Add a is_key_image_spent daemon command and RPC call
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35abef1b92
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83bbea4c7f
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@ -515,6 +515,21 @@ namespace cryptonote
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return true;
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}
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//-----------------------------------------------------------------------------------------------
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bool core::is_key_image_spent(const crypto::key_image &key_image)
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{
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return m_blockchain_storage.have_tx_keyimg_as_spent(key_image);
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}
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//-----------------------------------------------------------------------------------------------
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bool core::are_key_images_spent(const std::vector<crypto::key_image>& key_im, std::vector<bool> &spent)
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{
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spent.clear();
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BOOST_FOREACH(auto& ki, key_im)
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{
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spent.push_back(m_blockchain_storage.have_tx_keyimg_as_spent(ki));
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}
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return true;
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}
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//-----------------------------------------------------------------------------------------------
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bool core::check_tx_inputs_keyimages_diff(const transaction& tx)
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{
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std::unordered_set<crypto::key_image> ki;
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@ -145,6 +145,9 @@ namespace cryptonote
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void stop();
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bool is_key_image_spent(const crypto::key_image& key_im);
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bool are_key_images_spent(const std::vector<crypto::key_image>& key_im, std::vector<bool> &spent);
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private:
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bool add_new_tx(const transaction& tx, const crypto::hash& tx_hash, const crypto::hash& tx_prefix_hash, size_t blob_size, tx_verification_context& tvc, bool keeped_by_block);
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bool add_new_tx(const transaction& tx, tx_verification_context& tvc, bool keeped_by_block);
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@ -157,8 +160,6 @@ namespace cryptonote
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bool check_tx_semantic(const transaction& tx, bool keeped_by_block);
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//check if tx already in memory pool or in main blockchain
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bool is_key_image_spent(const crypto::key_image& key_im);
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bool check_tx_ring_signature(const txin_to_key& tx, const crypto::hash& tx_prefix_hash, const std::vector<crypto::signature>& sig);
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bool is_tx_spendtime_unlocked(uint64_t unlock_time);
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bool update_miner_block_template();
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@ -180,6 +180,26 @@ bool t_command_parser_executor::print_transaction(const std::vector<std::string>
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return true;
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}
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bool t_command_parser_executor::is_key_image_spent(const std::vector<std::string>& args)
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{
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if (args.empty())
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{
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std::cout << "expected: is_key_image_spent <key_image>" << std::endl;
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return true;
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}
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const std::string& str = args.front();
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crypto::key_image ki;
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crypto::hash hash;
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if (parse_hash256(str, hash))
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{
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memcpy(&ki, &hash, sizeof(ki));
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m_executor.is_key_image_spent(ki);
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}
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return true;
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}
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bool t_command_parser_executor::print_transaction_pool_long(const std::vector<std::string>& args)
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{
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if (!args.empty()) return false;
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@ -75,6 +75,8 @@ public:
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bool print_transaction(const std::vector<std::string>& args);
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bool is_key_image_spent(const std::vector<std::string>& args);
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bool print_transaction_pool_long(const std::vector<std::string>& args);
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bool print_transaction_pool_short(const std::vector<std::string>& args);
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@ -84,6 +84,11 @@ t_command_server::t_command_server(
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, std::bind(&t_command_parser_executor::print_transaction, &m_parser, p::_1)
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, "Print transaction, print_tx <transaction_hash>"
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);
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m_command_lookup.set_handler(
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"is_key_image_spent"
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, std::bind(&t_command_parser_executor::is_key_image_spent, &m_parser, p::_1)
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, "Prints whether a given key image is in the spent key images set, is_key_image_spent <key_image>"
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);
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m_command_lookup.set_handler(
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"start_mining"
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, std::bind(&t_command_parser_executor::start_mining, &m_parser, p::_1)
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@ -520,6 +520,42 @@ bool t_rpc_command_executor::print_transaction(crypto::hash transaction_hash) {
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return true;
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}
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bool t_rpc_command_executor::is_key_image_spent(const crypto::key_image &ki) {
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cryptonote::COMMAND_RPC_IS_KEY_IMAGE_SPENT::request req;
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cryptonote::COMMAND_RPC_IS_KEY_IMAGE_SPENT::response res;
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std::string fail_message = "Problem checkking key image";
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req.key_images.push_back(epee::string_tools::pod_to_hex(ki));
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if (m_is_rpc)
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{
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if (!m_rpc_client->rpc_request(req, res, "/is_key_image_spent", fail_message.c_str()))
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{
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return true;
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}
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}
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else
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{
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if (!m_rpc_server->on_is_key_image_spent(req, res))
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{
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tools::fail_msg_writer() << fail_message.c_str();
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return true;
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}
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}
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if (1 == res.spent_status.size())
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{
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// first as hex
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tools::success_msg_writer() << ki << ": " << (res.spent_status.front() ? "spent" : "unspent");
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}
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else
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{
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tools::fail_msg_writer() << "key image status could not be determined" << std::endl;
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}
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return true;
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}
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bool t_rpc_command_executor::print_transaction_pool_long() {
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cryptonote::COMMAND_RPC_GET_TRANSACTION_POOL::request req;
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cryptonote::COMMAND_RPC_GET_TRANSACTION_POOL::response res;
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@ -87,6 +87,8 @@ public:
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bool print_transaction(crypto::hash transaction_hash);
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bool is_key_image_spent(const crypto::key_image &ki);
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bool print_transaction_pool_long();
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bool print_transaction_pool_short();
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@ -241,6 +241,35 @@ namespace cryptonote
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return true;
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}
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//------------------------------------------------------------------------------------------------------------------------------
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bool core_rpc_server::on_is_key_image_spent(const COMMAND_RPC_IS_KEY_IMAGE_SPENT::request& req, COMMAND_RPC_IS_KEY_IMAGE_SPENT::response& res)
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{
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CHECK_CORE_BUSY();
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std::vector<crypto::key_image> key_images;
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BOOST_FOREACH(const auto& ki_hex_str, req.key_images)
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{
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blobdata b;
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if(!string_tools::parse_hexstr_to_binbuff(ki_hex_str, b))
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{
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res.status = "Failed to parse hex representation of key image";
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return true;
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}
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if(b.size() != sizeof(crypto::key_image))
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{
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res.status = "Failed, size of data mismatch";
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}
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key_images.push_back(*reinterpret_cast<const crypto::key_image*>(b.data()));
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}
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bool r = m_core.are_key_images_spent(key_images, res.spent_status);
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if(!r)
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{
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res.status = "Failed";
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return true;
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}
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res.status = CORE_RPC_STATUS_OK;
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return true;
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}
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//------------------------------------------------------------------------------------------------------------------------------
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bool core_rpc_server::on_send_raw_tx(const COMMAND_RPC_SEND_RAW_TX::request& req, COMMAND_RPC_SEND_RAW_TX::response& res)
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{
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CHECK_CORE_READY();
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@ -77,6 +77,7 @@ namespace cryptonote
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MAP_URI_AUTO_BIN2("/get_o_indexes.bin", on_get_indexes, COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES)
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MAP_URI_AUTO_BIN2("/getrandom_outs.bin", on_get_random_outs, COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS)
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MAP_URI_AUTO_JON2("/gettransactions", on_get_transactions, COMMAND_RPC_GET_TRANSACTIONS)
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MAP_URI_AUTO_JON2("/is_key_image_spent", on_is_key_image_spent, COMMAND_RPC_IS_KEY_IMAGE_SPENT)
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MAP_URI_AUTO_JON2("/sendrawtransaction", on_send_raw_tx, COMMAND_RPC_SEND_RAW_TX)
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MAP_URI_AUTO_JON2("/start_mining", on_start_mining, COMMAND_RPC_START_MINING)
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MAP_URI_AUTO_JON2("/stop_mining", on_stop_mining, COMMAND_RPC_STOP_MINING)
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@ -108,6 +109,7 @@ namespace cryptonote
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bool on_get_height(const COMMAND_RPC_GET_HEIGHT::request& req, COMMAND_RPC_GET_HEIGHT::response& res);
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bool on_get_blocks(const COMMAND_RPC_GET_BLOCKS_FAST::request& req, COMMAND_RPC_GET_BLOCKS_FAST::response& res);
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bool on_get_transactions(const COMMAND_RPC_GET_TRANSACTIONS::request& req, COMMAND_RPC_GET_TRANSACTIONS::response& res);
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bool on_is_key_image_spent(const COMMAND_RPC_IS_KEY_IMAGE_SPENT::request& req, COMMAND_RPC_IS_KEY_IMAGE_SPENT::response& res);
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bool on_get_indexes(const COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES::request& req, COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES::response& res);
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bool on_send_raw_tx(const COMMAND_RPC_SEND_RAW_TX::request& req, COMMAND_RPC_SEND_RAW_TX::response& res);
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bool on_start_mining(const COMMAND_RPC_START_MINING::request& req, COMMAND_RPC_START_MINING::response& res);
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@ -116,6 +116,31 @@ namespace cryptonote
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};
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};
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//-----------------------------------------------
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struct COMMAND_RPC_IS_KEY_IMAGE_SPENT
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{
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struct request
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{
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std::vector<std::string> key_images;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(key_images)
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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::vector<bool> spent_status;
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std::string status;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(spent_status)
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KV_SERIALIZE(status)
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END_KV_SERIALIZE_MAP()
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};
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};
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//-----------------------------------------------
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struct COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES
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{
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