+ use path-like geometries
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2 changed files with 64 additions and 44 deletions
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@ -20,7 +20,6 @@
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*
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*****************************************************************************/
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//$Id: geometry.hpp 39 2005-04-10 20:39:53Z pavlenko $
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#ifndef GEOMETRY_HPP
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@ -81,8 +80,8 @@ namespace mapnik {
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virtual void rewind(unsigned) const=0;
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virtual void set_capacity(size_t size)=0;
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virtual ~geometry() {}
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};
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};
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template <typename T>
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class point : public geometry<T>
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{
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@ -137,19 +136,19 @@ namespace mapnik {
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};
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template <typename T, template <typename> class Container=vertex_vector2>
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class polygon : public geometry<T>
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class polygon //: public geometry<T>
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{
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typedef geometry<T> geometry_base;
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typedef typename geometry<T>::vertex_type vertex_type;
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typedef typename geometry_base::value_type value_type;
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typedef Container<vertex_type> container_type;
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typedef T vertex_type;
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typedef typename vertex_type::type value_type;
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typedef Container<vertex_type> container_type;
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private:
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container_type cont_;
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mutable unsigned itr_;
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public:
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polygon()
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: geometry_base(),
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itr_(0)
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: //geometry_base(),
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itr_(0)
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{}
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int type() const
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@ -157,36 +156,55 @@ namespace mapnik {
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return Polygon;
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}
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void label_position(double *x, double *y) const
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{
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unsigned size = cont_.size();
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if (size < 3)
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box2d<double> envelope() const
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{
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box2d<double> result;
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double x,y;
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rewind(0);
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for (unsigned i=0;i<num_points();++i)
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{
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vertex(&x,&y);
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if (i==0)
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{
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result.init(x,y,x,y);
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}
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else
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{
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result.expand_to_include(x,y);
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}
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}
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return result;
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}
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void label_position(double *x, double *y) const
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{
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unsigned size = cont_.size();
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if (size < 3)
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{
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cont_.get_vertex(0,x,y);
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return;
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}
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double ai;
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double atmp = 0;
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double xtmp = 0;
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double ytmp = 0;
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double x0 =0;
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double y0 =0;
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double x1 =0;
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double y1 =0;
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double ox =0;
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double oy =0;
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unsigned i;
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}
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double ai;
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double atmp = 0;
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double xtmp = 0;
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double ytmp = 0;
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double x0 =0;
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double y0 =0;
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double x1 =0;
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double y1 =0;
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double ox =0;
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double oy =0;
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unsigned i;
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// Use first point as origin to improve numerical accuracy
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cont_.get_vertex(0,&ox,&oy);
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cont_.get_vertex(0,&ox,&oy);
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for (i = 0; i < size-1; i++)
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{
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for (i = 0; i < size-1; i++)
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{
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cont_.get_vertex(i,&x0,&y0);
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cont_.get_vertex(i+1,&x1,&y1);
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x0 -= ox; y0 -= oy;
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x1 -= ox; y1 -= oy;
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@ -239,7 +257,7 @@ namespace mapnik {
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{
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cont_.set_capacity(size);
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}
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virtual ~polygon() {}
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//virtual ~polygon() {}
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};
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template <typename T, template <typename> class Container=vertex_vector2>
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@ -350,13 +368,15 @@ namespace mapnik {
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virtual ~line_string() {}
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};
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typedef point<vertex2d> point_impl;
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typedef line_string<vertex2d,vertex_vector2> line_string_impl;
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typedef polygon<vertex2d,vertex_vector2> polygon_impl;
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//typedef point<vertex2d> point_impl;
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//typedef line_string<vertex2d,vertex_vector2> line_string_impl;
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typedef polygon<vertex2d,vertex_vector2> point_impl;
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typedef polygon<vertex2d,vertex_vector2> line_string_impl;
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typedef polygon<vertex2d,vertex_vector2> polygon_impl;
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typedef geometry<vertex2d> geometry2d;
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typedef boost::shared_ptr<geometry2d> geometry_ptr;
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typedef boost::ptr_vector<geometry2d> geometry_containter;
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typedef polygon_impl geometry2d;
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typedef boost::shared_ptr<geometry2d> geometry_ptr;
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typedef boost::ptr_vector<geometry2d> geometry_containter;
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}
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#endif //GEOMETRY_HPP
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@ -203,7 +203,7 @@ namespace mapnik
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void read_point(Feature & feature)
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{
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geometry2d * pt = new point<vertex2d>;
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geometry2d * pt = new geometry2d;//new point<vertex2d>;
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double x = read_double();
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double y = read_double();
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pt->move_to(x,y);
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@ -222,7 +222,7 @@ namespace mapnik
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void read_multipoint_2(Feature & feature)
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{
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geometry2d * pt = new point<vertex2d>;
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geometry2d * pt = new geometry2d;//point<vertex2d>;
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int num_points = read_integer();
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for (int i=0;i<num_points;++i)
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{
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@ -236,7 +236,7 @@ namespace mapnik
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void read_linestring(Feature & feature)
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{
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geometry2d * line = new line_string<vertex2d>;
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geometry2d * line = new geometry2d;//line_string<vertex2d>;
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int num_points=read_integer();
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CoordinateArray ar(num_points);
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read_coords(ar);
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@ -261,7 +261,7 @@ namespace mapnik
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void read_multilinestring_2(Feature & feature)
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{
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geometry2d * line = new line_string<vertex2d>;
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geometry2d * line = new geometry2d;//line_string<vertex2d>;
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int num_lines=read_integer();
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unsigned capacity = 0;
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for (int i=0;i<num_lines;++i)
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