In this lesson you will learn shared dependencies in single-spa, why it matters within shared dependencies, and how to use it correctly with clear, copy-ready examples.
Shared Dependencies Overview
Shared Dependencies lets you structure single-spa work so it stays readable, testable, and easy to scale. Instead of ad-hoc code, you follow a clear pattern that other developers can recognise immediately.
The key is to keep shared dependencies focused and predictable. Start from the minimal example here, then layer in only the complexity your feature actually needs.
// shared utility module exposed via the import map
export const authService = {
getToken: () => localStorage.getItem('token'),
};
// consumed by any micro frontend
import { authService } from '@org/utils';
Shared utility modules provide cross-app services like auth without tight coupling.
Start from a minimal Shared Dependencies example and grow it only as needed.
Keep configuration explicit so Shared Dependencies behaves the same in every environment.
Name things clearly so teammates understand your Shared Dependencies at a glance.
Add tests around Shared Dependencies early to lock in expected behaviour.
Single-SPA Cheatsheet
Core single-spa APIs related to shared dependencies.
API
Example
Purpose
registerApplication
registerApplication({ name, app, activeWhen })
Register a micro frontend
activeWhen
activeWhen: ['/checkout']
Route ownership
start
start()
Begin routing
bootstrap
export async function bootstrap()
One-time setup
mount
export async function mount(props)
Render the app
unmount
export async function unmount(props)
Clean up the app
import map
systemjs-importmap
Locate app bundles
How Shared Dependencies Works in Single-SPA
Shared Dependencies is part of how single-spa lets multiple applications — even in different frameworks — coexist on one page. A root config registers each app and controls when it is active.
Shared utility modules provide cross-app services like auth without tight coupling.
A root config registers apps and calls start().
Each app exports bootstrap, mount, and unmount lifecycles.
activeWhen decides which routes each app owns.
Import maps resolve each app's bundle at runtime.
Practical Guidance for Shared Dependencies
For reliable micro frontends, shared dependencies should isolate failures and keep shared state minimal. Let each team own its app end to end while agreeing on a few shared contracts.
Concern
Recommendation
Isolation
One app's crash should not break others
Shared state
Prefer shared utility modules over globals
Routing
Keep activeWhen rules explicit and non-overlapping
Deployment
Release via import-map updates per app
Common Mistakes
Copying shared dependencies snippets without understanding what each line does.
Skipping error handling and edge cases when wiring up shared dependencies.
Leaving shared dependencies untested, so regressions slip into production.
Over-engineering shared dependencies before you actually need the extra flexibility.
Key Takeaways
Shared Dependencies is a core part of working effectively with single-spa.
Start small and keep shared dependencies focused on a single responsibility.
Apply consistent patterns so shared dependencies scales across your project.
Test and document shared dependencies to keep it maintainable over time.
Pro Tip
When you get stuck on shared dependencies, reduce it to the smallest reproducible example first — most single-spa issues become obvious once the noise is gone.
You now understand shared dependencies in single-spa and how to apply it in real projects. Next, continue with Dependency Management to keep building your skills.