i2pd/libi2pd/LeaseSet.h

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/*
* Copyright (c) 2013-2021, The PurpleI2P Project
*
* This file is part of Purple i2pd project and licensed under BSD3
*
* See full license text in LICENSE file at top of project tree
*/
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#ifndef LEASE_SET_H__
#define LEASE_SET_H__
#include <inttypes.h>
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#include <string.h>
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#include <vector>
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#include <set>
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#include <memory>
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#include "Identity.h"
#include "Timestamp.h"
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#include "I2PEndian.h"
#include "Blinding.h"
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namespace i2p
{
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namespace tunnel
{
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class InboundTunnel;
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}
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namespace data
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{
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const int LEASE_ENDDATE_THRESHOLD = 51000; // in milliseconds
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struct Lease
{
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IdentHash tunnelGateway;
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uint32_t tunnelID;
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uint64_t endDate; // 0 means invalid
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bool isUpdated; // transient
/* return true if this lease expires within t millisecond + fudge factor */
bool ExpiresWithin( const uint64_t t, const uint64_t fudge = 1000 ) const {
auto expire = i2p::util::GetMillisecondsSinceEpoch ();
if(fudge) expire += rand() % fudge;
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if (endDate < expire) return true;
return (endDate - expire) < t;
}
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};
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struct LeaseCmp
{
bool operator() (std::shared_ptr<const Lease> l1, std::shared_ptr<const Lease> l2) const
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{
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if (l1->tunnelID != l2->tunnelID)
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return l1->tunnelID < l2->tunnelID;
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else
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return l1->tunnelGateway < l2->tunnelGateway;
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};
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};
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typedef std::function<bool(const Lease & l)> LeaseInspectFunc;
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const size_t MAX_LS_BUFFER_SIZE = 3072;
const size_t LEASE_SIZE = 44; // 32 + 4 + 8
const size_t LEASE2_SIZE = 40; // 32 + 4 + 4
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const uint8_t MAX_NUM_LEASES = 16;
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const uint8_t NETDB_STORE_TYPE_LEASESET = 1;
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class LeaseSet: public RoutingDestination
{
public:
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LeaseSet (const uint8_t * buf, size_t len, bool storeLeases = true);
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virtual ~LeaseSet () { delete[] m_EncryptionKey; delete[] m_Buffer; };
virtual void Update (const uint8_t * buf, size_t len, bool verifySignature = true);
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virtual bool IsNewer (const uint8_t * buf, size_t len) const;
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void PopulateLeases (); // from buffer
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const uint8_t * GetBuffer () const { return m_Buffer; };
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size_t GetBufferLen () const { return m_BufferLen; };
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bool IsValid () const { return m_IsValid; };
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const std::vector<std::shared_ptr<const Lease> > GetNonExpiredLeases (bool withThreshold = true) const;
const std::vector<std::shared_ptr<const Lease> > GetNonExpiredLeasesExcluding (LeaseInspectFunc exclude, bool withThreshold = true) const;
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bool HasExpiredLeases () const;
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bool IsExpired () const;
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bool IsEmpty () const { return m_Leases.empty (); };
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uint64_t GetExpirationTime () const { return m_ExpirationTime; };
bool ExpiresSoon(const uint64_t dlt=1000 * 5, const uint64_t fudge = 0) const ;
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bool operator== (const LeaseSet& other) const
{ return m_BufferLen == other.m_BufferLen && !memcmp (m_Buffer, other.m_Buffer, m_BufferLen); };
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virtual uint8_t GetStoreType () const { return NETDB_STORE_TYPE_LEASESET; };
virtual uint32_t GetPublishedTimestamp () const { return 0; }; // should be set for LeaseSet2 only
virtual std::shared_ptr<const i2p::crypto::Verifier> GetTransientVerifier () const { return nullptr; };
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virtual bool IsPublishedEncrypted () const { return false; };
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// implements RoutingDestination
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std::shared_ptr<const IdentityEx> GetIdentity () const { return m_Identity; };
void Encrypt (const uint8_t * data, uint8_t * encrypted) const;
bool IsDestination () const { return true; };
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protected:
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void UpdateLeasesBegin ();
void UpdateLeasesEnd ();
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void UpdateLease (const Lease& lease, uint64_t ts);
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// called from LeaseSet2
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LeaseSet (bool storeLeases);
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void SetBuffer (const uint8_t * buf, size_t len);
void SetBufferLen (size_t len);
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void SetIdentity (std::shared_ptr<const IdentityEx> identity) { m_Identity = identity; };
void SetExpirationTime (uint64_t t) { m_ExpirationTime = t; };
void SetIsValid (bool isValid) { m_IsValid = isValid; };
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bool IsStoreLeases () const { return m_StoreLeases; };
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private:
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void ReadFromBuffer (bool readIdentity = true, bool verifySignature = true);
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virtual uint64_t ExtractExpirationTimestamp (const uint8_t * buf, size_t len) const; // returns max expiration time
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private:
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bool m_IsValid, m_StoreLeases; // we don't need to store leases for floodfill
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std::set<std::shared_ptr<Lease>, LeaseCmp> m_Leases;
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uint64_t m_ExpirationTime; // in milliseconds
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std::shared_ptr<const IdentityEx> m_Identity;
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uint8_t * m_EncryptionKey;
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uint8_t * m_Buffer;
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size_t m_BufferLen;
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};
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/**
validate lease set buffer signature and extract expiration timestamp
@returns true if the leaseset is well formed and signature is valid
*/
bool LeaseSetBufferValidate(const uint8_t * ptr, size_t sz, uint64_t & expires);
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const uint8_t NETDB_STORE_TYPE_STANDARD_LEASESET2 = 3;
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const uint8_t NETDB_STORE_TYPE_ENCRYPTED_LEASESET2 = 5;
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const uint8_t NETDB_STORE_TYPE_META_LEASESET2 = 7;
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const uint16_t LEASESET2_FLAG_OFFLINE_KEYS = 0x0001;
const uint16_t LEASESET2_FLAG_UNPUBLISHED_LEASESET = 0x0002;
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const uint16_t LEASESET2_FLAG_PUBLISHED_ENCRYPTED = 0x0004;
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class LeaseSet2: public LeaseSet
{
public:
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LeaseSet2 (uint8_t storeType, const uint8_t * buf, size_t len, bool storeLeases = true, CryptoKeyType preferredCrypto = CRYPTO_KEY_TYPE_ELGAMAL);
LeaseSet2 (const uint8_t * buf, size_t len, std::shared_ptr<const BlindedPublicKey> key, const uint8_t * secret = nullptr, CryptoKeyType preferredCrypto = CRYPTO_KEY_TYPE_ELGAMAL); // store type 5, called from local netdb only
uint8_t GetStoreType () const { return m_StoreType; };
uint32_t GetPublishedTimestamp () const { return m_PublishedTimestamp; };
bool IsPublic () const { return m_IsPublic; };
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bool IsPublishedEncrypted () const { return m_IsPublishedEncrypted; };
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std::shared_ptr<const i2p::crypto::Verifier> GetTransientVerifier () const { return m_TransientVerifier; };
void Update (const uint8_t * buf, size_t len, bool verifySignature);
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bool IsNewer (const uint8_t * buf, size_t len) const;
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// implements RoutingDestination
void Encrypt (const uint8_t * data, uint8_t * encrypted) const;
CryptoKeyType GetEncryptionType () const { return m_EncryptionType; };
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private:
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void ReadFromBuffer (const uint8_t * buf, size_t len, bool readIdentity = true, bool verifySignature = true);
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void ReadFromBufferEncrypted (const uint8_t * buf, size_t len, std::shared_ptr<const BlindedPublicKey> key, const uint8_t * secret);
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size_t ReadStandardLS2TypeSpecificPart (const uint8_t * buf, size_t len);
size_t ReadMetaLS2TypeSpecificPart (const uint8_t * buf, size_t len);
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template<typename Verifier>
bool VerifySignature (Verifier& verifier, const uint8_t * buf, size_t len, size_t signatureOffset);
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uint64_t ExtractExpirationTimestamp (const uint8_t * buf, size_t len) const;
uint64_t ExtractPublishedTimestamp (const uint8_t * buf, size_t len, uint64_t& expiration) const;
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size_t ExtractClientAuthData (const uint8_t * buf, size_t len, const uint8_t * secret, const uint8_t * subcredential, uint8_t * authCookie) const; // subcredential is subcredential + timestamp, return length of autData without flag
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private:
uint8_t m_StoreType;
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uint32_t m_PublishedTimestamp = 0;
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bool m_IsPublic = true, m_IsPublishedEncrypted = false;
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std::shared_ptr<i2p::crypto::Verifier> m_TransientVerifier;
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CryptoKeyType m_EncryptionType;
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std::shared_ptr<i2p::crypto::CryptoKeyEncryptor> m_Encryptor; // for standardLS2
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};
// also called from Streaming.cpp
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template<typename Verifier>
std::shared_ptr<i2p::crypto::Verifier> ProcessOfflineSignature (const Verifier& verifier, const uint8_t * buf, size_t len, size_t& offset)
{
if (offset + 6 >= len) return nullptr;
const uint8_t * signedData = buf + offset;
uint32_t expiresTimestamp = bufbe32toh (buf + offset); offset += 4; // expires timestamp
if (expiresTimestamp < i2p::util::GetSecondsSinceEpoch ()) return nullptr;
uint16_t keyType = bufbe16toh (buf + offset); offset += 2;
std::shared_ptr<i2p::crypto::Verifier> transientVerifier (i2p::data::IdentityEx::CreateVerifier (keyType));
if (!transientVerifier) return nullptr;
auto keyLen = transientVerifier->GetPublicKeyLen ();
if (offset + keyLen >= len) return nullptr;
transientVerifier->SetPublicKey (buf + offset); offset += keyLen;
if (offset + verifier->GetSignatureLen () >= len) return nullptr;
if (!verifier->Verify (signedData, keyLen + 6, buf + offset)) return nullptr;
offset += verifier->GetSignatureLen ();
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return transientVerifier;
}
//------------------------------------------------------------------------------------
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class LocalLeaseSet
{
public:
LocalLeaseSet (std::shared_ptr<const IdentityEx> identity, const uint8_t * encryptionPublicKey, std::vector<std::shared_ptr<i2p::tunnel::InboundTunnel> > tunnels);
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LocalLeaseSet (std::shared_ptr<const IdentityEx> identity, const uint8_t * buf, size_t len);
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virtual ~LocalLeaseSet () { delete[] m_Buffer; };
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virtual uint8_t * GetBuffer () const { return m_Buffer; };
uint8_t * GetSignature () { return GetBuffer () + GetBufferLen () - GetSignatureLen (); };
virtual size_t GetBufferLen () const { return m_BufferLen; };
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size_t GetSignatureLen () const { return m_Identity->GetSignatureLen (); };
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uint8_t * GetLeases () { return m_Leases; };
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const IdentHash& GetIdentHash () const { return m_Identity->GetIdentHash (); };
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std::shared_ptr<const IdentityEx> GetIdentity () const { return m_Identity; };
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bool IsExpired () const;
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uint64_t GetExpirationTime () const { return m_ExpirationTime; };
void SetExpirationTime (uint64_t expirationTime) { m_ExpirationTime = expirationTime; };
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bool operator== (const LeaseSet& other) const
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{ return GetBufferLen () == other.GetBufferLen () && !memcmp (GetBuffer (), other.GetBuffer (), GetBufferLen ()); };
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virtual uint8_t GetStoreType () const { return NETDB_STORE_TYPE_LEASESET; };
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virtual const IdentHash& GetStoreHash () const { return GetIdentHash (); }; // differ from ident hash for encrypted LeaseSet2
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virtual std::shared_ptr<const LocalLeaseSet> GetInnerLeaseSet () const { return nullptr; }; // non-null for encrypted LeaseSet2
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private:
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uint64_t m_ExpirationTime; // in milliseconds
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std::shared_ptr<const IdentityEx> m_Identity;
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uint8_t * m_Buffer, * m_Leases;
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size_t m_BufferLen;
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};
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class LocalLeaseSet2: public LocalLeaseSet
{
public:
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struct KeySection
{
uint16_t keyType, keyLen;
const uint8_t * encryptionPublicKey;
};
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typedef std::vector<KeySection> KeySections;
LocalLeaseSet2 (uint8_t storeType, const i2p::data::PrivateKeys& keys,
const KeySections& encryptionKeys,
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const std::vector<std::shared_ptr<i2p::tunnel::InboundTunnel> >& tunnels,
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bool isPublic, bool isPublishedEncrypted = false);
LocalLeaseSet2 (uint8_t storeType, std::shared_ptr<const IdentityEx> identity, const uint8_t * buf, size_t len); // from I2CP
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virtual ~LocalLeaseSet2 () { delete[] m_Buffer; };
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uint8_t * GetBuffer () const { return m_Buffer + 1; };
size_t GetBufferLen () const { return m_BufferLen; };
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uint8_t GetStoreType () const { return m_Buffer[0]; };
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protected:
LocalLeaseSet2 (std::shared_ptr<const IdentityEx> identity): LocalLeaseSet (identity, nullptr, 0), m_Buffer (nullptr), m_BufferLen(0) {}; // called from LocalEncryptedLeaseSet2
protected:
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uint8_t * m_Buffer; // 1 byte store type + actual buffer
size_t m_BufferLen;
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};
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const int ENCRYPTED_LEASESET_AUTH_TYPE_NONE = 0;
const int ENCRYPTED_LEASESET_AUTH_TYPE_DH = 1;
const int ENCRYPTED_LEASESET_AUTH_TYPE_PSK = 2;
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typedef i2p::data::Tag<32> AuthPublicKey;
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class LocalEncryptedLeaseSet2: public LocalLeaseSet2
{
public:
LocalEncryptedLeaseSet2 (std::shared_ptr<const LocalLeaseSet2> ls, const i2p::data::PrivateKeys& keys, int authType = ENCRYPTED_LEASESET_AUTH_TYPE_NONE, std::shared_ptr<std::vector<AuthPublicKey> > authKeys = nullptr);
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LocalEncryptedLeaseSet2 (std::shared_ptr<const IdentityEx> identity, const uint8_t * buf, size_t len); // from I2CP
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const IdentHash& GetStoreHash () const { return m_StoreHash; };
std::shared_ptr<const LocalLeaseSet> GetInnerLeaseSet () const { return m_InnerLeaseSet; };
private:
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void CreateClientAuthData (const uint8_t * subcredential, int authType, std::shared_ptr<std::vector<AuthPublicKey> > authKeys, const uint8_t * authCookie, uint8_t * authData) const;
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private:
IdentHash m_StoreHash;
std::shared_ptr<const LocalLeaseSet2> m_InnerLeaseSet;
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};
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}
}
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#endif