Files
MicrOBU/microbu-esp32c5/external/vanetza-idf/vanetza/security/v3/location_checker.cpp
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FLASHING.md says how to take a newer version of the colleague's tree (copy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

87 lines
2.9 KiB
C++

#include <vanetza/common/position_fix.hpp>
#include <vanetza/geodesy/country_database.hpp>
#include <vanetza/geodesy/m49_code.hpp>
#include <vanetza/asn1/security_profile.hpp>
#include VANETZA_ASN1_SECURITY_HEADER(IdentifiedRegion.h)
#include VANETZA_ASN1_SECURITY_HEADER(SequenceOfIdentifiedRegion.h)
#include <vanetza/security/v3/asn1_types.hpp>
#include <vanetza/security/v3/distance.hpp>
#include <vanetza/security/v3/geometry.hpp>
#include <vanetza/security/v3/location_checker.hpp>
namespace vanetza
{
namespace security
{
namespace v3
{
bool AllowLocationChecker::valid_at_location(const asn1::EtsiTs103097Certificate&, const PositionFix&) const
{
return true;
}
bool DenyLocationChecker::valid_at_location(const asn1::EtsiTs103097Certificate&, const PositionFix&) const
{
return false;
}
bool DefaultLocationChecker::valid_at_location(const asn1::EtsiTs103097Certificate& cert, const PositionFix& location) const
{
const asn1::GeographicRegion* region = cert.toBeSigned.region;
if (region) {
switch (region->present) {
case Vanetza_Security_GeographicRegion_PR_circularRegion:
return is_inside(location, region->choice.circularRegion);
case Vanetza_Security_GeographicRegion_PR_rectangularRegion:
return is_inside(location, region->choice.rectangularRegion);
case Vanetza_Security_GeographicRegion_PR_polygonalRegion:
return is_inside(location, region->choice.polygonalRegion);
case Vanetza_Security_GeographicRegion_PR_identifiedRegion:
return check_identified_region(location, region->choice.identifiedRegion);
default:
// unknown or future region restriction type — reject conservatively
return false;
}
} else {
// no region restriction applies
return true;
}
}
bool DefaultLocationChecker::check_identified_region(const PositionFix& location, const Vanetza_Security_SequenceOfIdentifiedRegion& seq) const
{
if (!country_db_ || country_db_->empty())
{
// lacking database for country checks
return permissive_identified_region_;
}
// reject any region by default
bool accepted = false;
for (int i = 0; i < seq.list.count; ++i) {
const auto* entry = seq.list.array[i];
if (!entry) {
continue;
}
if (entry->present == Vanetza_Security_IdentifiedRegion_PR_countryOnly) {
geodesy::M49Code code(static_cast<uint16_t>(entry->choice.countryOnly));
geodesy::GeodeticPosition pos(location.latitude, location.longitude);
if (country_db_->is_inside(code, pos)) {
return true;
}
} else {
// may accept because of unsupported identified region
accepted = permissive_identified_region_;
}
}
return accepted;
}
} // namespace v3
} // namespace security
} // namespace vanetza