34 int main(
int argc, 
char **argv)
 
   39   typedef JAbstractHistogram<double> JHistogram_t;
 
   48   JHistogram_t   histogram;
 
   53     JParser<> zap(
"Program to verify generation of arrival times of Cherenkov photons from a shower using tabulated CDF.");
 
   57     zap[
'E'] = 
make_field(
E,         
"muon energy [GeV]")          = 1.0;
 
   59     zap[
'c'] = 
make_field(cd,        
"cosine emission angle");
 
   60     zap[
'D'] = 
make_field(dir,       
"(theta, phi) of PMT [rad]");
 
   62     zap[
'H'] = 
make_field(histogram, 
"histogram binning")          = JHistogram_t();
 
   67   catch(
const exception& error) {
 
   68     FATAL(error.what() << endl);
 
   72   typedef JHermiteSplineFunction1D_t                              JFunction1D_t;
 
   75   typedef JMAPLIST<JPolint1FunctionalMap,
 
   76                    JPolint1FunctionalMap,
 
   77                    JPolint1FunctionalGridMap,
 
   78                    JPolint1FunctionalGridMap>::maplist            JMapList_t;
 
   79   typedef JCDFTable<JFunction1D_t, JMapList_t>                    JCDF_t;
 
   81   const int N = inputFile.size();
 
   87     for (
int i = 0; i != 
N; ++i) {
 
   89       NOTICE(
"loading input from file " << inputFile[i] << 
"... " << flush);
 
   91       cdf [i].load(inputFile[i].c_str());
 
   96   catch(
const JException& error) {
 
   97     FATAL(error.what() << endl);
 
  107       cout << 
"> " << flush;
 
  112       for (
int i = 0; i != 
N; ++i) {
 
  116           const double npe = 
cdf[i].getNPE (
D, cd, dir.getTheta(), dir.getPhi()) * 
E;
 
  117           const double t   = 
cdf[i].getTime(
D, cd, dir.getTheta(), dir.getPhi(), 
x);
 
  119           cout << 
' ' << 
FIXED(6,2) << t << 
' ' << 
FIXED(5,2) << npe;
 
  121         catch(
const exception& error) {
 
  122           ERROR(error.what() << endl);
 
  140   const double t0   =  0.0;                                   
 
  142   if (!histogram.is_valid()) {
 
  146       histogram = JHistogram_t(t0 - 20.0, t0 + 50.0);
 
  148       histogram.setBinWidth(0.5);
 
  152       histogram = JHistogram_t(t0 - 20.0, t0 + 500.0);
 
  154       histogram.setBinWidth(2.0);
 
  158   TH1D h0(
"h0", NULL, histogram.getNumberOfBins(), histogram.getLowerLimit(), histogram.getUpperLimit());
 
  162   JManager<int, TH1D> H1(
new TH1D(
"h1[%]", NULL, 100000, 0.0, +1.0));
 
  164   for (
int i = 0; i != 
N; ++i) {
 
  166     for (
int j = 1; 
j <= H1->GetNbinsX(); ++
j) {
 
  170         const double x = H1->GetBinCenter(
j);
 
  171         const double t = 
cdf[i].getTime(
D, cd, dir.getTheta(), dir.getPhi(), 
x);
 
  173         H1[i]->SetBinContent(
j, t);
 
  175       catch(
const exception& error) {
 
  176         ERROR(error.what() << endl);
 
  181   if (numberOfEvents > 0) {
 
  187     for (
int counter = 0; counter != numberOfEvents; ++counter) {
 
  189       if (counter%1000== 0) { 
 
  195       for (
int i = 0; i != 
N; ++i) {
 
  199           const double npe = 
cdf[i].getNPE(
D, cd, dir.getTheta(), dir.getPhi()) * 
E;
 
  201           for (
int j = gRandom->Poisson(npe); 
j != 0; --
j) {
 
  203             const double x = gRandom->Rndm();
 
  204             const double t = 
cdf[i].getTime(
D, cd, dir.getTheta(), dir.getPhi(), 
x);
 
  209         catch(
const exception& error) {
 
  210           NOTICE(error.what() << endl);
 
  218     const double w = 1.0 / (double) numberOfEvents;
 
  221       timer.print(cout, w);
 
  226     for (
int j = 1; 
j <= h0.GetNbinsX(); ++
j) {
 
  228       const double y  = h0.GetBinContent(
j);
 
  229       const double z  = h0.GetBinError  (
j);
 
  230       const double dx = h0.GetBinWidth  (
j);
 
  232       h0.SetBinContent(
j, y / (dx*numberOfEvents));
 
  233       h0.SetBinError  (
j, z / (dx*numberOfEvents));
 
Utility class to parse command line options. 
 
int main(int argc, char *argv[])
 
then JShowerPostfit f $INPUT_FILE o $OUTPUT_FILE N
 
Dynamic ROOT object management. 
 
Auxiliary data structure for floating point format specification. 
 
Various implementations of functional maps. 
 
Numbering scheme for PDF types. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
direct light from EM shower 
 
General purpose messaging. 
 
then for FUNCTION in pdf npe cdf
 
int getPDFType(const std::string &file_name)
Get PDF type. 
 
Utility class to parse command line options. 
 
do echo Generating $dir eval D
 
#define DEBUG(A)
Message macros.