Igor Minar 6fc267f22c fix: split dynamic bits in platform-browser into platform-browser-dynamic
Previously these symbols were exposed via platform-browser-dynamic, then we merged then into platform-browser
thinking that tools would know how to shake off the compiler and other dynamic bits not used with the offline
compilation flow. This turned out to be wrong as both webpack and rollup don't have good enough tree-shaking
capabilities to do this today. We think that in the future we'll be able to merge these two entry points into
one, but we need to give tooling some time before we can do it. In the meantime the reintroduction of the -dynamic
package point allows us to separate the compiler dependencies from the rest of the framework.

This change undoes the previous breaking change that removed the platform-browser-dynamic package.
2016-06-14 15:31:24 -07:00

266 lines
11 KiB
TypeScript

import {APP_INITIALIZER, Component, Directive, ExceptionHandler, Inject, OnDestroy, PLATFORM_INITIALIZER, ReflectiveInjector, coreLoadAndBootstrap, createPlatform, provide} from '@angular/core';
import {ApplicationRef, disposePlatform} from '@angular/core/src/application_ref';
import {Console} from '@angular/core/src/console';
import {ComponentRef} from '@angular/core/src/linker/component_factory';
import {Testability, TestabilityRegistry} from '@angular/core/src/testability/testability';
import {Log} from '@angular/core/testing';
import {AsyncTestCompleter, afterEach, beforeEach, describe, expect, inject, it} from '@angular/core/testing/testing_internal';
import {BROWSER_APP_PROVIDERS, BROWSER_PLATFORM_PROVIDERS} from '@angular/platform-browser';
import {BROWSER_APP_COMPILER_PROVIDERS, bootstrap} from '@angular/platform-browser-dynamic';
import {getDOM} from '@angular/platform-browser/src/dom/dom_adapter';
import {DOCUMENT} from '@angular/platform-browser/src/dom/dom_tokens';
import {PromiseWrapper} from '../../src/facade/async';
import {stringify} from '../../src/facade/lang';
@Component({selector: 'hello-app', template: '{{greeting}} world!'})
class HelloRootCmp {
greeting: string;
constructor() { this.greeting = 'hello'; }
}
@Component({selector: 'hello-app', template: 'before: <ng-content></ng-content> after: done'})
class HelloRootCmpContent {
constructor() {}
}
@Component({selector: 'hello-app-2', template: '{{greeting}} world, again!'})
class HelloRootCmp2 {
greeting: string;
constructor() { this.greeting = 'hello'; }
}
@Component({selector: 'hello-app', template: ''})
class HelloRootCmp3 {
appBinding: any /** TODO #9100 */;
constructor(@Inject('appBinding') appBinding: any /** TODO #9100 */) {
this.appBinding = appBinding;
}
}
@Component({selector: 'hello-app', template: ''})
class HelloRootCmp4 {
appRef: any /** TODO #9100 */;
constructor(@Inject(ApplicationRef) appRef: ApplicationRef) { this.appRef = appRef; }
}
@Component({selector: 'hello-app'})
class HelloRootMissingTemplate {
}
@Directive({selector: 'hello-app'})
class HelloRootDirectiveIsNotCmp {
}
@Component({selector: 'hello-app', template: ''})
class HelloOnDestroyTickCmp implements OnDestroy {
appRef: ApplicationRef;
constructor(@Inject(ApplicationRef) appRef: ApplicationRef) { this.appRef = appRef; }
ngOnDestroy(): void { this.appRef.tick(); }
}
class _ArrayLogger {
res: any[] = [];
log(s: any): void { this.res.push(s); }
logError(s: any): void { this.res.push(s); }
logGroup(s: any): void { this.res.push(s); }
logGroupEnd(){};
}
class DummyConsole implements Console {
log(message: any /** TODO #9100 */) {}
warn(message: any /** TODO #9100 */) {}
}
export function main() {
var fakeDoc: any /** TODO #9100 */, el: any /** TODO #9100 */, el2: any /** TODO #9100 */,
testProviders: any /** TODO #9100 */, lightDom: any /** TODO #9100 */;
describe('bootstrap factory method', () => {
beforeEach(() => {
disposePlatform();
fakeDoc = getDOM().createHtmlDocument();
el = getDOM().createElement('hello-app', fakeDoc);
el2 = getDOM().createElement('hello-app-2', fakeDoc);
lightDom = getDOM().createElement('light-dom-el', fakeDoc);
getDOM().appendChild(fakeDoc.body, el);
getDOM().appendChild(fakeDoc.body, el2);
getDOM().appendChild(el, lightDom);
getDOM().setText(lightDom, 'loading');
testProviders =
[{provide: DOCUMENT, useValue: fakeDoc}, {provide: Console, useClass: DummyConsole}];
});
afterEach(disposePlatform);
it('should throw if bootstrapped Directive is not a Component', () => {
var logger = new _ArrayLogger();
var exceptionHandler = new ExceptionHandler(logger, false);
expect(
() => bootstrap(
HelloRootDirectiveIsNotCmp,
[testProviders, {provide: ExceptionHandler, useValue: exceptionHandler}]))
.toThrowError(
`Could not compile '${stringify(HelloRootDirectiveIsNotCmp)}' because it is not a component.`);
expect(logger.res.join('')).toContain('Could not compile');
});
it('should throw if no element is found',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var logger = new _ArrayLogger();
var exceptionHandler = new ExceptionHandler(logger, false);
var refPromise =
bootstrap(HelloRootCmp, [{provide: ExceptionHandler, useValue: exceptionHandler}]);
PromiseWrapper.then(refPromise, null, (reason) => {
expect(reason.message).toContain('The selector "hello-app" did not match any elements');
async.done();
return null;
});
}));
if (getDOM().supportsDOMEvents()) {
it('should forward the error to promise when bootstrap fails',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
// Skip for dart since it causes a confusing error message in console when test passes.
var logger = new _ArrayLogger();
var exceptionHandler = new ExceptionHandler(logger, false);
var refPromise =
bootstrap(HelloRootCmp, [{provide: ExceptionHandler, useValue: exceptionHandler}]);
PromiseWrapper.then(refPromise, null, (reason: any) => {
expect(reason.message)
.toContain('The selector "hello-app" did not match any elements');
async.done();
});
}));
it('should invoke the default exception handler when bootstrap fails',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var logger = new _ArrayLogger();
var exceptionHandler = new ExceptionHandler(logger, false);
var refPromise =
bootstrap(HelloRootCmp, [{provide: ExceptionHandler, useValue: exceptionHandler}]);
PromiseWrapper.then(refPromise, null, (reason) => {
expect(logger.res.join(''))
.toContain('The selector "hello-app" did not match any elements');
async.done();
return null;
});
}));
}
it('should create an injector promise', () => {
var refPromise = bootstrap(HelloRootCmp, testProviders);
expect(refPromise).not.toBe(null);
});
it('should display hello world', inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var refPromise = bootstrap(HelloRootCmp, testProviders);
refPromise.then((ref) => {
expect(el).toHaveText('hello world!');
async.done();
});
}));
it('should support multiple calls to bootstrap',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var refPromise1 = bootstrap(HelloRootCmp, testProviders);
var refPromise2 = bootstrap(HelloRootCmp2, testProviders);
PromiseWrapper.all([refPromise1, refPromise2]).then((refs) => {
expect(el).toHaveText('hello world!');
expect(el2).toHaveText('hello world, again!');
async.done();
});
}));
it('should not crash if change detection is invoked when the root component is disposed',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
bootstrap(HelloOnDestroyTickCmp, testProviders).then((ref) => {
expect(() => ref.destroy()).not.toThrow();
async.done();
});
}));
it('should unregister change detectors when components are disposed',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var platform =
createPlatform(ReflectiveInjector.resolveAndCreate(BROWSER_PLATFORM_PROVIDERS));
var app = ReflectiveInjector
.resolveAndCreate(
[BROWSER_APP_PROVIDERS, BROWSER_APP_COMPILER_PROVIDERS, testProviders],
platform.injector)
.get(ApplicationRef);
coreLoadAndBootstrap(HelloRootCmp, app.injector).then((ref) => {
ref.destroy();
expect(() => app.tick()).not.toThrow();
async.done();
});
}));
it('should make the provided bindings available to the application component',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var refPromise = bootstrap(
HelloRootCmp3, [testProviders, {provide: 'appBinding', useValue: 'BoundValue'}]);
refPromise.then((ref) => {
expect(ref.instance.appBinding).toEqual('BoundValue');
async.done();
});
}));
it('should avoid cyclic dependencies when root component requires Lifecycle through DI',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var refPromise = bootstrap(HelloRootCmp4, testProviders);
refPromise.then((ref) => {
expect(ref.instance.appRef).toBe(ref.injector.get(ApplicationRef));
async.done();
});
}));
it('should run platform initializers', inject([Log], (log: Log) => {
let p = createPlatform(ReflectiveInjector.resolveAndCreate([
BROWSER_PLATFORM_PROVIDERS,
{provide: PLATFORM_INITIALIZER, useValue: log.fn('platform_init1'), multi: true},
{provide: PLATFORM_INITIALIZER, useValue: log.fn('platform_init2'), multi: true}
]));
expect(log.result()).toEqual('platform_init1; platform_init2');
log.clear();
var a = ReflectiveInjector.resolveAndCreate(
[
BROWSER_APP_PROVIDERS,
{provide: APP_INITIALIZER, useValue: log.fn('app_init1'), multi: true},
{provide: APP_INITIALIZER, useValue: log.fn('app_init2'), multi: true}
],
p.injector);
a.get(ApplicationRef);
expect(log.result()).toEqual('app_init1; app_init2');
}));
it('should register each application with the testability registry',
inject([AsyncTestCompleter], (async: AsyncTestCompleter) => {
var refPromise1: Promise<ComponentRef<any>> = bootstrap(HelloRootCmp, testProviders);
var refPromise2: Promise<ComponentRef<any>> = bootstrap(HelloRootCmp2, testProviders);
PromiseWrapper.all([refPromise1, refPromise2]).then((refs: ComponentRef<any>[]) => {
var registry = refs[0].injector.get(TestabilityRegistry);
var testabilities =
[refs[0].injector.get(Testability), refs[1].injector.get(Testability)];
PromiseWrapper.all(testabilities).then((testabilities: Testability[]) => {
expect(registry.findTestabilityInTree(el)).toEqual(testabilities[0]);
expect(registry.findTestabilityInTree(el2)).toEqual(testabilities[1]);
async.done();
});
});
}));
});
}