38int main(
int argc,
char **argv)
55 JParser<> zap(
"Program to create interpolation tables of the PDF of the arrival time of the Cherenkov light from a bright point.");
60 zap[
'e'] =
make_field(epsilon,
"precision for integration") = 1.0e-10;
62 DIRECT_LIGHT_FROM_BRIGHT_POINT,
63 SCATTERED_LIGHT_FROM_BRIGHT_POINT;
71 catch(
const exception &error) {
72 FATAL(error.what() << endl);
76 typedef double (
JPDF::*fcn)(
const double,
83 const double P_atm = NAMESPACE::getAmbientPressure();
84 const double wmin = getMinimalWavelength();
85 const double wmax = getMaximalWavelength();
89 pdf_c(NAMESPACE::getPhotocathodeArea(),
91 PDF::getAngularAcceptance,
92 PDF::getAbsorptionLength,
93 PDF::getScatteringLength,
94 PDF::getScatteringProbability,
113 NOTICE(
"building multi-dimensional function object <" << function <<
">... " << flush);
115 const double ng[] = {
122 zmap[DIRECT_LIGHT_FROM_BRIGHT_POINT] = make_pair((fcn) &JPDF::getDirectLightFromBrightPoint, JFunction2DTransformer_t(21.5, 2, ng[0], ng[1]));
123 zmap[SCATTERED_LIGHT_FROM_BRIGHT_POINT] = make_pair((fcn) &JPDF::getScatteredLightFromBrightPoint, JFunction2DTransformer_t(21.5, 2, ng[0], 0.0));
125 if (zmap.find(function) == zmap.end()) {
126 FATAL(
"illegal function specifier" << endl);
129 fcn f = zmap[function].first;
130 JFunction2DTransformer_t transformer = zmap[function].second;
152 if (function == DIRECT_LIGHT_FROM_BRIGHT_POINT) {
154 for (
double buffer[] = { 0.0, 0.005, 0.01, 0.015, -1 }, *x = buffer; *x >= 0; ++x) {
159 for (
double x = 0.02; x < 0.99; x += 0.01)
225 const double D_m = *d;
227 for (
double dc = 0.1, ct = -1.0; ct < +1.0 + 0.5*dc; ct += dc) {
229 JFunction1D_t& f1 = pdf[D_m][ct];
231 const JArray_t
array(D_m, ct);
233 double t_old = transformer.getXn(
array, *X.begin());
238 const double t = transformer.getXn(
array, *x);
239 const double y = (pdf_c.*f)(D_m, ct, t);
244 WARNING(
"dt < 0 " << *x <<
' ' << D_m <<
' ' << t <<
' ' << y << endl);
266 pdf.transform(transformer);
280 FATAL(error.what() << endl);