227 lines
No EOL
7.1 KiB
C++
227 lines
No EOL
7.1 KiB
C++
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#include <graphene/peerplays_sidechain/bitcoin/libbitcoin_client.hpp>
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#include <system_error>
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#include <bitcoin/explorer/config/transaction.hpp>
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#include <bitcoin/system/config/hash256.hpp>
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#include <boost/xpressive/xpressive.hpp>
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#include <fc/crypto/hex.hpp>
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#include <fc/log/logger.hpp>
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namespace graphene { namespace peerplays_sidechain {
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libbitcoin_client::libbitcoin_client(std::string url) :
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obelisk_client(LIBBITCOIN_SERVER_TIMEOUT, LIBBITCOIN_SERVER_RETRIES) {
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std::string reg_expr = "^((?P<Protocol>https|http|tcp):\\/\\/)?(?P<Host>[a-zA-Z0-9\\-\\.]+)(:(?P<Port>\\d{1,5}))?(?P<Target>\\/.+)?";
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boost::xpressive::sregex sr = boost::xpressive::sregex::compile(reg_expr);
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boost::xpressive::smatch sm;
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if (boost::xpressive::regex_search(url, sm, sr)) {
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protocol = sm["Protocol"];
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if (protocol.empty()) {
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protocol = "tcp";
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}
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host = sm["Host"];
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if (host.empty()) {
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host + "localhost";
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}
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port = sm["Port"];
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if (port.empty()) {
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port = "9091";
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}
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}
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uint16_t port_num = std::stoi(port);
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std::string final_url = protocol + "://" + host;
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libbitcoin::config::endpoint address(final_url, port_num);
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libbitcoin::client::connection_type connection;
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connection.retries = LIBBITCOIN_SERVER_RETRIES;
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connection.server = address;
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if (!obelisk_client.connect(connection)) {
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elog("Can't connect libbitcoin for url: ${url}", ("url", final_url));
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}
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is_connected = true;
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}
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std::string libbitcoin_client::send_transaction(std::string tx) {
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std::string res;
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auto error_handler = [&](const std::error_code &ec) {
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elog("error on sending bitcoin transaction ${error_code}", ("error_code", ec.message()));
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};
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auto result_handler = [&](libbitcoin::code result_code) {
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ilog("result code on sending transaction ${result_code}", ("result_code", result_code.message()));
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res = std::to_string(result_code.value());
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};
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libbitcoin::explorer::config::transaction transaction(tx);
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libbitcoin::chain::transaction trx;
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// This validates the tx, submits it to local tx pool, and notifies peers.
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obelisk_client.transaction_pool_broadcast(error_handler, result_handler, transaction);
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obelisk_client.wait();
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return res;
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}
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libbitcoin::chain::output::list libbitcoin_client::get_transaction(std::string tx_id, std::string &tx_hash, uint32_t &confirmitions) {
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libbitcoin::chain::output::list outs;
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auto error_handler = [&](const std::error_code &ec) {
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elog("error on fetch_trx_by_hash: ${hash} ${error_code}", ("hash", tx_id)("error_code", ec.message()));
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};
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auto transaction_handler = [&](const libbitcoin::chain::transaction &tx_handler) {
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tx_hash = libbitcoin::config::hash256(tx_handler.hash(false)).to_string();
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// TODO try to find this value (confirmitions)
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confirmitions = 1;
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outs = tx_handler.outputs();
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};
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libbitcoin::hash_digest hash = libbitcoin::config::hash256(tx_id);
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// obelisk_client.blockchain_fetch_transaction (error_handler, transaction_handler,hash);
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obelisk_client.blockchain_fetch_transaction2(error_handler, transaction_handler, hash);
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obelisk_client.wait();
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return outs;
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}
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std::vector<list_unspent_replay> libbitcoin_client::listunspent(std::string address, double amount) {
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std::vector<list_unspent_replay> result;
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auto error_handler = [&](const std::error_code &ec) {
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elog("error on list_unspent ${error_code}", ("error_code", ec.message()));
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};
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auto replay_handler = [&](const libbitcoin::chain::points_value &points) {
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for (auto &point : points.points) {
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list_unspent_replay output;
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output.hash = libbitcoin::config::hash256(point.hash()).to_string();
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output.value = point.value();
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output.index = point.index();
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result.emplace_back(output);
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}
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};
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libbitcoin::wallet::payment_address payment_address(address);
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uint64_t satoshi = 100000000 * amount;
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obelisk_client.blockchain_fetch_unspent_outputs(error_handler,
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replay_handler, payment_address, satoshi, libbitcoin::wallet::select_outputs::algorithm::individual);
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obelisk_client.wait();
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return result;
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}
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bool libbitcoin_client::get_is_test_net() {
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bool result = false;
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auto error_handler = [&](const std::error_code &ec) {
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elog("error on fetching genesis block ${error_code}", ("error_code", ec.message()));
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};
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auto block_header_handler = [&](const libbitcoin::chain::header &block_header) {
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std::string hash_str = libbitcoin::config::hash256(block_header.hash()).to_string();
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if (hash_str == GENESIS_TESTNET_HASH || hash_str == GENESIS_REGTEST_HASH) {
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result = true;
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}
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};
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obelisk_client.blockchain_fetch_block_header(error_handler, block_header_handler, 0);
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obelisk_client.wait();
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return result;
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}
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uint64_t libbitcoin_client::get_fee_from_trx(libbitcoin::chain::transaction trx) {
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bool general_fee_est_error = false;
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if (trx.is_coinbase()) {
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return 0;
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}
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const auto total_output_value = trx.total_output_value();
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// get the inputs and from inputs previous outputs
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std::map<libbitcoin::hash_digest, std::vector<uint32_t>> prev_out_trxs;
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for (auto &ins : trx.inputs()) {
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const auto &prev_out = ins.previous_output();
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prev_out_trxs[prev_out.hash()].emplace_back(prev_out.index());
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}
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// fetch the trx to get total input value
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uint64_t total_input_value = 0;
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auto transaction_handler = [&](const libbitcoin::chain::transaction &tx_handler) {
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std::vector<uint32_t> indexes = prev_out_trxs[tx_handler.hash()];
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for (auto &index : indexes) {
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total_input_value += tx_handler.outputs()[index].value();
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}
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};
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auto error_handler = [&](const std::error_code &ec) {
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elog("error on fetching trx ${error_code}", ("error_code", ec.message()));
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general_fee_est_error = true;
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};
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for (const auto &iter : prev_out_trxs) {
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if (general_fee_est_error) {
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break;
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}
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obelisk_client.blockchain_fetch_transaction2(error_handler, transaction_handler, iter.first);
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obelisk_client.wait();
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}
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if (total_input_value >= total_output_value) {
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return total_input_value - total_output_value;
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} else {
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// something is really wrong if this happens,so we are going to mark as an error
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elog("On fee estimation something is wrong in total inputs and total outputs for trx hash: ${hash}",
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("hash", libbitcoin::config::hash256(trx.hash()).to_string()));
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return 0;
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}
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}
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uint64_t libbitcoin_client::get_average_fee_from_trxs(std::vector<libbitcoin::chain::transaction> trx_list) {
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std::vector<uint64_t> fee_per_trxs;
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for (auto &trx : trx_list) {
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uint64_t fee = get_fee_from_trx(trx);
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if (fee > 0) {
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fee_per_trxs.emplace_back(fee);
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}
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}
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uint64_t average_estimated_fee = 0;
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if (fee_per_trxs.size()) {
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for (const auto &fee : fee_per_trxs) {
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average_estimated_fee += fee;
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}
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average_estimated_fee /= fee_per_trxs.size();
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}
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return average_estimated_fee;
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}
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}} // namespace graphene::peerplays_sidechain
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