14#ifndef RooFit_Detail_MathFuncs_h 
   15#define RooFit_Detail_MathFuncs_h 
   32   if (
n < 0 || k < 0 || 
n < k)
 
   37   int k1 = std::min(k, 
n - k);
 
   40   for (
double i = 
k1; i > 1.; --i) {
 
 
   55   } 
else if (degree == 0) {
 
   57   } 
else if (degree == 1) {
 
   60      double a1 = coefs[1] - 
a0; 
 
   63   } 
else if (degree == 2) {
 
   66      double a1 = 2 * (coefs[1] - 
a0); 
 
   67      double a2 = coefs[2] - 
a1 - 
a0;  
 
   74   double result = coefs[0] * s;
 
   75   for (
int i = 1; i < degree; i++) {
 
   79   result += t * coefs[degree];
 
 
   87   const double arg = 
x - mean;
 
   88   const double sig = 
sigma;
 
   89   return std::exp(-0.5 * arg * arg / (sig * sig));
 
 
   95   for (std::size_t i = 0; i < 
nFactors; ++i) {
 
 
  102inline double ratio(
double numerator, 
double denominator)
 
  104   return numerator / denominator;
 
 
  107inline double bifurGauss(
double x, 
double mean, 
double sigmaL, 
double sigmaR)
 
 
  128template <
bool pdfMode = false>
 
  132   for (
int i = 
nCoeffs - 2; i >= 0; i--) {
 
 
  153      for (
unsigned int i = 0; 
nCoeffs != i; ++i) {
 
 
  166   for (
unsigned int i = 0; i < 
compSize; i++) {
 
 
  172inline unsigned int uniformBinNumber(
double low, 
double high, 
double val, 
unsigned int numBins, 
double coef)
 
  174   double binWidth = (high - low) / numBins;
 
  175   return coef * (val >= high ? numBins - 1 : std::abs((val - low) / binWidth));
 
 
  181   double const *it = std::lower_bound(boundaries, end, 
x);
 
  183   while (boundaries != it && (end == it || end == it + 1 || 
x < *it)) {
 
  186   return it - boundaries;
 
 
  194   return coef * std::max(0, tmp);
 
 
  197inline double interpolate1d(
double low, 
double high, 
double val, 
unsigned int numBins, 
double const *vals)
 
  199   double binWidth = (high - low) / numBins;
 
  200   int idx = val >= high ? numBins - 1 : std::abs((val - low) / binWidth);
 
  203   double central = low + (idx + 0.5) * binWidth;
 
  204   if (val > low + 0.5 * binWidth && val < high - 0.5 * binWidth) {
 
  207         slope = vals[idx] - vals[idx - 1];
 
  209         slope = vals[idx + 1] - vals[idx];
 
  211      return vals[idx] + 
slope * (val - central) / binWidth;
 
 
  224   } 
else if (
x == 0.0) {
 
  225      return std::exp(-par);
 
  228      return std::exp(out);
 
 
  242   } 
else if (code == 1) {
 
  245         return res * (std::pow(high / nominal, +
paramVal) - 1);
 
  247         return res * (std::pow(low / nominal, -
paramVal) - 1);
 
  249   } 
else if (code == 2) {
 
  251      double a = 0.5 * (high + low) - nominal;
 
  252      double b = 0.5 * (high - low);
 
  255         return (2 * 
a + 
b) * (
paramVal - 1) + high - nominal;
 
  257         return -1 * (2 * 
a - 
b) * (
paramVal + 1) + low - nominal;
 
  265   } 
else if (code == 4 || code == 6) {
 
  274         mod = 
x * (high - nominal);
 
  276         mod = 
x * (nominal - low);
 
  285         mod = 
x * (S + t * A * (15 + t * t * (-10 + t * t * 3)));
 
  294   } 
else if (code == 5) {
 
  309         double logHi = std::log(high);
 
  310         double logLo = std::log(low);
 
  327         double x0Sq = x0 * x0;
 
  329         double a = 1. / (8 * x0) * (15 * 
A0 - 7 * x0 * 
S1 + x0 * x0 * 
A2);
 
  330         double b = 1. / (8 * 
x0Sq) * (-24 + 24 * 
S0 - 9 * x0 * 
A1 + x0 * x0 * 
S2);
 
  331         double c = 1. / (4 * 
x0Sq * x0) * (-5 * 
A0 + 5 * x0 * 
S1 - x0 * x0 * 
A2);
 
  332         double d = 1. / (4 * 
x0Sq * 
x0Sq) * (12 - 12 * 
S0 + 7 * x0 * 
A1 - x0 * x0 * 
S2);
 
  333         double e = 1. / (8 * 
x0Sq * 
x0Sq * x0) * (+3 * 
A0 - 3 * x0 * 
S1 + x0 * x0 * 
A2);
 
  340      return res * (
mod - 1.0);
 
 
  346inline double flexibleInterp(
unsigned int code, 
double const *params, 
unsigned int n, 
double const *low,
 
  349   double total = nominal;
 
  350   for (std::size_t i = 0; i < 
n; ++i) {
 
 
  385      if (std::abs(pdf) < 1
e-10 && std::abs(weight) < 1
e-10) {
 
  389         return pdf - weight - weight * (std::log(pdf) - std::log(weight));
 
  393      return -weight * std::log(pdf);
 
 
  401   for (
unsigned int i = 1; i < 
n; ++i) {
 
 
  410   double t = (
m - m0) / 
sigma;
 
  417      return std::exp(-0.5 * t * t);
 
  423      return a * std::pow(
r / (
b - t), 
n);
 
 
  489   } 
else if (
xMin > mean) {
 
 
  507template <
bool pdfMode = false>
 
  514   for (
int i = 
nCoeffs - 2; i >= 0; i--) {
 
  520   max = max * std::pow(
xMax, 1 + lowestOrder);
 
  521   min = min * std::pow(
xMin, 1 + lowestOrder);
 
 
  529#if defined(FP_FAST_FMA)  
  530   return std::fma(
x, 
y, z);
 
  533#if defined(__clang__) 
  534#pragma STDC FP_CONTRACT ON  
 
  579         for (
unsigned int i = 1; 
iend != i; ++i) {
 
 
  610      return std::exp(-2.0 * mu); 
 
  621      const double delta = 100.0 * std::sqrt(mu);
 
  631      const unsigned int ixMax = std::min(
integrandMax + 1, (
double)std::numeric_limits<unsigned int>::max());
 
  649   const double ix = 1 + 
x;
 
 
  656   const double root2 = std::sqrt(2.);
 
  658   double ln_k = std::abs(std::log(k));
 
 
  667   const double root2 = std::sqrt(2.);
 
 
  679   const double sqrt2 = 1.4142135624;
 
  684   if (std::abs(
n - 1.0) < 1.0e-05)
 
  687   double sig = std::abs(
sigma);
 
  689   double tmin = (
mMin - m0) / sig;
 
  690   double tmax = (
mMax - m0) / sig;
 
  708         result += 
a * std::pow(
r, 
n-1) * sig * (std::log(
b - tmin) - std::log(
b - tmax));
 
  710         result += 
a * sig / (1.0 - 
n) * (std::pow(
r / (
b - tmin), 
n - 1.0) - std::pow(
r / (
b - tmax), 
n - 1.0));
 
  719         term1 = 
a * std::pow(
r, 
n-1) * sig * (std::log(
b - tmin) - std::log(
r));
 
  721         term1 = 
a * sig / (1.0 - 
n) * (std::pow(
r / (
b - tmin), 
n - 1.0) - 1.0);
 
 
  742   for (
int i = 0; i <= degree; ++i) {
 
  747      for (
int j = i; 
j <= degree; ++
j) { 
 
 
  765   for (
int i = 0; i < 
n; ++i) {
 
  766      for (
int j = 0; 
j < 
n; ++
j) {
 
  770   return std::exp(-0.5 * 
result);
 
 
  779   for (std::size_t i = 0; i < nBins; ++i) {
 
  780      double a = boundaries[i];
 
  781      double b = boundaries[i + 1];
 
  782      out += coefs[i] * std::max(0.0, std::min(
b, 
xmax) - std::max(
a, 
xmin));
 
 
 
  792namespace custom_derivatives {
 
  802template <
class... Types>
 
 
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
 
static unsigned int total
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t r
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t result
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void value
 
double lognormal_pdf(double x, double m, double s, double x0=0)
Probability density function of the lognormal distribution.
 
double landau_pdf(double x, double xi=1, double x0=0)
Probability density function of the Landau distribution:
 
double inc_gamma_c(double a, double x)
Calculates the normalized (regularized) upper incomplete gamma function (upper integral)
 
double inc_gamma(double a, double x)
Calculates the normalized (regularized) lower incomplete gamma function (lower integral)
 
double stepFunctionIntegral(double xmin, double xmax, std::size_t nBins, double const *boundaries, double const *coefs)
 
double logNormalIntegral(double xMin, double xMax, double m0, double k)
 
double gaussianIntegral(double xMin, double xMax, double mean, double sigma)
Function to calculate the integral of an un-normalized RooGaussian over x.
 
double chebychevIntegral(double const *coeffs, unsigned int nCoeffs, double xMin, double xMax, double xMinFull, double xMaxFull)
 
double bifurGaussIntegral(double xMin, double xMax, double mean, double sigmaL, double sigmaR)
 
double cbShape(double m, double m0, double sigma, double alpha, double n)
 
double polynomial(double const *coeffs, int nCoeffs, int lowestOrder, double x)
In pdfMode, a coefficient for the constant term of 1.0 is implied if lowestOrder > 0.
 
double recursiveFraction(double *a, unsigned int n)
 
unsigned int binNumber(double x, double coef, double const *boundaries, unsigned int nBoundaries, int nbins, int blo)
 
double constraintSum(double const *comp, unsigned int compSize)
 
double cbShapeIntegral(double mMin, double mMax, double m0, double sigma, double alpha, double n)
 
double fast_fma(double x, double y, double z) noexcept
use fast FMA if available, fall back to normal arithmetic if not
 
double logNormalIntegralStandard(double xMin, double xMax, double mu, double sigma)
 
double landau(double x, double mu, double sigma)
 
double gaussian(double x, double mean, double sigma)
Function to evaluate an un-normalized RooGaussian.
 
double product(double const *factors, std::size_t nFactors)
 
double chebychev(double *coeffs, unsigned int nCoeffs, double x_in, double xMin, double xMax)
 
double poisson(double x, double par)
 
double binomial(int n, int k)
Calculates the binomial coefficient n over k.
 
unsigned int uniformBinNumber(double low, double high, double val, unsigned int numBins, double coef)
 
double flexibleInterpSingle(unsigned int code, double low, double high, double boundary, double nominal, double paramVal, double res)
 
unsigned int rawBinNumber(double x, double const *boundaries, std::size_t nBoundaries)
 
double interpolate1d(double low, double high, double val, unsigned int numBins, double const *vals)
 
double logNormalStandard(double x, double sigma, double mu)
 
double bifurGauss(double x, double mean, double sigmaL, double sigmaR)
 
double ratio(double numerator, double denominator)
 
double polynomialIntegral(double const *coeffs, int nCoeffs, int lowestOrder, double xMin, double xMax)
In pdfMode, a coefficient for the constant term of 1.0 is implied if lowestOrder > 0.
 
double bernsteinIntegral(double xlo, double xhi, double xmin, double xmax, double *coefs, int nCoefs)
 
double approxErf(double arg)
 
double effProd(double eff, double pdf)
 
double poissonIntegral(int code, double mu, double x, double integrandMin, double integrandMax, unsigned int protectNegative)
 
double logNormal(double x, double k, double m0)
 
double multiVarGaussian(int n, const double *x, const double *mu, const double *covI)
 
double nll(double pdf, double weight, int binnedL, int doBinOffset)
 
double bernstein(double x, double xmin, double xmax, double *coefs, int nCoefs)
The caller needs to make sure that there is at least one coefficient.
 
double efficiency(double effFuncVal, int catIndex, int sigCatIndex)
 
double flexibleInterp(unsigned int code, double const *params, unsigned int n, double const *low, double const *high, double boundary, double nominal, int doCutoff)
 
double exponentialIntegral(double xMin, double xMax, double constant)
 
The namespace RooFit contains mostly switches that change the behaviour of functions of PDFs (or othe...
 
Double_t Erf(Double_t x)
Computation of the error function erf(x).
 
Double_t QuietNaN()
Returns a quiet NaN as defined by IEEE 754.
 
constexpr Double_t Sqrt2()
 
Double_t Erfc(Double_t x)
Computes the complementary error function erfc(x).
 
Double_t LnGamma(Double_t z)
Computation of ln[gamma(z)] for all z.
 
Double_t SignalingNaN()
Returns a signaling NaN as defined by IEEE 754](http://en.wikipedia.org/wiki/NaN#Signaling_NaN).
 
constexpr Double_t TwoPi()
 
void binNumber_pullback(Types...)
 
static uint64_t sum(uint64_t i)