docs(component-communication): copy edits and update TOCs (#3417)
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@ -13,21 +13,14 @@ include ../_util-fns
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<a id="toc"></a>
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:marked
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## Table of contents
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[Pass data from parent to child with input binding](#parent-to-child)
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# Contents
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[Intercept input property changes with a setter](#parent-to-child-setter)
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- [Pass data from parent to child with input binding](#parent-to-child)
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- [Intercept input property changes with a setter](#parent-to-child-setter)
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- [Intercept input property changes with `ngOnChanges()`](#parent-to-child-on-changes)
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- [Parent calls an `@ViewChild()`](#parent-to-view-child)
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- [Parent and children communicate via a service](#bidirectional-service)
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[Intercept input property changes with *ngOnChanges*](#parent-to-child-on-changes)
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[Parent listens for child event](#child-to-parent)
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[Parent interacts with child via a *local variable*](#parent-to-child-local-var)
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[Parent calls a *ViewChild*](#parent-to-view-child)
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[Parent and children communicate via a service](#bidirectional-service)
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:marked
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**See the <live-example name="cb-component-communication"></live-example>**.
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@ -36,30 +29,30 @@ include ../_util-fns
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<a id="parent-to-child"></a>
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:marked
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## Pass data from parent to child with input binding
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`HeroChildComponent` has two ***input properties***,
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`HeroChildComponent` has two ***input properties***,
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typically adorned with [@Input decorations](../guide/template-syntax.html#inputs-outputs).
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+makeExample('cb-component-communication/ts/src/app/hero-child.component.ts')
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:marked
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The second `@Input` aliases the child component property name `masterName` as `'master'`.
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The `HeroParentComponent` nests the child `HeroChildComponent` inside an `*ngFor` repeater,
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binding its `master` string property to the child's `master` alias
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The `HeroParentComponent` nests the child `HeroChildComponent` inside an `*ngFor` repeater,
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binding its `master` string property to the child's `master` alias,
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and each iteration's `hero` instance to the child's `hero` property.
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+makeExample('cb-component-communication/ts/src/app/hero-parent.component.ts')
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:marked
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The running application displays three heroes:
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figure.image-display
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img(src="/resources/images/cookbooks/component-communication/parent-to-child.png" alt="Parent-to-child")
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:marked
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### Test it
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E2E test that all children were instantiated and displayed as expected:
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+makeExample('cb-component-communication/e2e-spec.ts', 'parent-to-child')
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:marked
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@ -71,10 +64,10 @@ figure.image-display
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## Intercept input property changes with a setter
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Use an input property setter to intercept and act upon a value from the parent.
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The setter of the `name` input property in the child `NameChildComponent`
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trims the whitespace from a name and replaces an empty value with default text.
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The setter of the `name` input property in the child `NameChildComponent`
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trims the whitespace from a name and replaces an empty value with default text.
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+makeExample('cb-component-communication/ts/src/app/name-child.component.ts')
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:marked
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@ -84,12 +77,12 @@ figure.image-display
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figure.image-display
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img(src="/resources/images/cookbooks/component-communication/setter.png" alt="Parent-to-child-setter")
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:marked
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### Test it
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E2E tests of input property setter with empty and non-empty names:
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+makeExample('cb-component-communication/e2e-spec.ts', 'parent-to-child-setter')
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:marked
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@ -98,36 +91,36 @@ figure.image-display
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.l-main-section
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<a id="parent-to-child-on-changes"></a>
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:marked
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## Intercept input property changes with *ngOnChanges*
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## Intercept input property changes with *ngOnChanges()*
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Detect and act upon changes to input property values with the `ngOnChanges` method of the `OnChanges` lifecycle hook interface.
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Detect and act upon changes to input property values with the `ngOnChanges()` method of the `OnChanges` lifecycle hook interface.
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.l-sub-section
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:marked
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May prefer this approach to the property setter when watching multiple, interacting input properties.
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Learn about `ngOnChanges` in the [LifeCycle Hooks](../guide/lifecycle-hooks.html) chapter.
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You may prefer this approach to the property setter when watching multiple, interacting input properties.
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Learn about `ngOnChanges()` in the [LifeCycle Hooks](../guide/lifecycle-hooks.html) chapter.
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:marked
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This `VersionChildComponent` detects changes to the `major` and `minor` input properties and composes a log message reporting these changes:
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+makeExample('cb-component-communication/ts/src/app/version-child.component.ts')
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:marked
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The `VersionParentComponent` supplies the `minor` and `major` values and binds buttons to methods that change them.
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+makeExample('cb-component-communication/ts/src/app/version-parent.component.ts')
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:marked
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Here's the output of a button-pushing sequence:
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figure.image-display
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img(src="/resources/images/cookbooks/component-communication/parent-to-child-on-changes.gif" alt="Parent-to-child-onchanges")
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:marked
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### Test it
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Test that ***both*** input properties are set initially and that button clicks trigger
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Test that ***both*** input properties are set initially and that button clicks trigger
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the expected `ngOnChanges` calls and values:
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+makeExample('cb-component-communication/e2e-spec.ts', 'parent-to-child-onchanges')
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:marked
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@ -138,35 +131,35 @@ figure.image-display
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:marked
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## Parent listens for child event
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The child component exposes an `EventEmitter` property with which it `emits` events when something happens.
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The child component exposes an `EventEmitter` property with which it `emits` events when something happens.
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The parent binds to that event property and reacts to those events.
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The child's `EventEmitter` property is an ***output property***,
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The child's `EventEmitter` property is an ***output property***,
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typically adorned with an [@Output decoration](../guide/template-syntax.html#inputs-outputs)
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as seen in this `VoterComponent`:
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+makeExample('cb-component-communication/ts/src/app/voter.component.ts')
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:marked
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Clicking a button triggers emission of a `true` or `false` (the boolean *payload*).
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The parent `VoteTakerComponent` binds an event handler (`onVoted`) that responds to the child event
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payload (`$event`) and updates a counter.
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Clicking a button triggers emission of a `true` or `false`, the boolean *payload*.
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The parent `VoteTakerComponent` binds an event handler called `onVoted()` that responds to the child event
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payload `$event` and updates a counter.
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+makeExample('cb-component-communication/ts/src/app/votetaker.component.ts')
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:marked
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The framework passes the event argument — represented by `$event` — to the handler method,
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The framework passes the event argument—represented by `$event`—to the handler method,
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and the method processes it:
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figure.image-display
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img(src="/resources/images/cookbooks/component-communication/child-to-parent.gif" alt="Child-to-parent")
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:marked
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### Test it
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Test that clicking the *Agree* and *Disagree* buttons update the appropriate counters:
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+makeExample('cb-component-communication/e2e-spec.ts', 'child-to-parent')
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:marked
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@ -175,33 +168,33 @@ figure.image-display
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.l-main-section#parent-to-child-local-var
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:marked
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## Parent interacts with child via *local variable*
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A parent component cannot use data binding to read child properties
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or invoke child methods. We can do both
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or invoke child methods. You can do both
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by creating a template reference variable for the child element
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and then reference that variable *within the parent template*
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as seen in the following example.
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<a id="countdown-timer-example"></a>
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We have a child `CountdownTimerComponent` that repeatedly counts down to zero and launches a rocket.
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The following is a child `CountdownTimerComponent` that repeatedly counts down to zero and launches a rocket.
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It has `start` and `stop` methods that control the clock and it displays a
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countdown status message in its own template.
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+makeExample('cb-component-communication/ts/src/app/countdown-timer.component.ts')
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:marked
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Let's see the `CountdownLocalVarParentComponent` that hosts the timer component.
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The `CountdownLocalVarParentComponent` that hosts the timer component is as follows:
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+makeExample('cb-component-communication/ts/src/app/countdown-parent.component.ts', 'lv')
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:marked
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The parent component cannot data bind to the child's
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The parent component cannot data bind to the child's
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`start` and `stop` methods nor to its `seconds` property.
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We can place a local variable (`#timer`) on the tag (`<countdown-timer>`) representing the child component.
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That gives us a reference to the child component itself and the ability to access
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You can place a local variable, `#timer`, on the tag `<countdown-timer>` representing the child component.
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That gives you a reference to the child component and the ability to access
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*any of its properties or methods* from within the parent template.
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In this example, we wire parent buttons to the child's `start` and `stop` and
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use interpolation to display the child's `seconds` property.
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This example wires parent buttons to the child's `start` and `stop` and
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uses interpolation to display the child's `seconds` property.
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Here we see the parent and child working together.
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figure.image-display
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a(id="countdown-tests")
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:marked
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### Test it
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Test that the seconds displayed in the parent template
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match the seconds displayed in the child's status message.
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Test also that clicking the *Stop* button pauses the countdown timer:
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+makeExample('cb-component-communication/e2e-spec.ts', 'countdown-timer-tests')
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:marked
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[Back to top](#top)
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.l-main-section
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<a id="parent-to-view-child"></a>
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:marked
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## Parent calls a *ViewChild*
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The *local variable* approach is simple and easy. But it is limited because
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## Parent calls an _@ViewChild()_
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The *local variable* approach is simple and easy. But it is limited because
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the parent-child wiring must be done entirely within the parent template.
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The parent component *itself* has no access to the child.
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We can't use the *local variable* technique if an instance of the parent component *class*
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You can't use the *local variable* technique if an instance of the parent component *class*
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must read or write child component values or must call child component methods.
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When the parent component *class* requires that kind of access,
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we ***inject*** the child component into the parent as a *ViewChild*.
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We'll illustrate this technique with the same [Countdown Timer](#countdown-timer-example) example.
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We won't change its appearance or behavior.
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When the parent component *class* requires that kind of access,
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***inject*** the child component into the parent as a *ViewChild*.
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The following example illustrates this technique with the same
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[Countdown Timer](#countdown-timer-example) example.
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Neither its appearance nor its behavior will change.
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The child [CountdownTimerComponent](#countdown-timer-example) is the same as well.
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.l-sub-section
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:marked
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We are switching from the *local variable* to the *ViewChild* technique
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solely for the purpose of demonstration.
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The switch from the *local variable* to the *ViewChild* technique
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is solely for the purpose of demonstration.
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:marked
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Here is the parent, `CountdownViewChildParentComponent`:
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+makeExample('cb-component-communication/ts/src/app/countdown-parent.component.ts', 'vc')
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:marked
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It takes a bit more work to get the child view into the parent component *class*.
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We import references to the `ViewChild` decorator and the `AfterViewInit` lifecycle hook.
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We inject the child `CountdownTimerComponent` into the private `timerComponent` property
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First, you have to import references to the `ViewChild` decorator and the `AfterViewInit` lifecycle hook.
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Next, inject the child `CountdownTimerComponent` into the private `timerComponent` property
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via the `@ViewChild` property decoration.
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The `#timer` local variable is gone from the component metadata.
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Instead we bind the buttons to the parent component's own `start` and `stop` methods and
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The `#timer` local variable is gone from the component metadata.
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Instead, bind the buttons to the parent component's own `start` and `stop` methods and
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present the ticking seconds in an interpolation around the parent component's `seconds` method.
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These methods access the injected timer component directly.
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The `ngAfterViewInit` lifecycle hook is an important wrinkle.
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The `ngAfterViewInit()` lifecycle hook is an important wrinkle.
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The timer component isn't available until *after* Angular displays the parent view.
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So we display `0` seconds initially.
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So it displays `0` seconds initially.
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Then Angular calls the `ngAfterViewInit` lifecycle hook at which time it is *too late*
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to update the parent view's display of the countdown seconds.
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Angular's unidirectional data flow rule prevents us from updating the parent view's
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in the same cycle. We have to *wait one turn* before we can display the seconds.
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We use `setTimeout` to wait one tick and then revise the `seconds` method so
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Angular's unidirectional data flow rule prevents updating the parent view's
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in the same cycle. The app has to *wait one turn* before it can display the seconds.
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Use `setTimeout()` to wait one tick and then revise the `seconds()` method so
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that it takes future values from the timer component.
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### Test it
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Use [the same countdown timer tests](#countdown-tests) as before.
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:marked
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[Back to top](#top)
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.l-main-section
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<a id="bidirectional-service"></a>
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:marked
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@ -284,47 +278,47 @@ a(id="countdown-tests")
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A parent component and its children share a service whose interface enables bi-directional communication
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*within the family*.
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The scope of the service instance is the parent component and its children.
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The scope of the service instance is the parent component and its children.
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Components outside this component subtree have no access to the service or their communications.
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This `MissionService` connects the `MissionControlComponent` to multiple `AstronautComponent` children.
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+makeExample('cb-component-communication/ts/src/app/mission.service.ts')
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:marked
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The `MissionControlComponent` both provides the instance of the service that it shares with its children
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(through the `providers` metadata array) and injects that instance into itself through its constructor:
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+makeExample('cb-component-communication/ts/src/app/missioncontrol.component.ts')
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:marked
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The `AstronautComponent` also injects the service in its constructor.
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Each `AstronautComponent` is a child of the `MissionControlComponent` and therefore receives its parent's service instance:
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+makeExample('cb-component-communication/ts/src/app/astronaut.component.ts')
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.l-sub-section
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:marked
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Notice that we capture the `subscription` and unsubscribe when the `AstronautComponent` is destroyed.
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Notice that this example captures the `subscription` and `unsubscribe()` when the `AstronautComponent` is destroyed.
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This is a memory-leak guard step. There is no actual risk in this app because the
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lifetime of a `AstronautComponent` is the same as the lifetime of the app itself.
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That *would not* always be true in a more complex application.
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We do not add this guard to the `MissionControlComponent` because, as the parent,
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You don't add this guard to the `MissionControlComponent` because, as the parent,
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it controls the lifetime of the `MissionService`.
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:marked
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The *History* log demonstrates that messages travel in both directions between
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the parent `MissionControlComponent` and the `AstronautComponent` children,
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facilitated by the service:
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figure.image-display
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img(src="/resources/images/cookbooks/component-communication/bidirectional-service.gif" alt="bidirectional-service")
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:marked
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### Test it
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Tests click buttons of both the parent `MissionControlComponent` and the `AstronautComponent` children
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and verify that the *History* meets expectations:
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and verify that the history meets expectations:
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+makeExample('cb-component-communication/e2e-spec.ts', 'bidirectional-service')
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:marked
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