Revert transfer_main in simplewallet
This commit is contained in:
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3451963855
commit
d5f918a0b1
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@ -652,7 +652,7 @@ simple_wallet::simple_wallet()
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m_cmd_binder.set_handler("bc_height", boost::bind(&simple_wallet::show_blockchain_height, this, _1), tr("Show blockchain height"));
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m_cmd_binder.set_handler("transfer_original", boost::bind(&simple_wallet::transfer, this, _1), tr("transfer [<mixin_count>] <addr_1> <amount_1> [<addr_2> <amount_2> ... <addr_N> <amount_N>] [payment_id] - Transfer <amount_1>,... <amount_N> to <address_1>,... <address_N>, respectively. <mixin_count> is the number of extra inputs to include for untraceability (from 0 to maximum available)"));
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m_cmd_binder.set_handler("transfer", boost::bind(&simple_wallet::transfer_new, this, _1), tr("Same as transfer_original, but using a new transaction building algorithm"));
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m_cmd_binder.set_handler("locked_transfer", boost::bind(&simple_wallet::transfer_new, this, _1), tr("Make a transfer using unlock_time"));
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m_cmd_binder.set_handler("locked_transfer", boost::bind(&simple_wallet::locked_transfer, this, _1), tr("Make a transfer using unlock_time"));
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m_cmd_binder.set_handler("sweep_unmixable", boost::bind(&simple_wallet::sweep_unmixable, this, _1), tr("Send all unmixable outputs to yourself with mixin 0"));
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m_cmd_binder.set_handler("sweep_all", boost::bind(&simple_wallet::sweep_all, this, _1), tr("Send all unlocked balance an address"));
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m_cmd_binder.set_handler("set_log", boost::bind(&simple_wallet::set_log, this, _1), tr("set_log <level> - Change current log detail level, <0-4>"));
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@ -2314,6 +2314,280 @@ bool simple_wallet::transfer_main(int transfer_type, const std::vector<std::stri
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return true;
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}
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if(m_wallet->watch_only())
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{
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fail_msg_writer() << tr("this is a watch only wallet");
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return true;
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}
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std::vector<uint8_t> extra;
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bool payment_id_seen = false;
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if (1 == local_args.size() % 2)
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{
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std::string payment_id_str = local_args.back();
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local_args.pop_back();
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crypto::hash payment_id;
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bool r = tools::wallet2::parse_long_payment_id(payment_id_str, payment_id);
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if(r)
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{
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std::string extra_nonce;
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set_payment_id_to_tx_extra_nonce(extra_nonce, payment_id);
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r = add_extra_nonce_to_tx_extra(extra, extra_nonce);
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}
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else
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{
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crypto::hash8 payment_id8;
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r = tools::wallet2::parse_short_payment_id(payment_id_str, payment_id8);
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if(r)
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{
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std::string extra_nonce;
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set_encrypted_payment_id_to_tx_extra_nonce(extra_nonce, payment_id8);
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r = add_extra_nonce_to_tx_extra(extra, extra_nonce);
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}
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}
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if(!r)
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{
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fail_msg_writer() << tr("payment id has invalid format, expected 16 or 64 character hex string: ") << payment_id_str;
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return true;
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}
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payment_id_seen = true;
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}
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vector<cryptonote::tx_destination_entry> dsts;
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for (size_t i = 0; i < local_args.size(); i += 2)
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{
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cryptonote::tx_destination_entry de;
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bool has_payment_id;
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crypto::hash8 new_payment_id;
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if (!get_address_from_str(local_args[i], de.addr, has_payment_id, new_payment_id))
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return true;
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if (has_payment_id)
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{
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if (payment_id_seen)
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{
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fail_msg_writer() << tr("a single transaction cannot use more than one payment id: ") << local_args[i];
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return true;
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}
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std::string extra_nonce;
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set_encrypted_payment_id_to_tx_extra_nonce(extra_nonce, new_payment_id);
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bool r = add_extra_nonce_to_tx_extra(extra, extra_nonce);
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if(!r)
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{
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fail_msg_writer() << tr("failed to set up payment id, though it was decoded correctly");
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return true;
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}
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}
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bool ok = cryptonote::parse_amount(de.amount, local_args[i + 1]);
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if(!ok || 0 == de.amount)
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{
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fail_msg_writer() << tr("amount is wrong: ") << local_args[i] << ' ' << local_args[i + 1] <<
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", " << tr("expected number from 0 to ") << print_money(std::numeric_limits<uint64_t>::max());
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return true;
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}
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dsts.push_back(de);
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}
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try
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{
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// figure out what tx will be necessary
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std::vector<tools::wallet2::pending_tx> ptx_vector;
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switch (transfer_type)
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{
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case TransferNew:
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ptx_vector = m_wallet->create_transactions_2(dsts, fake_outs_count, 0 /* unlock_time */, 0 /* unused fee arg*/, extra, m_trusted_daemon);
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break;
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default:
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LOG_ERROR("Unknown transfer method, using original");
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case TransferOriginal:
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ptx_vector = m_wallet->create_transactions(dsts, fake_outs_count, 0 /* unlock_time */, 0 /* unused fee arg*/, extra, m_trusted_daemon);
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break;
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}
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// if more than one tx necessary, prompt user to confirm
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if (m_wallet->always_confirm_transfers() || ptx_vector.size() > 1)
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{
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uint64_t total_fee = 0;
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uint64_t dust_not_in_fee = 0;
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uint64_t dust_in_fee = 0;
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for (size_t n = 0; n < ptx_vector.size(); ++n)
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{
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total_fee += ptx_vector[n].fee;
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if (ptx_vector[n].dust_added_to_fee)
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dust_in_fee += ptx_vector[n].dust;
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else
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dust_not_in_fee += ptx_vector[n].dust;
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}
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std::stringstream prompt;
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if (ptx_vector.size() > 1)
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{
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prompt << boost::format(tr("Your transaction needs to be split into %llu transactions. "
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"This will result in a transaction fee being applied to each transaction, for a total fee of %s")) %
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((unsigned long long)ptx_vector.size()) % print_money(total_fee);
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}
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else
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{
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prompt << boost::format(tr("The transaction fee is %s")) %
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print_money(total_fee);
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}
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if (dust_in_fee != 0) prompt << boost::format(tr(", of which %s is dust from change")) % print_money(dust_in_fee);
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if (dust_not_in_fee != 0) prompt << tr(".") << ENDL << boost::format(tr("A total of %s from dust change will be sent to dust address"))
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% print_money(dust_not_in_fee);
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prompt << tr(".") << ENDL << tr("Is this okay? (Y/Yes/N/No)");
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std::string accepted = command_line::input_line(prompt.str());
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if (std::cin.eof())
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return true;
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if (accepted != "Y" && accepted != "y" && accepted != "Yes" && accepted != "yes")
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{
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fail_msg_writer() << tr("transaction cancelled.");
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// would like to return false, because no tx made, but everything else returns true
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// and I don't know what returning false might adversely affect. *sigh*
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return true;
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}
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}
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// actually commit the transactions
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while (!ptx_vector.empty())
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{
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auto & ptx = ptx_vector.back();
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m_wallet->commit_tx(ptx);
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success_msg_writer(true) << tr("Money successfully sent, transaction ") << get_transaction_hash(ptx.tx);
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// if no exception, remove element from vector
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ptx_vector.pop_back();
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}
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}
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catch (const tools::error::daemon_busy&)
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{
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fail_msg_writer() << tr("daemon is busy. Please try again later.");
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}
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catch (const tools::error::no_connection_to_daemon&)
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{
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fail_msg_writer() << tr("no connection to daemon. Please make sure daemon is running.");
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}
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catch (const tools::error::wallet_rpc_error& e)
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{
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LOG_ERROR("RPC error: " << e.to_string());
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fail_msg_writer() << tr("RPC error: ") << e.what();
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}
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catch (const tools::error::get_random_outs_error&)
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{
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fail_msg_writer() << tr("failed to get random outputs to mix");
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}
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catch (const tools::error::not_enough_money& e)
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{
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LOG_PRINT_L0(boost::format("not enough money to transfer, available only %s, transaction amount %s = %s + %s (fee)") %
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print_money(e.available()) %
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print_money(e.tx_amount() + e.fee()) %
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print_money(e.tx_amount()) %
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print_money(e.fee()));
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fail_msg_writer() << tr("Failed to find a way to create transactions. This is usually due to dust which is so small it cannot pay for itself in fees");
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}
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catch (const tools::error::not_enough_outs_to_mix& e)
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{
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auto writer = fail_msg_writer();
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writer << tr("not enough outputs for specified mixin_count") << " = " << e.mixin_count() << ":";
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for (std::pair<uint64_t, uint64_t> outs_for_amount : e.scanty_outs())
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{
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writer << "\n" << tr("output amount") << " = " << print_money(outs_for_amount.first) << ", " << tr("found outputs to mix") << " = " << outs_for_amount.second;
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}
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}
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catch (const tools::error::tx_not_constructed&)
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{
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fail_msg_writer() << tr("transaction was not constructed");
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}
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catch (const tools::error::tx_rejected& e)
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{
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fail_msg_writer() << (boost::format(tr("transaction %s was rejected by daemon with status: ")) % get_transaction_hash(e.tx())) << e.status();
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std::string reason = e.reason();
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if (!reason.empty())
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fail_msg_writer() << tr("Reason: ") << reason;
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}
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catch (const tools::error::tx_sum_overflow& e)
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{
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fail_msg_writer() << e.what();
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}
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catch (const tools::error::zero_destination&)
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{
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fail_msg_writer() << tr("one of destinations is zero");
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}
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catch (const tools::error::tx_too_big& e)
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{
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fail_msg_writer() << tr("failed to find a suitable way to split transactions");
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}
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catch (const tools::error::transfer_error& e)
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{
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LOG_ERROR("unknown transfer error: " << e.to_string());
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fail_msg_writer() << tr("unknown transfer error: ") << e.what();
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}
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catch (const tools::error::wallet_internal_error& e)
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{
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LOG_ERROR("internal error: " << e.to_string());
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fail_msg_writer() << tr("internal error: ") << e.what();
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}
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catch (const std::exception& e)
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{
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LOG_ERROR("unexpected error: " << e.what());
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fail_msg_writer() << tr("unexpected error: ") << e.what();
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}
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catch (...)
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{
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LOG_ERROR("unknown error");
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fail_msg_writer() << tr("unknown error");
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}
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::transfer(const std::vector<std::string> &args_)
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{
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return transfer_main(TransferOriginal, args_);
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::transfer_new(const std::vector<std::string> &args_)
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{
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return transfer_main(TransferNew, args_);
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::locked_transfer(const std::vector<std::string> &args_)
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{
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if (!try_connect_to_daemon())
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return true;
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LOCK_IDLE_SCOPE();
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std::vector<std::string> local_args = args_;
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size_t fake_outs_count;
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if(local_args.size() > 0) {
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if(!epee::string_tools::get_xtype_from_string(fake_outs_count, local_args[0]))
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{
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fake_outs_count = m_wallet->default_mixin();
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if (fake_outs_count == 0)
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fake_outs_count = DEFAULT_MIX;
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}
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else
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{
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local_args.erase(local_args.begin());
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}
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}
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if(local_args.size() < 2)
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{
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fail_msg_writer() << tr("wrong number of arguments");
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return true;
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}
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if(m_wallet->watch_only())
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{
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fail_msg_writer() << tr("this is a watch only wallet");
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@ -2403,17 +2677,8 @@ bool simple_wallet::transfer_main(int transfer_type, const std::vector<std::stri
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{
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// figure out what tx will be necessary
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std::vector<tools::wallet2::pending_tx> ptx_vector;
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switch (transfer_type)
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{
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case TransferNew:
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ptx_vector = m_wallet->create_transactions_2(dsts, fake_outs_count, given_unlock_time /* unlock_time */, 0 /* unused fee arg*/, extra, m_trusted_daemon);
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break;
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default:
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LOG_ERROR("Unknown transfer method, using original");
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case TransferOriginal:
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ptx_vector = m_wallet->create_transactions(dsts, fake_outs_count, given_unlock_time /* unlock_time */, 0 /* unused fee arg*/, extra, m_trusted_daemon);
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break;
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}
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ptx_vector = m_wallet->create_transactions_2(dsts, fake_outs_count, given_unlock_time /* unlock_time */, 0 /* unused fee arg*/, extra, m_trusted_daemon);
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// if more than one tx necessary, prompt user to confirm
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if (m_wallet->always_confirm_transfers() || ptx_vector.size() > 1)
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@ -2566,16 +2831,7 @@ bool simple_wallet::transfer_main(int transfer_type, const std::vector<std::stri
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::transfer(const std::vector<std::string> &args_)
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{
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return transfer_main(TransferOriginal, args_);
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::transfer_new(const std::vector<std::string> &args_)
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{
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return transfer_main(TransferNew, args_);
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}
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::sweep_unmixable(const std::vector<std::string> &args_)
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{
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if (!try_connect_to_daemon())
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@ -123,6 +123,7 @@ namespace cryptonote
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bool transfer_main(int transfer_type, const std::vector<std::string> &args);
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bool transfer(const std::vector<std::string> &args);
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bool transfer_new(const std::vector<std::string> &args);
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bool locked_transfer(const std::vector<std::string> &args);
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bool sweep_all(const std::vector<std::string> &args);
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bool sweep_unmixable(const std::vector<std::string> &args);
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std::vector<std::vector<cryptonote::tx_destination_entry>> split_amounts(
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