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fa4cb13b52030c2e55c6bea170649ab69d75f758 test: [doc] Manually unify stale headers (MarcoFalke)
fa5f29774872d18febc0df38831a6e45f3de69cc scripted-diff: [doc] Unify stale copyright headers (MarcoFalke)
Pull request description:
Historically, the upper year range in file headers was bumped manually
or with a script.
This has many issues:
* The script is causing churn. See for example commit 306ccd4, or
drive-by first-time contributions bumping them one-by-one. (A few from
this year: https://github.com/bitcoin/bitcoin/pull/32008,
https://github.com/bitcoin/bitcoin/pull/31642,
https://github.com/bitcoin/bitcoin/pull/32963, ...)
* Some, or likely most, upper year values were wrong. Reasons for
incorrect dates could be code moves, cherry-picks, or simply bugs in
the script.
* The upper range is not needed for anything.
* Anyone who wants to find the initial file creation date, or file
history, can use `git log` or `git blame` to get more accurate
results.
* Many places are already using the `-present` suffix, with the meaning
that the upper range is omitted.
To fix all issues, this bumps the upper range of the copyright headers
to `-present`.
Further notes:
* Obviously, the yearly 4-line bump commit for the build system (c.f.
b537a2c02a9921235d1ecf8c3c7dc1836ec68131) is fine and will remain.
* For new code, the date range can be fully omitted, as it is done
already by some developers. Obviously, developers are free to pick
whatever style they want. One can list the commits for each style.
* For example, to list all commits that use `-present`:
`git log --format='%an (%ae) [%h: %s]' -S 'present The Bitcoin'`.
* Alternatively, to list all commits that use no range at all:
`git log --format='%an (%ae) [%h: %s]' -S '(c) The Bitcoin'`.
<!--
* The lower range can be wrong as well, so it could be omitted as well,
but this is left for a follow-up. A previous attempt was in
https://github.com/bitcoin/bitcoin/pull/26817.
ACKs for top commit:
l0rinc:
ACK fa4cb13b52030c2e55c6bea170649ab69d75f758
rkrux:
re-ACK fa4cb13b52030c2e55c6bea170649ab69d75f758
janb84:
ACK fa4cb13b52030c2e55c6bea170649ab69d75f758
Tree-SHA512: e5132781bdc4417d1e2922809b27ef4cf0abb37ffb68c65aab8a5391d3c917b61a18928ec2ec2c75ef5184cb79a5b8c8290d63e949220dbeab3bd2c0dfbdc4c5
440 lines
16 KiB
C++
440 lines
16 KiB
C++
// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-present 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_CHAIN_H
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#define BITCOIN_CHAIN_H
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#include <arith_uint256.h>
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#include <consensus/params.h>
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#include <flatfile.h>
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#include <kernel/cs_main.h>
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#include <primitives/block.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 <util/time.h>
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#include <algorithm>
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#include <cassert>
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#include <cstdint>
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#include <string>
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#include <vector>
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/**
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* Maximum amount of time that a block timestamp is allowed to exceed the
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* current time before the block will be accepted.
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*/
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static constexpr int64_t MAX_FUTURE_BLOCK_TIME = 2 * 60 * 60;
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/**
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* Timestamp window used as a grace period by code that compares external
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* timestamps (such as timestamps passed to RPCs, or wallet key creation times)
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* to block timestamps. This should be set at least as high as
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* MAX_FUTURE_BLOCK_TIME.
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*/
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static constexpr int64_t TIMESTAMP_WINDOW = MAX_FUTURE_BLOCK_TIME;
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//! Init values for CBlockIndex nSequenceId when loaded from disk
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static constexpr int32_t SEQ_ID_BEST_CHAIN_FROM_DISK = 0;
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static constexpr int32_t SEQ_ID_INIT_FROM_DISK = 1;
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enum BlockStatus : uint32_t {
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//! Unused.
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BLOCK_VALID_UNKNOWN = 0,
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//! Reserved (was BLOCK_VALID_HEADER).
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BLOCK_VALID_RESERVED = 1,
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//! All parent headers found, difficulty matches, timestamp >= median previous. Implies all parents
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//! are also at least TREE.
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BLOCK_VALID_TREE = 2,
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/**
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* Only first tx is coinbase, 2 <= coinbase input script length <= 100, transactions valid, no duplicate txids,
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* sigops, size, merkle root. Implies all parents are at least TREE but not necessarily TRANSACTIONS.
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*
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* If a block's validity is at least VALID_TRANSACTIONS, CBlockIndex::nTx will be set. If a block and all previous
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* blocks back to the genesis block or an assumeutxo snapshot block are at least VALID_TRANSACTIONS,
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* CBlockIndex::m_chain_tx_count will be set.
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*/
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BLOCK_VALID_TRANSACTIONS = 3,
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//! Outputs do not overspend inputs, no double spends, coinbase output ok, no immature coinbase spends, BIP30.
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//! Implies all previous blocks back to the genesis block or an assumeutxo snapshot block are at least VALID_CHAIN.
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BLOCK_VALID_CHAIN = 4,
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//! Scripts & signatures ok. Implies all previous blocks back to the genesis block or an assumeutxo snapshot block
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//! are at least VALID_SCRIPTS.
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BLOCK_VALID_SCRIPTS = 5,
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//! All validity bits.
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BLOCK_VALID_MASK = BLOCK_VALID_RESERVED | BLOCK_VALID_TREE | BLOCK_VALID_TRANSACTIONS |
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BLOCK_VALID_CHAIN | BLOCK_VALID_SCRIPTS,
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BLOCK_HAVE_DATA = 8, //!< full block available in blk*.dat
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BLOCK_HAVE_UNDO = 16, //!< undo data available in rev*.dat
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BLOCK_HAVE_MASK = BLOCK_HAVE_DATA | BLOCK_HAVE_UNDO,
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BLOCK_FAILED_VALID = 32, //!< stage after last reached validness failed
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BLOCK_FAILED_CHILD = 64, //!< descends from failed block
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BLOCK_FAILED_MASK = BLOCK_FAILED_VALID | BLOCK_FAILED_CHILD,
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BLOCK_OPT_WITNESS = 128, //!< block data in blk*.dat was received with a witness-enforcing client
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BLOCK_STATUS_RESERVED = 256, //!< Unused flag that was previously set on assumeutxo snapshot blocks and their
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//!< ancestors before they were validated, and unset when they were validated.
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};
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/** The block chain is a tree shaped structure starting with the
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* genesis block at the root, with each block potentially having multiple
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* candidates to be the next block. A blockindex may have multiple pprev pointing
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* to it, but at most one of them can be part of the currently active branch.
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*/
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class CBlockIndex
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{
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public:
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//! pointer to the hash of the block, if any. Memory is owned by this CBlockIndex
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const uint256* phashBlock{nullptr};
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//! pointer to the index of the predecessor of this block
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CBlockIndex* pprev{nullptr};
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//! pointer to the index of some further predecessor of this block
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CBlockIndex* pskip{nullptr};
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//! height of the entry in the chain. The genesis block has height 0
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int nHeight{0};
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//! Which # file this block is stored in (blk?????.dat)
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int nFile GUARDED_BY(::cs_main){0};
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//! Byte offset within blk?????.dat where this block's data is stored
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unsigned int nDataPos GUARDED_BY(::cs_main){0};
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//! Byte offset within rev?????.dat where this block's undo data is stored
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unsigned int nUndoPos GUARDED_BY(::cs_main){0};
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//! (memory only) Total amount of work (expected number of hashes) in the chain up to and including this block
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arith_uint256 nChainWork{};
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//! Number of transactions in this block. This will be nonzero if the block
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//! reached the VALID_TRANSACTIONS level, and zero otherwise.
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//! Note: in a potential headers-first mode, this number cannot be relied upon
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unsigned int nTx{0};
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//! (memory only) Number of transactions in the chain up to and including this block.
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//! This value will be non-zero if this block and all previous blocks back
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//! to the genesis block or an assumeutxo snapshot block have reached the
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//! VALID_TRANSACTIONS level.
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uint64_t m_chain_tx_count{0};
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//! Verification status of this block. See enum BlockStatus
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//!
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//! Note: this value is modified to show BLOCK_OPT_WITNESS during UTXO snapshot
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//! load to avoid a spurious startup failure requiring -reindex.
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//! @sa NeedsRedownload
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//! @sa ActivateSnapshot
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uint32_t nStatus GUARDED_BY(::cs_main){0};
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//! block header
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int32_t nVersion{0};
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uint256 hashMerkleRoot{};
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uint32_t nTime{0};
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uint32_t nBits{0};
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uint32_t nNonce{0};
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//! (memory only) Sequential id assigned to distinguish order in which blocks are received.
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//! Initialized to SEQ_ID_INIT_FROM_DISK{1} when loading blocks from disk, except for blocks
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//! belonging to the best chain which overwrite it to SEQ_ID_BEST_CHAIN_FROM_DISK{0}.
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int32_t nSequenceId{SEQ_ID_INIT_FROM_DISK};
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//! (memory only) Maximum nTime in the chain up to and including this block.
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unsigned int nTimeMax{0};
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explicit CBlockIndex(const CBlockHeader& block)
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: nVersion{block.nVersion},
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hashMerkleRoot{block.hashMerkleRoot},
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nTime{block.nTime},
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nBits{block.nBits},
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nNonce{block.nNonce}
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{
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}
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FlatFilePos GetBlockPos() const EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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AssertLockHeld(::cs_main);
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FlatFilePos ret;
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if (nStatus & BLOCK_HAVE_DATA) {
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ret.nFile = nFile;
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ret.nPos = nDataPos;
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}
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return ret;
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}
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FlatFilePos GetUndoPos() const EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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AssertLockHeld(::cs_main);
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FlatFilePos ret;
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if (nStatus & BLOCK_HAVE_UNDO) {
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ret.nFile = nFile;
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ret.nPos = nUndoPos;
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}
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return ret;
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}
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CBlockHeader GetBlockHeader() const
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{
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CBlockHeader block;
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block.nVersion = nVersion;
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if (pprev)
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block.hashPrevBlock = pprev->GetBlockHash();
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block.hashMerkleRoot = hashMerkleRoot;
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block.nTime = nTime;
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block.nBits = nBits;
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block.nNonce = nNonce;
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return block;
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}
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uint256 GetBlockHash() const
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{
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assert(phashBlock != nullptr);
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return *phashBlock;
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}
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/**
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* Check whether this block and all previous blocks back to the genesis block or an assumeutxo snapshot block have
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* reached VALID_TRANSACTIONS and had transactions downloaded (and stored to disk) at some point.
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*
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* Does not imply the transactions are consensus-valid (ConnectTip might fail)
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* Does not imply the transactions are still stored on disk. (IsBlockPruned might return true)
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*
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* Note that this will be true for the snapshot base block, if one is loaded, since its m_chain_tx_count value will have
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* been set manually based on the related AssumeutxoData entry.
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*/
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bool HaveNumChainTxs() const { return m_chain_tx_count != 0; }
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NodeSeconds Time() const
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{
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return NodeSeconds{std::chrono::seconds{nTime}};
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}
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int64_t GetBlockTime() const
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{
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return (int64_t)nTime;
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}
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int64_t GetBlockTimeMax() const
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{
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return (int64_t)nTimeMax;
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}
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static constexpr int nMedianTimeSpan = 11;
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int64_t GetMedianTimePast() const
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{
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int64_t pmedian[nMedianTimeSpan];
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int64_t* pbegin = &pmedian[nMedianTimeSpan];
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int64_t* pend = &pmedian[nMedianTimeSpan];
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const CBlockIndex* pindex = this;
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for (int i = 0; i < nMedianTimeSpan && pindex; i++, pindex = pindex->pprev)
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*(--pbegin) = pindex->GetBlockTime();
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std::sort(pbegin, pend);
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return pbegin[(pend - pbegin) / 2];
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}
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std::string ToString() const;
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//! Check whether this block index entry is valid up to the passed validity level.
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bool IsValid(enum BlockStatus nUpTo) const
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EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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AssertLockHeld(::cs_main);
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assert(!(nUpTo & ~BLOCK_VALID_MASK)); // Only validity flags allowed.
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if (nStatus & BLOCK_FAILED_MASK)
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return false;
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return ((nStatus & BLOCK_VALID_MASK) >= nUpTo);
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}
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//! Raise the validity level of this block index entry.
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//! Returns true if the validity was changed.
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bool RaiseValidity(enum BlockStatus nUpTo) EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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AssertLockHeld(::cs_main);
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assert(!(nUpTo & ~BLOCK_VALID_MASK)); // Only validity flags allowed.
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if (nStatus & BLOCK_FAILED_MASK) return false;
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if ((nStatus & BLOCK_VALID_MASK) < nUpTo) {
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nStatus = (nStatus & ~BLOCK_VALID_MASK) | nUpTo;
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return true;
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}
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return false;
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}
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//! Build the skiplist pointer for this entry.
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void BuildSkip();
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//! Efficiently find an ancestor of this block.
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CBlockIndex* GetAncestor(int height);
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const CBlockIndex* GetAncestor(int height) const;
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CBlockIndex() = default;
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~CBlockIndex() = default;
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protected:
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//! CBlockIndex should not allow public copy construction because equality
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//! comparison via pointer is very common throughout the codebase, making
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//! use of copy a footgun. Also, use of copies do not have the benefit
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//! of simplifying lifetime considerations due to attributes like pprev and
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//! pskip, which are at risk of becoming dangling pointers in a copied
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//! instance.
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//!
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//! We declare these protected instead of simply deleting them so that
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//! CDiskBlockIndex can reuse copy construction.
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CBlockIndex(const CBlockIndex&) = default;
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CBlockIndex& operator=(const CBlockIndex&) = delete;
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CBlockIndex(CBlockIndex&&) = delete;
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CBlockIndex& operator=(CBlockIndex&&) = delete;
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};
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arith_uint256 GetBlockProof(const CBlockIndex& block);
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/** Return the time it would take to redo the work difference between from and to, assuming the current hashrate corresponds to the difficulty at tip, in seconds. */
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int64_t GetBlockProofEquivalentTime(const CBlockIndex& to, const CBlockIndex& from, const CBlockIndex& tip, const Consensus::Params&);
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/** Find the forking point between two chain tips. */
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const CBlockIndex* LastCommonAncestor(const CBlockIndex* pa, const CBlockIndex* pb);
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/** Used to marshal pointers into hashes for db storage. */
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class CDiskBlockIndex : public CBlockIndex
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{
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/** Historically CBlockLocator's version field has been written to disk
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* streams as the client version, but the value has never been used.
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*
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* Hard-code to the highest client version ever written.
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* SerParams can be used if the field requires any meaning in the future.
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**/
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static constexpr int DUMMY_VERSION = 259900;
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public:
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uint256 hashPrev;
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CDiskBlockIndex()
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{
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hashPrev = uint256();
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}
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explicit CDiskBlockIndex(const CBlockIndex* pindex) : CBlockIndex(*pindex)
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{
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hashPrev = (pprev ? pprev->GetBlockHash() : uint256());
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}
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SERIALIZE_METHODS(CDiskBlockIndex, obj)
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{
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LOCK(::cs_main);
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int _nVersion = DUMMY_VERSION;
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READWRITE(VARINT_MODE(_nVersion, VarIntMode::NONNEGATIVE_SIGNED));
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READWRITE(VARINT_MODE(obj.nHeight, VarIntMode::NONNEGATIVE_SIGNED));
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READWRITE(VARINT(obj.nStatus));
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READWRITE(VARINT(obj.nTx));
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if (obj.nStatus & (BLOCK_HAVE_DATA | BLOCK_HAVE_UNDO)) READWRITE(VARINT_MODE(obj.nFile, VarIntMode::NONNEGATIVE_SIGNED));
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if (obj.nStatus & BLOCK_HAVE_DATA) READWRITE(VARINT(obj.nDataPos));
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if (obj.nStatus & BLOCK_HAVE_UNDO) READWRITE(VARINT(obj.nUndoPos));
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// block header
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READWRITE(obj.nVersion);
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READWRITE(obj.hashPrev);
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READWRITE(obj.hashMerkleRoot);
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READWRITE(obj.nTime);
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READWRITE(obj.nBits);
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READWRITE(obj.nNonce);
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}
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uint256 ConstructBlockHash() const
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{
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CBlockHeader block;
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block.nVersion = nVersion;
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block.hashPrevBlock = hashPrev;
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block.hashMerkleRoot = hashMerkleRoot;
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block.nTime = nTime;
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block.nBits = nBits;
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block.nNonce = nNonce;
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return block.GetHash();
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}
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uint256 GetBlockHash() = delete;
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std::string ToString() = delete;
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};
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/** An in-memory indexed chain of blocks. */
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class CChain
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{
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private:
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std::vector<CBlockIndex*> vChain;
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public:
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CChain() = default;
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CChain(const CChain&) = delete;
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CChain& operator=(const CChain&) = delete;
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/** Returns the index entry for the genesis block of this chain, or nullptr if none. */
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CBlockIndex* Genesis() const
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{
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return vChain.size() > 0 ? vChain[0] : nullptr;
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}
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/** Returns the index entry for the tip of this chain, or nullptr if none. */
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CBlockIndex* Tip() const
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{
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return vChain.size() > 0 ? vChain[vChain.size() - 1] : nullptr;
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}
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/** Returns the index entry at a particular height in this chain, or nullptr if no such height exists. */
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CBlockIndex* operator[](int nHeight) const
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{
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if (nHeight < 0 || nHeight >= (int)vChain.size())
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return nullptr;
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return vChain[nHeight];
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}
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/** Efficiently check whether a block is present in this chain. */
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bool Contains(const CBlockIndex* pindex) const
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{
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return (*this)[pindex->nHeight] == pindex;
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}
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/** Find the successor of a block in this chain, or nullptr if the given index is not found or is the tip. */
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CBlockIndex* Next(const CBlockIndex* pindex) const
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{
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if (Contains(pindex))
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return (*this)[pindex->nHeight + 1];
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else
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return nullptr;
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}
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/** Return the maximal height in the chain. Is equal to chain.Tip() ? chain.Tip()->nHeight : -1. */
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int Height() const
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{
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return int(vChain.size()) - 1;
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}
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/** Set/initialize a chain with a given tip. */
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void SetTip(CBlockIndex& block);
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/** Find the last common block between this chain and a block index entry. */
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const CBlockIndex* FindFork(const CBlockIndex* pindex) const;
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/** Find the earliest block with timestamp equal or greater than the given time and height equal or greater than the given height. */
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CBlockIndex* FindEarliestAtLeast(int64_t nTime, int height) const;
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};
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/** Get a locator for a block index entry. */
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CBlockLocator GetLocator(const CBlockIndex* index);
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/** Construct a list of hash entries to put in a locator. */
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std::vector<uint256> LocatorEntries(const CBlockIndex* index);
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#endif // BITCOIN_CHAIN_H
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