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Have most tests, benchmarks and fuzzers go through the mining interface. This is a refactor: it does not change what blocks are created, just how the creation calls are made. This avoids most direct test, benchmark and fuzzer use of node::BlockAssembler::Options, making it easier to drop in a later commit. Two exceptions which use BlockAssembler directly: - one check in test/miner_tests.cpp needs m_package_feerates - fuzz/tx_pool.cpp Finish() doesn't have access to a NodeContext Move test_block_validity from BlockAssembler::Options to BlockCreateOptions so bench/block_assemble.cpp can continue to set it. Just like coinbase_output_script, this is not exposed to IPC clients. Inline options variable in places where it's only needed once. We also drop one unused PrepareBlock declaration and one unused implementation. TestChain100Setup::CreateBlock no longer needs a chainstate argument, which in turn means it can be dropped from CreateAndProcessBlock. Using the Mining interface here also requires marking the test KernelNotifications chainstate as loaded after LoadVerifyActivateChainstate().
136 lines
4.8 KiB
C++
136 lines
4.8 KiB
C++
// Copyright (c) 2019-present 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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#include <test/util/mining.h>
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#include <chainparams.h>
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#include <consensus/merkle.h>
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#include <consensus/validation.h>
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#include <interfaces/mining.h>
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#include <key_io.h>
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#include <node/context.h>
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#include <pow.h>
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#include <primitives/transaction.h>
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#include <test/util/script.h>
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#include <util/check.h>
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#include <validation.h>
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#include <validationinterface.h>
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#include <versionbits.h>
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#include <algorithm>
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#include <memory>
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using node::NodeContext;
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COutPoint generatetoaddress(const NodeContext& node, const std::string& address)
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{
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const auto dest = DecodeDestination(address);
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assert(IsValidDestination(dest));
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return MineBlock(node, {
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.coinbase_output_script = GetScriptForDestination(dest),
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});
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}
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std::vector<std::shared_ptr<CBlock>> CreateBlockChain(size_t total_height, const CChainParams& params)
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{
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std::vector<std::shared_ptr<CBlock>> ret{total_height};
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auto time{params.GenesisBlock().nTime};
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// NOTE: here `height` does not correspond to the block height but the block height - 1.
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for (size_t height{0}; height < total_height; ++height) {
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CBlock& block{*(ret.at(height) = std::make_shared<CBlock>())};
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CMutableTransaction coinbase_tx;
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coinbase_tx.nLockTime = static_cast<uint32_t>(height);
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coinbase_tx.vin.resize(1);
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coinbase_tx.vin[0].prevout.SetNull();
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coinbase_tx.vin[0].nSequence = CTxIn::MAX_SEQUENCE_NONFINAL; // Make sure timelock is enforced.
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coinbase_tx.vout.resize(1);
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coinbase_tx.vout[0].scriptPubKey = P2WSH_OP_TRUE;
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coinbase_tx.vout[0].nValue = GetBlockSubsidy(height + 1, params.GetConsensus());
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// Always include OP_0 as a dummy extraNonce.
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coinbase_tx.vin[0].scriptSig = CScript() << (height + 1) << OP_0;
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block.vtx = {MakeTransactionRef(std::move(coinbase_tx))};
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block.nVersion = VERSIONBITS_LAST_OLD_BLOCK_VERSION;
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block.hashPrevBlock = (height >= 1 ? *ret.at(height - 1) : params.GenesisBlock()).GetHash();
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block.hashMerkleRoot = BlockMerkleRoot(block);
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block.nTime = ++time;
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block.nBits = params.GenesisBlock().nBits;
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block.nNonce = 0;
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while (!CheckProofOfWork(block.GetHash(), block.nBits, params.GetConsensus())) {
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++block.nNonce;
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assert(block.nNonce);
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}
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}
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return ret;
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}
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COutPoint MineBlock(const NodeContext& node, const node::BlockCreateOptions& assembler_options)
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{
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auto block = PrepareBlock(node, assembler_options);
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auto valid = MineBlock(node, block);
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assert(!valid.IsNull());
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return valid;
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}
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struct BlockValidationStateCatcher : public CValidationInterface {
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const uint256 m_hash;
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std::optional<BlockValidationState> m_state;
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BlockValidationStateCatcher(const uint256& hash)
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: m_hash{hash},
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m_state{} {}
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protected:
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void BlockChecked(const std::shared_ptr<const CBlock>& block, const BlockValidationState& state) override
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{
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if (block->GetHash() != m_hash) return;
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m_state = state;
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}
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};
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COutPoint MineBlock(const NodeContext& node, std::shared_ptr<CBlock>& block)
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{
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while (!CheckProofOfWork(block->GetHash(), block->nBits, Params().GetConsensus())) {
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++block->nNonce;
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assert(block->nNonce);
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}
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return ProcessBlock(node, block);
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}
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COutPoint ProcessBlock(const NodeContext& node, const std::shared_ptr<CBlock>& block)
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{
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auto& chainman{*Assert(node.chainman)};
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const auto old_height = WITH_LOCK(chainman.GetMutex(), return chainman.ActiveHeight());
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bool new_block;
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BlockValidationStateCatcher bvsc{block->GetHash()};
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node.validation_signals->RegisterValidationInterface(&bvsc);
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const bool processed{chainman.ProcessNewBlock(block, true, true, &new_block)};
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const bool duplicate{!new_block && processed};
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assert(!duplicate);
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node.validation_signals->UnregisterValidationInterface(&bvsc);
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node.validation_signals->SyncWithValidationInterfaceQueue();
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const bool was_valid{bvsc.m_state && bvsc.m_state->IsValid()};
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assert(old_height + was_valid == WITH_LOCK(chainman.GetMutex(), return chainman.ActiveHeight()));
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if (was_valid) return {block->vtx[0]->GetHash(), 0};
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return {};
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}
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std::shared_ptr<CBlock> PrepareBlock(const NodeContext& node,
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const node::BlockCreateOptions& assembler_options)
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{
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auto mining = interfaces::MakeMining(node);
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auto block_template = mining->createNewBlock(assembler_options, /*cooldown=*/false);
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auto block = std::make_shared<CBlock>(Assert(block_template)->getBlock());
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LOCK(cs_main);
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block->nTime = Assert(node.chainman)->ActiveChain().Tip()->GetMedianTimePast() + 1;
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block->hashMerkleRoot = BlockMerkleRoot(*block);
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return block;
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}
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