Files
MicrOBU/microbu-esp32c5/external/vanetza-idf/vanetza/geonet/areas.hpp
T
Ashin Walpola 0e9525162d Keep the colleague's microbu-esp32c5 tree in this repository
obu-firmware builds against vanetza-idf from microbu-esp32c5/external, but
that tree was gitignored, so a clone of this repository could not build the
firmware it ships. It is now committed here as ordinary files in its own
folder, microbu-esp32c5/: the colleague's commit cf4b99f plus the V2X2MAP
bridge's signature verification (--trust) used on the bench. Nothing is
fetched from or pushed to the colleague's repository; this repository and
its remotes carry everything. The folder's own .gitignore keeps build output,
downloaded components and private key material out, as it did there; the
committed file set is identical to that repository's tracked files.

The ESP32-C5 is still flashed from obu-firmware/, which only takes
vanetza-idf from microbu-esp32c5/, so the two stay separate folders.
FLASHING.md says how to take a newer version of the colleague's tree (copy
it over the folder, rebuild, test, commit).
2026-09-23 17:46:40 +02:00

102 lines
2.6 KiB
C++

#ifndef AREAS_HPP_CVK1NIAI
#define AREAS_HPP_CVK1NIAI
#include <vanetza/geodesy/geodesy.hpp>
#include <vanetza/units/area.hpp>
#include <boost/variant.hpp>
namespace vanetza
{
namespace geonet
{
using geodesy::CartesianPosition;
using geodesy::GeodeticPosition;
using geodesy::distance;
using geodesy::local_cartesian;
struct Circle
{
Circle() : r(1.0 * units::si::meters) {}
units::Length r; // radius
};
struct Rectangle
{
Rectangle() : a(1.0 * units::si::meters), b(1.0 * units::si::meters) {}
units::Length a; // center to long side
units::Length b; // center to short side
};
struct Ellipse
{
Ellipse() : a(1.0 * units::si::meters), b(1.0 * units::si::meters) {}
units::Length a; // long semi-axis
units::Length b; // short semi-axis
};
struct Area
{
boost::variant<Rectangle, Ellipse, Circle> shape;
GeodeticPosition position;
units::Angle angle;
};
double geometric_function(const Circle&, const CartesianPosition&);
double geometric_function(const Rectangle&, const CartesianPosition&);
double geometric_function(const Ellipse&, const CartesianPosition&);
double geometric_function(const decltype(Area::shape)&, const CartesianPosition&);
/**
* Canonicalize a point in a shape's coordinate system w.r.t. its azimuth angle
* \param point Point to canonicalize
* \param azimuth Azimuth angle of shape's long side
* \return canonical position (suitable for geometric_function)
*/
CartesianPosition canonicalize(const CartesianPosition& point, units::Angle azimuth);
/**
* Check if positon is within or at border of area
* \param area with shape, dimensions, azimuth and center point position
* \param position Geodetic position to check against area
* \return true if position is inside or at border
*/
bool inside_or_at_border(const Area&, const GeodeticPosition&);
/**
* Calculate area size in square km.
* \param area Area object
* \return area size
*/
units::Area area_size(const Area&);
template<class SHAPE>
bool inside_shape(const SHAPE& shape, const CartesianPosition& p)
{
return geometric_function(shape, p) > 0.0;
}
template<class SHAPE>
bool outside_shape(const SHAPE& shape, const CartesianPosition& p)
{
return geometric_function(shape, p) < 0.0;
}
template<class SHAPE>
bool at_shape_border(const SHAPE& shape, const CartesianPosition& p)
{
return geometric_function(shape, p) == 0.0;
}
template<class SHAPE>
bool at_center_point(const SHAPE& shape, const CartesianPosition& p)
{
return geometric_function(shape, p) == 1.0;
}
} // namespace geonet
} // namespace vanetza
#endif /* AREAS_HPP_CVK1NIAI */