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287 lines
13 KiB
C++
287 lines
13 KiB
C++
// Copyright (c) 2021-2022 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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#include <node/chainstate.h>
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#include <arith_uint256.h>
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#include <chain.h>
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#include <coins.h>
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#include <consensus/params.h>
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#include <logging.h>
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#include <node/blockstorage.h>
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#include <node/caches.h>
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#include <sync.h>
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#include <threadsafety.h>
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#include <tinyformat.h>
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#include <txdb.h>
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#include <uint256.h>
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#include <util/fs.h>
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#include <util/signalinterrupt.h>
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#include <util/time.h>
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#include <util/translation.h>
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#include <validation.h>
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#include <algorithm>
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#include <atomic>
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#include <cassert>
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#include <limits>
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#include <memory>
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#include <vector>
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namespace node {
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// Complete initialization of chainstates after the initial call has been made
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// to ChainstateManager::InitializeChainstate().
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static ChainstateLoadResult CompleteChainstateInitialization(
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ChainstateManager& chainman,
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const CacheSizes& cache_sizes,
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const ChainstateLoadOptions& options) EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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auto& pblocktree{chainman.m_blockman.m_block_tree_db};
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// new BlockTreeDB tries to delete the existing file, which
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// fails if it's still open from the previous loop. Close it first:
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pblocktree.reset();
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pblocktree = std::make_unique<BlockTreeDB>(DBParams{
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.path = chainman.m_options.datadir / "blocks" / "index",
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.cache_bytes = static_cast<size_t>(cache_sizes.block_tree_db),
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.memory_only = options.block_tree_db_in_memory,
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.wipe_data = options.reindex,
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.options = chainman.m_options.block_tree_db});
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if (options.reindex) {
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pblocktree->WriteReindexing(true);
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//If we're reindexing in prune mode, wipe away unusable block files and all undo data files
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if (options.prune) {
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chainman.m_blockman.CleanupBlockRevFiles();
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}
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}
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if (chainman.m_interrupt) return {ChainstateLoadStatus::INTERRUPTED, {}};
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// LoadBlockIndex will load m_have_pruned if we've ever removed a
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// block file from disk.
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// Note that it also sets fReindex global based on the disk flag!
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// From here on, fReindex and options.reindex values may be different!
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if (!chainman.LoadBlockIndex()) {
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if (chainman.m_interrupt) return {ChainstateLoadStatus::INTERRUPTED, {}};
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return {ChainstateLoadStatus::FAILURE, _("Error loading block database")};
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}
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if (!chainman.BlockIndex().empty() &&
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!chainman.m_blockman.LookupBlockIndex(chainman.GetConsensus().hashGenesisBlock)) {
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// If the loaded chain has a wrong genesis, bail out immediately
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// (we're likely using a testnet datadir, or the other way around).
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return {ChainstateLoadStatus::FAILURE_INCOMPATIBLE_DB, _("Incorrect or no genesis block found. Wrong datadir for network?")};
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}
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// Check for changed -prune state. What we are concerned about is a user who has pruned blocks
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// in the past, but is now trying to run unpruned.
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if (chainman.m_blockman.m_have_pruned && !options.prune) {
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return {ChainstateLoadStatus::FAILURE, _("You need to rebuild the database using -reindex to go back to unpruned mode. This will redownload the entire blockchain")};
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}
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// At this point blocktree args are consistent with what's on disk.
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// If we're not mid-reindex (based on disk + args), add a genesis block on disk
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// (otherwise we use the one already on disk).
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// This is called again in ImportBlocks after the reindex completes.
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if (!fReindex && !chainman.ActiveChainstate().LoadGenesisBlock()) {
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return {ChainstateLoadStatus::FAILURE, _("Error initializing block database")};
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}
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auto is_coinsview_empty = [&](Chainstate* chainstate) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
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return options.reindex || options.reindex_chainstate || chainstate->CoinsTip().GetBestBlock().IsNull();
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};
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assert(chainman.m_total_coinstip_cache > 0);
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assert(chainman.m_total_coinsdb_cache > 0);
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// Conservative value which is arbitrarily chosen, as it will ultimately be changed
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// by a call to `chainman.MaybeRebalanceCaches()`. We just need to make sure
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// that the sum of the two caches (40%) does not exceed the allowable amount
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// during this temporary initialization state.
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double init_cache_fraction = 0.2;
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// At this point we're either in reindex or we've loaded a useful
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// block tree into BlockIndex()!
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for (Chainstate* chainstate : chainman.GetAll()) {
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LogPrintf("Initializing chainstate %s\n", chainstate->ToString());
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chainstate->InitCoinsDB(
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/*cache_size_bytes=*/chainman.m_total_coinsdb_cache * init_cache_fraction,
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/*in_memory=*/options.coins_db_in_memory,
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/*should_wipe=*/options.reindex || options.reindex_chainstate);
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if (options.coins_error_cb) {
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chainstate->CoinsErrorCatcher().AddReadErrCallback(options.coins_error_cb);
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}
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// Refuse to load unsupported database format.
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// This is a no-op if we cleared the coinsviewdb with -reindex or -reindex-chainstate
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if (chainstate->CoinsDB().NeedsUpgrade()) {
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return {ChainstateLoadStatus::FAILURE_INCOMPATIBLE_DB, _("Unsupported chainstate database format found. "
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"Please restart with -reindex-chainstate. This will "
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"rebuild the chainstate database.")};
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}
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// ReplayBlocks is a no-op if we cleared the coinsviewdb with -reindex or -reindex-chainstate
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if (!chainstate->ReplayBlocks()) {
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return {ChainstateLoadStatus::FAILURE, _("Unable to replay blocks. You will need to rebuild the database using -reindex-chainstate.")};
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}
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// The on-disk coinsdb is now in a good state, create the cache
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chainstate->InitCoinsCache(chainman.m_total_coinstip_cache * init_cache_fraction);
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assert(chainstate->CanFlushToDisk());
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if (!is_coinsview_empty(chainstate)) {
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// LoadChainTip initializes the chain based on CoinsTip()'s best block
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if (!chainstate->LoadChainTip()) {
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return {ChainstateLoadStatus::FAILURE, _("Error initializing block database")};
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}
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assert(chainstate->m_chain.Tip() != nullptr);
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}
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}
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if (!options.reindex) {
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auto chainstates{chainman.GetAll()};
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if (std::any_of(chainstates.begin(), chainstates.end(),
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[](const Chainstate* cs) EXCLUSIVE_LOCKS_REQUIRED(cs_main) { return cs->NeedsRedownload(); })) {
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return {ChainstateLoadStatus::FAILURE, strprintf(_("Witness data for blocks after height %d requires validation. Please restart with -reindex."),
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chainman.GetConsensus().SegwitHeight)};
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};
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}
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// Now that chainstates are loaded and we're able to flush to
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// disk, rebalance the coins caches to desired levels based
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// on the condition of each chainstate.
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chainman.MaybeRebalanceCaches();
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return {ChainstateLoadStatus::SUCCESS, {}};
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}
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ChainstateLoadResult LoadChainstate(ChainstateManager& chainman, const CacheSizes& cache_sizes,
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const ChainstateLoadOptions& options)
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{
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if (!chainman.AssumedValidBlock().IsNull()) {
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LogPrintf("Assuming ancestors of block %s have valid signatures.\n", chainman.AssumedValidBlock().GetHex());
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} else {
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LogPrintf("Validating signatures for all blocks.\n");
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}
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LogPrintf("Setting nMinimumChainWork=%s\n", chainman.MinimumChainWork().GetHex());
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if (chainman.MinimumChainWork() < UintToArith256(chainman.GetConsensus().nMinimumChainWork)) {
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LogPrintf("Warning: nMinimumChainWork set below default value of %s\n", chainman.GetConsensus().nMinimumChainWork.GetHex());
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}
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if (chainman.m_blockman.GetPruneTarget() == BlockManager::PRUNE_TARGET_MANUAL) {
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LogPrintf("Block pruning enabled. Use RPC call pruneblockchain(height) to manually prune block and undo files.\n");
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} else if (chainman.m_blockman.GetPruneTarget()) {
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LogPrintf("Prune configured to target %u MiB on disk for block and undo files.\n", chainman.m_blockman.GetPruneTarget() / 1024 / 1024);
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}
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LOCK(cs_main);
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chainman.m_total_coinstip_cache = cache_sizes.coins;
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chainman.m_total_coinsdb_cache = cache_sizes.coins_db;
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// Load the fully validated chainstate.
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chainman.InitializeChainstate(options.mempool);
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// Load a chain created from a UTXO snapshot, if any exist.
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bool has_snapshot = chainman.DetectSnapshotChainstate();
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if (has_snapshot && (options.reindex || options.reindex_chainstate)) {
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LogPrintf("[snapshot] deleting snapshot chainstate due to reindexing\n");
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if (!chainman.DeleteSnapshotChainstate()) {
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return {ChainstateLoadStatus::FAILURE_FATAL, Untranslated("Couldn't remove snapshot chainstate.")};
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}
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}
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auto [init_status, init_error] = CompleteChainstateInitialization(chainman, cache_sizes, options);
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if (init_status != ChainstateLoadStatus::SUCCESS) {
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return {init_status, init_error};
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}
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// If a snapshot chainstate was fully validated by a background chainstate during
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// the last run, detect it here and clean up the now-unneeded background
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// chainstate.
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//
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// Why is this cleanup done here (on subsequent restart) and not just when the
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// snapshot is actually validated? Because this entails unusual
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// filesystem operations to move leveldb data directories around, and that seems
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// too risky to do in the middle of normal runtime.
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auto snapshot_completion = chainman.MaybeCompleteSnapshotValidation();
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if (snapshot_completion == SnapshotCompletionResult::SKIPPED) {
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// do nothing; expected case
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} else if (snapshot_completion == SnapshotCompletionResult::SUCCESS) {
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LogPrintf("[snapshot] cleaning up unneeded background chainstate, then reinitializing\n");
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if (!chainman.ValidatedSnapshotCleanup()) {
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return {ChainstateLoadStatus::FAILURE_FATAL, Untranslated("Background chainstate cleanup failed unexpectedly.")};
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}
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// Because ValidatedSnapshotCleanup() has torn down chainstates with
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// ChainstateManager::ResetChainstates(), reinitialize them here without
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// duplicating the blockindex work above.
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assert(chainman.GetAll().empty());
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assert(!chainman.IsSnapshotActive());
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assert(!chainman.IsSnapshotValidated());
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chainman.InitializeChainstate(options.mempool);
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// A reload of the block index is required to recompute setBlockIndexCandidates
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// for the fully validated chainstate.
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chainman.ActiveChainstate().ClearBlockIndexCandidates();
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auto [init_status, init_error] = CompleteChainstateInitialization(chainman, cache_sizes, options);
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if (init_status != ChainstateLoadStatus::SUCCESS) {
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return {init_status, init_error};
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}
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} else {
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return {ChainstateLoadStatus::FAILURE, _(
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"UTXO snapshot failed to validate. "
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"Restart to resume normal initial block download, or try loading a different snapshot.")};
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}
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return {ChainstateLoadStatus::SUCCESS, {}};
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}
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ChainstateLoadResult VerifyLoadedChainstate(ChainstateManager& chainman, const ChainstateLoadOptions& options)
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{
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auto is_coinsview_empty = [&](Chainstate* chainstate) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
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return options.reindex || options.reindex_chainstate || chainstate->CoinsTip().GetBestBlock().IsNull();
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};
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LOCK(cs_main);
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for (Chainstate* chainstate : chainman.GetAll()) {
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if (!is_coinsview_empty(chainstate)) {
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const CBlockIndex* tip = chainstate->m_chain.Tip();
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if (tip && tip->nTime > GetTime() + MAX_FUTURE_BLOCK_TIME) {
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return {ChainstateLoadStatus::FAILURE, _("The block database contains a block which appears to be from the future. "
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"This may be due to your computer's date and time being set incorrectly. "
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"Only rebuild the block database if you are sure that your computer's date and time are correct")};
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}
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VerifyDBResult result = CVerifyDB(chainman.GetNotifications()).VerifyDB(
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*chainstate, chainman.GetConsensus(), chainstate->CoinsDB(),
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options.check_level,
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options.check_blocks);
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switch (result) {
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case VerifyDBResult::SUCCESS:
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case VerifyDBResult::SKIPPED_MISSING_BLOCKS:
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break;
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case VerifyDBResult::INTERRUPTED:
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return {ChainstateLoadStatus::INTERRUPTED, _("Block verification was interrupted")};
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case VerifyDBResult::CORRUPTED_BLOCK_DB:
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return {ChainstateLoadStatus::FAILURE, _("Corrupted block database detected")};
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case VerifyDBResult::SKIPPED_L3_CHECKS:
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if (options.require_full_verification) {
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return {ChainstateLoadStatus::FAILURE_INSUFFICIENT_DBCACHE, _("Insufficient dbcache for block verification")};
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}
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break;
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} // no default case, so the compiler can warn about missing cases
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}
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}
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return {ChainstateLoadStatus::SUCCESS, {}};
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}
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} // namespace node
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