from one optical module.
int first
index of module in detector data structure
Scanning of objects from a single file according a format that follows from the extension of each fil...
static const char *const WS_t
Named bin for time residual bin width.
I/O formatting auxiliaries.
Auxiliary class to sort pairs of PMT addresses within optical module.
Reduced data structure for L0 hit.
const JDAQSummaryslice * getSummaryslice() const
Get summary slice.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
static const char *const _1B
Name extension for 1D background.
double getFrameTime()
Get frame time duration.
Data storage class for rate measurements of all PMTs in one module.
int getID() const
Get identifier.
File router for fast addressing of summary data.
virtual const pointer_type & next() override
Get next element.
Address of module in detector data structure.
Match operator for consecutive hits.
virtual bool hasNext() override
Check availability of next element.
bool putObject(TDirectory &dir, const TObject &object)
Write object to ROOT directory.
Auxiliary data structure for streaming of STL containers.
General purpose messaging.
double getP(const double expval, bool hit)
Get Poisson probability to observe a hit or not for given expectation value for the number of hits...
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.
PMT analogue signal processor.
static const char *const weights_hist_t
Histogram naming.
static const char *const _1L
Name extension for 1D live time.
then JCookie sh JDataQuality D $DETECTOR_ID R
Auxiliary base class for list of file names.
virtual const char * what() const override
Get error message.
bool getPMTStatus(const JStatus &status)
Test status of PMT.
then usage $script< input file >[option[primary[working directory]]] nWhere option can be N
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
Auxiliary class to define a range between two values.
Utility class to parse command line options.
bool hasSummaryFrame(const JDAQModuleIdentifier &module) const
Has summary frame.
Auxiliary class for object identification.
static const char *const W1_overall_t
Named bin for duration of the run.
const JModuleAddress & getAddress(const JObjectID &id) const
Get address of module.
bool hasModule(const JObjectID &id) const
Has module.
2-dimensional frame with time calibrated data from one optical module.
PMT analogue signal processor.
Object reading from a list of files.
do set_variable DETECTOR_TXT $WORKDIR detector
bool getDAQStatus(const JDAQFrameStatus &frame, const JStatus &status)
Test status of DAQ.
KM3NeT DAQ constants, bit handling, etc.
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.
const JDAQFrameStatus & getDAQFrameStatus() const
Get DAQ frame status.
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable STRING $argv[2] set_array QUANTILES set_variable FORMULA *[0] exp(-0.5 *(x-[1])*(x-[1])/([2]*[2]))" set_variable MODULE `getModule -a $DETECTOR -L "$STRING 0"` source JAcousticsToolkit.sh typeset -A TRIPODS get_tripods $WORKDIR/tripod.txt TRIPODS XMEAN
JTriggerParameters getTriggerParameters(const JMultipleFileScanner_t &file_list)
Get trigger parameters.
double getValue(const int tdc) const
Get value.
static const char *const _2S
Name extension for 2D counts.
#define DEBUG(A)
Message macros.