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Merge #6996: Add preciousblock RPC
5805ac8
Add preciousblock tests (Pieter Wuille)5127c4f
Add preciousblock RPC (Pieter Wuille)
This commit is contained in:
commit
7f71a3c591
@ -140,6 +140,7 @@ testScripts = [
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'invalidtxrequest.py',
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'abandonconflict.py',
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'p2p-versionbits-warning.py',
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'preciousblock.py',
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'importprunedfunds.py',
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'signmessages.py',
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'p2p-compactblocks.py',
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116
qa/rpc-tests/preciousblock.py
Executable file
116
qa/rpc-tests/preciousblock.py
Executable file
@ -0,0 +1,116 @@
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#!/usr/bin/env python3
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# Copyright (c) 2015 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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#
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# Test PreciousBlock code
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#
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import *
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def unidirectional_node_sync_via_rpc(node_src, node_dest):
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blocks_to_copy = []
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blockhash = node_src.getbestblockhash()
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while True:
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try:
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assert(len(node_dest.getblock(blockhash, False)) > 0)
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break
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except:
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blocks_to_copy.append(blockhash)
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blockhash = node_src.getblockheader(blockhash, True)['previousblockhash']
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blocks_to_copy.reverse()
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for blockhash in blocks_to_copy:
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blockdata = node_src.getblock(blockhash, False)
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assert(node_dest.submitblock(blockdata) in (None, 'inconclusive'))
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def node_sync_via_rpc(nodes):
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for node_src in nodes:
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for node_dest in nodes:
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if node_src is node_dest:
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continue
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unidirectional_node_sync_via_rpc(node_src, node_dest)
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class PreciousTest(BitcoinTestFramework):
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def setup_chain(self):
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print("Initializing test directory "+self.options.tmpdir)
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initialize_chain_clean(self.options.tmpdir, 3)
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def setup_network(self):
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self.nodes = []
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self.is_network_split = False
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self.nodes.append(start_node(0, self.options.tmpdir, ["-debug"]))
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self.nodes.append(start_node(1, self.options.tmpdir, ["-debug"]))
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self.nodes.append(start_node(2, self.options.tmpdir, ["-debug"]))
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def run_test(self):
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print("Ensure submitblock can in principle reorg to a competing chain")
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self.nodes[0].generate(1)
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assert(self.nodes[0].getblockcount() == 1)
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(hashY, hashZ) = self.nodes[1].generate(2)
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assert(self.nodes[1].getblockcount() == 2)
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node_sync_via_rpc(self.nodes[0:3])
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assert(self.nodes[0].getbestblockhash() == hashZ)
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print("Mine blocks A-B-C on Node 0")
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(hashA, hashB, hashC) = self.nodes[0].generate(3)
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assert(self.nodes[0].getblockcount() == 5)
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print("Mine competing blocks E-F-G on Node 1")
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(hashE, hashF, hashG) = self.nodes[1].generate(3)
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assert(self.nodes[1].getblockcount() == 5)
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assert(hashC != hashG)
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print("Connect nodes and check no reorg occurs")
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# Submit competing blocks via RPC so any reorg should occur before we proceed (no way to wait on inaction for p2p sync)
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node_sync_via_rpc(self.nodes[0:2])
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connect_nodes_bi(self.nodes,0,1)
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assert(self.nodes[0].getbestblockhash() == hashC)
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assert(self.nodes[1].getbestblockhash() == hashG)
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print("Make Node0 prefer block G")
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self.nodes[0].preciousblock(hashG)
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assert(self.nodes[0].getbestblockhash() == hashG)
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print("Make Node0 prefer block C again")
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self.nodes[0].preciousblock(hashC)
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assert(self.nodes[0].getbestblockhash() == hashC)
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print("Make Node1 prefer block C")
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self.nodes[1].preciousblock(hashC)
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sync_chain(self.nodes[0:2]) # wait because node 1 may not have downloaded hashC
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assert(self.nodes[1].getbestblockhash() == hashC)
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print("Make Node1 prefer block G again")
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self.nodes[1].preciousblock(hashG)
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assert(self.nodes[1].getbestblockhash() == hashG)
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print("Make Node0 prefer block G again")
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self.nodes[0].preciousblock(hashG)
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assert(self.nodes[0].getbestblockhash() == hashG)
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print("Make Node1 prefer block C again")
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self.nodes[1].preciousblock(hashC)
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assert(self.nodes[1].getbestblockhash() == hashC)
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print("Mine another block (E-F-G-)H on Node 0 and reorg Node 1")
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self.nodes[0].generate(1)
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assert(self.nodes[0].getblockcount() == 6)
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sync_blocks(self.nodes[0:2])
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hashH = self.nodes[0].getbestblockhash()
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assert(self.nodes[1].getbestblockhash() == hashH)
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print("Node1 should not be able to prefer block C anymore")
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self.nodes[1].preciousblock(hashC)
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assert(self.nodes[1].getbestblockhash() == hashH)
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print("Mine competing blocks I-J-K-L on Node 2")
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self.nodes[2].generate(4)
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assert(self.nodes[2].getblockcount() == 6)
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hashL = self.nodes[2].getbestblockhash()
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print("Connect nodes and check no reorg occurs")
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node_sync_via_rpc(self.nodes[0:3])
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connect_nodes_bi(self.nodes,1,2)
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connect_nodes_bi(self.nodes,0,2)
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assert(self.nodes[0].getbestblockhash() == hashH)
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assert(self.nodes[1].getbestblockhash() == hashH)
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assert(self.nodes[2].getbestblockhash() == hashL)
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print("Make Node1 prefer block L")
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self.nodes[1].preciousblock(hashL)
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assert(self.nodes[1].getbestblockhash() == hashL)
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print("Make Node2 prefer block H")
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self.nodes[2].preciousblock(hashH)
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assert(self.nodes[2].getbestblockhash() == hashH)
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if __name__ == '__main__':
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PreciousTest().main()
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@ -137,6 +137,16 @@ def sync_blocks(rpc_connections, wait=1, timeout=60):
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maxheight = max(heights)
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raise AssertionError("Block sync failed")
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def sync_chain(rpc_connections, wait=1):
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"""
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Wait until everybody has the same best block
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"""
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while True:
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counts = [ x.getbestblockhash() for x in rpc_connections ]
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if counts == [ counts[0] ]*len(counts):
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break
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time.sleep(wait)
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def sync_mempools(rpc_connections, wait=1, timeout=60):
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"""
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Wait until everybody has the same transactions in their memory
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@ -200,7 +200,7 @@ public:
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unsigned int nNonce;
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//! (memory only) Sequential id assigned to distinguish order in which blocks are received.
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uint32_t nSequenceId;
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int32_t nSequenceId;
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void SetNull()
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{
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38
src/main.cpp
38
src/main.cpp
@ -169,7 +169,11 @@ namespace {
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*/
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CCriticalSection cs_nBlockSequenceId;
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/** Blocks loaded from disk are assigned id 0, so start the counter at 1. */
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uint32_t nBlockSequenceId = 1;
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int32_t nBlockSequenceId = 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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arith_uint256 nLastPreciousChainwork = 0;
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/**
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* Sources of received blocks, saved to be able to send them reject
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@ -3137,6 +3141,36 @@ bool ActivateBestChain(CValidationState &state, const CChainParams& chainparams,
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return true;
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}
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bool PreciousBlock(CValidationState& state, const CChainParams& params, CBlockIndex *pindex)
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{
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{
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LOCK(cs_main);
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if (pindex->nChainWork < chainActive.Tip()->nChainWork) {
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// Nothing to do, this block is not at the tip.
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return true;
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}
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if (chainActive.Tip()->nChainWork > nLastPreciousChainwork) {
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// The chain has been extended since the last call, reset the counter.
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nBlockReverseSequenceId = -1;
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}
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nLastPreciousChainwork = chainActive.Tip()->nChainWork;
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setBlockIndexCandidates.erase(pindex);
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pindex->nSequenceId = nBlockReverseSequenceId;
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if (nBlockReverseSequenceId > std::numeric_limits<int32_t>::min()) {
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// We can't keep reducing the counter if somebody really wants to
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// call preciousblock 2**31-1 times on the same set of tips...
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nBlockReverseSequenceId--;
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}
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if (pindex->IsValid(BLOCK_VALID_TRANSACTIONS) && pindex->nChainTx) {
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setBlockIndexCandidates.insert(pindex);
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PruneBlockIndexCandidates();
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}
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}
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return ActivateBestChain(state, params);
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}
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bool InvalidateBlock(CValidationState& state, const CChainParams& chainparams, CBlockIndex *pindex)
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{
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AssertLockHeld(cs_main);
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@ -4531,7 +4565,7 @@ void static CheckBlockIndex(const Consensus::Params& consensusParams)
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assert(pindex->GetBlockHash() == consensusParams.hashGenesisBlock); // Genesis block's hash must match.
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assert(pindex == chainActive.Genesis()); // The current active chain's genesis block must be this block.
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}
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if (pindex->nChainTx == 0) assert(pindex->nSequenceId == 0); // nSequenceId can't be set for blocks that aren't linked
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if (pindex->nChainTx == 0) 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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// 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 (!fHavePruned) {
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@ -509,6 +509,9 @@ public:
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/** Find the last common block between the parameter chain and a locator. */
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CBlockIndex* FindForkInGlobalIndex(const CChain& chain, const CBlockLocator& locator);
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/** Mark a block as precious and reorganize. */
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bool PreciousBlock(CValidationState& state, const CChainParams& params, CBlockIndex *pindex);
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/** Mark a block as invalid. */
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bool InvalidateBlock(CValidationState& state, const CChainParams& chainparams, CBlockIndex *pindex);
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@ -1251,6 +1251,44 @@ UniValue getmempoolinfo(const UniValue& params, bool fHelp)
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return mempoolInfoToJSON();
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}
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UniValue preciousblock(const UniValue& params, bool fHelp)
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{
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if (fHelp || params.size() != 1)
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throw runtime_error(
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"preciousblock \"hash\"\n"
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"\nTreats a block as if it were received before others with the same work.\n"
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"\nA later preciousblock call can override the effect of an earlier one.\n"
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"\nThe effects of preciousblock are not retained across restarts.\n"
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"\nArguments:\n"
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"1. hash (string, required) the hash of the block to mark as precious\n"
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"\nResult:\n"
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"\nExamples:\n"
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+ HelpExampleCli("preciousblock", "\"blockhash\"")
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+ HelpExampleRpc("preciousblock", "\"blockhash\"")
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);
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std::string strHash = params[0].get_str();
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uint256 hash(uint256S(strHash));
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CBlockIndex* pblockindex;
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{
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LOCK(cs_main);
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if (mapBlockIndex.count(hash) == 0)
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throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Block not found");
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pblockindex = mapBlockIndex[hash];
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}
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CValidationState state;
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PreciousBlock(state, Params(), pblockindex);
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if (!state.IsValid()) {
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throw JSONRPCError(RPC_DATABASE_ERROR, state.GetRejectReason());
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}
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return NullUniValue;
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}
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UniValue invalidateblock(const UniValue& params, bool fHelp)
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{
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if (fHelp || params.size() != 1)
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@ -1346,6 +1384,8 @@ static const CRPCCommand commands[] =
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{ "blockchain", "gettxoutsetinfo", &gettxoutsetinfo, true },
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{ "blockchain", "verifychain", &verifychain, true },
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{ "blockchain", "preciousblock", &preciousblock, true },
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/* Not shown in help */
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{ "hidden", "invalidateblock", &invalidateblock, true },
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{ "hidden", "reconsiderblock", &reconsiderblock, true },
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