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Limit the impact of reorganisations on the database
Sometimes a new block arrives in a new chain that was already the best valid one, but wasn't marked that way. This happens for example when network rules change to recover after a fork. In this case, it is not necessary to do the entire reorganisation inside a single db commit. These can become huge, and exceed the objects/lockers limits in bdb. This patch limits the blocks the actual reorganisation is applied to, and adds the next blocks afterwards in separate db transactions.
This commit is contained in:
parent
336ba312a6
commit
d68dcf741e
80
src/main.cpp
80
src/main.cpp
@ -1457,6 +1457,32 @@ runCommand(std::string strCommand)
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printf("runCommand error: system(%s) returned %d\n", strCommand.c_str(), nErr);
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}
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bool CBlock::SetBestChainInner(CTxDB& txdb, CBlockIndex *pindexNew)
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{
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assert(pindexNew->pprev == pindexBest);
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uint256 hash = GetHash();
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// Adding to current best branch
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if (!ConnectBlock(txdb, pindexNew) || !txdb.WriteHashBestChain(hash))
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{
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txdb.TxnAbort();
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InvalidChainFound(pindexNew);
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return false;
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}
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if (!txdb.TxnCommit())
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return error("SetBestChain() : TxnCommit failed");
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// Add to current best branch
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pindexNew->pprev->pnext = pindexNew;
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// Delete redundant memory transactions
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BOOST_FOREACH(CTransaction& tx, vtx)
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tx.RemoveFromMemoryPool();
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return true;
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}
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bool CBlock::SetBestChain(CTxDB& txdb, CBlockIndex* pindexNew)
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{
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uint256 hash = GetHash();
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@ -1471,32 +1497,50 @@ bool CBlock::SetBestChain(CTxDB& txdb, CBlockIndex* pindexNew)
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}
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else if (hashPrevBlock == hashBestChain)
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{
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// Adding to current best branch
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if (!ConnectBlock(txdb, pindexNew) || !txdb.WriteHashBestChain(hash))
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{
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txdb.TxnAbort();
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InvalidChainFound(pindexNew);
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return error("SetBestChain() : ConnectBlock failed");
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}
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if (!txdb.TxnCommit())
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return error("SetBestChain() : TxnCommit failed");
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// Add to current best branch
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pindexNew->pprev->pnext = pindexNew;
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// Delete redundant memory transactions
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BOOST_FOREACH(CTransaction& tx, vtx)
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tx.RemoveFromMemoryPool();
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if (!SetBestChainInner(txdb, pindexNew))
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return error("SetBestChain() : SetBestChainInner failed");
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}
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else
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{
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// New best branch
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if (!Reorganize(txdb, pindexNew))
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// the first block in the new chain that will cause it to become the new best chain
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CBlockIndex *pindexIntermediate = pindexNew;
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// list of blocks that need to be connected afterwards
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std::vector<CBlockIndex*> vpindexSecondary;
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// Reorganize is costly in terms of db load, as it works in a single db transaction.
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// Try to limit how much needs to be done inside
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while (pindexIntermediate->pprev && pindexIntermediate->pprev->bnChainWork > pindexBest->bnChainWork)
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{
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vpindexSecondary.push_back(pindexIntermediate);
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pindexIntermediate = pindexIntermediate->pprev;
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}
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if (!vpindexSecondary.empty())
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printf("Postponing %i reconnects\n", vpindexSecondary.size());
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// Switch to new best branch
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if (!Reorganize(txdb, pindexIntermediate))
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{
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txdb.TxnAbort();
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InvalidChainFound(pindexNew);
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return error("SetBestChain() : Reorganize failed");
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}
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// Connect futher blocks
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BOOST_REVERSE_FOREACH(CBlockIndex *pindex, vpindexSecondary)
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{
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CBlock block;
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if (!block.ReadFromDisk(pindex))
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{
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printf("SetBestChain() : ReadFromDisk failed\n");
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break;
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}
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txdb.TxnBegin();
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// errors now are not fatal, we still did a reorganisation to a new chain in a valid way
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if (!block.SetBestChainInner(txdb, pindex))
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break;
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}
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}
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// Update best block in wallet (so we can detect restored wallets)
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@ -1030,6 +1030,9 @@ public:
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bool AddToBlockIndex(unsigned int nFile, unsigned int nBlockPos);
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bool CheckBlock() const;
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bool AcceptBlock();
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private:
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bool SetBestChainInner(CTxDB& txdb, CBlockIndex *pindexNew);
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};
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