#include "exponential_model.h" #include #include #include #include #include using namespace Poincare; namespace Regression { Layout ExponentialModel::layout() { if (m_layout.isUninitialized()) { const Layout layoutChildren[] = { CharLayout('a', KDFont::SmallFont), CharLayout(Ion::Charset::MiddleDot, KDFont::SmallFont), CharLayout('e', KDFont::SmallFont), VerticalOffsetLayout( HorizontalLayout( CharLayout('b', KDFont::SmallFont), CharLayout(Ion::Charset::MiddleDot, KDFont::SmallFont), CharLayout('X', KDFont::SmallFont) ), VerticalOffsetLayoutNode::Type::Superscript ) }; m_layout = HorizontalLayout(layoutChildren, 4); } return m_layout; } double ExponentialModel::evaluate(double * modelCoefficients, double x) const { double a = modelCoefficients[0]; double b = modelCoefficients[1]; // a*e^(bx) return a*exp(b*x); } double ExponentialModel::levelSet(double * modelCoefficients, double xMin, double step, double xMax, double y, Poincare::Context * context) { double a = modelCoefficients[0]; double b = modelCoefficients[1]; if (a == 0 || b == 0 || y/a <= 0) { return NAN; } return log(y/a)/b; } double ExponentialModel::partialDerivate(double * modelCoefficients, int derivateCoefficientIndex, double x) const { double a = modelCoefficients[0]; double b = modelCoefficients[1]; if (derivateCoefficientIndex == 0) { // Derivate: exp(b*x) return exp(b*x); } if (derivateCoefficientIndex == 1) { // Derivate: a*x*exp(b*x) return a*x*exp(b*x); } assert(false); return 0.0; } }