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MicrOBU/microbu-esp32c5/external/vanetza-idf/vanetza/facilities/cam_functions.cpp
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#include <vanetza/asn1/cam.hpp>
#include <vanetza/facilities/cam_functions.hpp>
#include <boost/algorithm/clamp.hpp>
#include <boost/math/constants/constants.hpp>
#include <boost/units/cmath.hpp>
#include <boost/units/systems/si/prefixes.hpp>
#include <boost/units/systems/angle/degrees.hpp>
namespace vanetza
{
namespace facilities
{
using vanetza::units::Angle;
static const auto microdegree = units::degree * units::si::micro;
static const auto tenth_microdegree = units::si::deci * microdegree;
bool similar_heading(Angle a, Angle b, Angle limit)
{
using namespace boost::units;
using boost::math::double_constants::pi;
static const Angle full_circle = 2.0 * pi * si::radian;
const Angle abs_diff = fmod(abs(a - b), full_circle);
return abs_diff <= limit || abs_diff >= full_circle - limit;
}
template<typename T, typename U>
long round(const boost::units::quantity<T>& q, const U&)
{
boost::units::quantity<U> v { q };
return std::round(v.value());
}
AltitudeConfidence_t to_altitude_confidence(units::Length confidence)
{
const double alt_con = confidence / units::si::meter;
if (alt_con < 0 || std::isnan(alt_con)) {
return AltitudeConfidence_unavailable;
} else if (alt_con <= 0.01) {
return AltitudeConfidence_alt_000_01;
} else if (alt_con <= 0.02) {
return AltitudeConfidence_alt_000_02;
} else if (alt_con <= 0.05) {
return AltitudeConfidence_alt_000_05;
} else if (alt_con <= 0.1) {
return AltitudeConfidence_alt_000_10;
} else if (alt_con <= 0.2) {
return AltitudeConfidence_alt_000_20;
} else if (alt_con <= 0.5) {
return AltitudeConfidence_alt_000_50;
} else if (alt_con <= 1.0) {
return AltitudeConfidence_alt_001_00;
} else if (alt_con <= 2.0) {
return AltitudeConfidence_alt_002_00;
} else if (alt_con <= 5.0) {
return AltitudeConfidence_alt_005_00;
} else if (alt_con <= 10.0) {
return AltitudeConfidence_alt_010_00;
} else if (alt_con <= 20.0) {
return AltitudeConfidence_alt_020_00;
} else if (alt_con <= 50.0) {
return AltitudeConfidence_alt_050_00;
} else if (alt_con <= 100.0) {
return AltitudeConfidence_alt_100_00;
} else if (alt_con <= 200.0) {
return AltitudeConfidence_alt_200_00;
} else {
return AltitudeConfidence_outOfRange;
}
}
AltitudeValue_t to_altitude_value(units::Length alt)
{
using boost::units::isnan;
static_assert(AltitudeValue_oneCentimeter == 1, "AltitudeValue encodes an integer number of centimeters");
if (!isnan(alt)) {
alt = boost::algorithm::clamp(alt, -1000.0 * units::si::meter, 8000.0 * units::si::meter);
return round(alt, units::si::centi * units::si::meter);
} else {
return AltitudeValue_unavailable;
}
}
} // namespace facilities
} // namespace vanetza
#define ASN1_PREFIX ASN1_RELEASE1_PREFIX
#define ITS_RELEASE 1
#include "detail/cam.ipp"
#include "detail/heading.ipp"
#include "detail/path_history.ipp"
#include "detail/reference_position.ipp"
#undef ASN1_PREFIX
#undef ITS_RELEASE
#define ASN1_PREFIX ASN1_RELEASE2_PREFIX
#define ITS_RELEASE 2
#include "detail/cam.ipp"
#include "detail/heading.ipp"
#include "detail/path_history.ipp"
#include "detail/reference_position.ipp"
namespace vanetza
{
namespace facilities
{
bool check_service_specific_permissions(const asn1::r1::Cam& cam, security::CamPermissions ssp)
{
return check_service_specific_permissions(cam->cam.camParameters, ssp);
}
bool check_service_specific_permissions(const asn1::r2::Cam& cam, security::CamPermissions ssp)
{
return check_service_specific_permissions(cam->cam.camParameters, ssp);
}
void print_indented(std::ostream& os, const asn1::r1::Cam& cam, const std::string& indent, unsigned start)
{
print_indented(os, cam.content(), indent, start);
}
void print_indented(std::ostream& os, const asn1::r2::Cam& cam, const std::string& indent, unsigned start)
{
print_indented(os, cam.content(), indent, start);
}
} // namespace facilities
} // namespace vanetza