Make CBlockIndex*es in net_processing const
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7dac1e5e9e
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80175472d1
3 changed files with 29 additions and 27 deletions
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@ -101,7 +101,7 @@ namespace {
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/** Blocks that are in flight, and that are in the queue to be downloaded. Protected by cs_main. */
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struct QueuedBlock {
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uint256 hash;
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CBlockIndex* pindex; //!< Optional.
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const CBlockIndex* pindex; //!< Optional.
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bool fValidatedHeaders; //!< Whether this block has validated headers at the time of request.
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std::unique_ptr<PartiallyDownloadedBlock> partialBlock; //!< Optional, used for CMPCTBLOCK downloads
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};
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@ -156,13 +156,13 @@ struct CNodeState {
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//! List of asynchronously-determined block rejections to notify this peer about.
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std::vector<CBlockReject> rejects;
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//! The best known block we know this peer has announced.
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CBlockIndex *pindexBestKnownBlock;
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const CBlockIndex *pindexBestKnownBlock;
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//! The hash of the last unknown block this peer has announced.
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uint256 hashLastUnknownBlock;
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//! The last full block we both have.
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CBlockIndex *pindexLastCommonBlock;
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const CBlockIndex *pindexLastCommonBlock;
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//! The best header we have sent our peer.
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CBlockIndex *pindexBestHeaderSent;
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const CBlockIndex *pindexBestHeaderSent;
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//! Length of current-streak of unconnecting headers announcements
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int nUnconnectingHeaders;
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//! Whether we've started headers synchronization with this peer.
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@ -331,7 +331,7 @@ bool MarkBlockAsReceived(const uint256& hash) {
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// Requires cs_main.
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// returns false, still setting pit, if the block was already in flight from the same peer
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// pit will only be valid as long as the same cs_main lock is being held
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bool MarkBlockAsInFlight(NodeId nodeid, const uint256& hash, const Consensus::Params& consensusParams, CBlockIndex *pindex = NULL, list<QueuedBlock>::iterator **pit = NULL) {
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bool MarkBlockAsInFlight(NodeId nodeid, const uint256& hash, const Consensus::Params& consensusParams, const CBlockIndex *pindex = NULL, list<QueuedBlock>::iterator **pit = NULL) {
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CNodeState *state = State(nodeid);
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assert(state != NULL);
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@ -432,7 +432,7 @@ bool CanDirectFetch(const Consensus::Params &consensusParams)
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}
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// Requires cs_main
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bool PeerHasHeader(CNodeState *state, CBlockIndex *pindex)
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bool PeerHasHeader(CNodeState *state, const CBlockIndex *pindex)
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{
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if (state->pindexBestKnownBlock && pindex == state->pindexBestKnownBlock->GetAncestor(pindex->nHeight))
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return true;
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@ -443,7 +443,7 @@ bool PeerHasHeader(CNodeState *state, CBlockIndex *pindex)
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/** Find the last common ancestor two blocks have.
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* Both pa and pb must be non-NULL. */
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CBlockIndex* LastCommonAncestor(CBlockIndex* pa, CBlockIndex* pb) {
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const CBlockIndex* LastCommonAncestor(const CBlockIndex* pa, const CBlockIndex* pb) {
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if (pa->nHeight > pb->nHeight) {
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pa = pa->GetAncestor(pb->nHeight);
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} else if (pb->nHeight > pa->nHeight) {
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@ -462,7 +462,7 @@ CBlockIndex* LastCommonAncestor(CBlockIndex* pa, CBlockIndex* pb) {
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/** Update pindexLastCommonBlock and add not-in-flight missing successors to vBlocks, until it has
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* at most count entries. */
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void FindNextBlocksToDownload(NodeId nodeid, unsigned int count, std::vector<CBlockIndex*>& vBlocks, NodeId& nodeStaller, const Consensus::Params& consensusParams) {
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void FindNextBlocksToDownload(NodeId nodeid, unsigned int count, std::vector<const CBlockIndex*>& vBlocks, NodeId& nodeStaller, const Consensus::Params& consensusParams) {
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if (count == 0)
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return;
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@ -490,8 +490,8 @@ void FindNextBlocksToDownload(NodeId nodeid, unsigned int count, std::vector<CBl
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if (state->pindexLastCommonBlock == state->pindexBestKnownBlock)
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return;
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std::vector<CBlockIndex*> vToFetch;
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CBlockIndex *pindexWalk = state->pindexLastCommonBlock;
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std::vector<const CBlockIndex*> vToFetch;
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const CBlockIndex *pindexWalk = state->pindexLastCommonBlock;
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// Never fetch further than the best block we know the peer has, or more than BLOCK_DOWNLOAD_WINDOW + 1 beyond the last
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// linked block we have in common with this peer. The +1 is so we can detect stalling, namely if we would be able to
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// download that next block if the window were 1 larger.
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@ -514,7 +514,7 @@ void FindNextBlocksToDownload(NodeId nodeid, unsigned int count, std::vector<CBl
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// are not yet downloaded and not in flight to vBlocks. In the mean time, update
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// pindexLastCommonBlock as long as all ancestors are already downloaded, or if it's
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// already part of our chain (and therefore don't need it even if pruned).
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BOOST_FOREACH(CBlockIndex* pindex, vToFetch) {
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BOOST_FOREACH(const CBlockIndex* pindex, vToFetch) {
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if (!pindex->IsValid(BLOCK_VALID_TREE)) {
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// We consider the chain that this peer is on invalid.
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return;
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@ -1049,7 +1049,7 @@ void static ProcessGetData(CNode* pfrom, const Consensus::Params& consensusParam
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}
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}
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uint32_t GetFetchFlags(CNode* pfrom, CBlockIndex* pprev, const Consensus::Params& chainparams) {
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uint32_t GetFetchFlags(CNode* pfrom, const CBlockIndex* pprev, const Consensus::Params& chainparams) {
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uint32_t nFetchFlags = 0;
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if ((pfrom->GetLocalServices() & NODE_WITNESS) && State(pfrom->GetId())->fHaveWitness) {
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nFetchFlags |= MSG_WITNESS_FLAG;
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@ -1456,7 +1456,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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LOCK(cs_main);
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// Find the last block the caller has in the main chain
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CBlockIndex* pindex = FindForkInGlobalIndex(chainActive, locator);
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const CBlockIndex* pindex = FindForkInGlobalIndex(chainActive, locator);
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// Send the rest of the chain
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if (pindex)
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@ -1552,7 +1552,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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}
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CNodeState *nodestate = State(pfrom->GetId());
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CBlockIndex* pindex = NULL;
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const CBlockIndex* pindex = NULL;
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if (locator.IsNull())
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{
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// If locator is null, return the hashStop block
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@ -1775,7 +1775,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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}
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}
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CBlockIndex *pindex = NULL;
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const CBlockIndex *pindex = NULL;
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CValidationState state;
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if (!ProcessNewBlockHeaders({cmpctblock.header}, state, chainparams, &pindex)) {
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int nDoS;
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@ -2051,7 +2051,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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return true;
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}
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CBlockIndex *pindexLast = NULL;
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const CBlockIndex *pindexLast = NULL;
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{
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LOCK(cs_main);
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CNodeState *nodestate = State(pfrom->GetId());
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@ -2128,8 +2128,8 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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// If this set of headers is valid and ends in a block with at least as
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// much work as our tip, download as much as possible.
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if (fCanDirectFetch && pindexLast->IsValid(BLOCK_VALID_TREE) && chainActive.Tip()->nChainWork <= pindexLast->nChainWork) {
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vector<CBlockIndex *> vToFetch;
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CBlockIndex *pindexWalk = pindexLast;
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vector<const CBlockIndex *> vToFetch;
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const CBlockIndex *pindexWalk = pindexLast;
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// Calculate all the blocks we'd need to switch to pindexLast, up to a limit.
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while (pindexWalk && !chainActive.Contains(pindexWalk) && vToFetch.size() <= MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
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if (!(pindexWalk->nStatus & BLOCK_HAVE_DATA) &&
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@ -2151,7 +2151,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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} else {
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vector<CInv> vGetData;
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// Download as much as possible, from earliest to latest.
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BOOST_REVERSE_FOREACH(CBlockIndex *pindex, vToFetch) {
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BOOST_REVERSE_FOREACH(const CBlockIndex *pindex, vToFetch) {
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if (nodestate->nBlocksInFlight >= MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
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// Can't download any more from this peer
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break;
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@ -2740,7 +2740,7 @@ bool SendMessages(CNode* pto, CConnman& connman, std::atomic<bool>& interruptMsg
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bool fRevertToInv = ((!state.fPreferHeaders &&
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(!state.fPreferHeaderAndIDs || pto->vBlockHashesToAnnounce.size() > 1)) ||
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pto->vBlockHashesToAnnounce.size() > MAX_BLOCKS_TO_ANNOUNCE);
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CBlockIndex *pBestIndex = NULL; // last header queued for delivery
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const CBlockIndex *pBestIndex = NULL; // last header queued for delivery
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ProcessBlockAvailability(pto->id); // ensure pindexBestKnownBlock is up-to-date
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if (!fRevertToInv) {
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@ -2751,7 +2751,7 @@ bool SendMessages(CNode* pto, CConnman& connman, std::atomic<bool>& interruptMsg
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BOOST_FOREACH(const uint256 &hash, pto->vBlockHashesToAnnounce) {
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BlockMap::iterator mi = mapBlockIndex.find(hash);
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assert(mi != mapBlockIndex.end());
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CBlockIndex *pindex = mi->second;
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const CBlockIndex *pindex = mi->second;
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if (chainActive[pindex->nHeight] != pindex) {
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// Bail out if we reorged away from this block
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fRevertToInv = true;
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@ -2828,7 +2828,7 @@ bool SendMessages(CNode* pto, CConnman& connman, std::atomic<bool>& interruptMsg
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const uint256 &hashToAnnounce = pto->vBlockHashesToAnnounce.back();
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BlockMap::iterator mi = mapBlockIndex.find(hashToAnnounce);
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assert(mi != mapBlockIndex.end());
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CBlockIndex *pindex = mi->second;
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const CBlockIndex *pindex = mi->second;
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// Warn if we're announcing a block that is not on the main chain.
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// This should be very rare and could be optimized out.
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@ -3013,10 +3013,10 @@ bool SendMessages(CNode* pto, CConnman& connman, std::atomic<bool>& interruptMsg
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//
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vector<CInv> vGetData;
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if (!pto->fClient && (fFetch || !IsInitialBlockDownload()) && state.nBlocksInFlight < MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
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vector<CBlockIndex*> vToDownload;
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vector<const CBlockIndex*> vToDownload;
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NodeId staller = -1;
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FindNextBlocksToDownload(pto->GetId(), MAX_BLOCKS_IN_TRANSIT_PER_PEER - state.nBlocksInFlight, vToDownload, staller, consensusParams);
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BOOST_FOREACH(CBlockIndex *pindex, vToDownload) {
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BOOST_FOREACH(const CBlockIndex *pindex, vToDownload) {
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uint32_t nFetchFlags = GetFetchFlags(pto, pindex->pprev, consensusParams);
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vGetData.push_back(CInv(MSG_BLOCK | nFetchFlags, pindex->GetBlockHash()));
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MarkBlockAsInFlight(pto->GetId(), pindex->GetBlockHash(), consensusParams, pindex);
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@ -3030,12 +3030,14 @@ static bool AcceptBlockHeader(const CBlockHeader& block, CValidationState& state
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}
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// Exposed wrapper for AcceptBlockHeader
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bool ProcessNewBlockHeaders(const std::vector<CBlockHeader>& headers, CValidationState& state, const CChainParams& chainparams, CBlockIndex** ppindex)
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bool ProcessNewBlockHeaders(const std::vector<CBlockHeader>& headers, CValidationState& state, const CChainParams& chainparams, const CBlockIndex** ppindex)
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{
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{
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LOCK(cs_main);
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for (const CBlockHeader& header : headers) {
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if (!AcceptBlockHeader(header, state, chainparams, ppindex)) {
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// cast away the ppindex-returns-const CBlockIndex - we're just assigning it to a CBlockIndex*
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// that we own and is updated non-const anyway
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if (!AcceptBlockHeader(header, state, chainparams, const_cast<CBlockIndex**>(ppindex))) {
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return false;
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}
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}
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@ -243,7 +243,7 @@ bool ProcessNewBlock(const CChainParams& chainparams, const std::shared_ptr<cons
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* @param[in] chainparams The params for the chain we want to connect to
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* @param[out] ppindex If set, the pointer will be set to point to the last new block index object for the given headers
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*/
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bool ProcessNewBlockHeaders(const std::vector<CBlockHeader>& block, CValidationState& state, const CChainParams& chainparams, CBlockIndex** ppindex=NULL);
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bool ProcessNewBlockHeaders(const std::vector<CBlockHeader>& block, CValidationState& state, const CChainParams& chainparams, const CBlockIndex** ppindex=NULL);
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/** Check whether enough disk space is available for an incoming block */
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bool CheckDiskSpace(uint64_t nAdditionalBytes = 0);
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