484 lines
9.9 KiB
C++
484 lines
9.9 KiB
C++
/*****************************************************************************
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*
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* This file is part of Mapnik (c++ mapping toolkit)
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*
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* Copyright (C) 2011 Artem Pavlenko
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*****************************************************************************/
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// mapnik
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#include <mapnik/box2d.hpp>
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// stl
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#include <stdexcept>
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// boost
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#include <boost/tokenizer.hpp>
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#include <boost/algorithm/string.hpp>
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#include <boost/spirit/include/qi.hpp>
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// agg
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#include "agg_trans_affine.h"
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namespace mapnik
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{
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template <typename T>
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box2d<T>::box2d()
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:minx_(0),miny_(0),maxx_(-1),maxy_(-1) {}
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template <typename T>
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box2d<T>::box2d(T minx_,T miny_,T maxx_,T maxy_)
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{
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init(minx_,miny_,maxx_,maxy_);
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}
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template <typename T>
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box2d<T>::box2d(const coord<T,2> &c0,const coord<T,2> &c1)
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{
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init(c0.x,c0.y,c1.x,c1.y);
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}
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template <typename T>
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box2d<T>::box2d(const box2d &rhs)
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: minx_(rhs.minx_),
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miny_(rhs.miny_),
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maxx_(rhs.maxx_),
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maxy_(rhs.maxy_) {}
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// copy rather than init so dfl ctor (0,0,-1,-1) is not modified
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// https://github.com/mapnik/mapnik/issues/749
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/*{
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init(rhs.minx_,rhs.miny_,rhs.maxx_,rhs.maxy_);
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}*/
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template <typename T>
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box2d<T>::box2d(const box2d_type &rhs, const agg::trans_affine& tr)
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{
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double x0 = rhs.minx_, y0 = rhs.miny_;
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double x1 = rhs.maxx_, y1 = rhs.miny_;
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double x2 = rhs.maxx_, y2 = rhs.maxy_;
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double x3 = rhs.minx_, y3 = rhs.maxy_;
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tr.transform(&x0, &y0);
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tr.transform(&x1, &y1);
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tr.transform(&x2, &y2);
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tr.transform(&x3, &y3);
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init(x0, y0, x2, y2);
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expand_to_include(x1, y1);
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expand_to_include(x3, y3);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::operator==(const box2d<T>& other) const
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{
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return minx_==other.minx_ &&
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miny_==other.miny_ &&
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maxx_==other.maxx_ &&
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maxy_==other.maxy_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::minx() const
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{
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return minx_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::maxx() const
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{
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return maxx_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::miny() const
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{
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return miny_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::maxy() const
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{
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return maxy_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::width() const
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{
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return maxx_-minx_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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T box2d<T>::height() const
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{
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return maxy_-miny_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::width(T w)
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{
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T cx=center().x;
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minx_=static_cast<T>(cx-w*0.5);
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maxx_=static_cast<T>(cx+w*0.5);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::height(T h)
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{
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T cy=center().y;
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miny_=static_cast<T>(cy-h*0.5);
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maxy_=static_cast<T>(cy+h*0.5);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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coord<T,2> box2d<T>::center() const
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{
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return coord<T,2>(static_cast<T>(0.5*(minx_+maxx_)),
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static_cast<T>(0.5*(miny_+maxy_)));
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::expand_to_include(const coord<T,2>& c)
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{
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expand_to_include(c.x,c.y);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::expand_to_include(T x,T y)
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{
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if (x<minx_) minx_=x;
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if (x>maxx_) maxx_=x;
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if (y<miny_) miny_=y;
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if (y>maxy_) maxy_=y;
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}
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template <typename T>
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void box2d<T>::expand_to_include(const box2d<T> &other)
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{
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if (other.minx_<minx_) minx_=other.minx_;
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if (other.maxx_>maxx_) maxx_=other.maxx_;
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if (other.miny_<miny_) miny_=other.miny_;
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if (other.maxy_>maxy_) maxy_=other.maxy_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::contains(const coord<T,2> &c) const
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{
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return contains(c.x,c.y);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::contains(T x,T y) const
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{
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return x>=minx_ && x<=maxx_ && y>=miny_ && y<=maxy_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::contains(const box2d<T> &other) const
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{
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return other.minx_>=minx_ &&
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other.maxx_<=maxx_ &&
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other.miny_>=miny_ &&
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other.maxy_<=maxy_;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::intersects(const coord<T,2> &c) const
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{
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return intersects(c.x,c.y);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::intersects(T x,T y) const
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{
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return !(x>maxx_ || x<minx_ || y>maxy_ || y<miny_);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::intersects(const box2d<T> &other) const
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{
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return !(other.minx_>maxx_ || other.maxx_<minx_ ||
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other.miny_>maxy_ || other.maxy_<miny_);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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box2d<T> box2d<T>::intersect(const box2d_type& other) const
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{
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if (intersects(other)) {
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T x0=std::max(minx_,other.minx_);
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T y0=std::max(miny_,other.miny_);
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T x1=std::min(maxx_,other.maxx_);
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T y1=std::min(maxy_,other.maxy_);
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return box2d<T>(x0,y0,x1,y1);
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} else {
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return box2d<T>();
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}
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::re_center(T cx,T cy)
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{
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T dx=cx-center().x;
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T dy=cy-center().y;
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minx_+=dx;
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miny_+=dy;
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maxx_+=dx;
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maxy_+=dy;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::re_center(const coord<T,2> &c)
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{
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re_center(c.x,c.y);
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::init(T x0,T y0,T x1,T y1)
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{
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if (x0<x1)
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{
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minx_=x0;maxx_=x1;
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}
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else
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{
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minx_=x1;maxx_=x0;
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}
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if (y0<y1)
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{
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miny_=y0;maxy_=y1;
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}
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else
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{
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miny_=y1;maxy_=y0;
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}
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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void box2d<T>::clip(const box2d_type& other)
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{
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minx_ = std::max(minx_,other.minx());
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miny_ = std::max(miny_,other.miny());
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maxx_ = std::min(maxx_,other.maxx());
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maxy_ = std::min(maxy_,other.maxy());
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::from_string(std::string const& s)
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{
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unsigned i = 0;
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double d[4];
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bool success = false;
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boost::char_separator<char> sep(", ");
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boost::tokenizer<boost::char_separator<char> > tok(s, sep);
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for (boost::tokenizer<boost::char_separator<char> >::iterator beg = tok.begin();
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beg != tok.end(); ++beg)
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{
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std::string item(*beg);
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boost::trim(item);
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// note: we intentionally do not use mapnik::util::conversions::string2double
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// here to ensure that shapeindex can statically compile mapnik::box2d without
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// needing to link to libmapnik
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std::string::const_iterator str_beg = item.begin();
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std::string::const_iterator str_end = item.end();
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bool r = boost::spirit::qi::phrase_parse(str_beg,str_end,boost::spirit::qi::double_,boost::spirit::ascii::space,d[i]);
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if (!(r && (str_beg == str_end)))
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{
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break;
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}
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if (i == 3)
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{
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success = true;
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break;
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}
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++i;
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}
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if (success)
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{
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init(static_cast<T>(d[0]),static_cast<T>(d[1]),static_cast<T>(d[2]),static_cast<T>(d[3]));
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}
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return success;
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}
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template <typename T>
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#if !defined(__SUNPRO_CC)
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inline
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#endif
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bool box2d<T>::valid() const
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{
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return (minx_ <= maxx_ && miny_ <= maxy_) ;
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}
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template <typename T>
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box2d<T>& box2d<T>::operator+=(box2d<T> const& other)
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{
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expand_to_include(other);
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return *this;
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}
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template <typename T>
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box2d<T>& box2d<T>::operator*=(T t)
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{
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coord<T,2> c = center();
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T sx = static_cast<T>(0.5 * width() * t);
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T sy = static_cast<T>(0.5 * height() * t);
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minx_ = c.x - sx;
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maxx_ = c.x + sx;
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miny_ = c.y - sy;
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maxy_ = c.y + sy;
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return *this;
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}
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template <typename T>
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box2d<T>& box2d<T>::operator/=(T t)
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{
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coord<T,2> c = center();
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T sx = static_cast<T>(0.5 * width() / t);
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T sy = static_cast<T>(0.5 * height() / t);
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minx_ = c.x - sx;
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maxx_ = c.x + sx;
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miny_ = c.y - sy;
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maxy_ = c.y + sy;
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return *this;
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}
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template <typename T>
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T box2d<T>::operator[] (int index) const
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{
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switch(index)
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{
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case 0:
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return minx_;
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case 1:
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return miny_;
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case 2:
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return maxx_;
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case 3:
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return maxy_;
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case -4:
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return minx_;
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case -3:
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return miny_;
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case -2:
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return maxx_;
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case -1:
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return maxy_;
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default:
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throw std::out_of_range("index out of range, max value is 3, min value is -4 ");
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}
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}
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template <typename T>
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box2d<T> box2d<T>::operator*(agg::trans_affine const& tr) const
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{
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return box2d<T>(*this, tr);
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}
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template <typename T>
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box2d<T>& box2d<T>::operator*=(agg::trans_affine const& tr)
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{
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double x0 = minx_, y0 = miny_;
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double x1 = maxx_, y1 = miny_;
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double x2 = maxx_, y2 = maxy_;
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double x3 = minx_, y3 = maxy_;
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tr.transform(&x0, &y0);
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tr.transform(&x1, &y1);
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tr.transform(&x2, &y2);
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tr.transform(&x3, &y3);
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init(x0, y0, x2, y2);
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expand_to_include(x1, y1);
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expand_to_include(x3, y3);
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return *this;
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}
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template class box2d<int>;
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template class box2d<double>;
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}
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