mirror of
https://github.com/cake-tech/cake_wallet.git
synced 2024-12-25 13:09:32 +00:00
455 lines
14 KiB
Dart
455 lines
14 KiB
Dart
import 'dart:async';
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import 'dart:convert';
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import 'dart:math';
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import 'package:cw_core/crypto_currency.dart';
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import 'package:cw_core/erc20_token.dart';
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import 'package:cw_nano/nano_balance.dart';
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import 'package:cw_nano/nano_transaction_model.dart';
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import 'package:cw_nano/nano_util.dart';
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import 'package:flutter/services.dart';
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import 'package:http/http.dart' as http;
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import 'package:nanodart/nanodart.dart';
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import 'package:web3dart/web3dart.dart';
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import 'package:web3dart/contracts/erc20.dart';
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import 'package:cw_core/node.dart';
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class NanoClient {
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// bit of a hack since we need access to a node in a weird location:
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static const String BACKUP_NODE_URI = "rpc.nano.to";
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static const String DEFAULT_REPRESENTATIVE =
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"nano_38713x95zyjsqzx6nm1dsom1jmm668owkeb9913ax6nfgj15az3nu8xkx579";
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StreamSubscription<Transfer>? subscription;
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Node? _node;
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bool connect(Node node) {
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try {
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_node = node;
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return true;
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} catch (e) {
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return false;
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}
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}
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Future<NanoBalance> getBalance(String address) async {
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final response = await http.post(
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_node!.uri,
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headers: {"Content-Type": "application/json"},
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body: jsonEncode(
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{
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"action": "account_balance",
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"account": address,
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},
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),
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);
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final data = await jsonDecode(response.body);
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final String currentBalance = data["balance"] as String;
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final String receivableBalance = data["receivable"] as String;
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final BigInt cur = BigInt.parse(currentBalance);
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final BigInt rec = BigInt.parse(receivableBalance);
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return NanoBalance(currentBalance: cur, receivableBalance: rec);
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}
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Future<dynamic> getAccountInfo(String address) async {
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try {
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final response = await http.post(
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_node!.uri,
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headers: {"Content-Type": "application/json"},
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body: jsonEncode(
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{
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"action": "account_info",
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"representative": "true",
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"account": address,
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},
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),
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);
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final data = await jsonDecode(response.body);
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return data;
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} catch (e) {
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print("error while getting account info");
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rethrow;
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}
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}
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Future<String> changeRep({
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required String privateKey,
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required String repAddress,
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required String ourAddress,
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}) async {
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try {
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final accountInfo = await getAccountInfo(ourAddress);
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// construct the change block:
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Map<String, String> changeBlock = {
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"type": "state",
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"account": ourAddress,
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"previous": accountInfo["frontier"] as String,
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"representative": repAddress,
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"balance": accountInfo["balance"] as String,
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"link": "0000000000000000000000000000000000000000000000000000000000000000",
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"link_as_account": "nano_1111111111111111111111111111111111111111111111111111hifc8npp",
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};
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// sign the change block:
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final String hash = NanoBlocks.computeStateHash(
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NanoAccountType.NANO,
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changeBlock["account"]!,
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changeBlock["previous"]!,
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changeBlock["representative"]!,
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BigInt.parse(changeBlock["balance"]!),
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changeBlock["link"]!,
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);
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final String signature = NanoSignatures.signBlock(hash, privateKey);
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// get PoW for the send block:
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final String work = await requestWork(accountInfo["frontier"] as String);
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changeBlock["signature"] = signature;
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changeBlock["work"] = work;
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return await processBlock(changeBlock, "change");
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} catch (e) {
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throw Exception("error while changing representative");
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}
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}
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Future<String> requestWork(String hash) async {
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return http
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.post(
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Uri.parse("https://rpc.nano.to"), // TODO: make a setting
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headers: {'Content-type': 'application/json'},
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body: json.encode(
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{
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"action": "work_generate",
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"hash": hash,
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},
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),
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)
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.then((http.Response response) {
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if (response.statusCode == 200) {
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final Map<String, dynamic> decoded = json.decode(response.body) as Map<String, dynamic>;
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if (decoded.containsKey("error")) {
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throw Exception("Received error ${decoded["error"]}");
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}
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return decoded["work"] as String;
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} else {
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throw Exception("Received error ${response.statusCode}");
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}
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});
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}
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Future<String> send({
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required String privateKey,
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required String amountRaw,
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required String destinationAddress,
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}) async {
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final Map<String, String> sendBlock = await constructSendBlock(
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privateKey: privateKey,
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amountRaw: amountRaw,
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destinationAddress: destinationAddress,
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);
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return await processBlock(sendBlock, "send");
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}
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Future<String> processBlock(Map<String, String> block, String subtype) async {
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final headers = {"Content-Type": "application/json"};
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final processBody = jsonEncode({
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"action": "process",
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"json_block": "true",
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"subtype": subtype,
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"block": block,
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});
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final processResponse = await http.post(
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_node!.uri,
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headers: headers,
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body: processBody,
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);
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final Map<String, dynamic> decoded = json.decode(processResponse.body) as Map<String, dynamic>;
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if (decoded.containsKey("error")) {
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throw Exception("Received error ${decoded["error"]}");
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}
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// return the hash of the transaction:
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return decoded["hash"].toString();
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}
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Future<Map<String, String>> constructSendBlock({
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required String privateKey,
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required String amountRaw,
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required String destinationAddress,
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BigInt? balanceAfterTx,
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String? previousHash,
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}) async {
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try {
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// our address:
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final String publicAddress = NanoUtil.privateKeyToAddress(privateKey);
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// first get the current account balance:
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if (balanceAfterTx == null) {
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final BigInt currentBalance = (await getBalance(publicAddress)).currentBalance;
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final BigInt txAmount = BigInt.parse(amountRaw);
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balanceAfterTx = currentBalance - txAmount;
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}
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// get the account info (we need the frontier and representative):
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final headers = {"Content-Type": "application/json"};
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final infoBody = jsonEncode({
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"action": "account_info",
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"representative": "true",
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"account": publicAddress,
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});
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final infoResponse = await http.post(
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_node!.uri,
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headers: headers,
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body: infoBody,
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);
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String frontier = jsonDecode(infoResponse.body)["frontier"].toString();
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// override if provided:
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if (previousHash != null) {
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frontier = previousHash;
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}
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final String representative = jsonDecode(infoResponse.body)["representative"].toString();
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// link = destination address:
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final String link = NanoAccounts.extractPublicKey(destinationAddress);
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final String linkAsAccount = destinationAddress;
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// construct the send block:
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Map<String, String> sendBlock = {
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"type": "state",
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"account": publicAddress,
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"previous": frontier,
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"representative": representative,
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"balance": balanceAfterTx.toString(),
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"link": link,
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};
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// sign the send block:
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final String hash = NanoBlocks.computeStateHash(
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NanoAccountType.NANO,
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sendBlock["account"]!,
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sendBlock["previous"]!,
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sendBlock["representative"]!,
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BigInt.parse(sendBlock["balance"]!),
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sendBlock["link"]!,
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);
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final String signature = NanoSignatures.signBlock(hash, privateKey);
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// get PoW for the send block:
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final String work = await requestWork(frontier);
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sendBlock["link_as_account"] = linkAsAccount;
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sendBlock["signature"] = signature;
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sendBlock["work"] = work;
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// ready to post send block:
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return sendBlock;
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} catch (e) {
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print(e);
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rethrow;
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}
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}
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Future<void> receiveBlock({
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required String blockHash,
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required String source,
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required String amountRaw,
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required String destinationAddress,
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required String privateKey,
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}) async {
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bool openBlock = false;
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final headers = {
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"Content-Type": "application/json",
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};
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// first check if the account is open:
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// get the account info (we need the frontier and representative):
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final infoBody = jsonEncode({
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"action": "account_info",
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"representative": "true",
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"account": destinationAddress,
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});
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final infoResponse = await http.post(
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_node!.uri,
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headers: headers,
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body: infoBody,
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);
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final infoData = jsonDecode(infoResponse.body);
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if (infoData["error"] != null) {
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// account is not open yet, we need to create an open block:
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openBlock = true;
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}
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// first get the account balance:
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final balanceBody = jsonEncode({
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"action": "account_balance",
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"account": destinationAddress,
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});
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final balanceResponse = await http.post(
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_node!.uri,
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headers: headers,
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body: balanceBody,
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);
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final balanceData = jsonDecode(balanceResponse.body);
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final BigInt currentBalance = BigInt.parse(balanceData["balance"].toString());
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final BigInt txAmount = BigInt.parse(amountRaw);
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final BigInt balanceAfterTx = currentBalance + txAmount;
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String frontier = infoData["frontier"].toString();
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String representative = infoData["representative"].toString();
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if (openBlock) {
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// we don't have a representative set yet:
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representative = DEFAULT_REPRESENTATIVE;
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}
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// link = send block hash:
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final String link = blockHash;
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// this "linkAsAccount" is meaningless:
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final String linkAsAccount = NanoAccounts.createAccount(NanoAccountType.NANO, blockHash);
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// construct the receive block:
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Map<String, String> receiveBlock = {
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"type": "state",
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"account": destinationAddress,
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"previous":
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openBlock ? "0000000000000000000000000000000000000000000000000000000000000000" : frontier,
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"representative": representative,
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"balance": balanceAfterTx.toString(),
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"link": link,
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"link_as_account": linkAsAccount,
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};
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// sign the receive block:
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final String hash = NanoBlocks.computeStateHash(
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NanoAccountType.NANO,
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receiveBlock["account"]!,
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receiveBlock["previous"]!,
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receiveBlock["representative"]!,
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BigInt.parse(receiveBlock["balance"]!),
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receiveBlock["link"]!,
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);
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final String signature = NanoSignatures.signBlock(hash, privateKey);
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// get PoW for the receive block:
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String? work;
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if (openBlock) {
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work = await requestWork(NanoAccounts.extractPublicKey(destinationAddress));
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} else {
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work = await requestWork(frontier);
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}
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receiveBlock["link_as_account"] = linkAsAccount;
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receiveBlock["signature"] = signature;
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receiveBlock["work"] = work;
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// process the receive block:
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final processBody = jsonEncode({
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"action": "process",
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"json_block": "true",
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"subtype": "receive",
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"block": receiveBlock,
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});
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final processResponse = await http.post(
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_node!.uri,
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headers: headers,
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body: processBody,
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);
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final Map<String, dynamic> decoded = json.decode(processResponse.body) as Map<String, dynamic>;
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if (decoded.containsKey("error")) {
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throw Exception("Received error ${decoded["error"]}");
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}
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}
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// returns the number of blocks received:
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Future<int> confirmAllReceivable({
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required String destinationAddress,
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required String privateKey,
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}) async {
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final receivableResponse = await http.post(_node!.uri,
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headers: {"Content-Type": "application/json"},
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body: jsonEncode({
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"action": "receivable",
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"account": destinationAddress,
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"count": "-1",
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"source": true,
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}));
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final receivableData = await jsonDecode(receivableResponse.body);
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if (receivableData["blocks"] == "" || receivableData["blocks"] == null) {
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return 0;
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}
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dynamic blocks;
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if (receivableData["blocks"] is List<dynamic>) {
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var listBlocks = receivableData["blocks"] as List<dynamic>;
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if (listBlocks.isEmpty) {
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return 0;
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}
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blocks = {for (var block in listBlocks) block['hash']: block};
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} else {
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blocks = receivableData["blocks"] as Map<String, dynamic>;
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}
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blocks = blocks as Map<String, dynamic>;
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// confirm all receivable blocks:
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for (final blockHash in blocks.keys) {
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final block = blocks[blockHash];
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final String amountRaw = block["amount"] as String;
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final String source = block["source"] as String;
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await receiveBlock(
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blockHash: blockHash,
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source: source,
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amountRaw: amountRaw,
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privateKey: privateKey,
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destinationAddress: destinationAddress,
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);
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// a bit of a hack:
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await Future<void>.delayed(const Duration(seconds: 2));
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}
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return blocks.keys.length;
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}
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Future<dynamic> getTransactionDetails(String transactionHash) async {
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throw UnimplementedError();
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}
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void stop() {
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subscription?.cancel();
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}
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Future<List<NanoTransactionModel>> fetchTransactions(String address) async {
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try {
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final response = await http.post(_node!.uri,
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headers: {"Content-Type": "application/json"},
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body: jsonEncode({
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"action": "account_history",
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"account": address,
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"count": "250", // TODO: pick a number
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// "raw": true,
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}));
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final data = await jsonDecode(response.body);
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final transactions = data["history"] is List ? data["history"] as List<dynamic> : [];
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// Map the transactions list to NanoTransactionModel using the factory
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// reversed so that the DateTime is correct when local_timestamp is absent
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return transactions.reversed
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.map<NanoTransactionModel>((transaction) => NanoTransactionModel.fromJson(transaction))
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.toList();
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} catch (e) {
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print(e);
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return [];
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}
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}
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}
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