lokinet/llarp/service/protocol.hpp

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#pragma once
#include <llarp/crypto/encrypted.hpp>
#include <llarp/crypto/types.hpp>
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#include <llarp/service/convotag.hpp>
#include "protocol_type.hpp"
#include "identity.hpp"
#include "info.hpp"
#include "intro.hpp"
#include <llarp/util/bencode.hpp>
#include <llarp/util/time.hpp>
#include <llarp/path/pathset.hpp>
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#include <vector>
struct llarp_threadpool;
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namespace llarp
{
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namespace path
{
/// forward declare
struct Path;
} // namespace path
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namespace service
{
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struct Endpoint;
constexpr std::size_t MAX_PROTOCOL_MESSAGE_SIZE = 2048 * 2;
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/* Note: Talk to Tom and Jason about switching the names of ProtocolFrameMessage (carrier
object) and ProtocolMessage (inner object) to something like ProtocolMessageCarrier and
ProtocolMessage?
*/
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/// inner message
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struct ProtocolMessage
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{
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ProtocolMessage(const ConvoTag& tag);
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ProtocolMessage();
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~ProtocolMessage();
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ProtocolType proto = ProtocolType::TrafficV4;
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llarp_time_t queued = 0s;
std::vector<byte_t> payload; // encrypted AbstractLinkMessage
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Introduction introReply;
ServiceInfo sender;
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Endpoint* handler = nullptr;
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ConvoTag tag;
uint64_t seqno = 0;
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uint64_t version = llarp::constants::proto_version;
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/// encode metainfo for lmq endpoint auth
std::vector<char>
EncodeAuthInfo() const;
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bool
decode_key(const llarp_buffer_t& key, llarp_buffer_t* val);
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std::string
bt_encode() const;
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void
PutBuffer(const llarp_buffer_t& payload);
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static void
ProcessAsync(path::Path_ptr p, PathID_t from, std::shared_ptr<ProtocolMessage> self);
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bool
operator>(const ProtocolMessage& other) const
{
return seqno > other.seqno;
}
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};
/// outer message
struct ProtocolFrameMessage final : public routing::AbstractRoutingMessage
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{
PQCipherBlock cipher;
Encrypted<2048> enc;
uint64_t flag; // set to indicate in plaintext a nack, aka "dont try again"
KeyExchangeNonce nonce;
Signature sig;
PathID_t path_id;
service::ConvoTag convo_tag;
ProtocolFrameMessage(const ProtocolFrameMessage& other)
: routing::AbstractRoutingMessage(other)
, cipher(other.cipher)
, enc(other.enc)
, flag(other.flag)
, nonce(other.nonce)
, sig(other.sig)
, path_id(other.path_id)
, convo_tag(other.convo_tag)
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{
sequence_number = other.sequence_number;
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version = other.version;
}
ProtocolFrameMessage() : routing::AbstractRoutingMessage{}
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{
clear();
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}
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~ProtocolFrameMessage() override;
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bool
operator==(const ProtocolFrameMessage& other) const;
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bool
operator!=(const ProtocolFrameMessage& other) const
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{
return !(*this == other);
}
ProtocolFrameMessage&
operator=(const ProtocolFrameMessage& other);
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bool
EncryptAndSign(
const ProtocolMessage& msg, const SharedSecret& sharedkey, const Identity& localIdent);
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bool
Sign(const Identity& localIdent);
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bool
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AsyncDecryptAndVerify(
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EventLoop_ptr loop,
path::Path_ptr fromPath,
const Identity& localIdent,
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Endpoint* handler,
std::function<void(std::shared_ptr<ProtocolMessage>)> hook = nullptr) const;
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bool
DecryptPayloadInto(const SharedSecret& sharedkey, ProtocolMessage& into) const;
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bool
decode_key(const llarp_buffer_t& key, llarp_buffer_t* val) override;
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/** Note: this method needs to be re-examined where it is called in the other class methods,
like ::Sign(), ::EncryptAndSign(), and ::Verify(). In all 3 of these cases, the subsequent
methods that the llarp_buffer_t is passed to must be refactored to take either a string, a
redesigned llarp_buffer, or some span backport.
*/
std::string
bt_encode() const override;
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bool
BDecode(llarp_buffer_t* buf)
{
return bencode_decode_dict(*this, buf);
}
void
clear() override
{
cipher.Zero();
enc.Clear();
path_id.Zero();
convo_tag.Zero();
nonce.Zero();
sig.Zero();
flag = 0;
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version = llarp::constants::proto_version;
}
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bool
Verify(const ServiceInfo& from) const;
bool
handle_message(routing::AbstractRoutingMessageHandler* h, Router* r) const override;
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};
} // namespace service
} // namespace llarp