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Merge 177d07f659
into a50af6e4c4
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commit
7e2967a734
6 changed files with 185 additions and 10 deletions
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@ -35,6 +35,9 @@ static constexpr int64_t MAX_FUTURE_BLOCK_TIME = 2 * 60 * 60;
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* MAX_FUTURE_BLOCK_TIME.
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*/
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static constexpr int64_t TIMESTAMP_WINDOW = MAX_FUTURE_BLOCK_TIME;
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//! Init values for CBlockIndex nSequenceId when loaded from disk
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static constexpr int32_t SEQ_ID_BEST_CHAIN_FROM_DISK = 0;
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static constexpr int32_t SEQ_ID_INIT_FROM_DISK = 1;
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/**
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* Maximum gap between node time and block time used
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@ -191,7 +194,9 @@ public:
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uint32_t nNonce{0};
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//! (memory only) Sequential id assigned to distinguish order in which blocks are received.
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int32_t nSequenceId{0};
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//! Initialized to SEQ_ID_INIT_FROM_DISK{1} when loading blocks from disk, except for blocks
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//! belonging to the best chain which overwrite it to SEQ_ID_BEST_CHAIN_FROM_DISK{0}.
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int32_t nSequenceId{SEQ_ID_INIT_FROM_DISK};
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//! (memory only) Maximum nTime in the chain up to and including this block.
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unsigned int nTimeMax{0};
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@ -159,12 +159,13 @@ bool CBlockIndexWorkComparator::operator()(const CBlockIndex* pa, const CBlockIn
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if (pa->nChainWork > pb->nChainWork) return false;
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if (pa->nChainWork < pb->nChainWork) return true;
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// ... then by earliest time received, ...
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// ... then by earliest activatable time, ...
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if (pa->nSequenceId < pb->nSequenceId) return false;
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if (pa->nSequenceId > pb->nSequenceId) return true;
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// Use pointer address as tie breaker (should only happen with blocks
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// loaded from disk, as those all have id 0).
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// loaded from disk, as those share the same id: 0 for blocks on the
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// best chain, 1 for all others).
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if (pa < pb) return false;
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if (pa > pb) return true;
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@ -215,7 +216,7 @@ CBlockIndex* BlockManager::AddToBlockIndex(const CBlockHeader& block, CBlockInde
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// We assign the sequence id to blocks only when the full data is available,
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// to avoid miners withholding blocks but broadcasting headers, to get a
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// competitive advantage.
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pindexNew->nSequenceId = 0;
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pindexNew->nSequenceId = SEQ_ID_INIT_FROM_DISK;
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pindexNew->phashBlock = &((*mi).first);
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BlockMap::iterator miPrev = m_block_index.find(block.hashPrevBlock);
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@ -4706,7 +4706,7 @@ bool Chainstate::LoadChainTip()
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AssertLockHeld(cs_main);
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const CCoinsViewCache& coins_cache = CoinsTip();
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assert(!coins_cache.GetBestBlock().IsNull()); // Never called when the coins view is empty
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const CBlockIndex* tip = m_chain.Tip();
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CBlockIndex* tip = m_chain.Tip();
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if (tip && tip->GetBlockHash() == coins_cache.GetBestBlock()) {
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return true;
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@ -4718,9 +4718,22 @@ bool Chainstate::LoadChainTip()
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return false;
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}
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m_chain.SetTip(*pindex);
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tip = m_chain.Tip();
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// Make sure our chain tip before shutting down scores better than any other candidate
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// to maintain a consistent best tip over reboots
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auto target = tip;
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while (target) {
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target->nSequenceId = SEQ_ID_BEST_CHAIN_FROM_DISK;
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target = target->pprev;
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}
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// Block index candidates are loaded before the chain tip, so we need to replace this entry
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// Otherwise the scoring will be based on the memory address location instead of the nSequenceId
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setBlockIndexCandidates.erase(tip);
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TryAddBlockIndexCandidate(tip);
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PruneBlockIndexCandidates();
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tip = m_chain.Tip();
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LogPrintf("Loaded best chain: hashBestChain=%s height=%d date=%s progress=%f\n",
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tip->GetBlockHash().ToString(),
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m_chain.Height(),
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@ -5365,7 +5378,9 @@ void ChainstateManager::CheckBlockIndex()
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}
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}
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}
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if (!pindex->HaveNumChainTxs()) assert(pindex->nSequenceId <= 0); // nSequenceId can't be set positive for blocks that aren't linked (negative is used for preciousblock)
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// nSequenceId can't be set higher than SEQ_ID_INIT_FROM_DISK{1} for blocks that aren't linked
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// (negative is used for preciousblock, SEQ_ID_BEST_CHAIN_FROM_DISK{0} for active chain when loaded from disk)
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if (!pindex->HaveNumChainTxs()) assert(pindex->nSequenceId <= SEQ_ID_INIT_FROM_DISK);
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// VALID_TRANSACTIONS is equivalent to nTx > 0 for all nodes (whether or not pruning has occurred).
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// HAVE_DATA is only equivalent to nTx > 0 (or VALID_TRANSACTIONS) if no pruning has occurred.
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if (!m_blockman.m_have_pruned) {
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@ -1021,8 +1021,10 @@ public:
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* Every received block is assigned a unique and increasing identifier, so we
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* know which one to give priority in case of a fork.
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*/
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/** Blocks loaded from disk are assigned id 0, so start the counter at 1. */
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int32_t nBlockSequenceId GUARDED_BY(::cs_main) = 1;
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/** Blocks loaded from disk are assigned id SEQ_ID_INIT_FROM_DISK{1}
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* (SEQ_ID_BEST_CHAIN_FROM_DISK{0} if they belong to the best chain loaded from disk),
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* so start the counter after that. **/
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int32_t nBlockSequenceId GUARDED_BY(::cs_main) = SEQ_ID_INIT_FROM_DISK + 1;
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/** Decreasing counter (used by subsequent preciousblock calls). */
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int32_t nBlockReverseSequenceId = -1;
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/** chainwork for the last block that preciousblock has been applied to. */
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@ -1033,7 +1035,7 @@ public:
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void ResetBlockSequenceCounters() EXCLUSIVE_LOCKS_REQUIRED(::cs_main)
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{
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AssertLockHeld(::cs_main);
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nBlockSequenceId = 1;
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nBlockSequenceId = SEQ_ID_INIT_FROM_DISK + 1;
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nBlockReverseSequenceId = -1;
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}
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151
test/functional/feature_chain_tiebreaks.py
Executable file
151
test/functional/feature_chain_tiebreaks.py
Executable file
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@ -0,0 +1,151 @@
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#!/usr/bin/env python3
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# Copyright (c) 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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"""Test that the correct active block is chosen in complex reorgs."""
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from test_framework.blocktools import create_block
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from test_framework.messages import CBlockHeader
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from test_framework.p2p import P2PDataStore
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import assert_equal
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class ChainTiebreaksTest(BitcoinTestFramework):
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def set_test_params(self):
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self.num_nodes = 2
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self.setup_clean_chain = True
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@staticmethod
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def send_headers(node, blocks):
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"""Submit headers for blocks to node."""
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for block in blocks:
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# Use RPC rather than P2P, to prevent the message from being interpreted as a block
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# announcement.
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node.submitheader(hexdata=CBlockHeader(block).serialize().hex())
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def test_chain_split_in_memory(self):
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node = self.nodes[0]
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# Add P2P connection to bitcoind
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peer = node.add_p2p_connection(P2PDataStore())
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self.log.info('Precomputing blocks')
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#
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# /- B3 -- B7
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# B1 \- B8
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# / \
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# / \ B4 -- B9
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# B0 \- B10
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# \
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# \ /- B5
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# B2
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# \- B6
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#
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blocks = []
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# Construct B0, building off genesis.
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start_height = node.getblockcount()
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blocks.append(create_block(
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hashprev=int(node.getbestblockhash(), 16),
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tmpl={"height": start_height + 1}
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))
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blocks[-1].solve()
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# Construct B1-B10.
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for i in range(1, 11):
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blocks.append(create_block(
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hashprev=int(blocks[(i - 1) >> 1].hash, 16),
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tmpl={
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"height": start_height + (i + 1).bit_length(),
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# Make sure each block has a different hash.
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"curtime": blocks[-1].nTime + 1,
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}
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))
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blocks[-1].solve()
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self.log.info('Make sure B0 is accepted normally')
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peer.send_blocks_and_test([blocks[0]], node, success=True)
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# B0 must be active chain now.
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assert_equal(node.getbestblockhash(), blocks[0].hash)
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self.log.info('Send B1 and B2 headers, and then blocks in opposite order')
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self.send_headers(node, blocks[1:3])
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peer.send_blocks_and_test([blocks[2]], node, success=True)
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peer.send_blocks_and_test([blocks[1]], node, success=False)
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# B2 must be active chain now, as full data for B2 was received first.
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assert_equal(node.getbestblockhash(), blocks[2].hash)
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self.log.info('Send all further headers in order')
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self.send_headers(node, blocks[3:])
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# B2 is still the active chain, headers don't change this.
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assert_equal(node.getbestblockhash(), blocks[2].hash)
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self.log.info('Send blocks B7-B10')
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peer.send_blocks_and_test([blocks[7]], node, success=False)
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peer.send_blocks_and_test([blocks[8]], node, success=False)
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peer.send_blocks_and_test([blocks[9]], node, success=False)
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peer.send_blocks_and_test([blocks[10]], node, success=False)
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# B2 is still the active chain, as B7-B10 have missing parents.
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assert_equal(node.getbestblockhash(), blocks[2].hash)
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self.log.info('Send parents B3-B4 of B8-B10 in reverse order')
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peer.send_blocks_and_test([blocks[4]], node, success=False, force_send=True)
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peer.send_blocks_and_test([blocks[3]], node, success=False, force_send=True)
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# B9 is now active. Despite B7 being received earlier, the missing parent.
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assert_equal(node.getbestblockhash(), blocks[9].hash)
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self.log.info('Invalidate B9-B10')
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node.invalidateblock(blocks[9].hash)
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node.invalidateblock(blocks[10].hash)
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# B7 is now active.
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assert_equal(node.getbestblockhash(), blocks[7].hash)
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# Invalidate blocks to start fresh on the next test
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node.invalidateblock(blocks[0].hash)
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def test_chain_split_from_disk(self):
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node = self.nodes[0]
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peer = node.add_p2p_connection(P2PDataStore())
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self.log.info('Precomputing blocks')
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#
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# A1
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# /
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# G
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# \
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# A2
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#
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blocks = []
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# Construct two blocks building from genesis.
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start_height = node.getblockcount()
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genesis_block = node.getblock(node.getblockhash(start_height))
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prev_time = genesis_block["time"]
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for i in range(0, 2):
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blocks.append(create_block(
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hashprev=int(genesis_block["hash"], 16),
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tmpl={"height": start_height + 1,
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# Make sure each block has a different hash.
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"curtime": prev_time + i + 1,
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}
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))
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blocks[-1].solve()
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# Send blocks and test the last one is not connected
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self.log.info('Send A1 and A2. Make sure than only the former connects')
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peer.send_blocks_and_test([blocks[0]], node, success=True)
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peer.send_blocks_and_test([blocks[1]], node, success=False)
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self.log.info('Restart the node and check that the best tip before restarting matched the ones afterwards')
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# Restart and check enough times to this to eventually fail if the logic is broken
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for _ in range(10):
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self.restart_node(0)
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assert_equal(blocks[0].hash, node.getbestblockhash())
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def run_test(self):
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self.test_chain_split_in_memory()
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self.test_chain_split_from_disk()
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if __name__ == '__main__':
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ChainTiebreaksTest(__file__).main()
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@ -373,6 +373,7 @@ BASE_SCRIPTS = [
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'feature_includeconf.py',
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'feature_addrman.py',
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'feature_asmap.py',
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'feature_chain_tiebreaks.py',
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'feature_fastprune.py',
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'feature_framework_miniwallet.py',
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'mempool_unbroadcast.py',
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