js-libp2p-noise/test/noise.test.ts

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import { expect, assert } from "chai";
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import DuplexPair from 'it-pair/duplex';
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import { Noise } from "../src";
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import {createPeerIdsFromFixtures} from "./fixtures/peer";
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import Wrap from "it-pb-rpc";
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import { random } from "bcrypto";
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import sinon from "sinon";
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import {XXHandshake} from "../src/handshake-xx";
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import {
createHandshakePayload,
generateKeypair,
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getHandshakePayload, getPayload,
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signPayload
} from "../src/utils";
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import {decode0, decode1, encode1} from "../src/encoder";
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import {XX} from "../src/handshakes/xx";
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import {Buffer} from "buffer";
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import {getKeyPairFromPeerId} from "./utils";
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import {KeyCache} from "../src/keycache";
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import {XXFallbackHandshake} from "../src/handshake-xx-fallback";
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describe("Noise", () => {
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let remotePeer, localPeer;
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let sandbox = sinon.createSandbox();
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before(async () => {
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[localPeer, remotePeer] = await createPeerIdsFromFixtures(2);
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});
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afterEach(function() {
sandbox.restore();
});
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it("should communicate through encrypted streams without noise pipes", async() => {
try {
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const noiseInit = new Noise(undefined, undefined, false);
const noiseResp = new Noise(undefined, undefined, false);
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const [inboundConnection, outboundConnection] = DuplexPair();
const [outbound, inbound] = await Promise.all([
noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
noiseResp.secureInbound(remotePeer, inboundConnection, localPeer),
]);
const wrappedInbound = Wrap(inbound.conn);
const wrappedOutbound = Wrap(outbound.conn);
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wrappedOutbound.writeLP(Buffer.from("test"));
const response = await wrappedInbound.readLP();
expect(response.toString()).equal("test");
} catch (e) {
assert(false, e.message);
}
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});
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it("should test that secureOutbound is spec compliant", async() => {
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const noiseInit = new Noise(undefined, undefined, false);
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const [inboundConnection, outboundConnection] = DuplexPair();
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const [outbound, { wrapped, handshake }] = await Promise.all([
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noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
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(async () => {
const wrapped = Wrap(inboundConnection);
const prologue = Buffer.from('/noise');
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const staticKeys = generateKeypair();
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const xx = new XX();
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const payload = await getPayload(remotePeer, staticKeys.publicKey);
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const handshake = new XXHandshake(false, payload, prologue, staticKeys, wrapped, localPeer, xx);
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let receivedMessageBuffer = decode0((await wrapped.readLP()).slice());
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// The first handshake message contains the initiator's ephemeral public key
expect(receivedMessageBuffer.ne.length).equal(32);
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xx.recvMessage(handshake.session, receivedMessageBuffer);
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// Stage 1
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const { publicKey: libp2pPubKey } = getKeyPairFromPeerId(remotePeer);
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const signedPayload = await signPayload(remotePeer, getHandshakePayload(staticKeys.publicKey));
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const handshakePayload = await createHandshakePayload(libp2pPubKey, signedPayload);
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const messageBuffer = xx.sendMessage(handshake.session, handshakePayload);
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wrapped.writeLP(encode1(messageBuffer));
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// Stage 2 - finish handshake
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receivedMessageBuffer = decode1((await wrapped.readLP()).slice());
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xx.recvMessage(handshake.session, receivedMessageBuffer);
return {wrapped, handshake};
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})(),
]);
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try {
const wrappedOutbound = Wrap(outbound.conn);
wrappedOutbound.write(Buffer.from("test"));
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// Check that noise message is prefixed with 16-bit big-endian unsigned integer
const receivedEncryptedPayload = (await wrapped.read()).slice();
const dataLength = receivedEncryptedPayload.readInt16BE(0);
const data = receivedEncryptedPayload.slice(2, dataLength + 2);
const decrypted = handshake.decrypt(data, handshake.session);
// Decrypted data should match
assert(decrypted.equals(Buffer.from("test")));
} catch (e) {
assert(false, e.message);
}
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})
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it("should test large payloads", async() => {
try {
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const noiseInit = new Noise(undefined, undefined, false);
const noiseResp = new Noise(undefined, undefined, false);
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const [inboundConnection, outboundConnection] = DuplexPair();
const [outbound, inbound] = await Promise.all([
noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
noiseResp.secureInbound(remotePeer, inboundConnection, localPeer),
]);
const wrappedInbound = Wrap(inbound.conn);
const wrappedOutbound = Wrap(outbound.conn);
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const largePlaintext = random.randomBytes(100000);
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wrappedOutbound.writeLP(largePlaintext);
const response = await wrappedInbound.readLP();
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expect(response.length).equals(largePlaintext.length);
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} catch (e) {
console.error(e);
assert(false, e.message);
}
});
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it("should communicate through encrypted streams with noise pipes", async() => {
try {
const staticKeysInitiator = generateKeypair();
const noiseInit = new Noise(staticKeysInitiator.privateKey);
const staticKeysResponder = generateKeypair();
const noiseResp = new Noise(staticKeysResponder.privateKey);
// Prepare key cache for noise pipes
await KeyCache.store(localPeer, staticKeysInitiator.publicKey);
await KeyCache.store(remotePeer, staticKeysResponder.publicKey);
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const xxSpy = sandbox.spy(noiseInit, "performXXHandshake");
const xxFallbackSpy = sandbox.spy(noiseInit, "performXXFallbackHandshake");
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const [inboundConnection, outboundConnection] = DuplexPair();
const [outbound, inbound] = await Promise.all([
noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
noiseResp.secureInbound(remotePeer, inboundConnection, localPeer),
]);
const wrappedInbound = Wrap(inbound.conn);
const wrappedOutbound = Wrap(outbound.conn);
wrappedOutbound.writeLP(Buffer.from("test v2"));
const response = await wrappedInbound.readLP();
expect(response.toString()).equal("test v2");
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assert(xxSpy.notCalled);
assert(xxFallbackSpy.notCalled);
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} catch (e) {
console.error(e);
assert(false, e.message);
}
});
it("should switch to XX fallback because of invalid remote static key", async() => {
try {
const staticKeysInitiator = generateKeypair();
const noiseInit = new Noise(staticKeysInitiator.privateKey);
const noiseResp = new Noise();
const xxSpy = sandbox.spy(noiseInit, "performXXFallbackHandshake");
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// Prepare key cache for noise pipes
await KeyCache.store(localPeer, staticKeysInitiator.publicKey);
await KeyCache.store(remotePeer, generateKeypair().publicKey);
const [inboundConnection, outboundConnection] = DuplexPair();
const [outbound, inbound] = await Promise.all([
noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
noiseResp.secureInbound(remotePeer, inboundConnection, localPeer),
]);
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const wrappedInbound = Wrap(inbound.conn);
const wrappedOutbound = Wrap(outbound.conn);
wrappedOutbound.writeLP(Buffer.from("test fallback"));
const response = await wrappedInbound.readLP();
expect(response.toString()).equal("test fallback");
assert(xxSpy.calledOnce, "XX Fallback method was never called.");
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} catch (e) {
console.error(e);
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assert(false, e.message);
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}
});
it("XX fallback with XX as responder has noise pipes disabled", async() => {
try {
const staticKeysInitiator = generateKeypair();
const noiseInit = new Noise(staticKeysInitiator.privateKey);
const staticKeysResponder = generateKeypair();
console.log("staticKeysInitiator: ", staticKeysInitiator)
console.log("staticKeysResponder: ", staticKeysResponder)
const noiseResp = new Noise(staticKeysResponder.privateKey, undefined, false);
const xxSpy = sandbox.spy(noiseInit, "performXXFallbackHandshake");
// Prepare key cache for noise pipes
await KeyCache.store(localPeer, staticKeysInitiator.publicKey);
await KeyCache.store(remotePeer, staticKeysResponder.publicKey);
const [inboundConnection, outboundConnection] = DuplexPair();
const [outbound, inbound] = await Promise.all([
noiseInit.secureOutbound(localPeer, outboundConnection, remotePeer),
noiseResp.secureInbound(remotePeer, inboundConnection, localPeer),
]);
const wrappedInbound = Wrap(inbound.conn);
const wrappedOutbound = Wrap(outbound.conn);
wrappedOutbound.writeLP(Buffer.from("test fallback"));
const response = await wrappedInbound.readLP();
expect(response.toString()).equal("test fallback");
assert(xxSpy.calledOnce, "XX Fallback method was never called.");
} catch (e) {
console.error(e);
assert(false, e.message);
}
});
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});