Why Should I Avoid Field Injection in Spring?
Understanding Field Injection and Its Avoidance
Field injection, as seen in the example below, arises when a bean is injected with @Autowired directly on its field:
@Component public class MyComponent { @Autowired private Cart cart; }
In contrast, constructor injection, as in the example below, involves injecting dependencies through the constructor:
@Component public class MyComponent { private final Cart cart; @Autowired public MyComponent(Cart cart){ this.cart = cart; } }
Injection Guidelines
Generally, Spring recommends the following injection practices:
- Use constructor injection for mandatory dependencies or immutability.
- Use setter injection for optional or changeable dependencies.
- Avoid field injection in most cases.
Drawbacks of Field Injection
Field injection comes with several drawbacks:
- Immutability: It precludes creating immutable objects.
- Coupling: Classes become tightly bound to the DI container, hindering use outside of it.
- Instantiability: Field injection requires a DI container for instantiation, limiting its use in unit testing.
- Dependency Obscurity: Dependencies remain hidden, obscuring true dependencies.
- Excessive Dependency Count: Field injection enables adding an excessive number of dependencies easily, potentially violating the Single Responsibility Principle.
Conclusion
Depending on the requirement, primarily use constructor injection or a combination of constructor and setter injection. Field injection possesses drawbacks that outweigh its convenience, making it generally inadvisable.
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