Mise en œuvre du routage fédéré
Mettez en œuvre un routage dans lequel chaque micro-interface gère ses propres routes, intégrées à un routeur global.
Mise en œuvre du routage fédéré est une leçon Micro Frontends Architecture with Module Federation gratuite sur CoddyKit. Ceci est la leçon 2 sur 4. Tu peux lire la leçon complète ci-dessous gratuitement — puis la pratiquer en direct dans le navigateur avec un éditeur de code intégré et un tuteur IA 24/7. Elle fait partie du parcours d'apprentissage Micro Frontends Architecture with Module Federation, et ta progression se synchronise sur le web et l'application CoddyKit. Le cours Micro Frontends Architecture with Module Federation comprend 4 leçons au total.
Certaines parties de cette leçon n'ont pas encore été traduites et s'affichent en anglais.
What is Federated Routing?
In a Micro Frontend (MFE) architecture, federated routing means each individual MFE is responsible for managing its own specific routes. Instead of one central application dictating all routes, each MFE declares its own pathways.
This approach gives teams more autonomy, allowing them to develop and deploy routing logic independently without tightly coupling to a main host application's routing system.
Benefits of Federated Routes
Federated routing offers several key advantages:
- Autonomy: MFE teams control their own navigation.
- Independent Deployment: Changes to an MFE's routes don't require redeploying the entire host app.
- Scalability: Easier to manage routing logic as the number of MFEs grows.
- Technology Agnostic: Different MFEs can use different routing libraries.
Core Principle: Route Ownership
The fundamental idea behind federated routing is that each Micro Frontend publishes its own set of routes. Think of it like a mini-application within the larger system, responsible for its internal navigation structure.
The host application then acts as an aggregator, discovering and integrating these MFE-owned routes into a single, cohesive routing experience for the user.
MFE Defining Local Routes
Here's how a Micro Frontend (let's call it "MFE A") might define its internal routes. These are specific paths that MFE A is responsible for rendering.
We're using a simple array structure to represent routes, where each route has a path and a component or view it should render.
// mfe-a-routes.js
// This MFE owns routes starting with '/app-a'
export const mfeARoutes = [
{
path: '/app-a',
component: 'MFE_A_Dashboard'
},
{
path: '/app-a/profile',
component: 'MFE_A_UserProfile'
}
];Another MFE's Routes
Similarly, another Micro Frontend ("MFE B") will define its own set of routes. Notice how its paths are distinct, often prefixed to avoid conflicts, ensuring clear ownership.
This separation allows MFE A and MFE B to evolve their navigation independently.
// mfe-b-routes.js
// This MFE owns routes starting with '/app-b'
export const mfeBRoutes = [
{
path: '/app-b',
component: 'MFE_B_HomePage'
},
{
path: '/app-b/settings',
component: 'MFE_B_SettingsPage'
}
];Host Aggregates MFE Routes
The host application's role is to act as the central orchestrator. It needs to discover and import the route definitions provided by each Micro Frontend.
Using Module Federation, these route definitions can be exposed by remote MFEs and consumed by the host, effectively building a global route map from distributed sources.
Integrating into a Global Router
The host application then takes all the aggregated routes and integrates them into its own global router instance. This example simulates how a host app might load and process routes from different MFEs to handle navigation.
Try changing the currentPath variable in the code and run it!
// mfe-a-routes.js (Simulated Remote MFE)
export const mfeARoutes = [
{ path: '/app-a', component: 'MFE_A_Dashboard' },
{ path: '/app-a/profile', component: 'MFE_A_UserProfile' }
];
// mfe-b-routes.js (Simulated Remote MFE)
export const mfeBRoutes = [
{ path: '/app-b', component: 'MFE_B_HomePage' },
{ path: '/app-b/settings', component: 'MFE_B_SettingsPage' }
];
// host-app.js (Main Application Entry Point)
// In a real app, these would be dynamically imported
// via Module Federation.
const allFederatedRoutes = [
...mfeARoutes,
...mfeBRoutes
];
function globalRouter(currentPath) {
console.log(`Attempting to navigate to: ${currentPath}`);
const matchedRoute = allFederatedRoutes.find(
route => route.path === currentPath
);
if (matchedRoute) {
console.log(`Match found! Rendering: ${matchedRoute.component}`);
} else {
console.log(`No route found for: ${currentPath}. Showing 404.`);
}
}
// Simulate user navigation
console.log("--- Global Routing Simulation ---");
globalRouter('/app-a');
globalRouter('/app-b/settings');
globalRouter('/app-a/profile');
globalRouter('/unknown-path');
globalRouter('/app-b');Seamless Cross-MFE Navigation
Once the host's global router has integrated all federated routes, navigation between different Micro Frontends becomes seamless. From the user's perspective, it feels like a single, unified application.
When a user clicks a link to /app-b/settings, the global router identifies that this path belongs to MFE B and delegates the rendering or activation of MFE B accordingly.
Avoiding Route Conflicts
With multiple MFEs defining routes, conflicts can arise if two MFEs define the same path (e.g., both have a /dashboard route).
Common strategies to prevent this include:
- Namespacing: Prefixing MFE routes (e.g.,
/mfea/dashboard,/mfeb/dashboard). - Unique Paths: Ensuring each MFE's routes are inherently unique.
- Host Override: Allowing the host to prioritize or remap conflicting routes.
Check Your Understanding
Imagine you have a host application integrating routes from two Micro Frontends, MFE-A and MFE-B. MFE-A defines /products and /products/:id. MFE-B defines /cart and /checkout.
Which of the following best describes the host application's role in this federated routing setup?
Recap: Federated Routing
You've learned about federated routing, where each Micro Frontend owns and defines its own routes. We saw how a host application aggregates these routes to create a unified navigation experience.
- Each MFE declares its own routes.
- Host app collects and integrates MFE routes.
- Ensures MFE autonomy and independent deployment.
- Namespacing helps prevent conflicts.
This approach is crucial for large-scale MFE systems, balancing independence with a consistent user experience.
Questions Fréquemment Posées
La leçon « Mise en œuvre du routage fédéré » est-elle gratuite ?
Oui — le texte complet de « Mise en œuvre du routage fédéré » est gratuit à lire ici sur le web. Pour la pratiquer de manière interactive (un éditeur de code intégré et un tuteur IA 24/7) et déverrouiller le reste du cours Micro Frontends Architecture with Module Federation, passe à CoddyKit PRO. Le cours Micro Frontends Architecture with Module Federation comprend 4 leçons au total.
Qu'est-ce que j'apprendrai dans « Mise en œuvre du routage fédéré » ?
Mettez en œuvre un routage dans lequel chaque micro-interface gère ses propres routes, intégrées à un routeur global. Tu pratiques Micro Frontends Architecture with Module Federation avec du code pratique que tu exécutes directement dans le navigateur, et un tuteur IA 24/7 répond à tes questions au fur et à mesure que tu avances dans la leçon.
Dois-je avoir de l'expérience pour commencer Micro Frontends Architecture with Module Federation ?
Aucune expérience préalable n'est requise. Micro Frontends Architecture with Module Federation sur CoddyKit est structuré pour les débutants jusqu'aux apprenants avancés, donc tu peux commencer ici ou depuis le début et avancer à ton rythme. Ceci est la leçon 2 sur 4.
Combien de temps prend la leçon « Mise en œuvre du routage fédéré » ?
La plupart des leçons CoddyKit prennent environ 5–10 minutes. Chacune est courte et interactive, tu progresses régulièrement et tu repiques exactement où tu t'es arrêté sur le web et l'app.
Peux-tu écrire et exécuter du code dans cette leçon Micro Frontends Architecture with Module Federation ?
Oui. Chaque leçon Micro Frontends Architecture with Module Federation inclut un éditeur de code intégré, tu écris et exécutes du vrai code directement dans ton navigateur et tu reçois des retours IA instantanés — aucune configuration locale requise.
Toutes les leçons de ce cours
- Stratégie de routage centralisé
- Mise en œuvre du routage fédéré
- Liens profonds et gestion des URL
- Gérer la navigation imbriquée et interapplications