Files
bitcoin/src/test/fuzz/headerssync.cpp
MarcoFalke eeeeb2a0b9 fuzz: Use NodeClockContext
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.
2026-03-10 11:01:37 +01:00

129 lines
4.8 KiB
C++

// Copyright (c) 2022-present The Bitcoin Core developers
// Distributed under the MIT software license, see the accompanying
// file COPYING or https://opensource.org/license/mit.
#include <arith_uint256.h>
#include <chain.h>
#include <chainparams.h>
#include <headerssync.h>
#include <test/fuzz/fuzz.h>
#include <test/fuzz/util.h>
#include <test/util/setup_common.h>
#include <test/util/time.h>
#include <uint256.h>
#include <util/chaintype.h>
#include <util/time.h>
#include <validation.h>
#include <iterator>
#include <vector>
static void initialize_headers_sync_state_fuzz()
{
static const auto testing_setup = MakeNoLogFileContext<>(
/*chain_type=*/ChainType::MAIN);
}
void MakeHeadersContinuous(
const CBlockHeader& genesis_header,
const std::vector<CBlockHeader>& all_headers,
std::vector<CBlockHeader>& new_headers)
{
Assume(!new_headers.empty());
const CBlockHeader* prev_header{
all_headers.empty() ? &genesis_header : &all_headers.back()};
for (auto& header : new_headers) {
header.hashPrevBlock = prev_header->GetHash();
prev_header = &header;
}
}
class FuzzedHeadersSyncState : public HeadersSyncState
{
public:
FuzzedHeadersSyncState(const HeadersSyncParams& sync_params, const size_t commit_offset,
const CBlockIndex& chain_start, const arith_uint256& minimum_required_work)
: HeadersSyncState(/*id=*/0, Params().GetConsensus(), sync_params, chain_start, minimum_required_work)
{
const_cast<size_t&>(m_commit_offset) = commit_offset;
}
};
FUZZ_TARGET(headers_sync_state, .init = initialize_headers_sync_state_fuzz)
{
SeedRandomStateForTest(SeedRand::ZEROS);
FuzzedDataProvider fuzzed_data_provider(buffer.data(), buffer.size());
CBlockHeader genesis_header{Params().GenesisBlock()};
CBlockIndex start_index(genesis_header);
NodeClockContext clock_ctx{ConsumeTime(fuzzed_data_provider, /*min=*/start_index.GetMedianTimePast())};
const uint256 genesis_hash = genesis_header.GetHash();
start_index.phashBlock = &genesis_hash;
const HeadersSyncParams params{
.commitment_period = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(1, Params().HeadersSync().commitment_period * 2),
.redownload_buffer_size = fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, Params().HeadersSync().redownload_buffer_size * 2),
};
arith_uint256 min_work{UintToArith256(ConsumeUInt256(fuzzed_data_provider))};
FuzzedHeadersSyncState headers_sync(
params,
/*commit_offset=*/fuzzed_data_provider.ConsumeIntegralInRange<size_t>(0, params.commitment_period - 1),
/*chain_start=*/start_index,
/*minimum_required_work=*/min_work);
// Store headers for potential redownload phase.
std::vector<CBlockHeader> all_headers;
std::vector<CBlockHeader>::const_iterator redownloaded_it;
bool presync{true};
bool requested_more{true};
while (requested_more) {
std::vector<CBlockHeader> headers;
// Consume headers from fuzzer or maybe replay headers if we got to the
// redownload phase.
if (presync || fuzzed_data_provider.ConsumeBool()) {
auto deser_headers = ConsumeDeserializable<std::vector<CBlockHeader>>(fuzzed_data_provider);
if (!deser_headers || deser_headers->empty()) return;
if (fuzzed_data_provider.ConsumeBool()) {
MakeHeadersContinuous(genesis_header, all_headers, *deser_headers);
}
headers.swap(*deser_headers);
} else if (auto num_headers_left{std::distance(redownloaded_it, all_headers.cend())}; num_headers_left > 0) {
// Consume some headers from the redownload buffer (At least one
// header is consumed).
auto begin_it{redownloaded_it};
std::advance(redownloaded_it, fuzzed_data_provider.ConsumeIntegralInRange<int>(1, num_headers_left));
headers.insert(headers.cend(), begin_it, redownloaded_it);
}
if (headers.empty()) return;
auto result = headers_sync.ProcessNextHeaders(headers, fuzzed_data_provider.ConsumeBool());
requested_more = result.request_more;
if (result.request_more) {
if (presync) {
all_headers.insert(all_headers.cend(), headers.cbegin(), headers.cend());
if (headers_sync.GetState() == HeadersSyncState::State::REDOWNLOAD) {
presync = false;
redownloaded_it = all_headers.cbegin();
// If we get to redownloading, the presynced headers need
// to have the min amount of work on them.
assert(CalculateClaimedHeadersWork(all_headers) >= min_work);
}
}
(void)headers_sync.NextHeadersRequestLocator();
}
}
}