mirror of
https://github.com/zerotier/ZeroTierOne.git
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246 lines
8.2 KiB
C++
246 lines
8.2 KiB
C++
/*
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* Copyright (c)2013-2020 ZeroTier, Inc.
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*
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* Use of this software is governed by the Business Source License included
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* in the LICENSE.TXT file in the project's root directory.
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*
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* Change Date: 2024-01-01
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*
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* On the date above, in accordance with the Business Source License, use
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* of this software will be governed by version 2.0 of the Apache License.
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*/
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/****/
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#ifndef ZT_MEMBERSHIP_HPP
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#define ZT_MEMBERSHIP_HPP
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#include <cstdint>
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#include "Constants.hpp"
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#include "Credential.hpp"
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#include "Hashtable.hpp"
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#include "CertificateOfMembership.hpp"
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#include "Capability.hpp"
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#include "Tag.hpp"
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#include "Revocation.hpp"
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#include "NetworkConfig.hpp"
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namespace ZeroTier {
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class RuntimeEnvironment;
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class Network;
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/**
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* A container for certificates of membership and other network credentials
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*
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* This is essentially a relational join between Peer and Network.
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*
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* This class is not thread safe. It must be locked externally.
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*/
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class Membership
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{
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public:
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enum AddCredentialResult
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{
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ADD_REJECTED,
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ADD_ACCEPTED_NEW,
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ADD_ACCEPTED_REDUNDANT,
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ADD_DEFERRED_FOR_WHOIS
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};
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Membership();
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~Membership();
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/**
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* Send COM and other credentials to this peer
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*
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* @param RR Runtime environment
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* @param tPtr Thread pointer to be handed through to any callbacks called as a result of this call
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* @param now Current time
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* @param to Peer identity
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* @param nconf My network config
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*/
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void pushCredentials(const RuntimeEnvironment *RR,void *tPtr,int64_t now,const Identity &to,const NetworkConfig &nconf);
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/**
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* @return Time we last pushed credentials to this member
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*/
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ZT_INLINE int64_t lastPushedCredentials() const noexcept { return _lastPushedCredentials; }
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/**
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* Check whether the peer represented by this Membership owns a given address
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*
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* @tparam Type of resource: InetAddress or MAC
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* @param nconf Our network config
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* @param r Resource to check
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* @return True if this peer has a certificate of ownership for the given resource
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*/
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template<typename T>
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ZT_INLINE bool peerOwnsAddress(const NetworkConfig &nconf,const T &r) const noexcept
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{
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if (_isUnspoofableAddress(nconf,r))
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return true;
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uint32_t *k = nullptr;
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CertificateOfOwnership *v = nullptr;
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Hashtable< uint32_t,CertificateOfOwnership >::Iterator i(*(const_cast< Hashtable< uint32_t,CertificateOfOwnership> *>(&_remoteCoos)));
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while (i.next(k,v)) {
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if (_isCredentialTimestampValid(nconf,*v)&&(v->owns(r)))
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return true;
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}
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return false;
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}
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/**
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* Get a remote member's tag (if we have it)
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*
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* @param nconf Network configuration
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* @param id Tag ID
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* @return Pointer to tag or NULL if not found
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*/
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ZT_INLINE const Tag *getTag(const NetworkConfig &nconf,const uint32_t id) const noexcept
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{
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const Tag *const t = _remoteTags.get(id);
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return (((t)&&(_isCredentialTimestampValid(nconf,*t))) ? t : (Tag *)0);
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}
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/**
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* Clean internal databases of stale entries
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*
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* @param now Current time
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* @param nconf Current network configuration
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*/
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void clean(int64_t now,const NetworkConfig &nconf);
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/**
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* Generates a key for internal use in indexing credentials by type and credential ID
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*/
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static ZT_INLINE uint64_t credentialKey(const ZT_CredentialType &t,const uint32_t i) noexcept { return (((uint64_t)t << 32U) | (uint64_t)i); }
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/**
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* Check if our local COM agrees with theirs, with possible memo-ization.
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*
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* @param localCom
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*/
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ZT_INLINE bool certificateOfMembershipAgress(const CertificateOfMembership &localCom,const Identity &remoteIdentity)
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{
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if ((_comAgreementLocalTimestamp == localCom.timestamp())&&(_comAgreementRemoteTimestamp == _com.timestamp()))
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return true;
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if (_com.agreesWith(localCom)) {
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// SECURITY: newer network controllers embed the full fingerprint into the COM. If we are
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// joined to a network managed by one of these, our COM will contain one. If it's present
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// we compare vs the other and require them to match. If our COM does not contain a full
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// identity fingerprint we compare by address only, which is a legacy mode supported for
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// old network controllers. Note that this is safe because the controller issues us our COM
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// and in so doing indicates if it's new or old. However this will go away after a while
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// once we can be pretty sure there are no ancient controllers around.
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if (localCom.issuedTo().haveHash()) {
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if (localCom.issuedTo() != _com.issuedTo())
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return false;
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} else {
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// LEGACY: support networks run by old controllers.
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if (localCom.issuedTo().address() != _com.issuedTo().address())
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return false;
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}
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// Remember that these two COMs agreed. If any are updated this is invalidated and a full
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// agreement check will be done again.
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_comAgreementLocalTimestamp = localCom.timestamp();
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_comAgreementRemoteTimestamp = _com.timestamp();
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return true;
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}
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return false;
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}
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AddCredentialResult addCredential(const RuntimeEnvironment *RR,void *tPtr,const Identity &sourcePeerIdentity,const NetworkConfig &nconf,const CertificateOfMembership &com);
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AddCredentialResult addCredential(const RuntimeEnvironment *RR,void *tPtr,const Identity &sourcePeerIdentity,const NetworkConfig &nconf,const Tag &tag);
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AddCredentialResult addCredential(const RuntimeEnvironment *RR,void *tPtr,const Identity &sourcePeerIdentity,const NetworkConfig &nconf,const Capability &cap);
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AddCredentialResult addCredential(const RuntimeEnvironment *RR,void *tPtr,const Identity &sourcePeerIdentity,const NetworkConfig &nconf,const CertificateOfOwnership &coo);
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AddCredentialResult addCredential(const RuntimeEnvironment *RR,void *tPtr,const Identity &sourcePeerIdentity,const NetworkConfig &nconf,const Revocation &rev);
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private:
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// This returns true if a resource is an IPv6 NDP-emulated address. These embed the ZT
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// address of the peer and therefore cannot be spoofed, causing peerOwnsAddress() to
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// always return true for them. A certificate is not required for these.
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ZT_INLINE bool _isUnspoofableAddress(const NetworkConfig &nconf,const MAC &m) const noexcept { return false; }
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bool _isUnspoofableAddress(const NetworkConfig &nconf,const InetAddress &ip) const noexcept;
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// This compares the remote credential's timestamp to the timestamp in our network config
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// plus or minus the permitted maximum timestamp delta.
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template<typename C>
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ZT_INLINE bool _isCredentialTimestampValid(const NetworkConfig &nconf,const C &remoteCredential) const noexcept
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{
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const int64_t ts = remoteCredential.timestamp();
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if (((ts >= nconf.timestamp) ? (ts - nconf.timestamp) : (nconf.timestamp - ts)) <= nconf.credentialTimeMaxDelta) {
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const int64_t *threshold = _revocations.get(credentialKey(C::credentialType(),remoteCredential.id()));
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return ((!threshold)||(ts > *threshold));
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}
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return false;
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}
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template<typename C>
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ZT_INLINE void _cleanCredImpl(const NetworkConfig &nconf,Hashtable<uint32_t,C> &remoteCreds)
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{
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uint32_t *k = nullptr;
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C *v = nullptr;
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typename Hashtable<uint32_t,C>::Iterator i(remoteCreds);
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while (i.next(k,v)) {
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if (!_isCredentialTimestampValid(nconf,*v))
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remoteCreds.erase(*k);
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}
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}
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// Revocation threshold for COM or 0 if none
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int64_t _comRevocationThreshold;
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// Time we last pushed credentials
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int64_t _lastPushedCredentials;
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// COM timestamps at which we last agreed-- used to memo-ize agreement and avoid having to recompute constantly.
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int64_t _comAgreementLocalTimestamp,_comAgreementRemoteTimestamp;
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// Remote member's latest network COM
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CertificateOfMembership _com;
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// Revocations by credentialKey()
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Hashtable< uint64_t,int64_t > _revocations;
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// Remote credentials that we have received from this member (and that are valid)
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Hashtable< uint32_t,Tag > _remoteTags;
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Hashtable< uint32_t,Capability > _remoteCaps;
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Hashtable< uint32_t,CertificateOfOwnership > _remoteCoos;
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public:
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class CapabilityIterator
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{
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public:
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ZT_INLINE CapabilityIterator(Membership &m,const NetworkConfig &nconf) noexcept :
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_hti(m._remoteCaps),
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_k(nullptr),
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_c(nullptr),
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_m(m),
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_nconf(nconf)
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{
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}
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ZT_INLINE Capability *next() noexcept
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{
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while (_hti.next(_k,_c)) {
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if (_m._isCredentialTimestampValid(_nconf,*_c))
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return _c;
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}
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return nullptr;
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}
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private:
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Hashtable< uint32_t,Capability >::Iterator _hti;
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uint32_t *_k;
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Capability *_c;
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Membership &_m;
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const NetworkConfig &_nconf;
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};
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};
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} // namespace ZeroTier
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#endif
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