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Merge bitcoin/bitcoin#33300: fuzz: compact block harness
c8d688f41cfuzz: send blocktxn messages in cmpctblock harness (Eugene Siegel)d0333bfe99fuzz: send compact blocks in cmpctblock harness (Eugene Siegel)3c58efe2acfuzz: mine blocks and send headers for them in cmpctblock harness (Eugene Siegel)651622432dfuzz: create and send transactions in cmpctblock harness (Eugene Siegel)8c9a3fd0e8net, fuzz: move CMPCTBLOCK_VERSION to header, use in cmpctblock harness (Eugene Siegel)6cd480f62ffuzz: initial compact block fuzz harness (Eugene Siegel) Pull request description: Adds a fuzz harness for testing compact blocks, similar to `process_message(s)`. It can make (in)valid blocks, reconstruct blocks with in-mempool txns, mark peers as HB, and has high stability in AFL++ (~98-99%). Coverage is [here](https://crypt-iq.github.io/fuzz_coverage_reports/cmpctblock-aflpp-inputs-09182025/) (look in `src/blockencodings.cpp`, relevant compact block bits in `src/net_processing.cpp`). ACKs for top commit: instagibbs: ACKc8d688f41cmarcofleon: ACKc8d688f41cTree-SHA512: d904066921211b32eb75c9602908929f46ecd25482c518db36ed9f30e012b350b38a2df382f0faa21decd43bc2cabcc859193207da34be76010a32df1d9ac5c8
This commit is contained in:
@@ -26,6 +26,7 @@ add_executable(fuzz
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chain.cpp
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checkqueue.cpp
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cluster_linearize.cpp
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cmpctblock.cpp
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coins_view.cpp
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coinscache_sim.cpp
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connman.cpp
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503
src/test/fuzz/cmpctblock.cpp
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503
src/test/fuzz/cmpctblock.cpp
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@@ -0,0 +1,503 @@
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// Copyright (c) 2026 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 <addrman.h>
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#include <blockencodings.h>
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#include <chain.h>
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#include <chainparams.h>
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#include <coins.h>
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#include <consensus/amount.h>
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#include <consensus/consensus.h>
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#include <consensus/merkle.h>
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#include <net.h>
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#include <net_processing.h>
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#include <netmessagemaker.h>
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#include <node/blockstorage.h>
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#include <node/miner.h>
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#include <policy/truc_policy.h>
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#include <primitives/block.h>
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#include <primitives/transaction.h>
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#include <protocol.h>
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#include <script/script.h>
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#include <sync.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/fuzz/util/net.h>
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#include <test/util/mining.h>
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#include <test/util/net.h>
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#include <test/util/random.h>
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#include <test/util/script.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 <test/util/txmempool.h>
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#include <test/util/validation.h>
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#include <txmempool.h>
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#include <uint256.h>
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#include <util/check.h>
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#include <util/time.h>
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#include <util/translation.h>
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#include <validation.h>
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#include <validationinterface.h>
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#include <boost/multi_index/detail/hash_index_iterator.hpp>
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#include <boost/operators.hpp>
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#include <cstddef>
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#include <cstdint>
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#include <functional>
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#include <iterator>
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#include <memory>
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#include <optional>
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#include <string>
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#include <string_view>
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#include <utility>
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#include <vector>
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namespace {
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TestingSetup* g_setup;
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//! Fee each created tx will pay.
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const CAmount AMOUNT_FEE{1000};
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//! Cached coinbases that each iteration can copy and use.
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std::vector<std::pair<COutPoint, CAmount>> g_mature_coinbase;
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//! Constant value used to create valid headers.
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uint32_t g_nBits;
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//! One for each block the fuzzer generates.
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struct BlockInfo {
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std::shared_ptr<CBlock> block;
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uint256 hash;
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uint32_t height;
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};
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//! Used to access prefilledtxn and shorttxids.
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class FuzzedCBlockHeaderAndShortTxIDs : public CBlockHeaderAndShortTxIDs
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{
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using CBlockHeaderAndShortTxIDs::CBlockHeaderAndShortTxIDs;
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public:
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void AddPrefilledTx(PrefilledTransaction&& prefilledtx)
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{
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prefilledtxn.push_back(std::move(prefilledtx));
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}
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void RemoveCoinbasePrefill()
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{
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prefilledtxn.erase(prefilledtxn.begin());
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}
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void InsertCoinbaseShortTxID(uint64_t shorttxid)
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{
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shorttxids.insert(shorttxids.begin(), shorttxid);
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}
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void EraseShortTxIDs(size_t index)
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{
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shorttxids.erase(shorttxids.begin() + index);
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}
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size_t PrefilledTxCount() {
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return prefilledtxn.size();
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}
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size_t ShortTxIDCount() {
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return shorttxids.size();
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}
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};
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void ResetChainmanAndMempool(TestingSetup& setup)
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{
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SetMockTime(Params().GenesisBlock().Time());
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bilingual_str error{};
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setup.m_node.mempool.reset();
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setup.m_node.mempool = std::make_unique<CTxMemPool>(MemPoolOptionsForTest(setup.m_node), error);
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Assert(error.empty());
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setup.m_node.chainman.reset();
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setup.m_make_chainman();
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setup.LoadVerifyActivateChainstate();
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node::BlockAssembler::Options options;
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options.coinbase_output_script = P2WSH_OP_TRUE;
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options.include_dummy_extranonce = true;
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g_mature_coinbase.clear();
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for (int i = 0; i < 2 * COINBASE_MATURITY; ++i) {
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COutPoint prevout{MineBlock(setup.m_node, options)};
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if (i < COINBASE_MATURITY) {
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LOCK(cs_main);
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CAmount subsidy{setup.m_node.chainman->ActiveChainstate().CoinsTip().GetCoin(prevout)->out.nValue};
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g_mature_coinbase.emplace_back(prevout, subsidy);
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}
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}
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}
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} // namespace
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extern void MakeRandDeterministicDANGEROUS(const uint256& seed) noexcept;
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void initialize_cmpctblock()
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{
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static const auto testing_setup = MakeNoLogFileContext<TestingSetup>();
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g_setup = testing_setup.get();
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g_nBits = Params().GenesisBlock().nBits;
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ResetChainmanAndMempool(*g_setup);
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}
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FUZZ_TARGET(cmpctblock, .init = initialize_cmpctblock)
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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{1610000000s};
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auto setup = g_setup;
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auto& mempool = *setup->m_node.mempool;
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auto& chainman = static_cast<TestChainstateManager&>(*setup->m_node.chainman);
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chainman.ResetIbd();
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chainman.DisableNextWrite();
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const size_t initial_index_size{WITH_LOCK(chainman.GetMutex(), return chainman.BlockIndex().size())};
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AddrMan addrman{*setup->m_node.netgroupman, /*deterministic=*/true, /*consistency_check_ratio=*/0};
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auto& connman = *static_cast<ConnmanTestMsg*>(setup->m_node.connman.get());
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auto peerman = PeerManager::make(connman, addrman,
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/*banman=*/nullptr, chainman,
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mempool, *setup->m_node.warnings,
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PeerManager::Options{
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.deterministic_rng = true,
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});
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connman.SetMsgProc(peerman.get());
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setup->m_node.validation_signals->RegisterValidationInterface(peerman.get());
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setup->m_node.validation_signals->SyncWithValidationInterfaceQueue();
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LOCK(NetEventsInterface::g_msgproc_mutex);
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std::vector<CNode*> peers;
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for (int i = 0; i < 4; ++i) {
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peers.push_back(ConsumeNodeAsUniquePtr(fuzzed_data_provider, i).release());
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CNode& p2p_node = *peers.back();
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FillNode(fuzzed_data_provider, connman, p2p_node);
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connman.AddTestNode(p2p_node);
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}
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// Stores blocks generated this iteration.
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std::vector<BlockInfo> info;
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// Coinbase UTXOs for this iteration.
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std::vector<std::pair<COutPoint, CAmount>> mature_coinbase = g_mature_coinbase;
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const uint64_t initial_sequence{WITH_LOCK(mempool.cs, return mempool.GetSequence())};
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auto create_tx = [&]() -> CTransactionRef {
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CMutableTransaction tx_mut;
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tx_mut.version = fuzzed_data_provider.ConsumeBool() ? CTransaction::CURRENT_VERSION : TRUC_VERSION;
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tx_mut.nLockTime = fuzzed_data_provider.ConsumeBool() ? 0 : fuzzed_data_provider.ConsumeIntegral<uint32_t>();
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// Choose an outpoint from the mempool, created blocks, or coinbases.
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CAmount amount_in;
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COutPoint outpoint;
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unsigned long mempool_size = mempool.size();
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if (mempool_size != 0 && fuzzed_data_provider.ConsumeBool()) {
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size_t random_idx = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, mempool_size - 1);
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CTransactionRef tx = WITH_LOCK(mempool.cs, return mempool.txns_randomized[random_idx].second->GetSharedTx(););
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outpoint = COutPoint(tx->GetHash(), 0);
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amount_in = tx->vout[0].nValue;
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} else if (info.size() != 0 && fuzzed_data_provider.ConsumeBool()) {
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// These blocks (and txs) may be invalid, use a spent output, or not be in the main chain.
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auto info_it = info.begin();
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std::advance(info_it, fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, info.size() - 1));
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auto tx_it = info_it->block->vtx.begin();
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std::advance(tx_it, fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, info_it->block->vtx.size() - 1));
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outpoint = COutPoint(tx_it->get()->GetHash(), 0);
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amount_in = tx_it->get()->vout[0].nValue;
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} else {
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auto coinbase_it = mature_coinbase.begin();
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std::advance(coinbase_it, fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, mature_coinbase.size() - 1));
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outpoint = coinbase_it->first;
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amount_in = coinbase_it->second;
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}
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const auto sequence = ConsumeSequence(fuzzed_data_provider);
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const auto script_sig = CScript{};
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const auto script_wit_stack = std::vector<std::vector<uint8_t>>{WITNESS_STACK_ELEM_OP_TRUE};
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CTxIn in;
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in.prevout = outpoint;
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in.nSequence = sequence;
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in.scriptSig = script_sig;
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in.scriptWitness.stack = script_wit_stack;
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tx_mut.vin.push_back(in);
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const CAmount amount_out = amount_in - AMOUNT_FEE;
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tx_mut.vout.emplace_back(amount_out, P2WSH_OP_TRUE);
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auto tx = MakeTransactionRef(tx_mut);
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return tx;
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};
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auto create_block = [&]() {
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uint256 prev;
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uint32_t height;
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if (info.size() == 0 || fuzzed_data_provider.ConsumeBool()) {
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LOCK(cs_main);
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prev = chainman.ActiveChain().Tip()->GetBlockHash();
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height = chainman.ActiveChain().Height() + 1;
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} else {
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size_t index = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, info.size() - 1);
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prev = info[index].hash;
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height = info[index].height + 1;
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}
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const auto new_time = WITH_LOCK(::cs_main, return chainman.ActiveChain().Tip()->GetMedianTimePast() + 1);
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CBlockHeader header;
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header.nNonce = 0;
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header.hashPrevBlock = prev;
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header.nBits = g_nBits;
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header.nTime = new_time;
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header.nVersion = fuzzed_data_provider.ConsumeIntegral<int32_t>();
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std::shared_ptr<CBlock> block = std::make_shared<CBlock>();
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*block = header;
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CMutableTransaction coinbase_tx;
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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].scriptSig = CScript() << height << OP_0;
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coinbase_tx.vout.resize(1);
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coinbase_tx.vout[0].scriptPubKey = CScript() << OP_TRUE;
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coinbase_tx.vout[0].nValue = COIN;
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block->vtx.push_back(MakeTransactionRef(coinbase_tx));
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const auto mempool_size = mempool.size();
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if (fuzzed_data_provider.ConsumeBool() && mempool_size != 0) {
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// Add txns from the mempool. Since we do not include parents, it may be an invalid block.
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size_t num_txns = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(1, mempool_size);
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size_t random_idx = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, mempool_size - 1);
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LOCK(mempool.cs);
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for (size_t i = random_idx; i < random_idx + num_txns; ++i) {
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CTransactionRef mempool_tx = mempool.txns_randomized[i % mempool_size].second->GetSharedTx();
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block->vtx.push_back(mempool_tx);
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}
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}
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// Create and add (possibly invalid) txns that are not in the mempool.
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if (fuzzed_data_provider.ConsumeBool()) {
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size_t new_txns = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(1, 10);
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for (size_t i = 0; i < new_txns; ++i) {
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CTransactionRef non_mempool_tx = create_tx();
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block->vtx.push_back(non_mempool_tx);
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}
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}
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CBlockIndex* pindexPrev{WITH_LOCK(::cs_main, return chainman.m_blockman.LookupBlockIndex(prev))};
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chainman.GenerateCoinbaseCommitment(*block, pindexPrev);
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bool mutated;
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block->hashMerkleRoot = BlockMerkleRoot(*block, &mutated);
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FinalizeHeader(*block, chainman);
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BlockInfo block_info;
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block_info.block = block;
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block_info.hash = block->GetHash();
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block_info.height = height;
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return block_info;
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};
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LIMITED_WHILE(fuzzed_data_provider.ConsumeBool(), 1000)
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{
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CSerializedNetMsg net_msg;
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bool sent_net_msg = true;
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bool requested_hb = false;
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bool sent_sendcmpct = false;
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bool valid_sendcmpct = false;
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CallOneOf(
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fuzzed_data_provider,
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[&]() {
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// Send a compact block.
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std::shared_ptr<CBlock> cblock;
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// Pick an existing block or create a new block.
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if (fuzzed_data_provider.ConsumeBool() && info.size() != 0) {
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size_t index = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, info.size() - 1);
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cblock = info[index].block;
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} else {
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BlockInfo block_info = create_block();
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cblock = block_info.block;
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info.push_back(block_info);
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}
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uint64_t nonce = fuzzed_data_provider.ConsumeIntegral<uint64_t>();
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FuzzedCBlockHeaderAndShortTxIDs cmpctblock(*cblock, nonce);
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if (fuzzed_data_provider.ConsumeBool()) {
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CBlockHeaderAndShortTxIDs base_cmpctblock = cmpctblock;
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net_msg = NetMsg::Make(NetMsgType::CMPCTBLOCK, base_cmpctblock);
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return;
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}
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int prev_idx = 0;
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size_t num_erased = 1;
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size_t num_txs = cblock->vtx.size();
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for (size_t i = 0; i < num_txs; ++i) {
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if (i == 0) {
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// Handle the coinbase specially. We either keep it prefilled or remove it.
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if (fuzzed_data_provider.ConsumeBool()) continue;
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// Remove the prefilled coinbase.
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num_erased = 0;
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uint64_t coinbase_shortid = cmpctblock.GetShortID(cblock->vtx[0]->GetWitnessHash());
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cmpctblock.RemoveCoinbasePrefill();
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cmpctblock.InsertCoinbaseShortTxID(coinbase_shortid);
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continue;
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}
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if (fuzzed_data_provider.ConsumeBool()) continue;
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uint16_t prefill_idx = num_erased == 0 ? i : i - prev_idx - 1;
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prev_idx = i;
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CTransactionRef txref = cblock->vtx[i];
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PrefilledTransaction prefilledtx = {/*index=*/prefill_idx, txref};
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cmpctblock.AddPrefilledTx(std::move(prefilledtx));
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// Remove from shorttxids since we've prefilled. Subtract however many txs have been prefilled.
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cmpctblock.EraseShortTxIDs(i - num_erased);
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++num_erased;
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}
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assert(cmpctblock.PrefilledTxCount() + cmpctblock.ShortTxIDCount() == num_txs);
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CBlockHeaderAndShortTxIDs base_cmpctblock = cmpctblock;
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net_msg = NetMsg::Make(NetMsgType::CMPCTBLOCK, base_cmpctblock);
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},
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[&]() {
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// Send a blocktxn message for an existing block (if one exists).
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size_t num_blocks = info.size();
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if (num_blocks == 0) {
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sent_net_msg = false;
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return;
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}
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// Fetch an existing block and randomly choose transactions to send over.
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size_t index = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, num_blocks - 1);
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const BlockInfo& block_info = info[index];
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BlockTransactions block_txn;
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block_txn.blockhash = block_info.hash;
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std::shared_ptr<CBlock> cblock = block_info.block;
|
||||
|
||||
for (size_t i = 0; i < cblock->vtx.size(); i++) {
|
||||
if (fuzzed_data_provider.ConsumeBool()) continue;
|
||||
|
||||
block_txn.txn.push_back(cblock->vtx[i]);
|
||||
}
|
||||
|
||||
net_msg = NetMsg::Make(NetMsgType::BLOCKTXN, block_txn);
|
||||
},
|
||||
[&]() {
|
||||
// Send a headers message for an existing block (if one exists).
|
||||
size_t num_blocks = info.size();
|
||||
if (num_blocks == 0) {
|
||||
sent_net_msg = false;
|
||||
return;
|
||||
}
|
||||
|
||||
// Choose an existing block and send a HEADERS message for it.
|
||||
size_t index = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, num_blocks - 1);
|
||||
CBlock block = *info[index].block;
|
||||
block.vtx.clear(); // No tx in HEADERS.
|
||||
std::vector<CBlock> headers;
|
||||
headers.emplace_back(block);
|
||||
|
||||
net_msg = NetMsg::Make(NetMsgType::HEADERS, TX_WITH_WITNESS(headers));
|
||||
},
|
||||
[&]() {
|
||||
// Send a sendcmpct message, optionally setting hb mode.
|
||||
bool hb = fuzzed_data_provider.ConsumeBool();
|
||||
uint64_t version{fuzzed_data_provider.ConsumeBool() ? CMPCTBLOCKS_VERSION : fuzzed_data_provider.ConsumeIntegral<uint64_t>()};
|
||||
net_msg = NetMsg::Make(NetMsgType::SENDCMPCT, /*high_bandwidth=*/hb, /*version=*/version);
|
||||
requested_hb = hb;
|
||||
sent_sendcmpct = true;
|
||||
valid_sendcmpct = version == CMPCTBLOCKS_VERSION;
|
||||
},
|
||||
[&]() {
|
||||
// Mine a block, but don't send it.
|
||||
BlockInfo block_info = create_block();
|
||||
info.push_back(block_info);
|
||||
sent_net_msg = false;
|
||||
},
|
||||
[&]() {
|
||||
// Send a transaction.
|
||||
CTransactionRef tx = create_tx();
|
||||
net_msg = NetMsg::Make(NetMsgType::TX, TX_WITH_WITNESS(*tx));
|
||||
},
|
||||
[&]() {
|
||||
// Set mock time randomly or to tip's time.
|
||||
if (fuzzed_data_provider.ConsumeBool()) {
|
||||
clock_ctx.set(ConsumeTime(fuzzed_data_provider));
|
||||
} else {
|
||||
const NodeSeconds tip_time = WITH_LOCK(::cs_main, return chainman.ActiveChain().Tip()->Time());
|
||||
clock_ctx.set(tip_time);
|
||||
}
|
||||
|
||||
sent_net_msg = false;
|
||||
});
|
||||
|
||||
if (!sent_net_msg) {
|
||||
continue;
|
||||
}
|
||||
|
||||
CNode& random_node = *PickValue(fuzzed_data_provider, peers);
|
||||
connman.FlushSendBuffer(random_node);
|
||||
(void)connman.ReceiveMsgFrom(random_node, std::move(net_msg));
|
||||
|
||||
bool more_work{true};
|
||||
while (more_work) {
|
||||
random_node.fPauseSend = false;
|
||||
|
||||
more_work = connman.ProcessMessagesOnce(random_node);
|
||||
peerman->SendMessages(random_node);
|
||||
}
|
||||
|
||||
std::vector<CNodeStats> stats;
|
||||
connman.GetNodeStats(stats);
|
||||
|
||||
// We should have at maximum 3 HB peers.
|
||||
int num_hb = 0;
|
||||
for (const CNodeStats& stat : stats) {
|
||||
if (stat.m_bip152_highbandwidth_to) {
|
||||
// HB peers cannot be feelers or other "special" connections (besides addr-fetch).
|
||||
CNode* hb_peer = peers[stat.nodeid];
|
||||
if (!hb_peer->fDisconnect) num_hb += 1;
|
||||
assert(hb_peer->IsInboundConn() || hb_peer->IsOutboundOrBlockRelayConn() || hb_peer->IsManualConn() || hb_peer->IsAddrFetchConn());
|
||||
}
|
||||
}
|
||||
assert(num_hb <= 3);
|
||||
|
||||
if (sent_sendcmpct && !random_node.fDisconnect) {
|
||||
// If the fuzzer sent SENDCMPCT with proper version, check the node's state matches what it sent.
|
||||
const CNodeStats& random_node_stats = stats[random_node.GetId()];
|
||||
if (valid_sendcmpct) assert(random_node_stats.m_bip152_highbandwidth_from == requested_hb);
|
||||
}
|
||||
}
|
||||
|
||||
setup->m_node.validation_signals->SyncWithValidationInterfaceQueue();
|
||||
setup->m_node.validation_signals->UnregisterAllValidationInterfaces();
|
||||
connman.StopNodes();
|
||||
|
||||
const size_t end_index_size{WITH_LOCK(chainman.GetMutex(), return chainman.BlockIndex().size())};
|
||||
const uint64_t end_sequence{WITH_LOCK(mempool.cs, return mempool.GetSequence())};
|
||||
|
||||
if (initial_index_size != end_index_size || initial_sequence != end_sequence) {
|
||||
MakeRandDeterministicDANGEROUS(uint256::ZERO);
|
||||
ResetChainmanAndMempool(*g_setup);
|
||||
}
|
||||
}
|
||||
@@ -8,7 +8,6 @@
|
||||
#include <net_processing.h>
|
||||
#include <netmessagemaker.h>
|
||||
#include <node/peerman_args.h>
|
||||
#include <pow.h>
|
||||
#include <test/fuzz/FuzzedDataProvider.h>
|
||||
#include <test/fuzz/fuzz.h>
|
||||
#include <test/fuzz/util.h>
|
||||
@@ -143,13 +142,6 @@ CBlock ConsumeBlock(FuzzedDataProvider& fuzzed_data_provider, const uint256& pre
|
||||
return block;
|
||||
}
|
||||
|
||||
void FinalizeHeader(CBlockHeader& header, const ChainstateManager& chainman)
|
||||
{
|
||||
while (!CheckProofOfWork(header.GetHash(), header.nBits, chainman.GetParams().GetConsensus())) {
|
||||
++(header.nNonce);
|
||||
}
|
||||
}
|
||||
|
||||
// Global setup works for this test as state modification (specifically in the
|
||||
// block index) would indicate a bug.
|
||||
HeadersSyncSetup* g_testing_setup;
|
||||
|
||||
@@ -13,6 +13,7 @@
|
||||
#include <consensus/consensus.h>
|
||||
#include <key.h>
|
||||
#include <merkleblock.h>
|
||||
#include <pow.h>
|
||||
#include <primitives/transaction.h>
|
||||
#include <script/script.h>
|
||||
#include <serialize.h>
|
||||
@@ -20,6 +21,7 @@
|
||||
#include <test/fuzz/FuzzedDataProvider.h>
|
||||
#include <test/fuzz/fuzz.h>
|
||||
#include <uint256.h>
|
||||
#include <validation.h>
|
||||
|
||||
#include <algorithm>
|
||||
#include <array>
|
||||
@@ -345,4 +347,11 @@ void ReadFromStream(FuzzedDataProvider& fuzzed_data_provider, Stream& stream) no
|
||||
}
|
||||
}
|
||||
|
||||
inline void FinalizeHeader(CBlockHeader& header, const ChainstateManager& chainman)
|
||||
{
|
||||
while (!CheckProofOfWork(header.GetHash(), header.nBits, chainman.GetParams().GetConsensus())) {
|
||||
++(header.nNonce);
|
||||
}
|
||||
}
|
||||
|
||||
#endif // BITCOIN_TEST_FUZZ_UTIL_H
|
||||
|
||||
Reference in New Issue
Block a user