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[DOC] large refactoring, add section on starting project
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# Comparison with Vue/React
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OWL, React and Vue have the same main feature: they allow developers to build
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declarative user interfaces. To do that, all these frameworks uses a virtual dom. However, there are still obviously many differences.
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In this page, we try to highlight some of these differences. Obviously, a lot of
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effort was done to be fair. However, if you disagree with some of the points
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discussed, feel free to open an issue/submit a PR to correct this text.
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## Content
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- [Size](#size)
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- [Class Based](#class-based)
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- [Tooling/Build Step](#toolingbuild-step)
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- [Templating](#templating)
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- [Asynchronous rendering](#asynchronous-rendering)
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- [Reactiveness](#reactiveness)
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- [State Management](#state-management)
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- [Hooks](#hooks)
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## Size
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OWL is intended to be small and to work at a slightly lower level of abstraction
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than React and Vue. Also, jQuery is not the same kind of framework, but it is interesting to compare.
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| Framework | Size (minified, gzipped) |
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| ------------------------ | ------------------------ |
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| OWL | 18kb |
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| Vue + VueX | 30kb |
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| Vue + VueX + Vue Router | 39kb |
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| React + ReactDOM + Redux | 40kb |
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| jQuery | 30kb |
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Note that those comparisons are not entirely fair, because we do not compare
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the same exact set of features. For example, VueX and Vue Router support more
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advanced use cases.
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## Class Based
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Both React and Vue moved away from defining components with classes. They prefer
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a more functional approach, in particular, with the new `hooks` mechanisms.
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This has some advantages and disadvantages. But the end result is that React
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and Vue both offers multiple different ways of defining new components. In
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contrast, Owl has only one mechanism: class-based components. We believe that Owl
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components are fast enough for all our usecases, and making it as simple as
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possible for developers is more valuable (for us).
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Also, functions or class based components are more than just syntax. Functions
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comes with a mindset of composition and class are about inheritance. Clearly,
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both of these are important mechanisms for reusing code. Also, one does not
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exclude the other.
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It certainly looks like the world of UI frameworks is moving toward composition,
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for many very good reasons. Owl is still good at composition (for example,
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Owl supports slots, which is the primary mechanism to make generic reusable
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components). But it can also use inheritance (and this is very important since
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templates can also be inherited with `xpaths` transformations).
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## Tooling/Build step
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OWL is designed to be easy to use in a standalone way. For various reasons,
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Odoo does not want to rely on standard web tools (such as webpack), and OWL can
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be used by simply adding a script tag to a page.
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```html
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<script src="owl.min.js" />
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```
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In comparison, React encourages using JSX, which necessitate a build step, and
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most Vue applications uses single file components, which also necessitate a build step.
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On the flipside, external tooling may make it harder to use in some case, but it
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also brings a lot of benefits. And React/Vue have both a large ecosystem.
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Note that since Owl is not dependant on any external tool nor libraries, it is
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very easy to integrate into any build toolchain. Also, since we cannot rely on
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additional tools, we made a lot of effort to make the most of the web platform.
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For example, Owl uses the standard `xml` parser that comes with every browser.
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Because of that, Owl did not have to write its own template parser. Another
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example is the [`xml`](../reference/tags.md#xml-tag) tag helper function, which makes use of
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native template literals to allow in a natural way to write `xml` templates
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directly in the javascript code. This can be easily integrated with editor
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plugins to have autocompletion inside the template.
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## Templating
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OWL uses its own QWeb engine, which compiles templates on the
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frontend, as they are needed. This is extremely convenient for our use case, in
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particular because templates are described in XML files, and can be modified by
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XPaths. Since Odoo is at its heart a modular application, this is an important
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feature for us.
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```xml
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<div>
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<button t-on-click="increment">Click Me! [<t t-esc="state.value"/>]</button>
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</div>
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```
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Vue is actually kind of similar. Its template language is kind of close to QWeb,
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with the `v` replaced by the `t`. However, it is also more fully featured. For
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example, Vue templates have slots, or event modifiers. A large difference is that
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most Vue applications will need to be built ahead of time, to compile the templates
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into javascript functions. Note that Vue has a separate build which includes the
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template compiler.
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In contrast, most React applications do not use a templating language, but write
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some JSX code, which is precompiled into plain JavaScript by a build step. This
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example is done with the (kind of outdated) React class system:
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```jsx
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class Clock extends React.Component {
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render() {
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return (
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<div>
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<h1>Hello, world!</h1>
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<h2>It is {this.props.date.toLocaleTimeString()}.</h2>
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</div>
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);
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}
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}
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```
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This has the advantage of having the full power of Javascript, but is less
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structured than a template language. Note that the tooling is quite impressive:
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there is a syntax highlighter for jsx here on github!
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By comparison, here is the equivalent Owl component, written with the
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[`xml`](../reference/tags.md#xml-tag) tag helper:
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```js
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class Clock extends Component {
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static template = xml`
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<div>
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<h1>Hello, world!</h1>
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<h2>It is {props.date.toLocaleTimeString()}.</h2>
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</div>
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`;
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}
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```
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## Asynchronous Rendering
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This is actually a big difference between OWL and React/Vue: components in OWL
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are totally asynchronous. They have two asynchronous hooks in their lifecycle:
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- `willStart` (before the component starts rendering)
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- `willUpdateProps` (before new props are set)
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Both these methods can be implemented and return a promise. The rendering will
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then wait for these promises to be completed before patching the DOM. This is
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useful for some use cases: for example, a component may want to fetch an external
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library (a calendar component may need a specialized calendar rendering library),
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in its willStart hook.
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```javascript
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class MyCalendarComponent extends owl.Component {
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...
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willStart() {
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return utils.lazyLoad('static/libs/fullcalendar/fullcalendar.js');
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}
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...
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}
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```
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This may be dangerous (to stop the rendering waiting for the network), but it is
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extremely powerful as well, as demonstrated by the Odoo Web Client.
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Lazy loading static libraries can obviously be done with React/Vue, but it is
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more convoluted. For example, in Vue, you need to use a dynamic import keyword
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that needs to be transpiled at build time in order for the component to be loaded
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asynchronously (see [the documentation](https://vuejs.org/v2/guide/components-dynamic-async.html#Async-Components)).
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## Reactiveness
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React has a simple model: whenever the state changes, it is
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replaced with a new state (via the `setState` method). Then, the DOM is patched.
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This is simple, efficient, and a little bit awkward to write.
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Vue is a little bit different: it replace magically the properties in the state
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by getters/setters. With that, it can notify components whenever the state that
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they read was changed.
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Owl is closer to vue: it also tracks magically the state properties, but it does
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only increment an internal counter whenever it changes. Note that it is done
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with a `Proxy`, which means that it is totally transparent to the developers.
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Adding new keys is supported. Once any part of the state has been changed, a
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rendering is scheduled in the next microtask tick (promise queue).
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## State Management
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Managing the state of an application is a tricky issue. Many solutions have
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been proposed these last few years. It also depends on the kind of application we
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are talking about. A small application may not need much more than a simple
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object to contain its state.
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However, there are some common solutions for React and Vue: redux and vuex.
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Both of them are a centralized store that own the state, and they dictate how
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the state can be mutated.
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**Redux**
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In Redux, the state is mutated by reducers. Reducers are functions
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that modify the state by returning a different object:
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```javascript
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...
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switch (action.type) {
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case ADD_TODO: {
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const { id, content } = action.payload;
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return {
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...state,
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allIds: [...state.allIds, id],
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byIds: {
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...state.byIds,
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[id]: {
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content,
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completed: false
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}
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}
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};
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}
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```
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This is a little bit awkward to write, but this allows the component system to
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check if a part of the state was changed. This is exactly what is done by the
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`connect` function: it create a _connected_ component, which is subscribed to
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the state and triggers a rerender if some part of the state was modified.
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**VueX**
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VueX is based on a different principle: the state is mutated through
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some special functions (the mutations), which modify the state in place:
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```javascript
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function ({state}, payload) {
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const { id, content } = payload;
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const message = {id, content, completed: false};
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state.messages.push(message)
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}
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```
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This is simpler, but there is a little bit more happening behind the scene:
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each key from the state is silently replaced by getters and setters, and VueX
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keeps track of who get data, and retrigger a render when it was changed.
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**Owl**
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Owl store is a little bit like a mix of redux and vuex: it has actions (but not
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mutations), and like VueX, it keeps track of the state changes. However, it does
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not notify a component when the state changes. Instead, components need to connect
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to the store like in redux, with the `useStore` hook (see the [store documentation](../reference/store.md#connecting-a-component)).
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```javascript
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const actions = {
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increment({ state }, val) {
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state.counter.value += val;
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}
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};
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const state = {
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counter: { value: 0 }
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};
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const store = new owl.Store({ state, actions });
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class Counter extends Component {
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static template = xml`
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<button t-name="Counter" t-on-click="dispatch('increment')">
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Click Me! [<t t-esc="counter.value"/>]
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</button>`;
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counter = useStore(state => state.counter);
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dispatch = useDispatch();
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}
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Counter.env.store = store;
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const counter = new Counter();
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```
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## Hooks
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[Hooks](https://reactjs.org/docs/hooks-intro.html#motivation) recently took over
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the React world. They solve a lot of seemingly unconnected problems: attach
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reusable behavior to a component, in a composable way, extract stateful logic
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from a component or reuse stateful logic between component, without changing your
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component hierarchy.
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Here is an example of the React `useState` hook:
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```js
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import React, { useState } from "react";
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function Example() {
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// Declare a new state variable, which we'll call "count"
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const [count, setCount] = useState(0);
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return (
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<div>
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<p>You clicked {count} times</p>
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<button onClick={() => setCount(count + 1)}>Click me</button>
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</div>
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);
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}
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```
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Because of the way React designed the hooks API, they only work for functional
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components. But in that case, they really are powerful. Every major React library
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is in the process of redesigning their API with hooks (for example,
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[Redux](https://react-redux.js.org/next/api/hooks)).
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Vue 2 does not have hooks, but the Vue project is working on its next version,
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which will feature its new [composition API](https://vue-composition-api-rfc.netlify.com/).
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This work is based on the new ideas introduced by React hooks.
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From the way React and Vue introduce their hooks, it may look like hooks are not
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compatible with class components. However, this is not the case, as shown by
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Owl [hooks](../reference/hooks.md). They are inspired by both React and Vue. For example,
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the `useState` hook is named after React, but its API is closer to the `reactive`
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Vue hook.
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Here is what the `Counter` example above look like in Owl:
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```js
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import { Component, Owl } from "owl";
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import { xml } from "owl/tags";
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class Example extends Component {
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static template = xml`
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<div>
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<p>You clicked {count.value} times</p>
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<button t-on-click="increment">Click me</button>
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</div>`;
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count = useState({ value: 0 });
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increment() {
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this.state.value++;
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}
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}
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```
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Since the Owl framework had hooks from early in its life, its main APIs
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are designed to be interacted with hooks from the start. For example, the
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`Context` and `Store` abstractions.
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