mirror of
https://github.com/cypherstack/stack_wallet.git
synced 2024-11-05 11:57:41 +00:00
382 lines
9.9 KiB
Dart
382 lines
9.9 KiB
Dart
/*
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* This file is part of Stack Wallet.
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*
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* Copyright (c) 2023 Cypher Stack
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* All Rights Reserved.
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* The code is distributed under GPLv3 license, see LICENSE file for details.
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* Generated by Cypher Stack on 2023-05-26
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*
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*/
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import 'dart:async';
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import 'dart:convert';
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import 'dart:io';
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import 'package:flutter/foundation.dart';
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import 'package:mutex/mutex.dart';
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import 'package:stackwallet/exceptions/json_rpc/json_rpc_exception.dart';
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import 'package:stackwallet/networking/socks_socket.dart';
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import 'package:stackwallet/utilities/logger.dart';
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import 'package:stackwallet/utilities/prefs.dart';
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// Json RPC class to handle connecting to electrumx servers
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class JsonRPC {
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JsonRPC({
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required this.host,
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required this.port,
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this.useSSL = false,
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this.connectionTimeout = const Duration(seconds: 60),
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required ({InternetAddress host, int port})? proxyInfo,
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});
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final bool useSSL;
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final String host;
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final int port;
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final Duration connectionTimeout;
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({InternetAddress host, int port})? proxyInfo;
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final _requestMutex = Mutex();
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final _JsonRPCRequestQueue _requestQueue = _JsonRPCRequestQueue();
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Socket? _socket;
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SOCKSSocket? _socksSocket;
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StreamSubscription<List<int>>? _subscription;
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void _dataHandler(List<int> data) {
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_requestQueue.nextIncompleteReq.then((req) {
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if (req != null) {
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req.appendDataAndCheckIfComplete(data);
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if (req.isComplete) {
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_onReqCompleted(req);
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}
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} else {
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Logging.instance.log(
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"_dataHandler found a null req!",
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level: LogLevel.Warning,
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);
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}
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});
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}
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void _errorHandler(Object error, StackTrace trace) {
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_requestQueue.nextIncompleteReq.then((req) {
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if (req != null) {
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req.completer.completeError(error, trace);
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_onReqCompleted(req);
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}
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});
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}
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void _doneHandler() {
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disconnect(reason: "JsonRPC _doneHandler() called");
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}
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void _onReqCompleted(_JsonRPCRequest req) {
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_requestQueue.remove(req).then((_) {
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// attempt to send next request
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_sendNextAvailableRequest();
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});
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}
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void _sendNextAvailableRequest() {
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_requestQueue.nextIncompleteReq.then((req) {
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if (req != null) {
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// \r\n required by electrumx server
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if (_socket != null) {
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_socket!.write('${req.jsonRequest}\r\n');
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}
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if (_socksSocket != null) {
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_socksSocket!.write('${req.jsonRequest}\r\n');
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}
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// TODO different timeout length?
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req.initiateTimeout(
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onTimedOut: () {
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_requestQueue.remove(req);
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},
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);
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}
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});
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}
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Future<JsonRPCResponse> request(
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String jsonRpcRequest,
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Duration requestTimeout,
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) async {
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await _requestMutex.protect(() async {
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if (!Prefs.instance.useTor) {
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if (_socket == null) {
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Logging.instance.log(
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"JsonRPC request: opening socket $host:$port",
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level: LogLevel.Info,
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);
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await connect();
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}
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} else {
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if (_socksSocket == null) {
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Logging.instance.log(
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"JsonRPC request: opening SOCKS socket to $host:$port",
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level: LogLevel.Info,
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);
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await connect();
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}
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}
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});
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final req = _JsonRPCRequest(
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jsonRequest: jsonRpcRequest,
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requestTimeout: requestTimeout,
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completer: Completer<JsonRPCResponse>(),
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);
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final future = req.completer.future.onError(
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(error, stackTrace) async {
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await disconnect(
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reason: "return req.completer.future.onError: $error\n$stackTrace",
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);
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return JsonRPCResponse(
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exception: error is JsonRpcException
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? error
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: JsonRpcException(
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"req.completer.future.onError: $error\n$stackTrace",
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),
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);
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},
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);
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// if this is the only/first request then send it right away
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await _requestQueue.add(
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req,
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onInitialRequestAdded: _sendNextAvailableRequest,
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);
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return future;
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}
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Future<void> disconnect({required String reason}) async {
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await _requestMutex.protect(() async {
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await _subscription?.cancel();
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_subscription = null;
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_socket?.destroy();
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_socket = null;
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await _socksSocket?.close();
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_socksSocket = null;
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// clean up remaining queue
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await _requestQueue.completeRemainingWithError(
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"JsonRPC disconnect() called with reason: \"$reason\"",
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);
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});
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}
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Future<void> connect() async {
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if (!Prefs.instance.useTor) {
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if (useSSL) {
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_socket = await SecureSocket.connect(
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host,
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port,
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timeout: connectionTimeout,
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onBadCertificate: (_) => true,
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); // TODO do not automatically trust bad certificates
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} else {
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_socket = await Socket.connect(
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host,
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port,
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timeout: connectionTimeout,
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);
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}
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_subscription = _socket!.listen(
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_dataHandler,
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onError: _errorHandler,
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onDone: _doneHandler,
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cancelOnError: true,
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);
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} else {
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if (proxyInfo == null) {
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throw JsonRpcException(
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"JsonRPC.connect failed with useTor=${Prefs.instance.useTor} and proxyInfo is null");
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}
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// instantiate a socks socket at localhost and on the port selected by the tor service
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_socksSocket = await SOCKSSocket.create(
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proxyHost: proxyInfo!.host.address,
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proxyPort: proxyInfo!.port,
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sslEnabled: useSSL,
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);
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try {
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Logging.instance.log(
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"JsonRPC.connect(): connecting to SOCKS socket at $proxyInfo (SSL $useSSL)...",
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level: LogLevel.Info);
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await _socksSocket?.connect();
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Logging.instance.log(
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"JsonRPC.connect(): connected to SOCKS socket at $proxyInfo...",
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level: LogLevel.Info);
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} catch (e) {
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Logging.instance.log(
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"JsonRPC.connect(): failed to connect to SOCKS socket at $proxyInfo, $e",
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level: LogLevel.Error);
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throw JsonRpcException(
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"JsonRPC.connect(): failed to connect to SOCKS socket at $proxyInfo, $e");
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}
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try {
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Logging.instance.log(
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"JsonRPC.connect(): connecting to $host:$port over SOCKS socket at $proxyInfo...",
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level: LogLevel.Info);
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await _socksSocket?.connectTo(host, port);
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Logging.instance.log(
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"JsonRPC.connect(): connected to $host:$port over SOCKS socket at $proxyInfo",
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level: LogLevel.Info);
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} catch (e) {
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Logging.instance.log(
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"JsonRPC.connect(): failed to connect to $host over tor proxy at $proxyInfo, $e",
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level: LogLevel.Error);
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throw JsonRpcException(
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"JsonRPC.connect(): failed to connect to tor proxy, $e");
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}
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_subscription = _socksSocket!.listen(
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_dataHandler,
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onError: _errorHandler,
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onDone: _doneHandler,
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cancelOnError: true,
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);
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}
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}
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}
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class _JsonRPCRequestQueue {
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final _lock = Mutex();
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final List<_JsonRPCRequest> _rq = [];
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Future<void> add(
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_JsonRPCRequest req, {
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VoidCallback? onInitialRequestAdded,
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}) async {
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return await _lock.protect(() async {
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_rq.add(req);
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if (_rq.length == 1) {
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onInitialRequestAdded?.call();
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}
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});
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}
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Future<bool> remove(_JsonRPCRequest req) async {
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return await _lock.protect(() async {
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final result = _rq.remove(req);
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return result;
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});
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}
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Future<_JsonRPCRequest?> get nextIncompleteReq async {
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return await _lock.protect(() async {
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int removeCount = 0;
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_JsonRPCRequest? returnValue;
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for (final req in _rq) {
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if (req.isComplete) {
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removeCount++;
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} else {
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returnValue = req;
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break;
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}
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}
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_rq.removeRange(0, removeCount);
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return returnValue;
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});
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}
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Future<void> completeRemainingWithError(
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String error, {
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StackTrace? stackTrace,
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}) async {
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await _lock.protect(() async {
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for (final req in _rq) {
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if (!req.isComplete) {
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req.completer.completeError(Exception(error), stackTrace);
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}
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}
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_rq.clear();
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});
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}
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Future<bool> get isEmpty async {
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return await _lock.protect(() async {
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return _rq.isEmpty;
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});
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}
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}
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class _JsonRPCRequest {
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// 0x0A is newline
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// https://electrumx-spesmilo.readthedocs.io/en/latest/protocol-basics.html
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static const int separatorByte = 0x0A;
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final String jsonRequest;
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final Completer<JsonRPCResponse> completer;
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final Duration requestTimeout;
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final List<int> _responseData = [];
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_JsonRPCRequest({
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required this.jsonRequest,
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required this.completer,
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required this.requestTimeout,
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});
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void appendDataAndCheckIfComplete(List<int> data) {
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_responseData.addAll(data);
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if (data.last == separatorByte) {
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try {
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final response = json.decode(String.fromCharCodes(_responseData));
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completer.complete(JsonRPCResponse(data: response));
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} catch (e, s) {
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Logging.instance.log(
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"JsonRPC json.decode: $e\n$s",
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level: LogLevel.Error,
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);
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completer.completeError(e, s);
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}
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}
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}
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void initiateTimeout({
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VoidCallback? onTimedOut,
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}) {
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Future<void>.delayed(requestTimeout).then((_) {
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if (!isComplete) {
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try {
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throw JsonRpcException("_JsonRPCRequest timed out: $jsonRequest");
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} catch (e, s) {
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completer.completeError(e, s);
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onTimedOut?.call();
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}
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}
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});
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}
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bool get isComplete => completer.isCompleted;
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}
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class JsonRPCResponse {
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final dynamic data;
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final JsonRpcException? exception;
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JsonRPCResponse({this.data, this.exception});
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}
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bool isIpAddress(String host) {
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try {
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// if the string can be parsed into an InternetAddress, it's an IP.
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InternetAddress(host);
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return true;
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} catch (e) {
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// if parsing fails, it's not an IP.
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return false;
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}
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}
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