b21c902607
BUG=dartbug.com/20698 R=ricow@google.com Review URL: https://codereview.chromium.org//632283002 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@40956 260f80e4-7a28-3924-810f-c04153c831b5
319 lines
9.7 KiB
JavaScript
319 lines
9.7 KiB
JavaScript
// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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/*
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* The communication protocol between test_controller.js and the driving
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* page are JSON encoded messages of the following form:
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* message = {
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* is_first_message: true/false,
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* is_status_update: true/false,
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* is_done: true/false,
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* message: message_content,
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* }
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*
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* The first message should have [is_first_message] set, the last message
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* should have [is_done] set. Status updates should have [is_status_update] set.
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*
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* The [message_content] can be be any content. In our case it will a list of
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* events encoded in JSON. See the next comment further down about what an event
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* is.
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*/
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/*
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* We will collect testing driver specific events here instead of printing
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* them to the DOM.
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* Every entry will look like this:
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* {
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* 'type' : 'sync_exception' / 'window_onerror' / 'script_onerror' / 'print'
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* 'window_compilationerror' / 'message_received' / 'dom' / 'debug'
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* 'value' : 'some content',
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* 'timestamp' : TimestampInMs,
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* }
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*/
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var recordedEventList = [];
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var timestampOfFirstEvent = null;
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var STATUS_UPDATE_INTERVAL = 10000;
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function getCurrentTimestamp() {
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if (timestampOfFirstEvent == null) {
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timestampOfFirstEvent = new Date().getTime();
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}
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return (new Date().getTime() - timestampOfFirstEvent) / 1000.0;
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}
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function stringifyEvent(event) {
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return JSON.stringify(event, null, 2);
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}
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function recordEvent(type, value) {
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var event = {
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type: type,
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value: value,
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timestamp: getCurrentTimestamp()
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};
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recordedEventList.push(event);
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printToConsole(stringifyEvent(event));
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}
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function clearConsole() {
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// Clear the console before every test run - this is Firebug specific code.
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if (typeof console == 'object' && typeof console.clear == 'function') {
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console.clear();
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}
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}
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function printToDOM(message) {
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var pre = document.createElement('pre');
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pre.appendChild(document.createTextNode(String(message)));
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document.body.appendChild(pre);
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document.body.appendChild(document.createTextNode('\n'));
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}
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function printToConsole(message) {
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var consoleAvailable = typeof console === 'object';
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if (consoleAvailable) {
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console.log(message);
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}
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}
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clearConsole();
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// Some tests may expect and have no way to suppress global errors.
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var testExpectsGlobalError = false;
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var testSuppressedGlobalErrors = [];
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// Set window onerror to make sure that we catch test harness errors across all
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// browsers.
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window.onerror = function (message, url, lineNumber) {
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if (url) {
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message = ('window.onerror called: \n\n' +
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url + ':' + lineNumber + ':\n' + message + '\n\n');
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}
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if (testExpectsGlobalError) {
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testSuppressedGlobalErrors.push({
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message: message
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});
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return;
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}
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recordEvent('window_onerror', message);
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notifyDone('FAIL');
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};
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// testRunner is provided by content shell.
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// It is not available in browser tests.
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var testRunner = window.testRunner || window.layoutTestController;
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var isContentShell = testRunner;
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var waitForDone = false;
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var driverWindowCached = false;
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var driverWindow;
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var reportingDriverWindowError = false;
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// Returns the driving window object if available
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// This function occasionally returns null instead of the
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// parent on Android content shell, so we cache the value
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// to get a consistent answer.
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function getDriverWindow() {
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if (window != window.parent) {
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// We're running in an iframe.
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result = window.parent;
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} else if (window.opener) {
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// We were opened by another window.
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result = window.opener;
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} else {
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result = null;
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}
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if (driverWindowCached) {
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if (result != driverWindow) {
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recordEvent('debug', 'Driver windows changed: was null == ' +
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(driverWindow == null) + ', is null == ' + (result == null));
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// notifyDone calls back into this function multiple times. Avoid loop.
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if (!reportingDriverWindowError) {
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reportingDriverWindowError = true;
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notifyDone('FAIL');
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}
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}
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} else {
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driverWindowCached = true;
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driverWindow = result;
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}
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return driverWindow;
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}
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function usingBrowserController() {
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return getDriverWindow() != null;
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}
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function buildDomEvent() {
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return {
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type: 'dom',
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value: '' + window.document.documentElement.innerHTML,
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timestamp: getCurrentTimestamp()
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};
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}
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function notifyUpdate(testOutcome, isFirstMessage, isStatusUpdate, isDone) {
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// If we are not using the browser controller (e.g. in the none-drt
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// configuration), we need to print 'testOutcome' as it is.
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if (isDone && !usingBrowserController()) {
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if (isContentShell) {
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// We need this, since test.dart is looking for 'FAIL\n', 'PASS\n' in the
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// DOM output of content shell.
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printToDOM(testOutcome);
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} else {
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printToConsole('Test outcome: ' + testOutcome);
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}
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} else if (usingBrowserController()) {
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// To support in browser launching of tests we post back start and result
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// messages to the window.opener.
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var driver = getDriverWindow();
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recordEvent('debug', 'Sending events to driver page (isFirstMessage = ' +
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isFirstMessage + ', isStatusUpdate = ' +
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isStatusUpdate + ', isDone = ' + isDone + ')');
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// Post the DOM and all events that happened.
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var events = recordedEventList.slice(0);
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events.push(buildDomEvent());
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var message = JSON.stringify(events);
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driver.postMessage(
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JSON.stringify({
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message: message,
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is_first_message: isFirstMessage,
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is_status_update: isStatusUpdate,
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is_done: isDone
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}), '*');
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}
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if (isDone) {
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if (testRunner) testRunner.notifyDone();
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}
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}
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function notifyDone(testOutcome) {
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notifyUpdate(testOutcome, false, false, true);
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}
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// Repeatedly send back the current status of this test.
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function sendStatusUpdate(isFirstMessage) {
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notifyUpdate('', isFirstMessage, true, false);
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setTimeout(function() {sendStatusUpdate(false)}, STATUS_UPDATE_INTERVAL);
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}
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// We call notifyStart here to notify the encapsulating browser.
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recordEvent('debug', 'test_controller.js started');
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sendStatusUpdate(true);
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function processMessage(msg) {
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// Filter out ShadowDOM polyfill messages which are random floats.
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if (msg != parseFloat(msg)) {
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recordEvent('message_received', '' + msg);
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}
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if (typeof msg != 'string') return;
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if (msg == 'unittest-suite-wait-for-done') {
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waitForDone = true;
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if (testRunner) {
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testRunner.startedDartTest = true;
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}
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} else if (msg == 'dart-calling-main') {
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if (testRunner) {
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testRunner.startedDartTest = true;
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}
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} else if (msg == 'dart-main-done') {
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if (!waitForDone) {
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notifyDone('PASS');
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}
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} else if (msg == 'unittest-suite-success' ||
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msg == 'unittest-suite-done') {
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notifyDone('PASS');
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} else if (msg == 'unittest-suite-fail') {
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notifyDone('FAIL');
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}
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}
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function onReceive(e) {
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processMessage(e.data);
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}
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if (testRunner) {
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testRunner.dumpAsText();
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testRunner.waitUntilDone();
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}
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window.addEventListener('message', onReceive, false);
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function onLoad(e) {
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// needed for dartium compilation errors.
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if (window.compilationError) {
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recordEvent('window_compilationerror',
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'DOMContentLoaded event: window.compilationError = ' +
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calledwindow.compilationError);
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notifyDone('FAIL');
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}
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}
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window.addEventListener('DOMContentLoaded', onLoad, false);
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// Note: before renaming this function, note that it is also included in an
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// inlined error handler in generated HTML files, and manually in tests that
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// include an HTML file.
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// See: tools/testing/dart/browser_test.dart
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function scriptTagOnErrorCallback(e) {
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var message = e && e.message;
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recordEvent('script_onerror', 'script.onError called: ' + message);
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notifyDone('FAIL');
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}
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// dart2js will generate code to call this function to handle the Dart
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// [print] method.
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//
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// dartium will invoke this method for [print] calls if the environment variable
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// "DART_FORWARDING_PRINT" was set when launching dartium.
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//
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// Our tests will be wrapped, so we can detect when [main] is called and when
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// it has ended.
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// The wrapping happens either via "dartMainRunner" (for dart2js) or wrapped
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// tests for dartium.
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//
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// The following messages are handled specially:
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// dart-calling-main: signals that the dart [main] function will be invoked
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// dart-main-done: signals that the dart [main] function has finished
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// unittest-suite-wait-for-done: signals the start of an asynchronous test
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// unittest-suite-success: signals the end of an asynchrounous test
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// unittest-suite-fail: signals that the asynchronous test failed
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// unittest-suite-done: signals the end of an asynchronous test, the outcome
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// is unknown
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//
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// These messages are used to communicate with the test and will be posted so
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// [processMessage] above can see it.
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function dartPrint(message) {
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recordEvent('print', message);
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if ((message === 'unittest-suite-wait-for-done') ||
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(message === 'unittest-suite-success') ||
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(message === 'unittest-suite-fail') ||
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(message === 'unittest-suite-done') ||
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(message === 'dart-calling-main') ||
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(message === 'dart-main-done')) {
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// We have to do this asynchronously, in case error messages are
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// already in the message queue.
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window.postMessage(message, '*');
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return;
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}
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}
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// dart2js will generate code to call this function instead of calling
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// Dart [main] directly. The argument is a closure that invokes main.
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function dartMainRunner(main) {
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dartPrint('dart-calling-main');
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try {
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main();
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} catch (e) {
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recordEvent('sync_exception', 'Exception: ' + e + '\nStack: ' + e.stack);
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notifyDone('FAIL');
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return;
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}
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dartPrint('dart-main-done');
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}
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