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denoland-deno/ext/web/13_message_port.js
Kenta Moriuchi b2cd254c35
fix: strict type check for cross realms (#21669)
Deno v1.39 introduces `vm.runInNewContext`. This may cause problems when
using `Object.prototype.isPrototypeOf` to check built-in types.

```js
import vm from "node:vm";

const err = new Error();
const crossErr = vm.runInNewContext(`new Error()`);

console.assert( !(crossErr instanceof Error) );
console.assert( Object.getPrototypeOf(err) !== Object.getPrototypeOf(crossErr) );
```

This PR changes to check using internal slots solves them.

---

current: 

```
> import vm from "node:vm";
undefined
> vm.runInNewContext(`new Error("message")`)
Error {}
> vm.runInNewContext(`new Date("2018-12-10T02:26:59.002Z")`)
Date {}
```

this PR:

```
> import vm from "node:vm";
undefined
> vm.runInNewContext(`new Error("message")`)
Error: message
    at <anonymous>:1:1
> vm.runInNewContext(`new Date("2018-12-10T02:26:59.002Z")`)
2018-12-10T02:26:59.002Z
```

---------

Co-authored-by: Bartek Iwańczuk <biwanczuk@gmail.com>
2024-01-04 09:42:38 +05:30

384 lines
10 KiB
JavaScript

// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
// @ts-check
/// <reference path="../../core/lib.deno_core.d.ts" />
/// <reference path="../webidl/internal.d.ts" />
/// <reference path="./internal.d.ts" />
/// <reference path="./lib.deno_web.d.ts" />
import { core, primordials } from "ext:core/mod.js";
const { InterruptedPrototype, ops } = core;
import * as webidl from "ext:deno_webidl/00_webidl.js";
import { createFilteredInspectProxy } from "ext:deno_console/01_console.js";
import {
defineEventHandler,
EventTarget,
MessageEvent,
setEventTargetData,
setIsTrusted,
} from "ext:deno_web/02_event.js";
import { isDetachedBuffer } from "ext:deno_web/06_streams.js";
import { DOMException } from "ext:deno_web/01_dom_exception.js";
const {
ArrayBufferPrototypeGetByteLength,
ArrayPrototypeFilter,
ArrayPrototypeIncludes,
ArrayPrototypePush,
ObjectPrototypeIsPrototypeOf,
Symbol,
SymbolFor,
SymbolIterator,
TypeError,
} = primordials;
const {
isArrayBuffer,
} = core;
const {
op_message_port_recv_message,
} = core.ensureFastOps();
class MessageChannel {
/** @type {MessagePort} */
#port1;
/** @type {MessagePort} */
#port2;
constructor() {
this[webidl.brand] = webidl.brand;
const { 0: port1Id, 1: port2Id } = opCreateEntangledMessagePort();
const port1 = createMessagePort(port1Id);
const port2 = createMessagePort(port2Id);
this.#port1 = port1;
this.#port2 = port2;
}
get port1() {
webidl.assertBranded(this, MessageChannelPrototype);
return this.#port1;
}
get port2() {
webidl.assertBranded(this, MessageChannelPrototype);
return this.#port2;
}
[SymbolFor("Deno.privateCustomInspect")](inspect, inspectOptions) {
return inspect(
createFilteredInspectProxy({
object: this,
evaluate: ObjectPrototypeIsPrototypeOf(MessageChannelPrototype, this),
keys: [
"port1",
"port2",
],
}),
inspectOptions,
);
}
}
webidl.configureInterface(MessageChannel);
const MessageChannelPrototype = MessageChannel.prototype;
const _id = Symbol("id");
const _enabled = Symbol("enabled");
/**
* @param {number} id
* @returns {MessagePort}
*/
function createMessagePort(id) {
const port = webidl.createBranded(MessagePort);
port[core.hostObjectBrand] = core.hostObjectBrand;
setEventTargetData(port);
port[_id] = id;
return port;
}
class MessagePort extends EventTarget {
/** @type {number | null} */
[_id] = null;
/** @type {boolean} */
[_enabled] = false;
constructor() {
super();
webidl.illegalConstructor();
}
/**
* @param {any} message
* @param {object[] | StructuredSerializeOptions} transferOrOptions
*/
postMessage(message, transferOrOptions = {}) {
webidl.assertBranded(this, MessagePortPrototype);
const prefix = "Failed to execute 'postMessage' on 'MessagePort'";
webidl.requiredArguments(arguments.length, 1, prefix);
message = webidl.converters.any(message);
let options;
if (
webidl.type(transferOrOptions) === "Object" &&
transferOrOptions !== undefined &&
transferOrOptions[SymbolIterator] !== undefined
) {
const transfer = webidl.converters["sequence<object>"](
transferOrOptions,
prefix,
"Argument 2",
);
options = { transfer };
} else {
options = webidl.converters.StructuredSerializeOptions(
transferOrOptions,
prefix,
"Argument 2",
);
}
const { transfer } = options;
if (ArrayPrototypeIncludes(transfer, this)) {
throw new DOMException("Can not transfer self", "DataCloneError");
}
const data = serializeJsMessageData(message, transfer);
if (this[_id] === null) return;
ops.op_message_port_post_message(this[_id], data);
}
start() {
webidl.assertBranded(this, MessagePortPrototype);
if (this[_enabled]) return;
(async () => {
this[_enabled] = true;
while (true) {
if (this[_id] === null) break;
let data;
try {
data = await op_message_port_recv_message(
this[_id],
);
} catch (err) {
if (ObjectPrototypeIsPrototypeOf(InterruptedPrototype, err)) break;
throw err;
}
if (data === null) break;
let message, transferables;
try {
const v = deserializeJsMessageData(data);
message = v[0];
transferables = v[1];
} catch (err) {
const event = new MessageEvent("messageerror", { data: err });
setIsTrusted(event, true);
this.dispatchEvent(event);
return;
}
const event = new MessageEvent("message", {
data: message,
ports: ArrayPrototypeFilter(
transferables,
(t) => ObjectPrototypeIsPrototypeOf(MessagePortPrototype, t),
),
});
setIsTrusted(event, true);
this.dispatchEvent(event);
}
this[_enabled] = false;
})();
}
close() {
webidl.assertBranded(this, MessagePortPrototype);
if (this[_id] !== null) {
core.close(this[_id]);
this[_id] = null;
}
}
[SymbolFor("Deno.privateCustomInspect")](inspect, inspectOptions) {
return inspect(
createFilteredInspectProxy({
object: this,
evaluate: ObjectPrototypeIsPrototypeOf(MessagePortPrototype, this),
keys: [
"onmessage",
"onmessageerror",
],
}),
inspectOptions,
);
}
}
defineEventHandler(MessagePort.prototype, "message", function (self) {
self.start();
});
defineEventHandler(MessagePort.prototype, "messageerror");
webidl.configureInterface(MessagePort);
const MessagePortPrototype = MessagePort.prototype;
/**
* @returns {[number, number]}
*/
function opCreateEntangledMessagePort() {
return ops.op_message_port_create_entangled();
}
/**
* @param {messagePort.MessageData} messageData
* @returns {[any, object[]]}
*/
function deserializeJsMessageData(messageData) {
/** @type {object[]} */
const transferables = [];
const arrayBufferIdsInTransferables = [];
const transferredArrayBuffers = [];
let options;
if (messageData.transferables.length > 0) {
const hostObjects = [];
for (let i = 0; i < messageData.transferables.length; ++i) {
const transferable = messageData.transferables[i];
switch (transferable.kind) {
case "messagePort": {
const port = createMessagePort(transferable.data);
ArrayPrototypePush(transferables, port);
ArrayPrototypePush(hostObjects, port);
break;
}
case "arrayBuffer": {
ArrayPrototypePush(transferredArrayBuffers, transferable.data);
const index = ArrayPrototypePush(transferables, null);
ArrayPrototypePush(arrayBufferIdsInTransferables, index);
break;
}
default:
throw new TypeError("Unreachable");
}
}
options = {
hostObjects,
transferredArrayBuffers,
};
}
const data = core.deserialize(messageData.data, options);
for (let i = 0; i < arrayBufferIdsInTransferables.length; ++i) {
const id = arrayBufferIdsInTransferables[i];
transferables[id] = transferredArrayBuffers[i];
}
return [data, transferables];
}
/**
* @param {any} data
* @param {object[]} transferables
* @returns {messagePort.MessageData}
*/
function serializeJsMessageData(data, transferables) {
let options;
const transferredArrayBuffers = [];
if (transferables.length > 0) {
const hostObjects = [];
for (let i = 0, j = 0; i < transferables.length; i++) {
const t = transferables[i];
if (isArrayBuffer(t)) {
if (
ArrayBufferPrototypeGetByteLength(t) === 0 &&
isDetachedBuffer(t)
) {
throw new DOMException(
`ArrayBuffer at index ${j} is already detached`,
"DataCloneError",
);
}
j++;
ArrayPrototypePush(transferredArrayBuffers, t);
} else if (ObjectPrototypeIsPrototypeOf(MessagePortPrototype, t)) {
ArrayPrototypePush(hostObjects, t);
}
}
options = {
hostObjects,
transferredArrayBuffers,
};
}
const serializedData = core.serialize(data, options, (err) => {
throw new DOMException(err, "DataCloneError");
});
/** @type {messagePort.Transferable[]} */
const serializedTransferables = [];
let arrayBufferI = 0;
for (let i = 0; i < transferables.length; ++i) {
const transferable = transferables[i];
if (ObjectPrototypeIsPrototypeOf(MessagePortPrototype, transferable)) {
webidl.assertBranded(transferable, MessagePortPrototype);
const id = transferable[_id];
if (id === null) {
throw new DOMException(
"Can not transfer disentangled message port",
"DataCloneError",
);
}
transferable[_id] = null;
ArrayPrototypePush(serializedTransferables, {
kind: "messagePort",
data: id,
});
} else if (isArrayBuffer(transferable)) {
ArrayPrototypePush(serializedTransferables, {
kind: "arrayBuffer",
data: transferredArrayBuffers[arrayBufferI],
});
arrayBufferI++;
} else {
throw new DOMException("Value not transferable", "DataCloneError");
}
}
return {
data: serializedData,
transferables: serializedTransferables,
};
}
webidl.converters.StructuredSerializeOptions = webidl
.createDictionaryConverter(
"StructuredSerializeOptions",
[
{
key: "transfer",
converter: webidl.converters["sequence<object>"],
get defaultValue() {
return [];
},
},
],
);
function structuredClone(value, options) {
const prefix = "Failed to execute 'structuredClone'";
webidl.requiredArguments(arguments.length, 1, prefix);
options = webidl.converters.StructuredSerializeOptions(
options,
prefix,
"Argument 2",
);
const messageData = serializeJsMessageData(value, options.transfer);
return deserializeJsMessageData(messageData)[0];
}
export {
deserializeJsMessageData,
MessageChannel,
MessagePort,
MessagePortPrototype,
serializeJsMessageData,
structuredClone,
};