mirror of
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06b68bac22
MozReview-Commit-ID: DFcPTayju7m
222 lines
6.2 KiB
JavaScript
222 lines
6.2 KiB
JavaScript
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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"use strict";
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const { Cc, CC } = require("chrome");
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const Promise = require("promise");
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const { Task } = require("devtools/shared/task");
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const { executeSoon } = require("devtools/shared/DevToolsUtils");
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const { delimitedRead } = require("devtools/shared/transport/stream-utils");
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const CryptoHash = CC("@mozilla.org/security/hash;1", "nsICryptoHash", "initWithString");
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const threadManager = Cc["@mozilla.org/thread-manager;1"].getService();
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// Limit the header size to put an upper bound on allocated memory
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const HEADER_MAX_LEN = 8000;
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/**
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* Read a line from async input stream and return promise that resolves to the line once
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* it has been read. If the line is longer than HEADER_MAX_LEN, will throw error.
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*/
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function readLine(input) {
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return new Promise((resolve, reject) => {
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let line = "";
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let wait = () => {
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input.asyncWait(stream => {
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try {
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let amountToRead = HEADER_MAX_LEN - line.length;
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line += delimitedRead(input, "\n", amountToRead);
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if (line.endsWith("\n")) {
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resolve(line.trimRight());
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return;
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}
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if (line.length >= HEADER_MAX_LEN) {
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throw new Error(
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`Failed to read HTTP header longer than ${HEADER_MAX_LEN} bytes`);
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}
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wait();
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} catch (ex) {
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reject(ex);
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}
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}, 0, 0, threadManager.currentThread);
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};
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wait();
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});
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}
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/**
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* Write a string of bytes to async output stream and return promise that resolves once
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* all data has been written. Doesn't do any utf-16/utf-8 conversion - the string is
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* treated as an array of bytes.
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*/
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function writeString(output, data) {
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return new Promise((resolve, reject) => {
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let wait = () => {
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if (data.length === 0) {
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resolve();
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return;
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}
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output.asyncWait(stream => {
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try {
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let written = output.write(data, data.length);
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data = data.slice(written);
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wait();
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} catch (ex) {
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reject(ex);
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}
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}, 0, 0, threadManager.currentThread);
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};
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wait();
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});
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}
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/**
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* Read HTTP request from async input stream.
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* @return Request line (string) and Map of header names and values.
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*/
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const readHttpRequest = Task.async(function* (input) {
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let requestLine = "";
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let headers = new Map();
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while (true) {
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let line = yield readLine(input);
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if (line.length == 0) {
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break;
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}
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if (!requestLine) {
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requestLine = line;
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} else {
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let colon = line.indexOf(":");
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if (colon == -1) {
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throw new Error(`Malformed HTTP header: ${line}`);
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}
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let name = line.slice(0, colon).toLowerCase();
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let value = line.slice(colon + 1).trim();
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headers.set(name, value);
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}
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}
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return { requestLine, headers };
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});
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/**
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* Write HTTP response (array of strings) to async output stream.
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*/
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function writeHttpResponse(output, response) {
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let responseString = response.join("\r\n") + "\r\n\r\n";
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return writeString(output, responseString);
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}
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/**
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* Process the WebSocket handshake headers and return the key to be sent in
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* Sec-WebSocket-Accept response header.
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*/
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function processRequest({ requestLine, headers }) {
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let [ method, path ] = requestLine.split(" ");
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if (method !== "GET") {
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throw new Error("The handshake request must use GET method");
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}
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if (path !== "/") {
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throw new Error("The handshake request has unknown path");
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}
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let upgrade = headers.get("upgrade");
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if (!upgrade || upgrade !== "websocket") {
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throw new Error("The handshake request has incorrect Upgrade header");
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}
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let connection = headers.get("connection");
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if (!connection || !connection.split(",").map(t => t.trim()).includes("Upgrade")) {
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throw new Error("The handshake request has incorrect Connection header");
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}
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let version = headers.get("sec-websocket-version");
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if (!version || version !== "13") {
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throw new Error("The handshake request must have Sec-WebSocket-Version: 13");
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}
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// Compute the accept key
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let key = headers.get("sec-websocket-key");
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if (!key) {
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throw new Error("The handshake request must have a Sec-WebSocket-Key header");
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}
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return { acceptKey: computeKey(key) };
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}
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function computeKey(key) {
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let str = key + "258EAFA5-E914-47DA-95CA-C5AB0DC85B11";
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let data = Array.from(str, ch => ch.charCodeAt(0));
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let hash = new CryptoHash("sha1");
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hash.update(data, data.length);
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return hash.finish(true);
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}
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/**
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* Perform the server part of a WebSocket opening handshake on an incoming connection.
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*/
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const serverHandshake = Task.async(function* (input, output) {
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// Read the request
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let request = yield readHttpRequest(input);
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try {
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// Check and extract info from the request
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let { acceptKey } = processRequest(request);
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// Send response headers
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yield writeHttpResponse(output, [
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"HTTP/1.1 101 Switching Protocols",
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"Upgrade: websocket",
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"Connection: Upgrade",
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`Sec-WebSocket-Accept: ${acceptKey}`,
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]);
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} catch (error) {
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// Send error response in case of error
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yield writeHttpResponse(output, [ "HTTP/1.1 400 Bad Request" ]);
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throw error;
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}
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});
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/**
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* Accept an incoming WebSocket server connection.
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* Takes an established nsISocketTransport in the parameters.
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* Performs the WebSocket handshake and waits for the WebSocket to open.
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* Returns Promise with a WebSocket ready to send and receive messages.
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*/
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const accept = Task.async(function* (transport, input, output) {
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yield serverHandshake(input, output);
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let transportProvider = {
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setListener(upgradeListener) {
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// The onTransportAvailable callback shouldn't be called synchronously.
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executeSoon(() => {
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upgradeListener.onTransportAvailable(transport, input, output);
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});
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}
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};
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return new Promise((resolve, reject) => {
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let socket = WebSocket.createServerWebSocket(null, [], transportProvider, "");
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socket.addEventListener("close", () => {
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input.close();
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output.close();
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});
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socket.onopen = () => resolve(socket);
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socket.onerror = err => reject(err);
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});
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});
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exports.accept = accept;
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