Files
bitcoin/src/bitcoin-chainstate.cpp

220 lines
7.3 KiB
C++

// Copyright (c) 2022-present The Bitcoin Core developers
// Distributed under the MIT software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
//
// The bitcoin-chainstate executable serves to surface the dependencies required
// by a program wishing to use Bitcoin Core's consensus engine as it is right
// now.
//
// DEVELOPER NOTE: Since this is a "demo-only", experimental, etc. executable,
// it may diverge from Bitcoin Core's coding style.
//
// It is part of the libbitcoinkernel project.
#include <kernel/bitcoinkernel_wrapper.h>
#include <cassert>
#include <charconv>
#include <filesystem>
#include <iostream>
#include <optional>
#include <string>
#include <string_view>
#include <vector>
using namespace btck;
std::vector<std::byte> hex_string_to_byte_vec(std::string_view hex)
{
std::vector<std::byte> bytes;
bytes.reserve(hex.length() / 2);
for (size_t i{0}; i < hex.length(); i += 2) {
uint8_t byte_value;
auto [ptr, ec] = std::from_chars(hex.data() + i, hex.data() + i + 2, byte_value, 16);
if (ec != std::errc{} || ptr != hex.data() + i + 2) {
throw std::invalid_argument("Invalid hex character");
}
bytes.push_back(static_cast<std::byte>(byte_value));
}
return bytes;
}
class KernelLog
{
public:
void LogMessage(std::string_view message)
{
std::cout << "kernel: " << message;
}
};
class TestValidationInterface : public ValidationInterface
{
public:
TestValidationInterface() = default;
std::optional<std::string> m_expected_valid_block = std::nullopt;
void BlockChecked(const Block block, const BlockValidationState state) override
{
auto mode{state.GetValidationMode()};
switch (mode) {
case ValidationMode::VALID: {
std::cout << "Valid block" << std::endl;
return;
}
case ValidationMode::INVALID: {
std::cout << "Invalid block: ";
auto result{state.GetBlockValidationResult()};
switch (result) {
case BlockValidationResult::UNSET:
std::cout << "initial value. Block has not yet been rejected" << std::endl;
break;
case BlockValidationResult::HEADER_LOW_WORK:
std::cout << "the block header may be on a too-little-work chain" << std::endl;
break;
case BlockValidationResult::CONSENSUS:
std::cout << "invalid by consensus rules" << std::endl;
break;
case BlockValidationResult::CACHED_INVALID:
std::cout << "this block was cached as being invalid and we didn't store the reason why" << std::endl;
break;
case BlockValidationResult::INVALID_HEADER:
std::cout << "invalid proof of work or time too old" << std::endl;
break;
case BlockValidationResult::MUTATED:
std::cout << "the block's data didn't match the data committed to by the PoW" << std::endl;
break;
case BlockValidationResult::MISSING_PREV:
std::cout << "We don't have the previous block the checked one is built on" << std::endl;
break;
case BlockValidationResult::INVALID_PREV:
std::cout << "A block this one builds on is invalid" << std::endl;
break;
case BlockValidationResult::TIME_FUTURE:
std::cout << "block timestamp was > 2 hours in the future (or our clock is bad)" << std::endl;
break;
}
return;
}
case ValidationMode::INTERNAL_ERROR: {
std::cout << "Internal error" << std::endl;
return;
}
}
}
};
class TestKernelNotifications : public KernelNotifications
{
public:
void BlockTipHandler(SynchronizationState, const BlockTreeEntry, double) override
{
std::cout << "Block tip changed" << std::endl;
}
void ProgressHandler(std::string_view title, int progress_percent, bool resume_possible) override
{
std::cout << "Made progress: " << title << " " << progress_percent << "%" << std::endl;
}
void WarningSetHandler(Warning warning, std::string_view message) override
{
std::cout << message << std::endl;
}
void WarningUnsetHandler(Warning warning) override
{
std::cout << "Warning unset: " << static_cast<std::underlying_type_t<Warning>>(warning) << std::endl;
}
void FlushErrorHandler(std::string_view error) override
{
std::cout << error << std::endl;
}
void FatalErrorHandler(std::string_view error) override
{
std::cout << error << std::endl;
}
};
int main(int argc, char* argv[])
{
// SETUP: Argument parsing and handling
if (argc != 2) {
std::cerr
<< "Usage: " << argv[0] << " DATADIR" << std::endl
<< "Display DATADIR information, and process hex-encoded blocks on standard input." << std::endl
<< std::endl
<< "IMPORTANT: THIS EXECUTABLE IS EXPERIMENTAL, FOR TESTING ONLY, AND EXPECTED TO" << std::endl
<< " BREAK IN FUTURE VERSIONS. DO NOT USE ON YOUR ACTUAL DATADIR." << std::endl;
return 1;
}
std::filesystem::path abs_datadir{std::filesystem::absolute(argv[1])};
std::filesystem::create_directories(abs_datadir);
btck_LoggingOptions logging_options = {
.log_timestamps = true,
.log_time_micros = false,
.log_threadnames = false,
.log_sourcelocations = false,
.always_print_category_levels = true,
};
logging_set_options(logging_options);
Logger logger{std::make_unique<KernelLog>()};
ContextOptions options{};
ChainParams params{ChainType::MAINNET};
options.SetChainParams(params);
options.SetNotifications(std::make_shared<TestKernelNotifications>());
options.SetValidationInterface(std::make_shared<TestValidationInterface>());
Context context{options};
ChainstateManagerOptions chainman_opts{context, abs_datadir.string(), (abs_datadir / "blocks").string()};
chainman_opts.SetWorkerThreads(4);
std::unique_ptr<ChainMan> chainman;
try {
chainman = std::make_unique<ChainMan>(context, chainman_opts);
} catch (std::exception&) {
std::cerr << "Failed to instantiate ChainMan, exiting" << std::endl;
return 1;
}
std::cout << "Enter the block you want to validate on the next line:" << std::endl;
for (std::string line; std::getline(std::cin, line);) {
if (line.empty()) {
std::cerr << "Empty line found, try again:" << std::endl;
continue;
}
auto raw_block{hex_string_to_byte_vec(line)};
std::unique_ptr<Block> block;
try {
block = std::make_unique<Block>(raw_block);
} catch (std::exception&) {
std::cerr << "Block decode failed, try again:" << std::endl;
continue;
}
bool new_block = false;
bool accepted = chainman->ProcessBlock(*block, &new_block);
if (accepted) {
std::cerr << "Block has not yet been rejected" << std::endl;
} else {
std::cerr << "Block was not accepted" << std::endl;
}
if (!new_block) {
std::cerr << "Block is a duplicate" << std::endl;
}
}
}