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#include "validation.hpp"
#include <vanetza/security/delegating_security_entity.hpp>
#include <vanetza/security/v2/secured_message.hpp>
#include <vanetza/security/v2/sign_service.hpp>
#include <boost/program_options.hpp>
#include <iostream>
#include <random>
using namespace vanetza;
using namespace vanetza::security;
namespace po = boost::program_options;
bool SecurityValidationCase::parse(const std::vector<std::string>& opts)
{
po::options_description desc("Available options");
desc.add_options()
("help", "Print out available options.")
("identities", po::value<unsigned>(&identities)->default_value(1), "Number of identities (certificates).")
("messages", po::value<unsigned>(&messages)->default_value(10000), "Number of messages.")
("signer", po::value<std::string>(&signer_info_type)->default_value("certificate"), "Signer embedded into the messages, may be 'certificate', 'hash' or 'chain'.")
;
po::variables_map vm;
po::store(po::command_line_parser(opts).options(desc).run(), vm);
if (vm.count("help")) {
std::cerr << desc << std::endl;
return false;
}
try {
po::notify(vm);
if (signer_info_type != "certificate" && signer_info_type != "hash" && signer_info_type != "chain") {
throw std::runtime_error("Invalid signer info type.");
}
} catch (const std::exception& e) {
std::cerr << "Error: " << e.what() << std::endl << std::endl << desc << std::endl;
return false;
}
return true;
}
int SecurityValidationCase::execute()
{
DownPacket packet;
packet.layer(OsiLayer::Application) = ByteBuffer { 0xC0, 0xFF, 0xEE };
certificate_cache.insert(certificate_provider.own_certificate());
certificate_cache.insert(certificate_provider.aa_certificate());
trust_store.insert(certificate_provider.root_certificate());
std::vector<std::unique_ptr<v2::CertificateProvider>> providers;
std::vector<std::unique_ptr<SecurityEntity>> entities;
std::vector<SecuredMessage> secured_messages(identities);
for (unsigned i = 0; i < identities; i++) {
providers.emplace_back(new v2::NaiveCertificateProvider(runtime));
entities.emplace_back(new DelegatingSecurityEntity { create_sign_service(), create_verify_service() });
certificate_cache.insert(providers.back()->own_certificate());
}
if (signer_info_type == "hash") {
// Sign one message with CAM profile, so the next message only includes the certificate hash
SignRequest initial_sign_request;
initial_sign_request.plain_message = packet;
initial_sign_request.its_aid = aid::CA;
entities[0]->encapsulate_packet(std::move(initial_sign_request));
}
for (unsigned i = 0; i < identities; i++) {
if (signer_info_type == "certificate") {
sign_header_policy.request_certificate();
} else if (signer_info_type == "chain") {
sign_header_policy.request_certificate_chain();
}
SignRequest sign_request;
sign_request.plain_message = packet;
sign_request.its_aid = aid::CA;
EncapConfirm encap_confirm = entities[i]->encapsulate_packet(std::move(sign_request));
auto secured_msg = encap_confirm.secured_message();
if (!secured_msg) {
std::cerr << "Failed to encapsulate packet." << std::endl;
return 1;
}
auto v2_sec_msg = boost::get<v2::SecuredMessage>(*secured_msg);
auto signer_info = v2_sec_msg.header_field<v2::HeaderFieldType::Signer_Info>();
if (signer_info_type == "hash") {
assert(signer_info && get_type(*signer_info) == v2::SignerInfoType::Certificate_Digest_With_SHA256);
} else if (signer_info_type == "certificate") {
assert(signer_info && get_type(*signer_info) == v2::SignerInfoType::Certificate);
} else if (signer_info_type == "chain") {
assert(signer_info && get_type(*signer_info) == v2::SignerInfoType::Certificate_Chain);
}
secured_messages.push_back(v2_sec_msg);
}
std::mt19937 gen(0);
std::uniform_int_distribution<> dis(0, identities - 1);
std::cout << "Starting benchmark for messages ... ";
for (unsigned i = 0; i < messages; i++) {
DecapRequest decap_request { SecuredMessageView { secured_messages[dis(gen)] }};
auto decap_confirm = security_entity.decapsulate_packet(std::move(decap_request));
assert(decap_confirm.report == VerificationReport::Success);
}
std::cout << "[Done]" << std::endl;
return 0;
}