2024-06-03 16:16:57 +02:00
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// Copyright (c) 2021 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#ifndef BITCOIN_ADDRMAN_IMPL_H
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#define BITCOIN_ADDRMAN_IMPL_H
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#include <logging.h>
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#include <netaddress.h>
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#include <protocol.h>
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#include <serialize.h>
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#include <sync.h>
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#include <uint256.h>
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#include <cstdint>
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#include <optional>
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#include <set>
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#include <unordered_map>
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#include <unordered_set>
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#include <utility>
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#include <vector>
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/** Total number of buckets for tried addresses */
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static constexpr int32_t ADDRMAN_TRIED_BUCKET_COUNT_LOG2{8};
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static constexpr int ADDRMAN_TRIED_BUCKET_COUNT{1 << ADDRMAN_TRIED_BUCKET_COUNT_LOG2};
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/** Total number of buckets for new addresses */
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static constexpr int32_t ADDRMAN_NEW_BUCKET_COUNT_LOG2{10};
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static constexpr int ADDRMAN_NEW_BUCKET_COUNT{1 << ADDRMAN_NEW_BUCKET_COUNT_LOG2};
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/** Maximum allowed number of entries in buckets for new and tried addresses */
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static constexpr int32_t ADDRMAN_BUCKET_SIZE_LOG2{6};
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static constexpr int ADDRMAN_BUCKET_SIZE{1 << ADDRMAN_BUCKET_SIZE_LOG2};
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/**
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* Extended statistics about a CAddress
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*/
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class AddrInfo : public CAddress
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{
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public:
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//! last try whatsoever by us (memory only)
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int64_t nLastTry{0};
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//! last counted attempt (memory only)
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int64_t nLastCountAttempt{0};
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//! where knowledge about this address first came from
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CNetAddr source;
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//! last successful connection by us
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int64_t nLastSuccess{0};
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//! connection attempts since last successful attempt
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int nAttempts{0};
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//! reference count in new sets (memory only)
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int nRefCount{0};
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//! in tried set? (memory only)
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bool fInTried{false};
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//! position in vRandom
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mutable int nRandomPos{-1};
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SERIALIZE_METHODS(AddrInfo, obj)
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{
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READWRITEAS(CAddress, obj);
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READWRITE(obj.source, obj.nLastSuccess, obj.nAttempts);
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}
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AddrInfo(const CAddress &addrIn, const CNetAddr &addrSource) : CAddress(addrIn), source(addrSource)
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{
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}
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AddrInfo() : CAddress(), source()
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{
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}
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//! Calculate in which "tried" bucket this entry belongs
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int GetTriedBucket(const uint256 &nKey, const std::vector<bool> &asmap) const;
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//! Calculate in which "new" bucket this entry belongs, given a certain source
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int GetNewBucket(const uint256 &nKey, const CNetAddr& src, const std::vector<bool> &asmap) const;
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//! Calculate in which "new" bucket this entry belongs, using its default source
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int GetNewBucket(const uint256 &nKey, const std::vector<bool> &asmap) const
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{
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return GetNewBucket(nKey, source, asmap);
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}
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//! Calculate in which position of a bucket to store this entry.
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int GetBucketPosition(const uint256 &nKey, bool fNew, int nBucket) const;
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//! Determine whether the statistics about this entry are bad enough so that it can just be deleted
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bool IsTerrible(int64_t nNow = GetAdjustedTime()) const;
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//! Calculate the relative chance this entry should be given when selecting nodes to connect to
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double GetChance(int64_t nNow = GetAdjustedTime()) const;
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};
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class AddrManImpl
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{
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public:
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AddrManImpl(std::vector<bool>&& asmap, bool deterministic, int32_t consistency_check_ratio, bool discriminate_ports);
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~AddrManImpl();
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template <typename Stream>
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void Serialize(Stream& s_) const EXCLUSIVE_LOCKS_REQUIRED(!cs);
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template <typename Stream>
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void Unserialize(Stream& s_) EXCLUSIVE_LOCKS_REQUIRED(!cs);
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size_t size() const EXCLUSIVE_LOCKS_REQUIRED(!cs);
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bool Add(const std::vector<CAddress>& vAddr, const CNetAddr& source, int64_t nTimePenalty)
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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void Good(const CService& addr, int64_t nTime)
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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void Attempt(const CService& addr, bool fCountFailure, int64_t nTime)
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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void ResolveCollisions() EXCLUSIVE_LOCKS_REQUIRED(!cs);
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std::pair<CAddress, int64_t> SelectTriedCollision() EXCLUSIVE_LOCKS_REQUIRED(!cs);
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std::pair<CAddress, int64_t> Select(bool newOnly) const
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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std::vector<CAddress> GetAddr(size_t max_addresses, size_t max_pct, std::optional<Network> network) const
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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void Connected(const CService& addr, int64_t nTime)
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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void SetServices(const CService& addr, ServiceFlags nServices)
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EXCLUSIVE_LOCKS_REQUIRED(!cs);
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AddrInfo GetAddressInfo(const CService& addr);
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const std::vector<bool>& GetAsmap() const;
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friend class AddrManTest;
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friend class AddrManDeterministic;
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private:
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//! A mutex to protect the inner data structures.
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mutable Mutex cs;
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//! Source of random numbers for randomization in inner loops
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mutable FastRandomContext insecure_rand GUARDED_BY(cs);
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//! secret key to randomize bucket select with
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uint256 nKey;
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//! Serialization versions.
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enum Format : uint8_t {
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V0_HISTORICAL = 0, //!< historic format, before commit e6b343d88
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V1_DETERMINISTIC = 1, //!< for pre-asmap files
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V2_ASMAP = 2, //!< for files including asmap version
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V3_BIP155 = 3, //!< same as V2_ASMAP plus addresses are in BIP155 format
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2024-06-01 21:33:25 +02:00
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V4_MULTIPORT = 4, //!< adds support for multiple ports per IP
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2024-06-03 16:16:57 +02:00
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};
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//! The maximum format this software knows it can unserialize. Also, we always serialize
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//! in this format.
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//! The format (first byte in the serialized stream) can be higher than this and
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//! still this software may be able to unserialize the file - if the second byte
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//! (see `lowest_compatible` in `Unserialize()`) is less or equal to this.
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2024-06-01 21:33:25 +02:00
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static constexpr Format FILE_FORMAT = Format::V4_MULTIPORT;
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//! The initial value of a field that is incremented every time an incompatible format
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//! change is made (such that old software versions would not be able to parse and
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//! understand the new file format). This is 32 because we overtook the "key size"
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//! field which was 32 historically.
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//! @note Don't increment this. Increment `lowest_compatible` in `Serialize()` instead.
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static constexpr uint8_t INCOMPATIBILITY_BASE = 32;
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//! last used nId
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int nIdCount GUARDED_BY(cs){0};
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//! table with information about all nIds
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std::unordered_map<int, AddrInfo> mapInfo GUARDED_BY(cs);
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2024-06-03 16:17:24 +02:00
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//! find an nId based on its network address and port.
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std::unordered_map<CService, int, CServiceHash> mapAddr GUARDED_BY(cs);
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//! randomly-ordered vector of all nIds
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//! This is mutable because it is unobservable outside the class, so any
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//! changes to it (even in const methods) are also unobservable.
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mutable std::vector<int> vRandom GUARDED_BY(cs);
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// number of "tried" entries
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int nTried GUARDED_BY(cs){0};
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//! list of "tried" buckets
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int vvTried[ADDRMAN_TRIED_BUCKET_COUNT][ADDRMAN_BUCKET_SIZE] GUARDED_BY(cs);
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//! number of (unique) "new" entries
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int nNew GUARDED_BY(cs){0};
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//! list of "new" buckets
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int vvNew[ADDRMAN_NEW_BUCKET_COUNT][ADDRMAN_BUCKET_SIZE] GUARDED_BY(cs);
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//! last time Good was called (memory only). Initially set to 1 so that "never" is strictly worse.
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int64_t nLastGood GUARDED_BY(cs){1};
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//! Holds addrs inserted into tried table that collide with existing entries. Test-before-evict discipline used to resolve these collisions.
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std::set<int> m_tried_collisions;
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/** Perform consistency checks every m_consistency_check_ratio operations (if non-zero). */
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const int32_t m_consistency_check_ratio;
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// Compressed IP->ASN mapping, loaded from a file when a node starts.
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// Should be always empty if no file was provided.
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// This mapping is then used for bucketing nodes in Addrman.
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//
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// If asmap is provided, nodes will be bucketed by
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// AS they belong to, in order to make impossible for a node
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// to connect to several nodes hosted in a single AS.
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// This is done in response to Erebus attack, but also to generally
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// diversify the connections every node creates,
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// especially useful when a large fraction of nodes
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// operate under a couple of cloud providers.
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//
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// If a new asmap was provided, the existing records
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// would be re-bucketed accordingly.
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const std::vector<bool> m_asmap;
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//! Discriminate entries based on port.
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bool m_discriminate_ports GUARDED_BY(cs);
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//! Find an entry.
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AddrInfo* Find(const CService& addr, int* pnId = nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Create a new entry and add it to the internal data structures mapInfo, mapAddr and vRandom.
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AddrInfo* Create(const CAddress& addr, const CNetAddr& addrSource, int* pnId = nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Swap two elements in vRandom.
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void SwapRandom(unsigned int nRandomPos1, unsigned int nRandomPos2) const EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Delete an entry. It must not be in tried, and have refcount 0.
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void Delete(int nId) EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Clear a position in a "new" table. This is the only place where entries are actually deleted.
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void ClearNew(int nUBucket, int nUBucketPos) EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Move an entry from the "new" table(s) to the "tried" table
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void MakeTried(AddrInfo& info, int nId) EXCLUSIVE_LOCKS_REQUIRED(cs);
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2021-10-28 13:46:26 +02:00
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/** Attempt to add a single address to addrman's new table.
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* @see AddrMan::Add() for parameters. */
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bool AddSingle(const CAddress& addr, const CNetAddr& source, int64_t nTimePenalty) EXCLUSIVE_LOCKS_REQUIRED(cs);
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2024-06-03 16:16:57 +02:00
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void Good_(const CService& addr, bool test_before_evict, int64_t time) EXCLUSIVE_LOCKS_REQUIRED(cs);
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2021-10-28 13:46:26 +02:00
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bool Add_(const std::vector<CAddress> &vAddr, const CNetAddr& source, int64_t nTimePenalty) EXCLUSIVE_LOCKS_REQUIRED(cs);
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void Attempt_(const CService& addr, bool fCountFailure, int64_t nTime) EXCLUSIVE_LOCKS_REQUIRED(cs);
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std::pair<CAddress, int64_t> Select_(bool newOnly) const EXCLUSIVE_LOCKS_REQUIRED(cs);
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std::vector<CAddress> GetAddr_(size_t max_addresses, size_t max_pct, std::optional<Network> network) const EXCLUSIVE_LOCKS_REQUIRED(cs);
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void Connected_(const CService& addr, int64_t nTime) EXCLUSIVE_LOCKS_REQUIRED(cs);
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void SetServices_(const CService& addr, ServiceFlags nServices) EXCLUSIVE_LOCKS_REQUIRED(cs);
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AddrInfo GetAddressInfo_(const CService& addr) EXCLUSIVE_LOCKS_REQUIRED(cs);
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void ResolveCollisions_() EXCLUSIVE_LOCKS_REQUIRED(cs);
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std::pair<CAddress, int64_t> SelectTriedCollision_() EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Consistency check, taking into account m_consistency_check_ratio. Will std::abort if an inconsistency is detected.
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void Check() const EXCLUSIVE_LOCKS_REQUIRED(cs);
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//! Perform consistency check, regardless of m_consistency_check_ratio.
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//! @returns an error code or zero.
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int ForceCheckAddrman() const EXCLUSIVE_LOCKS_REQUIRED(cs);
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};
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#endif // BITCOIN_ADDRMAN_IMPL_H
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