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https://codeberg.org/anoncontributorxmr/monero.git
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rpc: add pool/blockchain and block height results to gettransactions
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abea280dd3
commit
f17b2f42b2
@ -575,16 +575,26 @@ bool t_rpc_command_executor::print_transaction(crypto::hash transaction_hash) {
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}
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}
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if (1 == res.txs_as_hex.size())
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if (1 == res.txs.size() || 1 == res.txs_as_hex.size())
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{
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if (1 == res.txs.size())
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{
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// only available for new style answers
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if (res.txs.front().in_pool)
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tools::success_msg_writer() << "Found in pool";
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else
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tools::success_msg_writer() << "Found in blockchain at height " << res.txs.front().block_height;
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}
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// first as hex
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tools::success_msg_writer() << res.txs_as_hex.front();
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const std::string &as_hex = (1 == res.txs.size()) ? res.txs.front().as_hex : res.txs_as_hex.front();
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tools::success_msg_writer() << as_hex;
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// then as json
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crypto::hash tx_hash, tx_prefix_hash;
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cryptonote::transaction tx;
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cryptonote::blobdata blob;
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if (!string_tools::parse_hexstr_to_binbuff(res.txs_as_hex.front(), blob))
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if (!string_tools::parse_hexstr_to_binbuff(as_hex, blob))
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{
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tools::fail_msg_writer() << "Failed to parse tx";
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}
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@ -240,6 +240,7 @@ namespace cryptonote
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// try the pool for any missing txes
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size_t found_in_pool = 0;
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std::unordered_set<crypto::hash> pool_tx_hashes;
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if (!missed_txs.empty())
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{
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std::list<transaction> pool_txs;
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@ -248,9 +249,11 @@ namespace cryptonote
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{
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for (std::list<transaction>::const_iterator i = pool_txs.begin(); i != pool_txs.end(); ++i)
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{
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std::list<crypto::hash>::iterator mi = std::find(missed_txs.begin(), missed_txs.end(), get_transaction_hash(*i));
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crypto::hash tx_hash = get_transaction_hash(*i);
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std::list<crypto::hash>::iterator mi = std::find(missed_txs.begin(), missed_txs.end(), tx_hash);
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if (mi != missed_txs.end())
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{
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pool_tx_hashes.insert(tx_hash);
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missed_txs.erase(mi);
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txs.push_back(*i);
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++found_in_pool;
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@ -260,12 +263,33 @@ namespace cryptonote
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LOG_PRINT_L2("Found " << found_in_pool << "/" << vh.size() << " transactions in the pool");
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}
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std::list<std::string>::const_iterator txhi = req.txs_hashes.begin();
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std::vector<crypto::hash>::const_iterator vhi = vh.begin();
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BOOST_FOREACH(auto& tx, txs)
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{
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res.txs.push_back(COMMAND_RPC_GET_TRANSACTIONS::entry());
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COMMAND_RPC_GET_TRANSACTIONS::entry &e = res.txs.back();
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crypto::hash tx_hash = *vhi++;
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e.tx_hash = *txhi++;
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blobdata blob = t_serializable_object_to_blob(tx);
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res.txs_as_hex.push_back(string_tools::buff_to_hex_nodelimer(blob));
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e.as_hex = string_tools::buff_to_hex_nodelimer(blob);
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if (req.decode_as_json)
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res.txs_as_json.push_back(obj_to_json_str(tx));
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e.as_json = obj_to_json_str(tx);
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e.in_pool = pool_tx_hashes.find(tx_hash) != pool_tx_hashes.end();
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if (e.in_pool)
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{
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e.block_height = std::numeric_limits<uint64_t>::max();
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}
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else
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{
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e.block_height = m_core.get_blockchain_storage().get_db().get_tx_block_height(tx_hash);
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}
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// fill up old style responses too, in case an old wallet asks
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res.txs_as_hex.push_back(e.as_hex);
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if (req.decode_as_json)
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res.txs_as_json.push_back(e.as_json);
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}
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BOOST_FOREACH(const auto& miss_tx, missed_txs)
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@ -273,7 +297,7 @@ namespace cryptonote
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res.missed_tx.push_back(string_tools::pod_to_hex(miss_tx));
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}
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LOG_PRINT_L2(res.txs_as_hex.size() << " transactions found, " << res.missed_tx.size() << " not found");
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LOG_PRINT_L2(res.txs.size() << " transactions found, " << res.missed_tx.size() << " not found");
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res.status = CORE_RPC_STATUS_OK;
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return true;
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}
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@ -103,18 +103,41 @@ namespace cryptonote
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END_KV_SERIALIZE_MAP()
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};
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struct entry
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{
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std::string tx_hash;
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std::string as_hex;
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std::string as_json;
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bool in_pool;
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uint64_t block_height;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(tx_hash)
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KV_SERIALIZE(as_hex)
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KV_SERIALIZE(as_json)
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KV_SERIALIZE(in_pool)
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KV_SERIALIZE(block_height)
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END_KV_SERIALIZE_MAP()
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};
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struct response
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{
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std::list<std::string> txs_as_hex; //transactions blobs as hex
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// older compatibility stuff
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std::list<std::string> txs_as_hex; //transactions blobs as hex (old compat)
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std::list<std::string> txs_as_json; //transactions decoded as json (old compat)
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// in both old and new
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std::list<std::string> missed_tx; //not found transactions
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std::list<std::string> txs_as_json; //transactions decoded as json
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// new style
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std::vector<entry> txs;
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std::string status;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(txs_as_hex)
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KV_SERIALIZE(missed_tx)
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KV_SERIALIZE(txs_as_json)
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KV_SERIALIZE(txs)
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KV_SERIALIZE(missed_tx)
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KV_SERIALIZE(status)
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END_KV_SERIALIZE_MAP()
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};
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@ -2497,13 +2497,18 @@ bool simple_wallet::check_tx_key(const std::vector<std::string> &args_)
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COMMAND_RPC_GET_TRANSACTIONS::response res;
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req.txs_hashes.push_back(epee::string_tools::pod_to_hex(txid));
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if (!net_utils::invoke_http_json_remote_command2(m_daemon_address + "/gettransactions", req, res, m_http_client) ||
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res.txs_as_hex.empty())
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(res.txs.empty() && res.txs_as_hex.empty()))
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{
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fail_msg_writer() << tr("failed to get transaction from daemon");
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return true;
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}
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cryptonote::blobdata tx_data;
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if (!string_tools::parse_hexstr_to_binbuff(res.txs_as_hex.front(), tx_data))
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bool ok;
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if (!res.txs.empty())
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ok = string_tools::parse_hexstr_to_binbuff(res.txs.front().as_hex, tx_data);
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else
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ok = string_tools::parse_hexstr_to_binbuff(res.txs_as_hex.front(), tx_data);
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if (!ok)
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{
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fail_msg_writer() << tr("failed to parse transaction from daemon");
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return true;
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