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 FLASHING.md says how to take a newer version of the colleague's tree (copy it over the folder, rebuild, test, commit).
86 lines
2.7 KiB
C++
86 lines
2.7 KiB
C++
#include "extract-public-key.hpp"
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#include <boost/program_options.hpp>
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#include <iostream>
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#include <stdexcept>
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#include <vanetza/security/backend.hpp>
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#include <vanetza/security/v2/basic_elements.hpp>
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#include <vanetza/security/v2/persistence.hpp>
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namespace po = boost::program_options;
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using namespace vanetza::security;
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bool ExtractPublicKeyCommand::parse(const std::vector<std::string>& opts)
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{
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po::options_description desc("Available options");
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desc.add_options()
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("help", "Print out available options.")
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("output", po::value<std::string>(&output)->required(), "Output file.")
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("certificate", po::value<std::string>(&certificate_path), "Certificate file to extract public key from.")
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("private-key", po::value<std::string>(&private_key_path), "Private key file to extract public key from.")
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;
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po::positional_options_description pos;
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pos.add("output", 1);
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po::variables_map vm;
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po::store(po::command_line_parser(opts).options(desc).positional(pos).run(), vm);
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if (vm.count("help")) {
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std::cerr << desc << std::endl;
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return false;
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}
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try {
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po::notify(vm);
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if (!(vm.count("certificate") ^ vm.count("private-key"))) {
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std::cerr << "Error: One of certificate / private-key parameters must be present." << std::endl;
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return false;
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}
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} catch (const std::exception& e) {
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std::cerr << "Error: " << e.what() << std::endl << std::endl << desc << std::endl;
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return false;
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}
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return true;
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}
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int ExtractPublicKeyCommand::execute()
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{
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std::cout << "Loading key... ";
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std::unique_ptr<Backend> backend = create_backend("default");
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ecdsa256::PublicKey public_key;
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if (certificate_path.length() > 0) {
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auto certificate = v2::load_certificate_from_file(certificate_path);
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auto certificate_key = get_public_key(certificate, *backend);
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if (!certificate_key) {
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std::cerr << "Reading public key from certificate failed." << std::endl;
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}
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public_key = *certificate_key;
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} else {
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auto private_key = v2::load_private_key_from_file(private_key_path);
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public_key = private_key.public_key;
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}
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std::cout << "OK" << std::endl;
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Uncompressed coordinates;
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coordinates.x.assign(public_key.x.begin(), public_key.x.end());
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coordinates.y.assign(public_key.y.begin(), public_key.y.end());
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v2::ecdsa_nistp256_with_sha256 public_key_etsi;
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public_key_etsi.public_key = coordinates;
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std::cout << "Writing public key to '" << output << "'... ";
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v2::save_public_key_to_file(output, public_key_etsi);
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std::cout << "OK" << std::endl;
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return 0;
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}
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