src/lemon/bezier.h
author alpar
Sun, 16 Jan 2005 22:31:26 +0000
changeset 1084 320a0f083ca1
parent 1073 bedab8bd915f
child 1164 80bb73097736
permissions -rw-r--r--
Functions added to compute the gradient of Bezier curve.
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/* -*- C++ -*-
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 * src/lemon/bezier.h - Part of LEMON, a generic C++ optimization library
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 *
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 * Copyright (C) 2004 Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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 * (Egervary Combinatorial Optimization Research Group, EGRES).
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 *
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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#ifndef LEMON_BEZIER_H
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#define LEMON_BEZIER_H
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///\ingroup misc
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///\file
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///\brief Classes to compute with Bezier curves.
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///
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///Up to now this file is used internally by \ref graph_to_eps.h
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///
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///\author Alpar Juttner
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#include<lemon/xy.h>
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namespace lemon {
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class BezierBase {
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public:
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  typedef xy<double> xy;
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protected:
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  static xy conv(xy x,xy y,double t) {return (1-t)*x+t*y;}
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};
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class Bezier1 : public BezierBase
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{
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public:
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  xy p1,p2;
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  Bezier1() {}
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  Bezier1(xy _p1, xy _p2) :p1(_p1), p2(_p2) {}
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  xy operator()(double t) const
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  {
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    //    return conv(conv(p1,p2,t),conv(p2,p3,t),t);
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    return conv(p1,p2,t);
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  }
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  Bezier1 before(double t) const
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  {
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    return Bezier1(p1,conv(p1,p2,t));
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  }
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  Bezier1 after(double t) const
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  {
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    return Bezier1(conv(p1,p2,t),p2);
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  }
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  Bezier1 revert() { return Bezier1(p2,p1);}
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  Bezier1 operator()(double a,double b) { return before(b).after(a/b); }
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  xy grad() { return p2-p1; }
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  xy grad(double t) { return grad(); }
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};
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class Bezier2 : public BezierBase
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{
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public:
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  xy p1,p2,p3;
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  Bezier2() {}
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  Bezier2(xy _p1, xy _p2, xy _p3) :p1(_p1), p2(_p2), p3(_p3) {}
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  Bezier2(const Bezier1 &b) : p1(b.p1), p2(conv(b.p1,b.p2,.5)), p3(b.p2) {}
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  xy operator()(double t) const
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  {
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    //    return conv(conv(p1,p2,t),conv(p2,p3,t),t);
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    return ((1-t)*(1-t))*p1+(2*(1-t)*t)*p2+(t*t)*p3;
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  }
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  Bezier2 before(double t) const
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  {
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    xy q(conv(p1,p2,t));
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    xy r(conv(p2,p3,t));
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    return Bezier2(p1,q,conv(q,r,t));
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  }
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  Bezier2 after(double t) const
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  {
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    xy q(conv(p1,p2,t));
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    xy r(conv(p2,p3,t));
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    return Bezier2(conv(q,r,t),r,p3);
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  }
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  Bezier2 revert() { return Bezier2(p3,p2,p1);}
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  Bezier2 operator()(double a,double b) { return before(b).after(a/b); }
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  Bezier1 grad() { return Bezier1(2.0*(p2-p1),2.0*(p3-p2)); }
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  xy grad(double t) { return grad()(t); }  
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};
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class Bezier3 : public BezierBase
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{
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public:
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  xy p1,p2,p3,p4;
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  Bezier3() {}
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  Bezier3(xy _p1, xy _p2, xy _p3, xy _p4) :p1(_p1), p2(_p2), p3(_p3), p4(_p4) {}
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  Bezier3(const Bezier1 &b) : p1(b.p1), p2(conv(b.p1,b.p2,1.0/3.0)), 
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			      p3(conv(b.p1,b.p2,2.0/3.0)), p4(b.p2) {}
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  Bezier3(const Bezier2 &b) : p1(b.p1), p2(conv(b.p1,b.p2,2.0/3.0)),
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			      p3(conv(b.p2,b.p3,1.0/3.0)), p4(b.p3) {}
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  xy operator()(double t) const 
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    {
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      //    return Bezier2(conv(p1,p2,t),conv(p2,p3,t),conv(p3,p4,t))(t);
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      return ((1-t)*(1-t)*(1-t))*p1+(3*t*(1-t)*(1-t))*p2+
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	(3*t*t*(1-t))*p3+(t*t*t)*p4;
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    }
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  Bezier3 before(double t) const
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    {
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      xy p(conv(p1,p2,t));
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      xy q(conv(p2,p3,t));
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      xy r(conv(p3,p4,t));
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      xy a(conv(p,q,t));
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      xy b(conv(q,r,t));
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      xy c(conv(a,b,t));
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      return Bezier3(p1,p,a,c);
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    }
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  Bezier3 after(double t) const
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    {
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      xy p(conv(p1,p2,t));
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      xy q(conv(p2,p3,t));
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      xy r(conv(p3,p4,t));
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      xy a(conv(p,q,t));
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      xy b(conv(q,r,t));
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      xy c(conv(a,b,t));
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      return Bezier3(c,b,r,p4);
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    }
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  Bezier3 revert() { return Bezier3(p4,p3,p2,p1);}
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  Bezier3 operator()(double a,double b) { return before(b).after(a/b); }
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  Bezier2 grad() { return Bezier2(3.0*(p2-p1),3.0*(p3-p2),3.0*(p4-p3)); }
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  xy grad(double t) { return grad()(t); }
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};
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} //END OF NAMESPACE LEMON
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#endif // LEMON_BEZIER_H