mirror of
https://github.com/coder/code-server.git
synced 2024-11-27 00:10:01 +03:00
03e0bdac03
* chore: update vscode server files * chore: update code to 1.64 * refactor: clean up code in constants.ts * chore: keep package.json vscode cache * fixup!: formatting * feat(ci): add VSCODE_CACHE_VERSION * fix(ci): add package.json for e2e tests * fix: TS errors * refactor: remove isConnected e2e tests
480 lines
14 KiB
TypeScript
480 lines
14 KiB
TypeScript
import { field, Logger, logger } from "@coder/logger"
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import * as cp from "child_process"
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import { promises as fs } from "fs"
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import * as path from "path"
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import { Page } from "playwright"
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import * as util from "util"
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import { logError, plural } from "../../../src/common/util"
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import { onLine } from "../../../src/node/util"
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import { PASSWORD, workspaceDir } from "../../utils/constants"
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import { idleTimer, tmpdir } from "../../utils/helpers"
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interface CodeServerProcess {
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process: cp.ChildProcess
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address: string
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}
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class Context {
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private _canceled = false
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private _done = false
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public canceled(): boolean {
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return this._canceled
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}
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public finished(): boolean {
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return this._done
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}
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public cancel(): void {
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this._canceled = true
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}
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public finish(): void {
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this._done = true
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}
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}
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/**
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* Class for spawning and managing code-server.
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*/
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export class CodeServer {
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private process: Promise<CodeServerProcess> | undefined
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public readonly logger: Logger
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private closed = false
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constructor(
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name: string,
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private readonly args: string[],
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private readonly env: NodeJS.ProcessEnv,
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private _workspaceDir: Promise<string> | string | undefined,
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private readonly entry = process.env.CODE_SERVER_TEST_ENTRY || ".",
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) {
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this.logger = logger.named(name)
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}
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/**
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* The address at which code-server can be accessed. Spawns code-server if it
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* has not yet been spawned.
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*/
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async address(): Promise<string> {
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if (!this.process) {
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this.process = this.spawn()
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}
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const { address } = await this.process
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return address
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}
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/**
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* The workspace directory code-server opens with.
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*/
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get workspaceDir(): Promise<string> | string {
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if (!this._workspaceDir) {
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this._workspaceDir = tmpdir(workspaceDir)
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}
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return this._workspaceDir
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}
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/**
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* Create a random workspace and seed it with settings.
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*/
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private async createWorkspace(): Promise<string> {
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const dir = await this.workspaceDir
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await fs.mkdir(path.join(dir, "User"), { recursive: true })
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await fs.writeFile(
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path.join(dir, "User/settings.json"),
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JSON.stringify({
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"workbench.startupEditor": "none",
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}),
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"utf8",
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)
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return dir
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}
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/**
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* Spawn a new code-server process with its own workspace and data
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* directories.
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*/
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private async spawn(): Promise<CodeServerProcess> {
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// This will be used both as the workspace and data directory to ensure
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// instances don't bleed into each other.
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const dir = await this.createWorkspace()
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return new Promise((resolve, reject) => {
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const args = [
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this.entry,
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"--extensions-dir",
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path.join(dir, "extensions"),
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...this.args,
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// Using port zero will spawn on a random port.
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"--bind-addr",
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"127.0.0.1:0",
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// Setting the XDG variables would be easier and more thorough but the
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// modules we import ignores those variables for non-Linux operating
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// systems so use these flags instead.
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"--config",
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path.join(dir, "config.yaml"),
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"--user-data-dir",
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dir,
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// The last argument is the workspace to open.
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dir,
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]
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this.logger.debug("spawning `node " + args.join(" ") + "`")
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const proc = cp.spawn("node", args, {
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cwd: path.join(__dirname, "../../.."),
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env: {
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...process.env,
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...this.env,
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PASSWORD,
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},
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})
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const timer = idleTimer("Failed to extract address; did the format change?", reject)
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proc.on("error", (error) => {
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this.logger.error(error.message)
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timer.dispose()
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reject(error)
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})
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proc.on("close", (code) => {
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const error = new Error("code-server closed unexpectedly")
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if (!this.closed) {
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this.logger.error(error.message, field("code", code))
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}
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timer.dispose()
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reject(error)
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})
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let resolved = false
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proc.stdout.setEncoding("utf8")
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onLine(proc, (line) => {
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// As long as we are actively getting input reset the timer. If we stop
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// getting input and still have not found the address the timer will
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// reject.
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timer.reset()
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// Log the line without the timestamp.
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this.logger.debug(line.replace(/\[.+\]/, ""))
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if (resolved) {
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return
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}
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const match = line.trim().match(/HTTPS? server listening on (https?:\/\/[.:\d]+)\/?$/)
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if (match) {
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// Cookies don't seem to work on IP address so swap to localhost.
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// TODO: Investigate whether this is a bug with code-server.
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const address = match[1].replace("127.0.0.1", "localhost")
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this.logger.debug(`spawned on ${address}`)
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resolved = true
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timer.dispose()
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resolve({ process: proc, address })
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}
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})
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})
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}
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/**
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* Close the code-server process.
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*/
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async close(): Promise<void> {
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logger.debug("closing")
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if (this.process) {
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const proc = (await this.process).process
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this.closed = true // To prevent the close handler from erroring.
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proc.kill()
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}
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}
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}
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/**
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* This is a "Page Object Model" (https://playwright.dev/docs/pom/) meant to
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* wrap over a page and represent actions on that page in a more readable way.
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* This targets a specific code-server instance which must be passed in.
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* Navigation and setup performed by this model will cause the code-server
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* process to spawn if it hasn't yet.
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*/
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export class CodeServerPage {
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private readonly editorSelector = "div.monaco-workbench"
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constructor(
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private readonly codeServer: CodeServer,
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public readonly page: Page,
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private readonly authenticated: boolean,
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) {
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this.page.on("console", (message) => {
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this.codeServer.logger.debug(message.text())
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})
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this.page.on("pageerror", (error) => {
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logError(this.codeServer.logger, "page", error)
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})
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}
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address() {
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return this.codeServer.address()
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}
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/**
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* The workspace directory code-server opens with.
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*/
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get workspaceDir() {
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return this.codeServer.workspaceDir
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}
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/**
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* Navigate to a code-server endpoint (root by default). Then wait for the
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* editor to become available.
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*/
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async navigate(endpoint = "/") {
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const to = new URL(endpoint, await this.codeServer.address())
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await this.page.goto(to.toString(), { waitUntil: "networkidle" })
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// Only reload editor if authenticated. Otherwise we'll get stuck
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// reloading the login page.
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if (this.authenticated) {
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await this.reloadUntilEditorIsReady()
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}
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}
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/**
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* Checks if the editor is visible
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* and that we are connected to the host
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*
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* Reload until both checks pass
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*/
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async reloadUntilEditorIsReady() {
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this.codeServer.logger.debug("Waiting for editor to be ready...")
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const editorIsVisible = await this.isEditorVisible()
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let reloadCount = 0
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// Occassionally code-server timeouts in Firefox
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// we're not sure why
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// but usually a reload or two fixes it
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// TODO@jsjoeio @oxy look into Firefox reconnection/timeout issues
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while (!editorIsVisible) {
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// When a reload happens, we want to wait for all resources to be
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// loaded completely. Hence why we use that instead of DOMContentLoaded
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// Read more: https://thisthat.dev/dom-content-loaded-vs-load/
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await this.page.waitForLoadState("load")
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// Give it an extra second just in case it's feeling extra slow
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await this.page.waitForTimeout(1000)
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reloadCount += 1
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if (await this.isEditorVisible()) {
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this.codeServer.logger.debug(`editor became ready after ${reloadCount} reloads`)
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break
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}
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await this.page.reload()
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}
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this.codeServer.logger.debug("Editor is ready!")
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}
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/**
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* Checks if the editor is visible
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*/
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async isEditorVisible() {
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this.codeServer.logger.debug("Waiting for editor to be visible...")
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// Make sure the editor actually loaded
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await this.page.waitForSelector(this.editorSelector)
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const visible = await this.page.isVisible(this.editorSelector)
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this.codeServer.logger.debug(`Editor is ${visible ? "not visible" : "visible"}!`)
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return visible
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}
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/**
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* Focuses Integrated Terminal
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* by using "Terminal: Focus Terminal"
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* from the Command Palette
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*
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* This should focus the terminal no matter
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* if it already has focus and/or is or isn't
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* visible already.
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*/
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async focusTerminal() {
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await this.executeCommandViaMenus("Terminal: Focus Terminal")
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// Wait for terminal textarea to show up
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await this.page.waitForSelector("textarea.xterm-helper-textarea")
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}
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/**
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* Open a file by using menus.
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*/
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async openFile(file: string) {
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await this.navigateMenus(["File", "Open File"])
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await this.navigateQuickInput([path.basename(file)])
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await this.waitForTab(file)
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}
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/**
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* Wait for a tab to open for the specified file.
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*/
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async waitForTab(file: string): Promise<void> {
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await this.page.waitForSelector(`.tab :text("${path.basename(file)}")`)
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}
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/**
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* See if the specified tab is open.
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*/
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async tabIsVisible(file: string): Promise<boolean> {
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return this.page.isVisible(`.tab :text("${path.basename(file)}")`)
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}
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/**
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* Navigate to the command palette via menus then execute a command by typing
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* it then clicking the match from the results.
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*/
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async executeCommandViaMenus(command: string) {
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await this.navigateMenus(["View", "Command Palette"])
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await this.page.keyboard.type(command)
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await this.page.hover(`text=${command}`)
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await this.page.click(`text=${command}`)
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}
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/**
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* Navigate through the items in the selector. `open` is a function that will
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* open the menu/popup containing the items through which to navigation.
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*/
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async navigateItems(items: string[], selector: string, open?: (selector: string) => void): Promise<void> {
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const logger = this.codeServer.logger.named(selector)
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/**
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* If the selector loses focus or gets removed this will resolve with false,
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* signaling we need to try again.
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*/
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const openThenWaitClose = async (ctx: Context) => {
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if (open) {
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await open(selector)
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}
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this.codeServer.logger.debug(`watching ${selector}`)
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try {
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await this.page.waitForSelector(`${selector}:not(:focus-within)`)
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} catch (error) {
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if (!ctx.finished()) {
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this.codeServer.logger.debug(`${selector} navigation: ${(error as any).message || error}`)
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}
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}
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return false
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}
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/**
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* This will step through each item, aborting and returning false if
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* canceled or if any navigation step has an error which signals we need to
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* try again.
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*/
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const navigate = async (ctx: Context) => {
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const steps: Array<{ fn: () => Promise<unknown>; name: string }> = [
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{
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fn: () => this.page.waitForSelector(`${selector}:focus-within`),
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name: "focus",
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},
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]
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for (const item of items) {
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// Normally these will wait for the item to be visible and then execute
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// the action. The problem is that if the menu closes these will still
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// be waiting and continue to execute once the menu is visible again,
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// potentially conflicting with the new set of navigations (for example
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// if the old promise clicks logout before the new one can). By
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// splitting them into two steps each we can cancel before running the
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// action.
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steps.push({
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fn: () => this.page.hover(`${selector} :text("${item}")`, { trial: true }),
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name: `${item}:hover:trial`,
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})
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steps.push({
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fn: () => this.page.hover(`${selector} :text("${item}")`, { force: true }),
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name: `${item}:hover:force`,
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})
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steps.push({
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fn: () => this.page.click(`${selector} :text("${item}")`, { trial: true }),
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name: `${item}:click:trial`,
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})
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steps.push({
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fn: () => this.page.click(`${selector} :text("${item}")`, { force: true }),
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name: `${item}:click:force`,
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})
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}
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for (const step of steps) {
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try {
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logger.debug(`navigation step: ${step.name}`)
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await step.fn()
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if (ctx.canceled()) {
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logger.debug("navigation canceled")
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return false
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}
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} catch (error) {
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logger.debug(`navigation: ${(error as any).message || error}`)
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return false
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}
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}
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return true
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}
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// We are seeing the menu closing after opening if we open it too soon and
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// the picker getting recreated in the middle of trying to select an item.
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// To counter this we will keep trying to navigate through the items every
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// time we lose focus or there is an error.
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let attempts = 1
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let context = new Context()
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while (!(await Promise.race([openThenWaitClose(context), navigate(context)]))) {
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++attempts
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logger.debug("closed, retrying (${attempt}/∞)")
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context.cancel()
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context = new Context()
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}
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context.finish()
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logger.debug(`navigation took ${attempts} ${plural(attempts, "attempt")}`)
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}
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/**
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* Navigate through a currently opened "quick input" widget, retrying on
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* failure.
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*/
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async navigateQuickInput(items: string[]): Promise<void> {
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await this.navigateItems(items, ".quick-input-widget")
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}
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/**
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* Navigate through the menu, retrying on failure.
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*/
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async navigateMenus(menus: string[]): Promise<void> {
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await this.navigateItems(menus, '[aria-label="Application Menu"]', async (selector) => {
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await this.page.click(selector)
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})
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}
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/**
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* Execute a command in the root of the instance's workspace directory.
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*/
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async exec(command: string): Promise<void> {
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await util.promisify(cp.exec)(command, {
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cwd: await this.workspaceDir,
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})
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}
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/**
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* Install an extension by ID to the instance's temporary extension
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* directory.
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*/
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async installExtension(id: string): Promise<void> {
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const dir = path.join(await this.workspaceDir, "extensions")
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await util.promisify(cp.exec)(`node . --install-extension ${id} --extensions-dir ${dir}`, {
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cwd: path.join(__dirname, "../../.."),
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})
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}
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/**
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* Wait for state to be flushed to the database.
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*/
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async stateFlush(): Promise<void> {
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// If we reload too quickly VS Code will be unable to save the state changes
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// so wait until those have been written to the database. It flushes every
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// five seconds so we need to wait at least that long.
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// TODO@asher: There must be a better way.
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await this.page.waitForTimeout(5500)
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}
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}
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