make tx keys available to the user
They are also stored in the cache file, to be retrieved using a new get_tx_key command.
This commit is contained in:
parent
776b4fc91a
commit
6c995710d8
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@ -408,7 +408,7 @@ namespace cryptonote
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return encrypt_payment_id(payment_id, public_key, secret_key);
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}
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//---------------------------------------------------------------
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bool construct_tx(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time)
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bool construct_tx(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key)
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{
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tx.vin.clear();
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tx.vout.clear();
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@ -420,6 +420,7 @@ namespace cryptonote
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tx.extra = extra;
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keypair txkey = keypair::generate();
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add_tx_pub_key_to_extra(tx, txkey.pub);
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tx_key = txkey.sec;
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// if we have a stealth payment id, find it and encrypt it with the tx key now
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std::vector<tx_extra_field> tx_extra_fields;
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@ -69,7 +69,7 @@ namespace cryptonote
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};
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//---------------------------------------------------------------
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bool construct_tx(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time);
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bool construct_tx(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &txkey);
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template<typename T>
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bool find_tx_extra_field_by_type(const std::vector<tx_extra_field>& tx_extra_fields, T& field)
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@ -365,6 +365,7 @@ simple_wallet::simple_wallet()
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m_cmd_binder.set_handler("seed", boost::bind(&simple_wallet::seed, this, _1), tr("Get deterministic seed"));
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m_cmd_binder.set_handler("set", boost::bind(&simple_wallet::set_variable, this, _1), tr("available options: seed language - Set wallet seed langage; always-confirm-transfers <1|0> - whether to confirm unsplit txes"));
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m_cmd_binder.set_handler("rescan_spent", boost::bind(&simple_wallet::rescan_spent, this, _1), tr("Rescan blockchain for spent outputs"));
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m_cmd_binder.set_handler("get_tx_key", boost::bind(&simple_wallet::get_tx_key, this, _1), tr("Get transaction key (r) for a given tx"));
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m_cmd_binder.set_handler("help", boost::bind(&simple_wallet::help, this, _1), tr("Show this help"));
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}
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//----------------------------------------------------------------------------------------------------
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@ -1724,6 +1725,37 @@ bool simple_wallet::sweep_dust(const std::vector<std::string> &args_)
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::get_tx_key(const std::vector<std::string> &args_)
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{
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std::vector<std::string> local_args = args_;
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if(local_args.size() != 1) {
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fail_msg_writer() << tr("Usage: get_tx_key <txid>");
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return true;
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}
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cryptonote::blobdata txid_data;
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if(!epee::string_tools::parse_hexstr_to_binbuff(local_args.front(), txid_data))
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{
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fail_msg_writer() << tr("Failed to parse txid");
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return false;
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}
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crypto::hash txid = *reinterpret_cast<const crypto::hash*>(txid_data.data());
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crypto::secret_key tx_key;
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bool r = m_wallet->get_tx_key(txid, tx_key);
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if (r)
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{
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success_msg_writer() << tr("tx key: ") << tx_key;
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return true;
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}
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else
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{
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fail_msg_writer() << tr("No tx key found for this txid");
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return true;
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}
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::run()
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{
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std::string addr_start = m_wallet->get_account().get_public_address_str(m_wallet->testnet()).substr(0, 6);
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@ -122,6 +122,7 @@ namespace cryptonote
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bool set_variable(const std::vector<std::string> &args);
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bool rescan_spent(const std::vector<std::string> &args);
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bool set_log(const std::vector<std::string> &args);
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bool get_tx_key(const std::vector<std::string> &args);
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uint64_t get_daemon_blockchain_height(std::string& err);
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bool try_connect_to_daemon();
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@ -1251,6 +1251,8 @@ std::string wallet2::address_from_txt_record(const std::string& s)
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void wallet2::commit_tx(pending_tx& ptx)
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{
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using namespace cryptonote;
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crypto::hash txid;
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COMMAND_RPC_SEND_RAW_TX::request req;
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req.tx_as_hex = epee::string_tools::buff_to_hex_nodelimer(tx_to_blob(ptx.tx));
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COMMAND_RPC_SEND_RAW_TX::response daemon_send_resp;
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@ -1259,14 +1261,16 @@ void wallet2::commit_tx(pending_tx& ptx)
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THROW_WALLET_EXCEPTION_IF(daemon_send_resp.status == CORE_RPC_STATUS_BUSY, error::daemon_busy, "sendrawtransaction");
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THROW_WALLET_EXCEPTION_IF(daemon_send_resp.status != CORE_RPC_STATUS_OK, error::tx_rejected, ptx.tx, daemon_send_resp.status);
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txid = get_transaction_hash(ptx.tx);
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add_unconfirmed_tx(ptx.tx, ptx.change_dts.amount);
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m_tx_keys.insert(std::make_pair(txid, ptx.tx_key));
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LOG_PRINT_L2("transaction " << get_transaction_hash(ptx.tx) << " generated ok and sent to daemon, key_images: [" << ptx.key_images << "]");
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LOG_PRINT_L2("transaction " << txid << " generated ok and sent to daemon, key_images: [" << ptx.key_images << "]");
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BOOST_FOREACH(transfer_container::iterator it, ptx.selected_transfers)
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it->m_spent = true;
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LOG_PRINT_L0("Transaction successfully sent. <" << get_transaction_hash(ptx.tx) << ">" << ENDL
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LOG_PRINT_L0("Transaction successfully sent. <" << txid << ">" << ENDL
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<< "Commission: " << print_money(ptx.fee+ptx.dust) << " (dust: " << print_money(ptx.dust) << ")" << ENDL
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<< "Balance: " << print_money(balance()) << ENDL
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<< "Unlocked: " << print_money(unlocked_balance()) << ENDL
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@ -1511,7 +1515,8 @@ void wallet2::transfer_selected(const std::vector<cryptonote::tx_destination_ent
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splitted_dsts.push_back(cryptonote::tx_destination_entry(dust, dust_policy.addr_for_dust));
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}
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time);
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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@ -1530,7 +1535,7 @@ void wallet2::transfer_selected(const std::vector<cryptonote::tx_destination_ent
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ptx.tx = tx;
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ptx.change_dts = change_dts;
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ptx.selected_transfers = selected_transfers;
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ptx.tx_key = tx_key;
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}
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// Another implementation of transaction creation that is hopefully better
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@ -1857,7 +1862,8 @@ void wallet2::transfer_dust(size_t num_outputs, uint64_t unlock_time, uint64_t n
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THROW_WALLET_EXCEPTION_IF(dust_policy.dust_threshold < dust, error::wallet_internal_error, "invalid dust value: dust = " +
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std::to_string(dust) + ", dust_threshold = " + std::to_string(dust_policy.dust_threshold));
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time);
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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@ -1876,6 +1882,7 @@ void wallet2::transfer_dust(size_t num_outputs, uint64_t unlock_time, uint64_t n
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ptx.tx = tx;
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ptx.change_dts = change_dts;
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ptx.selected_transfers = selected_transfers;
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ptx.tx_key = tx_key;
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}
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//----------------------------------------------------------------------------------------------------
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@ -1989,6 +1996,15 @@ std::vector<wallet2::pending_tx> wallet2::create_dust_sweep_transactions()
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}
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}
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bool wallet2::get_tx_key(const crypto::hash &txid, crypto::secret_key &tx_key) const
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{
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const std::unordered_map<crypto::hash, crypto::secret_key>::const_iterator i = m_tx_keys.find(txid);
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if (i == m_tx_keys.end())
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return false;
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tx_key = i->second;
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::generate_genesis(cryptonote::block& b) {
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if (m_testnet)
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cryptonote::tx_destination_entry change_dts;
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std::list<transfer_container::iterator> selected_transfers;
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std::string key_images;
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crypto::secret_key tx_key;
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};
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struct keys_file_data
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if(ver < 7)
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return;
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a & m_payments;
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if(ver < 8)
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return;
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a & m_tx_keys;
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}
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/*!
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bool always_confirm_transfers() const { return m_always_confirm_transfers; }
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void always_confirm_transfers(bool always) { m_always_confirm_transfers = always; }
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bool get_tx_key(const crypto::hash &txid, crypto::secret_key &tx_key) const;
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private:
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/*!
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* \brief Stores wallet information to wallet file.
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std::vector<crypto::hash> m_blockchain;
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std::atomic<uint64_t> m_local_bc_height; //temporary workaround
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std::unordered_map<crypto::hash, unconfirmed_transfer_details> m_unconfirmed_txs;
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std::unordered_map<crypto::hash, crypto::secret_key> m_tx_keys;
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transfer_container m_transfers;
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payment_container m_payments;
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bool m_always_confirm_transfers;
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};
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}
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BOOST_CLASS_VERSION(tools::wallet2, 7)
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BOOST_CLASS_VERSION(tools::wallet2, 8)
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namespace boost
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{
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splitted_dsts.push_back(cryptonote::tx_destination_entry(dust, dust_policy.addr_for_dust));
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}
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time);
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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ptx.tx = tx;
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ptx.change_dts = change_dts;
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ptx.selected_transfers = selected_transfers;
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ptx.tx_key = tx_key;
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}
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@ -218,6 +218,7 @@ namespace tools
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// populate response with tx hash
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res.tx_hash = boost::lexical_cast<std::string>(cryptonote::get_transaction_hash(ptx_vector.back().tx));
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res.tx_key = boost::lexical_cast<std::string>(ptx_vector.back().tx_key);
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return true;
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}
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catch (const tools::error::daemon_busy& e)
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for (auto & ptx : ptx_vector)
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{
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res.tx_hash_list.push_back(boost::lexical_cast<std::string>(cryptonote::get_transaction_hash(ptx.tx)));
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res.tx_key_list.push_back(boost::lexical_cast<std::string>(ptx.tx_key));
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}
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return true;
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for (auto & ptx : ptx_vector)
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{
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res.tx_hash_list.push_back(boost::lexical_cast<std::string>(cryptonote::get_transaction_hash(ptx.tx)));
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res.tx_key_list.push_back(boost::lexical_cast<std::string>(ptx.tx_key));
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}
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return true;
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@ -110,9 +110,11 @@ namespace wallet_rpc
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struct response
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{
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std::string tx_hash;
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std::string tx_key;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(tx_hash)
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KV_SERIALIZE(tx_key)
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END_KV_SERIALIZE_MAP()
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};
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};
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@ -141,9 +143,11 @@ namespace wallet_rpc
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struct response
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{
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std::list<std::string> tx_hash_list;
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std::list<std::string> tx_key_list;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(tx_hash_list)
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KV_SERIALIZE(tx_key_list)
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END_KV_SERIALIZE_MAP()
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};
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};
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struct response
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{
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std::list<std::string> tx_hash_list;
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std::list<std::string> tx_key_list;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(tx_hash_list)
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KV_SERIALIZE(tx_key_list)
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END_KV_SERIALIZE_MAP()
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};
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};
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