core: include a dummy encrypted payment id when no payment is used
For better transaction uniformity, even though this wastes space.
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@ -226,13 +226,15 @@ namespace cryptonote
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std::vector<tx_extra_field> tx_extra_fields;
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std::vector<tx_extra_field> tx_extra_fields;
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if (parse_tx_extra(tx.extra, tx_extra_fields))
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if (parse_tx_extra(tx.extra, tx_extra_fields))
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{
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{
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bool add_dummy_payment_id = true;
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tx_extra_nonce extra_nonce;
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tx_extra_nonce extra_nonce;
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if (find_tx_extra_field_by_type(tx_extra_fields, extra_nonce))
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if (find_tx_extra_field_by_type(tx_extra_fields, extra_nonce))
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{
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{
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crypto::hash8 payment_id = null_hash8;
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crypto::hash payment_id = null_hash;
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if (get_encrypted_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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crypto::hash8 payment_id8 = null_hash8;
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if (get_encrypted_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id8))
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{
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{
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LOG_PRINT_L2("Encrypting payment id " << payment_id);
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LOG_PRINT_L2("Encrypting payment id " << payment_id8);
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crypto::public_key view_key_pub = get_destination_view_key_pub(destinations, change_addr);
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crypto::public_key view_key_pub = get_destination_view_key_pub(destinations, change_addr);
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if (view_key_pub == null_pkey)
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if (view_key_pub == null_pkey)
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{
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{
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@ -240,21 +242,53 @@ namespace cryptonote
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return false;
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return false;
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}
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}
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if (!hwdev.encrypt_payment_id(payment_id, view_key_pub, tx_key))
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if (!hwdev.encrypt_payment_id(payment_id8, view_key_pub, tx_key))
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{
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{
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LOG_ERROR("Failed to encrypt payment id");
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LOG_ERROR("Failed to encrypt payment id");
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return false;
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return false;
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}
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}
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std::string extra_nonce;
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std::string extra_nonce;
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set_encrypted_payment_id_to_tx_extra_nonce(extra_nonce, payment_id);
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set_encrypted_payment_id_to_tx_extra_nonce(extra_nonce, payment_id8);
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remove_field_from_tx_extra(tx.extra, typeid(tx_extra_nonce));
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remove_field_from_tx_extra(tx.extra, typeid(tx_extra_nonce));
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if (!add_extra_nonce_to_tx_extra(tx.extra, extra_nonce))
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if (!add_extra_nonce_to_tx_extra(tx.extra, extra_nonce))
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{
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{
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LOG_ERROR("Failed to add encrypted payment id to tx extra");
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LOG_ERROR("Failed to add encrypted payment id to tx extra");
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return false;
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return false;
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}
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}
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LOG_PRINT_L1("Encrypted payment ID: " << payment_id);
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LOG_PRINT_L1("Encrypted payment ID: " << payment_id8);
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add_dummy_payment_id = false;
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}
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else if (get_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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{
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add_dummy_payment_id = false;
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}
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}
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// we don't add one if we've got more than the usual 1 destination plus change
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if (destinations.size() > 2)
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add_dummy_payment_id = false;
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if (add_dummy_payment_id)
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{
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// if we have neither long nor short payment id, add a dummy short one,
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// this should end up being the vast majority of txes as time goes on
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std::string extra_nonce;
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crypto::hash8 payment_id8 = null_hash8;
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crypto::public_key view_key_pub = get_destination_view_key_pub(destinations, change_addr);
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if (view_key_pub == null_pkey)
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{
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LOG_ERROR("Failed to get key to encrypt dummy payment id with");
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}
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else
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{
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hwdev.encrypt_payment_id(payment_id8, view_key_pub, tx_key);
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set_encrypted_payment_id_to_tx_extra_nonce(extra_nonce, payment_id8);
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if (!add_extra_nonce_to_tx_extra(tx.extra, extra_nonce))
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{
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LOG_ERROR("Failed to add dummy encrypted payment id to tx extra");
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// continue anyway
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}
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}
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}
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}
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}
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}
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}
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@ -4624,12 +4624,8 @@ void simple_wallet::on_money_received(uint64_t height, const crypto::hash &txid,
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tx_extra_nonce extra_nonce;
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tx_extra_nonce extra_nonce;
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if (find_tx_extra_field_by_type(tx_extra_fields, extra_nonce))
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if (find_tx_extra_field_by_type(tx_extra_fields, extra_nonce))
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{
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{
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crypto::hash8 payment_id8 = crypto::null_hash8;
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crypto::hash payment_id = crypto::null_hash;
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crypto::hash payment_id = crypto::null_hash;
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if (get_encrypted_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id8))
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if (get_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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message_writer() <<
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tr("NOTE: this transaction uses an encrypted payment ID: consider using subaddresses instead");
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else if (get_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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message_writer(console_color_red, false) <<
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message_writer(console_color_red, false) <<
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(m_long_payment_id_support ? tr("WARNING: this transaction uses an unencrypted payment ID: consider using subaddresses instead.") : tr("WARNING: this transaction uses an unencrypted payment ID: these are obsolete. Support will be withdrawn in the future. Use subaddresses instead."));
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(m_long_payment_id_support ? tr("WARNING: this transaction uses an unencrypted payment ID: consider using subaddresses instead.") : tr("WARNING: this transaction uses an unencrypted payment ID: these are obsolete. Support will be withdrawn in the future. Use subaddresses instead."));
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}
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}
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@ -6513,14 +6509,28 @@ bool simple_wallet::accept_loaded_tx(const std::function<size_t()> get_num_txes,
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{
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{
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if (!payment_id_string.empty())
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if (!payment_id_string.empty())
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payment_id_string += ", ";
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payment_id_string += ", ";
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payment_id_string = std::string("encrypted payment ID ") + epee::string_tools::pod_to_hex(payment_id8);
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has_encrypted_payment_id = true;
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// if none of the addresses are integrated addresses, it's a dummy one
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bool is_dummy = true;
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for (const auto &e: cd.dests)
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if (e.is_integrated)
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is_dummy = false;
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if (is_dummy)
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{
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payment_id_string += std::string("dummy encrypted payment ID");
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}
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else
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{
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payment_id_string += std::string("encrypted payment ID ") + epee::string_tools::pod_to_hex(payment_id8);
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has_encrypted_payment_id = true;
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}
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}
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}
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else if (get_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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else if (get_payment_id_from_tx_extra_nonce(extra_nonce.nonce, payment_id))
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{
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{
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if (!payment_id_string.empty())
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if (!payment_id_string.empty())
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payment_id_string += ", ";
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payment_id_string += ", ";
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payment_id_string = std::string("unencrypted payment ID ") + epee::string_tools::pod_to_hex(payment_id);
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payment_id_string += std::string("unencrypted payment ID ") + epee::string_tools::pod_to_hex(payment_id);
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payment_id_string += " (OBSOLETE)";
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payment_id_string += " (OBSOLETE)";
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}
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}
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}
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}
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