mirror of
https://github.com/cypherstack/stack_wallet.git
synced 2024-11-17 09:47:37 +00:00
437 lines
14 KiB
Dart
437 lines
14 KiB
Dart
import 'dart:io';
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import 'dart:math';
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import 'package:isar/isar.dart';
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import 'package:solana/dto.dart';
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import 'package:solana/solana.dart';
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import 'package:stackwallet/electrumx_rpc/electrumx_client.dart';
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import 'package:stackwallet/models/balance.dart';
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import 'package:stackwallet/models/isar/models/blockchain_data/transaction.dart'
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as isar;
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import 'package:stackwallet/models/isar/models/isar_models.dart';
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import 'package:stackwallet/models/node_model.dart';
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import 'package:stackwallet/models/paymint/fee_object_model.dart';
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import 'package:stackwallet/services/node_service.dart';
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import 'package:stackwallet/services/tor_service.dart';
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import 'package:stackwallet/utilities/amount/amount.dart';
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import 'package:stackwallet/utilities/default_nodes.dart';
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import 'package:stackwallet/utilities/enums/coin_enum.dart';
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import 'package:stackwallet/utilities/enums/fee_rate_type_enum.dart';
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import 'package:stackwallet/utilities/logger.dart';
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import 'package:stackwallet/wallets/crypto_currency/coins/solana.dart';
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import 'package:stackwallet/wallets/crypto_currency/crypto_currency.dart';
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import 'package:stackwallet/wallets/models/tx_data.dart';
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import 'package:stackwallet/wallets/wallet/intermediate/bip39_wallet.dart';
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import 'package:tuple/tuple.dart';
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class SolanaWallet extends Bip39Wallet<Solana> {
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SolanaWallet(CryptoCurrencyNetwork network) : super(Solana(network));
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NodeModel? _solNode;
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ElectrumXClient? electrumXClient; // Used for Tor.
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RpcClient? rpcClient; // The Solana RpcClient.
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Future<Ed25519HDKeyPair> _getKeyPair() async {
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return Ed25519HDKeyPair.fromMnemonic(await getMnemonic(),
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account: 0, change: 0);
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}
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Future<Address> _getCurrentAddress() async {
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var addressStruct = Address(
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walletId: walletId,
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value: (await _getKeyPair()).address,
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publicKey: List<int>.empty(),
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derivationIndex: 0,
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derivationPath: DerivationPath()..value = "m/44'/501'/0'/0'",
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type: cryptoCurrency.coin.primaryAddressType,
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subType: AddressSubType.unknown);
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return addressStruct;
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}
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Future<int> _getCurrentBalanceInLamports() async {
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await _checkClients(); // Check electrumXClient and rpcClient.
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var balance = await rpcClient?.getBalance((await _getKeyPair()).address);
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return balance!.value;
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}
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@override
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FilterOperation? get changeAddressFilterOperation =>
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throw UnimplementedError();
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@override
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Future<void> checkSaveInitialReceivingAddress() async {
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try {
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var address = (await _getKeyPair()).address;
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await mainDB.updateOrPutAddresses([
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Address(
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walletId: walletId,
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value: address,
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publicKey: List<int>.empty(),
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derivationIndex: 0,
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derivationPath: DerivationPath()..value = "m/44'/501'/0'/0'",
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type: cryptoCurrency.coin.primaryAddressType,
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subType: AddressSubType.unknown)
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]);
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} catch (e, s) {
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Logging.instance.log(
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"$runtimeType checkSaveInitialReceivingAddress() failed: $e\n$s",
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level: LogLevel.Error,
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);
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}
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}
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@override
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Future<TxData> prepareSend({required TxData txData}) async {
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try {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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if (txData.recipients == null || txData.recipients!.length != 1) {
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throw Exception("$runtimeType prepareSend requires 1 recipient");
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}
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Amount sendAmount = txData.amount!;
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if (sendAmount > info.cachedBalance.spendable) {
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throw Exception("Insufficient available balance");
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}
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int feeAmount;
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var currentFees = await fees;
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switch (txData.feeRateType) {
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case FeeRateType.fast:
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feeAmount = currentFees.fast;
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break;
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case FeeRateType.slow:
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feeAmount = currentFees.slow;
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break;
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case FeeRateType.average:
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default:
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feeAmount = currentFees.medium;
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break;
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}
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// Rent exemption of Solana
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final accInfo =
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await rpcClient?.getAccountInfo((await _getKeyPair()).address);
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int minimumRent = await rpcClient?.getMinimumBalanceForRentExemption(
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accInfo!.value!.data.toString().length) ??
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0; // TODO revisit null condition.
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if (minimumRent >
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((await _getCurrentBalanceInLamports()) -
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txData.amount!.raw.toInt() -
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feeAmount)) {
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throw Exception(
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"Insufficient remaining balance for rent exemption, minimum rent: ${minimumRent / pow(10, cryptoCurrency.fractionDigits)}");
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}
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return txData.copyWith(
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fee: Amount(
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rawValue: BigInt.from(feeAmount),
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fractionDigits: cryptoCurrency.fractionDigits,
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),
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);
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} catch (e, s) {
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Logging.instance.log(
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"$runtimeType Solana prepareSend failed: $e\n$s",
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level: LogLevel.Error,
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);
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rethrow;
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}
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}
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@override
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Future<TxData> confirmSend({required TxData txData}) async {
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try {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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final keyPair = await _getKeyPair();
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var recipientAccount = txData.recipients!.first;
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var recipientPubKey =
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Ed25519HDPublicKey.fromBase58(recipientAccount.address);
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final message = Message(
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instructions: [
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SystemInstruction.transfer(
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fundingAccount: keyPair.publicKey,
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recipientAccount: recipientPubKey,
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lamports: txData.amount!.raw.toInt()),
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ComputeBudgetInstruction.setComputeUnitPrice(
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microLamports: txData.fee!.raw.toInt()),
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],
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);
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final txid = await rpcClient?.signAndSendTransaction(message, [keyPair]);
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return txData.copyWith(
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txid: txid,
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);
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} catch (e, s) {
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Logging.instance.log(
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"$runtimeType Solana confirmSend failed: $e\n$s",
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level: LogLevel.Error,
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);
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rethrow;
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}
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}
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@override
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Future<Amount> estimateFeeFor(Amount amount, int feeRate) async {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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if (info.cachedBalance.spendable.raw == BigInt.zero) {
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return Amount(
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rawValue: BigInt.zero,
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fractionDigits: cryptoCurrency.fractionDigits,
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);
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}
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final fee = await rpcClient?.getFees();
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// TODO [prio=low]: handle null fee.
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return Amount(
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rawValue: BigInt.from(fee!.value.feeCalculator.lamportsPerSignature),
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fractionDigits: cryptoCurrency.fractionDigits,
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);
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}
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@override
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Future<FeeObject> get fees async {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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final fees = await rpcClient?.getFees();
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// TODO [prio=low]: handle null fees.
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return FeeObject(
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numberOfBlocksFast: 1,
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numberOfBlocksAverage: 1,
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numberOfBlocksSlow: 1,
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fast: fees!.value.feeCalculator.lamportsPerSignature,
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medium: fees!.value.feeCalculator.lamportsPerSignature,
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slow: fees!.value.feeCalculator.lamportsPerSignature);
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}
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@override
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Future<bool> pingCheck() {
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try {
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var rpcClient = RpcClient("${getCurrentNode().host}:${getCurrentNode().port}");
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rpcClient.getHealth();
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return Future.value(true);
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} catch (e, s) {
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Logging.instance.log(
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"$runtimeType Solana pingCheck failed: $e\n$s",
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level: LogLevel.Error,
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);
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return Future.value(false);
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}
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}
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@override
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FilterOperation? get receivingAddressFilterOperation =>
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FilterGroup.and(standardReceivingAddressFilters);
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@override
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Future<void> recover({required bool isRescan}) async {
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await refreshMutex.protect(() async {
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var addressStruct = await _getCurrentAddress();
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await mainDB.updateOrPutAddresses([addressStruct]);
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if (info.cachedReceivingAddress != addressStruct.value) {
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await info.updateReceivingAddress(
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newAddress: addressStruct.value,
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isar: mainDB.isar,
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);
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}
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await Future.wait([
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updateBalance(),
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updateChainHeight(),
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updateTransactions(),
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]);
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});
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}
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@override
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Future<void> updateBalance() async {
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try {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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var balance = await rpcClient?.getBalance(info.cachedReceivingAddress);
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// Rent exemption of Solana
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final accInfo =
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await rpcClient?.getAccountInfo((await _getKeyPair()).address);
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// TODO [prio=low]: handle null account info.
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final int minimumRent =
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await rpcClient?.getMinimumBalanceForRentExemption(
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accInfo!.value!.data.toString().length) ??
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0;
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// TODO [prio=low]: revisit null condition.
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var spendableBalance = balance!.value - minimumRent;
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final newBalance = Balance(
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total: Amount(
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rawValue: BigInt.from(balance.value),
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fractionDigits: Coin.solana.decimals,
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),
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spendable: Amount(
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rawValue: BigInt.from(spendableBalance),
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fractionDigits: Coin.solana.decimals,
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),
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blockedTotal: Amount(
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rawValue: BigInt.from(minimumRent),
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fractionDigits: Coin.solana.decimals,
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),
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pendingSpendable: Amount(
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rawValue: BigInt.zero,
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fractionDigits: Coin.solana.decimals,
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),
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);
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await info.updateBalance(newBalance: newBalance, isar: mainDB.isar);
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} catch (e, s) {
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Logging.instance.log(
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"Error getting balance in solana_wallet.dart: $e\n$s",
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level: LogLevel.Error,
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);
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}
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}
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@override
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Future<void> updateChainHeight() async {
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try {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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int blockHeight = await rpcClient?.getSlot() ?? 0;
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// TODO [prio=low]: Revisit null condition.
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await info.updateCachedChainHeight(
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newHeight: blockHeight,
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isar: mainDB.isar,
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);
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} catch (e, s) {
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Logging.instance.log(
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"Error occurred in solana_wallet.dart while getting"
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" chain height for solana: $e\n$s",
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level: LogLevel.Error,
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);
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}
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}
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@override
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Future<void> updateNode() async {
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_solNode = getCurrentNode();
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await refresh();
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}
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@override
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NodeModel getCurrentNode() {
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return _solNode ??
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NodeService(secureStorageInterface: secureStorageInterface)
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.getPrimaryNodeFor(coin: info.coin) ??
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DefaultNodes.getNodeFor(info.coin);
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}
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@override
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Future<void> updateTransactions() async {
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try {
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await _checkClients(); // Check ElectrumXClient and Solana RpcClient.
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var transactionsList = await rpcClient?.getTransactionsList(
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(await _getKeyPair()).publicKey,
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encoding: Encoding.jsonParsed);
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var txsList =
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List<Tuple2<isar.Transaction, Address>>.empty(growable: true);
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// TODO [prio=low]: Revisit null assertion below.
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for (final tx in transactionsList!) {
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var senderAddress =
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(tx.transaction as ParsedTransaction).message.accountKeys[0].pubkey;
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var receiverAddress =
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(tx.transaction as ParsedTransaction).message.accountKeys[1].pubkey;
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var txType = isar.TransactionType.unknown;
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var txAmount = Amount(
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rawValue:
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BigInt.from(tx.meta!.postBalances[1] - tx.meta!.preBalances[1]),
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fractionDigits: cryptoCurrency.fractionDigits,
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);
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if ((senderAddress == (await _getKeyPair()).address) &&
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(receiverAddress == (await _getKeyPair()).address)) {
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txType = isar.TransactionType.sentToSelf;
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} else if (senderAddress == (await _getKeyPair()).address) {
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txType = isar.TransactionType.outgoing;
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} else if (receiverAddress == (await _getKeyPair()).address) {
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txType = isar.TransactionType.incoming;
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}
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var transaction = isar.Transaction(
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walletId: walletId,
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txid: (tx.transaction as ParsedTransaction).signatures[0],
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timestamp: tx.blockTime!,
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type: txType,
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subType: isar.TransactionSubType.none,
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amount: tx.meta!.postBalances[1] - tx.meta!.preBalances[1],
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amountString: txAmount.toJsonString(),
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fee: tx.meta!.fee,
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height: tx.slot,
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isCancelled: false,
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isLelantus: false,
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slateId: null,
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otherData: null,
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inputs: [],
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outputs: [],
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nonce: null,
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numberOfMessages: 0,
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);
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var txAddress = Address(
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walletId: walletId,
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value: receiverAddress,
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publicKey: List<int>.empty(),
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derivationIndex: 0,
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derivationPath: DerivationPath()..value = "m/44'/501'/0'/0'",
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type: AddressType.solana,
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subType: txType == isar.TransactionType.outgoing
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? AddressSubType.unknown
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: AddressSubType.receiving);
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txsList.add(Tuple2(transaction, txAddress));
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}
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await mainDB.addNewTransactionData(txsList, walletId);
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} catch (e, s) {
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Logging.instance.log(
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"Error occurred in solana_wallet.dart while getting"
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" transactions for solana: $e\n$s",
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level: LogLevel.Error,
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);
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}
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}
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@override
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Future<bool> updateUTXOs() {
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// No UTXOs in Solana
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return Future.value(false);
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}
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/// Check that the ElectrumXClient is active and usable by a Solana RpcClient.
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Future<void> _checkClients() async {
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if (prefs.useTor) {
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electrumXClient ??= ElectrumXClient(
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host: getCurrentNode().host,
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port: getCurrentNode().port,
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useSSL: getCurrentNode().useSSL,
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failovers: [],
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prefs: prefs,
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coin: Coin.solana,
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);
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int torPort = electrumXClient?.rpcClient?.proxyInfo?.port ??
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TorService.sharedInstance.getProxyInfo().port;
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rpcClient = RpcClient("${InternetAddress.loopbackIPv4}:$torPort");
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} else {
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rpcClient =
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RpcClient("${getCurrentNode().host}:${getCurrentNode().port}");
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}
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return;
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}
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}
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