Files
Upsilon/apps/regression/model/logistic_model.cpp
2019-02-21 11:29:35 +01:00

83 lines
2.6 KiB
C++

#include "logistic_model.h"
#include <math.h>
#include <assert.h>
#include <poincare/char_layout.h>
#include <poincare/fraction_layout.h>
#include <poincare/horizontal_layout.h>
#include <poincare/vertical_offset_layout.h>
using namespace Poincare;
namespace Regression {
Layout LogisticModel::layout() {
if (m_layout.isUninitialized()) {
Layout exponentLayoutChildren[] = {
CharLayout::Builder('-', KDFont::SmallFont),
CharLayout::Builder('b', KDFont::SmallFont),
CharLayout::Builder(Ion::Charset::MiddleDot, KDFont::SmallFont),
CharLayout::Builder('X', KDFont::SmallFont)
};
Layout layoutChildren[] = {
CharLayout::Builder('1', KDFont::SmallFont),
CharLayout::Builder('+', KDFont::SmallFont),
CharLayout::Builder('a', KDFont::SmallFont),
CharLayout::Builder(Ion::Charset::MiddleDot, KDFont::SmallFont),
CharLayout::Builder('e', KDFont::SmallFont),
VerticalOffsetLayout::Builder(
HorizontalLayout::Builder(exponentLayoutChildren, 4),
VerticalOffsetLayoutNode::Type::Superscript
)
};
m_layout = FractionLayout::Builder(
CharLayout::Builder('c', KDFont::SmallFont),
HorizontalLayout::Builder(layoutChildren, 6)
);
}
return m_layout;
}
double LogisticModel::evaluate(double * modelCoefficients, double x) const {
double a = modelCoefficients[0];
double b = modelCoefficients[1];
double c = modelCoefficients[2];
return c/(1.0+a*exp(-b*x));
}
double LogisticModel::levelSet(double * modelCoefficients, double xMin, double step, double xMax, double y, Poincare::Context * context) {
double a = modelCoefficients[0];
double b = modelCoefficients[1];
double c = modelCoefficients[2];
if (a == 0 || b == 0 || c == 0 || y == 0) {
return NAN;
}
double lnArgument = (c/y - 1)/a;
if (lnArgument <= 0) {
return NAN;
}
return -log(lnArgument)/b;
}
double LogisticModel::partialDerivate(double * modelCoefficients, int derivateCoefficientIndex, double x) const {
double a = modelCoefficients[0];
double b = modelCoefficients[1];
double c = modelCoefficients[2];
double denominator = 1.0+a*exp(-b*x);
if (derivateCoefficientIndex == 0) {
// Derivate: exp(-b*x)*(-1 * c/(1.0+a*exp(-b*x))^2)
return -exp(-b*x) * c/(denominator * denominator);
}
if (derivateCoefficientIndex == 1) {
// Derivate: (-x)*a*exp(-b*x)*(-1/(1.0+a*exp(-b*x))^2)
return x*a*exp(-b*x)*c/(denominator * denominator);
}
if (derivateCoefficientIndex == 2) {
// Derivate: (-x)*a*exp(-b*x)*(-1/(1.0+a*exp(-b*x))^2)
return 1.0/denominator;
}
assert(false);
return 0.0;
}
}