258 lines
6.6 KiB
TypeScript
258 lines
6.6 KiB
TypeScript
/*
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This file is part of TALER
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(C) 2016 GNUnet e.V.
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TALER is free software; you can redistribute it and/or modify it under the
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terms of the GNU General Public License as published by the Free Software
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Foundation; either version 3, or (at your option) any later version.
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TALER is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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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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/**
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* API to access the Taler crypto worker thread.
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* @author Florian Dold
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*/
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import {PreCoin, Coin, ReserveRecord, AmountJson} from "./types";
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import {Denomination} from "./types";
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import {Offer} from "./wallet";
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import {CoinWithDenom} from "./wallet";
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import {PayCoinInfo} from "./types";
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import {RefreshSession} from "./types";
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interface WorkerState {
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/**
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* The actual worker thread.
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*/
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w: Worker|null;
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/**
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* Work we're currently executing or null if not busy.
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*/
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currentWorkItem: WorkItem|null;
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/**
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* Timer to terminate the worker if it's not busy enough.
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*/
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terminationTimerHandle: number|null;
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}
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interface WorkItem {
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operation: string;
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args: any[];
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resolve: any;
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reject: any;
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/**
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* Serial id to identify a matching response.
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*/
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rpcId: number;
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}
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/**
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* Number of different priorities. Each priority p
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* must be 0 <= p < NUM_PRIO.
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*/
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const NUM_PRIO = 5;
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export class CryptoApi {
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private nextRpcId: number = 1;
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private workers: WorkerState[];
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private workQueues: WorkItem[][];
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/**
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* Number of busy workers.
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*/
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private numBusy: number = 0;
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/**
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* Start a worker (if not started) and set as busy.
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*/
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wake<T>(ws: WorkerState, work: WorkItem): void {
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if (ws.currentWorkItem != null) {
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throw Error("assertion failed");
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}
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ws.currentWorkItem = work;
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this.numBusy++;
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if (!ws.w) {
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let w = new Worker("/lib/wallet/cryptoWorker.js");
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w.onmessage = (m: MessageEvent) => this.handleWorkerMessage(ws, m);
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w.onerror = (e: ErrorEvent) => this.handleWorkerError(ws, e);
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ws.w = w;
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}
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let msg: any = {
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operation: work.operation, args: work.args,
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id: work.rpcId
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};
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this.resetWorkerTimeout(ws);
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ws.w!.postMessage(msg);
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}
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resetWorkerTimeout(ws: WorkerState) {
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if (ws.terminationTimerHandle != null) {
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clearTimeout(ws.terminationTimerHandle);
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}
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let destroy = () => {
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// terminate worker if it's idle
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if (ws.w && ws.currentWorkItem == null) {
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ws.w!.terminate();
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ws.w = null;
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}
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};
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ws.terminationTimerHandle = setTimeout(destroy, 20 * 1000);
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}
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handleWorkerError(ws: WorkerState, e: ErrorEvent) {
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if (ws.currentWorkItem) {
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console.error(`error in worker during ${ws.currentWorkItem!.operation}`, e);
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} else {
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console.error("error in worker", e);
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}
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console.error(e.message);
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try {
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ws.w!.terminate();
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ws.w = null;
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} catch (e) {
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console.error(e);
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}
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if (ws.currentWorkItem != null) {
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ws.currentWorkItem.reject(e);
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ws.currentWorkItem = null;
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this.numBusy--;
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}
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this.findWork(ws);
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}
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findWork(ws: WorkerState) {
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// try to find more work for this worker
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for (let i = 0; i < NUM_PRIO; i++) {
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let q = this.workQueues[NUM_PRIO - i - 1];
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if (q.length != 0) {
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let work: WorkItem = q.shift()!;
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this.wake(ws, work);
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return;
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}
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}
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}
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handleWorkerMessage(ws: WorkerState, msg: MessageEvent) {
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let id = msg.data.id;
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if (typeof id !== "number") {
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console.error("rpc id must be number");
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return;
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}
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let currentWorkItem = ws.currentWorkItem;
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ws.currentWorkItem = null;
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this.numBusy--;
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this.findWork(ws);
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if (!currentWorkItem) {
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console.error("unsolicited response from worker");
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return;
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}
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if (id != currentWorkItem.rpcId) {
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console.error(`RPC with id ${id} has no registry entry`);
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return;
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}
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currentWorkItem.resolve(msg.data.result);
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}
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constructor() {
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this.workers = new Array<WorkerState>((navigator as any)["hardwareConcurrency"] || 2);
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for (let i = 0; i < this.workers.length; i++) {
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this.workers[i] = {
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w: null,
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terminationTimerHandle: null,
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currentWorkItem: null,
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};
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}
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this.workQueues = [];
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for (let i = 0; i < NUM_PRIO; i++) {
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this.workQueues.push([]);
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}
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}
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private doRpc<T>(operation: string, priority: number,
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...args: any[]): Promise<T> {
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return new Promise((resolve, reject) => {
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let rpcId = this.nextRpcId++;
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let workItem: WorkItem = {operation, args, resolve, reject, rpcId};
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if (this.numBusy == this.workers.length) {
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let q = this.workQueues[priority];
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if (!q) {
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throw Error("assertion failed");
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}
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this.workQueues[priority].push(workItem);
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return;
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}
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for (let i = 0; i < this.workers.length; i++) {
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let ws = this.workers[i];
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if (ws.currentWorkItem != null) {
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continue;
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}
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this.wake<T>(ws, workItem);
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return;
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}
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throw Error("assertion failed");
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});
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}
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createPreCoin(denom: Denomination, reserve: ReserveRecord): Promise<PreCoin> {
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return this.doRpc("createPreCoin", 1, denom, reserve);
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}
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hashString(str: string): Promise<string> {
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return this.doRpc("hashString", 1, str);
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}
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hashRsaPub(rsaPub: string): Promise<string> {
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return this.doRpc("hashRsaPub", 2, rsaPub);
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}
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isValidDenom(denom: Denomination,
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masterPub: string): Promise<boolean> {
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return this.doRpc("isValidDenom", 2, denom, masterPub);
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}
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signDeposit(offer: Offer,
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cds: CoinWithDenom[]): Promise<PayCoinInfo> {
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return this.doRpc("signDeposit", 3, offer, cds);
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}
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createEddsaKeypair(): Promise<{priv: string, pub: string}> {
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return this.doRpc("createEddsaKeypair", 1);
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}
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rsaUnblind(sig: string, bk: string, pk: string): Promise<string> {
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return this.doRpc("rsaUnblind", 4, sig, bk, pk);
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}
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createWithdrawSession(kappa: number, meltCoin: Coin,
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newCoinDenoms: Denomination[],
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meltAmount: AmountJson,
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meltFee: AmountJson): Promise<RefreshSession> {
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return this.doRpc("createWithdrawSession",
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4,
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kappa,
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meltCoin,
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newCoinDenoms,
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meltAmount,
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meltFee);
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}
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} |