mirror of
https://github.com/denoland/deno.git
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8f7787f81b
[The WebSocket specification for the `send` function](https://developer.mozilla.org/en-US/docs/Web/API/WebSocket/send) says: > The browser will throw an exception if you call `send()` when the connection is in the `CONNECTING` state. If you call `send()` when the connection is in the `CLOSING` or `CLOSED` states, the browser will silently discard the data. and: > ### Exceptions > > `InvalidStateError` [`DOMException`](https://developer.mozilla.org/en-US/docs/Web/API/DOMException) > > Thrown if [`WebSocket.readyState`](https://developer.mozilla.org/en-US/docs/Web/API/WebSocket/readyState) is `CONNECTING`. This pull request fixes the current behavior to match the specification. Also, I believe it fixes #17586.
695 lines
18 KiB
JavaScript
695 lines
18 KiB
JavaScript
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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/// <reference path="../../core/internal.d.ts" />
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import { core, primordials } from "ext:core/mod.js";
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const {
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isAnyArrayBuffer,
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isArrayBuffer,
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} = core;
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import {
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op_ws_check_permission_and_cancel_handle,
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op_ws_close,
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op_ws_create,
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op_ws_get_buffer,
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op_ws_get_buffer_as_string,
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op_ws_get_buffered_amount,
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op_ws_get_error,
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op_ws_next_event,
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op_ws_send_binary,
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op_ws_send_binary_ab,
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op_ws_send_ping,
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op_ws_send_text,
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} from "ext:core/ops";
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const {
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ArrayBufferIsView,
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ArrayPrototypeJoin,
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ArrayPrototypeMap,
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ArrayPrototypePush,
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ArrayPrototypeShift,
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ArrayPrototypeSome,
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Error,
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ErrorPrototypeToString,
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ObjectDefineProperties,
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ObjectPrototypeIsPrototypeOf,
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PromisePrototypeCatch,
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PromisePrototypeThen,
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RegExpPrototypeExec,
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SafeSet,
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SetPrototypeGetSize,
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String,
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StringPrototypeEndsWith,
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StringPrototypeToLowerCase,
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Symbol,
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SymbolFor,
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SymbolIterator,
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TypedArrayPrototypeGetByteLength,
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} = primordials;
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import { URL } from "ext:deno_url/00_url.js";
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import * as webidl from "ext:deno_webidl/00_webidl.js";
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import { createFilteredInspectProxy } from "ext:deno_console/01_console.js";
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import { HTTP_TOKEN_CODE_POINT_RE } from "ext:deno_web/00_infra.js";
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import { DOMException } from "ext:deno_web/01_dom_exception.js";
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import { clearTimeout, setTimeout } from "ext:deno_web/02_timers.js";
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import {
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CloseEvent,
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defineEventHandler,
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dispatch,
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ErrorEvent,
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Event,
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EventTarget,
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MessageEvent,
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setIsTrusted,
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} from "ext:deno_web/02_event.js";
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import { Blob, BlobPrototype } from "ext:deno_web/09_file.js";
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import { getLocationHref } from "ext:deno_web/12_location.js";
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webidl.converters["sequence<DOMString> or DOMString"] = (
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V,
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prefix,
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context,
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opts,
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) => {
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// Union for (sequence<DOMString> or DOMString)
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if (webidl.type(V) === "Object" && V !== null) {
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if (V[SymbolIterator] !== undefined) {
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return webidl.converters["sequence<DOMString>"](V, prefix, context, opts);
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}
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}
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return webidl.converters.DOMString(V, prefix, context, opts);
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};
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webidl.converters["WebSocketSend"] = (V, prefix, context, opts) => {
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// Union for (Blob or ArrayBufferView or ArrayBuffer or USVString)
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if (ObjectPrototypeIsPrototypeOf(BlobPrototype, V)) {
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return webidl.converters["Blob"](V, prefix, context, opts);
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}
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if (typeof V === "object") {
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if (isAnyArrayBuffer(V)) {
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return webidl.converters["ArrayBuffer"](V, prefix, context, opts);
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}
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if (ArrayBufferIsView(V)) {
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return webidl.converters["ArrayBufferView"](V, prefix, context, opts);
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}
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}
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return webidl.converters["USVString"](V, prefix, context, opts);
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};
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/** role */
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const SERVER = 0;
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const CLIENT = 1;
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/** state */
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const CONNECTING = 0;
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const OPEN = 1;
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const CLOSING = 2;
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const CLOSED = 3;
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const _readyState = Symbol("[[readyState]]");
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const _url = Symbol("[[url]]");
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const _rid = Symbol("[[rid]]");
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const _role = Symbol("[[role]]");
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const _extensions = Symbol("[[extensions]]");
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const _protocol = Symbol("[[protocol]]");
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const _binaryType = Symbol("[[binaryType]]");
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const _eventLoop = Symbol("[[eventLoop]]");
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const _sendQueue = Symbol("[[sendQueue]]");
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const _queueSend = Symbol("[[queueSend]]");
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const _server = Symbol("[[server]]");
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const _idleTimeoutDuration = Symbol("[[idleTimeout]]");
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const _idleTimeoutTimeout = Symbol("[[idleTimeoutTimeout]]");
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const _serverHandleIdleTimeout = Symbol("[[serverHandleIdleTimeout]]");
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class WebSocket extends EventTarget {
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constructor(url, protocols = []) {
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super();
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this[webidl.brand] = webidl.brand;
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this[_rid] = undefined;
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this[_role] = undefined;
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this[_readyState] = CONNECTING;
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this[_extensions] = "";
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this[_protocol] = "";
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this[_url] = "";
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this[_binaryType] = "blob";
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this[_idleTimeoutDuration] = 0;
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this[_idleTimeoutTimeout] = undefined;
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this[_sendQueue] = [];
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const prefix = "Failed to construct 'WebSocket'";
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webidl.requiredArguments(arguments.length, 1, prefix);
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url = webidl.converters.USVString(url, prefix, "Argument 1");
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protocols = webidl.converters["sequence<DOMString> or DOMString"](
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protocols,
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prefix,
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"Argument 2",
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);
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let wsURL;
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try {
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wsURL = new URL(url, getLocationHref());
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} catch (e) {
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throw new DOMException(e.message, "SyntaxError");
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}
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if (wsURL.protocol === "http:") {
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wsURL.protocol = "ws:";
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} else if (wsURL.protocol === "https:") {
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wsURL.protocol = "wss:";
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}
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if (wsURL.protocol !== "ws:" && wsURL.protocol !== "wss:") {
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throw new DOMException(
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`Only ws & wss schemes are allowed in a WebSocket URL: received ${wsURL.protocol}`,
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"SyntaxError",
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);
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}
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if (wsURL.hash !== "" || StringPrototypeEndsWith(wsURL.href, "#")) {
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throw new DOMException(
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"Fragments are not allowed in a WebSocket URL",
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"SyntaxError",
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);
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}
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this[_url] = wsURL.href;
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this[_role] = CLIENT;
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op_ws_check_permission_and_cancel_handle(
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"WebSocket.abort()",
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this[_url],
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false,
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);
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if (typeof protocols === "string") {
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protocols = [protocols];
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}
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if (
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protocols.length !==
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SetPrototypeGetSize(
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new SafeSet(
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ArrayPrototypeMap(protocols, (p) => StringPrototypeToLowerCase(p)),
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),
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)
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) {
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throw new DOMException(
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"Cannot supply multiple times the same protocol",
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"SyntaxError",
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);
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}
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if (
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ArrayPrototypeSome(
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protocols,
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(protocol) =>
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RegExpPrototypeExec(HTTP_TOKEN_CODE_POINT_RE, protocol) === null,
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)
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) {
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throw new DOMException(
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"Invalid protocol value",
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"SyntaxError",
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);
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}
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PromisePrototypeThen(
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op_ws_create(
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"new WebSocket()",
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wsURL.href,
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ArrayPrototypeJoin(protocols, ", "),
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),
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(create) => {
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this[_rid] = create.rid;
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this[_extensions] = create.extensions;
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this[_protocol] = create.protocol;
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if (this[_readyState] === CLOSING) {
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PromisePrototypeThen(
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op_ws_close(this[_rid]),
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() => {
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this[_readyState] = CLOSED;
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const errEvent = new ErrorEvent("error");
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this.dispatchEvent(errEvent);
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const event = new CloseEvent("close");
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this.dispatchEvent(event);
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core.tryClose(this[_rid]);
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},
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);
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} else {
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this[_readyState] = OPEN;
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const event = new Event("open");
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this.dispatchEvent(event);
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this[_eventLoop]();
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}
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},
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(err) => {
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this[_readyState] = CLOSED;
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const errorEv = new ErrorEvent(
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"error",
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{ error: err, message: ErrorPrototypeToString(err) },
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);
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this.dispatchEvent(errorEv);
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const closeEv = new CloseEvent("close");
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this.dispatchEvent(closeEv);
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},
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);
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}
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get readyState() {
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webidl.assertBranded(this, WebSocketPrototype);
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return this[_readyState];
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}
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get CONNECTING() {
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webidl.assertBranded(this, WebSocketPrototype);
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return CONNECTING;
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}
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get OPEN() {
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webidl.assertBranded(this, WebSocketPrototype);
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return OPEN;
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}
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get CLOSING() {
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webidl.assertBranded(this, WebSocketPrototype);
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return CLOSING;
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}
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get CLOSED() {
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webidl.assertBranded(this, WebSocketPrototype);
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return CLOSED;
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}
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get extensions() {
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webidl.assertBranded(this, WebSocketPrototype);
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return this[_extensions];
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}
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get protocol() {
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webidl.assertBranded(this, WebSocketPrototype);
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return this[_protocol];
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}
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get url() {
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webidl.assertBranded(this, WebSocketPrototype);
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return this[_url];
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}
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get binaryType() {
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webidl.assertBranded(this, WebSocketPrototype);
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return this[_binaryType];
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}
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set binaryType(value) {
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webidl.assertBranded(this, WebSocketPrototype);
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value = webidl.converters.DOMString(
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value,
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"Failed to set 'binaryType' on 'WebSocket'",
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);
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if (value === "blob" || value === "arraybuffer") {
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this[_binaryType] = value;
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}
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}
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get bufferedAmount() {
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webidl.assertBranded(this, WebSocketPrototype);
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if (this[_readyState] === OPEN) {
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return op_ws_get_buffered_amount(this[_rid]);
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} else {
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return 0;
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}
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}
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send(data) {
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webidl.assertBranded(this, WebSocketPrototype);
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const prefix = "Failed to execute 'send' on 'WebSocket'";
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webidl.requiredArguments(arguments.length, 1, prefix);
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data = webidl.converters.WebSocketSend(data, prefix, "Argument 1");
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if (this[_readyState] === CONNECTING) {
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throw new DOMException("'readyState' not OPEN", "InvalidStateError");
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}
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if (this[_readyState] !== OPEN) {
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return;
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}
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if (this[_sendQueue].length === 0) {
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// Fast path if the send queue is empty, for example when only synchronous
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// data is being sent.
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if (ArrayBufferIsView(data)) {
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op_ws_send_binary(this[_rid], data);
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} else if (isArrayBuffer(data)) {
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op_ws_send_binary_ab(this[_rid], data);
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} else if (ObjectPrototypeIsPrototypeOf(BlobPrototype, data)) {
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this[_queueSend](data);
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} else {
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const string = String(data);
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op_ws_send_text(
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this[_rid],
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string,
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);
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}
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} else {
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// Slower path if the send queue is not empty, for example when sending
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// asynchronous data like a Blob.
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this[_queueSend](data);
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}
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}
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close(code = undefined, reason = undefined) {
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webidl.assertBranded(this, WebSocketPrototype);
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const prefix = "Failed to execute 'close' on 'WebSocket'";
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if (code !== undefined) {
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code = webidl.converters["unsigned short"](code, prefix, "Argument 1", {
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clamp: true,
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});
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}
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if (reason !== undefined) {
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reason = webidl.converters.USVString(reason, prefix, "Argument 2");
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}
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if (!this[_server]) {
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if (
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code !== undefined &&
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!(code === 1000 || (3000 <= code && code < 5000))
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) {
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throw new DOMException(
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`The close code must be either 1000 or in the range of 3000 to 4999: received ${code}`,
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"InvalidAccessError",
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);
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}
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}
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if (
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reason !== undefined &&
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TypedArrayPrototypeGetByteLength(core.encode(reason)) > 123
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) {
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throw new DOMException(
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"The close reason may not be longer than 123 bytes",
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"SyntaxError",
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);
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}
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if (this[_readyState] === CONNECTING) {
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this[_readyState] = CLOSING;
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} else if (this[_readyState] === OPEN) {
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this[_readyState] = CLOSING;
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PromisePrototypeCatch(
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op_ws_close(
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this[_rid],
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code,
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reason,
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),
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(err) => {
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this[_readyState] = CLOSED;
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const errorEv = new ErrorEvent("error", {
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error: err,
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message: ErrorPrototypeToString(err),
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});
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this.dispatchEvent(errorEv);
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const closeEv = new CloseEvent("close");
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this.dispatchEvent(closeEv);
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core.tryClose(this[_rid]);
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},
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);
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}
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}
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async [_eventLoop]() {
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const rid = this[_rid];
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while (this[_readyState] !== CLOSED) {
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const kind = await op_ws_next_event(rid);
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/* close the connection if read was cancelled, and we didn't get a close frame */
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if (
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(this[_readyState] == CLOSING) &&
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kind <= 3 && this[_role] !== CLIENT
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) {
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this[_readyState] = CLOSED;
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const event = new CloseEvent("close");
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this.dispatchEvent(event);
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core.tryClose(rid);
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break;
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}
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switch (kind) {
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case 0: {
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/* string */
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const data = op_ws_get_buffer_as_string(rid);
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if (data === undefined) {
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break;
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}
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this[_serverHandleIdleTimeout]();
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const event = new MessageEvent("message", {
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data,
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origin: this[_url],
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});
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setIsTrusted(event, true);
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dispatch(this, event);
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break;
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}
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case 1: {
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/* binary */
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const d = op_ws_get_buffer(rid);
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if (d == undefined) {
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break;
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}
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this[_serverHandleIdleTimeout]();
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// deno-lint-ignore prefer-primordials
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const buffer = d.buffer;
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let data;
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if (this.binaryType === "blob") {
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data = new Blob([buffer]);
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} else {
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data = buffer;
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}
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const event = new MessageEvent("message", {
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data,
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origin: this[_url],
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});
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setIsTrusted(event, true);
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dispatch(this, event);
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break;
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}
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case 2: {
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/* pong */
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this[_serverHandleIdleTimeout]();
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break;
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}
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case 3: {
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/* error */
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this[_readyState] = CLOSED;
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const message = op_ws_get_error(rid);
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const error = new Error(message);
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const errorEv = new ErrorEvent("error", {
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error,
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message,
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});
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this.dispatchEvent(errorEv);
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const closeEv = new CloseEvent("close");
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this.dispatchEvent(closeEv);
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core.tryClose(rid);
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break;
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}
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default: {
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/* close */
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const code = kind;
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const reason = code == 1005 ? "" : op_ws_get_error(rid);
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const prevState = this[_readyState];
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this[_readyState] = CLOSED;
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clearTimeout(this[_idleTimeoutTimeout]);
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if (prevState === OPEN) {
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try {
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await op_ws_close(
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rid,
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code,
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reason,
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);
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} catch {
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// ignore failures
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}
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}
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const event = new CloseEvent("close", {
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wasClean: true,
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code: code,
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reason,
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});
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this.dispatchEvent(event);
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core.tryClose(rid);
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break;
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}
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}
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}
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}
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async [_queueSend](data) {
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const queue = this[_sendQueue];
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ArrayPrototypePush(queue, data);
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if (queue.length > 1) {
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// There is already a send in progress, so we just push to the queue
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// and let that task handle sending of this data.
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return;
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}
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while (queue.length > 0) {
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const data = queue[0];
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if (ArrayBufferIsView(data)) {
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op_ws_send_binary(this[_rid], data);
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} else if (isArrayBuffer(data)) {
|
|
op_ws_send_binary_ab(this[_rid], data);
|
|
} else if (ObjectPrototypeIsPrototypeOf(BlobPrototype, data)) {
|
|
// deno-lint-ignore prefer-primordials
|
|
const ab = await data.slice().arrayBuffer();
|
|
op_ws_send_binary_ab(this[_rid], ab);
|
|
} else {
|
|
const string = String(data);
|
|
op_ws_send_text(
|
|
this[_rid],
|
|
string,
|
|
);
|
|
}
|
|
ArrayPrototypeShift(queue);
|
|
}
|
|
}
|
|
|
|
[_serverHandleIdleTimeout]() {
|
|
if (this[_idleTimeoutDuration]) {
|
|
clearTimeout(this[_idleTimeoutTimeout]);
|
|
this[_idleTimeoutTimeout] = setTimeout(async () => {
|
|
if (this[_readyState] === OPEN) {
|
|
await PromisePrototypeCatch(op_ws_send_ping(this[_rid]), () => {});
|
|
this[_idleTimeoutTimeout] = setTimeout(async () => {
|
|
if (this[_readyState] === OPEN) {
|
|
this[_readyState] = CLOSING;
|
|
const reason = "No response from ping frame.";
|
|
await PromisePrototypeCatch(
|
|
op_ws_close(this[_rid], 1001, reason),
|
|
() => {},
|
|
);
|
|
this[_readyState] = CLOSED;
|
|
|
|
const errEvent = new ErrorEvent("error", {
|
|
message: reason,
|
|
});
|
|
this.dispatchEvent(errEvent);
|
|
|
|
const event = new CloseEvent("close", {
|
|
wasClean: false,
|
|
code: 1001,
|
|
reason,
|
|
});
|
|
this.dispatchEvent(event);
|
|
core.tryClose(this[_rid]);
|
|
} else {
|
|
clearTimeout(this[_idleTimeoutTimeout]);
|
|
}
|
|
}, (this[_idleTimeoutDuration] / 2) * 1000);
|
|
} else {
|
|
clearTimeout(this[_idleTimeoutTimeout]);
|
|
}
|
|
}, (this[_idleTimeoutDuration] / 2) * 1000);
|
|
}
|
|
}
|
|
|
|
[SymbolFor("Deno.privateCustomInspect")](inspect, inspectOptions) {
|
|
return inspect(
|
|
createFilteredInspectProxy({
|
|
object: this,
|
|
evaluate: ObjectPrototypeIsPrototypeOf(WebSocketPrototype, this),
|
|
keys: [
|
|
"url",
|
|
"readyState",
|
|
"extensions",
|
|
"protocol",
|
|
"binaryType",
|
|
"bufferedAmount",
|
|
"onmessage",
|
|
"onerror",
|
|
"onclose",
|
|
"onopen",
|
|
],
|
|
}),
|
|
inspectOptions,
|
|
);
|
|
}
|
|
}
|
|
|
|
ObjectDefineProperties(WebSocket, {
|
|
CONNECTING: {
|
|
__proto__: null,
|
|
value: 0,
|
|
},
|
|
OPEN: {
|
|
__proto__: null,
|
|
value: 1,
|
|
},
|
|
CLOSING: {
|
|
__proto__: null,
|
|
value: 2,
|
|
},
|
|
CLOSED: {
|
|
__proto__: null,
|
|
value: 3,
|
|
},
|
|
});
|
|
|
|
defineEventHandler(WebSocket.prototype, "message");
|
|
defineEventHandler(WebSocket.prototype, "error");
|
|
defineEventHandler(WebSocket.prototype, "close");
|
|
defineEventHandler(WebSocket.prototype, "open");
|
|
|
|
webidl.configureInterface(WebSocket);
|
|
const WebSocketPrototype = WebSocket.prototype;
|
|
|
|
function createWebSocketBranded() {
|
|
const socket = webidl.createBranded(WebSocket);
|
|
socket[_rid] = undefined;
|
|
socket[_role] = undefined;
|
|
socket[_readyState] = CONNECTING;
|
|
socket[_extensions] = "";
|
|
socket[_protocol] = "";
|
|
socket[_url] = "";
|
|
// We use ArrayBuffer for server websockets for backwards compatibility
|
|
// and performance reasons.
|
|
//
|
|
// https://github.com/denoland/deno/issues/15340#issuecomment-1872353134
|
|
socket[_binaryType] = "arraybuffer";
|
|
socket[_idleTimeoutDuration] = 0;
|
|
socket[_idleTimeoutTimeout] = undefined;
|
|
socket[_sendQueue] = [];
|
|
return socket;
|
|
}
|
|
|
|
export {
|
|
_eventLoop,
|
|
_idleTimeoutDuration,
|
|
_idleTimeoutTimeout,
|
|
_protocol,
|
|
_readyState,
|
|
_rid,
|
|
_role,
|
|
_server,
|
|
_serverHandleIdleTimeout,
|
|
createWebSocketBranded,
|
|
SERVER,
|
|
WebSocket,
|
|
};
|