301 lines
8.2 KiB
C++
301 lines
8.2 KiB
C++
/*
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* This program source code file is part of KICAD, a free EDA CAD application.
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*
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* Copyright (C) 2014 CERN
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* @author Maciej Suminski <maciej.suminski@cern.ch>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, you may find one here:
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* http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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* or you may search the http://www.gnu.org website for the version 2 license,
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* or you may write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#ifndef EDIT_CONSTRAINTS_H_
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#define EDIT_CONSTRAINTS_H_
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#include <math/vector2d.h>
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#include <boost/function.hpp>
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class EDIT_POINT;
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class EDIT_LINE;
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class EDIT_POINTS;
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enum GRID_CONSTRAINT_TYPE
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{
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IGNORE_GRID,
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SNAP_TO_GRID,
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SNAP_BY_GRID // Keep it on grid if it started on grid (treat x and y independently)
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};
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/**
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* EDIT_CONSTRAINT
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*
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* Allows one to describe constraints between two edit handles. After the constrained handle is changed,
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* Apply() has to be called to fix its coordinates according to the implemented constraint.
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*/
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template<class EDIT_TYPE>
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class EDIT_CONSTRAINT
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{
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public:
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/**
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* Constructor
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*
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* @param aConstrained is EDIT_POINT to which the constraint is applied.
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*/
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EDIT_CONSTRAINT( EDIT_TYPE& aConstrained ) : m_constrained( aConstrained ) {};
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virtual ~EDIT_CONSTRAINT() {};
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/**
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* Function Apply()
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*
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* Corrects coordinates of the constrained edit handle.
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*/
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virtual void Apply( EDIT_TYPE& aHandle ) = 0;
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/**
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* Function Apply()
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*
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* Corrects coordinates of the constrained edit handle.
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*/
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void Apply()
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{
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Apply( m_constrained );
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}
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protected:
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EDIT_TYPE& m_constrained; ///< Point that is constrained by rules implemented by Apply()
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};
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/**
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* EC_VERTICAL.
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*
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* EDIT_CONSTRAINT that imposes a constraint that two points have to have the same X coordinate.
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*/
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class EC_VERTICAL : public EDIT_CONSTRAINT<EDIT_POINT>
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{
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public:
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/**
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* Constructor.
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*
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* @param aConstrained is the point that is put under constrain.
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* @param aConstrainer is the point that is the source of the constrain.
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*/
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EC_VERTICAL( EDIT_POINT& aConstrained, const EDIT_POINT& aConstrainer ) :
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EDIT_CONSTRAINT<EDIT_POINT>( aConstrained ), m_constrainer( aConstrainer )
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_POINT& aHandle ) override;
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private:
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const EDIT_POINT& m_constrainer; ///< Point that imposes the constraint.
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};
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/**
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* EC_HORIZONTAL.
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*
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* EDIT_CONSTRAINT that imposes a constraint that two points have to have the same Y coordinate.
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*/
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class EC_HORIZONTAL : public EDIT_CONSTRAINT<EDIT_POINT>
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{
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public:
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/**
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* Constructor.
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*
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* @param aConstrained is the point that is put under constrain.
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* @param aConstrainer is the point that is the source of the constrain.
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*/
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EC_HORIZONTAL( EDIT_POINT& aConstrained, const EDIT_POINT& aConstrainer ) :
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EDIT_CONSTRAINT<EDIT_POINT>( aConstrained ), m_constrainer( aConstrainer )
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_POINT& aHandle ) override;
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private:
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const EDIT_POINT& m_constrainer; ///< Point that imposes the constraint.
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};
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/**
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* EC_45DEGREE
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*
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* EDIT_CONSTRAINT that imposes a constraint that two points have to be located at angle of 45
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* degree multiplicity.
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*/
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class EC_45DEGREE : public EDIT_CONSTRAINT<EDIT_POINT>
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{
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public:
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/**
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* Constructor.
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*
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* @param aConstrained is the point that is put under constrain.
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* @param aConstrainer is the point that is the source of the constrain.
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*/
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EC_45DEGREE( EDIT_POINT& aConstrained, const EDIT_POINT& aConstrainer ) :
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EDIT_CONSTRAINT<EDIT_POINT>( aConstrained ), m_constrainer( aConstrainer )
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_POINT& aHandle ) override;
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private:
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const EDIT_POINT& m_constrainer; ///< Point that imposes the constraint.
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};
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/**
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* EC_LINE
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*
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* EDIT_CONSTRAINT that imposes a constraint that a point has to lie on a line (determined
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* by 2 points).
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*/
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class EC_LINE : public EDIT_CONSTRAINT<EDIT_POINT>
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{
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public:
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EC_LINE( EDIT_POINT& aConstrained, const EDIT_POINT& aConstrainer );
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_POINT& aHandle ) override;
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private:
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const EDIT_POINT& m_constrainer; ///< Point that imposes the constraint.
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VECTOR2I m_line; ///< Vector representing the constraining line.
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};
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/**
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* EC_CIRCLE.
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*
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* EDIT_CONSTRAINT that imposes a constraint that a point has to lie on a circle.
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*/
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class EC_CIRCLE : public EDIT_CONSTRAINT<EDIT_POINT>
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{
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public:
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/**
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* Constructor.
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*
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* @param aConstrained is the point that is put under constrain.
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* @param aCenter is the point that is the center of the circle.
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* @param aEnd is the point that decides on the radius of the circle.
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*/
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EC_CIRCLE( EDIT_POINT& aConstrained, const EDIT_POINT& aCenter, const EDIT_POINT& aEnd ) :
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EDIT_CONSTRAINT<EDIT_POINT>( aConstrained ), m_center( aCenter ), m_end( aEnd )
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_POINT& aHandle ) override;
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private:
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///> Point that imposes the constraint (center of the circle).
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const EDIT_POINT& m_center;
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///> Point that imposes the constraint (decides on the radius of the circle).
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const EDIT_POINT& m_end;
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};
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/**
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* EC_CONVERGING
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*
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* EDIT_CONSTRAINT for 3 segments: dragged and two adjacent ones, enforcing to keep their slopes
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* and allows only to change ending points. Applied to zones.
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*/
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class EC_CONVERGING : public EDIT_CONSTRAINT<EDIT_LINE>
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{
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public:
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EC_CONVERGING( EDIT_LINE& aLine, EDIT_POINTS& aPoints );
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virtual ~EC_CONVERGING();
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_LINE& aHandle ) override;
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private:
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///> Constraint for origin side segment.
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EDIT_CONSTRAINT<EDIT_POINT>* m_originSideConstraint;
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///> Constraint for end side segment.
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EDIT_CONSTRAINT<EDIT_POINT>* m_endSideConstraint;
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///> Additional constriant, applied when at least two points are collinear. It is a pointer to
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///> m_[origin/end]SideConstraint, so it should not be freed.
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EDIT_CONSTRAINT<EDIT_POINT>* m_colinearConstraint;
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///> EDIT_POINTS instance that stores currently modified lines.
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EDIT_POINTS& m_editPoints;
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///> Vector that represents the initial direction of the dragged segment.
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VECTOR2I m_draggedVector;
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};
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/**
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* EC_SNAPLINE
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*
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* EDIT_CONSTRAINT for a EDIT_LINE, one of the ends is snapped to a spot determined by a
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* transform function passed as parameter (e.g. it can be snapped to a grid), instead of having
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* the line center snapped to a point.
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*/
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class EC_SNAPLINE : public EDIT_CONSTRAINT<EDIT_LINE>
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{
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public:
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///> Typedef for a function that determines snapping point.
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typedef boost::function<VECTOR2D (const VECTOR2D&)> V2D_TRANSFORM_FUN;
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EC_SNAPLINE( EDIT_LINE& aLine, V2D_TRANSFORM_FUN aSnapFun );
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virtual ~EC_SNAPLINE()
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_LINE& aHandle ) override;
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private:
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///> Function that determines snapping point.
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V2D_TRANSFORM_FUN m_snapFun;
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};
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/**
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* EC_PERPLINE
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*
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* EDIT_CONSTRAINT for a EDIT_LINE, that constrains the line to move perpendicular
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* to the line itself.
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*/
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class EC_PERPLINE : public EDIT_CONSTRAINT<EDIT_LINE>
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{
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public:
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EC_PERPLINE( EDIT_LINE& aLine );
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virtual ~EC_PERPLINE()
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{}
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///> @copydoc EDIT_CONSTRAINT::Apply()
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virtual void Apply( EDIT_LINE& aHandle ) override;
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private:
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VECTOR2I m_mid;
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VECTOR2I m_line;
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};
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#endif /* EDIT_CONSTRAINTS_H_ */
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