fuzz coverage

Coverage Report

Created: 2025-10-29 15:27

/Users/eugenesiegel/btc/bitcoin/src/node/blockstorage.h
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// Copyright (c) 2011-2022 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_NODE_BLOCKSTORAGE_H
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#define BITCOIN_NODE_BLOCKSTORAGE_H
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#include <attributes.h>
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#include <chain.h>
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#include <dbwrapper.h>
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#include <flatfile.h>
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#include <kernel/blockmanager_opts.h>
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#include <kernel/chainparams.h>
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#include <kernel/cs_main.h>
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#include <kernel/messagestartchars.h>
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#include <primitives/block.h>
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#include <streams.h>
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#include <sync.h>
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#include <uint256.h>
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#include <util/fs.h>
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#include <util/hasher.h>
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#include <array>
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#include <atomic>
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#include <cstdint>
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#include <functional>
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#include <limits>
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#include <map>
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#include <memory>
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#include <optional>
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#include <set>
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#include <span>
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#include <string>
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#include <unordered_map>
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#include <utility>
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#include <vector>
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class BlockValidationState;
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class CBlockUndo;
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class Chainstate;
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class ChainstateManager;
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namespace Consensus {
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struct Params;
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}
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namespace util {
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class SignalInterrupt;
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} // namespace util
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namespace kernel {
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/** Access to the block database (blocks/index/) */
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class BlockTreeDB : public CDBWrapper
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{
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public:
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    using CDBWrapper::CDBWrapper;
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    bool WriteBatchSync(const std::vector<std::pair<int, const CBlockFileInfo*>>& fileInfo, int nLastFile, const std::vector<const CBlockIndex*>& blockinfo);
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    bool ReadBlockFileInfo(int nFile, CBlockFileInfo& info);
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    bool ReadLastBlockFile(int& nFile);
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    bool WriteReindexing(bool fReindexing);
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    void ReadReindexing(bool& fReindexing);
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    bool WriteFlag(const std::string& name, bool fValue);
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    bool ReadFlag(const std::string& name, bool& fValue);
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    bool LoadBlockIndexGuts(const Consensus::Params& consensusParams, std::function<CBlockIndex*(const uint256&)> insertBlockIndex, const util::SignalInterrupt& interrupt)
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        EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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};
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} // namespace kernel
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namespace node {
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using kernel::BlockTreeDB;
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/** The pre-allocation chunk size for blk?????.dat files (since 0.8) */
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static const unsigned int BLOCKFILE_CHUNK_SIZE = 0x1000000; // 16 MiB
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/** The pre-allocation chunk size for rev?????.dat files (since 0.8) */
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static const unsigned int UNDOFILE_CHUNK_SIZE = 0x100000; // 1 MiB
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/** The maximum size of a blk?????.dat file (since 0.8) */
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static const unsigned int MAX_BLOCKFILE_SIZE = 0x8000000; // 128 MiB
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/** Size of header written by WriteBlock before a serialized CBlock (8 bytes) */
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static constexpr uint32_t STORAGE_HEADER_BYTES{std::tuple_size_v<MessageStartChars> + sizeof(unsigned int)};
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/** Total overhead when writing undo data: header (8 bytes) plus checksum (32 bytes) */
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static constexpr uint32_t UNDO_DATA_DISK_OVERHEAD{STORAGE_HEADER_BYTES + uint256::size()};
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// Because validation code takes pointers to the map's CBlockIndex objects, if
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// we ever switch to another associative container, we need to either use a
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// container that has stable addressing (true of all std associative
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// containers), or make the key a `std::unique_ptr<CBlockIndex>`
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using BlockMap = std::unordered_map<uint256, CBlockIndex, BlockHasher>;
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struct CBlockIndexWorkComparator {
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    bool operator()(const CBlockIndex* pa, const CBlockIndex* pb) const;
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};
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struct CBlockIndexHeightOnlyComparator {
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    /* Only compares the height of two block indices, doesn't try to tie-break */
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    bool operator()(const CBlockIndex* pa, const CBlockIndex* pb) const;
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};
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struct CBlockIndexBlockHashComparator {
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    bool operator()(const CBlockIndex* pa, const CBlockIndex* pb) const;
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};
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struct PruneLockInfo {
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    int height_first{std::numeric_limits<int>::max()}; //! Height of earliest block that should be kept and not pruned
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};
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enum BlockfileType {
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    // Values used as array indexes - do not change carelessly.
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    NORMAL = 0,
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    ASSUMED = 1,
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    NUM_TYPES = 2,
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};
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std::ostream& operator<<(std::ostream& os, const BlockfileType& type);
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struct BlockfileCursor {
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    // The latest blockfile number.
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    int file_num{0};
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    // Track the height of the highest block in file_num whose undo
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    // data has been written. Block data is written to block files in download
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    // order, but is written to undo files in validation order, which is
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    // usually in order by height. To avoid wasting disk space, undo files will
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    // be trimmed whenever the corresponding block file is finalized and
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    // the height of the highest block written to the block file equals the
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    // height of the highest block written to the undo file. This is a
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    // heuristic and can sometimes preemptively trim undo files that will write
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    // more data later, and sometimes fail to trim undo files that can't have
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    // more data written later.
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    int undo_height{0};
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};
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std::ostream& operator<<(std::ostream& os, const BlockfileCursor& cursor);
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/**
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 * Maintains a tree of blocks (stored in `m_block_index`) which is consulted
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 * to determine where the most-work tip is.
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 *
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 * This data is used mostly in `Chainstate` - information about, e.g.,
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 * candidate tips is not maintained here.
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 */
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class BlockManager
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{
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    friend Chainstate;
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    friend ChainstateManager;
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private:
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    const CChainParams& GetParams() const { return m_opts.chainparams; }
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    const Consensus::Params& GetConsensus() const { return m_opts.chainparams.GetConsensus(); }
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    /**
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     * Load the blocktree off disk and into memory. Populate certain metadata
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     * per index entry (nStatus, nChainWork, nTimeMax, etc.) as well as peripheral
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     * collections like m_dirty_blockindex.
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     */
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    bool LoadBlockIndex(const std::optional<uint256>& snapshot_blockhash)
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        EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    /** Return false if block file or undo file flushing fails. */
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    [[nodiscard]] bool FlushBlockFile(int blockfile_num, bool fFinalize, bool finalize_undo);
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    /** Return false if undo file flushing fails. */
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    [[nodiscard]] bool FlushUndoFile(int block_file, bool finalize = false);
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    /**
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     * Helper function performing various preparations before a block can be saved to disk:
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     * Returns the correct position for the block to be saved, which may be in the current or a new
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     * block file depending on nAddSize. May flush the previous blockfile to disk if full, updates
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     * blockfile info, and checks if there is enough disk space to save the block.
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     *
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     * The nAddSize argument passed to this function should include not just the size of the serialized CBlock, but also the size of
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     * separator fields (STORAGE_HEADER_BYTES).
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     */
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    [[nodiscard]] FlatFilePos FindNextBlockPos(unsigned int nAddSize, unsigned int nHeight, uint64_t nTime);
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    [[nodiscard]] bool FlushChainstateBlockFile(int tip_height);
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    bool FindUndoPos(BlockValidationState& state, int nFile, FlatFilePos& pos, unsigned int nAddSize);
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    AutoFile OpenUndoFile(const FlatFilePos& pos, bool fReadOnly = false) const;
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    /* Calculate the block/rev files to delete based on height specified by user with RPC command pruneblockchain */
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    void FindFilesToPruneManual(
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        std::set<int>& setFilesToPrune,
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        int nManualPruneHeight,
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        const Chainstate& chain,
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        ChainstateManager& chainman);
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    /**
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     * Prune block and undo files (blk???.dat and rev???.dat) so that the disk space used is less than a user-defined target.
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     * The user sets the target (in MB) on the command line or in config file.  This will be run on startup and whenever new
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     * space is allocated in a block or undo file, staying below the target. Changing back to unpruned requires a reindex
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     * (which in this case means the blockchain must be re-downloaded.)
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     *
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     * Pruning functions are called from FlushStateToDisk when the m_check_for_pruning flag has been set.
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     * Block and undo files are deleted in lock-step (when blk00003.dat is deleted, so is rev00003.dat.)
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     * Pruning cannot take place until the longest chain is at least a certain length (CChainParams::nPruneAfterHeight).
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     * Pruning will never delete a block within a defined distance (currently 288) from the active chain's tip.
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     * The block index is updated by unsetting HAVE_DATA and HAVE_UNDO for any blocks that were stored in the deleted files.
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     * A db flag records the fact that at least some block files have been pruned.
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     *
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     * @param[out]   setFilesToPrune   The set of file indices that can be unlinked will be returned
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     * @param        last_prune        The last height we're able to prune, according to the prune locks
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     */
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    void FindFilesToPrune(
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        std::set<int>& setFilesToPrune,
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        int last_prune,
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        const Chainstate& chain,
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        ChainstateManager& chainman);
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    RecursiveMutex cs_LastBlockFile;
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    std::vector<CBlockFileInfo> m_blockfile_info;
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    //! Since assumedvalid chainstates may be syncing a range of the chain that is very
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    //! far away from the normal/background validation process, we should segment blockfiles
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    //! for assumed chainstates. Otherwise, we might have wildly different height ranges
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    //! mixed into the same block files, which would impair our ability to prune
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    //! effectively.
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    //!
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    //! This data structure maintains separate blockfile number cursors for each
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    //! BlockfileType. The ASSUMED state is initialized, when necessary, in FindNextBlockPos().
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    //!
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    //! The first element is the NORMAL cursor, second is ASSUMED.
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    std::array<std::optional<BlockfileCursor>, BlockfileType::NUM_TYPES>
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        m_blockfile_cursors GUARDED_BY(cs_LastBlockFile) = {
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            BlockfileCursor{},
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            std::nullopt,
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    };
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    int MaxBlockfileNum() const EXCLUSIVE_LOCKS_REQUIRED(cs_LastBlockFile)
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55.8k
    {
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        static const BlockfileCursor empty_cursor;
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        const auto& normal = m_blockfile_cursors[BlockfileType::NORMAL].value_or(empty_cursor);
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        const auto& assumed = m_blockfile_cursors[BlockfileType::ASSUMED].value_or(empty_cursor);
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        return std::max(normal.file_num, assumed.file_num);
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    }
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    /** Global flag to indicate we should check to see if there are
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     *  block/undo files that should be deleted.  Set on startup
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     *  or if we allocate more file space when we're in prune mode
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     */
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    bool m_check_for_pruning = false;
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    const bool m_prune_mode;
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    const Obfuscation m_obfuscation;
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    /** Dirty block index entries. */
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    std::set<CBlockIndex*, CBlockIndexBlockHashComparator> m_dirty_blockindex;
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    /** Dirty block file entries. */
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    std::set<int> m_dirty_fileinfo;
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    /**
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     * Map from external index name to oldest block that must not be pruned.
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     *
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     * @note Internally, only blocks at height (height_first - PRUNE_LOCK_BUFFER - 1) and
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     * below will be pruned, but callers should avoid assuming any particular buffer size.
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     */
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    std::unordered_map<std::string, PruneLockInfo> m_prune_locks GUARDED_BY(::cs_main);
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    BlockfileType BlockfileTypeForHeight(int height);
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    const kernel::BlockManagerOpts m_opts;
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    const FlatFileSeq m_block_file_seq;
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    const FlatFileSeq m_undo_file_seq;
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public:
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    using Options = kernel::BlockManagerOpts;
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    explicit BlockManager(const util::SignalInterrupt& interrupt, Options opts);
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    const util::SignalInterrupt& m_interrupt;
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    std::atomic<bool> m_importing{false};
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    /**
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     * Whether all blockfiles have been added to the block tree database.
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     * Normally true, but set to false when a reindex is requested and the
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     * database is wiped. The value is persisted in the database across restarts
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     * and will be false until reindexing completes.
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     */
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    std::atomic_bool m_blockfiles_indexed{true};
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    BlockMap m_block_index GUARDED_BY(cs_main);
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    /**
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     * The height of the base block of an assumeutxo snapshot, if one is in use.
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     *
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     * This controls how blockfiles are segmented by chainstate type to avoid
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     * comingling different height regions of the chain when an assumedvalid chainstate
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     * is in use. If heights are drastically different in the same blockfile, pruning
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     * suffers.
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     *
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     * This is set during ActivateSnapshot() or upon LoadBlockIndex() if a snapshot
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     * had been previously loaded. After the snapshot is validated, this is unset to
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     * restore normal LoadBlockIndex behavior.
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     */
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    std::optional<int> m_snapshot_height;
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    std::vector<CBlockIndex*> GetAllBlockIndices() EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /**
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     * All pairs A->B, where A (or one of its ancestors) misses transactions, but B has transactions.
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     * Pruned nodes may have entries where B is missing data.
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     */
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    std::multimap<CBlockIndex*, CBlockIndex*> m_blocks_unlinked;
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    std::unique_ptr<BlockTreeDB> m_block_tree_db GUARDED_BY(::cs_main);
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    bool WriteBlockIndexDB() EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    bool LoadBlockIndexDB(const std::optional<uint256>& snapshot_blockhash)
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        EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /**
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     * Remove any pruned block & undo files that are still on disk.
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     * This could happen on some systems if the file was still being read while unlinked,
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     * or if we crash before unlinking.
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     */
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    void ScanAndUnlinkAlreadyPrunedFiles() EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    CBlockIndex* AddToBlockIndex(const CBlockHeader& block, CBlockIndex*& best_header) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    /** Create a new block index entry for a given block hash */
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    CBlockIndex* InsertBlockIndex(const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    //! Mark one block file as pruned (modify associated database entries)
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    void PruneOneBlockFile(const int fileNumber) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    CBlockIndex* LookupBlockIndex(const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    const CBlockIndex* LookupBlockIndex(const uint256& hash) const EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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    /** Get block file info entry for one block file */
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    CBlockFileInfo* GetBlockFileInfo(size_t n);
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    bool WriteBlockUndo(const CBlockUndo& blockundo, BlockValidationState& state, CBlockIndex& block)
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        EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /** Store block on disk and update block file statistics.
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     *
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     * @param[in]  block        the block to be stored
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     * @param[in]  nHeight      the height of the block
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     *
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     * @returns in case of success, the position to which the block was written to
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     *          in case of an error, an empty FlatFilePos
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     */
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    FlatFilePos WriteBlock(const CBlock& block, int nHeight);
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    /** Update blockfile info while processing a block during reindex. The block must be available on disk.
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     *
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     * @param[in]  block        the block being processed
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     * @param[in]  nHeight      the height of the block
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     * @param[in]  pos          the position of the serialized CBlock on disk
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     */
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    void UpdateBlockInfo(const CBlock& block, unsigned int nHeight, const FlatFilePos& pos);
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    /** Whether running in -prune mode. */
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1.14M
    [[nodiscard]] bool IsPruneMode() const { return m_prune_mode; }
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    /** Attempt to stay below this number of bytes of block files. */
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102k
    [[nodiscard]] uint64_t GetPruneTarget() const { return m_opts.prune_target; }
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    static constexpr auto PRUNE_TARGET_MANUAL{std::numeric_limits<uint64_t>::max()};
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3.65M
    [[nodiscard]] bool LoadingBlocks() const { return m_importing || !m_blockfiles_indexed; }
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    /** Calculate the amount of disk space the block & undo files currently use */
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    uint64_t CalculateCurrentUsage();
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    //! Check if all blocks in the [upper_block, lower_block] range have data available.
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    //! The caller is responsible for ensuring that lower_block is an ancestor of upper_block
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    //! (part of the same chain).
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    bool CheckBlockDataAvailability(const CBlockIndex& upper_block LIFETIMEBOUND, const CBlockIndex& lower_block LIFETIMEBOUND) EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /**
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     * @brief Returns the earliest block with specified `status_mask` flags set after
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     * the latest block _not_ having those flags.
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     *
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     * This function starts from `upper_block`, which must have all
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     * `status_mask` flags set, and iterates backwards through its ancestors. It
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     * continues as long as each block has all `status_mask` flags set, until
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     * reaching the oldest ancestor or `lower_block`.
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     *
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     * @pre `upper_block` must have all `status_mask` flags set.
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     * @pre `lower_block` must be null or an ancestor of `upper_block`
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     *
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     * @param upper_block The starting block for the search, which must have all
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     *                    `status_mask` flags set.
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     * @param status_mask Bitmask specifying required status flags.
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     * @param lower_block The earliest possible block to return. If null, the
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     *                    search can extend to the genesis block.
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     *
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     * @return A non-null pointer to the earliest block between `upper_block`
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     *         and `lower_block`, inclusive, such that every block between the
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     *         returned block and `upper_block` has `status_mask` flags set.
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     */
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    const CBlockIndex* GetFirstBlock(
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        const CBlockIndex& upper_block LIFETIMEBOUND,
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        uint32_t status_mask,
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        const CBlockIndex* lower_block = nullptr
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    ) const EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /** True if any block files have ever been pruned. */
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    bool m_have_pruned = false;
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    //! Check whether the block associated with this index entry is pruned or not.
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    bool IsBlockPruned(const CBlockIndex& block) const EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    //! Create or update a prune lock identified by its name
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    void UpdatePruneLock(const std::string& name, const PruneLockInfo& lock_info) EXCLUSIVE_LOCKS_REQUIRED(::cs_main);
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    /** Open a block file (blk?????.dat) */
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    AutoFile OpenBlockFile(const FlatFilePos& pos, bool fReadOnly) const;
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    /** Translation to a filesystem path */
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    fs::path GetBlockPosFilename(const FlatFilePos& pos) const;
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412
    /**
413
     *  Actually unlink the specified files
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     */
415
    void UnlinkPrunedFiles(const std::set<int>& setFilesToPrune) const;
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    /** Functions for disk access for blocks */
418
    bool ReadBlock(CBlock& block, const FlatFilePos& pos, const std::optional<uint256>& expected_hash) const;
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    bool ReadBlock(CBlock& block, const CBlockIndex& index) const;
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    bool ReadRawBlock(std::vector<std::byte>& block, const FlatFilePos& pos) const;
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    bool ReadBlockUndo(CBlockUndo& blockundo, const CBlockIndex& index) const;
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    void CleanupBlockRevFiles() const;
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};
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// Calls ActivateBestChain() even if no blocks are imported.
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void ImportBlocks(ChainstateManager& chainman, std::span<const fs::path> import_paths);
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} // namespace node
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#endif // BITCOIN_NODE_BLOCKSTORAGE_H