mirror of
https://github.com/PurpleI2P/i2pd.git
synced 2024-11-08 01:10:40 +00:00
517 lines
15 KiB
C++
517 lines
15 KiB
C++
#include <inttypes.h>
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#include "I2PEndian.h"
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#include <map>
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#include <string>
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#include "RouterContext.h"
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#include "I2NPProtocol.h"
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#include "Tunnel.h"
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#include "TunnelPool.h"
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#include "Timestamp.h"
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#include "Streaming.h"
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#include "Garlic.h"
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namespace i2p
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{
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namespace garlic
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{
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GarlicRoutingSession::GarlicRoutingSession (const i2p::data::RoutingDestination * destination, int numTags):
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m_Destination (destination), m_FirstMsgID (0), m_IsAcknowledged (false),
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m_NumTags (numTags), m_NextTag (-1), m_SessionTags (0), m_TagsCreationTime (0)
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{
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// create new session tags and session key
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m_Rnd.GenerateBlock (m_SessionKey, 32);
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m_Encryption.SetKey (m_SessionKey);
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if (m_NumTags > 0)
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{
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m_SessionTags = new SessionTag[m_NumTags];
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GenerateSessionTags ();
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}
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else
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m_SessionTags = nullptr;
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}
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GarlicRoutingSession::GarlicRoutingSession (const uint8_t * sessionKey, const SessionTag& sessionTag):
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m_Destination (nullptr), m_FirstMsgID (0), m_IsAcknowledged (true), m_NumTags (1), m_NextTag (0)
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{
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memcpy (m_SessionKey, sessionKey, 32);
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m_Encryption.SetKey (m_SessionKey);
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m_SessionTags = new SessionTag[1]; // 1 tag
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m_SessionTags[0] = sessionTag;
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m_TagsCreationTime = i2p::util::GetSecondsSinceEpoch ();
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}
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GarlicRoutingSession::~GarlicRoutingSession ()
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{
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delete[] m_SessionTags;
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}
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void GarlicRoutingSession::GenerateSessionTags ()
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{
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if (m_SessionTags)
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{
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for (int i = 0; i < m_NumTags; i++)
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m_Rnd.GenerateBlock (m_SessionTags[i], 32);
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m_TagsCreationTime = i2p::util::GetSecondsSinceEpoch ();
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SetAcknowledged (false);
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}
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}
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I2NPMessage * GarlicRoutingSession::WrapSingleMessage (I2NPMessage * msg, I2NPMessage * leaseSet)
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{
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I2NPMessage * m = NewI2NPMessage ();
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size_t len = 0;
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uint8_t * buf = m->GetPayload () + 4; // 4 bytes for length
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// take care about tags
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if (m_NumTags > 0)
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{
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if (i2p::util::GetSecondsSinceEpoch () >= m_TagsCreationTime + TAGS_EXPIRATION_TIMEOUT)
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{
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// old tags expired create new set
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LogPrint ("Garlic tags expired");
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GenerateSessionTags ();
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m_NextTag = -1;
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}
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else if (!m_IsAcknowledged) // new set of tags was not acknowledged
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{
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LogPrint ("Previous garlic tags was not acknowledged. Use ElGamal");
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m_NextTag = -1; // have to use ElGamal
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}
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}
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// create message
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if (m_NextTag < 0 || !m_NumTags) // new session
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{
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if (!m_Destination)
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{
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LogPrint ("Can't use ElGamal for unknown destination");
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return nullptr;
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}
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// create ElGamal block
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ElGamalBlock elGamal;
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memcpy (elGamal.sessionKey, m_SessionKey, 32);
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m_Rnd.GenerateBlock (elGamal.preIV, 32); // Pre-IV
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uint8_t iv[32]; // IV is first 16 bytes
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CryptoPP::SHA256().CalculateDigest(iv, elGamal.preIV, 32);
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m_Destination->GetElGamalEncryption ()->Encrypt ((uint8_t *)&elGamal, sizeof(elGamal), buf, true);
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m_Encryption.SetIV (iv);
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buf += 514;
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len += 514;
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}
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else // existing session
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{
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// session tag
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memcpy (buf, m_SessionTags[m_NextTag], 32);
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uint8_t iv[32]; // IV is first 16 bytes
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CryptoPP::SHA256().CalculateDigest(iv, m_SessionTags[m_NextTag], 32);
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m_Encryption.SetIV (iv);
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buf += 32;
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len += 32;
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// re-create session tags if necessary
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if (m_NextTag >= m_NumTags - 1) // we have used last tag
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{
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GenerateSessionTags ();
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m_NextTag = -1;
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}
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}
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// AES block
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len += CreateAESBlock (buf, msg, leaseSet);
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m_NextTag++;
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*(uint32_t *)(m->GetPayload ()) = htobe32 (len);
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m->len += len + 4;
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FillI2NPMessageHeader (m, eI2NPGarlic);
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if (msg)
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DeleteI2NPMessage (msg);
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if (leaseSet)
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DeleteI2NPMessage (leaseSet);
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return m;
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}
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size_t GarlicRoutingSession::CreateAESBlock (uint8_t * buf, const I2NPMessage * msg, const I2NPMessage * leaseSet)
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{
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size_t blockSize = 0;
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*(uint16_t *)buf = m_NextTag < 0 ? htobe16 (m_NumTags) : 0; // tag count
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blockSize += 2;
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if (m_NextTag < 0) // session tags recreated
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{
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for (int i = 0; i < m_NumTags; i++)
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{
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memcpy (buf + blockSize, m_SessionTags[i], 32); // tags
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blockSize += 32;
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}
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}
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uint32_t * payloadSize = (uint32_t *)(buf + blockSize);
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blockSize += 4;
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uint8_t * payloadHash = buf + blockSize;
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blockSize += 32;
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buf[blockSize] = 0; // flag
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blockSize++;
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size_t len = CreateGarlicPayload (buf + blockSize, msg, leaseSet);
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*payloadSize = htobe32 (len);
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CryptoPP::SHA256().CalculateDigest(payloadHash, buf + blockSize, len);
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blockSize += len;
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size_t rem = blockSize % 16;
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if (rem)
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blockSize += (16-rem); //padding
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m_Encryption.Encrypt(buf, blockSize, buf);
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return blockSize;
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}
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size_t GarlicRoutingSession::CreateGarlicPayload (uint8_t * payload, const I2NPMessage * msg, const I2NPMessage * leaseSet)
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{
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uint64_t ts = i2p::util::GetMillisecondsSinceEpoch () + 5000; // 5 sec
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uint32_t msgID = m_Rnd.GenerateWord32 ();
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size_t size = 0;
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uint8_t * numCloves = payload + size;
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*numCloves = 0;
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size++;
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if (m_NextTag < 0) // new session
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{
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// clove is DeliveryStatus
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size += CreateDeliveryStatusClove (payload + size, msgID);
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(*numCloves)++;
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m_FirstMsgID = msgID;
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}
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if (leaseSet)
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{
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// clove is our leaseSet if presented
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size += CreateGarlicClove (payload + size, leaseSet, false);
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(*numCloves)++;
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}
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if (msg) // clove message ifself if presented
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{
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size += CreateGarlicClove (payload + size, msg, m_Destination ? m_Destination->IsDestination () : false);
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(*numCloves)++;
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}
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memset (payload + size, 0, 3); // certificate of message
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size += 3;
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*(uint32_t *)(payload + size) = htobe32 (msgID); // MessageID
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size += 4;
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*(uint64_t *)(payload + size) = htobe64 (ts); // Expiration of message
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size += 8;
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return size;
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}
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size_t GarlicRoutingSession::CreateGarlicClove (uint8_t * buf, const I2NPMessage * msg, bool isDestination)
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{
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uint64_t ts = i2p::util::GetMillisecondsSinceEpoch () + 5000; // 5 sec
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size_t size = 0;
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if (isDestination && m_Destination)
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{
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buf[size] = eGarlicDeliveryTypeDestination << 5;// delivery instructions flag destination
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size++;
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memcpy (buf + size, m_Destination->GetIdentHash (), 32);
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size += 32;
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}
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else
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{
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buf[size] = 0;// delivery instructions flag local
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size++;
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}
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memcpy (buf + size, msg->GetBuffer (), msg->GetLength ());
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size += msg->GetLength ();
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*(uint32_t *)(buf + size) = htobe32 (m_Rnd.GenerateWord32 ()); // CloveID
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size += 4;
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*(uint64_t *)(buf + size) = htobe64 (ts); // Expiration of clove
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size += 8;
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memset (buf + size, 0, 3); // certificate of clove
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size += 3;
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return size;
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}
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size_t GarlicRoutingSession::CreateDeliveryStatusClove (uint8_t * buf, uint32_t msgID)
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{
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size_t size = 0;
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auto tunnel = i2p::tunnel::tunnels.GetNextInboundTunnel ();
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if (tunnel)
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{
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buf[size] = eGarlicDeliveryTypeTunnel << 5; // delivery instructions flag tunnel
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size++;
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// hash and tunnelID sequence is reversed for Garlic
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memcpy (buf + size, tunnel->GetNextIdentHash (), 32); // To Hash
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size += 32;
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*(uint32_t *)(buf + size) = htobe32 (tunnel->GetNextTunnelID ()); // tunnelID
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size += 4;
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}
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else
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{
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LogPrint ("No reply tunnels for garlic DeliveryStatus found");
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buf[size] = 0;// delivery instructions flag local
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size++;
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}
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I2NPMessage * msg = CreateDeliveryStatusMsg (msgID);
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memcpy (buf + size, msg->GetBuffer (), msg->GetLength ());
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size += msg->GetLength ();
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DeleteI2NPMessage (msg);
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uint64_t ts = i2p::util::GetMillisecondsSinceEpoch () + 5000; // 5 sec
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*(uint32_t *)(buf + size) = htobe32 (m_Rnd.GenerateWord32 ()); // CloveID
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size += 4;
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*(uint64_t *)(buf + size) = htobe64 (ts); // Expiration of clove
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size += 8;
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memset (buf + size, 0, 3); // certificate of clove
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size += 3;
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return size;
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}
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GarlicRouting routing;
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GarlicRouting::GarlicRouting (): m_IsRunning (false), m_Thread (nullptr)
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{
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}
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GarlicRouting::~GarlicRouting ()
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{
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for (auto it: m_Sessions)
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delete it.second;
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m_Sessions.clear ();
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// TODO: delete remaining session decryptions
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m_SessionTags.clear ();
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}
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void GarlicRouting::AddSessionKey (const uint8_t * key, const uint8_t * tag)
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{
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SessionDecryption * decryption = new SessionDecryption;
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decryption->SetKey (key);
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decryption->SetTagCount (1);
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m_SessionTags[SessionTag(tag)] = decryption;
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}
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I2NPMessage * GarlicRouting::WrapSingleMessage (const i2p::data::RoutingDestination& destination, I2NPMessage * msg)
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{
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auto it = m_Sessions.find (destination.GetIdentHash ());
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if (it != m_Sessions.end ())
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{
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delete it->second;
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m_Sessions.erase (it);
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}
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GarlicRoutingSession * session = new GarlicRoutingSession (&destination, 0); // not follow-on messages expected
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m_Sessions[destination.GetIdentHash ()] = session;
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return session->WrapSingleMessage (msg, nullptr);
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}
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I2NPMessage * GarlicRouting::WrapMessage (const i2p::data::RoutingDestination& destination,
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I2NPMessage * msg, I2NPMessage * leaseSet)
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{
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auto it = m_Sessions.find (destination.GetIdentHash ());
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GarlicRoutingSession * session = nullptr;
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if (it != m_Sessions.end ())
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session = it->second;
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if (!session)
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{
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session = new GarlicRoutingSession (&destination, 32);
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m_Sessions[destination.GetIdentHash ()] = session;
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}
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I2NPMessage * ret = session->WrapSingleMessage (msg, leaseSet);
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if (!session->GetNextTag ()) // tags have beed recreated
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m_CreatedSessions[session->GetFirstMsgID ()] = session;
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return ret;
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}
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void GarlicRouting::HandleGarlicMessage (I2NPMessage * msg)
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{
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if (msg) m_Queue.Put (msg);
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}
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void GarlicRouting::ProcessGarlicMessage (I2NPMessage * msg)
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{
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uint8_t * buf = msg->GetPayload ();
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uint32_t length = be32toh (*(uint32_t *)buf);
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buf += 4;
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auto it = m_SessionTags.find (SessionTag(buf));
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if (it != m_SessionTags.end ())
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{
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// existing session
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uint8_t iv[32]; // IV is first 16 bytes
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CryptoPP::SHA256().CalculateDigest(iv, buf, 32);
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it->second->SetIV (iv);
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it->second->Decrypt (buf + 32, length - 32, buf + 32);
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it->second->UseTag ();
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HandleAESBlock (buf + 32, length - 32, it->second);
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if (!it->second->GetTagCount ()) delete it->second; // all tags were used
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m_SessionTags.erase (it); // tag might be used only once
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}
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else
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{
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// new session
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i2p::tunnel::TunnelPool * pool = nullptr;
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if (msg->from)
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pool = msg->from->GetTunnelPool ();
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ElGamalBlock elGamal;
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if (i2p::crypto::ElGamalDecrypt (
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pool ? pool->GetEncryptionPrivateKey () : i2p::context.GetPrivateKey (),
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buf, (uint8_t *)&elGamal, true))
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{
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SessionDecryption * decryption = new SessionDecryption;
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decryption->SetKey (elGamal.sessionKey);
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uint8_t iv[32]; // IV is first 16 bytes
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CryptoPP::SHA256().CalculateDigest(iv, elGamal.preIV, 32);
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decryption->SetIV (iv);
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decryption->Decrypt(buf + 514, length - 514, buf + 514);
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HandleAESBlock (buf + 514, length - 514, decryption);
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}
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else
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LogPrint ("Failed to decrypt garlic");
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}
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DeleteI2NPMessage (msg);
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}
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void GarlicRouting::HandleAESBlock (uint8_t * buf, size_t len, SessionDecryption * decryption)
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{
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uint16_t tagCount = be16toh (*(uint16_t *)buf);
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buf += 2;
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if (tagCount > 0)
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{
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decryption->AddTagCount (tagCount);
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for (int i = 0; i < tagCount; i++)
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m_SessionTags[SessionTag(buf + i*32)] = decryption;
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}
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buf += tagCount*32;
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uint32_t payloadSize = be32toh (*(uint32_t *)buf);
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if (payloadSize > len)
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{
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LogPrint ("Unexpected payload size ", payloadSize);
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return;
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}
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buf += 4;
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uint8_t * payloadHash = buf;
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buf += 32;// payload hash.
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if (*buf) // session key?
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buf += 32; // new session key
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buf++; // flag
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// payload
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uint8_t hash[32];
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CryptoPP::SHA256().CalculateDigest(hash, buf, payloadSize);
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if (memcmp (hash, payloadHash, 32)) // payload hash doesn't match
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{
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LogPrint ("Wrong payload hash");
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return;
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}
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HandleGarlicPayload (buf, payloadSize);
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}
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void GarlicRouting::HandleGarlicPayload (uint8_t * buf, size_t len)
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{
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int numCloves = buf[0];
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LogPrint (numCloves," cloves");
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buf++;
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for (int i = 0; i < numCloves; i++)
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{
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// delivery instructions
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uint8_t flag = buf[0];
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buf++; // flag
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if (flag & 0x80) // encrypted?
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{
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// TODO: implement
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LogPrint ("Clove encrypted");
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buf += 32;
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}
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GarlicDeliveryType deliveryType = (GarlicDeliveryType)((flag >> 5) & 0x03);
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switch (deliveryType)
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{
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case eGarlicDeliveryTypeLocal:
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LogPrint ("Garlic type local");
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i2p::HandleI2NPMessage (CreateI2NPMessage (buf, GetI2NPMessageLength (buf)));
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break;
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case eGarlicDeliveryTypeDestination:
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{
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LogPrint ("Garlic type destination");
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i2p::data::IdentHash destination (buf);
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buf += 32;
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// we assume streaming protocol for destination
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// later on we should let destination decide
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I2NPHeader * header = (I2NPHeader *)buf;
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if (header->typeID == eI2NPData)
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i2p::stream::HandleDataMessage (destination, buf + sizeof (I2NPHeader), be16toh (header->size));
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else
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LogPrint ("Unexpected I2NP garlic message ", (int)header->typeID);
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break;
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}
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case eGarlicDeliveryTypeTunnel:
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{
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LogPrint ("Garlic type tunnel");
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// gwHash and gwTunnel sequence is reverted
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uint8_t * gwHash = buf;
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buf += 32;
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uint32_t gwTunnel = be32toh (*(uint32_t *)buf);
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buf += 4;
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auto tunnel = i2p::tunnel::tunnels.GetNextOutboundTunnel ();
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if (tunnel) // we have send it through an outbound tunnel
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{
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I2NPMessage * msg = CreateI2NPMessage (buf, GetI2NPMessageLength (buf));
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tunnel->SendTunnelDataMsg (gwHash, gwTunnel, msg);
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}
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else
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LogPrint ("No outbound tunnels available for garlic clove");
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break;
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}
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case eGarlicDeliveryTypeRouter:
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LogPrint ("Garlic type router not supported");
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buf += 32;
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break;
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default:
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LogPrint ("Unknow garlic delivery type ", (int)deliveryType);
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}
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buf += GetI2NPMessageLength (buf); // I2NP
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buf += 4; // CloveID
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buf += 8; // Date
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buf += 3; // Certificate
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}
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}
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void GarlicRouting::HandleDeliveryStatusMessage (uint8_t * buf, size_t len)
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{
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I2NPDeliveryStatusMsg * msg = (I2NPDeliveryStatusMsg *)buf;
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auto it = m_CreatedSessions.find (be32toh (msg->msgID));
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if (it != m_CreatedSessions.end ())
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{
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it->second->SetAcknowledged (true);
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m_CreatedSessions.erase (it);
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LogPrint ("Garlic message ", be32toh (msg->msgID), " acknowledged");
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}
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}
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void GarlicRouting::Start ()
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{
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m_IsRunning = true;
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m_Thread = new std::thread (std::bind (&GarlicRouting::Run, this));
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}
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void GarlicRouting::Stop ()
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{
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m_IsRunning = false;
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m_Queue.WakeUp ();
|
|
if (m_Thread)
|
|
{
|
|
m_Thread->join ();
|
|
delete m_Thread;
|
|
m_Thread = 0;
|
|
}
|
|
}
|
|
|
|
void GarlicRouting::Run ()
|
|
{
|
|
while (m_IsRunning)
|
|
{
|
|
try
|
|
{
|
|
I2NPMessage * msg = m_Queue.GetNext ();
|
|
if (msg)
|
|
ProcessGarlicMessage (msg);
|
|
}
|
|
catch (std::exception& ex)
|
|
{
|
|
LogPrint ("GarlicRouting: ", ex.what ());
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|