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fa0d9211ef
Passing this is confusing and redundant with the m_params member.
564 lines
20 KiB
C++
564 lines
20 KiB
C++
// Copyright (c) 2011-2021 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <node/blockstorage.h>
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#include <chain.h>
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#include <chainparams.h>
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#include <clientversion.h>
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#include <consensus/validation.h>
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#include <flatfile.h>
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#include <fs.h>
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#include <hash.h>
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#include <pow.h>
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#include <shutdown.h>
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#include <signet.h>
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#include <streams.h>
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#include <undo.h>
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#include <util/system.h>
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#include <validation.h>
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std::atomic_bool fImporting(false);
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std::atomic_bool fReindex(false);
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bool fHavePruned = false;
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bool fPruneMode = false;
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uint64_t nPruneTarget = 0;
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// TODO make namespace {
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RecursiveMutex cs_LastBlockFile;
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std::vector<CBlockFileInfo> vinfoBlockFile;
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int nLastBlockFile = 0;
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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 fCheckForPruning = false;
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/** Dirty block index entries. */
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std::set<CBlockIndex*> setDirtyBlockIndex;
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/** Dirty block file entries. */
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std::set<int> setDirtyFileInfo;
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// } // namespace
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static FILE* OpenUndoFile(const FlatFilePos& pos, bool fReadOnly = false);
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static FlatFileSeq BlockFileSeq();
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static FlatFileSeq UndoFileSeq();
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bool IsBlockPruned(const CBlockIndex* pblockindex)
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{
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return (fHavePruned && !(pblockindex->nStatus & BLOCK_HAVE_DATA) && pblockindex->nTx > 0);
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}
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// If we're using -prune with -reindex, then delete block files that will be ignored by the
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// reindex. Since reindexing works by starting at block file 0 and looping until a blockfile
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// is missing, do the same here to delete any later block files after a gap. Also delete all
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// rev files since they'll be rewritten by the reindex anyway. This ensures that vinfoBlockFile
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// is in sync with what's actually on disk by the time we start downloading, so that pruning
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// works correctly.
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void CleanupBlockRevFiles()
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{
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std::map<std::string, fs::path> mapBlockFiles;
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// Glob all blk?????.dat and rev?????.dat files from the blocks directory.
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// Remove the rev files immediately and insert the blk file paths into an
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// ordered map keyed by block file index.
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LogPrintf("Removing unusable blk?????.dat and rev?????.dat files for -reindex with -prune\n");
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fs::path blocksdir = gArgs.GetBlocksDirPath();
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for (fs::directory_iterator it(blocksdir); it != fs::directory_iterator(); it++) {
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if (fs::is_regular_file(*it) &&
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it->path().filename().string().length() == 12 &&
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it->path().filename().string().substr(8,4) == ".dat")
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{
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if (it->path().filename().string().substr(0, 3) == "blk") {
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mapBlockFiles[it->path().filename().string().substr(3, 5)] = it->path();
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} else if (it->path().filename().string().substr(0, 3) == "rev") {
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remove(it->path());
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}
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}
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}
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// Remove all block files that aren't part of a contiguous set starting at
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// zero by walking the ordered map (keys are block file indices) by
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// keeping a separate counter. Once we hit a gap (or if 0 doesn't exist)
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// start removing block files.
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int nContigCounter = 0;
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for (const std::pair<const std::string, fs::path>& item : mapBlockFiles) {
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if (atoi(item.first) == nContigCounter) {
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nContigCounter++;
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continue;
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}
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remove(item.second);
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}
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}
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std::string CBlockFileInfo::ToString() const
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{
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return strprintf("CBlockFileInfo(blocks=%u, size=%u, heights=%u...%u, time=%s...%s)", nBlocks, nSize, nHeightFirst, nHeightLast, FormatISO8601Date(nTimeFirst), FormatISO8601Date(nTimeLast));
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}
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CBlockFileInfo* GetBlockFileInfo(size_t n)
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{
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LOCK(cs_LastBlockFile);
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return &vinfoBlockFile.at(n);
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}
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static bool UndoWriteToDisk(const CBlockUndo& blockundo, FlatFilePos& pos, const uint256& hashBlock, const CMessageHeader::MessageStartChars& messageStart)
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{
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// Open history file to append
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CAutoFile fileout(OpenUndoFile(pos), SER_DISK, CLIENT_VERSION);
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if (fileout.IsNull()) {
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return error("%s: OpenUndoFile failed", __func__);
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}
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// Write index header
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unsigned int nSize = GetSerializeSize(blockundo, fileout.GetVersion());
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fileout << messageStart << nSize;
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// Write undo data
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long fileOutPos = ftell(fileout.Get());
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if (fileOutPos < 0) {
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return error("%s: ftell failed", __func__);
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}
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pos.nPos = (unsigned int)fileOutPos;
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fileout << blockundo;
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// calculate & write checksum
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CHashWriter hasher(SER_GETHASH, PROTOCOL_VERSION);
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hasher << hashBlock;
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hasher << blockundo;
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fileout << hasher.GetHash();
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return true;
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}
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bool UndoReadFromDisk(CBlockUndo& blockundo, const CBlockIndex* pindex)
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{
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FlatFilePos pos = pindex->GetUndoPos();
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if (pos.IsNull()) {
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return error("%s: no undo data available", __func__);
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}
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// Open history file to read
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CAutoFile filein(OpenUndoFile(pos, true), SER_DISK, CLIENT_VERSION);
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if (filein.IsNull()) {
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return error("%s: OpenUndoFile failed", __func__);
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}
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// Read block
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uint256 hashChecksum;
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CHashVerifier<CAutoFile> verifier(&filein); // We need a CHashVerifier as reserializing may lose data
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try {
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verifier << pindex->pprev->GetBlockHash();
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verifier >> blockundo;
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filein >> hashChecksum;
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} catch (const std::exception& e) {
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return error("%s: Deserialize or I/O error - %s", __func__, e.what());
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}
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// Verify checksum
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if (hashChecksum != verifier.GetHash()) {
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return error("%s: Checksum mismatch", __func__);
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}
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return true;
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}
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static void FlushUndoFile(int block_file, bool finalize = false)
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{
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FlatFilePos undo_pos_old(block_file, vinfoBlockFile[block_file].nUndoSize);
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if (!UndoFileSeq().Flush(undo_pos_old, finalize)) {
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AbortNode("Flushing undo file to disk failed. This is likely the result of an I/O error.");
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}
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}
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void FlushBlockFile(bool fFinalize = false, bool finalize_undo = false)
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{
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LOCK(cs_LastBlockFile);
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FlatFilePos block_pos_old(nLastBlockFile, vinfoBlockFile[nLastBlockFile].nSize);
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if (!BlockFileSeq().Flush(block_pos_old, fFinalize)) {
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AbortNode("Flushing block file to disk failed. This is likely the result of an I/O error.");
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}
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// we do not always flush the undo file, as the chain tip may be lagging behind the incoming blocks,
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// e.g. during IBD or a sync after a node going offline
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if (!fFinalize || finalize_undo) FlushUndoFile(nLastBlockFile, finalize_undo);
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}
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uint64_t CalculateCurrentUsage()
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{
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LOCK(cs_LastBlockFile);
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uint64_t retval = 0;
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for (const CBlockFileInfo& file : vinfoBlockFile) {
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retval += file.nSize + file.nUndoSize;
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}
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return retval;
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}
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void UnlinkPrunedFiles(const std::set<int>& setFilesToPrune)
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{
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for (std::set<int>::iterator it = setFilesToPrune.begin(); it != setFilesToPrune.end(); ++it) {
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FlatFilePos pos(*it, 0);
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fs::remove(BlockFileSeq().FileName(pos));
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fs::remove(UndoFileSeq().FileName(pos));
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LogPrintf("Prune: %s deleted blk/rev (%05u)\n", __func__, *it);
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}
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}
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static FlatFileSeq BlockFileSeq()
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{
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return FlatFileSeq(gArgs.GetBlocksDirPath(), "blk", gArgs.GetBoolArg("-fastprune", false) ? 0x4000 /* 16kb */ : BLOCKFILE_CHUNK_SIZE);
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}
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static FlatFileSeq UndoFileSeq()
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{
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return FlatFileSeq(gArgs.GetBlocksDirPath(), "rev", UNDOFILE_CHUNK_SIZE);
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}
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FILE* OpenBlockFile(const FlatFilePos& pos, bool fReadOnly)
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{
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return BlockFileSeq().Open(pos, fReadOnly);
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}
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/** Open an undo file (rev?????.dat) */
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static FILE* OpenUndoFile(const FlatFilePos& pos, bool fReadOnly)
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{
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return UndoFileSeq().Open(pos, fReadOnly);
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}
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fs::path GetBlockPosFilename(const FlatFilePos& pos)
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{
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return BlockFileSeq().FileName(pos);
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}
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bool FindBlockPos(FlatFilePos& pos, unsigned int nAddSize, unsigned int nHeight, CChain& active_chain, uint64_t nTime, bool fKnown = false)
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{
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LOCK(cs_LastBlockFile);
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unsigned int nFile = fKnown ? pos.nFile : nLastBlockFile;
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if (vinfoBlockFile.size() <= nFile) {
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vinfoBlockFile.resize(nFile + 1);
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}
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bool finalize_undo = false;
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if (!fKnown) {
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while (vinfoBlockFile[nFile].nSize + nAddSize >= (gArgs.GetBoolArg("-fastprune", false) ? 0x10000 /* 64kb */ : MAX_BLOCKFILE_SIZE)) {
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// when the undo file is keeping up with the block file, we want to flush it explicitly
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// when it is lagging behind (more blocks arrive than are being connected), we let the
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// undo block write case handle it
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finalize_undo = (vinfoBlockFile[nFile].nHeightLast == (unsigned int)active_chain.Tip()->nHeight);
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nFile++;
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if (vinfoBlockFile.size() <= nFile) {
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vinfoBlockFile.resize(nFile + 1);
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}
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}
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pos.nFile = nFile;
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pos.nPos = vinfoBlockFile[nFile].nSize;
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}
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if ((int)nFile != nLastBlockFile) {
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if (!fKnown) {
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LogPrint(BCLog::VALIDATION, "Leaving block file %i: %s\n", nLastBlockFile, vinfoBlockFile[nLastBlockFile].ToString());
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}
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FlushBlockFile(!fKnown, finalize_undo);
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nLastBlockFile = nFile;
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}
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vinfoBlockFile[nFile].AddBlock(nHeight, nTime);
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if (fKnown) {
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vinfoBlockFile[nFile].nSize = std::max(pos.nPos + nAddSize, vinfoBlockFile[nFile].nSize);
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} else {
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vinfoBlockFile[nFile].nSize += nAddSize;
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}
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if (!fKnown) {
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bool out_of_space;
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size_t bytes_allocated = BlockFileSeq().Allocate(pos, nAddSize, out_of_space);
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if (out_of_space) {
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return AbortNode("Disk space is too low!", _("Disk space is too low!"));
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}
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if (bytes_allocated != 0 && fPruneMode) {
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fCheckForPruning = true;
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}
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}
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setDirtyFileInfo.insert(nFile);
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return true;
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}
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static bool FindUndoPos(BlockValidationState& state, int nFile, FlatFilePos& pos, unsigned int nAddSize)
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{
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pos.nFile = nFile;
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LOCK(cs_LastBlockFile);
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pos.nPos = vinfoBlockFile[nFile].nUndoSize;
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vinfoBlockFile[nFile].nUndoSize += nAddSize;
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setDirtyFileInfo.insert(nFile);
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bool out_of_space;
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size_t bytes_allocated = UndoFileSeq().Allocate(pos, nAddSize, out_of_space);
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if (out_of_space) {
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return AbortNode(state, "Disk space is too low!", _("Disk space is too low!"));
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}
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if (bytes_allocated != 0 && fPruneMode) {
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fCheckForPruning = true;
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}
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return true;
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}
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static bool WriteBlockToDisk(const CBlock& block, FlatFilePos& pos, const CMessageHeader::MessageStartChars& messageStart)
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{
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// Open history file to append
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CAutoFile fileout(OpenBlockFile(pos), SER_DISK, CLIENT_VERSION);
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if (fileout.IsNull()) {
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return error("WriteBlockToDisk: OpenBlockFile failed");
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}
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// Write index header
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unsigned int nSize = GetSerializeSize(block, fileout.GetVersion());
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fileout << messageStart << nSize;
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// Write block
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long fileOutPos = ftell(fileout.Get());
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if (fileOutPos < 0) {
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return error("WriteBlockToDisk: ftell failed");
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}
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pos.nPos = (unsigned int)fileOutPos;
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fileout << block;
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return true;
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}
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bool WriteUndoDataForBlock(const CBlockUndo& blockundo, BlockValidationState& state, CBlockIndex* pindex, const CChainParams& chainparams)
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{
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// Write undo information to disk
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if (pindex->GetUndoPos().IsNull()) {
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FlatFilePos _pos;
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if (!FindUndoPos(state, pindex->nFile, _pos, ::GetSerializeSize(blockundo, CLIENT_VERSION) + 40)) {
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return error("ConnectBlock(): FindUndoPos failed");
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}
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if (!UndoWriteToDisk(blockundo, _pos, pindex->pprev->GetBlockHash(), chainparams.MessageStart())) {
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return AbortNode(state, "Failed to write undo data");
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}
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// rev files are written in block height order, whereas blk files are written as blocks come in (often out of order)
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// we want to flush the rev (undo) file once we've written the last block, which is indicated by the last height
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// in the block file info as below; note that this does not catch the case where the undo writes are keeping up
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// with the block writes (usually when a synced up node is getting newly mined blocks) -- this case is caught in
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// the FindBlockPos function
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if (_pos.nFile < nLastBlockFile && static_cast<uint32_t>(pindex->nHeight) == vinfoBlockFile[_pos.nFile].nHeightLast) {
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FlushUndoFile(_pos.nFile, true);
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}
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// update nUndoPos in block index
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pindex->nUndoPos = _pos.nPos;
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pindex->nStatus |= BLOCK_HAVE_UNDO;
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setDirtyBlockIndex.insert(pindex);
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}
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return true;
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}
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bool ReadBlockFromDisk(CBlock& block, const FlatFilePos& pos, const Consensus::Params& consensusParams)
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{
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block.SetNull();
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// Open history file to read
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CAutoFile filein(OpenBlockFile(pos, true), SER_DISK, CLIENT_VERSION);
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if (filein.IsNull()) {
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return error("ReadBlockFromDisk: OpenBlockFile failed for %s", pos.ToString());
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}
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// Read block
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try {
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filein >> block;
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} catch (const std::exception& e) {
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return error("%s: Deserialize or I/O error - %s at %s", __func__, e.what(), pos.ToString());
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}
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// Check the header
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if (!CheckProofOfWork(block.GetHash(), block.nBits, consensusParams)) {
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return error("ReadBlockFromDisk: Errors in block header at %s", pos.ToString());
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}
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// Signet only: check block solution
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if (consensusParams.signet_blocks && !CheckSignetBlockSolution(block, consensusParams)) {
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return error("ReadBlockFromDisk: Errors in block solution at %s", pos.ToString());
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}
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return true;
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}
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bool ReadBlockFromDisk(CBlock& block, const CBlockIndex* pindex, const Consensus::Params& consensusParams)
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{
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FlatFilePos blockPos;
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{
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LOCK(cs_main);
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blockPos = pindex->GetBlockPos();
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}
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if (!ReadBlockFromDisk(block, blockPos, consensusParams)) {
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return false;
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}
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if (block.GetHash() != pindex->GetBlockHash()) {
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return error("ReadBlockFromDisk(CBlock&, CBlockIndex*): GetHash() doesn't match index for %s at %s",
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pindex->ToString(), pindex->GetBlockPos().ToString());
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}
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return true;
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}
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bool ReadRawBlockFromDisk(std::vector<uint8_t>& block, const FlatFilePos& pos, const CMessageHeader::MessageStartChars& message_start)
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{
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FlatFilePos hpos = pos;
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hpos.nPos -= 8; // Seek back 8 bytes for meta header
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CAutoFile filein(OpenBlockFile(hpos, true), SER_DISK, CLIENT_VERSION);
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if (filein.IsNull()) {
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return error("%s: OpenBlockFile failed for %s", __func__, pos.ToString());
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}
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try {
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CMessageHeader::MessageStartChars blk_start;
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unsigned int blk_size;
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filein >> blk_start >> blk_size;
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if (memcmp(blk_start, message_start, CMessageHeader::MESSAGE_START_SIZE)) {
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return error("%s: Block magic mismatch for %s: %s versus expected %s", __func__, pos.ToString(),
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HexStr(blk_start),
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HexStr(message_start));
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}
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if (blk_size > MAX_SIZE) {
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return error("%s: Block data is larger than maximum deserialization size for %s: %s versus %s", __func__, pos.ToString(),
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blk_size, MAX_SIZE);
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}
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block.resize(blk_size); // Zeroing of memory is intentional here
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filein.read((char*)block.data(), blk_size);
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} catch (const std::exception& e) {
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return error("%s: Read from block file failed: %s for %s", __func__, e.what(), pos.ToString());
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}
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return true;
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}
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bool ReadRawBlockFromDisk(std::vector<uint8_t>& block, const CBlockIndex* pindex, const CMessageHeader::MessageStartChars& message_start)
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{
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FlatFilePos block_pos;
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{
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LOCK(cs_main);
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block_pos = pindex->GetBlockPos();
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}
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return ReadRawBlockFromDisk(block, block_pos, message_start);
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}
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/** Store block on disk. If dbp is non-nullptr, the file is known to already reside on disk */
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FlatFilePos SaveBlockToDisk(const CBlock& block, int nHeight, CChain& active_chain, const CChainParams& chainparams, const FlatFilePos* dbp)
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{
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unsigned int nBlockSize = ::GetSerializeSize(block, CLIENT_VERSION);
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FlatFilePos blockPos;
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if (dbp != nullptr) {
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blockPos = *dbp;
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}
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if (!FindBlockPos(blockPos, nBlockSize + 8, nHeight, active_chain, block.GetBlockTime(), dbp != nullptr)) {
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error("%s: FindBlockPos failed", __func__);
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return FlatFilePos();
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}
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if (dbp == nullptr) {
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|
if (!WriteBlockToDisk(block, blockPos, chainparams.MessageStart())) {
|
|
AbortNode("Failed to write block");
|
|
return FlatFilePos();
|
|
}
|
|
}
|
|
return blockPos;
|
|
}
|
|
|
|
struct CImportingNow {
|
|
CImportingNow()
|
|
{
|
|
assert(fImporting == false);
|
|
fImporting = true;
|
|
}
|
|
|
|
~CImportingNow()
|
|
{
|
|
assert(fImporting == true);
|
|
fImporting = false;
|
|
}
|
|
};
|
|
|
|
void ThreadImport(ChainstateManager& chainman, std::vector<fs::path> vImportFiles, const ArgsManager& args)
|
|
{
|
|
ScheduleBatchPriority();
|
|
|
|
{
|
|
CImportingNow imp;
|
|
|
|
// -reindex
|
|
if (fReindex) {
|
|
int nFile = 0;
|
|
while (true) {
|
|
FlatFilePos pos(nFile, 0);
|
|
if (!fs::exists(GetBlockPosFilename(pos))) {
|
|
break; // No block files left to reindex
|
|
}
|
|
FILE* file = OpenBlockFile(pos, true);
|
|
if (!file) {
|
|
break; // This error is logged in OpenBlockFile
|
|
}
|
|
LogPrintf("Reindexing block file blk%05u.dat...\n", (unsigned int)nFile);
|
|
chainman.ActiveChainstate().LoadExternalBlockFile(file, &pos);
|
|
if (ShutdownRequested()) {
|
|
LogPrintf("Shutdown requested. Exit %s\n", __func__);
|
|
return;
|
|
}
|
|
nFile++;
|
|
}
|
|
pblocktree->WriteReindexing(false);
|
|
fReindex = false;
|
|
LogPrintf("Reindexing finished\n");
|
|
// To avoid ending up in a situation without genesis block, re-try initializing (no-op if reindexing worked):
|
|
chainman.ActiveChainstate().LoadGenesisBlock();
|
|
}
|
|
|
|
// -loadblock=
|
|
for (const fs::path& path : vImportFiles) {
|
|
FILE* file = fsbridge::fopen(path, "rb");
|
|
if (file) {
|
|
LogPrintf("Importing blocks file %s...\n", path.string());
|
|
chainman.ActiveChainstate().LoadExternalBlockFile(file);
|
|
if (ShutdownRequested()) {
|
|
LogPrintf("Shutdown requested. Exit %s\n", __func__);
|
|
return;
|
|
}
|
|
} else {
|
|
LogPrintf("Warning: Could not open blocks file %s\n", path.string());
|
|
}
|
|
}
|
|
|
|
// scan for better chains in the block chain database, that are not yet connected in the active best chain
|
|
|
|
// We can't hold cs_main during ActivateBestChain even though we're accessing
|
|
// the chainman unique_ptrs since ABC requires us not to be holding cs_main, so retrieve
|
|
// the relevant pointers before the ABC call.
|
|
for (CChainState* chainstate : WITH_LOCK(::cs_main, return chainman.GetAll())) {
|
|
BlockValidationState state;
|
|
if (!chainstate->ActivateBestChain(state, nullptr)) {
|
|
LogPrintf("Failed to connect best block (%s)\n", state.ToString());
|
|
StartShutdown();
|
|
return;
|
|
}
|
|
}
|
|
|
|
if (args.GetBoolArg("-stopafterblockimport", DEFAULT_STOPAFTERBLOCKIMPORT)) {
|
|
LogPrintf("Stopping after block import\n");
|
|
StartShutdown();
|
|
return;
|
|
}
|
|
} // End scope of CImportingNow
|
|
chainman.ActiveChainstate().LoadMempool(args);
|
|
}
|