Files
scylladb/gms/inet_address_serializer.hh
Avi Kivity f3eade2f62 treewide: relicense to ScyllaDB-Source-Available-1.0
Drop the AGPL license in favor of a source-available license.
See the blog post [1] for details.

[1] https://www.scylladb.com/2024/12/18/why-were-moving-to-a-source-available-license/
2024-12-18 17:45:13 +02:00

69 lines
2.0 KiB
C++

/*
* Copyright (C) 2019-present ScyllaDB
*/
/*
* SPDX-License-Identifier: LicenseRef-ScyllaDB-Source-Available-1.0
*/
#pragma once
#include <seastar/net/ipv4_address.hh>
#include <seastar/net/ipv6_address.hh>
#include "inet_address.hh"
#include "serializer.hh"
namespace ser {
/**
* Manual definition of inet_address serialization.
* Because inet_address was initially hardcoded to
* ipv4, its wire format is not very forward compatible.
*
* Since we potentially need to communicate with older
* version nodes, we manually define the new serial format
* for inet_address to be:
*
* ipv4: 4 bytes address
* ipv6: 4 bytes marker 0xffffffff (invalid address)
* 16 bytes data -> address
*
* As long as we are restricted to ipv4 (config/user responsibility)
* we will be able to swap gossip with older nodes. Once the
* cluster is fully updated, user can enable ipv6 and we will be
* happy and addressing all the molecules.
*
*/
template<>
struct serializer<gms::inet_address> {
template<typename Input>
static gms::inet_address read(Input& in) {
auto sz = deserialize(in, std::type_identity<uint32_t>());
if (sz == std::numeric_limits<uint32_t>::max()) {
seastar::net::ipv6_address addr(deserialize(in, std::type_identity<net::ipv6_address::ipv6_bytes>()));
return gms::inet_address(addr);
}
return gms::inet_address(sz);
}
template<typename Output>
static void write(Output& out, gms::inet_address v) {
auto& addr = v.addr();
if (addr.is_ipv6()) {
serialize(out, std::numeric_limits<uint32_t>::max());
auto bv = v.bytes();
out.write(reinterpret_cast<const char *>(bv.data()), bv.size());
} else {
uint32_t ip = addr.as_ipv4_address().ip;
// must write this little (or rather host) endian
serialize(out, ip);
}
}
template<typename Input>
static void skip(Input& v) {
read(v);
}
};
}