mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2025-04-26 08:57:26 +02:00
194 lines
5.8 KiB
C++
194 lines
5.8 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_TOPOLOGY_HPP
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#define ZT_TOPOLOGY_HPP
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#include "Constants.hpp"
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#include "Address.hpp"
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#include "Identity.hpp"
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#include "Peer.hpp"
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#include "Path.hpp"
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#include "Mutex.hpp"
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#include "InetAddress.hpp"
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#include "SharedPtr.hpp"
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#include "ScopedPtr.hpp"
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#include "Fingerprint.hpp"
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#include "Blob.hpp"
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#include "FCV.hpp"
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#include "Certificate.hpp"
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#include "Containers.hpp"
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namespace ZeroTier {
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class RuntimeEnvironment;
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/**
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* Database of network topology
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*/
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class Topology
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{
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public:
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Topology(const RuntimeEnvironment *renv, void *tPtr, int64_t now);
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/**
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* Add peer to database
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*
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* This will not replace existing peers. In that case the existing peer
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* record is returned.
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*
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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 peer Peer to add
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* @return New or existing peer (should replace 'peer')
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*/
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SharedPtr< Peer > add(void *tPtr, const SharedPtr< Peer > &peer);
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/**
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* Get a peer from its address
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*
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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 zta ZeroTier address of peer
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* @param loadFromCached If false do not load from cache if not in memory (default: true)
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* @return Peer or NULL if not found
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*/
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ZT_INLINE SharedPtr< Peer > peer(void *tPtr, const Address &zta, const bool loadFromCached = true)
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{
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{
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RWMutex::RLock l(m_peers_l);
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Map< Address, SharedPtr< Peer > >::const_iterator ap(m_peers.find(zta));
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if (likely(ap != m_peers.end()))
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return ap->second;
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}
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if (loadFromCached)
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return m_peerFromCached(tPtr, zta);
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return SharedPtr< Peer >();
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}
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/**
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* Get a Path object for a given local and remote physical address, creating if needed
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*
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* @param l Local socket
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* @param r Remote address
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* @return Pointer to canonicalized Path object or NULL on error
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*/
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ZT_INLINE SharedPtr< Path > path(const int64_t l, const InetAddress &r)
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{
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const UniqueID k(r.key());
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{
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RWMutex::RLock lck(m_paths_l);
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Map< UniqueID, SharedPtr< Path > >::const_iterator p(m_paths.find(k));
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if (likely(p != m_paths.end()))
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return p->second;
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}
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return m_newPath(l, r, k);
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}
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/**
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* @return Current best root (lowest latency active root)
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*/
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ZT_INLINE SharedPtr< Peer > root(const int64_t now)
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{
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RWMutex::RMaybeWLock l(m_roots_l);
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if (unlikely(m_roots.empty()))
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return SharedPtr< Peer >();
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if (unlikely((now - m_lastRankedRoots) > (ZT_PATH_KEEPALIVE_PERIOD / 2))) {
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l.writing();
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m_rankRoots(now);
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}
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return m_roots.front();
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}
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/**
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* @param allPeers vector to fill with all current peers
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*/
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void allPeers(Vector< SharedPtr< Peer > > &allPeers, Vector< SharedPtr< Peer > > &rootPeers) const;
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/**
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* Do periodic tasks such as database cleanup
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*
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* @param tPtr Thread pointer
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* @param now Current time
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*/
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void doPeriodicTasks(void *tPtr, int64_t now);
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/**
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* Save all currently known peers to data store
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*
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* @param tPtr Thread pointer
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*/
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void saveAll(void *tPtr);
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/**
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* Add a certificate to the local certificate store
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*
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* @param tPtr Thread pointer
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* @param cert Certificate to add (a copy will be made if added)
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* @param now Current time
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* @param localTrust Local trust bit flags
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* @param writeToLocalStore If true, write to local object store (via API callbacks)
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* @param refreshRootSets If true, refresh root sets in case a root set changed (default: true)
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* @param verify If true, verify certificate and certificate chain (default: true)
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* @return Error or 0 on success
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*/
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ZT_CertificateError addCertificate(void *tPtr, const Certificate &cert, const int64_t now, unsigned int localTrust, bool writeToLocalStore, bool refreshRootSets = true, bool verify = true);
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/**
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* Fill vectors with all certificates and their corresponding local trust flags
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*
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* @param c Certificate vector
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* @param t Local trust vector
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*/
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void allCerts(Vector< SharedPtr<const Certificate> > &c,Vector< unsigned int > &t) const noexcept;
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private:
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void m_rankRoots(int64_t now);
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void m_eraseCertificate(void *tPtr, const SharedPtr< const Certificate > &cert, const SHA384Hash *uniqueIdHash);
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bool m_cleanCertificates(void *tPtr, int64_t now);
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bool m_verifyCertificateChain(const Certificate *current, const int64_t now) const;
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ZT_CertificateError m_verifyCertificate(const Certificate &cert, const int64_t now, unsigned int localTrust, bool skipSignatureCheck) const;
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void m_loadCached(void *tPtr, const Address &zta, SharedPtr< Peer > &peer);
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SharedPtr< Peer > m_peerFromCached(void *tPtr, const Address &zta);
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SharedPtr< Path > m_newPath(const int64_t l, const InetAddress &r, const UniqueID &k);
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void m_updateRootPeers(void *tPtr, int64_t now);
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void m_writeTrustStore(void *tPtr);
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const RuntimeEnvironment *const RR;
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int64_t m_lastRankedRoots;
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Vector< SharedPtr< Peer > > m_roots;
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Map< Address, SharedPtr< Peer > > m_peers;
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Map< UniqueID, SharedPtr< Path > > m_paths;
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struct p_CertEntry
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{
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ZT_INLINE p_CertEntry() :
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certificate(),
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localTrust(0)
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{}
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SharedPtr< const Certificate > certificate;
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unsigned int localTrust;
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};
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Map< SHA384Hash, p_CertEntry > m_certs;
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Map< SHA384Hash, p_CertEntry > m_certsBySubjectUniqueID;
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Map< Fingerprint, Map< SharedPtr< const Certificate >, unsigned int > > m_certsBySubjectIdentity;
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RWMutex m_paths_l; // m_paths
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RWMutex m_peers_l; // m_peers
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RWMutex m_roots_l; // m_roots and m_lastRankedRoots
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Mutex m_certs_l; // m_certs and friends
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};
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} // namespace ZeroTier
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#endif
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