b98dd0af92
With creation frame we can show additional information with description of each async stack trace, which could help user to understand where promises were chained. At least in case of Promise.resolve().then(foo1).then(foo2) we would be able to show following stack trace for break in foo2 callback: foo2 (test.js:14:2) -- Promise.resolve (test.js:29:14)-- -- Promise.resolve (test.js:28:14)-- promiseThen (test.js:30:2) More details: https://docs.google.com/document/d/1u19N45f1gSF7M39mGsycJEK3IPyJgIXCBnWyiPeuJFE BUG=v8:5738 R=dgozman@chromium.org,gsathya@chromium.org Review-Url: https://codereview.chromium.org/2648873002 Cr-Commit-Position: refs/heads/master@{#42682}
165 lines
4.9 KiB
JavaScript
165 lines
4.9 KiB
JavaScript
// Copyright 2016 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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print('Checks that async stacks works good with different limits');
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InspectorTest.addScript(`
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var resolveTest;
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function foo1() {
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debugger;
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}
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function foo2() {
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debugger;
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if (resolveTest) resolveTest();
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}
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function promise() {
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var resolve1;
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var p1 = new Promise(resolve => resolve1 = resolve);
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var p2 = p1.then(foo1);
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resolve1();
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return p2;
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}
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function twoPromises() {
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var resolve1;
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var resolve2;
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var p1 = new Promise(resolve => resolve1 = resolve);
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var p2 = new Promise(resolve => resolve2 = resolve);
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var p3 = p1.then(foo1);
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var p4 = p2.then(foo2);
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resolve1();
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resolve2();
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return Promise.all([p3, p4]);
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}
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function twoSetTimeout() {
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setTimeout(foo1, 0);
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setTimeout(foo2, 0);
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return new Promise(resolve => resolveTest = resolve);
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}
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function twentySetTimeout() {
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var resolve1;
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var p1 = new Promise(resolve => resolve1 = resolve);
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for (var i = 1; i <= 19; ++i)
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setTimeout('(function foo' + i + '(){debugger;})()',0);
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setTimeout(resolve1, 0);
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return p1;
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}
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//# sourceURL=test.js`, 7, 26);
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InspectorTest.setupScriptMap();
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Protocol.Debugger.onPaused(message => {
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InspectorTest.logCallFrames(message.params.callFrames);
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var asyncStackTrace = message.params.asyncStackTrace;
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while (asyncStackTrace) {
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InspectorTest.log(`-- ${asyncStackTrace.description} --`);
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InspectorTest.logCallFrames(asyncStackTrace.callFrames);
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asyncStackTrace = asyncStackTrace.parent;
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}
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InspectorTest.log('');
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Protocol.Debugger.resume();
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});
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Protocol.Debugger.enable();
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Protocol.Debugger.setAsyncCallStackDepth({ maxDepth: 128 });
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InspectorTest.runTestSuite([
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function testZeroLimit(next) {
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Protocol.Runtime.evaluate({
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expression: 'setMaxAsyncTaskStacks(0)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'promise()//# sourceURL=expr.js', awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testTwoLimit(next) {
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// we need one stack for parent task and one for next task.
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Protocol.Runtime
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.evaluate({expression: 'setMaxAsyncTaskStacks(2)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'promise()//# sourceURL=expr.js',
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awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testOneLimitTwoPromises(next) {
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// Should be no async stacks because when first microtask is finished
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// it will resolve and schedule p3 - will remove async stack for scheduled
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// p2.
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Protocol.Runtime.evaluate({
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expression: 'setMaxAsyncTaskStacks(1)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twoPromises()//# sourceURL=expr.js', awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testFourLimitTwoPromises(next) {
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Protocol.Runtime
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.evaluate({expression: 'setMaxAsyncTaskStacks(4)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twoPromises()//# sourceURL=expr.js',
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awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testSixLimitTwoPromises(next) {
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Protocol.Runtime
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.evaluate({expression: 'setMaxAsyncTaskStacks(6)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twoPromises()//# sourceURL=expr.js',
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awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testTwoLimitTwoSetTimeouts(next) {
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Protocol.Runtime.evaluate({
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expression: 'setMaxAsyncTaskStacks(2)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twoSetTimeout()//# sourceURL=expr.js', awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testThreeLimitTwoSetTimeouts(next) {
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Protocol.Runtime.evaluate({
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expression: 'setMaxAsyncTaskStacks(3)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twoSetTimeout()//# sourceURL=expr.js', awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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},
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function testTenLimitTwentySetTimeouts(next) {
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Protocol.Runtime.evaluate({
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expression: 'setMaxAsyncTaskStacks(10)//# sourceURL=expr.js'})
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.then(() => Protocol.Runtime.evaluate({
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expression: 'twentySetTimeout()//# sourceURL=expr.js',
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awaitPromise: true
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}))
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.then(() => cancelAllAsyncTasks())
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.then(next);
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}
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]);
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function cancelAllAsyncTasks() {
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return Protocol.Debugger.setAsyncCallStackDepth({ maxDepth: 0 })
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.then(() => Protocol.Debugger.setAsyncCallStackDepth({ maxDepth: 128 }));
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}
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