handle PeerTest

pull/60/head
orignal 10 years ago
parent cf6fa2d41d
commit 130e1c2daf

@ -57,7 +57,7 @@ namespace ssu
case eSessionStateConfirmedSent:
case eSessionStateEstablished:
// most common case
ProcessMessage (buf, len);
ProcessMessage (buf, len, senderEndpoint);
break;
// establishing
case eSessionStateUnknown:
@ -92,7 +92,7 @@ namespace ssu
}
}
void SSUSession::ProcessMessage (uint8_t * buf, size_t len)
void SSUSession::ProcessMessage (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint)
{
if (Validate (buf, len, m_MacKey))
{
@ -105,8 +105,9 @@ namespace ssu
LogPrint ("SSU data received");
ProcessData (buf + sizeof (SSUHeader), len - sizeof (SSUHeader));
break;
case PAYLOAD_TYPE_TEST:
LogPrint ("SSU test received");
case PAYLOAD_TYPE_PEER_TEST:
LogPrint ("SSU peer test received");
ProcessPeerTest (buf + sizeof (SSUHeader), len - sizeof (SSUHeader), senderEndpoint);
break;
case PAYLOAD_TYPE_SESSION_DESTROYED:
{
@ -678,6 +679,58 @@ namespace ssu
}
}
void SSUSession::ProcessPeerTest (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint)
{
uint8_t * buf1 = buf;
uint32_t nonce = be32toh (*(uint32_t *)buf);
buf += 4; // nonce
uint8_t size = *buf;
buf++; // size
uint8_t * address = (size == 4) ? buf : nullptr;
buf += size; // address
uint16_t port = *(uint16_t *)buf; // use it as is
buf += 2; // port
uint8_t * introKey = buf;
if (port)
{
LogPrint ("SSU peer test. We are Charlie");
Send (PAYLOAD_TYPE_PEER_TEST, buf1, len); // back to Bob
if (address)
SendPeerTest (nonce, be32toh (*(uint32_t *)address), be16toh (port), introKey); // to Alice
else
LogPrint ("Address of ", size, " bytes not supported");
}
else
{
LogPrint ("SSU peer test. We are Bob");
// TODO:
}
}
void SSUSession::SendPeerTest (uint32_t nonce, uint32_t address, uint16_t port, uint8_t * introKey)
{
uint8_t buf[80 + 18];
uint8_t iv[16];
uint8_t * payload = buf + sizeof (SSUHeader);
*(uint32_t *)payload = htobe32 (nonce);
payload += 4; // nonce
*payload = 4;
payload++; // size
*(uint32_t *)payload = htobe32 (address);
payload += 4; // address
*(uint16_t *)payload = htobe32 (port);
payload += 2; // port
memcpy (payload, introKey, 32); // intro key
CryptoPP::RandomNumberGenerator& rnd = i2p::context.GetRandomNumberGenerator ();
rnd.GenerateBlock (iv, 16); // random iv
// encrypt message with specified intro key
FillHeaderAndEncrypt (PAYLOAD_TYPE_PEER_TEST, buf, 80, introKey, iv, introKey);
boost::asio::ip::udp::endpoint e (boost::asio::ip::address_v4 (address), port);
m_Server.Send (buf, 80, e);
}
void SSUSession::SendMsgAck (uint32_t msgID)
{
uint8_t buf[48 + 18]; // actual length is 44 = 37 + 7 but pad it to multiple of 16
@ -771,6 +824,24 @@ namespace ssu
}
}
void SSUSession::Send (uint8_t type, const uint8_t * payload, size_t len)
{
uint8_t buf[SSU_MTU + 18];
uint8_t iv[16];
size_t msgSize = len + sizeof (SSUHeader);
if (msgSize > SSU_MTU)
{
LogPrint ("SSU payload size ", msgSize, " exceeds MTU");
return;
}
memcpy (buf + sizeof (SSUHeader), payload, len);
CryptoPP::RandomNumberGenerator& rnd = i2p::context.GetRandomNumberGenerator ();
rnd.GenerateBlock (iv, 16); // random iv
// encrypt message with session key
FillHeaderAndEncrypt (type, buf, msgSize, m_SessionKey, iv, m_MacKey);
m_Server.Send (buf, msgSize, m_RemoteEndpoint);
}
SSUServer::SSUServer (boost::asio::io_service& service, int port):
m_Endpoint (boost::asio::ip::udp::v4 (), port), m_Socket (service, m_Endpoint)
{

11
SSU.h

@ -26,7 +26,7 @@ namespace ssu
};
#pragma pack()
const int SSU_MTU = 1484;
const size_t SSU_MTU = 1484;
const int SSU_CONNECT_TIMEOUT = 5; // 5 seconds
// payload types (4 bits)
@ -37,7 +37,7 @@ namespace ssu
const uint8_t PAYLOAD_TYPE_RELAY_RESPONSE = 4;
const uint8_t PAYLOAD_TYPE_RELAY_INTRO = 5;
const uint8_t PAYLOAD_TYPE_DATA = 6;
const uint8_t PAYLOAD_TYPE_TEST = 7;
const uint8_t PAYLOAD_TYPE_PEER_TEST = 7;
const uint8_t PAYLOAD_TYPE_SESSION_DESTROYED = 8;
// data flags
@ -85,7 +85,7 @@ namespace ssu
void CreateAESandMacKey (uint8_t * pubKey, uint8_t * aesKey, uint8_t * macKey);
void ProcessMessage (uint8_t * buf, size_t len); // call for established session
void ProcessMessage (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint); // call for established session
void ProcessSessionRequest (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint);
void SendSessionRequest ();
void SendRelayRequest (const i2p::data::RouterInfo::Introducer& introducer);
@ -97,10 +97,13 @@ namespace ssu
void Established ();
void Failed ();
void HandleConnectTimer (const boost::system::error_code& ecode);
void ProcessData (uint8_t * buf, size_t len);
void ProcessPeerTest (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint);
void SendPeerTest (uint32_t nonce, uint32_t address, uint16_t port, uint8_t * introKey); // Charlie to Alice
void ProcessData (uint8_t * buf, size_t len);
void SendMsgAck (uint32_t msgID);
void SendSesionDestroyed ();
void Send (i2p::I2NPMessage * msg);
void Send (uint8_t type, const uint8_t * payload, size_t len); // with session key
bool ProcessIntroKeyEncryptedMessage (uint8_t expectedPayloadType, uint8_t * buf, size_t len);
void FillHeaderAndEncrypt (uint8_t payloadType, uint8_t * buf, size_t len, const uint8_t * aesKey, const uint8_t * iv, const uint8_t * macKey);

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