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p2p: Avoid prematurely clearing download state for other peers
Github-Pull: #27608 Rebased-From: 52e52071e01f4e98d87a47e1d5f3c5c3cc6dbaf4
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@ -882,8 +882,11 @@ private:
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/** Remove this block from our tracked requested blocks. Called if:
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* - the block has been received from a peer
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* - the request for the block has timed out
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* If "from_peer" is specified, then only remove the block if it is in
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* flight from that peer (to avoid one peer's network traffic from
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* affecting another's state).
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*/
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void RemoveBlockRequest(const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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void RemoveBlockRequest(const uint256& hash, std::optional<NodeId> from_peer) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
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/* Mark a block as in flight
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* Returns false, still setting pit, if the block was already in flight from the same peer
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@ -1119,7 +1122,7 @@ bool PeerManagerImpl::IsBlockRequested(const uint256& hash)
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return mapBlocksInFlight.find(hash) != mapBlocksInFlight.end();
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}
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void PeerManagerImpl::RemoveBlockRequest(const uint256& hash)
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void PeerManagerImpl::RemoveBlockRequest(const uint256& hash, std::optional<NodeId> from_peer)
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{
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auto it = mapBlocksInFlight.find(hash);
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if (it == mapBlocksInFlight.end()) {
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@ -1128,6 +1131,12 @@ void PeerManagerImpl::RemoveBlockRequest(const uint256& hash)
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}
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auto [node_id, list_it] = it->second;
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if (from_peer && node_id != *from_peer) {
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// Block was requested by another peer
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return;
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}
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CNodeState *state = State(node_id);
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assert(state != nullptr);
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@ -1163,7 +1172,7 @@ bool PeerManagerImpl::BlockRequested(NodeId nodeid, const CBlockIndex& block, st
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}
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// Make sure it's not listed somewhere already.
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RemoveBlockRequest(hash);
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RemoveBlockRequest(hash, std::nullopt);
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std::list<QueuedBlock>::iterator it = state->vBlocksInFlight.insert(state->vBlocksInFlight.end(),
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{&block, std::unique_ptr<PartiallyDownloadedBlock>(pit ? new PartiallyDownloadedBlock(&m_mempool) : nullptr)});
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@ -3154,6 +3163,11 @@ void PeerManagerImpl::ProcessBlock(CNode& node, const std::shared_ptr<const CBlo
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m_chainman.ProcessNewBlock(block, force_processing, min_pow_checked, &new_block);
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if (new_block) {
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node.m_last_block_time = GetTime<std::chrono::seconds>();
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// In case this block came from a different peer than we requested
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// from, we can erase the block request now anyway (as we just stored
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// this block to disk).
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LOCK(cs_main);
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RemoveBlockRequest(block->GetHash(), std::nullopt);
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} else {
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LOCK(cs_main);
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mapBlockSource.erase(block->GetHash());
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@ -4301,7 +4315,7 @@ void PeerManagerImpl::ProcessMessage(CNode& pfrom, const std::string& msg_type,
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PartiallyDownloadedBlock& partialBlock = *(*queuedBlockIt)->partialBlock;
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ReadStatus status = partialBlock.InitData(cmpctblock, vExtraTxnForCompact);
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if (status == READ_STATUS_INVALID) {
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RemoveBlockRequest(pindex->GetBlockHash()); // Reset in-flight state in case Misbehaving does not result in a disconnect
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RemoveBlockRequest(pindex->GetBlockHash(), pfrom.GetId()); // Reset in-flight state in case Misbehaving does not result in a disconnect
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Misbehaving(*peer, 100, "invalid compact block");
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return;
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} else if (status == READ_STATUS_FAILED) {
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@ -4396,7 +4410,7 @@ void PeerManagerImpl::ProcessMessage(CNode& pfrom, const std::string& msg_type,
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// process from some other peer. We do this after calling
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// ProcessNewBlock so that a malleated cmpctblock announcement
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// can't be used to interfere with block relay.
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RemoveBlockRequest(pblock->GetHash());
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RemoveBlockRequest(pblock->GetHash(), std::nullopt);
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}
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}
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return;
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@ -4428,7 +4442,7 @@ void PeerManagerImpl::ProcessMessage(CNode& pfrom, const std::string& msg_type,
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PartiallyDownloadedBlock& partialBlock = *it->second.second->partialBlock;
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ReadStatus status = partialBlock.FillBlock(*pblock, resp.txn);
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if (status == READ_STATUS_INVALID) {
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RemoveBlockRequest(resp.blockhash); // Reset in-flight state in case Misbehaving does not result in a disconnect
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RemoveBlockRequest(resp.blockhash, pfrom.GetId()); // Reset in-flight state in case Misbehaving does not result in a disconnect
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Misbehaving(*peer, 100, "invalid compact block/non-matching block transactions");
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return;
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} else if (status == READ_STATUS_FAILED) {
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@ -4454,7 +4468,7 @@ void PeerManagerImpl::ProcessMessage(CNode& pfrom, const std::string& msg_type,
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// though the block was successfully read, and rely on the
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// handling in ProcessNewBlock to ensure the block index is
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// updated, etc.
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RemoveBlockRequest(resp.blockhash); // it is now an empty pointer
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RemoveBlockRequest(resp.blockhash, pfrom.GetId()); // it is now an empty pointer
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fBlockRead = true;
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// mapBlockSource is used for potentially punishing peers and
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// updating which peers send us compact blocks, so the race
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@ -4543,7 +4557,7 @@ void PeerManagerImpl::ProcessMessage(CNode& pfrom, const std::string& msg_type,
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// Always process the block if we requested it, since we may
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// need it even when it's not a candidate for a new best tip.
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forceProcessing = IsBlockRequested(hash);
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RemoveBlockRequest(hash);
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RemoveBlockRequest(hash, pfrom.GetId());
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// mapBlockSource is only used for punishing peers and setting
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// which peers send us compact blocks, so the race between here and
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// cs_main in ProcessNewBlock is fine.
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