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#include <vanetza/security/v2/recipient_info.hpp>
#include <vanetza/security/v2/length_coding.hpp>
#include <boost/variant/static_visitor.hpp>
#include <boost/variant/apply_visitor.hpp>
namespace vanetza
{
namespace security
{
namespace v2
{
PublicKeyAlgorithm get_type(const Key& key)
{
struct key_visitor : public boost::static_visitor<PublicKeyAlgorithm>
{
PublicKeyAlgorithm operator()(const EciesEncryptedKey&)
{
return PublicKeyAlgorithm::ECIES_NISTP256;
}
PublicKeyAlgorithm operator()(const OpaqueKey&)
{
// TODO: could be anything except ECIES_NISTP256
return PublicKeyAlgorithm::ECDSA_NISTP256_With_SHA256;
}
};
key_visitor visitor;
return boost::apply_visitor(visitor, key);
}
PublicKeyAlgorithm RecipientInfo::pk_encryption() const
{
return get_type(enc_key);
}
size_t get_size(const RecipientInfo& info)
{
size_t size = info.cert_id.size();
size += sizeof(PublicKeyAlgorithm);
struct RecipientInfoKey_visitor : public boost::static_visitor<size_t>
{
size_t operator()(const EciesEncryptedKey& key)
{
return key.c.size() + key.t.size() + get_size(key.v);
}
size_t operator()(const OpaqueKey& key)
{
return length_coding_size(key.data.size()) + key.data.size();
}
};
RecipientInfoKey_visitor visit;
size += boost::apply_visitor(visit, info.enc_key);
return size;
}
void serialize(OutputArchive& ar, const RecipientInfo& info, SymmetricAlgorithm sym_algo)
{
struct key_visitor : public boost::static_visitor<>
{
key_visitor(OutputArchive& ar, SymmetricAlgorithm sym_algo, PublicKeyAlgorithm pk_algo) :
m_archive(ar), m_sym_algo(sym_algo), m_pk_algo(pk_algo)
{
}
void operator()(const EciesEncryptedKey& key)
{
assert(key.c.size() == field_size(m_sym_algo));
serialize(m_archive, key.v, m_pk_algo);
for (auto& byte : key.c) {
m_archive << byte;
}
for (auto& byte : key.t) {
m_archive << byte;
}
}
void operator()(const OpaqueKey& key)
{
serialize_length(m_archive, key.data.size());
for (auto byte : key.data) {
m_archive << byte;
}
}
OutputArchive& m_archive;
SymmetricAlgorithm m_sym_algo;
PublicKeyAlgorithm m_pk_algo;
};
for (auto& byte : info.cert_id) {
ar << byte;
}
const PublicKeyAlgorithm pk_algo = info.pk_encryption();
serialize(ar, pk_algo);
key_visitor visitor(ar, sym_algo, pk_algo);
boost::apply_visitor(visitor, info.enc_key);
}
EciesEncryptedKey deserialize_ecies(InputArchive& ar, const SymmetricAlgorithm& symAlgo)
{
EciesEncryptedKey ecies;
deserialize(ar, ecies.v, PublicKeyAlgorithm::ECIES_NISTP256);
const size_t fieldSize = field_size(symAlgo);
for (size_t c = 0; c < fieldSize; ++c) {
uint8_t tmp;
ar >> tmp;
ecies.c.push_back(tmp);
}
for (size_t c = 0; c < ecies.t.size(); ++c) {
uint8_t tmp;
ar >> tmp;
ecies.t[c] = tmp;
}
return ecies;
}
OpaqueKey deserialize_opaque(InputArchive& ar)
{
static const std::uintmax_t length_limit = 512;
const std::uintmax_t length = deserialize_length(ar);
if (length <= length_limit) {
ByteBuffer opaque(length);
for (std::uintmax_t i = 0; i < length; ++i) {
ar >> opaque[i];
}
return OpaqueKey { std::move(opaque) };
} else {
return OpaqueKey {};
}
}
size_t deserialize(InputArchive& ar, RecipientInfo& info, const SymmetricAlgorithm& symAlgo)
{
for (size_t c = 0; c < info.cert_id.size(); ++c) {
ar >> info.cert_id[c];
}
PublicKeyAlgorithm algo;
deserialize(ar, algo);
switch (algo) {
case PublicKeyAlgorithm::ECIES_NISTP256:
info.enc_key = deserialize_ecies(ar, symAlgo);
break;
default:
info.enc_key = deserialize_opaque(ar);
break;
}
return get_size(info);
}
} // namespace v2
} // namespace security
} // namespace vanetza