#include "ext/SquarePotential.h" #include #include using namespace std; //----------------------------------------------------------------------------- void ToonzExt::SquarePotential::setParameters_(const TStroke *ref, double par, double al) { ref_ = ref; par_ = par; actionLength_ = al; assert(ref_); strokeLength_ = ref->getLength(); lenghtAtParam_ = ref->getLength(par); // lunghezza dal pto di click all'inizio della curva leftFactor_ = min(lenghtAtParam_, actionLength_ * 0.5); //lenghtAtParam_ / strokeLength_; // lunghezza dal pto di click alla fine rightFactor_ = min(strokeLength_ - lenghtAtParam_, actionLength_ * 0.5); // considero come intervallo di mapping [-range,range]. // 4 ha come valore c.a. 10exp-6 // cioƩ sposterei un pixel su un movimento di un milione di pixel range_ = 2.8; } //----------------------------------------------------------------------------- ToonzExt::SquarePotential::~SquarePotential() { } //----------------------------------------------------------------------------- double ToonzExt::SquarePotential::value_(double value2test) const { return this->compute_value(value2test); } //----------------------------------------------------------------------------- // normalization of parameter in range interval double ToonzExt::SquarePotential::compute_shape(double value2test) const { double x = ref_->getLength(value2test); double shape = this->actionLength_ * 0.5; if (isAlmostZero(shape)) shape = 1.0; x = ((x - lenghtAtParam_) * range_) / shape; return x; } //----------------------------------------------------------------------------- double ToonzExt::SquarePotential::compute_value(double value2test) const { // use // 2 // 1-x // double x = 0.0; double res = 0.0; // lenght at parameter x = ref_->getLength(value2test); double tmp_al = actionLength_ * 0.5; // compute correct parameter considering offset // try to have a square curve like shape // // 2 // m = x // if (leftFactor_ == 0.0) x = 1.0 - x / tmp_al; else if (rightFactor_ == 0.0) x = (x - (strokeLength_ - tmp_al)) / tmp_al; else { if (x <= lenghtAtParam_ && ((lenghtAtParam_ - x) <= leftFactor_)) x = (x - (lenghtAtParam_ - leftFactor_)) / leftFactor_; else if (x > lenghtAtParam_ && ((x - lenghtAtParam_) < rightFactor_)) x = (rightFactor_ - (x - lenghtAtParam_)) / rightFactor_; else x = -1; } if (x < 0.0) return 0.0; //assert( 0.0 <= x && // x <= 1.0 + TConsts::epsilon ); res = sq(x); return res; } //----------------------------------------------------------------------------- ToonzExt::Potential * ToonzExt::SquarePotential::clone() { return new SquarePotential; } //----------------------------------------------------------------------------- // End Of File //-----------------------------------------------------------------------------