54   bool            overwriteDetector;
 
   64     JParser<> zap(
"Program to fit time-residuals histogram in output of JCalibrateMuon.cc.");
 
   66     zap[
'f'] = 
make_field(inputFile,         
"input files (output from JCalibrateMuon).");
 
   68     zap[
'a'] = 
make_field(detectorFile,      
"detector file.");
 
   69     zap[
'A'] = 
make_field(overwriteDetector, 
"overwrite detector file provided through '-a' with correct time offsets.");
 
   70     zap[
'F'] = 
make_field(
function,          
"fit function")                                                   = gauss_t, landau_t, emg_t, breitwigner_t;
 
   72     zap[
'O'] = 
make_field(option,            
"ROOT fit option, see TH1::Fit.")                                 = 
"";
 
   74     zap[
'W'] = 
make_field(WMin,              
"minimal histogram contents.")                                    = 100.0;
 
   79   catch(
const exception &error) {
 
   80     FATAL(error.what() << endl);
 
   84   if (!T_ns.is_valid()) {
 
   85     FATAL(
"Invalid fit range [ns] " << T_ns << endl);
 
   93   catch(
const JException& error) {
 
   97   if (option.find(
'S') == string::npos) { option += 
'S'; }
 
  105     NOTICE(
"Processing " << *
i << endl);
 
  107     TFile 
in(
i->c_str(), 
"exist");
 
  110       FATAL(
"File " << *
i << 
" not opened." << endl);
 
  113     TH2D* p = 
dynamic_cast<TH2D*
>(
in.Get(h2_t));
 
  116       FATAL(
"File " << *
i << 
" has no histogram <" << h2_t << 
">." << endl);
 
  120       h2 = (TH2D*) p->Clone();
 
  130     FATAL(
"No histogram <" << h2_t << 
">." << endl);
 
  142     result_type(
double value,
 
  159   const TAxis* x_axis = h2->GetXaxis();
 
  160   const TAxis* y_axis = h2->GetYaxis();
 
  162   TH1D h0(
"h0", NULL, x_axis->GetNbins(), -0.5, x_axis->GetNbins() - 0.5);
 
  163   TH1D hc(
"hc", NULL, x_axis->GetNbins(), -0.5, x_axis->GetNbins() - 0.5);
 
  164   TH1D hq(
"hq", NULL, x_axis->GetNbins(), -0.5, x_axis->GetNbins() - 0.5);
 
  169   for (
int ix = 1; ix <= x_axis->GetNbins(); ++ix) {
 
  171     if (
detector[ix - 1].getFloor() == 0) {
 
  175     TH1D h1(
MAKE_CSTRING(
detector[ix - 1].getID() << 
".1D"), NULL, y_axis->GetNbins(), y_axis->GetXmin(), y_axis->GetXmax());
 
  181     Double_t 
sigma  =  4.5;       
 
  184     for (
int iy = 1; iy <= y_axis->GetNbins(); ++iy) {
 
  186       h1.SetBinContent(iy,      h2->GetBinContent(ix,iy));
 
  187       h1.SetBinError  (iy, sqrt(h2->GetBinContent(ix,iy)));
 
  189       const Double_t 
x = h1.GetBinCenter (iy);
 
  190       const Double_t 
y = h1.GetBinContent(iy);
 
  202       WARNING(
"Not enough entries for slice " << ix << 
' ' << W << 
"; skip fit." << endl);
 
  208     const Double_t 
xmin = x0 + T_ns.getLowerLimit();
 
  209     const Double_t 
xmax = x0 + T_ns.getUpperLimit();
 
  214     if        (
function == gauss_t) {
 
  216       f1 = 
new TF1(
function.c_str(), 
"[0]*TMath::Gaus(x,[1],[2])");
 
  218       f1->SetParameter(0, ymax);
 
  219       f1->SetParameter(1, x0);
 
  220       f1->SetParameter(2, sigma);
 
  222     } 
else if (
function == landau_t) {
 
  224       f1 = 
new TF1(
function.c_str(), 
"[0]*TMath::Landau(x,[1],[2])");
 
  226       f1->SetParameter(0, ymax);
 
  227       f1->SetParameter(1, x0);
 
  228       f1->SetParameter(2, sigma);
 
  230     } 
else if (
function == emg_t) {
 
  232       f1 = 
new TF1(
function.c_str(), 
"[0]*TMath::Exp(0.5*[3]*(2.0*[1]+[3]*[2]*[2]-2.0*x))*TMath::Erfc(([1]+[3]*[2]*[2]-x)/(TMath::Sqrt(2.0)*[2]))");
 
  234       f1->SetParameter(0, ymax);
 
  235       f1->SetParameter(1, x0 - sigma);
 
  236       f1->SetParameter(2, sigma);
 
  237       f1->SetParameter(3, 0.04);
 
  239     } 
else if (
function == breitwigner_t) {
 
  241       f1 = 
new TF1(
function.c_str(), 
"(x <= [1])*[0]*[2]*TMath::BreitWigner(x,[1],[2])+(x > [1])*[0]*[3]*TMath::BreitWigner(x,[1],[3])");
 
  243       f1->SetParameter(0, ymax);
 
  244       f1->SetParameter(1, x0);
 
  245       f1->SetParameter(2, 15.0);
 
  246       f1->SetParameter(3, 25.0);
 
  250       FATAL(
"Unknown fit function " << 
function << endl);
 
  254     DEBUG(
"Start values:" << endl);
 
  256     for (
int i = 0; 
i != f1->GetNpar(); ++
i) {
 
  257       DEBUG(left << setw(12) << f1->GetParName  (
i) << 
' ' << 
 
  263     TFitResultPtr 
result = h1.Fit(f1, option.c_str(), 
"same", 
xmin, 
xmax);
 
  267            << setw(4)    << ix                    << 
' ' 
  268            << setw(16)   << h1.GetName()          << 
' ' 
  269            << 
FIXED(7,3) << f1->GetParameter(1)   << 
" +/- "  
  270            << 
FIXED(7,3) << f1->GetParError(1)    << 
' '  
  271            << 
FIXED(7,3) << result->Chi2()        << 
'/' 
  272            << result->Ndf()                       << 
' ' 
  273            << (result->IsValid() ? 
"" : 
"failed") << endl;
 
  276     if (result->IsValid()) {
 
  277       zmap[ix] = result_type(f1->GetParameter(1), f1->GetParError (1)); 
 
  280     if (result->Ndf() > 0) {
 
  281       hc.SetBinContent(ix, result->Chi2() / result->Ndf());
 
  283     hq.SetBinContent(ix, result->IsValid() ? 1.0 : 0.0);
 
  297     for (map_type::const_iterator 
i = zmap.begin(); 
i != zmap.end(); ++
i) {
 
  298       t0 += 
i->second.value;
 
  303     NOTICE(
"Average time offset [ns] " << 
FIXED(7,2) << t0 << endl);
 
  305     for (map_type::iterator 
i = zmap.begin(); 
i != zmap.end(); ++
i) {
 
  306       i->second.value -= t0;
 
  309     for (map_type::const_iterator 
i = zmap.begin(); 
i != zmap.end(); ++
i) {
 
  310       h0.SetBinContent(
i->first, 
i->second.value);
 
  311       h0.SetBinError  (
i->first, 
i->second.error);
 
  320               string.getLength() + 1,
 
  321               string.getLowerLimit() - 0.5,
 
  322               string.getUpperLimit() + 0.5,
 
  323               floor.getLength() + 1,
 
  324               floor.getLowerLimit() - 0.5,
 
  325               floor.getUpperLimit() + 0.5);
 
  327       for (map_type::const_iterator 
i = zmap.begin(); 
i != zmap.end(); ++
i) {
 
  328         hi.SetBinContent(
detector[
i->first - 1].getString(), 
 
  337     if (overwriteDetector) {
 
  339       NOTICE(
"Store calibration data on file " << detectorFile << endl);
 
  341       detector.comment.add(JMeta(argc, argv));
 
  343       for (map_type::const_iterator 
i = zmap.begin(); 
i != zmap.end(); ++
i) {
 
  345         if (E_ns(
i->second.error))
 
  348           ERROR(
"Slice " << setw(4) << 
i->first << 
" fit uncertainty " << 
FIXED(5,2) << 
i->second.error << 
" outside specified range (option -E <E_ns>)" << endl);
 
  356     NOTICE(
"No calibration results." << endl);
 
Utility class to parse command line options. 
 
#define MAKE_CSTRING(A)
Make C-string. 
 
Auxiliary data structure for floating point format specification. 
 
JMODEL::JString getString(const JFit &fit)
Get model parameters of string. 
 
const JPolynome f1(1.0, 2.0, 3.0)
Function. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
const array_type< JValue_t > & make_array(const JValue_t(&array)[N])
Method to create array of values. 
 
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file. 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
do set_variable DETECTOR_TXT $WORKDIR detector
 
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 data structure for floating point format specification. 
 
JTOOLS::JRange< double > JTimeRange
Type definition for time range (unit [s]). 
 
#define DEBUG(A)
Message macros.