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-rw-r--r--src/validation.cpp255
1 files changed, 150 insertions, 105 deletions
diff --git a/src/validation.cpp b/src/validation.cpp
index 262b6856a..19f4f098d 100644
--- a/src/validation.cpp
+++ b/src/validation.cpp
@@ -41,6 +41,7 @@
#include <util/rbf.h>
#include <util/strencodings.h>
#include <util/system.h>
+#include <util/translation.h>
#include <util/validation.h>
#include <validationinterface.h>
#include <warnings.h>
@@ -77,7 +78,11 @@ bool CBlockIndexWorkComparator::operator()(const CBlockIndex *pa, const CBlockIn
return false;
}
-static CChainState g_chainstate;
+namespace {
+BlockManager g_blockman;
+} // anon namespace
+
+static CChainState g_chainstate(g_blockman);
CChainState& ChainstateActive() { return g_chainstate; }
@@ -95,7 +100,6 @@ CChain& ChainActive() { return g_chainstate.m_chain; }
*/
RecursiveMutex cs_main;
-BlockMap& mapBlockIndex = ::ChainstateActive().mapBlockIndex;
CBlockIndex *pindexBestHeader = nullptr;
Mutex g_best_block_mutex;
std::condition_variable g_best_block_cv;
@@ -125,12 +129,7 @@ CScript COINBASE_FLAGS;
// Internal stuff
namespace {
- CBlockIndex *&pindexBestInvalid = ::ChainstateActive().pindexBestInvalid;
-
- /** All pairs A->B, where A (or one of its ancestors) misses transactions, but B has transactions.
- * Pruned nodes may have entries where B is missing data.
- */
- std::multimap<CBlockIndex*, CBlockIndex*>& mapBlocksUnlinked = ::ChainstateActive().mapBlocksUnlinked;
+ CBlockIndex* pindexBestInvalid = nullptr;
CCriticalSection cs_LastBlockFile;
std::vector<CBlockFileInfo> vinfoBlockFile;
@@ -148,6 +147,13 @@ namespace {
std::set<int> setDirtyFileInfo;
} // anon namespace
+CBlockIndex* LookupBlockIndex(const uint256& hash)
+{
+ AssertLockHeld(cs_main);
+ BlockMap::const_iterator it = g_blockman.m_block_index.find(hash);
+ return it == g_blockman.m_block_index.end() ? nullptr : it->second;
+}
+
CBlockIndex* FindForkInGlobalIndex(const CChain& chain, const CBlockLocator& locator)
{
AssertLockHeld(cs_main);
@@ -611,7 +617,21 @@ static bool AcceptToMemoryPoolWorker(const CChainParams& chainparams, CTxMemPool
size_t nLimitDescendantSize = gArgs.GetArg("-limitdescendantsize", DEFAULT_DESCENDANT_SIZE_LIMIT)*1000;
std::string errString;
if (!pool.CalculateMemPoolAncestors(entry, setAncestors, nLimitAncestors, nLimitAncestorSize, nLimitDescendants, nLimitDescendantSize, errString)) {
- return state.Invalid(ValidationInvalidReason::TX_MEMPOOL_POLICY, false, REJECT_NONSTANDARD, "too-long-mempool-chain", errString);
+ setAncestors.clear();
+ // If the new transaction is relatively small (up to 40k weight)
+ // and has at most one ancestor (ie ancestor limit of 2, including
+ // the new transaction), allow it if its parent has exactly the
+ // descendant limit descendants.
+ //
+ // This allows protocols which rely on distrusting counterparties
+ // being able to broadcast descendants of an unconfirmed transaction
+ // to be secure by simply only having two immediately-spendable
+ // outputs - one for each counterparty. For more info on the uses for
+ // this, see https://lists.linuxfoundation.org/pipermail/bitcoin-dev/2018-November/016518.html
+ if (nSize > EXTRA_DESCENDANT_TX_SIZE_LIMIT ||
+ !pool.CalculateMemPoolAncestors(entry, setAncestors, 2, nLimitAncestorSize, nLimitDescendants + 1, nLimitDescendantSize + EXTRA_DESCENDANT_TX_SIZE_LIMIT, errString)) {
+ return state.Invalid(ValidationInvalidReason::TX_MEMPOOL_POLICY, false, REJECT_NONSTANDARD, "too-long-mempool-chain", errString);
+ }
}
// A transaction that spends outputs that would be replaced by it is invalid. Now
@@ -1047,6 +1067,11 @@ bool CChainState::IsInitialBlockDownload() const
static CBlockIndex *pindexBestForkTip = nullptr, *pindexBestForkBase = nullptr;
+BlockMap& BlockIndex()
+{
+ return g_blockman.m_block_index;
+}
+
static void AlertNotify(const std::string& strMessage)
{
uiInterface.NotifyAlertChanged();
@@ -1160,7 +1185,7 @@ void static InvalidChainFound(CBlockIndex* pindexNew) EXCLUSIVE_LOCKS_REQUIRED(c
void CChainState::InvalidBlockFound(CBlockIndex *pindex, const CValidationState &state) {
if (state.GetReason() != ValidationInvalidReason::BLOCK_MUTATED) {
pindex->nStatus |= BLOCK_FAILED_VALID;
- m_failed_blocks.insert(pindex);
+ m_blockman.m_failed_blocks.insert(pindex);
setDirtyBlockIndex.insert(pindex);
setBlockIndexCandidates.erase(pindex);
InvalidChainFound(pindex);
@@ -1384,7 +1409,7 @@ static bool AbortNode(const std::string& strMessage, const std::string& userMess
if (!userMessage.empty()) {
uiInterface.ThreadSafeMessageBox(userMessage, "", CClientUIInterface::MSG_ERROR | prefix);
} else {
- uiInterface.ThreadSafeMessageBox(_("Error: A fatal internal error occurred, see debug.log for details"), "", CClientUIInterface::MSG_ERROR | CClientUIInterface::MSG_NOPREFIX);
+ uiInterface.ThreadSafeMessageBox(_("Error: A fatal internal error occurred, see debug.log for details").translated, "", CClientUIInterface::MSG_ERROR | CClientUIInterface::MSG_NOPREFIX);
}
StartShutdown();
return false;
@@ -1695,8 +1720,8 @@ bool CChainState::ConnectBlock(const CBlock& block, CValidationState& state, CBl
// relative to a piece of software is an objective fact these defaults can be easily reviewed.
// This setting doesn't force the selection of any particular chain but makes validating some faster by
// effectively caching the result of part of the verification.
- BlockMap::const_iterator it = mapBlockIndex.find(hashAssumeValid);
- if (it != mapBlockIndex.end()) {
+ BlockMap::const_iterator it = m_blockman.m_block_index.find(hashAssumeValid);
+ if (it != m_blockman.m_block_index.end()) {
if (it->second->GetAncestor(pindex->nHeight) == pindex &&
pindexBestHeader->GetAncestor(pindex->nHeight) == pindex &&
pindexBestHeader->nChainWork >= nMinimumChainWork) {
@@ -2003,7 +2028,7 @@ bool CChainState::FlushStateToDisk(
if (fDoFullFlush || fPeriodicWrite) {
// Depend on nMinDiskSpace to ensure we can write block index
if (!CheckDiskSpace(GetBlocksDir())) {
- return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!"), CClientUIInterface::MSG_NOPREFIX);
+ return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!").translated, CClientUIInterface::MSG_NOPREFIX);
}
// First make sure all block and undo data is flushed to disk.
FlushBlockFile();
@@ -2038,7 +2063,7 @@ bool CChainState::FlushStateToDisk(
// an overestimation, as most will delete an existing entry or
// overwrite one. Still, use a conservative safety factor of 2.
if (!CheckDiskSpace(GetDataDir(), 48 * 2 * 2 * pcoinsTip->GetCacheSize())) {
- return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!"), CClientUIInterface::MSG_NOPREFIX);
+ return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!").translated, CClientUIInterface::MSG_NOPREFIX);
}
// Flush the chainstate (which may refer to block index entries).
if (!pcoinsTip->Flush())
@@ -2112,7 +2137,7 @@ void static UpdateTip(const CBlockIndex *pindexNew, const CChainParams& chainPar
WarningBitsConditionChecker checker(bit);
ThresholdState state = checker.GetStateFor(pindex, chainParams.GetConsensus(), warningcache[bit]);
if (state == ThresholdState::ACTIVE || state == ThresholdState::LOCKED_IN) {
- const std::string strWarning = strprintf(_("Warning: unknown new rules activated (versionbit %i)"), bit);
+ const std::string strWarning = strprintf(_("Warning: unknown new rules activated (versionbit %i)").translated, bit);
if (state == ThresholdState::ACTIVE) {
DoWarning(strWarning);
} else {
@@ -2129,7 +2154,7 @@ void static UpdateTip(const CBlockIndex *pindexNew, const CChainParams& chainPar
pindex = pindex->pprev;
}
if (nUpgraded > 0)
- AppendWarning(warningMessages, strprintf(_("%d of last 100 blocks have unexpected version"), nUpgraded));
+ AppendWarning(warningMessages, strprintf(_("%d of last 100 blocks have unexpected version").translated, nUpgraded));
}
LogPrintf("%s: new best=%s height=%d version=0x%08x log2_work=%.8g tx=%lu date='%s' progress=%f cache=%.1fMiB(%utxo)", __func__, /* Continued */
pindexNew->GetBlockHash().ToString(), pindexNew->nHeight, pindexNew->nVersion,
@@ -2160,7 +2185,7 @@ bool CChainState::DisconnectTip(CValidationState& state, const CChainParams& cha
std::shared_ptr<CBlock> pblock = std::make_shared<CBlock>();
CBlock& block = *pblock;
if (!ReadBlockFromDisk(block, pindexDelete, chainparams.GetConsensus()))
- return AbortNode(state, "Failed to read block");
+ return error("DisconnectTip(): Failed to read block");
// Apply the block atomically to the chain state.
int64_t nStart = GetTimeMicros();
{
@@ -2366,10 +2391,11 @@ CBlockIndex* CChainState::FindMostWorkChain() {
if (fFailedChain) {
pindexFailed->nStatus |= BLOCK_FAILED_CHILD;
} else if (fMissingData) {
- // If we're missing data, then add back to mapBlocksUnlinked,
+ // If we're missing data, then add back to m_blocks_unlinked,
// so that if the block arrives in the future we can try adding
// to setBlockIndexCandidates again.
- mapBlocksUnlinked.insert(std::make_pair(pindexFailed->pprev, pindexFailed));
+ m_blockman.m_blocks_unlinked.insert(
+ std::make_pair(pindexFailed->pprev, pindexFailed));
}
setBlockIndexCandidates.erase(pindexFailed);
pindexFailed = pindexFailed->pprev;
@@ -2416,6 +2442,11 @@ bool CChainState::ActivateBestChainStep(CValidationState& state, const CChainPar
// This is likely a fatal error, but keep the mempool consistent,
// just in case. Only remove from the mempool in this case.
UpdateMempoolForReorg(disconnectpool, false);
+
+ // If we're unable to disconnect a block during normal operation,
+ // then that is a failure of our local system -- we should abort
+ // rather than stay on a less work chain.
+ AbortNode(state, "Failed to disconnect block; see debug.log for details");
return false;
}
fBlocksDisconnected = true;
@@ -2720,12 +2751,12 @@ bool CChainState::InvalidateBlock(CValidationState& state, const CChainParams& c
to_mark_failed->nStatus |= BLOCK_FAILED_VALID;
setDirtyBlockIndex.insert(to_mark_failed);
setBlockIndexCandidates.erase(to_mark_failed);
- m_failed_blocks.insert(to_mark_failed);
+ m_blockman.m_failed_blocks.insert(to_mark_failed);
// The resulting new best tip may not be in setBlockIndexCandidates anymore, so
// add it again.
- BlockMap::iterator it = mapBlockIndex.begin();
- while (it != mapBlockIndex.end()) {
+ BlockMap::iterator it = m_blockman.m_block_index.begin();
+ while (it != m_blockman.m_block_index.end()) {
if (it->second->IsValid(BLOCK_VALID_TRANSACTIONS) && it->second->HaveTxsDownloaded() && !setBlockIndexCandidates.value_comp()(it->second, m_chain.Tip())) {
setBlockIndexCandidates.insert(it->second);
}
@@ -2752,8 +2783,8 @@ void CChainState::ResetBlockFailureFlags(CBlockIndex *pindex) {
int nHeight = pindex->nHeight;
// Remove the invalidity flag from this block and all its descendants.
- BlockMap::iterator it = mapBlockIndex.begin();
- while (it != mapBlockIndex.end()) {
+ BlockMap::iterator it = m_blockman.m_block_index.begin();
+ while (it != m_blockman.m_block_index.end()) {
if (!it->second->IsValid() && it->second->GetAncestor(nHeight) == pindex) {
it->second->nStatus &= ~BLOCK_FAILED_MASK;
setDirtyBlockIndex.insert(it->second);
@@ -2764,7 +2795,7 @@ void CChainState::ResetBlockFailureFlags(CBlockIndex *pindex) {
// Reset invalid block marker if it was pointing to one of those.
pindexBestInvalid = nullptr;
}
- m_failed_blocks.erase(it->second);
+ m_blockman.m_failed_blocks.erase(it->second);
}
it++;
}
@@ -2774,7 +2805,7 @@ void CChainState::ResetBlockFailureFlags(CBlockIndex *pindex) {
if (pindex->nStatus & BLOCK_FAILED_MASK) {
pindex->nStatus &= ~BLOCK_FAILED_MASK;
setDirtyBlockIndex.insert(pindex);
- m_failed_blocks.erase(pindex);
+ m_blockman.m_failed_blocks.erase(pindex);
}
pindex = pindex->pprev;
}
@@ -2784,14 +2815,14 @@ void ResetBlockFailureFlags(CBlockIndex *pindex) {
return ::ChainstateActive().ResetBlockFailureFlags(pindex);
}
-CBlockIndex* CChainState::AddToBlockIndex(const CBlockHeader& block)
+CBlockIndex* BlockManager::AddToBlockIndex(const CBlockHeader& block)
{
AssertLockHeld(cs_main);
// Check for duplicate
uint256 hash = block.GetHash();
- BlockMap::iterator it = mapBlockIndex.find(hash);
- if (it != mapBlockIndex.end())
+ BlockMap::iterator it = m_block_index.find(hash);
+ if (it != m_block_index.end())
return it->second;
// Construct new block index object
@@ -2800,10 +2831,10 @@ CBlockIndex* CChainState::AddToBlockIndex(const CBlockHeader& block)
// to avoid miners withholding blocks but broadcasting headers, to get a
// competitive advantage.
pindexNew->nSequenceId = 0;
- BlockMap::iterator mi = mapBlockIndex.insert(std::make_pair(hash, pindexNew)).first;
+ BlockMap::iterator mi = m_block_index.insert(std::make_pair(hash, pindexNew)).first;
pindexNew->phashBlock = &((*mi).first);
- BlockMap::iterator miPrev = mapBlockIndex.find(block.hashPrevBlock);
- if (miPrev != mapBlockIndex.end())
+ BlockMap::iterator miPrev = m_block_index.find(block.hashPrevBlock);
+ if (miPrev != m_block_index.end())
{
pindexNew->pprev = (*miPrev).second;
pindexNew->nHeight = pindexNew->pprev->nHeight + 1;
@@ -2852,17 +2883,17 @@ void CChainState::ReceivedBlockTransactions(const CBlock& block, CBlockIndex* pi
if (m_chain.Tip() == nullptr || !setBlockIndexCandidates.value_comp()(pindex, m_chain.Tip())) {
setBlockIndexCandidates.insert(pindex);
}
- std::pair<std::multimap<CBlockIndex*, CBlockIndex*>::iterator, std::multimap<CBlockIndex*, CBlockIndex*>::iterator> range = mapBlocksUnlinked.equal_range(pindex);
+ std::pair<std::multimap<CBlockIndex*, CBlockIndex*>::iterator, std::multimap<CBlockIndex*, CBlockIndex*>::iterator> range = m_blockman.m_blocks_unlinked.equal_range(pindex);
while (range.first != range.second) {
std::multimap<CBlockIndex*, CBlockIndex*>::iterator it = range.first;
queue.push_back(it->second);
range.first++;
- mapBlocksUnlinked.erase(it);
+ m_blockman.m_blocks_unlinked.erase(it);
}
}
} else {
if (pindexNew->pprev && pindexNew->pprev->IsValid(BLOCK_VALID_TREE)) {
- mapBlocksUnlinked.insert(std::make_pair(pindexNew->pprev, pindexNew));
+ m_blockman.m_blocks_unlinked.insert(std::make_pair(pindexNew->pprev, pindexNew));
}
}
}
@@ -2905,7 +2936,7 @@ static bool FindBlockPos(FlatFilePos &pos, unsigned int nAddSize, unsigned int n
bool out_of_space;
size_t bytes_allocated = BlockFileSeq().Allocate(pos, nAddSize, out_of_space);
if (out_of_space) {
- return AbortNode("Disk space is too low!", _("Error: Disk space is too low!"), CClientUIInterface::MSG_NOPREFIX);
+ return AbortNode("Disk space is too low!", _("Error: Disk space is too low!").translated, CClientUIInterface::MSG_NOPREFIX);
}
if (bytes_allocated != 0 && fPruneMode) {
fCheckForPruning = true;
@@ -2929,7 +2960,7 @@ static bool FindUndoPos(CValidationState &state, int nFile, FlatFilePos &pos, un
bool out_of_space;
size_t bytes_allocated = UndoFileSeq().Allocate(pos, nAddSize, out_of_space);
if (out_of_space) {
- return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!"), CClientUIInterface::MSG_NOPREFIX);
+ return AbortNode(state, "Disk space is too low!", _("Error: Disk space is too low!").translated, CClientUIInterface::MSG_NOPREFIX);
}
if (bytes_allocated != 0 && fPruneMode) {
fCheckForPruning = true;
@@ -3117,7 +3148,7 @@ static bool ContextualCheckBlockHeader(const CBlockHeader& block, CValidationSta
if (fCheckpointsEnabled) {
// Don't accept any forks from the main chain prior to last checkpoint.
// GetLastCheckpoint finds the last checkpoint in MapCheckpoints that's in our
- // MapBlockIndex.
+ // g_blockman.m_block_index.
CBlockIndex* pcheckpoint = GetLastCheckpoint(params.Checkpoints());
if (pcheckpoint && nHeight < pcheckpoint->nHeight)
return state.Invalid(ValidationInvalidReason::BLOCK_CHECKPOINT, error("%s: forked chain older than last checkpoint (height %d)", __func__, nHeight), REJECT_CHECKPOINT, "bad-fork-prior-to-checkpoint");
@@ -3230,15 +3261,15 @@ static bool ContextualCheckBlock(const CBlock& block, CValidationState& state, c
return true;
}
-bool CChainState::AcceptBlockHeader(const CBlockHeader& block, CValidationState& state, const CChainParams& chainparams, CBlockIndex** ppindex)
+bool BlockManager::AcceptBlockHeader(const CBlockHeader& block, CValidationState& state, const CChainParams& chainparams, CBlockIndex** ppindex)
{
AssertLockHeld(cs_main);
// Check for duplicate
uint256 hash = block.GetHash();
- BlockMap::iterator miSelf = mapBlockIndex.find(hash);
+ BlockMap::iterator miSelf = m_block_index.find(hash);
CBlockIndex *pindex = nullptr;
if (hash != chainparams.GetConsensus().hashGenesisBlock) {
- if (miSelf != mapBlockIndex.end()) {
+ if (miSelf != m_block_index.end()) {
// Block header is already known.
pindex = miSelf->second;
if (ppindex)
@@ -3253,8 +3284,8 @@ bool CChainState::AcceptBlockHeader(const CBlockHeader& block, CValidationState&
// Get prev block index
CBlockIndex* pindexPrev = nullptr;
- BlockMap::iterator mi = mapBlockIndex.find(block.hashPrevBlock);
- if (mi == mapBlockIndex.end())
+ BlockMap::iterator mi = m_block_index.find(block.hashPrevBlock);
+ if (mi == m_block_index.end())
return state.Invalid(ValidationInvalidReason::BLOCK_MISSING_PREV, error("%s: prev block not found", __func__), 0, "prev-blk-not-found");
pindexPrev = (*mi).second;
if (pindexPrev->nStatus & BLOCK_FAILED_MASK)
@@ -3306,8 +3337,6 @@ bool CChainState::AcceptBlockHeader(const CBlockHeader& block, CValidationState&
if (ppindex)
*ppindex = pindex;
- CheckBlockIndex(chainparams.GetConsensus());
-
return true;
}
@@ -3319,7 +3348,10 @@ bool ProcessNewBlockHeaders(const std::vector<CBlockHeader>& headers, CValidatio
LOCK(cs_main);
for (const CBlockHeader& header : headers) {
CBlockIndex *pindex = nullptr; // Use a temp pindex instead of ppindex to avoid a const_cast
- if (!::ChainstateActive().AcceptBlockHeader(header, state, chainparams, &pindex)) {
+ bool accepted = g_blockman.AcceptBlockHeader(header, state, chainparams, &pindex);
+ ::ChainstateActive().CheckBlockIndex(chainparams.GetConsensus());
+
+ if (!accepted) {
if (first_invalid) *first_invalid = header;
return false;
}
@@ -3362,7 +3394,10 @@ bool CChainState::AcceptBlock(const std::shared_ptr<const CBlock>& pblock, CVali
CBlockIndex *pindexDummy = nullptr;
CBlockIndex *&pindex = ppindex ? *ppindex : pindexDummy;
- if (!AcceptBlockHeader(block, state, chainparams, &pindex))
+ bool accepted_header = m_blockman.AcceptBlockHeader(block, state, chainparams, &pindex);
+ CheckBlockIndex(chainparams.GetConsensus());
+
+ if (!accepted_header)
return false;
// Try to process all requested blocks that we don't have, but only
@@ -3513,7 +3548,7 @@ void PruneOneBlockFile(const int fileNumber)
{
LOCK(cs_LastBlockFile);
- for (const auto& entry : mapBlockIndex) {
+ for (const auto& entry : g_blockman.m_block_index) {
CBlockIndex* pindex = entry.second;
if (pindex->nFile == fileNumber) {
pindex->nStatus &= ~BLOCK_HAVE_DATA;
@@ -3523,16 +3558,16 @@ void PruneOneBlockFile(const int fileNumber)
pindex->nUndoPos = 0;
setDirtyBlockIndex.insert(pindex);
- // Prune from mapBlocksUnlinked -- any block we prune would have
+ // Prune from m_blocks_unlinked -- any block we prune would have
// to be downloaded again in order to consider its chain, at which
// point it would be considered as a candidate for
- // mapBlocksUnlinked or setBlockIndexCandidates.
- std::pair<std::multimap<CBlockIndex*, CBlockIndex*>::iterator, std::multimap<CBlockIndex*, CBlockIndex*>::iterator> range = mapBlocksUnlinked.equal_range(pindex->pprev);
+ // m_blocks_unlinked or setBlockIndexCandidates.
+ auto range = g_blockman.m_blocks_unlinked.equal_range(pindex->pprev);
while (range.first != range.second) {
std::multimap<CBlockIndex *, CBlockIndex *>::iterator _it = range.first;
range.first++;
if (_it->second == pindex) {
- mapBlocksUnlinked.erase(_it);
+ g_blockman.m_blocks_unlinked.erase(_it);
}
}
}
@@ -3681,7 +3716,7 @@ fs::path GetBlockPosFilename(const FlatFilePos &pos)
return BlockFileSeq().FileName(pos);
}
-CBlockIndex * CChainState::InsertBlockIndex(const uint256& hash)
+CBlockIndex * BlockManager::InsertBlockIndex(const uint256& hash)
{
AssertLockHeld(cs_main);
@@ -3689,27 +3724,30 @@ CBlockIndex * CChainState::InsertBlockIndex(const uint256& hash)
return nullptr;
// Return existing
- BlockMap::iterator mi = mapBlockIndex.find(hash);
- if (mi != mapBlockIndex.end())
+ BlockMap::iterator mi = m_block_index.find(hash);
+ if (mi != m_block_index.end())
return (*mi).second;
// Create new
CBlockIndex* pindexNew = new CBlockIndex();
- mi = mapBlockIndex.insert(std::make_pair(hash, pindexNew)).first;
+ mi = m_block_index.insert(std::make_pair(hash, pindexNew)).first;
pindexNew->phashBlock = &((*mi).first);
return pindexNew;
}
-bool CChainState::LoadBlockIndex(const Consensus::Params& consensus_params, CBlockTreeDB& blocktree)
+bool BlockManager::LoadBlockIndex(
+ const Consensus::Params& consensus_params,
+ CBlockTreeDB& blocktree,
+ std::set<CBlockIndex*, CBlockIndexWorkComparator>& block_index_candidates)
{
if (!blocktree.LoadBlockIndexGuts(consensus_params, [this](const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main) { return this->InsertBlockIndex(hash); }))
return false;
// Calculate nChainWork
std::vector<std::pair<int, CBlockIndex*> > vSortedByHeight;
- vSortedByHeight.reserve(mapBlockIndex.size());
- for (const std::pair<const uint256, CBlockIndex*>& item : mapBlockIndex)
+ vSortedByHeight.reserve(m_block_index.size());
+ for (const std::pair<const uint256, CBlockIndex*>& item : m_block_index)
{
CBlockIndex* pindex = item.second;
vSortedByHeight.push_back(std::make_pair(pindex->nHeight, pindex));
@@ -3729,7 +3767,7 @@ bool CChainState::LoadBlockIndex(const Consensus::Params& consensus_params, CBlo
pindex->nChainTx = pindex->pprev->nChainTx + pindex->nTx;
} else {
pindex->nChainTx = 0;
- mapBlocksUnlinked.insert(std::make_pair(pindex->pprev, pindex));
+ m_blocks_unlinked.insert(std::make_pair(pindex->pprev, pindex));
}
} else {
pindex->nChainTx = pindex->nTx;
@@ -3739,8 +3777,9 @@ bool CChainState::LoadBlockIndex(const Consensus::Params& consensus_params, CBlo
pindex->nStatus |= BLOCK_FAILED_CHILD;
setDirtyBlockIndex.insert(pindex);
}
- if (pindex->IsValid(BLOCK_VALID_TRANSACTIONS) && (pindex->HaveTxsDownloaded() || pindex->pprev == nullptr))
- setBlockIndexCandidates.insert(pindex);
+ if (pindex->IsValid(BLOCK_VALID_TRANSACTIONS) && (pindex->HaveTxsDownloaded() || pindex->pprev == nullptr)) {
+ block_index_candidates.insert(pindex);
+ }
if (pindex->nStatus & BLOCK_FAILED_MASK && (!pindexBestInvalid || pindex->nChainWork > pindexBestInvalid->nChainWork))
pindexBestInvalid = pindex;
if (pindex->pprev)
@@ -3752,9 +3791,21 @@ bool CChainState::LoadBlockIndex(const Consensus::Params& consensus_params, CBlo
return true;
}
+void BlockManager::Unload() {
+ m_failed_blocks.clear();
+ m_blocks_unlinked.clear();
+
+ for (const BlockMap::value_type& entry : m_block_index) {
+ delete entry.second;
+ }
+
+ m_block_index.clear();
+}
+
bool static LoadBlockIndexDB(const CChainParams& chainparams) EXCLUSIVE_LOCKS_REQUIRED(cs_main)
{
- if (!::ChainstateActive().LoadBlockIndex(chainparams.GetConsensus(), *pblocktree))
+ if (!g_blockman.LoadBlockIndex(
+ chainparams.GetConsensus(), *pblocktree, ::ChainstateActive().setBlockIndexCandidates))
return false;
// Load block file info
@@ -3777,7 +3828,7 @@ bool static LoadBlockIndexDB(const CChainParams& chainparams) EXCLUSIVE_LOCKS_RE
// Check presence of blk files
LogPrintf("Checking all blk files are present...\n");
std::set<int> setBlkDataFiles;
- for (const std::pair<const uint256, CBlockIndex*>& item : mapBlockIndex)
+ for (const std::pair<const uint256, CBlockIndex*>& item : g_blockman.m_block_index)
{
CBlockIndex* pindex = item.second;
if (pindex->nStatus & BLOCK_HAVE_DATA) {
@@ -3830,7 +3881,7 @@ bool LoadChainTip(const CChainParams& chainparams)
CVerifyDB::CVerifyDB()
{
- uiInterface.ShowProgress(_("Verifying blocks..."), 0, false);
+ uiInterface.ShowProgress(_("Verifying blocks...").translated, 0, false);
}
CVerifyDB::~CVerifyDB()
@@ -3864,7 +3915,7 @@ bool CVerifyDB::VerifyDB(const CChainParams& chainparams, CCoinsView *coinsview,
LogPrintf("[%d%%]...", percentageDone); /* Continued */
reportDone = percentageDone/10;
}
- uiInterface.ShowProgress(_("Verifying blocks..."), percentageDone, false);
+ uiInterface.ShowProgress(_("Verifying blocks...").translated, percentageDone, false);
if (pindex->nHeight <= ::ChainActive().Height()-nCheckDepth)
break;
if (fPruneMode && !(pindex->nStatus & BLOCK_HAVE_DATA)) {
@@ -3922,7 +3973,7 @@ bool CVerifyDB::VerifyDB(const CChainParams& chainparams, CCoinsView *coinsview,
LogPrintf("[%d%%]...", percentageDone); /* Continued */
reportDone = percentageDone/10;
}
- uiInterface.ShowProgress(_("Verifying blocks..."), percentageDone, false);
+ uiInterface.ShowProgress(_("Verifying blocks...").translated, percentageDone, false);
pindex = ::ChainActive().Next(pindex);
CBlock block;
if (!ReadBlockFromDisk(block, pindex, chainparams.GetConsensus()))
@@ -3969,23 +4020,23 @@ bool CChainState::ReplayBlocks(const CChainParams& params, CCoinsView* view)
if (hashHeads.empty()) return true; // We're already in a consistent state.
if (hashHeads.size() != 2) return error("ReplayBlocks(): unknown inconsistent state");
- uiInterface.ShowProgress(_("Replaying blocks..."), 0, false);
+ uiInterface.ShowProgress(_("Replaying blocks...").translated, 0, false);
LogPrintf("Replaying blocks\n");
const CBlockIndex* pindexOld = nullptr; // Old tip during the interrupted flush.
const CBlockIndex* pindexNew; // New tip during the interrupted flush.
const CBlockIndex* pindexFork = nullptr; // Latest block common to both the old and the new tip.
- if (mapBlockIndex.count(hashHeads[0]) == 0) {
+ if (m_blockman.m_block_index.count(hashHeads[0]) == 0) {
return error("ReplayBlocks(): reorganization to unknown block requested");
}
- pindexNew = mapBlockIndex[hashHeads[0]];
+ pindexNew = m_blockman.m_block_index[hashHeads[0]];
if (!hashHeads[1].IsNull()) { // The old tip is allowed to be 0, indicating it's the first flush.
- if (mapBlockIndex.count(hashHeads[1]) == 0) {
+ if (m_blockman.m_block_index.count(hashHeads[1]) == 0) {
return error("ReplayBlocks(): reorganization from unknown block requested");
}
- pindexOld = mapBlockIndex[hashHeads[1]];
+ pindexOld = m_blockman.m_block_index[hashHeads[1]];
pindexFork = LastCommonAncestor(pindexOld, pindexNew);
assert(pindexFork != nullptr);
}
@@ -4015,7 +4066,7 @@ bool CChainState::ReplayBlocks(const CChainParams& params, CCoinsView* view)
for (int nHeight = nForkHeight + 1; nHeight <= pindexNew->nHeight; ++nHeight) {
const CBlockIndex* pindex = pindexNew->GetAncestor(nHeight);
LogPrintf("Rolling forward %s (%i)\n", pindex->GetBlockHash().ToString(), nHeight);
- uiInterface.ShowProgress(_("Replaying blocks..."), (int) ((nHeight - nForkHeight) * 100.0 / (pindexNew->nHeight - nForkHeight)) , false);
+ uiInterface.ShowProgress(_("Replaying blocks...").translated, (int) ((nHeight - nForkHeight) * 100.0 / (pindexNew->nHeight - nForkHeight)) , false);
if (!RollforwardBlock(pindex, cache, params)) return false;
}
@@ -4051,10 +4102,10 @@ void CChainState::EraseBlockData(CBlockIndex* index)
setDirtyBlockIndex.insert(index);
// Update indexes
setBlockIndexCandidates.erase(index);
- std::pair<std::multimap<CBlockIndex*, CBlockIndex*>::iterator, std::multimap<CBlockIndex*, CBlockIndex*>::iterator> ret = mapBlocksUnlinked.equal_range(index->pprev);
+ auto ret = m_blockman.m_blocks_unlinked.equal_range(index->pprev);
while (ret.first != ret.second) {
if (ret.first->second == index) {
- mapBlocksUnlinked.erase(ret.first++);
+ m_blockman.m_blocks_unlinked.erase(ret.first++);
} else {
++ret.first;
}
@@ -4074,7 +4125,7 @@ bool CChainState::RewindBlockIndex(const CChainParams& params)
// blocks will be dealt with below (releasing cs_main in between).
{
LOCK(cs_main);
- for (const auto& entry : mapBlockIndex) {
+ for (const auto& entry : m_blockman.m_block_index) {
if (IsWitnessEnabled(entry.second->pprev, params.GetConsensus()) && !(entry.second->nStatus & BLOCK_OPT_WITNESS) && !m_chain.Contains(entry.second)) {
EraseBlockData(entry.second);
}
@@ -4180,7 +4231,6 @@ bool RewindBlockIndex(const CChainParams& params) {
void CChainState::UnloadBlockIndex() {
nBlockSequenceId = 1;
- m_failed_blocks.clear();
setBlockIndexCandidates.clear();
}
@@ -4191,10 +4241,10 @@ void UnloadBlockIndex()
{
LOCK(cs_main);
::ChainActive().SetTip(nullptr);
+ g_blockman.Unload();
pindexBestInvalid = nullptr;
pindexBestHeader = nullptr;
mempool.clear();
- mapBlocksUnlinked.clear();
vinfoBlockFile.clear();
nLastBlockFile = 0;
setDirtyBlockIndex.clear();
@@ -4203,11 +4253,6 @@ void UnloadBlockIndex()
for (int b = 0; b < VERSIONBITS_NUM_BITS; b++) {
warningcache[b].clear();
}
-
- for (const BlockMap::value_type& entry : mapBlockIndex) {
- delete entry.second;
- }
- mapBlockIndex.clear();
fHavePruned = false;
::ChainstateActive().UnloadBlockIndex();
@@ -4220,7 +4265,7 @@ bool LoadBlockIndex(const CChainParams& chainparams)
if (!fReindex) {
bool ret = LoadBlockIndexDB(chainparams);
if (!ret) return false;
- needs_init = mapBlockIndex.empty();
+ needs_init = g_blockman.m_block_index.empty();
}
if (needs_init) {
@@ -4240,10 +4285,10 @@ bool CChainState::LoadGenesisBlock(const CChainParams& chainparams)
LOCK(cs_main);
// Check whether we're already initialized by checking for genesis in
- // mapBlockIndex. Note that we can't use m_chain here, since it is
+ // m_blockman.m_block_index. Note that we can't use m_chain here, since it is
// set based on the coins db, not the block index db, which is the only
// thing loaded at this point.
- if (mapBlockIndex.count(chainparams.GenesisBlock().GetHash()))
+ if (m_blockman.m_block_index.count(chainparams.GenesisBlock().GetHash()))
return true;
try {
@@ -4251,7 +4296,7 @@ bool CChainState::LoadGenesisBlock(const CChainParams& chainparams)
FlatFilePos blockPos = SaveBlockToDisk(block, 0, chainparams, nullptr);
if (blockPos.IsNull())
return error("%s: writing genesis block to disk failed", __func__);
- CBlockIndex *pindex = AddToBlockIndex(block);
+ CBlockIndex *pindex = m_blockman.AddToBlockIndex(block);
ReceivedBlockTransactions(block, pindex, blockPos, chainparams.GetConsensus());
} catch (const std::runtime_error& e) {
return error("%s: failed to write genesis block: %s", __func__, e.what());
@@ -4396,20 +4441,20 @@ void CChainState::CheckBlockIndex(const Consensus::Params& consensusParams)
LOCK(cs_main);
// During a reindex, we read the genesis block and call CheckBlockIndex before ActivateBestChain,
- // so we have the genesis block in mapBlockIndex but no active chain. (A few of the tests when
- // iterating the block tree require that m_chain has been initialized.)
+ // so we have the genesis block in m_blockman.m_block_index but no active chain. (A few of the
+ // tests when iterating the block tree require that m_chain has been initialized.)
if (m_chain.Height() < 0) {
- assert(mapBlockIndex.size() <= 1);
+ assert(m_blockman.m_block_index.size() <= 1);
return;
}
// Build forward-pointing map of the entire block tree.
std::multimap<CBlockIndex*,CBlockIndex*> forward;
- for (const std::pair<const uint256, CBlockIndex*>& entry : mapBlockIndex) {
+ for (const std::pair<const uint256, CBlockIndex*>& entry : m_blockman.m_block_index) {
forward.insert(std::make_pair(entry.second->pprev, entry.second));
}
- assert(forward.size() == mapBlockIndex.size());
+ assert(forward.size() == m_blockman.m_block_index.size());
std::pair<std::multimap<CBlockIndex*,CBlockIndex*>::iterator,std::multimap<CBlockIndex*,CBlockIndex*>::iterator> rangeGenesis = forward.equal_range(nullptr);
CBlockIndex *pindex = rangeGenesis.first->second;
@@ -4463,7 +4508,7 @@ void CChainState::CheckBlockIndex(const Consensus::Params& consensusParams)
assert(pindex->nHeight == nHeight); // nHeight must be consistent.
assert(pindex->pprev == nullptr || pindex->nChainWork >= pindex->pprev->nChainWork); // For every block except the genesis block, the chainwork must be larger than the parent's.
assert(nHeight < 2 || (pindex->pskip && (pindex->pskip->nHeight < nHeight))); // The pskip pointer must point back for all but the first 2 blocks.
- assert(pindexFirstNotTreeValid == nullptr); // All mapBlockIndex entries must at least be TREE valid
+ assert(pindexFirstNotTreeValid == nullptr); // All m_blockman.m_block_index entries must at least be TREE valid
if ((pindex->nStatus & BLOCK_VALID_MASK) >= BLOCK_VALID_TREE) assert(pindexFirstNotTreeValid == nullptr); // TREE valid implies all parents are TREE valid
if ((pindex->nStatus & BLOCK_VALID_MASK) >= BLOCK_VALID_CHAIN) assert(pindexFirstNotChainValid == nullptr); // CHAIN valid implies all parents are CHAIN valid
if ((pindex->nStatus & BLOCK_VALID_MASK) >= BLOCK_VALID_SCRIPTS) assert(pindexFirstNotScriptsValid == nullptr); // SCRIPTS valid implies all parents are SCRIPTS valid
@@ -4482,13 +4527,13 @@ void CChainState::CheckBlockIndex(const Consensus::Params& consensusParams)
}
// If some parent is missing, then it could be that this block was in
// setBlockIndexCandidates but had to be removed because of the missing data.
- // In this case it must be in mapBlocksUnlinked -- see test below.
+ // In this case it must be in m_blocks_unlinked -- see test below.
}
} else { // If this block sorts worse than the current tip or some ancestor's block has never been seen, it cannot be in setBlockIndexCandidates.
assert(setBlockIndexCandidates.count(pindex) == 0);
}
- // Check whether this block is in mapBlocksUnlinked.
- std::pair<std::multimap<CBlockIndex*,CBlockIndex*>::iterator,std::multimap<CBlockIndex*,CBlockIndex*>::iterator> rangeUnlinked = mapBlocksUnlinked.equal_range(pindex->pprev);
+ // Check whether this block is in m_blocks_unlinked.
+ std::pair<std::multimap<CBlockIndex*,CBlockIndex*>::iterator,std::multimap<CBlockIndex*,CBlockIndex*>::iterator> rangeUnlinked = m_blockman.m_blocks_unlinked.equal_range(pindex->pprev);
bool foundInUnlinked = false;
while (rangeUnlinked.first != rangeUnlinked.second) {
assert(rangeUnlinked.first->first == pindex->pprev);
@@ -4499,22 +4544,22 @@ void CChainState::CheckBlockIndex(const Consensus::Params& consensusParams)
rangeUnlinked.first++;
}
if (pindex->pprev && (pindex->nStatus & BLOCK_HAVE_DATA) && pindexFirstNeverProcessed != nullptr && pindexFirstInvalid == nullptr) {
- // If this block has block data available, some parent was never received, and has no invalid parents, it must be in mapBlocksUnlinked.
+ // If this block has block data available, some parent was never received, and has no invalid parents, it must be in m_blocks_unlinked.
assert(foundInUnlinked);
}
- if (!(pindex->nStatus & BLOCK_HAVE_DATA)) assert(!foundInUnlinked); // Can't be in mapBlocksUnlinked if we don't HAVE_DATA
- if (pindexFirstMissing == nullptr) assert(!foundInUnlinked); // We aren't missing data for any parent -- cannot be in mapBlocksUnlinked.
+ if (!(pindex->nStatus & BLOCK_HAVE_DATA)) assert(!foundInUnlinked); // Can't be in m_blocks_unlinked if we don't HAVE_DATA
+ if (pindexFirstMissing == nullptr) assert(!foundInUnlinked); // We aren't missing data for any parent -- cannot be in m_blocks_unlinked.
if (pindex->pprev && (pindex->nStatus & BLOCK_HAVE_DATA) && pindexFirstNeverProcessed == nullptr && pindexFirstMissing != nullptr) {
// We HAVE_DATA for this block, have received data for all parents at some point, but we're currently missing data for some parent.
assert(fHavePruned); // We must have pruned.
- // This block may have entered mapBlocksUnlinked if:
+ // This block may have entered m_blocks_unlinked if:
// - it has a descendant that at some point had more work than the
// tip, and
// - we tried switching to that descendant but were missing
// data for some intermediate block between m_chain and the
// tip.
// So if this block is itself better than m_chain.Tip() and it wasn't in
- // setBlockIndexCandidates, then it must be in mapBlocksUnlinked.
+ // setBlockIndexCandidates, then it must be in m_blocks_unlinked.
if (!CBlockIndexWorkComparator()(pindex, m_chain.Tip()) && setBlockIndexCandidates.count(pindex) == 0) {
if (pindexFirstInvalid == nullptr) {
assert(foundInUnlinked);
@@ -4758,10 +4803,10 @@ public:
CMainCleanup() {}
~CMainCleanup() {
// block headers
- BlockMap::iterator it1 = mapBlockIndex.begin();
- for (; it1 != mapBlockIndex.end(); it1++)
+ BlockMap::iterator it1 = g_blockman.m_block_index.begin();
+ for (; it1 != g_blockman.m_block_index.end(); it1++)
delete (*it1).second;
- mapBlockIndex.clear();
+ g_blockman.m_block_index.clear();
}
};
static CMainCleanup instance_of_cmaincleanup;