Angular Dependency Injection
angular-dependency-injection
Use when building modular Angular applications requiring dependency injection with providers, injectors, and services.
SKILL.md
Full skill instructions
Angular Dependency Injection
Master Angular's dependency injection system for building modular, testable applications with proper service architecture.
DI Fundamentals
Angular's DI uses the inject() function (Angular 14+) as the preferred
injection mechanism — no constructor parameters needed:
import { Injectable, inject } from '@angular/core';
// Service injectable at root level
@Injectable({
providedIn: 'root'
})
export class UserService {
private users: User[] = [];
getUsers(): User[] {
return this.users;
}
addUser(user: User): void {
this.users.push(user);
}
}
// Standalone component injection via inject()
import { Component } from '@angular/core';
@Component({
selector: 'app-user-list',
standalone: true,
template: `
@for (user of users; track user.id) {
<div>{{ user.name }}</div>
}
`
})
export class UserListComponent {
private readonly userService = inject(UserService);
users = this.userService.getUsers();
}
Provider Types
useClass - Class Provider
import { Injectable, Provider, Component, inject } from '@angular/core';
// Interface
interface Logger {
log(message: string): void;
}
// Implementations
@Injectable()
export class ConsoleLogger implements Logger {
log(message: string): void {
console.log(message);
}
}
@Injectable()
export class FileLogger implements Logger {
log(message: string): void {
// Write to file
}
}
// Provider configuration
const loggerProvider: Provider = {
provide: Logger,
useClass: ConsoleLogger
};
// Standalone component — providers go here, not in NgModule
@Component({
selector: 'app-my-component',
standalone: true,
providers: [loggerProvider],
template: `...`
})
export class MyComponent {
private readonly logger = inject(Logger);
constructor() {
this.logger.log('Component initialized');
}
}
useValue - Value Provider
import { InjectionToken, Component, inject } from '@angular/core';
// Configuration object
export interface AppConfig {
apiUrl: string;
timeout: number;
retries: number;
}
export const APP_CONFIG = new InjectionToken<AppConfig>('app.config');
// Provider
const configProvider = {
provide: APP_CONFIG,
useValue: {
apiUrl: 'https://api.example.com',
timeout: 5000,
retries: 3
}
};
// bootstrapApplication (standalone)
bootstrapApplication(AppComponent, {
providers: [configProvider]
});
// Usage via inject()
export class ApiService {
private readonly config = inject(APP_CONFIG);
constructor() {
console.log(this.config.apiUrl);
}
}
useFactory - Factory Provider
import { Injectable, InjectionToken, inject } from '@angular/core';
export const API_URL = new InjectionToken<string>('api.url');
// Use inject() inside the factory — no deps array needed
const apiUrlProvider = {
provide: API_URL,
useFactory: () => {
const config = inject(AppConfig);
return config.production
? 'https://api.prod.example.com'
: 'https://api.dev.example.com';
}
};
// Complex factory — all deps resolved via inject()
const httpClientProvider = {
provide: HttpClient,
useFactory: () => {
const handler = inject(HttpHandler);
const logger = inject(Logger);
logger.log('Creating HTTP client');
return new HttpClient(handler);
}
};
useExisting - Alias Provider
import { Injectable, inject } from '@angular/core';
@Injectable({
providedIn: 'root'
})
export class NewLogger {
log(message: string): void {
console.log('[NEW]', message);
}
}
// Alias an abstract token to the concrete implementation
export abstract class Logger {
abstract log(message: string): void;
}
const loggerAlias: Provider = {
provide: Logger,
useExisting: NewLogger
};
// Usage
export class MyComponent {
private readonly logger = inject(Logger);
constructor() {
this.logger.log('Using aliased logger');
}
}
Injection Tokens
InjectionToken - Type-Safe Tokens
import { InjectionToken, inject } from '@angular/core';
// Primitive token
export const MAX_RETRIES = new InjectionToken<number>('max.retries', {
providedIn: 'root',
factory: () => 3 // Default value
});
// Object token
export interface FeatureFlags {
enableNewUI: boolean;
enableBeta: boolean;
}
export const FEATURE_FLAGS = new InjectionToken<FeatureFlags>(
'feature.flags',
{
providedIn: 'root',
factory: () => ({
enableNewUI: false,
enableBeta: false
})
}
);
// Usage via inject()
@Injectable()
export class ApiService {
private readonly maxRetries = inject(MAX_RETRIES);
private readonly flags = inject(FEATURE_FLAGS);
}
Hierarchical Injectors
Root Injector
// Singleton across entire app
@Injectable({
providedIn: 'root'
})
export class GlobalService {
private state = {};
}
Component Injector
@Injectable()
export class ComponentService {
private data = [];
}
@Component({
selector: 'app-my-component',
standalone: true,
template: '...',
providers: [ComponentService] // New instance per component
})
export class MyComponent {
private readonly service = inject(ComponentService);
}
// Each component instance gets its own service instance
Element Injector
@Directive({
selector: '[appHighlight]',
standalone: true,
providers: [DirectiveService]
})
export class HighlightDirective {
private readonly service = inject(DirectiveService);
}
ProvidedIn Options
// Root - singleton across entire app
@Injectable({
providedIn: 'root'
})
export class RootService {}
// Platform - shared across multiple apps
@Injectable({
providedIn: 'platform'
})
export class PlatformService {}
Optional and Scoped Injection
Use inject() options instead of @Optional, @Self, @SkipSelf, @Host:
import { inject } from '@angular/core';
export class MyService {
// @Optional() equivalent
private readonly logger = inject(Logger, { optional: true });
// @Self() equivalent — only from this component's injector
private readonly local = inject(LocalService, { self: true });
// @SkipSelf() equivalent — skip this injector, look up the tree
private readonly parent = inject(SharedService, { skipSelf: true });
// @Host() equivalent — stop at host element
private readonly host = inject(ParentComponent, { host: true });
// Combine options
readonly #dep = inject(Dep, {
optional: true,
self: true,
});
constructor() {
this.logger?.log('Service created');
}
}
Environment Providers (replaces ForRoot/ForChild)
Use makeEnvironmentProviders and provideX() functions instead of
NgModule.forRoot() / NgModule.forChild():
import { makeEnvironmentProviders, EnvironmentProviders } from '@angular/core';
export interface SharedConfig {
apiUrl: string;
}
export const SHARED_CONFIG = new InjectionToken<SharedConfig>('shared.config');
// Replace forRoot() with a provideX() function
export function provideShared(config: SharedConfig): EnvironmentProviders {
return makeEnvironmentProviders([
SharedService,
{
provide: SHARED_CONFIG,
useValue: config
}
]);
}
// In bootstrapApplication (app root)
bootstrapApplication(AppComponent, {
providers: [
provideShared({ apiUrl: 'https://api.example.com' }),
provideRouter(routes),
provideHttpClient()
]
});
// In lazy-loaded routes — child-scope providers
export const routes: Routes = [
{
path: 'feature',
loadComponent: () => import('./feature.component'),
providers: [FeatureScopedService]
}
];
Multi-Providers
import { InjectionToken, inject } from '@angular/core';
export const HTTP_INTERCEPTORS =
new InjectionToken<HttpInterceptor[]>('http.interceptors');
@Injectable()
export class AuthInterceptor implements HttpInterceptor {
intercept(req: HttpRequest<any>, next: HttpHandler) {
return next.handle(req);
}
}
@Injectable()
export class LoggingInterceptor implements HttpInterceptor {
intercept(req: HttpRequest<any>, next: HttpHandler) {
return next.handle(req);
}
}
// Register as multi-providers
const providers: Provider[] = [
{
provide: HTTP_INTERCEPTORS,
useClass: AuthInterceptor,
multi: true
},
{
provide: HTTP_INTERCEPTORS,
useClass: LoggingInterceptor,
multi: true
}
];
// Inject as array
export class HttpService {
private readonly interceptors = inject(HTTP_INTERCEPTORS);
}
Tree-Shakable Providers
// Tree-shakable (preferred) — service is removed if never injected
@Injectable({
providedIn: 'root'
})
export class NewService {}
Testing with DI
TestBed Provider Overrides
import { TestBed } from '@angular/core/testing';
describe('MyComponent', () => {
let mockUserService: jasmine.SpyObj<UserService>;
beforeEach(() => {
mockUserService = jasmine.createSpyObj('UserService', ['getUsers']);
TestBed.configureTestingModule({
imports: [MyComponent], // standalone component
providers: [
{ provide: UserService, useValue: mockUserService }
]
});
});
it('should get users', () => {
mockUserService.getUsers.and.returnValue([]);
const fixture = TestBed.createComponent(MyComponent);
// Test component with mock
});
});
Spy on Dependencies
import { TestBed } from '@angular/core/testing';
describe('UserService', () => {
let service: UserService;
let httpMock: jasmine.SpyObj<HttpClient>;
beforeEach(() => {
httpMock = jasmine.createSpyObj('HttpClient', ['get', 'post']);
TestBed.configureTestingModule({
providers: [
UserService,
{ provide: HttpClient, useValue: httpMock }
]
});
service = TestBed.inject(UserService);
});
it('should fetch users', () => {
httpMock.get.and.returnValue(of([]));
service.getUsers().subscribe();
expect(httpMock.get).toHaveBeenCalled();
});
});
When to Use This Skill
Use angular-dependency-injection when building modern, production-ready applications that require:
- Modular service architecture
- Testable components and services
- Configuration management
- Plugin/extension systems
- Multi-provider patterns (interceptors, validators)
- Complex service hierarchies
- Lazy-loaded route isolation
- Tree-shakable code
Angular DI Best Practices
- Use
inject()— Cleaner than constructor injection, works in class fields - Use
providedIn: 'root'— Tree-shakable and singleton - Use InjectionToken — Type-safe tokens, no string tokens
- Use standalone components — Providers in
@Component, not@NgModule - Use
provideX()functions — ReplacesforRoot()/forChild() - Use
inject()in factories — Nodepsarray needed - Use
inject()options — Replaces@Optional,@Self,@SkipSelf,@Host - Favor composition — Inject small, focused services
- Test with mocks — Override providers in TestBed
- Avoid circular dependencies — Refactor to a common service
