106  typedef JToken<
';'>      JToken_t;
 
  125    JParser<> zap(
"General purpose fit program for 2D ROOT objects.");
 
  127    zap[
'f'] = 
make_field(inputFile,   
"<input file>:<object name>");
 
  129    zap[
'F'] = 
make_field(formula,     
"fit formula, e.g: \"[0]+[1]*x\"");
 
  130    zap[
'@'] = 
make_field(startValues, 
"start values, e.g: \"p0 = GetMaximum;\"");
 
  137    zap[
'O'] = 
make_field(option,      
"Fit option")                         = 
"";
 
  138    zap[
'w'] = 
make_field(writeFits,   
"write fit function(s) to ROOT file " << 
"(\"<name>" << _F3 << 
"\")");
 
  144  catch(
const exception &error) {
 
  145    FATAL(error.what() << endl);
 
  149  if (option.find(
'O') == string::npos) { option += 
"O"; }
 
  150  if (option.find(
"R") == string::npos) { option += 
"R"; }
 
  151  if (option.find(
"S") == string::npos) { option += 
"S"; }
 
  153  if (
debug ==  0 && option.find(
'Q') == string::npos) { option += 
"Q"; }
 
  159  TF3* fcn = 
new TF3(
"user", formula.c_str());
 
  165  if (fcn->IsZombie()) {
 
  166    FATAL(
"Function: " << formula << 
" is zombie." << endl);
 
  169  for (vector<JRootObjectID>::const_iterator input = inputFile.begin(); input != inputFile.end(); ++input) {
 
  171    DEBUG(
"Input: " << *input << endl);
 
  176      ERROR(
"File: " << input->getFullFilename() << 
" not opened." << endl);
 
  180    const TRegexp regexp(input->getObjectName());
 
  182    TIter iter(dir->GetListOfKeys());
 
  184    for (TKey* key; (key = (TKey*) iter.Next()) != NULL; ) {
 
  186      const TString tag(key->GetName());
 
  188      DEBUG(
"Key: " << tag << 
" match = " << tag.Contains(regexp) << endl);
 
  192      if (tag.Contains(regexp) && 
isTObject(key)) {
 
  194        TObject* 
object = key->ReadObj();
 
  201          for (vector<JToken_t>::const_iterator i = startValues.begin(); i != startValues.end(); ++i) {
 
  205          for (Int_t i = 0; i != fcn->GetNpar(); ++i) {
 
  206            fcn->SetParError (i, 0.0);
 
  209          for (vector<JToken_t>::const_iterator i = startErrors.begin(); i != startErrors.end(); ++i) {
 
  213          for (vector<JToken_t>::const_iterator i = fixedValues.begin(); i != fixedValues.end(); ++i) {
 
  217          for (vector<JToken_t>::const_iterator i = limitValues.begin(); i != limitValues.end(); ++i) {
 
  223          FATAL(error << endl);
 
  226        DEBUG(
"Start values " << object->GetName() << endl);
 
  228        for (
int i = 0; i != fcn->GetNpar(); ++i) {
 
  229          DEBUG(left << setw(12) << fcn->GetParName  (i) << 
' ' << 
 
  230                SCIENTIFIC(12,5) << fcn->GetParameter(i) << endl);
 
  233        Double_t xmin = numeric_limits<Double_t>::max();
 
  234        Double_t xmax = numeric_limits<Double_t>::lowest();
 
  235        Double_t ymin = numeric_limits<Double_t>::max();
 
  236        Double_t ymax = numeric_limits<Double_t>::lowest();
 
  237        Double_t zmin = numeric_limits<Double_t>::max();
 
  238        Double_t zmax = numeric_limits<Double_t>::lowest();
 
  241          TH3* h3 = 
dynamic_cast<TH3*
>(object);
 
  244            xmin = min(xmin, h3->GetXaxis()->GetXmin());
 
  245            xmax = max(xmax, h3->GetXaxis()->GetXmax());
 
  246            ymin = min(ymin, h3->GetYaxis()->GetXmin());
 
  247            ymax = max(ymax, h3->GetYaxis()->GetXmax());
 
  248            zmin = min(zmin, h3->GetZaxis()->GetXmin());
 
  249            zmax = max(zmax, h3->GetZaxis()->GetXmax());
 
  268        fcn->SetRange(xmin, ymin, zmin, xmax, ymax, zmax);
 
  273        const chrono::steady_clock::time_point t0 = chrono::steady_clock::now();
 
  275        JFit fit(*
object, fcn, option);
 
  279        const chrono::steady_clock::time_point t1 = chrono::steady_clock::now();
 
  281        if (fit.result != -1) {
 
  285          NOTICE(
"Fit values  " << object->GetName() << endl);
 
  286          NOTICE(
"Fit formula " << formula           << endl);
 
  287          NOTICE(
"chi2/NDF "    << 
FIXED(7,3) << fit.result->Chi2() << 
'/' << fit.result->Ndf() << 
' ' << (fit.result->IsValid() ? 
"" : 
"failed") << endl);
 
  288          NOTICE(
"Number of calls " << fit.result->NCalls() << endl);
 
  289          NOTICE(
"Elapsed time [us] " << setw(8) << chrono::duration_cast<chrono::microseconds>(t1 - t0).count() << endl);
 
  291          for (
int j = 0; 
j != fcn->GetNpar(); ++
j) {
 
  292            NOTICE(left << setw(12) << fcn->GetParName  (
j) << 
' '     << 
 
  293                   SCIENTIFIC(12,5) << fcn->GetParameter(
j) << 
" +/- " << 
 
  299          WARNING(
"Object: not compatible with ROOT Fit." << endl);
 
  312            TH2* h2 = 
dynamic_cast<TH2*
>(p);
 
  315              for (Int_t ix = 1; ix <= h2->GetXaxis()->GetNbins(); ++ix) {
 
  316                for (Int_t iy = 1; iy <= h2->GetYaxis()->GetNbins(); ++iy) {
 
  317                  for (Int_t iz = 1; iz <= h2->GetZaxis()->GetNbins(); ++iz) {
 
  319                    const Double_t x = h2->GetXaxis()->GetBinCenter(ix);
 
  320                    const Double_t y = h2->GetYaxis()->GetBinCenter(iy);
 
  321                    const Double_t z = h2->GetZaxis()->GetBinCenter(iz);
 
  323                    h2->SetBinContent(ix, iy, fcn->Eval(x,y,z));
 
  324                    h2->SetBinError  (ix, iy, 0.0);