47  m0(
"m0",
"Resonance mass",
this,
_m0),
 
   48  c(
"c",
"Slope parameter",
this,_c),
 
   49  p(
"p",
"Power",
this,_p)
 
 
   72  return m*std::pow(
u,
p)*exp(
c*
u) ;
 
 
   80          {ctx.at(m), ctx.at(m0), ctx.at(c), ctx.at(p)});
 
 
   87  if (
p.
arg().isConstant()) {
 
 
  101  static const double pi = atan2(0.0,-1.0);
 
  102  double min = (
m.
min(rangeName) < 
m0) ? 
m.
min(rangeName) : 
m0;
 
  103  double max = (
m.
max(rangeName) < 
m0) ? 
m.
max(rangeName) : 
m0;
 
  104  double f1 = (1.-std::pow(min/
m0,2));
 
  105  double f2 = (1.-std::pow(max/
m0,2));
 
  111  } 
else if ( 
c == 0. ) {
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
 
winID h TVirtualViewer3D TVirtualGLPainter p
 
Abstract interface for all probability density functions.
 
A RooAbsReal::Ref can be constructed from a RooAbsReal& or a double that will be implicitly converted...
 
bool matchArgs(const RooArgSet &allDeps, RooArgSet &numDeps, const RooArgProxy &a) const
Utility function for use in getAnalyticalIntegral().
 
RooArgSet is a container object that can hold multiple RooAbsArg objects.
 
RooArgusBG is a RooAbsPdf implementation describing the ARGUS background shape.
 
void doEval(RooFit::EvalContext &) const override
Base function for computing multiple values of a RooAbsReal.
 
double evaluate() const override
Evaluate this PDF / function / constant. Needs to be overridden by all derived classes.
 
double analyticalIntegral(Int_t code, const char *rangeName=nullptr) const override
Implements the actual analytical integral(s) advertised by getAnalyticalIntegral.
 
Int_t getAnalyticalIntegral(RooArgSet &allVars, RooArgSet &analVars, const char *rangeName=nullptr) const override
Interface function getAnalyticalIntergral advertises the analytical integrals that are supported.
 
std::span< double > output()
 
RooBatchCompute::Config config(RooAbsArg const *arg) const
 
static std::complex< double > erf(const std::complex< double > z)
complex erf function
 
static std::complex< double > faddeeva(std::complex< double > z)
evaluate Faddeeva function for complex argument
 
double max(const char *rname=nullptr) const
Query upper limit of range. This requires the payload to be RooAbsRealLValue or derived.
 
const T & arg() const
Return reference to object held in proxy.
 
double min(const char *rname=nullptr) const
Query lower limit of range. This requires the payload to be RooAbsRealLValue or derived.
 
void compute(Config cfg, Computer comp, std::span< double > output, VarSpan vars, ArgSpan extraArgs={})