mirror of
https://github.com/cake-tech/cake_wallet.git
synced 2024-12-23 03:59:23 +00:00
32e119e24f
* rbf fixes * Revert "rbf fixes" * fix replaced transactions * re-format electrum_wallet.dart [skip ci] * minor fixes [skip ci] --------- Co-authored-by: OmarHatem <omarh.ismail1@gmail.com>
612 lines
20 KiB
Dart
612 lines
20 KiB
Dart
part of 'bitcoin.dart';
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class CWBitcoin extends Bitcoin {
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WalletCredentials createBitcoinRestoreWalletFromSeedCredentials({
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required String name,
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required String mnemonic,
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required String password,
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required DerivationType derivationType,
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required String derivationPath,
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String? passphrase,
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}) =>
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BitcoinRestoreWalletFromSeedCredentials(
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name: name,
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mnemonic: mnemonic,
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password: password,
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derivationType: derivationType,
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derivationPath: derivationPath,
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passphrase: passphrase,
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);
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@override
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WalletCredentials createBitcoinRestoreWalletFromWIFCredentials(
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{required String name,
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required String password,
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required String wif,
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WalletInfo? walletInfo}) =>
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BitcoinRestoreWalletFromWIFCredentials(
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name: name, password: password, wif: wif, walletInfo: walletInfo);
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@override
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WalletCredentials createBitcoinNewWalletCredentials({
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required String name,
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WalletInfo? walletInfo,
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String? password,
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String? passphrase,
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String? mnemonic,
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String? parentAddress,
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}) =>
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BitcoinNewWalletCredentials(
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name: name,
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walletInfo: walletInfo,
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password: password,
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passphrase: passphrase,
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mnemonic: mnemonic,
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parentAddress: parentAddress,
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);
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@override
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WalletCredentials createBitcoinHardwareWalletCredentials(
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{required String name,
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required HardwareAccountData accountData,
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WalletInfo? walletInfo}) =>
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BitcoinRestoreWalletFromHardware(
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name: name, hwAccountData: accountData, walletInfo: walletInfo);
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@override
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TransactionPriority getMediumTransactionPriority() => BitcoinTransactionPriority.medium;
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@override
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List<String> getWordList() => wordlist;
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@override
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Map<String, String> getWalletKeys(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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final keys = bitcoinWallet.keys;
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return <String, String>{
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'wif': keys.wif,
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'privateKey': keys.privateKey,
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'publicKey': keys.publicKey
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};
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}
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@override
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List<TransactionPriority> getTransactionPriorities() => BitcoinTransactionPriority.all;
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@override
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List<TransactionPriority> getLitecoinTransactionPriorities() => LitecoinTransactionPriority.all;
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@override
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TransactionPriority deserializeBitcoinTransactionPriority(int raw) =>
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BitcoinTransactionPriority.deserialize(raw: raw);
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@override
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TransactionPriority deserializeLitecoinTransactionPriority(int raw) =>
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LitecoinTransactionPriority.deserialize(raw: raw);
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@override
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int getFeeRate(Object wallet, TransactionPriority priority) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.feeRate(priority);
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}
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@override
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Future<void> generateNewAddress(Object wallet, String label) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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await bitcoinWallet.walletAddresses.generateNewAddress(label: label);
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await wallet.save();
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}
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@override
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Future<void> updateAddress(Object wallet, String address, String label) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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bitcoinWallet.walletAddresses.updateAddress(address, label);
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await wallet.save();
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}
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@override
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Object createBitcoinTransactionCredentials(List<Output> outputs,
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{required TransactionPriority priority, int? feeRate}) {
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final bitcoinFeeRate =
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priority == BitcoinTransactionPriority.custom && feeRate != null ? feeRate : null;
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return BitcoinTransactionCredentials(
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outputs
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.map((out) => OutputInfo(
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fiatAmount: out.fiatAmount,
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cryptoAmount: out.cryptoAmount,
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address: out.address,
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note: out.note,
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sendAll: out.sendAll,
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extractedAddress: out.extractedAddress,
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isParsedAddress: out.isParsedAddress,
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formattedCryptoAmount: out.formattedCryptoAmount,
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memo: out.memo))
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.toList(),
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priority: priority as BitcoinTransactionPriority,
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feeRate: bitcoinFeeRate);
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}
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@override
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Object createBitcoinTransactionCredentialsRaw(List<OutputInfo> outputs,
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{TransactionPriority? priority, required int feeRate}) =>
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BitcoinTransactionCredentials(outputs,
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priority: priority != null ? priority as BitcoinTransactionPriority : null,
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feeRate: feeRate);
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@override
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@computed
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List<ElectrumSubAddress> getSubAddresses(Object wallet) {
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final electrumWallet = wallet as ElectrumWallet;
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return electrumWallet.walletAddresses.addressesByReceiveType
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.map((BaseBitcoinAddressRecord addr) => ElectrumSubAddress(
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id: addr.index,
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name: addr.name,
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address: addr.address,
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txCount: addr.txCount,
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balance: addr.balance,
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isChange: addr.isHidden))
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.toList();
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}
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@override
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Future<int> estimateFakeSendAllTxAmount(Object wallet, TransactionPriority priority) async {
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try {
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final sk = ECPrivate.random();
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final electrumWallet = wallet as ElectrumWallet;
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if (wallet.type == WalletType.bitcoinCash) {
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final p2pkhAddr = sk.getPublic().toP2pkhAddress();
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final estimatedTx = await electrumWallet.estimateSendAllTx(
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[BitcoinOutput(address: p2pkhAddr, value: BigInt.zero)],
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getFeeRate(wallet, priority as BitcoinCashTransactionPriority),
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);
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return estimatedTx.amount;
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}
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final p2shAddr = sk.getPublic().toP2pkhInP2sh();
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final estimatedTx = await electrumWallet.estimateSendAllTx(
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[BitcoinOutput(address: p2shAddr, value: BigInt.zero)],
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getFeeRate(
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wallet,
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wallet.type == WalletType.litecoin
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? priority as LitecoinTransactionPriority
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: priority as BitcoinTransactionPriority,
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),
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);
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return estimatedTx.amount;
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} catch (_) {
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return 0;
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}
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}
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@override
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String getAddress(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.walletAddresses.address;
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}
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@override
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String formatterBitcoinAmountToString({required int amount}) =>
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bitcoinAmountToString(amount: amount);
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@override
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double formatterBitcoinAmountToDouble({required int amount}) =>
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bitcoinAmountToDouble(amount: amount);
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@override
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int formatterStringDoubleToBitcoinAmount(String amount) => stringDoubleToBitcoinAmount(amount);
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@override
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String bitcoinTransactionPriorityWithLabel(TransactionPriority priority, int rate,
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{int? customRate}) =>
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(priority as BitcoinTransactionPriority).labelWithRate(rate, customRate);
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@override
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List<BitcoinUnspent> getUnspents(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.unspentCoins;
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}
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Future<void> updateUnspents(Object wallet) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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await bitcoinWallet.updateAllUnspents();
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}
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WalletService createBitcoinWalletService(Box<WalletInfo> walletInfoSource,
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Box<UnspentCoinsInfo> unspentCoinSource, bool alwaysScan, bool isDirect) {
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return BitcoinWalletService(walletInfoSource, unspentCoinSource, alwaysScan, isDirect);
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}
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WalletService createLitecoinWalletService(
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Box<WalletInfo> walletInfoSource, Box<UnspentCoinsInfo> unspentCoinSource, bool isDirect) {
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return LitecoinWalletService(walletInfoSource, unspentCoinSource, isDirect);
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}
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@override
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TransactionPriority getBitcoinTransactionPriorityMedium() => BitcoinTransactionPriority.medium;
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@override
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TransactionPriority getBitcoinTransactionPriorityCustom() => BitcoinTransactionPriority.custom;
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@override
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TransactionPriority getLitecoinTransactionPriorityMedium() => LitecoinTransactionPriority.medium;
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@override
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TransactionPriority getBitcoinTransactionPrioritySlow() => BitcoinTransactionPriority.slow;
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@override
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TransactionPriority getLitecoinTransactionPrioritySlow() => LitecoinTransactionPriority.slow;
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@override
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Future<void> setAddressType(Object wallet, dynamic option) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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await bitcoinWallet.walletAddresses.setAddressType(option as BitcoinAddressType);
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}
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@override
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ReceivePageOption getSelectedAddressType(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return BitcoinReceivePageOption.fromType(bitcoinWallet.walletAddresses.addressPageType);
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}
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@override
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bool hasSelectedSilentPayments(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.walletAddresses.addressPageType == SilentPaymentsAddresType.p2sp;
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}
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@override
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List<ReceivePageOption> getBitcoinReceivePageOptions() => BitcoinReceivePageOption.all;
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@override
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BitcoinAddressType getBitcoinAddressType(ReceivePageOption option) {
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switch (option) {
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case BitcoinReceivePageOption.p2pkh:
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return P2pkhAddressType.p2pkh;
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case BitcoinReceivePageOption.p2sh:
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return P2shAddressType.p2wpkhInP2sh;
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case BitcoinReceivePageOption.p2tr:
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return SegwitAddresType.p2tr;
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case BitcoinReceivePageOption.p2wsh:
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return SegwitAddresType.p2wsh;
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case BitcoinReceivePageOption.p2wpkh:
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default:
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return SegwitAddresType.p2wpkh;
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}
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}
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@override
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Future<List<DerivationType>> compareDerivationMethods(
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{required String mnemonic, required Node node}) async {
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if (await checkIfMnemonicIsElectrum2(mnemonic)) {
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return [DerivationType.electrum];
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}
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return [DerivationType.bip39, DerivationType.electrum];
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}
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int _countCharOccurrences(String str, String charToCount) {
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int count = 0;
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for (int i = 0; i < str.length; i++) {
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if (str[i] == charToCount) {
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count++;
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}
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}
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return count;
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}
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@override
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Future<List<DerivationInfo>> getDerivationsFromMnemonic({
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required String mnemonic,
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required Node node,
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String? passphrase,
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}) async {
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List<DerivationInfo> list = [];
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List<DerivationType> types = await compareDerivationMethods(mnemonic: mnemonic, node: node);
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if (types.length == 1 && types.first == DerivationType.electrum) {
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return [getElectrumDerivations()[DerivationType.electrum]!.first];
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}
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final electrumClient = ElectrumClient();
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await electrumClient.connectToUri(node.uri, useSSL: node.useSSL);
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late BasedUtxoNetwork network;
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switch (node.type) {
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case WalletType.litecoin:
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network = LitecoinNetwork.mainnet;
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break;
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case WalletType.bitcoin:
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default:
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network = BitcoinNetwork.mainnet;
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break;
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}
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for (DerivationType dType in electrum_derivations.keys) {
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late Uint8List seedBytes;
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if (dType == DerivationType.electrum) {
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seedBytes = await mnemonicToSeedBytes(mnemonic, passphrase: passphrase ?? "");
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} else if (dType == DerivationType.bip39) {
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seedBytes = bip39.mnemonicToSeed(mnemonic, passphrase: passphrase ?? '');
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}
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for (DerivationInfo dInfo in electrum_derivations[dType]!) {
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try {
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DerivationInfo dInfoCopy = DerivationInfo(
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derivationType: dInfo.derivationType,
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derivationPath: dInfo.derivationPath,
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description: dInfo.description,
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scriptType: dInfo.scriptType,
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);
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String balancePath = dInfoCopy.derivationPath!;
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int derivationDepth = _countCharOccurrences(balancePath, '/');
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// for BIP44
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if (derivationDepth == 3 || derivationDepth == 1) {
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// we add "/0" so that we generate account 0
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balancePath += "/0";
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}
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final hd = Bip32Slip10Secp256k1.fromSeed(seedBytes).derivePath(balancePath)
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as Bip32Slip10Secp256k1;
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// derive address at index 0:
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String? address;
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switch (dInfoCopy.scriptType) {
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case "p2wpkh":
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address = generateP2WPKHAddress(hd: hd, network: network, index: 0);
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break;
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case "p2pkh":
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address = generateP2PKHAddress(hd: hd, network: network, index: 0);
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break;
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case "p2wpkh-p2sh":
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address = generateP2SHAddress(hd: hd, network: network, index: 0);
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break;
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case "p2tr":
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address = generateP2TRAddress(hd: hd, network: network, index: 0);
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break;
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default:
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continue;
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}
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final sh = BitcoinAddressUtils.scriptHash(address, network: network);
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final history = await electrumClient.getHistory(sh);
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final balance = await electrumClient.getBalance(sh);
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dInfoCopy.balance = balance.entries.first.value.toString();
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dInfoCopy.address = address;
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dInfoCopy.transactionsCount = history.length;
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list.add(dInfoCopy);
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} catch (e) {
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print(e);
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}
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}
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}
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// sort the list such that derivations with the most transactions are first:
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list.sort((a, b) => b.transactionsCount.compareTo(a.transactionsCount));
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return list;
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}
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@override
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Map<DerivationType, List<DerivationInfo>> getElectrumDerivations() {
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return electrum_derivations;
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}
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@override
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bool hasTaprootInput(PendingTransaction pendingTransaction) {
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return (pendingTransaction as PendingBitcoinTransaction).hasTaprootInputs;
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}
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@override
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Future<PendingBitcoinTransaction> replaceByFee(
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Object wallet, String transactionHash, String fee) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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return await bitcoinWallet.replaceByFee(transactionHash, int.parse(fee));
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}
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@override
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Future<String?> canReplaceByFee(Object wallet, Object transactionInfo) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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final tx = transactionInfo as ElectrumTransactionInfo;
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return bitcoinWallet.canReplaceByFee(tx);
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}
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@override
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int getTransactionVSize(Object wallet, String transactionHex) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.transactionVSize(transactionHex);
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}
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@override
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Future<bool> isChangeSufficientForFee(Object wallet, String txId, String newFee) async {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.isChangeSufficientForFee(txId, int.parse(newFee));
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}
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@override
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int getFeeAmountForPriority(
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Object wallet, TransactionPriority priority, int inputsCount, int outputsCount,
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{int? size}) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.feeAmountForPriority(
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priority as BitcoinTransactionPriority, inputsCount, outputsCount);
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}
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@override
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int getEstimatedFeeWithFeeRate(Object wallet, int feeRate, int? amount,
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{int? outputsCount, int? size}) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.calculateEstimatedFeeWithFeeRate(
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feeRate,
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amount,
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outputsCount: outputsCount,
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size: size,
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);
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}
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@override
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int feeAmountWithFeeRate(Object wallet, int feeRate, int inputsCount, int outputsCount,
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{int? size}) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.feeAmountWithFeeRate(feeRate, inputsCount, outputsCount, size: size);
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}
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@override
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int getMaxCustomFeeRate(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return (bitcoinWallet.feeRate(BitcoinTransactionPriority.fast) * 10).round();
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}
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@override
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void setLedger(WalletBase wallet, Ledger ledger, LedgerDevice device) {
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(wallet as BitcoinWallet).setLedger(ledger, device);
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}
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@override
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Future<List<HardwareAccountData>> getHardwareWalletAccounts(LedgerViewModel ledgerVM,
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{int index = 0, int limit = 5}) async {
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final hardwareWalletService = BitcoinHardwareWalletService(ledgerVM.ledger, ledgerVM.device);
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try {
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return hardwareWalletService.getAvailableAccounts(index: index, limit: limit);
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} on LedgerException catch (err) {
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print(err.message);
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throw err;
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}
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}
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@override
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List<ElectrumSubAddress> getSilentPaymentAddresses(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.walletAddresses.silentAddresses
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.where((addr) => addr.type != SegwitAddresType.p2tr)
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.map((addr) => ElectrumSubAddress(
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id: addr.index,
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name: addr.name,
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address: addr.address,
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txCount: addr.txCount,
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balance: addr.balance,
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isChange: addr.isHidden))
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.toList();
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}
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@override
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List<ElectrumSubAddress> getSilentPaymentReceivedAddresses(Object wallet) {
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final bitcoinWallet = wallet as ElectrumWallet;
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return bitcoinWallet.walletAddresses.silentAddresses
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.where((addr) => addr.type == SegwitAddresType.p2tr)
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.map((addr) => ElectrumSubAddress(
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id: addr.index,
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name: addr.name,
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address: addr.address,
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txCount: addr.txCount,
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balance: addr.balance,
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isChange: addr.isHidden))
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.toList();
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}
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@override
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bool isBitcoinReceivePageOption(ReceivePageOption option) {
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return option is BitcoinReceivePageOption;
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}
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@override
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BitcoinAddressType getOptionToType(ReceivePageOption option) {
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return (option as BitcoinReceivePageOption).toType();
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}
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@override
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@computed
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bool getScanningActive(Object wallet) {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
return bitcoinWallet.silentPaymentsScanningActive;
|
|
}
|
|
|
|
@override
|
|
Future<void> setScanningActive(Object wallet, bool active) async {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
bitcoinWallet.setSilentPaymentsScanning(active);
|
|
}
|
|
|
|
@override
|
|
bool isTestnet(Object wallet) {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
return bitcoinWallet.isTestnet;
|
|
}
|
|
|
|
@override
|
|
Future<bool> checkIfMempoolAPIIsEnabled(Object wallet) async {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
return await bitcoinWallet.checkIfMempoolAPIIsEnabled();
|
|
}
|
|
|
|
@override
|
|
Future<int> getHeightByDate({required DateTime date, bool? bitcoinMempoolAPIEnabled}) async {
|
|
if (bitcoinMempoolAPIEnabled ?? false) {
|
|
try {
|
|
return await getBitcoinHeightByDateAPI(date: date);
|
|
} catch (_) {}
|
|
}
|
|
return await getBitcoinHeightByDate(date: date);
|
|
}
|
|
|
|
@override
|
|
Future<void> rescan(Object wallet, {required int height, bool? doSingleScan}) async {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
bitcoinWallet.rescan(height: height, doSingleScan: doSingleScan);
|
|
}
|
|
|
|
@override
|
|
Future<bool> getNodeIsElectrsSPEnabled(Object wallet) async {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
return bitcoinWallet.getNodeSupportsSilentPayments();
|
|
}
|
|
|
|
@override
|
|
void deleteSilentPaymentAddress(Object wallet, String address) {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
bitcoinWallet.walletAddresses.deleteSilentPaymentAddress(address);
|
|
}
|
|
|
|
@override
|
|
Future<void> updateFeeRates(Object wallet) async {
|
|
final bitcoinWallet = wallet as ElectrumWallet;
|
|
await bitcoinWallet.updateFeeRates();
|
|
}
|
|
|
|
@override
|
|
List<Output> updateOutputs(PendingTransaction pendingTransaction, List<Output> outputs) {
|
|
final pendingTx = pendingTransaction as PendingBitcoinTransaction;
|
|
|
|
if (!pendingTx.hasSilentPayment) {
|
|
return outputs;
|
|
}
|
|
|
|
final updatedOutputs = outputs.map((output) {
|
|
|
|
try {
|
|
final pendingOut = pendingTx!.outputs[outputs.indexOf(output)];
|
|
final updatedOutput = output;
|
|
|
|
updatedOutput.stealthAddress = P2trAddress.fromScriptPubkey(script: pendingOut.scriptPubKey)
|
|
.toAddress(BitcoinNetwork.mainnet);
|
|
return updatedOutput;
|
|
} catch (_) {}
|
|
|
|
return output;
|
|
}).toList();
|
|
|
|
return updatedOutputs;
|
|
}
|
|
|
|
@override
|
|
bool txIsReceivedSilentPayment(TransactionInfo txInfo) {
|
|
final tx = txInfo as ElectrumTransactionInfo;
|
|
return tx.isReceivedSilentPayment;
|
|
}
|
|
}
|