39  x(
"x",
"Dependent",
this,_x),
 
   40  mean(
"mean",
"Mean",
this,_mean),
 
 
   68                            {ctx.at(x), ctx.at(mean), ctx.at(sigma)});
 
 
  100  assert(1 == code); (void)code;
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
 
Abstract interface for all probability density functions.
 
A RooAbsReal::Ref can be constructed from a RooAbsReal& or a double that will be implicitly converted...
 
Abstract base class for objects that represent a real value and implements functionality common to al...
 
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.
 
std::span< double > output()
 
RooBatchCompute::Config config(RooAbsArg const *arg) const
 
Landau distribution p.d.f.
 
Int_t getAnalyticalIntegral(RooArgSet &allVars, RooArgSet &analVars, const char *rangeName=nullptr) const override
Interface function getAnalyticalIntergral advertises the analytical integrals that are supported.
 
void generateEvent(Int_t code) override
Interface for generation of an event using the algorithm corresponding to the specified code.
 
double evaluate() const override
Evaluate this PDF / function / constant. Needs to be overridden by all derived classes.
 
void doEval(RooFit::EvalContext &) const override
Compute multiple values of Landau distribution.
 
Int_t getGenerator(const RooArgSet &directVars, RooArgSet &generateVars, bool staticInitOK=true) const override
Load generatedVars with the subset of directVars that we can generate events for, and return a code t...
 
double analyticalIntegral(Int_t code, const char *rangeName) const override
Implements the actual analytical integral(s) advertised by getAnalyticalIntegral.
 
static TRandom * randomGenerator()
Return a pointer to a singleton random-number generator implementation.
 
double max(const char *rname=nullptr) const
Query upper limit of range. This requires the payload to be RooAbsRealLValue or derived.
 
double min(const char *rname=nullptr) const
Query lower limit of range. This requires the payload to be RooAbsRealLValue or derived.
 
double landau_cdf(double x, double xi=1, double x0=0)
Cumulative distribution function of the Landau distribution (lower tail).
 
void compute(Config cfg, Computer comp, std::span< double > output, VarSpan vars, ArgSpan extraArgs={})
 
double landau(double x, double mu, double sigma)
 
void checkRangeOfParameters(const RooAbsReal *callingClass, std::initializer_list< const RooAbsReal * > pars, double min=-std::numeric_limits< double >::max(), double max=std::numeric_limits< double >::max(), bool limitsInAllowedRange=false, std::string const &extraMessage="")
Check if the parameters have a range, and warn if the range extends below / above the set limits.