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[DOC] reorganize and update documentation to owl 2
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@@ -4,8 +4,11 @@
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- [Overview](#overview)
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- [Definition](#definition)
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- [Good Practices](#good-practices)
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- [Binding function props](#binding-function-props)
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- [Dynamic Props](#dynamic-props)
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- [Default Props](#default-props)
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- [Props validation](#props-validation)
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- [Good Practices](#good-practices)
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## Overview
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@@ -38,8 +41,6 @@ The `props` object is made of every attributes defined on the template, with the
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following exceptions:
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- every attribute starting with `t-` are not props (they are QWeb directives),
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- `style` and `class` attributes are excluded as well (they are applied by Owl on
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the root element of the component).
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In the following example:
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@@ -47,7 +48,6 @@ In the following example:
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<div>
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<ComponentA a="state.a" b="'string'"/>
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<ComponentB t-if="state.flag" model="model"/>
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<ComponentC style="color:red;" class="left-pane" />
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</div>
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```
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@@ -55,7 +55,182 @@ the `props` object contains the following keys:
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- for `ComponentA`: `a` and `b`,
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- for `ComponentB`: `model`,
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- for `ComponentC`: empty object
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## Binding function props
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It is common to have the need to pass a callback as a prop. Since Owl components
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are class based, the callback frequently needs to be bound to its owner component.
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So, one can do this:
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```js
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class SomeComponent extends Component {
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static template = xml`
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<div>
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<Child callback="doSomething"/>
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</div>`;
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setup() {
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this.doSomething = this.doSomething.bind(this);
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}
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doSomething() {
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// ...
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}
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}
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```
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However, this is such a common use case that Owl provides a special suffix to do
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just that: `.bind`. This looks like this:
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```js
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class SomeComponent extends Component {
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static template = xml`
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<div>
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<Child callback.bind="doSomething"/>
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</div>`;
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doSomething() {
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// ...
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}
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}
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```
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## Dynamic Props
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The `t-props` directive can be used to specify totally dynamic props:
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```xml
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<div t-name="ParentComponent">
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<Child t-props="some.obj"/>
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</div>
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```
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```js
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class ParentComponent {
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static components = { Child };
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some = { obj: { a: 1, b: 2 } };
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}
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```
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## Default Props
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If the static `defaultProps` property is defined, it will be used to complete
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props received by the parent, if missing.
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```js
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class Counter extends owl.Component {
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static defaultProps = {
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initialValue: 0,
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};
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...
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}
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```
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In the example above, the `initialValue` props is now by default set to 0.
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## Props Validation
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As an application becomes complex, it may be quite unsafe to define props in an informal way. This leads to two issues:
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- hard to tell how a component should be used, by looking at its code.
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- unsafe, it is easy to send wrong props into a component, either by refactoring a component, or one of its parents.
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A props type system solves both issues, by describing the types and shapes
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of the props. Here is how it works in Owl:
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- `props` key is a static key (so, different from `this.props` in a component instance)
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- it is optional: it is ok for a component to not define a `props` key.
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- props are validated whenever a component is created/updated
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- props are only validated in `dev` mode (see [how to configure an app](app.md#configuration))
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- if a key does not match the description, an error is thrown
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- it validates keys defined in (static) `props`. Additional keys given by the
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parent will cause an error.
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For example:
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```js
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class ComponentA extends owl.Component {
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static props = ['id', 'url'];
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...
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}
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class ComponentB extends owl.Component {
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static props = {
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count: {type: Number},
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messages: {
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type: Array,
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element: {type: Object, shape: {id: Boolean, text: String }
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},
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date: Date,
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combinedVal: [Number, Boolean]
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};
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...
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}
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```
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- it is an object or a list of strings
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- a list of strings is a simplified props definition, which only lists the name
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of the props. Also, if the name ends with `?`, it is considered optional.
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- all props are by default required, unless they are defined with `optional: true`
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(in that case, validation is only done if there is a value)
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- valid types are: `Number, String, Boolean, Object, Array, Date, Function`, and all
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constructor functions (so, if you have a `Person` class, it can be used as a type)
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- arrays are homogeneous (all elements have the same type/shape)
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For each key, a `prop` definition is either a boolean, a constructor, a list of constructors, or an object:
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- a boolean: indicate that the props exists, and is mandatory.
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- a constructor: this should describe the type, for example: `id: Number` describe
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the props `id` as a number
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- a list of constructors. In that case, this means that we allow more than one
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type. For example, `id: [Number, String]` means that `id` can be either a string
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or a number.
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- an object. This makes it possible to have more expressive definition. The following sub keys are then allowed (but not mandatory):
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- `type`: the main type of the prop being validated
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- `element`: if the type was `Array`, then the `element` key describes the type of each element in the array. If it is not set, then we only validate the array, not its elements,
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- `shape`: if the type was `Object`, then the `shape` key describes the interface of the object. If it is not set, then we only validate the object, not its elements,
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- `validate`: this is a function which should return a boolean to determine if
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the value is valid or not. Useful for custom validation logic.
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Examples:
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```js
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// only the existence of those 3 keys is documented
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static props = ['message', 'id', 'date'];
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```
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```js
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// size is optional
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static props = ['message', 'size?'];
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```
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```js
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static props = {
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messageIds: {type: Array, element: Number}, // list of number
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otherArr: {type: Array}, // just array. no validation is made on sub elements
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otherArr2: Array, // same as otherArr
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someObj: {type: Object}, // just an object, no internal validation
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someObj2: {
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type: Object,
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shape: {
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id: Number,
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name: {type: String, optional: true},
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url: String
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]}, // object, with keys id (number), name (string, optional) and url (string)
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someFlag: Boolean, // a boolean, mandatory (even if `false`)
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someVal: [Boolean, Date], // either a boolean or a date
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otherValue: true, // indicates that it is a prop
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kindofsmallnumber: {
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type: Number,
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validate: n => (0 <= n && n <= 10)
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},
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size: {
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validate: e => ["small", "medium", "large"].includes(e)
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},
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};
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```
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## Good Practices
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@@ -78,20 +253,3 @@ sent to the parent (for example, with an event).
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Any value can go in a props. Strings, objects, classes, or even callbacks could
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be given to a child component (but then, in the case of callbacks, communicating
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with events seems more appropriate).
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## Dynamic Props
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The `t-props` directive can be used to specify totally dynamic props:
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```xml
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<div t-name="ParentComponent">
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<Child t-props="some.obj"/>
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</div>
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```
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```js
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class ParentComponent {
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static components = { Child };
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some = { obj: { a: 1, b: 2 } };
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}
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```
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