setContext and getContext

The context API provides a mechanism for components to ‘talk’ to each other without passing around data and functions as props, or dispatching lots of events. It’s an advanced feature, but a useful one.

Take this example app using a Mapbox GL map. We’d like to display the markers, using the <MapMarker> component, but we don’t want to have to pass around a reference to the underlying Mapbox instance as a prop on each component.

There are two halves to the context API — setContext and getContext. If a component calls setContext(key, context), then any child component can retrieve the context with const context = getContext(key).

Let’s set the context first. In Map.svelte, import setContext from svelte and key from mapbox.js and call setContext:

  1. import { onMount, setContext } from 'svelte';
  2. import { mapbox, key } from './mapbox.js';
  3. setContext(key, {
  4. getMap: () => map
  5. });

The context object can be anything you like. Like lifecycle functions, setContext and getContext must be called during component initialisation; since map isn’t created until the component has mounted, our context object contains a getMap function rather than map itself.

On the other side of the equation, in MapMarker.svelte, we can now get a reference to the Mapbox instance:

  1. import { getContext } from 'svelte';
  2. import { mapbox, key } from './mapbox.js';
  3. const { getMap } = getContext(key);
  4. const map = getMap();

The markers can now add themselves to the map.

A more finished version of <MapMarker> would also handle removal and prop changes, but we’re only demonstrating context here.

Context keys

In mapbox.js you’ll see this line:

  1. const key = {};

We can use anything as a key — we could do setContext('mapbox', ...) for example. The downside of using a string is that different component libraries might accidentally use the same one; using an object literal means the keys are guaranteed not to conflict in any circumstance, even when you have multiple different contexts operating across many component layers.