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/*
* Copyright 2012 Google Inc.
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#if !defined CUBIC_UTILITIES_H
#define CUBIC_UTILITIES_H
#include "DataTypes.h"
#include "SkTDArray.h"
double calcPrecision(const Cubic& cubic);
#if SK_DEBUG
double calcPrecision(const Cubic& cubic, double t, double scale);
#endif
void chop_at(const Cubic& src, CubicPair& dst, double t);
// FIXME: should be private static but public here for testing
void computeDelta(const Cubic& c1, double t1, double scale1, const Cubic& c2, double t2,
double scale2, double& delta1, double& delta2);
double cube_root(double x);
int cubic_to_quadratics(const Cubic& cubic, double precision,
SkTDArray<Quadratic>& quadratics);
void cubic_to_quadratics(const Cubic& cubic, double precision, SkTDArray<double>& ts);
void coefficients(const double* cubic, double& A, double& B, double& C, double& D);
int cubicRootsValidT(double A, double B, double C, double D, double t[3]);
int cubicRootsReal(double A, double B, double C, double D, double s[3]);
void demote_cubic_to_quad(const Cubic& cubic, Quadratic& quad);
double dx_at_t(const Cubic& , double t);
double dy_at_t(const Cubic& , double t);
void dxdy_at_t(const Cubic& , double t, _Point& y);
int find_cubic_inflections(const Cubic& src, double tValues[]);
bool rotate(const Cubic& cubic, int zero, int index, Cubic& rotPath);
void sub_divide(const Cubic& src, double t1, double t2, Cubic& dst);
void xy_at_t(const Cubic& , double t, double& x, double& y);
extern const int precisionUnit;
#endif