mirror of
https://github.com/cypherstack/stack_wallet.git
synced 2024-11-16 17:27:39 +00:00
714 lines
22 KiB
Dart
714 lines
22 KiB
Dart
import 'dart:async';
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import 'package:isar/isar.dart';
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import 'package:meta/meta.dart';
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import 'package:mutex/mutex.dart';
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import '../../db/isar/main_db.dart';
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import '../../models/isar/models/blockchain_data/address.dart';
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import '../../models/isar/models/ethereum/eth_contract.dart';
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import '../../models/node_model.dart';
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import '../../models/paymint/fee_object_model.dart';
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import '../../services/event_bus/events/global/node_connection_status_changed_event.dart';
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import '../../services/event_bus/events/global/refresh_percent_changed_event.dart';
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import '../../services/event_bus/events/global/wallet_sync_status_changed_event.dart';
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import '../../services/event_bus/global_event_bus.dart';
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import '../../services/node_service.dart';
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import '../../utilities/amount/amount.dart';
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import '../../utilities/constants.dart';
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import '../../utilities/enums/sync_type_enum.dart';
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import '../../utilities/flutter_secure_storage_interface.dart';
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import '../../utilities/logger.dart';
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import '../../utilities/paynym_is_api.dart';
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import '../../utilities/prefs.dart';
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import '../crypto_currency/crypto_currency.dart';
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import '../isar/models/wallet_info.dart';
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import '../models/tx_data.dart';
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import 'impl/banano_wallet.dart';
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import 'impl/bitcoin_frost_wallet.dart';
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import 'impl/bitcoin_wallet.dart';
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import 'impl/bitcoincash_wallet.dart';
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import 'impl/dogecoin_wallet.dart';
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import 'impl/ecash_wallet.dart';
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import 'impl/epiccash_wallet.dart';
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import 'impl/ethereum_wallet.dart';
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import 'impl/firo_wallet.dart';
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import 'impl/litecoin_wallet.dart';
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import 'impl/monero_wallet.dart';
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import 'impl/namecoin_wallet.dart';
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import 'impl/nano_wallet.dart';
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import 'impl/particl_wallet.dart';
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import 'impl/peercoin_wallet.dart';
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import 'impl/solana_wallet.dart';
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import 'impl/stellar_wallet.dart';
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import 'impl/sub_wallets/eth_token_wallet.dart';
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import 'impl/tezos_wallet.dart';
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import 'impl/wownero_wallet.dart';
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import 'intermediate/cryptonote_wallet.dart';
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import 'wallet_mixin_interfaces/electrumx_interface.dart';
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import 'wallet_mixin_interfaces/lelantus_interface.dart';
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import 'wallet_mixin_interfaces/mnemonic_interface.dart';
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import 'wallet_mixin_interfaces/multi_address_interface.dart';
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import 'wallet_mixin_interfaces/paynym_interface.dart';
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import 'wallet_mixin_interfaces/private_key_interface.dart';
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import 'wallet_mixin_interfaces/spark_interface.dart';
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abstract class Wallet<T extends CryptoCurrency> {
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// default to Transaction class. For TransactionV2 set to 2
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int get isarTransactionVersion => 1;
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// whether the wallet currently supports multiple recipients per tx
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bool get supportsMultiRecipient => false;
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Wallet(this.cryptoCurrency);
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//============================================================================
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// ========== Properties =====================================================
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final T cryptoCurrency;
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late final MainDB mainDB;
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late final SecureStorageInterface secureStorageInterface;
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late final NodeService nodeService;
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late final Prefs prefs;
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final refreshMutex = Mutex();
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late final String _walletId;
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WalletInfo get info =>
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mainDB.isar.walletInfo.where().walletIdEqualTo(walletId).findFirstSync()!;
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bool get isConnected => _isConnected;
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bool get shouldAutoSync => _shouldAutoSync;
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set shouldAutoSync(bool shouldAutoSync) {
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if (_shouldAutoSync != shouldAutoSync) {
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_shouldAutoSync = shouldAutoSync;
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if (!shouldAutoSync) {
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_periodicRefreshTimer?.cancel();
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_periodicRefreshTimer = null;
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_stopNetworkAlivePinging();
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} else {
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_startNetworkAlivePinging();
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refresh();
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}
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}
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}
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// ===== private properties ===========================================
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Timer? _periodicRefreshTimer;
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Timer? _networkAliveTimer;
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bool _shouldAutoSync = false;
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bool _isConnected = false;
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void xmrAndWowSyncSpecificFunctionThatShouldBeGottenRidOfInTheFuture(
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bool flag,
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) {
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_isConnected = flag;
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}
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//============================================================================
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// ========== Wallet Info Convenience Getters ================================
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String get walletId => _walletId;
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/// Attempt to fetch the most recent chain height.
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/// On failure return the last cached height.
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Future<int> get chainHeight async {
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try {
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// attempt updating the walletInfo's cached height
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await updateChainHeight();
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} catch (e, s) {
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// do nothing on failure (besides logging)
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Logging.instance.log("$e\n$s", level: LogLevel.Warning);
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}
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// return regardless of whether it was updated or not as we want a
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// number even if it isn't the most recent
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return info.cachedChainHeight;
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}
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//============================================================================
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// ========== Static Main ====================================================
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/// Create a new wallet and save [walletInfo] to db.
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static Future<Wallet> create({
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required WalletInfo walletInfo,
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required MainDB mainDB,
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required SecureStorageInterface secureStorageInterface,
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required NodeService nodeService,
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required Prefs prefs,
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String? mnemonic,
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String? mnemonicPassphrase,
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String? privateKey,
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}) async {
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final Wallet wallet = await _construct(
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walletInfo: walletInfo,
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mainDB: mainDB,
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secureStorageInterface: secureStorageInterface,
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nodeService: nodeService,
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prefs: prefs,
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);
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if (wallet is MnemonicInterface) {
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if (wallet is CryptonoteWallet) {
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// currently a special case due to the xmr/wow libraries handling their
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// own mnemonic generation on new wallet creation
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// if its a restore we must set them
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if (mnemonic != null) {
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if ((await secureStorageInterface.read(
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key: mnemonicKey(walletId: walletInfo.walletId),
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)) ==
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null) {
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await secureStorageInterface.write(
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key: mnemonicKey(walletId: walletInfo.walletId),
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value: mnemonic,
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);
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}
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if (mnemonicPassphrase != null) {
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if ((await secureStorageInterface.read(
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key: mnemonicPassphraseKey(walletId: walletInfo.walletId),
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)) ==
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null) {
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await secureStorageInterface.write(
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key: mnemonicPassphraseKey(walletId: walletInfo.walletId),
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value: mnemonicPassphrase,
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);
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}
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}
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}
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} else {
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await secureStorageInterface.write(
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key: mnemonicKey(walletId: walletInfo.walletId),
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value: mnemonic!,
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);
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await secureStorageInterface.write(
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key: mnemonicPassphraseKey(walletId: walletInfo.walletId),
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value: mnemonicPassphrase!,
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);
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}
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}
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// TODO [prio=low] handle eth differently?
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// This would need to be changed if we actually end up allowing eth wallets
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// to be created with a private key instead of mnemonic only
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if (wallet is PrivateKeyInterface && wallet is! EthereumWallet) {
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await secureStorageInterface.write(
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key: privateKeyKey(walletId: walletInfo.walletId),
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value: privateKey!,
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);
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}
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// Store in db after wallet creation
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await wallet.mainDB.isar.writeTxn(() async {
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await wallet.mainDB.isar.walletInfo.put(walletInfo);
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});
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return wallet;
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}
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/// Load an existing wallet via [WalletInfo] using [walletId].
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static Future<Wallet> load({
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required String walletId,
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required MainDB mainDB,
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required SecureStorageInterface secureStorageInterface,
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required NodeService nodeService,
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required Prefs prefs,
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}) async {
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final walletInfo = await mainDB.isar.walletInfo
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.where()
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.walletIdEqualTo(walletId)
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.findFirst();
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if (walletInfo == null) {
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throw Exception(
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"WalletInfo not found for $walletId when trying to call Wallet.load()",
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);
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}
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return await _construct(
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walletInfo: walletInfo,
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mainDB: mainDB,
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secureStorageInterface: secureStorageInterface,
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nodeService: nodeService,
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prefs: prefs,
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);
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}
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// TODO: [prio=low] refactor to more generalized token rather than eth specific
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static Wallet loadTokenWallet({
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required EthereumWallet ethWallet,
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required EthContract contract,
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}) {
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final Wallet wallet = EthTokenWallet(
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ethWallet,
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contract,
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);
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wallet.prefs = ethWallet.prefs;
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wallet.nodeService = ethWallet.nodeService;
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wallet.secureStorageInterface = ethWallet.secureStorageInterface;
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wallet.mainDB = ethWallet.mainDB;
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return wallet.._walletId = ethWallet.info.walletId;
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}
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//============================================================================
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// ========== Static Util ====================================================
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// secure storage key
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static String mnemonicKey({
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required String walletId,
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}) =>
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"${walletId}_mnemonic";
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// secure storage key
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static String mnemonicPassphraseKey({
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required String walletId,
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}) =>
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"${walletId}_mnemonicPassphrase";
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// secure storage key
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static String privateKeyKey({
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required String walletId,
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}) =>
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"${walletId}_privateKey";
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//============================================================================
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// ========== Private ========================================================
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/// Construct wallet instance by [WalletType] from [walletInfo]
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static Future<Wallet> _construct({
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required WalletInfo walletInfo,
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required MainDB mainDB,
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required SecureStorageInterface secureStorageInterface,
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required NodeService nodeService,
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required Prefs prefs,
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}) async {
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final Wallet wallet = _loadWallet(
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walletInfo: walletInfo,
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);
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wallet.prefs = prefs;
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wallet.nodeService = nodeService;
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if (wallet is ElectrumXInterface || wallet is BitcoinFrostWallet) {
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// initialize electrumx instance
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await wallet.updateNode();
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}
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return wallet
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..secureStorageInterface = secureStorageInterface
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..mainDB = mainDB
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.._walletId = walletInfo.walletId;
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}
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static Wallet _loadWallet({
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required WalletInfo walletInfo,
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}) {
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final net = walletInfo.coin.network;
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switch (walletInfo.coin.runtimeType) {
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case const (Banano):
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return BananoWallet(net);
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case const (Bitcoin):
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return BitcoinWallet(net);
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case const (BitcoinFrost):
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return BitcoinFrostWallet(net);
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case const (Bitcoincash):
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return BitcoincashWallet(net);
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case const (Dogecoin):
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return DogecoinWallet(net);
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case const (Ecash):
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return EcashWallet(net);
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case const (Epiccash):
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return EpiccashWallet(net);
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case const (Ethereum):
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return EthereumWallet(net);
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case const (Firo):
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return FiroWallet(net);
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case const (Litecoin):
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return LitecoinWallet(net);
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case const (Monero):
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return MoneroWallet(net);
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case const (Namecoin):
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return NamecoinWallet(net);
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case const (Nano):
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return NanoWallet(net);
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case const (Particl):
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return ParticlWallet(net);
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case const (Peercoin):
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return PeercoinWallet(net);
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case const (Solana):
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return SolanaWallet(net);
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case const (Stellar):
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return StellarWallet(net);
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case const (Tezos):
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return TezosWallet(net);
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case const (Wownero):
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return WowneroWallet(net);
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default:
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// should never hit in reality
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throw Exception("Unknown crypto currency: ${walletInfo.coin}");
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}
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}
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void _startNetworkAlivePinging() {
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// call once on start right away
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_periodicPingCheck();
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// then periodically check
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_networkAliveTimer = Timer.periodic(
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Constants.networkAliveTimerDuration,
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(_) async {
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_periodicPingCheck();
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},
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);
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}
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void _periodicPingCheck() async {
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final bool hasNetwork = await pingCheck();
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if (_isConnected != hasNetwork) {
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final NodeConnectionStatus status = hasNetwork
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? NodeConnectionStatus.connected
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: NodeConnectionStatus.disconnected;
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GlobalEventBus.instance.fire(
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NodeConnectionStatusChangedEvent(
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status,
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walletId,
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cryptoCurrency,
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),
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);
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_isConnected = hasNetwork;
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if (hasNetwork) {
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unawaited(refresh());
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}
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}
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}
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void _stopNetworkAlivePinging() {
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_networkAliveTimer?.cancel();
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_networkAliveTimer = null;
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}
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//============================================================================
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// ========== Must override ==================================================
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/// Create and sign a transaction in preparation to submit to network
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Future<TxData> prepareSend({required TxData txData});
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/// Broadcast transaction to network. On success update local wallet state to
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/// reflect updated balance, transactions, utxos, etc.
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Future<TxData> confirmSend({required TxData txData});
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/// Recover a wallet by scanning the blockchain. If called on a new wallet a
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/// normal recovery should occur. When called on an existing wallet and
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/// [isRescan] is false then it should throw. Otherwise this function should
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/// delete all locally stored blockchain data and refetch it.
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Future<void> recover({required bool isRescan});
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Future<void> updateNode();
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Future<void> updateTransactions();
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Future<void> updateBalance();
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/// returns true if new utxos were added to local db
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Future<bool> updateUTXOs();
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/// updates the wallet info's cachedChainHeight
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Future<void> updateChainHeight();
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Future<Amount> estimateFeeFor(Amount amount, int feeRate);
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Future<FeeObject> get fees;
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Future<bool> pingCheck();
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Future<void> checkSaveInitialReceivingAddress();
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//===========================================
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/// add transaction to local db temporarily. Used for quickly updating ui
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/// before refresh can fetch data from server
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Future<TxData> updateSentCachedTxData({required TxData txData}) async {
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if (txData.tempTx != null) {
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await mainDB.updateOrPutTransactionV2s([txData.tempTx!]);
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}
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return txData;
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}
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NodeModel getCurrentNode() {
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final node = nodeService.getPrimaryNodeFor(currency: cryptoCurrency) ??
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cryptoCurrency.defaultNode;
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return node;
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}
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// Should fire events
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Future<void> refresh() async {
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// Awaiting this lock could be dangerous.
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// Since refresh is periodic (generally)
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if (refreshMutex.isLocked) {
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return;
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}
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final start = DateTime.now();
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try {
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// this acquire should be almost instant due to above check.
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// Slight possibility of race but should be irrelevant
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await refreshMutex.acquire();
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GlobalEventBus.instance.fire(
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WalletSyncStatusChangedEvent(
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WalletSyncStatus.syncing,
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walletId,
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cryptoCurrency,
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),
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);
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// add some small buffer before making calls.
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// this can probably be removed in the future but was added as a
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// debugging feature
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await Future<void>.delayed(const Duration(milliseconds: 300));
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// TODO: [prio=low] handle this differently. Extra modification of this file for coin specific functionality should be avoided.
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final Set<String> codesToCheck = {};
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if (this is PaynymInterface) {
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// isSegwit does not matter here at all
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final myCode =
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await (this as PaynymInterface).getPaymentCode(isSegwit: false);
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final nym = await PaynymIsApi().nym(myCode.toString());
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if (nym.value != null) {
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for (final follower in nym.value!.followers) {
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codesToCheck.add(follower.code);
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}
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for (final following in nym.value!.following) {
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codesToCheck.add(following.code);
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}
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}
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}
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.0, walletId));
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await updateChainHeight();
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.1, walletId));
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// TODO: [prio=low] handle this differently. Extra modification of this file for coin specific functionality should be avoided.
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if (this is MultiAddressInterface) {
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await (this as MultiAddressInterface)
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.checkReceivingAddressForTransactions();
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}
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.2, walletId));
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// TODO: [prio=low] handle this differently. Extra modification of this file for coin specific functionality should be avoided.
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if (this is MultiAddressInterface) {
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await (this as MultiAddressInterface)
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.checkChangeAddressForTransactions();
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}
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.3, walletId));
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if (this is SparkInterface) {
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// this should be called before updateTransactions()
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await (this as SparkInterface).refreshSparkData();
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}
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.50, walletId));
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final fetchFuture = updateTransactions();
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final utxosRefreshFuture = updateUTXOs();
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// if (currentHeight != storedHeight) {
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.60, walletId));
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await utxosRefreshFuture;
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GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.70, walletId));
|
|
|
|
await fetchFuture;
|
|
|
|
// TODO: [prio=low] handle this differently. Extra modification of this file for coin specific functionality should be avoided.
|
|
if (this is PaynymInterface && codesToCheck.isNotEmpty) {
|
|
await (this as PaynymInterface)
|
|
.checkForNotificationTransactionsTo(codesToCheck);
|
|
// check utxos again for notification outputs
|
|
await updateUTXOs();
|
|
}
|
|
GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.80, walletId));
|
|
|
|
// await getAllTxsToWatch();
|
|
|
|
// TODO: [prio=low] handle this differently. Extra modification of this file for coin specific functionality should be avoided.
|
|
if (this is LelantusInterface) {
|
|
if (info.otherData[WalletInfoKeys.enableLelantusScanning] as bool? ??
|
|
false) {
|
|
await (this as LelantusInterface).refreshLelantusData();
|
|
}
|
|
}
|
|
GlobalEventBus.instance.fire(RefreshPercentChangedEvent(0.90, walletId));
|
|
|
|
await updateBalance();
|
|
|
|
GlobalEventBus.instance.fire(RefreshPercentChangedEvent(1.0, walletId));
|
|
GlobalEventBus.instance.fire(
|
|
WalletSyncStatusChangedEvent(
|
|
WalletSyncStatus.synced,
|
|
walletId,
|
|
cryptoCurrency,
|
|
),
|
|
);
|
|
|
|
if (shouldAutoSync) {
|
|
_periodicRefreshTimer ??=
|
|
Timer.periodic(const Duration(seconds: 150), (timer) async {
|
|
// chain height check currently broken
|
|
// if ((await chainHeight) != (await storedChainHeight)) {
|
|
|
|
// TODO: [prio=med] some kind of quick check if wallet needs to refresh to replace the old refreshIfThereIsNewData call
|
|
// if (await refreshIfThereIsNewData()) {
|
|
unawaited(refresh());
|
|
|
|
// }
|
|
// }
|
|
});
|
|
}
|
|
} catch (error, strace) {
|
|
GlobalEventBus.instance.fire(
|
|
NodeConnectionStatusChangedEvent(
|
|
NodeConnectionStatus.disconnected,
|
|
walletId,
|
|
cryptoCurrency,
|
|
),
|
|
);
|
|
GlobalEventBus.instance.fire(
|
|
WalletSyncStatusChangedEvent(
|
|
WalletSyncStatus.unableToSync,
|
|
walletId,
|
|
cryptoCurrency,
|
|
),
|
|
);
|
|
Logging.instance.log(
|
|
"Caught exception in refreshWalletData(): $error\n$strace",
|
|
level: LogLevel.Error,
|
|
);
|
|
} finally {
|
|
refreshMutex.release();
|
|
|
|
Logging.instance.log(
|
|
"Refresh for "
|
|
"${info.name}: ${DateTime.now().difference(start)}",
|
|
level: LogLevel.Info,
|
|
);
|
|
}
|
|
}
|
|
|
|
Future<void> exit() async {
|
|
_periodicRefreshTimer?.cancel();
|
|
_networkAliveTimer?.cancel();
|
|
|
|
// If the syncing pref is currentWalletOnly or selectedWalletsAtStartup (and
|
|
// this wallet isn't in walletIdsSyncOnStartup), then we close subscriptions.
|
|
|
|
switch (prefs.syncType) {
|
|
case SyncingType.currentWalletOnly:
|
|
// Close the subscription for this coin's chain height.
|
|
// NOTE: This does not work now that the subscription is shared
|
|
// await (await ChainHeightServiceManager.getService(cryptoCurrency))
|
|
// ?.cancelListen();
|
|
case SyncingType.selectedWalletsAtStartup:
|
|
// Close the subscription if this wallet is not in the list to be synced.
|
|
if (!prefs.walletIdsSyncOnStartup.contains(walletId)) {
|
|
// Check if there's another wallet of this coin on the sync list.
|
|
final List<String> walletIds = [];
|
|
for (final id in prefs.walletIdsSyncOnStartup) {
|
|
final wallet = mainDB.isar.walletInfo
|
|
.where()
|
|
.walletIdEqualTo(id)
|
|
.findFirstSync()!;
|
|
|
|
if (wallet.coin == cryptoCurrency) {
|
|
walletIds.add(id);
|
|
}
|
|
}
|
|
// TODO [prio=low]: use a query instead of iterating thru wallets.
|
|
|
|
// If there are no other wallets of this coin, then close the sub.
|
|
if (walletIds.isEmpty) {
|
|
// NOTE: This does not work now that the subscription is shared
|
|
// await (await ChainHeightServiceManager.getService(
|
|
// cryptoCurrency))
|
|
// ?.cancelListen();
|
|
}
|
|
}
|
|
case SyncingType.allWalletsOnStartup:
|
|
// Do nothing.
|
|
break;
|
|
}
|
|
}
|
|
|
|
@mustCallSuper
|
|
Future<void> init() async {
|
|
await checkSaveInitialReceivingAddress();
|
|
final address = await getCurrentReceivingAddress();
|
|
if (address != null) {
|
|
await info.updateReceivingAddress(
|
|
newAddress: address.value,
|
|
isar: mainDB.isar,
|
|
);
|
|
}
|
|
}
|
|
|
|
// ===========================================================================
|
|
|
|
FilterOperation? get transactionFilterOperation => null;
|
|
|
|
FilterOperation? get receivingAddressFilterOperation;
|
|
FilterOperation? get changeAddressFilterOperation;
|
|
|
|
Future<Address?> getCurrentReceivingAddress() async {
|
|
return await _addressQuery(receivingAddressFilterOperation);
|
|
}
|
|
|
|
Future<Address?> getCurrentChangeAddress() async {
|
|
return await _addressQuery(changeAddressFilterOperation);
|
|
}
|
|
|
|
Future<Address?> _addressQuery(FilterOperation? filterOperation) async {
|
|
return await mainDB.isar.addresses
|
|
.buildQuery<Address>(
|
|
whereClauses: [
|
|
IndexWhereClause.equalTo(
|
|
indexName: r"walletId",
|
|
value: [walletId],
|
|
),
|
|
],
|
|
filter: filterOperation,
|
|
sortBy: [
|
|
const SortProperty(
|
|
property: r"derivationIndex",
|
|
sort: Sort.desc,
|
|
),
|
|
],
|
|
)
|
|
.findFirst();
|
|
}
|
|
}
|