mirror of
https://github.com/logos-messaging/logos-messaging-js.git
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331 lines
10 KiB
TypeScript
331 lines
10 KiB
TypeScript
import { Noise } from "@chainsafe/libp2p-noise";
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import type { Stream } from "@libp2p/interface-connection";
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import type { PeerId } from "@libp2p/interface-peer-id";
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import { Mplex } from "@libp2p/mplex";
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import { peerIdFromString } from "@libp2p/peer-id";
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import { WebSockets } from "@libp2p/websockets";
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import { all as filterAll } from "@libp2p/websockets/filters";
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import { Multiaddr, multiaddr } from "@multiformats/multiaddr";
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import debug from "debug";
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import { createLibp2p, Libp2p, Libp2pOptions } from "libp2p";
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import { Bootstrap, BootstrapOptions } from "./discovery";
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import { FilterCodec, WakuFilter } from "./waku_filter";
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import { LightPushCodec, WakuLightPush } from "./waku_light_push";
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import { DecryptionMethod, WakuMessage } from "./waku_message";
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import { WakuRelay } from "./waku_relay";
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import { RelayCodecs, RelayPingContentTopic } from "./waku_relay/constants";
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import { StoreCodecs, WakuStore } from "./waku_store";
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export const DefaultPingKeepAliveValueSecs = 0;
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export const DefaultRelayKeepAliveValueSecs = 5 * 60;
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const log = debug("waku:waku");
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export enum Protocols {
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Relay = "relay",
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Store = "store",
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LightPush = "lightpush",
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Filter = "filter",
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}
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export interface CreateOptions {
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/**
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* The PubSub Topic to use. Defaults to {@link DefaultPubSubTopic}.
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*
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* One and only one pubsub topic is used by Waku. This is used by:
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* - WakuRelay to receive, route and send messages,
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* - WakuLightPush to send messages,
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* - WakuStore to retrieve messages.
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*
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* The usage of the default pubsub topic is recommended.
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* See [Waku v2 Topic Usage Recommendations](https://rfc.vac.dev/spec/23/) for details.
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*
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* @default {@link DefaultPubSubTopic}
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*/
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pubSubTopic?: string;
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/**
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* Set keep alive frequency in seconds: Waku will send a `/ipfs/ping/1.0.0`
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* request to each peer after the set number of seconds. Set to 0 to disable.
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*
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* @default {@link DefaultPingKeepAliveValueSecs}
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*/
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pingKeepAlive?: number;
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/**
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* Set keep alive frequency in seconds: Waku will send a ping message over
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* relay to each peer after the set number of seconds. Set to 0 to disable.
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*
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* @default {@link DefaultRelayKeepAliveValueSecs}
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*/
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relayKeepAlive?: number;
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/**
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* You can pass options to the `Libp2p` instance used by {@link Waku} using the {@link CreateOptions.libp2p} property.
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* This property is the same type than the one passed to [`Libp2p.create`](https://github.com/libp2p/js-libp2p/blob/master/doc/API.md#create)
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* apart that we made the `modules` property optional and partial,
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* allowing its omission and letting Waku set good defaults.
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* Notes that some values are overridden by {@link Waku} to ensure it implements the Waku protocol.
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*/
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libp2p?: Partial<Libp2pOptions>;
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/**
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* Byte array used as key for the noise protocol used for connection encryption
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* by [`Libp2p.create`](https://github.com/libp2p/js-libp2p/blob/master/doc/API.md#create)
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* This is only used for test purposes to not run out of entropy during CI runs.
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*/
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staticNoiseKey?: Uint8Array;
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/**
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* Use libp2p-bootstrap to discover and connect to new nodes.
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*
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* See [[BootstrapOptions]] for available parameters.
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*
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* Note: It overrides any other peerDiscovery modules that may have been set via
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* {@link CreateOptions.libp2p}.
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*/
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bootstrap?: BootstrapOptions;
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decryptionKeys?: Array<Uint8Array | string>;
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}
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export async function createWaku(options?: CreateOptions): Promise<Waku> {
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const peerDiscovery = [];
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if (options?.bootstrap) {
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peerDiscovery.push(new Bootstrap(options?.bootstrap));
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}
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// TODO: Use options
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const libp2pOpts = {
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transports: [new WebSockets({ filter: filterAll })],
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streamMuxers: [new Mplex()],
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pubsub: new WakuRelay(),
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connectionEncryption: [new Noise()],
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};
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// eslint-disable-next-line @typescript-eslint/ban-ts-comment
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// @ts-ignore: modules property is correctly set thanks to voodoo
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const libp2p = await createLibp2p(libp2pOpts);
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const wakuStore = new WakuStore(libp2p);
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const wakuLightPush = new WakuLightPush(libp2p);
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const wakuFilter = new WakuFilter(libp2p);
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await libp2p.start();
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return new Waku({}, libp2p, wakuStore, wakuLightPush, wakuFilter);
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}
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export class Waku {
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public libp2p: Libp2p;
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public relay: WakuRelay;
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public store: WakuStore;
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public filter: WakuFilter;
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public lightPush: WakuLightPush;
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private pingKeepAliveTimers: {
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[peer: string]: ReturnType<typeof setInterval>;
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};
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private relayKeepAliveTimers: {
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[peer: string]: ReturnType<typeof setInterval>;
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};
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constructor(
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options: CreateOptions,
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libp2p: Libp2p,
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store: WakuStore,
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lightPush: WakuLightPush,
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filter: WakuFilter
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) {
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this.libp2p = libp2p;
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this.relay = libp2p.pubsub as unknown as WakuRelay;
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this.store = store;
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this.filter = filter;
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this.lightPush = lightPush;
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this.pingKeepAliveTimers = {};
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this.relayKeepAliveTimers = {};
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const pingKeepAlive =
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options.pingKeepAlive || DefaultPingKeepAliveValueSecs;
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const relayKeepAlive =
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options.relayKeepAlive || DefaultRelayKeepAliveValueSecs;
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libp2p.connectionManager.addEventListener("peer:connect", (evt) => {
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this.startKeepAlive(evt.detail.remotePeer, pingKeepAlive, relayKeepAlive);
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});
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/**
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* NOTE: Event is not being emitted on closing nor losing a connection.
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* @see https://github.com/libp2p/js-libp2p/issues/939
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* @see https://github.com/status-im/js-waku/issues/252
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*
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* >This event will be triggered anytime we are disconnected from another peer,
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* >regardless of the circumstances of that disconnection.
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* >If we happen to have multiple connections to a peer,
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* >this event will **only** be triggered when the last connection is closed.
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* @see https://github.com/libp2p/js-libp2p/blob/bad9e8c0ff58d60a78314077720c82ae331cc55b/doc/API.md?plain=1#L2100
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*/
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libp2p.connectionManager.addEventListener("peer:disconnect", (evt) => {
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this.stopKeepAlive(evt.detail.remotePeer);
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});
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options?.decryptionKeys?.forEach((key) => {
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this.addDecryptionKey(key);
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});
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}
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/**
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* Dials to the provided peer.
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*
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* @param peer The peer to dial
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* @param protocols Waku protocols we expect from the peer; Default to Relay
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*/
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async dial(
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peer: PeerId | Multiaddr,
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protocols?: Protocols[]
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): Promise<Stream> {
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const _protocols = protocols ?? [Protocols.Relay];
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const codecs: string[] = [];
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if (_protocols.includes(Protocols.Relay)) {
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RelayCodecs.forEach((codec) => codecs.push(codec));
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}
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if (_protocols.includes(Protocols.Store)) {
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for (const codec of Object.values(StoreCodecs)) {
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codecs.push(codec);
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}
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}
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if (_protocols.includes(Protocols.LightPush)) {
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codecs.push(LightPushCodec);
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}
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if (_protocols.includes(Protocols.Filter)) {
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codecs.push(FilterCodec);
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}
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return this.libp2p.dialProtocol(peer, codecs);
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}
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/**
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* Add peer to address book, it will be auto-dialed in the background.
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*/
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addPeerToAddressBook(
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peerId: PeerId | string,
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multiaddrs: Multiaddr[] | string[]
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): void {
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let peer;
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if (typeof peerId === "string") {
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peer = peerIdFromString(peerId);
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} else {
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peer = peerId;
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}
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const addresses = multiaddrs.map((addr: Multiaddr | string) => {
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if (typeof addr === "string") {
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return multiaddr(addr);
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} else {
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return addr;
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}
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});
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this.libp2p.peerStore.addressBook.set(peer, addresses);
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}
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async start(): Promise<void> {
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await this.libp2p.start();
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}
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async stop(): Promise<void> {
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this.stopAllKeepAlives();
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await this.libp2p.stop();
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}
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/**
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* Register a decryption key to attempt decryption of messages received via
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* [[WakuRelay]] and [[WakuStore]]. This can either be a private key for
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* asymmetric encryption or a symmetric key.
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*
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* Strings must be in hex format.
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*/
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addDecryptionKey(
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key: Uint8Array | string,
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options?: { method?: DecryptionMethod; contentTopics?: string[] }
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): void {
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this.relay.addDecryptionKey(key, options);
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this.store.addDecryptionKey(key, options);
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this.filter.addDecryptionKey(key, options);
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}
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/**
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* Delete a decryption key that was used to attempt decryption of messages
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* received via [[WakuRelay]] or [[WakuStore]].
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*
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* Strings must be in hex format.
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*/
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deleteDecryptionKey(key: Uint8Array | string): void {
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this.relay.deleteDecryptionKey(key);
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this.store.deleteDecryptionKey(key);
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this.filter.deleteDecryptionKey(key);
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}
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/**
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* Return the local multiaddr with peer id on which libp2p is listening.
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*
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* @throws if libp2p is not listening on localhost.
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*/
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getLocalMultiaddrWithID(): string {
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const localMultiaddr = this.libp2p
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.getMultiaddrs()
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.find((addr) => addr.toString().match(/127\.0\.0\.1/));
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if (!localMultiaddr || localMultiaddr.toString() === "") {
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throw "Not listening on localhost";
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}
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return localMultiaddr + "/p2p/" + this.libp2p.peerId.toString();
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}
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private startKeepAlive(
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peerId: PeerId,
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pingPeriodSecs: number,
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relayPeriodSecs: number
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): void {
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// Just in case a timer already exist for this peer
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this.stopKeepAlive(peerId);
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const peerIdStr = peerId.toString();
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if (pingPeriodSecs !== 0) {
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this.pingKeepAliveTimers[peerIdStr] = setInterval(() => {
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this.libp2p.ping(peerId).catch((e) => {
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log(`Ping failed (${peerIdStr})`, e);
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});
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}, pingPeriodSecs * 1000);
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}
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if (relayPeriodSecs !== 0) {
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this.relayKeepAliveTimers[peerIdStr] = setInterval(() => {
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WakuMessage.fromBytes(new Uint8Array(), RelayPingContentTopic).then(
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(wakuMsg) => this.relay.send(wakuMsg)
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);
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}, relayPeriodSecs * 1000);
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}
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}
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private stopKeepAlive(peerId: PeerId): void {
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const peerIdStr = peerId.toString();
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if (this.pingKeepAliveTimers[peerIdStr]) {
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clearInterval(this.pingKeepAliveTimers[peerIdStr]);
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delete this.pingKeepAliveTimers[peerIdStr];
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}
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if (this.relayKeepAliveTimers[peerIdStr]) {
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clearInterval(this.relayKeepAliveTimers[peerIdStr]);
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delete this.relayKeepAliveTimers[peerIdStr];
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}
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}
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private stopAllKeepAlives(): void {
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for (const timer of [
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...Object.values(this.pingKeepAliveTimers),
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...Object.values(this.relayKeepAliveTimers),
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]) {
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clearInterval(timer);
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}
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this.pingKeepAliveTimers = {};
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this.relayKeepAliveTimers = {};
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}
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}
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