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#pragma once
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#ifndef T_CURVES_INCLUDED
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#define T_CURVES_INCLUDED
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#include "tgeometry.h"
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#undef DVAPI
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#undef DVVAR
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#ifdef TGEOMETRY_EXPORTS
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#define DVAPI DV_EXPORT_API
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#define DVVAR DV_EXPORT_VAR
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#else
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#define DVAPI DV_IMPORT_API
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#define DVVAR DV_IMPORT_VAR
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#endif
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//=============================================================================
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/*!
Toshihiro Shimizu 890ddd
  TSegment Class to manage a segment
Toshihiro Shimizu 890ddd
 */
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class DVAPI TSegment {
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protected:
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  TPointD m_c0, m_c1;
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public:
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  TSegment() : m_c0(), m_c1(){};
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  //! p0,p1  are the two control points
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  TSegment(const TPointD &p0, const TPointD &p1) : m_c0(p0), m_c1(p1 - p0) {}
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  TSegment(double x0, double y0, double x1, double y1)
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      : m_c0(x0, y0), m_c1(x1 - x0, y1 - y0) {}
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  TSegment(const TSegment &src) : m_c0(src.m_c0), m_c1(src.m_c1) {}
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  //! Return the point of segment at parameter \b t.
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  TPointD getPoint(double t) const { return m_c0 + t * m_c1; };
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  //! Return speed of segment.
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  TPointD getSpeed(double = 0) const { return m_c1; };
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  //! Return first control point \b P0.
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  TPointD getP0() const { return m_c0; }
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  //! Return second control point \b P1.
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  TPointD getP1() const { return m_c0 + m_c1; }
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  //! Set the value of first control point \b P0 to \b p.
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  void setP0(const TPointD &p) {
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    m_c1 += m_c0 - p;
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    m_c0 = p;
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  }
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  //! Set the value of second control point \b P1 to \b p.
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  void setP1(const TPointD &p) { m_c1 = p - m_c0; }
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  bool operator==(const TSegment &c) const {
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    return m_c0 == c.m_c0 && m_c1 == c.m_c1;
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  };
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  bool operator!=(const TSegment &c) const { return !operator==(c); };
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  //! Return rect that contains the segment.
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  TRectD getBBox() const { return TRectD(getP0(), getP1()); }
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  //! Return the length of segment
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  double getLength() const { return norm(m_c1); }
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  //! Return true if segment is a point
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  bool isPoint(double err2 = TConsts::epsilon) const {
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    return norm2(m_c1) < err2;
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  }
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};
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//-----------------------------------------------------------------------------
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DVAPI std::ostream &operator<<(std::ostream &out, const TSegment &segment);
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//-----------------------------------------------------------------------------
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//!\relates TAffine, TSegment
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inline TSegment operator*(const TAffine &aff, const TSegment &seg) {
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  return TSegment(aff * seg.getP0(), aff * seg.getP1());
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}
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//=============================================================================
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/*!
Shinya Kitaoka 120a6e
   TQuadratic class to manage a quadratic
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 */
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class DVAPI TQuadratic {
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protected:
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  TPointD m_p0, m_p1, m_p2;
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public:
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  TQuadratic() : m_p0(), m_p1(), m_p2() {}
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  //! p0,p1,p2 are the three control points
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  TQuadratic(const TPointD &p0, const TPointD &p1, const TPointD &p2)
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      : m_p0(p0), m_p1(p1), m_p2(p2) {}
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  TQuadratic(const TQuadratic &src)
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      : m_p0(src.m_p0), m_p1(src.m_p1), m_p2(src.m_p2) {}
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  TQuadratic &operator=(const TQuadratic &src) {
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    m_p0 = src.m_p0;
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    m_p1 = src.m_p1;
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    m_p2 = src.m_p2;
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    return *this;
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  }
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  //! Return the point of quadratic at parameter \b t.
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  TPointD getPoint(double t) const;
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  double getX(double t) const;
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  double getY(double t) const;
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  //! Return speed of quadratic at parameter \b t.
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  TPointD getSpeed(double t) const {
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    return 2 * ((t - 1) * m_p0 + (1.0 - 2.0 * t) * m_p1 + t * m_p2);
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  }
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  //! Return the y value of quadratic speed at parameter \b t.
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  double getSpeedY(double t) const {
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    return 2 * ((t - 1) * m_p0.y + (1.0 - 2.0 * t) * m_p1.y + t * m_p2.y);
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  }
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  //! Return acceleration of quadratic.
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  TPointD getAcceleration(double = 0) const {
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    return 2.0 * (m_p0 + m_p2 - 2.0 * m_p1);
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  }
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  //! Return curvature of quadratic at parameter \b t.
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  /*! Calcolo della curvatura per una Quadratica.
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  Vedi Farin pag.176 per la spiegazione della formula
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  usata.
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*/
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  double getCurvature(double t) const;
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  //! Return first control point \b P0.
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  TPointD getP0() const { return m_p0; }
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  //! Return second control point \b P1.
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  TPointD getP1() const { return m_p1; }
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  //! Return third control point \b P2.
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  TPointD getP2() const { return m_p2; }
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  //! Set the value of first control point \b P0 to \b p.
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  void setP0(const TPointD &p) { m_p0 = p; }
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  //! Set the value of second control point \b P1 to \b p.
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  void setP1(const TPointD &p) { m_p1 = p; }
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  //! Set the value of third control point \b P2 to \b p.
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  void setP2(const TPointD &p) { m_p2 = p; }
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  bool operator==(const TQuadratic &c) const {
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    return m_p0 == c.m_p0 && m_p1 == c.m_p1 && m_p2 == c.m_p2;
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  }
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  bool operator!=(const TQuadratic &c) const { return !operator==(c); }
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  //! Return a parameter that correspond to the point \b p in the quadratic.
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  double getT(const TPointD &p) const;
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  int getX(double y, double &x0, double &x1) const;
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  int getY(double x, double &y0, double &y1) const;
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  /*!
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N.B. if t==0 o t==1 return a quadratic with all points equal
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*/
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  void split(double t, TQuadratic &first, TQuadratic &second) const;
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  //! Return rect that contains the quadratic.
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  TRectD getBBox() const;
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  /*!
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Return length of an arc between parameters t0 t1.
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N.B. Length returned is always positive.
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\note t0 and t1 are clamped to [0,1] interval
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\note if t0>=t1 returns 0
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*/
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  double getLength(double t0, double t1) const;
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  double getLength(double t1 = 1) const { return getLength(0, t1); }
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  double getApproximateLength(double t0, double t1, double error) const;
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  void reverse() {
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    TPointD app;
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    app  = m_p0;
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    m_p0 = m_p2;
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    m_p2 = app;
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  }
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};
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//-------------------------------------------------------
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//!\relates TAffine, TQuadratic
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inline TQuadratic operator*(const TAffine &aff, const TQuadratic &curve) {
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  TQuadratic quad;
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  quad.setP0(aff * curve.getP0());
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  quad.setP1(aff * curve.getP1());
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  quad.setP2(aff * curve.getP2());
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  return quad;
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}
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//-----------------------------------------------------------------------------
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DVAPI std::ostream &operator<<(std::ostream &out, const TQuadratic &curve);
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//-----------------------------------------------------------------------------
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inline std::ostream &operator<<(std::ostream &out, const TQuadratic *curve) {
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  assert(curve);
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  return out << *curve;
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}
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//=============================================================================
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/*!
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   TCubic class to manage a cubic
Toshihiro Shimizu 890ddd
 */
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class DVAPI TCubic {
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protected:
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  TPointD m_p0, m_p1, m_p2, m_p3;
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public:
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  TCubic() : m_p0(), m_p1(), m_p2(), m_p3() {}
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  //! p0,p1,p2,p3 are the four control points
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  TCubic(const TPointD &p0, const TPointD &p1, const TPointD &p2,
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         const TPointD &p3)
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      : m_p0(p0), m_p1(p1), m_p2(p2), m_p3(p3) {}
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  TCubic(const TCubic &src)
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      : m_p0(src.m_p0), m_p1(src.m_p1), m_p2(src.m_p2), m_p3(src.m_p3) {}
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  TCubic &operator=(const TCubic &src) {
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    m_p0 = src.m_p0;
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    m_p1 = src.m_p1;
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    m_p2 = src.m_p2;
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    m_p3 = src.m_p3;
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    return *this;
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  }
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  //! Return first control point \b P0.
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  TPointD getP0() const { return m_p0; }
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  //! Return second control point \b P1.
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  TPointD getP1() const { return m_p1; }
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  //! Return third control point \b P2.
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  TPointD getP2() const { return m_p2; }
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  //! Return fourth control point \b P3.
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  TPointD getP3() const { return m_p3; }
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  //! Set the value of first control point \b P0 to \b p.
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  void setP0(const TPointD &p0) { m_p0 = p0; }
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  //! Set the value of second control point \b P1 to \b p.
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  void setP1(const TPointD &p1) { m_p1 = p1; }
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  //! Set the value of third control point \b P2 to \b p.
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  void setP2(const TPointD &p2) { m_p2 = p2; }
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  //! Set the value of fourth control point \b P3 to \b p.
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  void setP3(const TPointD &p3) { m_p3 = p3; }
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  bool operator==(const TCubic &c) const {
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    return m_p0 == c.m_p0 && m_p1 == c.m_p1 && m_p2 == c.m_p2 && m_p3 == c.m_p3;
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  }
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  bool operator!=(const TCubic &c) const { return !operator==(c); }
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  //! Return rect that contains the cubic.
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  TRectD getBBox() const {
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    return TRectD(std::min({m_p0.x, m_p1.x, m_p2.x, m_p3.x}),
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                  std::min({m_p0.y, m_p1.y, m_p2.y, m_p3.y}),
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                  std::max({m_p0.x, m_p1.x, m_p2.x, m_p3.x}),
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                  std::max({m_p0.y, m_p1.y, m_p2.y, m_p3.y}));
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  };
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  //! Return the point of cubic at parameter \b t.
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  TPointD getPoint(double t) const;
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  //! Return speed of cubic at parameter \b t.
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  TPointD getSpeed(double t) const;
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  //! Return acceleration of cubic at parameter \b t.
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  TPointD getAcceleration(double t) const {
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    return 6.0 *
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           ((m_p2 - 2 * m_p1 + m_p0) * (1 - t) + (m_p3 - 2 * m_p2 + m_p1) * t);
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  };
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  /*!
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Return length of an arc between parameters t0 t1.
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N.B. Length returned is always positive.
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\note t0 and t1 are clamped to [0,1] interval
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\note if t0>=t1 returns 0
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*/
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  double getLength(double t0, double t1) const;
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  inline double getLength(double t1 = 1.0) const { return getLength(0.0, t1); }
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  /*!
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N.B. if t==0 o t==1 return a quadratic with all points equal
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*/
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  void split(double t, TCubic &first, TCubic &second) const;
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};
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//-----------------------------------------------------------------------------
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//!\relates TAffine, TCubic
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inline TCubic operator*(const TAffine &aff, const TCubic &curve) {
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  TCubic out;
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  out.setP0(aff * curve.getP0());
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  out.setP1(aff * curve.getP1());
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  out.setP2(aff * curve.getP2());
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  out.setP3(aff * curve.getP3());
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  return out;
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}
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//-----------------------------------------------------------------------------
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DVAPI std::ostream &operator<<(std::ostream &out, const TCubic &curve);
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//-----------------------------------------------------------------------------
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inline std::ostream &operator<<(std::ostream &out, const TCubic *curve) {
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  assert(curve);
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  return out << *curve;
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}
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//=============================================================================
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/*!
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  TSegment Class to manage a segment with thickness
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  \!relates TSegment
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 */
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class DVAPI TThickSegment : public TSegment {
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protected:
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  double m_thickP0;
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  double m_thickP1;
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public:
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  //! m_thickP0, m_thickP1 are thickness of segment control points
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  TThickSegment() : TSegment(), m_thickP0(0), m_thickP1(0) {}
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  TThickSegment(const TThickSegment &thickSegment)
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      : TSegment(thickSegment)
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      , m_thickP0(thickSegment.m_thickP0)
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      , m_thickP1(thickSegment.m_thickP1) {}
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  TThickSegment(const TSegment &seg)
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      : TSegment(seg), m_thickP0(0), m_thickP1(0) {}
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  TThickSegment(const TPointD &p0, double thickP0, const TPointD &p1,
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                double thickP1)
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      : TSegment(p0, p1), m_thickP0(thickP0), m_thickP1(thickP1) {}
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  TThickSegment(const TThickPoint &thickP0, const TThickPoint &thickP1)
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      : TSegment(thickP0, thickP1)
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      , m_thickP0(thickP0.thick)
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      , m_thickP1(thickP1.thick) {}
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  TThickSegment &operator=(const TThickSegment &other) {
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    m_c0.x    = other.m_c0.x;
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    m_c1.x    = other.m_c1.x;
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    m_c0.y    = other.m_c0.y;
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    m_c1.y    = other.m_c1.y;
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    m_thickP0 = other.m_thickP0;
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    m_thickP1 = other.m_thickP1;
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    return *this;
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  }
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  //! Set the value of first control point \b P0 to \b TThickPoint \b p0.
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  void setThickP0(const TThickPoint &p0) {
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    m_c0.x    = p0.x;
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    m_c0.y    = p0.y;
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    m_thickP0 = p0.thick;
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  }
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  //! Set the value of second control point \b P1 to \b TThickPoint \b p1.
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  void setThickP1(const TThickPoint &p1) {
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    m_c1.x    = p1.x - m_c0.x;
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    m_c1.y    = p1.y - m_c0.y;
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    m_thickP1 = p1.thick;
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  }
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  //! Return first control point \b P0.
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  TThickPoint getThickP0() const { return TThickPoint(m_c0, m_thickP0); }
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  //! Return second control point \b P1.
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  TThickPoint getThickP1() const { return TThickPoint(m_c0 + m_c1, m_thickP1); }
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  //! Return the \b TThickPoint of segment at parameter \b t.
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  TThickPoint getThickPoint(double t) const {
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    return TThickPoint(m_c0 + t * m_c1, (1 - t) * m_thickP0 + t * m_thickP1);
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  }
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};
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//-----------------------------------------------------------------------------
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inline TThickSegment operator*(const TAffine &aff, const TThickSegment &ts) {
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  TThickSegment out(ts);
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  out.setP0(aff * ts.getP0());
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  out.setP1(aff * ts.getP1());
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  return out;
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}
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//-----------------------------------------------------------------------------
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Shinya Kitaoka 3bfa54
DVAPI std::ostream &operator<<(std::ostream &out, const TThickSegment &segment);
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//-----------------------------------------------------------------------------
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inline std::ostream &operator<<(std::ostream &out,
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                                const TThickSegment *segment) {
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  assert(segment);
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  return out << *segment;
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}
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//=============================================================================
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/*!
Toshihiro Shimizu 890ddd
  Class TThickQuadratic: manage a curve with thick
Toshihiro Shimizu 890ddd
  \!relates TQuadratic
Toshihiro Shimizu 890ddd
 */
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class DVAPI TThickQuadratic : public TQuadratic {
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protected:
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  double m_thickP0;
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  double m_thickP1;
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  double m_thickP2;
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public:
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  TThickQuadratic();
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  //! thickP0, thickP1, thickP2 are thickness of quadratic control points
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  TThickQuadratic(const TPointD &p0, double thickP0, const TPointD &p1,
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                  double thickP1, const TPointD &p2, double thickP2);
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  TThickQuadratic(const TThickPoint &p0, const TThickPoint &p1,
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                  const TThickPoint &p2);
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  TThickQuadratic(const TThickQuadratic &thickQuadratic);
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  TThickQuadratic(const TQuadratic &quadratic);
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  //! Set the value of first control point \b P0 to \b TThickPoint \b p.
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  void setThickP0(const TThickPoint &p);
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  //! Set the value of second control point \b P1 to \b TThickPoint \b p.
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  void setThickP1(const TThickPoint &p);
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  //! Set the value of third control point \b P2 to \b TThickPoint \b p.
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  void setThickP2(const TThickPoint &p);
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  //! Return the \b TThickPoint of quadratic at parameter \b t.
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  TThickPoint getThickPoint(double t) const;
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  //! Return first control point \b P0.
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  TThickPoint getThickP0() const { return TThickPoint(m_p0, m_thickP0); }
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  //! Return second control point \b P1.
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  TThickPoint getThickP1() const { return TThickPoint(m_p1, m_thickP1); }
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  //! Return third control point \b P2.
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  TThickPoint getThickP2() const { return TThickPoint(m_p2, m_thickP2); }
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  void split(double t, TThickQuadratic &first, TThickQuadratic &second) const;
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  TRectD getBBox() const;
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};
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//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
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inline TThickQuadratic operator*(const TAffine &aff,
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                                 const TThickQuadratic &tq) {
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  TThickQuadratic out(tq);
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  out.setP0(aff * tq.getP0());
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  out.setP1(aff * tq.getP1());
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  out.setP2(aff * tq.getP2());
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  return out;
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}
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//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
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inline TThickQuadratic transformQuad(const TAffine &aff,
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                                     const TThickQuadratic &tq,
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                                     bool doChangeThickness = false) {
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  if (!doChangeThickness) return aff * tq;
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  TThickQuadratic out(tq);
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  double det = aff.det();
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  det        = (det < 0) ? sqrt(-det) : sqrt(det);
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  out.setThickP0(TThickPoint(aff * tq.getP0(), tq.getThickP0().thick * det));
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  out.setThickP1(TThickPoint(aff * tq.getP1(), tq.getThickP1().thick * det));
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  out.setThickP2(TThickPoint(aff * tq.getP2(), tq.getThickP2().thick * det));
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  return out;
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}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 3bfa54
DVAPI std::ostream &operator<<(std::ostream &out, const TThickQuadratic &tq);
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//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
inline std::ostream &operator<<(std::ostream &out, const TThickQuadratic *tq) {
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  assert(tq);
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  return out << *tq;
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}
Toshihiro Shimizu 890ddd
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//=============================================================================
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
/*!
Toshihiro Shimizu 890ddd
  Class TThickCubic: manage a cubic with thick
Toshihiro Shimizu 890ddd
  \!relates TCubic
Toshihiro Shimizu 890ddd
 */
Shinya Kitaoka 120a6e
class DVAPI TThickCubic : public TCubic {
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protected:
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  double m_thickP0;
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  double m_thickP1;
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  double m_thickP2;
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  double m_thickP3;
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public:
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  TThickCubic();
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  //! thickP0, thickP1, thickP2, thickP3 are thickness of cubic control points
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  TThickCubic(const TPointD &p0, double thickP0, const TPointD &p1,
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              double thickP1, const TPointD &p2, double thickP2,
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              const TPointD &p3, double thickP3);
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  TThickCubic(const TThickPoint &p0, const TThickPoint &p1,
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              const TThickPoint &p2, const TThickPoint &p3);
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  //  tonino ***************************************************************
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  TThickCubic(const T3DPointD &p0, const T3DPointD &p1, const T3DPointD &p2,
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              const T3DPointD &p3);
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  //  tonino ***************************************************************
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  TThickCubic(const TThickCubic &thickCubic);
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  TThickCubic(const TCubic &cubic);
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  //! Set the value of first control point \b P0 to \b TThickPoint \b p.
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  void setThickP0(const TThickPoint &p);
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  //! Set the value of second control point \b P1 to \b TThickPoint \b p.
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  void setThickP1(const TThickPoint &p);
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  //! Set the value of third control point \b P2 to \b TThickPoint \b p.
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  void setThickP2(const TThickPoint &p);
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  //! Set the value of fourth control point \b P3 to \b TThickPoint \b p.
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  void setThickP3(const TThickPoint &p);
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  //! Return the \b TThickPoint of cubic at parameter \b t.
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  TThickPoint getThickPoint(double t) const;
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  //! Return first control point \b P0.
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  TThickPoint getThickP0() const { return TThickPoint(m_p0, m_thickP0); }
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  //! Return second control point \b P1.
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  TThickPoint getThickP1() const { return TThickPoint(m_p1, m_thickP1); }
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  //! Return third control point \b P2.
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  TThickPoint getThickP2() const { return TThickPoint(m_p2, m_thickP2); }
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  //! Return fourth control point \b P3.
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  TThickPoint getThickP3() const { return TThickPoint(m_p3, m_thickP3); }
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  void split(double t, TThickCubic &first, TThickCubic &second) const;
Toshihiro Shimizu 890ddd
};
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
inline TThickCubic operator*(const TAffine &aff, const TThickCubic &tc) {
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  TThickCubic out(tc);
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  out.setP0(aff * tc.getP0());
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  out.setP1(aff * tc.getP1());
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  out.setP2(aff * tc.getP2());
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  out.setP3(aff * tc.getP3());
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  return out;
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}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 3bfa54
DVAPI std::ostream &operator<<(std::ostream &out, const TThickCubic &tc);
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Toshihiro Shimizu 890ddd
//---------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
inline std::ostream &operator<<(std::ostream &out, const TThickCubic *tc) {
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  assert(tc);
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  return out << *tc;
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}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//=====================================================================
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
#endif  //__T_CURVES_INCLUDED
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
//  End Of File
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------