10 #include "TFitResult.h"
46 static const char*
const WILDCARD =
"%";
57 int main(
int argc,
char **argv)
61 using namespace KM3NETDAQ;
73 double LeftMargin = 10.0;
74 double RightMargin = 10.0;
75 double gradientThreshold = -0.005;
93 JParser<> zap(
"Auxiliary program to fit time-over-threshold distributions.");
95 zap[
'f'] =
make_field(inputFile,
"input file (output from JCalibrateToT).");
97 zap[
'a'] =
make_field(detectorFile,
"detector file.");
98 zap[
'P'] =
make_field(pmtFile,
"specify PMT file name that can be given to JTriggerEfficiency.") =
"";
99 zap[
'w'] =
make_field(writeFits,
"write fit results.");
100 zap[
'O'] =
make_field(option,
"ROOT fit options, see TH1::Fit") =
"";
102 zap[
'x'] =
make_field(fitRange,
"ROOT fit range (time-over-threshold).") = JRange_t(0.0, 35.0);
108 catch(
const exception &error) {
109 FATAL(error.what() << endl);
129 if (!pmtFile.empty()) {
132 parametersMap.
load(pmtFile.c_str());
137 parametersMap.comment.add(
JMeta(argc, argv));
140 if (option.find(
'R') == string::npos) { option +=
'R'; }
141 if (option.find(
'S') == string::npos) { option +=
'S'; }
145 TFile*
in = TFile::Open(inputFile.c_str(),
"exist");
147 if (
in == NULL || !
in->IsOpen()) {
148 FATAL(
"File: " << inputFile <<
" not opened." << endl);
152 TH2D
gain(
"gain", NULL,
155 TH1D chi2(
"chi2", NULL, 100, 0.0, 5.0);
169 for (JDetector::iterator module =
detector.begin(); module !=
detector.end(); ++module) {
171 NOTICE(
"Module " << setw(10) << module->getID() <<
' ' << module->getLocation() << endl);
173 if (module->empty()) {
185 WARNING(
"No histogram " << module->getID() <<
"; skip fit." << endl);
190 const double ny = h2s->GetYaxis()->GetNbins();
191 const double ymin = h2s->GetYaxis()->GetXmin();
192 const double ymax = h2s->GetYaxis()->GetXmax();
198 for (
int ix = 1; ix <= h2s->GetXaxis()->GetNbins(); ++ix) {
205 DEBUG(
"Processing histogram " << name << endl);
207 TH1D
h1(name.c_str(), NULL, ny, ymin, ymax);
211 for (
int iy = h2s->GetNbinsY(); iy >= 1; --iy) {
213 const double w =
h1.GetBinWidth (iy);
214 const double y = h2s->GetBinContent(ix, iy);
216 h1.SetBinContent(iy, y/w);
217 h1.SetBinError (iy, sqrt(y)/w);
220 JRange_t
range(fitRange);
222 const double weight =
h1.Integral(
h1.FindBin(range.getLowerLimit()),
223 h1.FindBin(range.getUpperLimit()));
225 if (weight <= Wmin) {
227 WARNING(
"Insufficient histogram entries for PMT " <<
id <<
228 "(" << weight <<
" < " << Wmin <<
"); skip fit." << endl);
247 RIGHT(10) <<
"threshold" <<
RIGHT(10) <<
"Mode" <<
RIGHT(10) <<
"Max" << endl);
249 for (
int i =
h1.GetBinCenter(ny-1);
253 const double x =
h1.GetBinCenter (i);
254 const double y =
h1.GetBinContent(i);
256 const double gradient = ( (
h1.GetBinContent(i-1) -
h1.GetBinContent(i+1)) /
257 (
h1.GetBinCenter (i+1) -
h1.GetBinCenter (i-1)) );
260 FIXED(10,1) << -fabs(gradientThreshold) *
h1.Integral() <<
FIXED(10,1) << ToTmode <<
FIXED(10,1) << max << endl);
268 }
else if (gradient < -fabs(gradientThreshold) *
h1.Integral()) {
278 if (!range.is_valid()) {
279 range.setRange(ToTmode - LeftMargin,
280 ToTmode + RightMargin);
283 range.setRange(std::max(
h1.GetXaxis()->GetXmin(), range.getLowerLimit()),
284 std::min(
h1.GetXaxis()->GetXmax(), range.getUpperLimit()));
292 JFitToT fit(parameters, range);
295 const double initGainSpread = initGain / 3.0;
299 WARNING(
"Invalid initial gain for PMT " <<
id <<
"; set default values." << endl);
314 const TFitResultPtr
result = fit(
h1, option);
316 if (result.Get() == NULL) {
317 FATAL(
"Invalid TFitResultPtr " <<
h1.GetName() << endl);
320 if (
int(result) < 0 || !result->IsValid()) {
322 WARNING(
"Fit failure for PMT " <<
id <<
"; set initialization values." << endl);
324 h1.GetListOfFunctions()->Clear();
326 parameters.
gain = initGain;
336 if ((ymin < range.getLowerLimit() || ymax > range.getUpperLimit()) &&
337 (option.find(
"0") == string::npos && option.find(
"N") == string::npos)) {
346 JFitToT::getNumberOfModelParameters());
347 f1->SetParameters(fit.GetParameters());
348 f1->SetLineStyle(kDotted);
351 h1.GetListOfFunctions()->Add(f1);
356 const double reducedChi2 = result->Chi2() / result->Ndf();
361 chi2_1d. SetBinContent(ix, reducedChi2);
362 gain_1d. SetBinContent(ix,
values.gain);
363 gain_1d. SetBinError (ix, errors.gain);
364 gainspread_1d.SetBinContent(ix,
values.gainSpread);
365 gainspread_1d.SetBinError (ix, errors.gainSpread);
368 chi2.Fill(TMath::Log10(reducedChi2));
370 NOTICE(
"PMT " <<
id <<
" chi2 / NDF " << result->Chi2() <<
' ' << result->Ndf() << endl);
389 const JMeta& meta = *
in.next();
391 parametersMap.comment.add(meta);
402 parametersMap.store(pmtFile.c_str());
Utility class to parse command line options.
double getValue(const JScale_t scale)
Get numerical value corresponding to scale.
int main(int argc, char *argv[])
ROOT TTree parameter settings of various packages.
TString replace(const TString &target, const TRegexp ®exp, const T &replacement)
Replace regular expression in input by given replacement.
#define gmake_property(A)
macro to convert (template) parameter to JPropertiesElement object
double gainSpread
gain spread [unit]
static const double FITTOT_GAIN_MAX
Default maximal gain.
Double_t gainSpread
PMT gain spread.
const double TIME_OVER_THRESHOLD_NS
Specification for time-over-threshold corresponding to a one photo-electron pulse.
static const double FITTOT_GAIN_MIN
Default minimal gain.
Recording of objects on file according a format that follows from the file name extension.
then echo Enter input within $TIMEOUT_S seconds echo n User name
Utility class to parse parameter values.
*fatal Wrong number of arguments esac JCookie sh typeset Z DETECTOR typeset Z SOURCE_RUN typeset Z TARGET_RUN set_variable PARAMETERS_FILE $WORKDIR parameters
#define MAKE_CSTRING(A)
Make C-string.
then for HISTOGRAM in h0 h1
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
Auxiliary data structure for floating point format specification.
Parametrisation of time-over-threshold distribution.
Data structure for detector geometry and calibration.
Fit parameters for two-fold coincidence rate due to K40.
#define MAKE_STRING(A)
Make string.
const JPMTAnalogueSignalProcessor & getCPU() const
Access method for the analogue signal processor.
static const std::string FITTOT_SUFFIX
Scanning of objects from a single file according a format that follows from the extension of each fil...
I/O formatting auxiliaries.
double mean_ns
mean time-over-threshold of threshold-band hits [ns]
double sigma_ns
time-over-threshold standard deviation of threshold-band hits [ns]
static const double FITTOT_GAINSPREAD_MAX
Default maximal gain spread.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Auxiliary class for map of PMT parameters.
General purpose messaging.
Auxiliary data structure for sequence of same character.
void load(const char *file_name)
Load from input file.
z range($ZMAX-$ZMIN)< $MINIMAL_DZ." fi fi typeset -Z 4 STRING typeset -Z 2 FLOOR JPlot1D -f $
then $JPP_DIR examples JDetector JToT o $OUTPUT_FILE n N $NPE P gain
virtual double getNPE(const double tot_ns, const double eps=1.0e-3) const
Get number of photo-electrons.
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.
then usage $script< input_file >< detector_file > fi set_variable OUTPUT_DIR set_variable SELECTOR JDAQTimesliceL1 set_variable DEBUG case set_variable DEBUG
static const char *const _2SToT
Histogram naming.
PMT analogue signal processor.
static const double FITTOT_GAINSPREAD_MIN
Default minimal gain spread.
Object reading from a list of files.
Data structure for PMT parameters.
do set_variable DETECTOR_TXT $WORKDIR detector
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 source JAcoustics sh $DETECTOR_ID CHECK_EXIT_CODE typeset A TRIPODS get_tripods $WORKDIR tripod txt TRIPODS for EMITTER in
static const std::string FITTOT_FNAME
std::vector< double > weight