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This refactor does not change any behavior. However, it is nice to know that no global mocktime leaks from the fuzz init step to the first fuzz input, or from one fuzz input execution to the next. With the clock context, the global is re-set at the end of the context.
180 lines
7.2 KiB
C++
180 lines
7.2 KiB
C++
// Copyright (c) 2020-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 <chainparams.h>
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#include <consensus/consensus.h>
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#include <consensus/merkle.h>
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#include <kernel/coinstats.h>
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#include <node/miner.h>
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#include <script/interpreter.h>
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#include <streams.h>
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#include <test/fuzz/FuzzedDataProvider.h>
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#include <test/fuzz/fuzz.h>
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#include <test/fuzz/util.h>
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#include <test/util/mining.h>
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#include <test/util/setup_common.h>
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#include <test/util/time.h>
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#include <util/chaintype.h>
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#include <util/time.h>
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#include <validation.h>
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using node::BlockAssembler;
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FUZZ_TARGET(utxo_total_supply)
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{
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SeedRandomStateForTest(SeedRand::ZEROS);
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FuzzedDataProvider fuzzed_data_provider(buffer.data(), buffer.size());
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NodeClockContext clock_ctx{ConsumeTime(fuzzed_data_provider, /*min=*/1296688602)}; // regtest genesis block timestamp
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/** The testing setup that creates a chainman only (no chainstate) */
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ChainTestingSetup test_setup{
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ChainType::REGTEST,
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{
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.extra_args = {
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"-testactivationheight=bip34@2",
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},
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},
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};
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// Create chainstate
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test_setup.LoadVerifyActivateChainstate();
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auto& node{test_setup.m_node};
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auto& chainman{*Assert(test_setup.m_node.chainman)};
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const auto ActiveHeight = [&]() {
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LOCK(chainman.GetMutex());
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return chainman.ActiveHeight();
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};
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BlockAssembler::Options options;
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options.coinbase_output_script = CScript() << OP_FALSE;
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options.include_dummy_extranonce = true;
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const auto PrepareNextBlock = [&]() {
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// Use OP_FALSE to avoid BIP30 check from hitting early
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auto block = PrepareBlock(node, options);
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// Replace OP_FALSE with OP_TRUE
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{
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CMutableTransaction tx{*block->vtx.back()};
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tx.nLockTime = 0; // Use the same nLockTime for all as we want to duplicate one of them.
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tx.vout.at(0).scriptPubKey = CScript{} << OP_TRUE;
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block->vtx.back() = MakeTransactionRef(tx);
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}
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return block;
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};
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/** The block template this fuzzer is working on */
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auto current_block = PrepareNextBlock();
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/** Append-only set of tx outpoints, entries are not removed when spent */
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std::vector<std::pair<COutPoint, CTxOut>> txos;
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/** The utxo stats at the chain tip */
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kernel::CCoinsStats utxo_stats;
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/** The total amount of coins in the utxo set */
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CAmount circulation{0};
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// Store the tx out in the txo map
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const auto StoreLastTxo = [&]() {
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// get last tx
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const CTransaction& tx = *current_block->vtx.back();
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// get last out
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const uint32_t i = tx.vout.size() - 1;
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// store it
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txos.emplace_back(COutPoint{tx.GetHash(), i}, tx.vout.at(i));
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if (current_block->vtx.size() == 1 && tx.vout.at(i).scriptPubKey[0] == OP_RETURN) {
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// also store coinbase
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const uint32_t i = tx.vout.size() - 2;
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txos.emplace_back(COutPoint{tx.GetHash(), i}, tx.vout.at(i));
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}
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};
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const auto AppendRandomTxo = [&](CMutableTransaction& tx) {
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const auto& txo = txos.at(fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, txos.size() - 1));
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tx.vin.emplace_back(txo.first);
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tx.vout.emplace_back(txo.second.nValue, txo.second.scriptPubKey); // "Forward" coin with no fee
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};
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const auto UpdateUtxoStats = [&](bool wipe_cache) {
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LOCK(chainman.GetMutex());
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chainman.ActiveChainstate().ForceFlushStateToDisk(wipe_cache);
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utxo_stats = std::move(
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*Assert(kernel::ComputeUTXOStats(kernel::CoinStatsHashType::NONE, &chainman.ActiveChainstate().CoinsDB(), chainman.m_blockman, {})));
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// Check that miner can't print more money than they are allowed to
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assert(circulation == utxo_stats.total_amount);
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};
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// Update internal state to chain tip
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StoreLastTxo();
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UpdateUtxoStats(/*wipe_cache=*/fuzzed_data_provider.ConsumeBool());
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assert(ActiveHeight() == 0);
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// Get at which height we duplicate the coinbase
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// Assuming that the fuzzer will mine relatively short chains (less than 200 blocks), we want the duplicate coinbase to be not too high.
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// Up to 300 seems reasonable.
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int64_t duplicate_coinbase_height = fuzzed_data_provider.ConsumeIntegralInRange(0, 300);
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// Always pad with OP_0 at the end to avoid bad-cb-length error
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const CScript duplicate_coinbase_script = CScript() << duplicate_coinbase_height << OP_0;
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// Mine the first block with this duplicate
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current_block = PrepareNextBlock();
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StoreLastTxo();
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{
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// Create duplicate (CScript should match exact format as in CreateNewBlock)
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CMutableTransaction tx{*current_block->vtx.front()};
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tx.vin.at(0).scriptSig = duplicate_coinbase_script;
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// Mine block and create next block template
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current_block->vtx.front() = MakeTransactionRef(tx);
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}
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current_block->hashMerkleRoot = BlockMerkleRoot(*current_block);
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assert(!MineBlock(node, current_block).IsNull());
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circulation += GetBlockSubsidy(ActiveHeight(), Params().GetConsensus());
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assert(ActiveHeight() == 1);
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UpdateUtxoStats(/*wipe_cache=*/fuzzed_data_provider.ConsumeBool());
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current_block = PrepareNextBlock();
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StoreLastTxo();
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// Limit to avoid timeout, but enough to cover duplicate_coinbase_height
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// and CVE-2018-17144.
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LIMITED_WHILE(fuzzed_data_provider.remaining_bytes(), 2'00)
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{
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CallOneOf(
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fuzzed_data_provider,
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[&] {
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// Append an input-output pair to the last tx in the current block
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CMutableTransaction tx{*current_block->vtx.back()};
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AppendRandomTxo(tx);
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current_block->vtx.back() = MakeTransactionRef(tx);
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StoreLastTxo();
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},
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[&] {
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// Append a tx to the list of txs in the current block
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CMutableTransaction tx{};
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AppendRandomTxo(tx);
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current_block->vtx.push_back(MakeTransactionRef(tx));
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StoreLastTxo();
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},
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[&] {
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// Append the current block to the active chain
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node::RegenerateCommitments(*current_block, chainman);
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const bool was_valid = !MineBlock(node, current_block).IsNull();
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const uint256 prev_hash_serialized{utxo_stats.hashSerialized};
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if (was_valid) {
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if (duplicate_coinbase_height == ActiveHeight()) {
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// we mined the duplicate coinbase
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assert(current_block->vtx.at(0)->vin.at(0).scriptSig == duplicate_coinbase_script);
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}
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circulation += GetBlockSubsidy(ActiveHeight(), Params().GetConsensus());
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}
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UpdateUtxoStats(/*wipe_cache=*/fuzzed_data_provider.ConsumeBool());
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if (!was_valid) {
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// utxo stats must not change
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assert(prev_hash_serialized == utxo_stats.hashSerialized);
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}
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current_block = PrepareNextBlock();
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StoreLastTxo();
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});
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}
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}
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