84 lines
2.3 KiB
Plaintext
84 lines
2.3 KiB
Plaintext
%module{Slic3r::XS};
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%{
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#include <xsinit.h>
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#include "libslic3r/BoundingBox.hpp"
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#include "libslic3r/Polygon.hpp"
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#include "libslic3r/BoundingBox.hpp"
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%}
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%name{Slic3r::Polygon} class Polygon {
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~Polygon();
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Clone<Polygon> clone()
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%code{% RETVAL = THIS; %};
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SV* arrayref()
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%code{% RETVAL = to_AV(THIS); %};
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SV* pp()
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%code{% RETVAL = to_SV_pureperl(THIS); %};
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void scale(double factor);
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void translate(double x, double y);
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void reverse();
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Lines lines();
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Clone<Polyline> split_at_vertex(Point* point)
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%code{% RETVAL = THIS->split_at_vertex(*point); %};
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Clone<Polyline> split_at_index(int index);
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Clone<Polyline> split_at_first_point();
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Points equally_spaced_points(double distance);
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double length();
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double area();
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bool is_counter_clockwise();
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bool is_clockwise();
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bool make_counter_clockwise();
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bool make_clockwise();
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bool is_valid();
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Clone<Point> first_point();
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bool contains_point(Point* point)
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%code{% RETVAL = THIS->contains(*point); %};
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Polygons simplify(double tolerance);
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Polygons triangulate_convex()
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%code{% THIS->triangulate_convex(&RETVAL); %};
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Clone<Point> centroid();
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Clone<BoundingBox> bounding_box();
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std::string wkt();
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Points concave_points(double angle);
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Points convex_points(double angle);
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Clone<Point> point_projection(Point* point)
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%code{% RETVAL = THIS->point_projection(*point); %};
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Clone<Point> intersection(Line* line)
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%code{%
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Point p;
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(void)THIS->intersection(*line, &p);
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RETVAL = p;
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%};
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Clone<Point> first_intersection(Line* line)
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%code{%
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Point p;
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(void)THIS->first_intersection(*line, &p);
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RETVAL = p;
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%};
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%{
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Polygon*
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Polygon::new(...)
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CODE:
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RETVAL = new Polygon ();
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// ST(0) is class name, ST(1) is first point
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RETVAL->points.resize(items-1);
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for (unsigned int i = 1; i < items; i++) {
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from_SV_check(ST(i), &RETVAL->points[i-1]);
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}
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OUTPUT:
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RETVAL
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void
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Polygon::rotate(angle, center_sv)
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double angle;
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SV* center_sv;
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CODE:
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Point center;
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from_SV_check(center_sv, ¢er);
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THIS->rotate(angle, center);
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%}
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};
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