mirror of
https://github.com/PurpleI2P/i2pd.git
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4cc3b7f9fb
libi2pd for core libs libi2pd_client for i2pd client libs daemon for i2pd daemon libs
253 lines
6.2 KiB
C++
253 lines
6.2 KiB
C++
#ifndef TUNNEL_CONFIG_H__
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#define TUNNEL_CONFIG_H__
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#include <inttypes.h>
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#include <sstream>
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#include <vector>
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#include <memory>
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#include "Crypto.h"
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#include "Identity.h"
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#include "RouterContext.h"
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#include "Timestamp.h"
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namespace i2p
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{
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namespace tunnel
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{
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struct TunnelHopConfig
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{
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std::shared_ptr<const i2p::data::IdentityEx> ident;
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i2p::data::IdentHash nextIdent;
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uint32_t tunnelID, nextTunnelID;
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uint8_t layerKey[32];
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uint8_t ivKey[32];
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uint8_t replyKey[32];
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uint8_t replyIV[16];
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bool isGateway, isEndpoint;
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TunnelHopConfig * next, * prev;
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int recordIndex; // record # in tunnel build message
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TunnelHopConfig (std::shared_ptr<const i2p::data::IdentityEx> r)
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{
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RAND_bytes (layerKey, 32);
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RAND_bytes (ivKey, 32);
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RAND_bytes (replyKey, 32);
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RAND_bytes (replyIV, 16);
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RAND_bytes ((uint8_t *)&tunnelID, 4);
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isGateway = true;
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isEndpoint = true;
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ident = r;
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//nextRouter = nullptr;
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nextTunnelID = 0;
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next = nullptr;
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prev = nullptr;
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}
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void SetNextIdent (const i2p::data::IdentHash& ident)
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{
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nextIdent = ident;
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isEndpoint = false;
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RAND_bytes ((uint8_t *)&nextTunnelID, 4);
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}
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void SetReplyHop (uint32_t replyTunnelID, const i2p::data::IdentHash& replyIdent)
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{
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nextIdent = replyIdent;
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nextTunnelID = replyTunnelID;
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isEndpoint = true;
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}
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void SetNext (TunnelHopConfig * n)
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{
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next = n;
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if (next)
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{
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next->prev = this;
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next->isGateway = false;
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isEndpoint = false;
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nextIdent = next->ident->GetIdentHash ();
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nextTunnelID = next->tunnelID;
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}
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}
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void SetPrev (TunnelHopConfig * p)
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{
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prev = p;
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if (prev)
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{
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prev->next = this;
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prev->isEndpoint = false;
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isGateway = false;
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}
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}
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void CreateBuildRequestRecord (uint8_t * record, uint32_t replyMsgID, BN_CTX * ctx) const
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{
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uint8_t clearText[BUILD_REQUEST_RECORD_CLEAR_TEXT_SIZE];
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htobe32buf (clearText + BUILD_REQUEST_RECORD_RECEIVE_TUNNEL_OFFSET, tunnelID);
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memcpy (clearText + BUILD_REQUEST_RECORD_OUR_IDENT_OFFSET, ident->GetIdentHash (), 32);
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htobe32buf (clearText + BUILD_REQUEST_RECORD_NEXT_TUNNEL_OFFSET, nextTunnelID);
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memcpy (clearText + BUILD_REQUEST_RECORD_NEXT_IDENT_OFFSET, nextIdent, 32);
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memcpy (clearText + BUILD_REQUEST_RECORD_LAYER_KEY_OFFSET, layerKey, 32);
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memcpy (clearText + BUILD_REQUEST_RECORD_IV_KEY_OFFSET, ivKey, 32);
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memcpy (clearText + BUILD_REQUEST_RECORD_REPLY_KEY_OFFSET, replyKey, 32);
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memcpy (clearText + BUILD_REQUEST_RECORD_REPLY_IV_OFFSET, replyIV, 16);
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uint8_t flag = 0;
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if (isGateway) flag |= 0x80;
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if (isEndpoint) flag |= 0x40;
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clearText[BUILD_REQUEST_RECORD_FLAG_OFFSET] = flag;
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htobe32buf (clearText + BUILD_REQUEST_RECORD_REQUEST_TIME_OFFSET, i2p::util::GetHoursSinceEpoch ());
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htobe32buf (clearText + BUILD_REQUEST_RECORD_SEND_MSG_ID_OFFSET, replyMsgID);
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RAND_bytes (clearText + BUILD_REQUEST_RECORD_PADDING_OFFSET, BUILD_REQUEST_RECORD_CLEAR_TEXT_SIZE - BUILD_REQUEST_RECORD_PADDING_OFFSET);
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i2p::crypto::ElGamalEncrypt (ident->GetEncryptionPublicKey (), clearText, record + BUILD_REQUEST_RECORD_ENCRYPTED_OFFSET, ctx);
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memcpy (record + BUILD_REQUEST_RECORD_TO_PEER_OFFSET, (const uint8_t *)ident->GetIdentHash (), 16);
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}
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};
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class TunnelConfig
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{
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public:
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TunnelConfig (std::vector<std::shared_ptr<const i2p::data::IdentityEx> > peers) // inbound
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{
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CreatePeers (peers);
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m_LastHop->SetNextIdent (i2p::context.GetIdentHash ());
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}
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TunnelConfig (std::vector<std::shared_ptr<const i2p::data::IdentityEx> > peers,
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uint32_t replyTunnelID, const i2p::data::IdentHash& replyIdent) // outbound
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{
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CreatePeers (peers);
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m_FirstHop->isGateway = false;
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m_LastHop->SetReplyHop (replyTunnelID, replyIdent);
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}
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~TunnelConfig ()
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{
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TunnelHopConfig * hop = m_FirstHop;
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while (hop)
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{
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auto tmp = hop;
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hop = hop->next;
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delete tmp;
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}
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}
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TunnelHopConfig * GetFirstHop () const
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{
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return m_FirstHop;
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}
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TunnelHopConfig * GetLastHop () const
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{
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return m_LastHop;
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}
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int GetNumHops () const
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{
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int num = 0;
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TunnelHopConfig * hop = m_FirstHop;
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while (hop)
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{
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num++;
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hop = hop->next;
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}
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return num;
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}
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bool IsEmpty () const
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{
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return !m_FirstHop;
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}
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virtual bool IsInbound () const { return m_FirstHop->isGateway; }
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virtual uint32_t GetTunnelID () const
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{
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if (!m_FirstHop) return 0;
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return IsInbound () ? m_LastHop->nextTunnelID : m_FirstHop->tunnelID;
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}
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virtual uint32_t GetNextTunnelID () const
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{
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if (!m_FirstHop) return 0;
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return m_FirstHop->tunnelID;
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}
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virtual const i2p::data::IdentHash& GetNextIdentHash () const
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{
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return m_FirstHop->ident->GetIdentHash ();
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}
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virtual const i2p::data::IdentHash& GetLastIdentHash () const
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{
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return m_LastHop->ident->GetIdentHash ();
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}
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std::vector<std::shared_ptr<const i2p::data::IdentityEx> > GetPeers () const
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{
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std::vector<std::shared_ptr<const i2p::data::IdentityEx> > peers;
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TunnelHopConfig * hop = m_FirstHop;
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while (hop)
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{
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peers.push_back (hop->ident);
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hop = hop->next;
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}
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return peers;
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}
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protected:
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// this constructor can't be called from outside
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TunnelConfig (): m_FirstHop (nullptr), m_LastHop (nullptr)
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{
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}
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private:
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template<class Peers>
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void CreatePeers (const Peers& peers)
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{
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TunnelHopConfig * prev = nullptr;
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for (const auto& it: peers)
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{
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auto hop = new TunnelHopConfig (it);
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if (prev)
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prev->SetNext (hop);
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else
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m_FirstHop = hop;
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prev = hop;
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}
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m_LastHop = prev;
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}
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private:
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TunnelHopConfig * m_FirstHop, * m_LastHop;
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};
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class ZeroHopsTunnelConfig: public TunnelConfig
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{
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public:
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ZeroHopsTunnelConfig () { RAND_bytes ((uint8_t *)&m_TunnelID, 4);};
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bool IsInbound () const { return true; }; // TODO:
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uint32_t GetTunnelID () const { return m_TunnelID; };
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uint32_t GetNextTunnelID () const { return m_TunnelID; };
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const i2p::data::IdentHash& GetNextIdentHash () const { return i2p::context.GetIdentHash (); };
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const i2p::data::IdentHash& GetLastIdentHash () const { return i2p::context.GetIdentHash (); };
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private:
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uint32_t m_TunnelID;
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};
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}
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}
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#endif
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