wallet-core/lib/wallet/wallet.ts

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/*
This file is part of TALER
(C) 2015 GNUnet e.V.
TALER is free software; you can redistribute it and/or modify it under the
terms of the GNU General Public License as published by the Free Software
Foundation; either version 3, or (at your option) any later version.
TALER is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
A PARTICULAR PURPOSE. See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License along with
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TALER; see the file COPYING. If not, see <http://www.gnu.org/licenses/>
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*/
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/**
* High-level wallet operations that should be indepentent from the underlying
* browser extension interface.
* @module Wallet
* @author Florian Dold
*/
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import {
AmountJson,
CreateReserveResponse,
IExchangeInfo,
Denomination,
Notifier,
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WireInfo, RefreshSession, ReserveRecord, CoinPaySig, WalletBalance,
WalletBalanceEntry
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} from "./types";
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import {HttpResponse, RequestException} from "./http";
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import {QueryRoot, Store, Index, JoinResult, AbortTransaction} from "./query";
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import {Checkable} from "./checkable";
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import {canonicalizeBaseUrl, amountToPretty} from "./helpers";
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import {ReserveCreationInfo, Amounts} from "./types";
import {PreCoin} from "./types";
import {CryptoApi} from "./cryptoApi";
import {Coin} from "./types";
import {PayCoinInfo} from "./types";
import {CheckRepurchaseResult} from "./types";
import {Contract} from "./types";
import {ExchangeHandle} from "./types";
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"use strict";
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export interface CoinWithDenom {
coin: Coin;
denom: Denomination;
}
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@Checkable.Class
export class KeysJson {
@Checkable.List(Checkable.Value(Denomination))
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denoms: Denomination[];
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@Checkable.String
master_public_key: string;
@Checkable.Any
auditors: any[];
@Checkable.String
list_issue_date: string;
@Checkable.Any
signkeys: any;
@Checkable.String
eddsa_pub: string;
@Checkable.String
eddsa_sig: string;
static checked: (obj: any) => KeysJson;
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}
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@Checkable.Class
export class CreateReserveRequest {
/**
* The initial amount for the reserve.
*/
@Checkable.Value(AmountJson)
amount: AmountJson;
/**
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* Exchange URL where the bank should create the reserve.
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*/
@Checkable.String
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exchange: string;
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static checked: (obj: any) => CreateReserveRequest;
}
@Checkable.Class
export class ConfirmReserveRequest {
/**
* Public key of then reserve that should be marked
* as confirmed.
*/
@Checkable.String
reservePub: string;
static checked: (obj: any) => ConfirmReserveRequest;
}
@Checkable.Class
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export class Offer {
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@Checkable.Value(Contract)
contract: Contract;
@Checkable.String
merchant_sig: string;
@Checkable.String
H_contract: string;
static checked: (obj: any) => Offer;
}
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export interface HistoryRecord {
type: string;
timestamp: number;
subjectId?: string;
detail: any;
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level: HistoryLevel;
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}
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interface ExchangeCoins {
[exchangeUrl: string]: CoinWithDenom[];
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}
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interface PayReq {
amount: AmountJson;
coins: CoinPaySig[];
H_contract: string;
max_fee: AmountJson;
merchant_sig: string;
exchange: string;
refund_deadline: string;
timestamp: string;
transaction_id: number;
pay_deadline: string;
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}
interface Transaction {
contractHash: string;
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contract: Contract;
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payReq: PayReq;
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merchantSig: string;
/**
* The transaction isn't active anymore, it's either successfully paid
* or refunded/aborted.
*/
finished: boolean;
}
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export enum HistoryLevel {
Trace = 1,
Developer = 2,
Expert = 3,
User = 4,
}
export interface Badge {
setText(s: string): void;
setColor(c: string): void;
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startBusy(): void;
stopBusy(): void;
}
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export function canonicalJson(obj: any): string {
// Check for cycles, etc.
JSON.stringify(obj);
if (typeof obj == "string" || typeof obj == "number" || obj === null) {
return JSON.stringify(obj)
}
if (Array.isArray(obj)) {
let objs: string[] = obj.map((e) => canonicalJson(e));
return `[${objs.join(',')}]`;
}
let keys: string[] = [];
for (let key in obj) {
keys.push(key);
}
keys.sort();
let s = "{";
for (let i = 0; i < keys.length; i++) {
let key = keys[i];
s += JSON.stringify(key) + ":" + canonicalJson(obj[key]);
if (i != keys.length - 1) {
s += ",";
}
}
return s + "}";
}
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function deepEquals(x: any, y: any): boolean {
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if (x === y) {
return true;
}
if (Array.isArray(x) && x.length !== y.length) {
return false;
}
var p = Object.keys(x);
return Object.keys(y).every((i) => p.indexOf(i) !== -1) &&
p.every((i) => deepEquals(x[i], y[i]));
}
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function flatMap<T, U>(xs: T[], f: (x: T) => U[]): U[] {
return xs.reduce((acc: U[], next: T) => [...f(next), ...acc], []);
}
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function getTalerStampSec(stamp: string): number | null {
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const m = stamp.match(/\/?Date\(([0-9]*)\)\/?/);
if (!m) {
return null;
}
return parseInt(m[1]);
}
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function setTimeout(f: any, t: number) {
return chrome.extension.getBackgroundPage().setTimeout(f, t);
}
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function isWithdrawableDenom(d: Denomination) {
const now_sec = (new Date).getTime() / 1000;
const stamp_withdraw_sec = getTalerStampSec(d.stamp_expire_withdraw);
// Withdraw if still possible to withdraw within a minute
if (stamp_withdraw_sec + 60 > now_sec) {
return true;
}
return false;
}
interface HttpRequestLibrary {
req(method: string,
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url: string | uri.URI,
options?: any): Promise<HttpResponse>;
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get(url: string | uri.URI): Promise<HttpResponse>;
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postJson(url: string | uri.URI, body: any): Promise<HttpResponse>;
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postForm(url: string | uri.URI, form: any): Promise<HttpResponse>;
}
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function copy(o: any) {
return JSON.parse(JSON.stringify(o));
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}
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/**
* Result of updating exisiting information
* about an exchange with a new '/keys' response.
*/
interface KeyUpdateInfo {
updatedExchangeInfo: IExchangeInfo;
addedDenominations: Denomination[];
removedDenominations: Denomination[];
}
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/**
* Get a list of denominations (with repetitions possible)
* whose total value is as close as possible to the available
* amount, but never larger.
*/
function getWithdrawDenomList(amountAvailable: AmountJson,
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denoms: Denomination[]): Denomination[] {
let remaining = Amounts.copy(amountAvailable);
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const ds: Denomination[] = [];
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denoms = denoms.filter(isWithdrawableDenom);
denoms.sort((d1, d2) => Amounts.cmp(d2.value, d1.value));
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// This is an arbitrary number of coins
// we can withdraw in one go. It's not clear if this limit
// is useful ...
for (let i = 0; i < 1000; i++) {
let found = false;
for (let d of denoms) {
let cost = Amounts.add(d.value, d.fee_withdraw).amount;
if (Amounts.cmp(remaining, cost) < 0) {
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continue;
}
found = true;
remaining = Amounts.sub(remaining, cost).amount;
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ds.push(d);
break;
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}
if (!found) {
break;
}
}
return ds;
}
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export namespace Stores {
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class ExchangeStore extends Store<IExchangeInfo> {
constructor() {
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super("exchanges", {keyPath: "baseUrl"});
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}
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pubKeyIndex = new Index<string,IExchangeInfo>(this, "pubKey", "masterPublicKey");
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}
class CoinsStore extends Store<Coin> {
constructor() {
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super("coins", {keyPath: "coinPub"});
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}
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exchangeBaseUrlIndex = new Index<string,Coin>(this, "exchangeBaseUrl", "exchangeBaseUrl");
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}
class HistoryStore extends Store<HistoryRecord> {
constructor() {
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super("history", {
keyPath: "id",
autoIncrement: true
});
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}
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timestampIndex = new Index<number,HistoryRecord>(this, "timestamp", "timestamp");
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}
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class TransactionsStore extends Store<Transaction> {
constructor() {
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super("transactions", {keyPath: "contractHash"});
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}
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repurchaseIndex = new Index<[string,string],Transaction>(this, "repurchase", [
"contract.merchant_pub",
"contract.repurchase_correlation_id"
]);
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}
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export let exchanges: ExchangeStore = new ExchangeStore();
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export let transactions: TransactionsStore = new TransactionsStore();
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export let reserves: Store<ReserveRecord> = new Store<ReserveRecord>("reserves", {keyPath: "reserve_pub"});
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export let coins: CoinsStore = new CoinsStore();
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export let refresh: Store<RefreshSession> = new Store<RefreshSession>("refresh", {keyPath: "meltCoinPub"});
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export let history: HistoryStore = new HistoryStore();
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export let precoins: Store<PreCoin> = new Store<PreCoin>("precoins", {keyPath: "coinPub"});
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}
export class Wallet {
private db: IDBDatabase;
private http: HttpRequestLibrary;
private badge: Badge;
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private notifier: Notifier;
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public cryptoApi: CryptoApi;
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/**
* Set of identifiers for running operations.
*/
private runningOperations: Set<string> = new Set();
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q(): QueryRoot {
return new QueryRoot(this.db);
}
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constructor(db: IDBDatabase,
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http: HttpRequestLibrary,
badge: Badge,
notifier: Notifier) {
this.db = db;
this.http = http;
this.badge = badge;
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this.notifier = notifier;
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this.cryptoApi = new CryptoApi();
this.resumePendingFromDb();
}
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private startOperation(operationId: string) {
this.runningOperations.add(operationId);
this.badge.startBusy();
}
private stopOperation(operationId: string) {
this.runningOperations.delete(operationId);
if (this.runningOperations.size == 0) {
this.badge.stopBusy();
}
}
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async updateExchanges(): Promise<void> {
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console.log("updating exchanges");
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let exchangesUrls = await this.q()
.iter(Stores.exchanges)
.map((e) => e.baseUrl)
.toArray();
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for (let url of exchangesUrls) {
this.updateExchangeFromUrl(url)
.catch((e) => {
console.error("updating exchange failed", e);
});
}
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}
/**
* Resume various pending operations that are pending
* by looking at the database.
*/
private resumePendingFromDb(): void {
console.log("resuming pending operations from db");
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this.q()
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.iter(Stores.reserves)
.reduce((reserve) => {
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console.log("resuming reserve", reserve.reserve_pub);
this.processReserve(reserve);
});
this.q()
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.iter(Stores.precoins)
.reduce((preCoin) => {
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console.log("resuming precoin");
this.processPreCoin(preCoin);
});
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this.q()
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.iter(Stores.refresh)
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.reduce((r: RefreshSession) => {
this.continueRefreshSession(r);
});
// FIXME: optimize via index
this.q()
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.iter(Stores.coins)
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.reduce((c: Coin) => {
if (c.dirty && !c.transactionPending) {
this.refresh(c.coinPub);
}
});
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}
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/**
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* Get exchanges and associated coins that are still spendable,
* but only if the sum the coins' remaining value exceeds the payment amount.
*/
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private async getPossibleExchangeCoins(paymentAmount: AmountJson,
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depositFeeLimit: AmountJson,
allowedExchanges: ExchangeHandle[]): Promise<ExchangeCoins> {
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// Mapping from exchange base URL to list of coins together with their
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// denomination
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let m: ExchangeCoins = {};
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let x: number;
function storeExchangeCoin(mc: JoinResult<IExchangeInfo, Coin>,
url: string) {
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let exchange: IExchangeInfo = mc.left;
console.log("got coin for exchange", url);
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let coin: Coin = mc.right;
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if (coin.suspended) {
console.log("skipping suspended coin",
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coin.denomPub,
"from exchange",
exchange.baseUrl);
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return;
}
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let denom = exchange.active_denoms.find((e) => e.denom_pub === coin.denomPub);
if (!denom) {
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console.warn("denom not found (database inconsistent)");
return;
}
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if (denom.value.currency !== paymentAmount.currency) {
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console.warn("same pubkey for different currencies");
return;
}
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let cd = {coin, denom};
let x = m[url];
if (!x) {
m[url] = [cd];
} else {
x.push(cd);
}
}
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// Make sure that we don't look up coins
// for the same URL twice ...
let handledExchanges = new Set();
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let ps = flatMap(allowedExchanges, (info: ExchangeHandle) => {
if (handledExchanges.has(info.url)) {
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return [];
}
handledExchanges.add(info.url);
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console.log("Checking for merchant's exchange", JSON.stringify(info));
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return [
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this.q()
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.iterIndex(Stores.exchanges.pubKeyIndex, info.master_pub)
.indexJoin(Stores.coins.exchangeBaseUrlIndex,
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(exchange) => exchange.baseUrl)
.reduce((x) => storeExchangeCoin(x, info.url))
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];
});
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await Promise.all(ps);
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let ret: ExchangeCoins = {};
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if (Object.keys(m).length == 0) {
console.log("not suitable exchanges found");
}
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console.log("exchange coins:");
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console.dir(m);
// We try to find the first exchange where we have
// enough coins to cover the paymentAmount with fees
// under depositFeeLimit
nextExchange:
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for (let key in m) {
let coins = m[key];
// Sort by ascending deposit fee
coins.sort((o1, o2) => Amounts.cmp(o1.denom.fee_deposit,
o2.denom.fee_deposit));
let maxFee = Amounts.copy(depositFeeLimit);
let minAmount = Amounts.copy(paymentAmount);
let accFee = Amounts.copy(coins[0].denom.fee_deposit);
let accAmount = Amounts.getZero(coins[0].coin.currentAmount.currency);
let usableCoins: CoinWithDenom[] = [];
nextCoin:
for (let i = 0; i < coins.length; i++) {
let coinAmount = Amounts.copy(coins[i].coin.currentAmount);
let coinFee = coins[i].denom.fee_deposit;
if (Amounts.cmp(coinAmount, coinFee) <= 0) {
continue nextCoin;
}
accFee = Amounts.add(accFee, coinFee).amount;
accAmount = Amounts.add(accAmount, coinAmount).amount;
if (Amounts.cmp(accFee, maxFee) >= 0) {
// FIXME: if the fees are too high, we have
// to cover them ourselves ....
console.log("too much fees");
continue nextExchange;
}
usableCoins.push(coins[i]);
if (Amounts.cmp(accAmount, minAmount) >= 0) {
ret[key] = usableCoins;
continue nextExchange;
}
}
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}
return ret;
}
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/**
* Record all information that is necessary to
* pay for a contract in the wallet's database.
*/
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private async recordConfirmPay(offer: Offer,
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payCoinInfo: PayCoinInfo,
chosenExchange: string): Promise<void> {
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let payReq: PayReq = {
amount: offer.contract.amount,
coins: payCoinInfo.map((x) => x.sig),
H_contract: offer.H_contract,
max_fee: offer.contract.max_fee,
merchant_sig: offer.merchant_sig,
exchange: URI(chosenExchange).href(),
refund_deadline: offer.contract.refund_deadline,
pay_deadline: offer.contract.pay_deadline,
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timestamp: offer.contract.timestamp,
transaction_id: offer.contract.transaction_id,
};
let t: Transaction = {
contractHash: offer.H_contract,
contract: offer.contract,
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payReq: payReq,
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merchantSig: offer.merchant_sig,
finished: false,
};
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let historyEntry: HistoryRecord = {
type: "pay",
timestamp: (new Date).getTime(),
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subjectId: `contract-${offer.H_contract}`,
detail: {
merchantName: offer.contract.merchant.name,
amount: offer.contract.amount,
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contractHash: offer.H_contract,
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fulfillmentUrl: offer.contract.fulfillment_url,
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},
level: HistoryLevel.User
};
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await this.q()
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.put(Stores.transactions, t)
.put(Stores.history, historyEntry)
.putAll(Stores.coins, payCoinInfo.map((pci) => pci.updatedCoin))
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.finish();
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this.notifier.notify();
}
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async putHistory(historyEntry: HistoryRecord): Promise<void> {
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await this.q().put(Stores.history, historyEntry).finish();
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this.notifier.notify();
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}
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/**
* Add a contract to the wallet and sign coins,
* but do not send them yet.
*/
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async confirmPay(offer: Offer): Promise<any> {
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console.log("executing confirmPay");
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let transaction = await this.q().get(Stores.transactions, offer.H_contract);
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if (transaction) {
// Already payed ...
return {};
}
let mcs = await this.getPossibleExchangeCoins(offer.contract.amount,
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offer.contract.max_fee,
offer.contract.exchanges);
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if (Object.keys(mcs).length == 0) {
console.log("not confirming payment, insufficient coins");
return {
error: "coins-insufficient",
};
}
let exchangeUrl = Object.keys(mcs)[0];
let ds = await this.cryptoApi.signDeposit(offer, mcs[exchangeUrl]);
await this.recordConfirmPay(offer,
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ds,
exchangeUrl);
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return {};
}
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/**
* Add a contract to the wallet and sign coins,
* but do not send them yet.
*/
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async checkPay(offer: Offer): Promise<any> {
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// First check if we already payed for it.
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let transaction = await this.q().get(Stores.transactions, offer.H_contract);
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if (transaction) {
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return {isPayed: true};
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}
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// If not already payed, check if we could pay for it.
let mcs = await this.getPossibleExchangeCoins(offer.contract.amount,
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offer.contract.max_fee,
offer.contract.exchanges);
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if (Object.keys(mcs).length == 0) {
console.log("not confirming payment, insufficient coins");
return {
error: "coins-insufficient",
};
}
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return {isPayed: false};
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}
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/**
* Retrieve all necessary information for looking up the contract
* with the given hash.
*/
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async executePayment(H_contract: string): Promise<any> {
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let t = await this.q().get<Transaction>(Stores.transactions, H_contract);
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if (!t) {
return {
success: false,
contractFound: false,
}
}
let resp = {
success: true,
payReq: t.payReq,
contract: t.contract,
};
return resp;
}
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/**
* First fetch information requred to withdraw from the reserve,
* then deplete the reserve, withdrawing coins until it is empty.
*/
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private async processReserve(reserveRecord: ReserveRecord,
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retryDelayMs: number = 250): Promise<void> {
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const opId = "reserve-" + reserveRecord.reserve_pub;
this.startOperation(opId);
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try {
let exchange = await this.updateExchangeFromUrl(reserveRecord.exchange_base_url);
let reserve = await this.updateReserve(reserveRecord.reserve_pub,
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exchange);
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let n = await this.depleteReserve(reserve, exchange);
if (n != 0) {
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let depleted: HistoryRecord = {
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type: "depleted-reserve",
subjectId: `reserve-progress-${reserveRecord.reserve_pub}`,
timestamp: (new Date).getTime(),
detail: {
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exchangeBaseUrl: reserveRecord.exchange_base_url,
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reservePub: reserveRecord.reserve_pub,
requestedAmount: reserveRecord.requested_amount,
currentAmount: reserveRecord.current_amount,
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},
level: HistoryLevel.User
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};
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await this.q().put(Stores.history, depleted).finish();
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}
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} catch (e) {
// random, exponential backoff truncated at 3 minutes
let nextDelay = Math.min(2 * retryDelayMs + retryDelayMs * Math.random(),
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3000 * 60);
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console.warn(`Failed to deplete reserve, trying again in ${retryDelayMs} ms`);
setTimeout(() => this.processReserve(reserveRecord, nextDelay),
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retryDelayMs);
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} finally {
this.stopOperation(opId);
}
}
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private async processPreCoin(preCoin: PreCoin,
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retryDelayMs = 100): Promise<void> {
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let exchange = await this.q().get(Stores.exchanges,
preCoin.exchangeBaseUrl);
if (!exchange) {
console.error("db inconsistend: exchange for precoin not found");
return;
}
let denom = exchange.all_denoms.find((d) => d.denom_pub == preCoin.denomPub);
if (!denom) {
console.error("db inconsistent: denom for precoin not found");
return;
}
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try {
const coin = await this.withdrawExecute(preCoin);
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const mutateReserve = (r: ReserveRecord) => {
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console.log(`before committing coin: current ${amountToPretty(r.current_amount!)}, precoin: ${amountToPretty(
r.precoin_amount)})}`);
let x = Amounts.sub(r.precoin_amount,
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preCoin.coinValue,
denom!.fee_withdraw);
if (x.saturated) {
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console.error("database inconsistent");
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throw AbortTransaction;
}
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r.precoin_amount = x.amount;
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return r;
};
let historyEntry: HistoryRecord = {
type: "withdraw",
timestamp: (new Date).getTime(),
level: HistoryLevel.Expert,
detail: {
coinPub: coin.coinPub,
}
};
await this.q()
.mutate(Stores.reserves, preCoin.reservePub, mutateReserve)
.delete("precoins", coin.coinPub)
.add(Stores.coins, coin)
.add(Stores.history, historyEntry)
.finish();
this.notifier.notify();
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} catch (e) {
console.error("Failed to withdraw coin from precoin, retrying in",
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retryDelayMs,
"ms", e);
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// exponential backoff truncated at one minute
let nextRetryDelayMs = Math.min(retryDelayMs * 2, 1000 * 60);
setTimeout(() => this.processPreCoin(preCoin, nextRetryDelayMs),
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retryDelayMs);
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}
}
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/**
* Create a reserve, but do not flag it as confirmed yet.
*/
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async createReserve(req: CreateReserveRequest): Promise<CreateReserveResponse> {
let keypair = await this.cryptoApi.createEddsaKeypair();
const now = (new Date).getTime();
const canonExchange = canonicalizeBaseUrl(req.exchange);
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const reserveRecord: ReserveRecord = {
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reserve_pub: keypair.pub,
reserve_priv: keypair.priv,
exchange_base_url: canonExchange,
created: now,
last_query: null,
current_amount: null,
requested_amount: req.amount,
confirmed: false,
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precoin_amount: Amounts.getZero(req.amount.currency),
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};
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const historyEntry = {
type: "create-reserve",
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level: HistoryLevel.Expert,
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timestamp: now,
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subjectId: `reserve-progress-${reserveRecord.reserve_pub}`,
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detail: {
requestedAmount: req.amount,
reservePub: reserveRecord.reserve_pub,
}
};
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await this.q()
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.put(Stores.reserves, reserveRecord)
.put(Stores.history, historyEntry)
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.finish();
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let r: CreateReserveResponse = {
exchange: canonExchange,
reservePub: keypair.pub,
};
return r;
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}
/**
* Mark an existing reserve as confirmed. The wallet will start trying
* to withdraw from that reserve. This may not immediately succeed,
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* since the exchange might not know about the reserve yet, even though the
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* bank confirmed its creation.
*
* A confirmed reserve should be shown to the user in the UI, while
* an unconfirmed reserve should be hidden.
*/
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async confirmReserve(req: ConfirmReserveRequest): Promise<void> {
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const now = (new Date).getTime();
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let reserve: ReserveRecord|undefined = await (
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this.q().get<ReserveRecord>(Stores.reserves,
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req.reservePub));
if (!reserve) {
console.error("Unable to confirm reserve, not found in DB");
return;
}
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console.log("reserve confirmed");
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const historyEntry: HistoryRecord = {
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type: "confirm-reserve",
timestamp: now,
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subjectId: `reserve-progress-${reserve.reserve_pub}`,
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detail: {
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exchangeBaseUrl: reserve.exchange_base_url,
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reservePub: req.reservePub,
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requestedAmount: reserve.requested_amount,
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},
level: HistoryLevel.User,
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};
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reserve.confirmed = true;
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await this.q()
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.put(Stores.reserves, reserve)
.put(Stores.history, historyEntry)
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.finish();
this.notifier.notify();
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this.processReserve(reserve);
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}
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private async withdrawExecute(pc: PreCoin): Promise<Coin> {
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let reserve = await this.q().get<ReserveRecord>(Stores.reserves,
pc.reservePub);
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if (!reserve) {
throw Error("db inconsistent");
}
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let wd: any = {};
wd.denom_pub = pc.denomPub;
wd.reserve_pub = pc.reservePub;
wd.reserve_sig = pc.withdrawSig;
wd.coin_ev = pc.coinEv;
let reqUrl = URI("reserve/withdraw").absoluteTo(reserve.exchange_base_url);
let resp = await this.http.postJson(reqUrl, wd);
if (resp.status != 200) {
throw new RequestException({
hint: "Withdrawal failed",
status: resp.status
});
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}
let r = JSON.parse(resp.responseText);
let denomSig = await this.cryptoApi.rsaUnblind(r.ev_sig,
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pc.blindingKey,
pc.denomPub);
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let coin: Coin = {
coinPub: pc.coinPub,
coinPriv: pc.coinPriv,
denomPub: pc.denomPub,
denomSig: denomSig,
currentAmount: pc.coinValue,
exchangeBaseUrl: pc.exchangeBaseUrl,
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dirty: false,
transactionPending: false,
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};
return coin;
}
2015-12-13 23:47:30 +01:00
/**
* Withdraw coins from a reserve until it is empty.
*/
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private async depleteReserve(reserve: ReserveRecord,
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exchange: IExchangeInfo): Promise<number> {
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if (!reserve.current_amount) {
throw Error("can't withdraw when amount is unknown");
}
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let denomsAvailable: Denomination[] = copy(exchange.active_denoms);
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let denomsForWithdraw = getWithdrawDenomList(reserve.current_amount!,
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denomsAvailable);
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let ps = denomsForWithdraw.map(async(denom) => {
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function mutateReserve(r: ReserveRecord): ReserveRecord {
let currentAmount = r.current_amount;
if (!currentAmount) {
throw Error("can't withdraw when amount is unknown");
}
r.precoin_amount = Amounts.add(r.precoin_amount,
denom.value,
denom.fee_withdraw).amount;
let result = Amounts.sub(currentAmount,
denom.value,
denom.fee_withdraw);
if (result.saturated) {
console.error("can't create precoin, saturated");
throw AbortTransaction;
}
r.current_amount = result.amount;
console.log(`after creating precoin: current ${amountToPretty(r.current_amount)}, precoin: ${amountToPretty(
r.precoin_amount)})}`);
return r;
}
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let preCoin = await this.cryptoApi
.createPreCoin(denom, reserve);
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await this.q()
.put(Stores.precoins, preCoin)
.mutate(Stores.reserves, reserve.reserve_pub, mutateReserve);
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await this.processPreCoin(preCoin);
});
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await Promise.all(ps);
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return ps.length;
}
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/**
* Update the information about a reserve that is stored in the wallet
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* by quering the reserve's exchange.
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*/
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private async updateReserve(reservePub: string,
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exchange: IExchangeInfo): Promise<ReserveRecord> {
let reserve = await this.q()
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.get<ReserveRecord>(Stores.reserves, reservePub);
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if (!reserve) {
throw Error("reserve not in db");
}
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let reqUrl = URI("reserve/status").absoluteTo(exchange.baseUrl);
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reqUrl.query({'reserve_pub': reservePub});
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let resp = await this.http.get(reqUrl);
if (resp.status != 200) {
throw Error();
}
let reserveInfo = JSON.parse(resp.responseText);
if (!reserveInfo) {
throw Error();
}
let oldAmount = reserve.current_amount;
let newAmount = reserveInfo.balance;
reserve.current_amount = reserveInfo.balance;
let historyEntry = {
type: "reserve-update",
timestamp: (new Date).getTime(),
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subjectId: `reserve-progress-${reserve.reserve_pub}`,
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detail: {
reservePub,
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requestedAmount: reserve.requested_amount,
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oldAmount,
newAmount
}
};
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await this.q()
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.put(Stores.reserves, reserve)
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.finish();
this.notifier.notify();
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return reserve;
}
2016-01-26 17:21:17 +01:00
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/**
* Get the wire information for the exchange with the given base URL.
*/
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async getWireInfo(exchangeBaseUrl: string): Promise<WireInfo> {
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exchangeBaseUrl = canonicalizeBaseUrl(exchangeBaseUrl);
let reqUrl = URI("wire").absoluteTo(exchangeBaseUrl);
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let resp = await this.http.get(reqUrl);
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if (resp.status != 200) {
throw Error("/wire request failed");
}
let wiJson = JSON.parse(resp.responseText);
if (!wiJson) {
throw Error("/wire response malformed")
}
return wiJson;
}
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async getReserveCreationInfo(baseUrl: string,
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amount: AmountJson): Promise<ReserveCreationInfo> {
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let exchangeInfo = await this.updateExchangeFromUrl(baseUrl);
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let selectedDenoms = getWithdrawDenomList(amount,
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exchangeInfo.active_denoms);
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let acc = Amounts.getZero(amount.currency);
for (let d of selectedDenoms) {
acc = Amounts.add(acc, d.fee_withdraw).amount;
}
let actualCoinCost = selectedDenoms
.map((d: Denomination) => Amounts.add(d.value,
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d.fee_withdraw).amount)
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.reduce((a, b) => Amounts.add(a, b).amount);
let wireInfo = await this.getWireInfo(baseUrl);
let ret: ReserveCreationInfo = {
exchangeInfo,
selectedDenoms,
wireInfo,
withdrawFee: acc,
overhead: Amounts.sub(amount, actualCoinCost).amount,
};
return ret;
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}
/**
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* Update or add exchange DB entry by fetching the /keys information.
* Optionally link the reserve entry to the new or existing
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* exchange entry in then DB.
*/
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async updateExchangeFromUrl(baseUrl: string): Promise<IExchangeInfo> {
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baseUrl = canonicalizeBaseUrl(baseUrl);
let reqUrl = URI("keys").absoluteTo(baseUrl);
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let resp = await this.http.get(reqUrl);
if (resp.status != 200) {
throw Error("/keys request failed");
}
let exchangeKeysJson = KeysJson.checked(JSON.parse(resp.responseText));
return this.updateExchangeFromJson(baseUrl, exchangeKeysJson);
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}
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private async suspendCoins(exchangeInfo: IExchangeInfo): Promise<void> {
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let suspendedCoins = await (
this.q()
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.iterIndex(Stores.coins.exchangeBaseUrlIndex, exchangeInfo.baseUrl)
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.reduce((coin: Coin, suspendedCoins: Coin[]) => {
if (!exchangeInfo.active_denoms.find((c) => c.denom_pub == coin.denomPub)) {
return Array.prototype.concat(suspendedCoins, [coin]);
}
return Array.prototype.concat(suspendedCoins);
}, []));
let q = this.q();
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suspendedCoins.map((c) => {
console.log("suspending coin", c);
c.suspended = true;
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q.put(Stores.coins, c);
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});
await q.finish();
}
2016-02-18 22:50:17 +01:00
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private async updateExchangeFromJson(baseUrl: string,
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exchangeKeysJson: KeysJson): Promise<IExchangeInfo> {
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const updateTimeSec = getTalerStampSec(exchangeKeysJson.list_issue_date);
if (updateTimeSec === null) {
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throw Error("invalid update time");
}
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let r = await this.q().get<IExchangeInfo>(Stores.exchanges, baseUrl);
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let exchangeInfo: IExchangeInfo;
if (!r) {
exchangeInfo = {
baseUrl,
all_denoms: [],
active_denoms: [],
last_update_time: updateTimeSec,
masterPublicKey: exchangeKeysJson.master_public_key,
};
console.log("making fresh exchange");
} else {
if (updateTimeSec < r.last_update_time) {
console.log("outdated /keys, not updating");
return r
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}
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exchangeInfo = r;
console.log("updating old exchange");
}
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let updatedExchangeInfo = await this.updateExchangeInfo(exchangeInfo,
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exchangeKeysJson);
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await this.suspendCoins(updatedExchangeInfo);
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await this.q()
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.put(Stores.exchanges, updatedExchangeInfo)
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.finish();
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return updatedExchangeInfo;
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}
2016-02-18 22:50:17 +01:00
2016-02-19 00:49:22 +01:00
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private async updateExchangeInfo(exchangeInfo: IExchangeInfo,
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newKeys: KeysJson): Promise<IExchangeInfo> {
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if (exchangeInfo.masterPublicKey != newKeys.master_public_key) {
throw Error("public keys do not match");
}
exchangeInfo.active_denoms = [];
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let denomsToCheck = newKeys.denoms.filter((newDenom) => {
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// did we find the new denom in the list of all (old) denoms?
let found = false;
for (let oldDenom of exchangeInfo.all_denoms) {
if (oldDenom.denom_pub === newDenom.denom_pub) {
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let a: any = Object.assign({}, oldDenom);
let b: any = Object.assign({}, newDenom);
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// pub hash is only there for convenience in the wallet
delete a["pub_hash"];
delete b["pub_hash"];
if (!deepEquals(a, b)) {
console.error("denomination parameters were modified, old/new:");
console.dir(a);
console.dir(b);
// FIXME: report to auditors
}
found = true;
break;
}
}
if (found) {
exchangeInfo.active_denoms.push(newDenom);
// No need to check signatures
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return false;
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}
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return true;
});
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let ps = denomsToCheck.map(async(denom) => {
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let valid = await this.cryptoApi
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.isValidDenom(denom,
exchangeInfo.masterPublicKey);
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if (!valid) {
console.error("invalid denomination",
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denom,
"with key",
exchangeInfo.masterPublicKey);
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// FIXME: report to auditors
}
exchangeInfo.active_denoms.push(denom);
exchangeInfo.all_denoms.push(denom);
});
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await Promise.all(ps);
return exchangeInfo;
}
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/**
* Retrieve a mapping from currency name to the amount
* that is currenctly available for spending in the wallet.
*/
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async getBalances(): Promise<WalletBalance> {
function ensureEntry(balance: WalletBalance, currency: string) {
let entry: WalletBalanceEntry|undefined = balance[currency];
let z = Amounts.getZero(currency);
if (!entry) {
balance[currency] = entry = {
available: z,
pendingIncoming: z,
pendingPayment: z,
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};
}
return entry;
}
function collectBalances(c: Coin, balance: WalletBalance) {
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if (c.suspended) {
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return balance;
}
let currency = c.currentAmount.currency;
let entry = ensureEntry(balance, currency);
entry.available = Amounts.add(entry.available, c.currentAmount).amount;
return balance;
}
function collectPendingWithdraw(r: ReserveRecord, balance: WalletBalance) {
if (!r.confirmed) {
return balance;
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}
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let entry = ensureEntry(balance, r.requested_amount.currency);
let amount = r.current_amount;
if (!amount) {
amount = r.requested_amount;
}
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amount = Amounts.add(amount, r.precoin_amount).amount;
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if (Amounts.cmp(smallestWithdraw[r.exchange_base_url], amount) < 0) {
entry.pendingIncoming = Amounts.add(entry.pendingIncoming,
amount).amount;
}
return balance;
}
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function collectPendingRefresh(r: RefreshSession, balance: WalletBalance) {
if (!r.finished) {
return balance;
}
let entry = ensureEntry(balance, r.valueWithFee.currency);
entry.pendingIncoming = Amounts.add(entry.pendingIncoming,
r.valueOutput).amount;
return balance;
}
function collectPayments(t: Transaction, balance: WalletBalance) {
if (t.finished) {
return balance;
}
let entry = ensureEntry(balance, t.contract.amount.currency);
entry.pendingPayment = Amounts.add(entry.pendingPayment,
t.contract.amount).amount;
return balance;
}
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function collectSmallestWithdraw(e: IExchangeInfo, sw: any) {
let min: AmountJson|undefined;
for (let d of e.active_denoms) {
let v = Amounts.add(d.value, d.fee_withdraw).amount;
if (!min) {
min = v;
continue;
}
if (Amounts.cmp(v, min) < 0) {
min = v;
}
}
sw[e.baseUrl] = min;
return sw;
}
let balance = {};
// Mapping from exchange pub to smallest
// possible amount we can withdraw
let smallestWithdraw: {[baseUrl: string]: AmountJson} = {};
smallestWithdraw = await (this.q()
.iter(Stores.exchanges)
.reduce(collectSmallestWithdraw, {}));
console.log("smallest withdraws", smallestWithdraw);
let tx = this.q();
tx.iter(Stores.coins)
.reduce(collectBalances, balance);
tx.iter(Stores.refresh)
.reduce(collectPendingRefresh, balance);
tx.iter(Stores.reserves)
.reduce(collectPendingWithdraw, balance);
tx.iter(Stores.transactions)
.reduce(collectPayments, balance);
await tx.finish();
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return balance;
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}
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async createRefreshSession(oldCoinPub: string): Promise<RefreshSession|undefined> {
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let coin = await this.q().get<Coin>(Stores.coins, oldCoinPub);
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if (!coin) {
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throw Error("coin not found");
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}
let exchange = await this.updateExchangeFromUrl(coin.exchangeBaseUrl);
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if (!exchange) {
throw Error("db inconsistent");
}
let oldDenom = exchange.all_denoms.find((d) => d.denom_pub == coin!.denomPub);
if (!oldDenom) {
throw Error("db inconsistent");
}
let availableDenoms: Denomination[] = exchange.active_denoms;
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let availableAmount = Amounts.sub(coin.currentAmount,
oldDenom.fee_refresh).amount;
let newCoinDenoms = getWithdrawDenomList(availableAmount,
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availableDenoms);
console.log("refreshing into", newCoinDenoms);
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if (newCoinDenoms.length == 0) {
console.log("not refreshing, value too small");
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return undefined;
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}
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let refreshSession: RefreshSession = await (
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this.cryptoApi.createRefreshSession(exchange.baseUrl,
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3,
coin,
newCoinDenoms,
oldDenom.fee_refresh));
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function mutateCoin(c: Coin): Coin {
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let r = Amounts.sub(c.currentAmount,
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refreshSession.valueWithFee);
if (r.saturated) {
// Something else must have written the coin value
throw AbortTransaction;
}
c.currentAmount = r.amount;
return c;
}
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await this.q()
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.put(Stores.refresh, refreshSession)
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.mutate(Stores.coins, coin.coinPub, mutateCoin)
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.finish();
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return refreshSession;
}
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async refresh(oldCoinPub: string): Promise<void> {
let refreshSession: RefreshSession|undefined;
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let oldSession = await this.q().get(Stores.refresh, oldCoinPub);
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if (oldSession) {
refreshSession = oldSession;
} else {
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refreshSession = await this.createRefreshSession(oldCoinPub);
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}
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if (!refreshSession) {
// refreshing not necessary
return;
}
this.continueRefreshSession(refreshSession);
}
async continueRefreshSession(refreshSession: RefreshSession) {
if (refreshSession.finished) {
return;
}
if (typeof refreshSession.norevealIndex !== "number") {
let coinPub = refreshSession.meltCoinPub;
await this.refreshMelt(refreshSession);
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let r = await this.q().get<RefreshSession>(Stores.refresh, coinPub);
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if (!r) {
throw Error("refresh session does not exist anymore");
}
refreshSession = r;
}
await this.refreshReveal(refreshSession);
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}
async refreshMelt(refreshSession: RefreshSession): Promise<void> {
if (refreshSession.norevealIndex != undefined) {
console.error("won't melt again");
return;
}
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let coin = await this.q().get<Coin>(Stores.coins,
refreshSession.meltCoinPub);
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if (!coin) {
console.error("can't melt coin, it does not exist");
return;
}
let reqUrl = URI("refresh/melt").absoluteTo(refreshSession.exchangeBaseUrl);
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let meltCoin = {
coin_pub: coin.coinPub,
denom_pub: coin.denomPub,
denom_sig: coin.denomSig,
confirm_sig: refreshSession.confirmSig,
value_with_fee: refreshSession.valueWithFee,
};
let coinEvs = refreshSession.preCoinsForGammas.map((x) => x.map((y) => y.coinEv));
let req = {
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"new_denoms": refreshSession.newDenoms,
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"melt_coin": meltCoin,
"transfer_pubs": refreshSession.transferPubs,
"coin_evs": coinEvs,
};
console.log("melt request:", req);
let resp = await this.http.postJson(reqUrl, req);
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console.log("melt request:", req);
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console.log("melt response:", resp.responseText);
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if (resp.status != 200) {
console.error(resp.responseText);
throw Error("refresh failed");
}
let respJson = JSON.parse(resp.responseText);
if (!respJson) {
throw Error("exchange responded with garbage");
}
let norevealIndex = respJson.noreveal_index;
if (typeof norevealIndex != "number") {
throw Error("invalid response");
}
refreshSession.norevealIndex = norevealIndex;
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await this.q().put(Stores.refresh, refreshSession).finish();
}
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async refreshReveal(refreshSession: RefreshSession): Promise<void> {
let norevealIndex = refreshSession.norevealIndex;
if (norevealIndex == undefined) {
throw Error("can't reveal without melting first");
}
let privs = Array.from(refreshSession.transferPrivs);
privs.splice(norevealIndex, 1);
let req = {
"session_hash": refreshSession.hash,
"transfer_privs": privs,
};
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let reqUrl = URI("refresh/reveal")
.absoluteTo(refreshSession.exchangeBaseUrl);
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console.log("reveal request:", req);
let resp = await this.http.postJson(reqUrl, req);
console.log("session:", refreshSession);
console.log("reveal response:", resp);
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if (resp.status != 200) {
console.log("error: /refresh/reveal returned status " + resp.status);
return;
}
let respJson = JSON.parse(resp.responseText);
if (!respJson.ev_sigs || !Array.isArray(respJson.ev_sigs)) {
console.log("/refresh/reveal did not contain ev_sigs");
}
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let exchange = await this.q().get<IExchangeInfo>(Stores.exchanges,
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refreshSession.exchangeBaseUrl);
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if (!exchange) {
console.error(`exchange ${refreshSession.exchangeBaseUrl} not found`);
return;
}
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let coins: Coin[] = [];
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for (let i = 0; i < respJson.ev_sigs.length; i++) {
let denom = exchange.all_denoms.find((d) => d.denom_pub == refreshSession.newDenoms[i]);
if (!denom) {
console.error("denom not found");
continue;
}
let pc = refreshSession.preCoinsForGammas[refreshSession.norevealIndex!][i];
let denomSig = await this.cryptoApi.rsaUnblind(respJson.ev_sigs[i].ev_sig,
pc.blindingKey,
denom.denom_pub);
let coin: Coin = {
coinPub: pc.publicKey,
coinPriv: pc.privateKey,
denomPub: denom.denom_pub,
denomSig: denomSig,
currentAmount: denom.value,
exchangeBaseUrl: refreshSession.exchangeBaseUrl,
dirty: false,
transactionPending: false,
};
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coins.push(coin);
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}
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refreshSession.finished = true;
await this.q()
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.putAll(Stores.coins, coins)
.put(Stores.refresh, refreshSession)
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.finish();
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}
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/**
* Retrive the full event history for this wallet.
*/
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async getHistory(): Promise<any> {
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function collect(x: any, acc: any) {
acc.push(x);
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return acc;
}
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let history = await (
this.q()
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.iterIndex(Stores.history.timestampIndex)
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.reduce(collect, []));
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return {history};
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}
async getExchanges(): Promise<IExchangeInfo[]> {
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return this.q()
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.iter<IExchangeInfo>(Stores.exchanges)
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.flatMap((e) => [e])
.toArray();
}
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async getReserves(exchangeBaseUrl: string): Promise<ReserveRecord[]> {
return this.q()
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.iter<ReserveRecord>(Stores.reserves)
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.filter((r: ReserveRecord) => r.exchange_base_url === exchangeBaseUrl)
.toArray();
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}
async getCoins(exchangeBaseUrl: string): Promise<Coin[]> {
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return this.q()
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.iter<Coin>(Stores.coins)
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.filter((c: Coin) => c.exchangeBaseUrl === exchangeBaseUrl)
.toArray();
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}
async getPreCoins(exchangeBaseUrl: string): Promise<PreCoin[]> {
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return this.q()
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.iter<PreCoin>(Stores.precoins)
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.filter((c: PreCoin) => c.exchangeBaseUrl === exchangeBaseUrl)
.toArray();
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}
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async hashContract(contract: any): Promise<string> {
return this.cryptoApi.hashString(canonicalJson(contract));
}
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/**
* Check if there's an equivalent contract we've already purchased.
*/
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async checkRepurchase(contract: Contract): Promise<CheckRepurchaseResult> {
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if (!contract.repurchase_correlation_id) {
console.log("no repurchase: no correlation id");
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return {isRepurchase: false};
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}
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let result: Transaction|undefined = await (
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this.q()
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.getIndexed(Stores.transactions.repurchaseIndex,
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[
contract.merchant_pub,
contract.repurchase_correlation_id
]));
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if (result) {
console.assert(result.contract.repurchase_correlation_id == contract.repurchase_correlation_id);
return {
isRepurchase: true,
existingContractHash: result.contractHash,
existingFulfillmentUrl: result.contract.fulfillment_url,
};
} else {
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return {isRepurchase: false};
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}
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}
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async paymentSucceeded(contractHash: string): Promise<any> {
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const doPaymentSucceeded = async() => {
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let t = await this.q().get<Transaction>(Stores.transactions,
contractHash);
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if (!t) {
console.error("contract not found");
return;
}
t.finished = true;
let modifiedCoins: Coin[] = [];
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for (let pc of t.payReq.coins) {
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let c = await this.q().get<Coin>(Stores.coins, pc.coin_pub);
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if (!c) {
console.error("coin not found");
return;
}
c.transactionPending = false;
modifiedCoins.push(c);
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}
await this.q()
.putAll(Stores.coins, modifiedCoins)
.put(Stores.transactions, t)
.finish();
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for (let c of t.payReq.coins) {
this.refresh(c.coin_pub);
}
};
doPaymentSucceeded();
return;
}
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}