📄 anchor.cpp
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/***************************************************************************** * anchor.cpp ***************************************************************************** * Copyright (C) 2003 VideoLAN * $Id: anchor.cpp 10101 2005-03-02 16:47:31Z robux4 $ * * Authors: Cyril Deguet <asmax@via.ecp.fr> * Olivier Teuli鑢e <ipkiss@via.ecp.fr> * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111, USA. *****************************************************************************/#include "anchor.hpp"bool Anchor::isHanging( const Anchor &rOther ) const{ if( m_priority <= rOther.m_priority ) return false; // Compute delta coordinates between anchors, since the Bezier class // uses coordinates relative to (0;0) int deltaX = getXPosAbs() - rOther.getXPosAbs(); int deltaY = getYPosAbs() - rOther.getYPosAbs(); // One of the anchors (at least) must be a point, else it has no meaning return (isPoint() && rOther.m_rCurve.getMinDist( deltaX, deltaY ) == 0) || (rOther.isPoint() && m_rCurve.getMinDist( -deltaX, -deltaY ) == 0);}bool Anchor::canHang( const Anchor &rOther, int &xOffset, int &yOffset ) const{ int deltaX = getXPosAbs() - (rOther.getXPosAbs() + xOffset); int deltaY = getYPosAbs() - (rOther.getYPosAbs() + yOffset); // One of the anchors (at least) must be a point, else it has no meaning if( (isPoint() && rOther.m_rCurve.getMinDist( deltaX, deltaY ) < m_range) ) { // Compute the coordinates of the nearest point of the curve int xx, yy; float p = rOther.m_rCurve.getNearestPercent( deltaX, deltaY ); rOther.m_rCurve.getPoint( p, xx, yy ); xOffset = getXPosAbs() - (rOther.getXPosAbs() + xx); yOffset = getYPosAbs() - (rOther.getYPosAbs() + yy); return true; } else if( (rOther.isPoint() && m_rCurve.getMinDist( -deltaX, -deltaY ) < m_range) ) { // Compute the coordinates of the nearest point of the curve int xx, yy; float p = m_rCurve.getNearestPercent( -deltaX, -deltaY ); m_rCurve.getPoint( p, xx, yy ); xOffset = (getXPosAbs() + xx) - rOther.getXPosAbs(); yOffset = (getYPosAbs() + yy) - rOther.getYPosAbs(); return true; } else { return false; }}
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