10 #include "TFitResult.h"
51 inline double get_time(
double t1,
const double T)
53 for (
int buffer[] = { 1000, 100, 10, 1, 0 }, *i = buffer; *i != 0; ++i) {
55 const double xmin = -0.5 * (*i) *
T;
56 const double xmax = +0.5 * (*i) *
T;
58 while (t1 > xmax) { t1 -= (*i) *
T; }
59 while (t1 < xmin) { t1 += (*i) *
T; }
84 int main(
int argc,
char **argv)
88 using namespace KM3NETDAQ;
97 double laserFrequency_Hz;
98 bool overwriteDetector;
111 JParser<> zap(
"Application for dark room time calibration.");
113 zap[
'f'] =
make_field(inputFile,
"input file (time slice data from laser calibration).");
115 zap[
'a'] =
make_field(detectorFile,
"detector file.");
117 "Set reference PMTs, e.g."
118 "\n-! \"808969848 0 808982077 23\" sets PMT 0 of module 808969848 and PMT 23 of module 808982077 as references.");
119 zap[
'n'] =
make_field(numberOfEvents) = JLimit::max();
120 zap[
'l'] =
make_field(laserFrequency_Hz,
"laser frequency [Hz]") = 10000;
121 zap[
'A'] =
make_field(overwriteDetector,
"overwrite detector file provided through '-a' with correct time offsets.");
122 zap[
'O'] =
make_field(option,
"ROOT fit option, see TH1::Fit.") =
"LS";
124 zap[
'C'] =
make_field(selector,
"timeslice selector, e.g. JDAQTimesliceL1.") = getROOTClassSelection<JDAQTimesliceTypes_t>();
125 zap[
'T'] =
make_field(T_ns) = JRange_t(-10.0, +10.0);
130 catch(
const exception& error) {
131 FATAL(error.what() << endl);
139 if (laserFrequency_Hz <= 0.0) {
140 FATAL(
"Invalid laser frequency " << laserFrequency_Hz << endl);
143 const double laserPeriod_ns = 1.0e9 / laserFrequency_Hz;
145 if (option.find(
'R') == string::npos) { option +=
'R'; }
146 if (option.find(
'S') == string::npos) { option +=
'S'; }
172 const int nx = 2 * (int) laserPeriod_ns;
173 const double xmin = -0.5 * laserPeriod_ns;
174 const double xmax = 0.5 * laserPeriod_ns;
176 TH1D h0(
"h0", NULL, nx, xmin, xmax);
177 TH1D
h1(
"h1", NULL, 256, -0.5, +255.5);
181 for (JDetector::iterator module =
detector.begin(); module !=
detector.end(); ++module) {
185 for (JTDC_t::const_iterator i = range.first; i != range.second; ++i) {
188 <<
" string " << setw(3) << module->getString()
189 <<
" floor " << setw(2) << module->getFloor()
190 <<
" module " << setw(8) << module->getID()
191 <<
" channel " << setw(2) << i->second << endl);
199 zmap.insert(make_pair(
id,
new TH1D(os.str().c_str(), NULL, nx, xmin, xmax)));
213 for ( ; in.
hasNext() && counter != inputFile.getLimit(); ++counter) {
215 STATUS(
"event: " << setw(10) << counter <<
'\r');
DEBUG(endl);
219 for (JDAQTimeslice::const_iterator frame = timeslice->begin(); frame != timeslice->end(); ++frame) {
223 if (range.first != range.second) {
225 const double t0 = get_time(
getTimeOfFrame(frame->getFrameIndex()), laserPeriod_ns);
229 buildL0(*frame, moduleRouter.
getModule(frame->getModuleID()), back_inserter(dataL0));
231 for (JDataL0_t::const_iterator hit = dataL0.begin(); hit != dataL0.end(); ++hit) {
235 map_type::const_iterator p = zmap.find(
id);
237 if (p != zmap.end()) {
239 const double t1 = get_time(t0 + hit->getT(), laserPeriod_ns);
247 h1.Fill(hit->getToT());
262 TF1 f1(
"f1",
"[0]*exp(-0.5*(x-[1])*(x-[1])/([2]*[2]))/(TMath::Sqrt(2.0*TMath::Pi())*[2]) + [3]");
264 for (map_type::iterator it = zmap.begin(); it != zmap.end(); ++it) {
267 TH1D* h1 = it->second;
269 if (h1->GetEntries() == 0) {
270 WARNING(
"Histogram " << h1->GetName() <<
" empty" << endl);
274 STATUS(
"--- PMT = " << pmt <<
"; histogram " << h1->GetName() << endl);
280 Double_t sigma = 2.0;
283 for (
int i = 1; i != h1->GetNbinsX(); ++i) {
285 const Double_t
x = h1->GetBinCenter (i);
286 const Double_t y = h1->GetBinContent(i);
294 f1.SetParameter(0, ymax/sigma);
295 f1.SetParameter(1, x0);
296 f1.SetParameter(2, sigma);
297 f1.SetParameter(3, ymin);
302 TFitResultPtr
result = h1->Fit(&f1, option.c_str(),
"same", x0 - 3 * sigma, x0 + 3 * sigma);
304 if (result.Get() == NULL) {
305 FATAL(
"Invalid TFitResultPtr " << h1->GetName() << endl);
308 if (
debug >=
notice_t || !result->IsValid() || f1.GetParameter(0) < Wmin) {
309 cout <<
"Histogram " << h1->GetName() <<
" fit " << (result->IsValid() ?
"ok" :
"failed") << endl;
310 cout <<
"\tw = " <<
FIXED(12,3) << f1.GetParameter(0) << endl;
311 cout <<
"\tx0 = " <<
FIXED(12,3) << x0 << endl;
312 cout <<
"\tt0 = " <<
FIXED(12,3) << f1.GetParameter(1) << endl;
318 int number_of_peaks = 0;
320 Double_t dx = 2.0 * f1.GetParameter(2);
322 Double_t
Y = f1.GetParameter(3);
324 if (dx < (xmax - xmin) / nx) {
325 dx = (xmax - xmin) / nx;
328 for (Int_t il = 1, ir = il; ir <= nx; ) {
330 for ( ; ir <= nx && h1->GetBinCenter(ir) <= h1->GetBinCenter(il) + dx; ++ir) {
331 W += h1->GetBinContent(ir) -
Y;
336 number_of_peaks += 1;
344 W -= h1->GetBinContent(il) -
Y;
349 if (number_of_peaks != 1) {
350 WARNING(
"Number of peaks " << h1->GetName() <<
' ' << number_of_peaks <<
" != 1" << endl);
353 if (result->IsValid() && f1.GetParameter(0) >= Wmin) {
354 t0[pmt] = f1.GetParameter(1);
364 const double W = laserFrequency_Hz * counter *
getFrameTime() * 1.0e-9;
366 NOTICE(
"Expection values [npe]" << endl);
369 NOTICE(i->first <<
' ' <<
FIXED(7,3) << i->second / W << endl);
374 if (overwriteDetector) {
378 for (JDetector::iterator module =
detector.begin(); module !=
detector.end(); ++module) {
382 if (range.first != range.second) {
388 if (p0 != t0.end()) {
390 const double t1 = p0->second;
397 module->getPMT(pmt).subT0(p1->second);
399 module->getPMT(pmt).subT0(t1);
404 if (!module->getPMT(
id.getPMTAddress()).has(
PMT_DISABLE)) {
409 << setw(10) << module->getID() <<
"/" <<
FILL(2,
'0') <<
id.getPMTAddress() <<
FILL() <<
' '
410 <<
"missing or insufficient signal." << endl);
417 NOTICE(
"Store calibration data on file " << detectorFile << endl);
425 FATAL(
"Number of errors " << errors <<
" != 0" << endl);
Utility class to parse command line options.
int main(int argc, char *argv[])
ROOT TTree parameter settings of various packages.
Basic data structure for L0 hit.
const JModule & getModule(const JObjectID &id) const
Get module parameters.
#define gmake_property(A)
macro to convert (template) parameter to JPropertiesElement object
std::string getLabel(const JLocation &location)
Get module label for monitoring and other applications.
Auxiliary class to select ROOT class based on class name.
Router for direct addressing of module data in detector data structure.
Auxiliary class for TDC constraints.
Utility class to parse parameter values.
then for HISTOGRAM in h0 h1
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
Long64_t counter_type
Type definition for counter.
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
Auxiliary data structure for floating point format specification.
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.
Utility class to parse parameter values.
double getTimeOfFrame(const int frame_index)
Get start time of frame in ns since start of run for a given frame index.
Auxiliary class for defining the range of iterations of objects.
Template specialisation of L0 builder for JHitR0 data type.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
double getFrameTime()
Get frame time duration.
do set_variable OUTPUT_DIRECTORY $WORKDIR T
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file.
static const int PMT_DISABLE
KM3NeT Data Definitions v2.1.0-7-g97845ea https://git.km3net.de/common/km3net-dataformat.
virtual const pointer_type & next() override
Get next element.
virtual bool hasNext() override
Check availability of next element.
bool putObject(TDirectory &dir, const TObject &object)
Write object to ROOT directory.
General purpose messaging.
Auxiliary data structure for sequence of same character.
Scanning of objects from multiple files according a format that follows from the extension of each fi...
Direct access to module in detector data structure.
z range($ZMAX-$ZMIN)< $MINIMAL_DZ." fi fi typeset -Z 4 STRING typeset -Z 2 FLOOR JPlot1D -f $
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
Auxiliary class to define a range between two values.
General purpose class for object reading from a list of file names.
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
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 source JAcoustics sh $DETECTOR_ID CHECK_EXIT_CODE typeset A TRIPODS get_tripods $WORKDIR tripod txt TRIPODS for EMITTER in