mirror of
https://github.com/cypherstack/stack_wallet.git
synced 2024-11-18 10:11:03 +00:00
403 lines
13 KiB
Dart
403 lines
13 KiB
Dart
import 'dart:async';
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import 'dart:io';
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import 'dart:typed_data';
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import 'package:bitbox/bitbox.dart' as bitbox;
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import 'package:bitcoindart/bitcoindart.dart' as btcdart;
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import 'package:fusiondart/fusiondart.dart' as fusion;
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import 'package:isar/isar.dart';
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import 'package:stackwallet/db/isar/main_db.dart';
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import 'package:stackwallet/electrumx_rpc/cached_electrumx.dart';
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import 'package:stackwallet/models/fusion_progress_ui_state.dart';
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import 'package:stackwallet/models/isar/models/isar_models.dart';
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import 'package:stackwallet/pages_desktop_specific/cashfusion/sub_widgets/fusion_dialog.dart';
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import 'package:stackwallet/services/fusion_tor_service.dart';
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import 'package:stackwallet/utilities/bip32_utils.dart';
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import 'package:stackwallet/utilities/enums/coin_enum.dart';
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import 'package:stackwallet/utilities/logger.dart';
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import 'package:stackwallet/utilities/stack_file_system.dart';
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const String kReservedFusionAddress = "reserved_fusion_address";
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/// A mixin for the BitcoinCashWallet class that adds CashFusion functionality.
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mixin FusionWalletInterface {
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// Passed in wallet data.
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late final String _walletId;
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late final Coin _coin;
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late final MainDB _db;
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late final FusionTorService _torService;
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late final Future<String?> _mnemonic;
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late final Future<String?> _mnemonicPassphrase;
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late final btcdart.NetworkType _network;
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// setting values on this should notify any listeners (the GUI)
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FusionProgressUIState? _uiState;
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FusionProgressUIState get uiState {
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if (_uiState == null) {
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throw Exception("FusionProgressUIState has not been set for $_walletId");
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}
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return _uiState!;
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}
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set uiState(FusionProgressUIState state) {
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if (_uiState != null) {
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throw Exception("FusionProgressUIState was already set for $_walletId");
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}
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_uiState = state;
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}
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// Passed in wallet functions.
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late final Future<Address> Function() _getNextUnusedChangeAddress;
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late final CachedElectrumX Function() _getWalletCachedElectrumX;
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late final Future<int> Function({
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required String address,
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}) _getTxCountForAddress;
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late final Future<int> Function() _getChainHeight;
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/// Initializes the FusionWalletInterface mixin.
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///
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/// This function must be called before any other functions in this mixin.
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Future<void> initFusionInterface({
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required String walletId,
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required Coin coin,
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required MainDB db,
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required Future<Address> Function() getNextUnusedChangeAddress,
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required CachedElectrumX Function() getWalletCachedElectrumX,
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required Future<int> Function({
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required String address,
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}) getTxCountForAddress,
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required Future<int> Function() getChainHeight,
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required Future<String?> mnemonic,
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required Future<String?> mnemonicPassphrase,
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required btcdart.NetworkType network,
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}) async {
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// Set passed in wallet data.
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_walletId = walletId;
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_coin = coin;
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_db = db;
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_getNextUnusedChangeAddress = getNextUnusedChangeAddress;
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_torService = FusionTorService.sharedInstance;
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_getWalletCachedElectrumX = getWalletCachedElectrumX;
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_getTxCountForAddress = getTxCountForAddress;
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_getChainHeight = getChainHeight;
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_mnemonic = mnemonic;
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_mnemonicPassphrase = mnemonicPassphrase;
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_network = network;
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}
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// callback to update the ui state object
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void _updateStatus(fusion.FusionStatus fusionStatus) {
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switch (fusionStatus) {
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case fusion.FusionStatus.setup:
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_uiState?.outputs = CashFusionStatus.waiting;
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break;
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case fusion.FusionStatus.waiting:
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_uiState?.outputs = CashFusionStatus.success;
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break;
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case fusion.FusionStatus.connecting:
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_uiState?.connecting = CashFusionStatus.waiting;
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break;
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case fusion.FusionStatus.running:
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_uiState?.connecting = CashFusionStatus.success;
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_uiState?.fusing = CashFusionStatus.fusing;
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break;
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case fusion.FusionStatus.complete:
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_uiState?.fusing = CashFusionStatus.success;
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_uiState?.complete = CashFusionStatus.success;
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break;
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case fusion.FusionStatus.failed:
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_uiState?.fusing = CashFusionStatus.failed;
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_uiState?.complete = CashFusionStatus.failed;
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break;
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case fusion.FusionStatus.exception:
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_uiState?.fusing = CashFusionStatus.failed;
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_uiState?.complete = CashFusionStatus.failed;
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break;
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}
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}
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/// Returns a list of all transactions in the wallet for the given address.
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Future<List<Map<String, dynamic>>> _getTransactionsByAddress(
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String address,
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) async {
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final txidList =
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await _db.getTransactions(_walletId).txidProperty().findAll();
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final futures = txidList.map(
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(e) => _getWalletCachedElectrumX().getTransaction(
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txHash: e,
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coin: _coin,
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),
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);
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return await Future.wait(futures);
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}
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Future<Uint8List> _getPrivateKeyForPubKey(List<int> pubKey) async {
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// can't directly query for equal lists in isar so we need to fetch
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// all addresses then search in dart
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try {
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final derivationPath = (await _db
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.getAddresses(_walletId)
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.filter()
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.typeEqualTo(AddressType.p2pkh)
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.and()
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.derivationPathIsNotNull()
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.and()
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.group((q) => q
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.subTypeEqualTo(AddressSubType.receiving)
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.or()
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.subTypeEqualTo(AddressSubType.change))
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.findAll())
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.firstWhere((e) => e.publicKey.toString() == pubKey.toString())
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.derivationPath!
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.value;
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final node = await Bip32Utils.getBip32Node(
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(await _mnemonic)!,
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(await _mnemonicPassphrase)!,
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_network,
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derivationPath,
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);
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return node.privateKey!;
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} catch (_) {
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throw Exception("Derivation path for pubkey=$pubKey could not be found");
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}
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}
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/// Creates a new reserved change address.
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Future<Address> _createNewReservedChangeAddress() async {
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// _getNextUnusedChangeAddress() grabs the latest unused change address
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// from the wallet.
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// CopyWith to mark it as a fusion reserved change address
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final address = (await _getNextUnusedChangeAddress())
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.copyWith(otherData: kReservedFusionAddress);
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// Make sure the address is in the database as reserved for Fusion.
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final _address = await _db.getAddress(_walletId, address.value);
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if (_address != null) {
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await _db.updateAddress(_address, address);
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} else {
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await _db.putAddress(address);
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}
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return address;
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}
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/// Returns a list of unused reserved change addresses.
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///
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/// If there are not enough unused reserved change addresses, new ones are created.
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Future<List<fusion.Address>> _getUnusedReservedChangeAddresses(
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int numberOfAddresses,
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) async {
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// Fetch all reserved change addresses.
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final List<Address> reservedChangeAddresses = await _db
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.getAddresses(_walletId)
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.filter()
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.otherDataEqualTo(kReservedFusionAddress)
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.and()
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.subTypeEqualTo(AddressSubType.change)
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.findAll();
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// Initialize a list of unused reserved change addresses.
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final List<Address> unusedAddresses = [];
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// check addresses for tx history
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for (final address in reservedChangeAddresses) {
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// first check in db to avoid unnecessary network calls
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final txCountInDB = await _db
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.getTransactions(_walletId)
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.filter()
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.address((q) => q.valueEqualTo(address.value))
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.count();
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if (txCountInDB == 0) {
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// double check via electrumx
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// _getTxCountForAddress can throw!
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final count = await _getTxCountForAddress(address: address.value);
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if (count == 0) {
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unusedAddresses.add(address);
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}
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}
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}
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// If there are not enough unused reserved change addresses, create new ones.
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while (unusedAddresses.length < numberOfAddresses) {
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unusedAddresses.add(await _createNewReservedChangeAddress());
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}
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// Return the list of unused reserved change addresses.
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return unusedAddresses.sublist(0, numberOfAddresses).map((e) {
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final bool fusionReserved = e.otherData == kReservedFusionAddress;
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return fusion.Address(
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address: e.value,
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publicKey: e.publicKey,
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fusionReserved: fusionReserved,
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derivationPath: fusion.DerivationPath(
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e.derivationPath!.value,
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),
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);
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}).toList();
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}
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int _torStartCount = 0;
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/// Returns the current Tor proxy address.
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Future<({InternetAddress host, int port})> _getSocksProxyAddress() async {
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if (_torStartCount > 5) {
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// something is quite broken so stop trying to recursively fetch
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// start up tor and fetch proxy info
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throw Exception(
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"Fusion interface attempted to start tor $_torStartCount times and failed!",
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);
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}
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try {
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final info = _torService.getProxyInfo();
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// reset counter before return info;
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_torStartCount = 0;
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return info;
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} catch (_) {
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// tor is probably not running so lets fix that
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final torDir = await StackFileSystem.applicationTorDirectory();
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_torService.init(torDataDirPath: torDir.path);
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// increment start attempt count
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_torStartCount++;
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await _torService.start();
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// try again to fetch proxy info
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return await _getSocksProxyAddress();
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}
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}
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// Initial attempt for CashFusion integration goes here.
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/// Fuse the wallet's UTXOs.
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///
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/// This function is called when the user taps the "Fuse" button in the UI.
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Future<void> fuse() async {
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// Initial attempt for CashFusion integration goes here.
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final mainFusionObject = fusion.Fusion(fusion.FusionParams());
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// Pass wallet functions to the Fusion object
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await mainFusionObject.initFusion(
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getTransactionsByAddress: _getTransactionsByAddress,
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getUnusedReservedChangeAddresses: _getUnusedReservedChangeAddresses,
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getSocksProxyAddress: _getSocksProxyAddress,
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getChainHeight: _getChainHeight,
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updateStatusCallback: _updateStatus,
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getTransactionJson: (String txid) async =>
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await _getWalletCachedElectrumX().getTransaction(
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coin: _coin,
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txHash: txid,
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),
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getPrivateKeyForPubKey: _getPrivateKeyForPubKey,
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broadcastTransaction: (String txHex) => _getWalletCachedElectrumX()
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.electrumXClient
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.broadcastTransaction(rawTx: txHex),
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);
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// Add unfrozen stack UTXOs.
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final List<UTXO> walletUtxos = await _db
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.getUTXOs(_walletId)
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.filter()
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.isBlockedEqualTo(false)
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.and()
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.addressIsNotNull()
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.findAll();
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final List<fusion.UtxoDTO> coinList = [];
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// Loop through UTXOs, checking and adding valid ones.
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for (final utxo in walletUtxos) {
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final String addressString = utxo.address!;
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final List<String> possibleAddresses = [addressString];
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if (bitbox.Address.detectFormat(addressString) ==
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bitbox.Address.formatCashAddr) {
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possibleAddresses.add(bitbox.Address.toLegacyAddress(addressString));
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} else {
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possibleAddresses.add(bitbox.Address.toCashAddress(addressString));
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}
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// Fetch address to get pubkey
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final addr = await _db
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.getAddresses(_walletId)
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.filter()
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.anyOf<String, QueryBuilder<Address, Address, QAfterFilterCondition>>(
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possibleAddresses, (q, e) => q.valueEqualTo(e))
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.and()
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.group((q) => q
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.subTypeEqualTo(AddressSubType.change)
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.or()
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.subTypeEqualTo(AddressSubType.receiving))
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.and()
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.typeEqualTo(AddressType.p2pkh)
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.findFirst();
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// depending on the address type in the query above this can be null
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if (addr == null) {
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// A utxo object should always have a non null address.
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// If non found then just ignore the UTXO (aka don't fuse it)
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Logging.instance.log(
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"Ignoring utxo=$utxo for address=\"$addressString\" while selecting UTXOs for Fusion",
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level: LogLevel.Info,
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);
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continue;
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}
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final dto = fusion.UtxoDTO(
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txid: utxo.txid,
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vout: utxo.vout,
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value: utxo.value,
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address: utxo.address!,
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pubKey: addr.publicKey,
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);
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// Add UTXO to coinList.
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coinList.add(dto);
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}
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// Fuse UTXOs.
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return await mainFusionObject.fuse(
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inputsFromWallet: coinList,
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network:
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_coin.isTestNet ? fusion.Utilities.testNet : fusion.Utilities.mainNet,
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);
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}
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Future<void> refreshFusion() {
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// TODO
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throw UnimplementedError(
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"TODO refreshFusion eg look up number of fusion participants connected/coordinating");
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}
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/// Testing ground for iterating thru the UI state.
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///
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/// TODO remove this, just for development.
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Future<void> stepThruUiStates() async {
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// Define the list of states.
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final List<fusion.FusionStatus> states = [
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fusion.FusionStatus.setup,
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fusion.FusionStatus.waiting,
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fusion.FusionStatus.connecting,
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fusion.FusionStatus.running,
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fusion.FusionStatus.complete,
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fusion.FusionStatus.failed,
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fusion.FusionStatus.exception,
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];
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// Iterate through the list of states, waiting one second between each.
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for (final state in states) {
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// Set the connecting status to the current state.
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_updateStatus(state);
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// Wait one second.
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await Future.delayed(const Duration(seconds: 1));
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}
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}
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}
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