i2pd/LeaseSet.cpp

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#include <string.h>
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#include "I2PEndian.h"
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#include <cryptopp/dsa.h>
#include "CryptoConst.h"
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#include "Log.h"
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#include "Timestamp.h"
#include "NetDb.h"
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#include "TunnelPool.h"
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#include "LeaseSet.h"
namespace i2p
{
namespace data
{
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LeaseSet::LeaseSet (const uint8_t * buf, int len)
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{
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memcpy (m_Buffer, buf, len);
m_BufferLen = len;
ReadFromBuffer ();
}
LeaseSet::LeaseSet (const i2p::tunnel::TunnelPool& pool)
{
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// header
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const i2p::data::LocalDestination * localDestination = pool.GetLocalDestination ();
if (!localDestination)
{
m_BufferLen = 0;
LogPrint (eLogError, "Destination for local LeaseSet doesn't exist");
return;
}
m_BufferLen = localDestination->GetIdentity ().ToBuffer (m_Buffer, MAX_LS_BUFFER_SIZE);
memcpy (m_Buffer + m_BufferLen, localDestination->GetEncryptionPublicKey (), 256);
m_BufferLen += 256;
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auto signingKeyLen = localDestination->GetIdentity ().GetSigningPublicKeyLen ();
memset (m_Buffer + m_BufferLen, 0, signingKeyLen);
m_BufferLen += signingKeyLen;
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auto tunnels = pool.GetInboundTunnels (5); // 5 tunnels maximum
m_Buffer[m_BufferLen] = tunnels.size (); // num leases
m_BufferLen++;
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// leases
for (auto it: tunnels)
{
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Lease lease;
memcpy (lease.tunnelGateway, it->GetNextIdentHash (), 32);
lease.tunnelID = htobe32 (it->GetNextTunnelID ());
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uint64_t ts = it->GetCreationTime () + i2p::tunnel::TUNNEL_EXPIRATION_TIMEOUT - 60; // 1 minute before expiration
ts *= 1000; // in milliseconds
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lease.endDate = htobe64 (ts);
memcpy(m_Buffer + m_BufferLen, &lease, sizeof(Lease));
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m_BufferLen += sizeof (Lease);
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}
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// signature
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localDestination->Sign (m_Buffer, m_BufferLen, m_Buffer + m_BufferLen);
m_BufferLen += localDestination->GetIdentity ().GetSignatureLen ();
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LogPrint ("Local LeaseSet of ", tunnels.size (), " leases created");
ReadFromBuffer ();
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}
void LeaseSet::Update (const uint8_t * buf, int len)
{
m_Leases.clear ();
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memcpy (m_Buffer, buf, len);
m_BufferLen = len;
ReadFromBuffer ();
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}
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void LeaseSet::ReadFromBuffer ()
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{
size_t size = m_Identity.FromBuffer (m_Buffer, m_BufferLen);
memcpy (m_EncryptionKey, m_Buffer + size, 256);
size += 256; // encryption key
size += m_Identity.GetSigningPublicKeyLen (); // unused signing key
uint8_t num = m_Buffer[size];
size++; // num
LogPrint ("LeaseSet num=", (int)num);
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// process leases
const uint8_t * leases = m_Buffer + size;
for (int i = 0; i < num; i++)
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{
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Lease lease;
memcpy (&lease, leases, sizeof(Lease));
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lease.tunnelID = be32toh (lease.tunnelID);
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lease.endDate = be64toh (lease.endDate);
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m_Leases.push_back (lease);
leases += sizeof (Lease);
// check if lease's gateway is in our netDb
if (!netdb.FindRouter (lease.tunnelGateway))
{
// if not found request it
LogPrint ("Lease's tunnel gateway not found. Requested");
netdb.RequestDestination (lease.tunnelGateway);
}
}
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// verify
if (!m_Identity.Verify (m_Buffer, leases - m_Buffer, leases))
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LogPrint ("LeaseSet verification failed");
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}
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const std::vector<Lease> LeaseSet::GetNonExpiredLeases () const
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{
auto ts = i2p::util::GetMillisecondsSinceEpoch ();
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std::vector<Lease> leases;
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for (auto& it: m_Leases)
if (ts < it.endDate)
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leases.push_back (it);
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return leases;
}
bool LeaseSet::HasExpiredLeases () const
{
auto ts = i2p::util::GetMillisecondsSinceEpoch ();
for (auto& it: m_Leases)
if (ts >= it.endDate) return true;
return false;
}
bool LeaseSet::HasNonExpiredLeases () const
{
auto ts = i2p::util::GetMillisecondsSinceEpoch ();
for (auto& it: m_Leases)
if (ts < it.endDate) return true;
return false;
}
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}
}