Suppose I have a jar with a Spring Component called MyComponent. This jar is a Spring Boot "autoconfigured" jar, meaning that it has a Configuration class (annotated with #Configuration), and additionally, a META-INF/spring.factories file on the classpath. This jar is not an executable jar by itself; it is a library that is meant for inclusion in a Spring Boot application.
These files look as follows:
MyComponent.java, in package com.mine.components:
#Component
public class MyComponent {
private static final Logger logger = LoggerFactory.getLogger(MyComponent.class);
#PostConstruct
public void init() {
logger.info("MyComponent inited");
}
}
MyConfiguration.java, in package com.mine.config:
#Configuration
#ComponentScan(basePackages = "com.mine.components")
public class MyConfiguration {
}
spring.factories, in META-INF under src/main/resources:
org.springframework.boot.autoconfigure.EnableAutoConfiguration=com.mine.config.MyConfiguration
If I include this jar in a Spring Boot project with the above three files, the MyComponent component is NOT detected (the log message never prints).
But if I instead remove the #ComponentScan and declare MyComponent using the #Bean annotation as follows, it is detected:
#Bean
public MyComponent myComponent() {
return new MyComponent();
}
Why?
Difference beetween ComponentScan and declared Bean inside #Configuration class:
#ComponentScan: You enable auto-scanning (default using current folder path), optionally you can specify an basePackage where spring will found yours beans.
#ComponentScan(basePackages = "com.mine.components")
You're saying to Spring that in this package("com.mine.components"), you'll define yours beans typically using annotations (#Component, #Entity, #Controller, #Service, #Repository or more).
#Bean: This way you define your beans manually inside #Configuration class, but Spring has to discover your configuration class, usually using #ComponentScan, #SpringBootApplication.
META-INF/spring.factories: you define an custom autoconfiguration
I understand that #Component annotation was introduced in spring 2.5 in order to get rid of xml bean definition by using classpath scanning.
#Bean was introduced in spring 3.0 and can be used with #Configuration in order to fully get rid of xml file and use java config instead.
Would it have been possible to re-use the #Component annotation instead of introducing #Bean annotation? My understanding is that the final goal is to create beans in both cases.
#Component
Preferable for component scanning and automatic wiring.
When should you use #Bean?
Sometimes automatic configuration is not an option. When? Let's imagine that you want to wire components from 3rd-party libraries (you don't have the source code so you can't annotate its classes with #Component), so automatic configuration is not possible.
The #Bean annotation returns an object that spring should register as bean in application context. The body of the method bears the logic responsible for creating the instance.
#Component and #Bean do two quite different things, and shouldn't be confused.
#Component (and #Service and #Repository) are used to auto-detect and auto-configure beans using classpath scanning. There's an implicit one-to-one mapping between the annotated class and the bean (i.e. one bean per class). Control of wiring is quite limited with this approach, since it's purely declarative.
#Bean is used to explicitly declare a single bean, rather than letting Spring do it automatically as above. It decouples the declaration of the bean from the class definition, and lets you create and configure beans exactly how you choose.
To answer your question...
would it have been possible to re-use the #Component annotation instead of introducing #Bean annotation?
Sure, probably; but they chose not to, since the two are quite different. Spring's already confusing enough without muddying the waters further.
#Component auto detects and configures the beans using classpath scanning whereas #Bean explicitly declares a single bean, rather than letting Spring do it automatically.
#Component does not decouple the declaration of the bean from the class definition where as #Bean decouples the declaration of the bean from the class definition.
#Component is a class level annotation whereas #Bean is a method level annotation and name of the method serves as the bean name.
#Component need not to be used with the #Configuration annotation where as #Bean annotation has to be used within the class which is annotated with #Configuration.
We cannot create a bean of a class using #Component, if the class is outside spring container whereas we can create a bean of a class using #Bean even if the class is present outside the spring container.
#Component has different specializations like #Controller, #Repository and #Service whereas #Bean has no specializations.
Let's consider I want specific implementation depending on some dynamic state.
#Bean is perfect for that case.
#Bean
#Scope("prototype")
public SomeService someService() {
switch (state) {
case 1:
return new Impl1();
case 2:
return new Impl2();
case 3:
return new Impl3();
default:
return new Impl();
}
}
However there is no way to do that with #Component.
Both approaches aim to register target type in Spring container.
The difference is that #Bean is applicable to methods, whereas #Component is applicable to types.
Therefore when you use #Bean annotation you control instance creation logic in method's body (see example above). With #Component annotation you cannot.
I see a lot of answers and almost everywhere it's mentioned #Component is for autowiring where component is scanned, and #Bean is exactly declaring that bean to be used differently. Let me show how it's different.
#Bean
First it's a method level annotation.
Second you generally use it to configure beans in Java code (if you are not using xml configuration) and then call it from a class using the
ApplicationContext.getBean method. Example:
#Configuration
class MyConfiguration{
#Bean
public User getUser() {
return new User();
}
}
class User{
}
// Getting Bean
User user = applicationContext.getBean("getUser");
#Component
It is the general way to annotate a bean and not a specialized bean.
It is a class level annotation and is used to avoid all that configuration stuff through java or xml configuration.
We get something like this.
#Component
class User {
}
// to get Bean
#Autowired
User user;
That's it. It was just introduced to avoid all the configuration steps to instantiate and use that bean.
You can use #Bean to make an existing third-party class available to your Spring framework application context.
#Bean
public ViewResolver viewResolver() {
InternalResourceViewResolver viewResolver = new InternalResourceViewResolver();
viewResolver.setPrefix("/WEB-INF/view/");
viewResolver.setSuffix(".jsp");
return viewResolver;
}
By using the #Bean annotation, you can wrap a third-party class (it may not have #Component and it may not use Spring), as a Spring bean. And then once it is wrapped using #Bean, it is as a singleton object and available in your Spring framework application context. You can now easily share/reuse this bean in your app using dependency injection and #Autowired.
So think of the #Bean annotation is a wrapper/adapter for third-party classes. You want to make the third-party classes available to your Spring framework application context.
By using #Bean in the code above, I'm explicitly declare a single bean because inside of the method, I'm explicitly creating the object using the new keyword. I'm also manually calling setter methods of the given class. So I can change the value of the prefix field. So this manual work is referred to as explicit creation. If I use the #Component for the same class, the bean registered in the Spring container will have default value for the prefix field.
On the other hand, when we annotate a class with #Component, no need for us to manually use the new keyword. It is handled automatically by Spring.
When you use the #Component tag, it's the same as having a POJO (Plain Old Java Object) with a vanilla bean declaration method (annotated with #Bean). For example, the following method 1 and 2 will give the same result.
Method 1
#Component
public class SomeClass {
private int number;
public SomeClass(Integer theNumber){
this.number = theNumber.intValue();
}
public int getNumber(){
return this.number;
}
}
with a bean for 'theNumber':
#Bean
Integer theNumber(){
return new Integer(3456);
}
Method 2
//Note: no #Component tag
public class SomeClass {
private int number;
public SomeClass(Integer theNumber){
this.number = theNumber.intValue();
}
public int getNumber(){
return this.number;
}
}
with the beans for both:
#Bean
Integer theNumber(){
return new Integer(3456);
}
#Bean
SomeClass someClass(Integer theNumber){
return new SomeClass(theNumber);
}
Method 2 allows you to keep bean declarations together, it's a bit more flexible etc. You may even want to add another non-vanilla SomeClass bean like the following:
#Bean
SomeClass strawberryClass(){
return new SomeClass(new Integer(1));
}
You have two ways to generate beans.
One is to create a class with an annotation #Component.
The other is to create a method and annotate it with #Bean. For those classes containing method with #Bean should be annotated with #Configuration
Once you run your spring project, the class with a #ComponentScan annotation would scan every class with #Component on it, and restore the instance of this class to the Ioc Container. Another thing the #ComponentScan would do is running the methods with #Bean on it and restore the return object to the Ioc Container as a bean.
So when you need to decide which kind of beans you want to create depending upon current states, you need to use #Bean. You can write the logic and return the object you want.
Another thing worth to mention is the name of the method with #Bean is the default name of bean.
Difference between Bean and Component:
#component and its specializations(#Controller, #service, #repository) allow for auto-detection
using classpath scanning. If we see component class like #Controller, #service, #repository will be scan automatically by the spring framework using the component scan.
#Bean on the other hand can only be used to explicitly declare a single bean in a configuration class.
#Bean used to explicitly declare a single bean, rather than letting spring do it automatically. Its make septate declaration of bean from the class definition.
In short #Controller, #service, #repository are for auto-detection and #Bean to create seprate bean from class
- #Controller
public class LoginController
{ --code-- }
- #Configuration
public class AppConfig {
#Bean
public SessionFactory sessionFactory()
{--code-- }
Spring supports multiple types annotations such as #Component, #Service, #Repository. All theses can be found under the org.springframework.stereotype package.
#Bean can be found under the org.springframework.context.annotation package.
When classes in our application are annotated with any of the above mentioned annotation then during project startup spring scan(using #ComponentScan) each class and inject the instance of the classes to the IOC container. Another thing the #ComponentScan would do is running the methods with #Bean on it and restore the return object to the Ioc Container as a bean.
#Component
If we mark a class with #Component or one of the other Stereotype annotations these classes will be auto-detected using classpath scanning. As long as these classes are in under our base package or Spring is aware of another package to scan, a new bean will be created for each of these classes.
package com.beanvscomponent.controller;
import org.springframework.stereotype.Controller;
#Controller
public class HomeController {
public String home(){
return "Hello, World!";
}
}
There's an implicit one-to-one mapping between the annotated class and the bean (i.e. one bean per class). Control of wiring is quite limited with this approach since it's purely declarative. It is also important to note that the stereotype annotations are class level annotations.
#Bean
#Bean is used to explicitly declare a single bean, rather than letting Spring do it automatically like we did with #Controller. It decouples the declaration of the bean from the class definition and lets you create and configure beans exactly how you choose. With #Bean you aren't placing this annotation at the class level. If you tried to do that you would get an invalid type error. The #Bean documentation defines it as:
Indicates that a method produces a bean to be managed by the Spring container.
Typically, #Bean methods are declared within #Configuration classes.We have a user class that we needed to instantiate and then create a bean using that instance. This is where I said earlier that we have a little more control over how the bean is defined.
package com.beanvscomponent;
public class User {
private String first;
private String last;
public User(String first, String last) {
this.first = first;
this.last = last;
}
}
As i mentioned earlier #Bean methods should be declared within #Configuration classes.
package com.beanvscomponent;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
#Configuration
public class ApplicationConfig {
#Bean
public User superUser() {
return new User("Partho","Bappy");
}
}
The name of the method is actually going to be the name of our bean. If we pull up the /beans endpoint in the actuator we can see the bean defined.
{
"beans": "superUser",
"aliases": [],
"scope": "singleton",
"type": "com.beanvscomponent.User",
"resource": "class path resource
[com/beanvscomponent/ApplicationConfig.class]",
"dependencies": []
}
#Component vs #Bean
I hope that cleared up some things on when to use #Component and when to use #Bean. It can be a little confusing but as you start to write more applications it will become pretty natural.
#Bean was created to avoid coupling Spring and your business rules in compile time. It means you can reuse your business rules in other frameworks like PlayFramework or JEE.
Moreover, you have total control on how create beans, where it is not enough the default Spring instantation.
I wrote a post talking about it.
https://coderstower.com/2019/04/23/factory-methods-decoupling-ioc-container-abstraction/
1. About #Component
#Component functs similarily to #Configuration.
They both indicate that the annotated class has one or more beans need to be registered to Spring-IOC-Container.
The class annotated by #Component, we call it Component of Spring. It is a concept that contains several beans.
Component class needs to be auto-scanned by Spring for registering those beans of the component class.
2. About #Bean
#Bean is used to annotate the method of component-class(as mentioned above). It indicate the instance retured by the annotated method needs to be registered to Spring-IOC-Container.
3. Conclusion
The difference between them two is relatively obivious, they are used in different circumstances.
The general usage is:
// #Configuration is implemented by #Component
#Configuration
public ComponentClass {
#Bean
public FirstBean FirstBeanMethod() {
return new FirstBean();
}
#Bean
public SecondBean SecondBeanMethod() {
return new SecondBean();
}
}
Additional Points from above answers
Let’s say we got a module which is shared in multiple apps and it contains a few services. Not all are needed for each app.
If use #Component on those service classes and the component scan in the application,
we might end up detecting more beans than necessary
In this case, you either had to adjust the filtering of the component scan or provide the configuration that even the unused beans can run. Otherwise, the application context won’t start.
In this case, it is better to work with #Bean annotation and only instantiate those beans,
which are required individually in each app
So, essentially, use #Bean for adding third-party classes to the context. And #Component if it is just inside your single application.
#Bean can be scoped and #component cannot
such as
#Scope(value = WebApplicationContext.SCOPE_REQUEST, proxyMode = ScopedProxyMode.TARGET_CLASS)
I am developing OAuth implementation with Jwt tokens.
It's kind of weird but for class TokenAuthenticationService When I try to Autowired this class in a different package, I get
Consider defining a bean of type 'com.company.security.TokenAuthenticationService' in your configuration.
I did a workaround and added #Bean TokenAuthenticationService in that class.Now when I am trying to initialize an interface in the TokenAuthenticationService class, it gives the same type of error for that interface.
Consider defining a bean of type 'com.company.security.UserService' in your configuration.
ComponentScan annotation is configured like #ComponentScan({"com.company"})
What I am missing here and why?
You have two ways to define beans for autowiring in your project.
With classes defined by you, you can use the #Component annotation (or, for service classes, #Service annotation) this way:
#Service
public class TokenAuthenticationService { ... }
If you are using third party classes, you can configure them in a configuration class:
#Configuration
public MyProjectConfig {
#Bean
public ThirdPartyClass serviceClass() { new ThirdPartyClass(); }
}
(Using #Bean annotation is not a workround. You just need to understand its purpose...)
This way autowiring should work...
Pay attention to difference between #Component and #Bean annotations.
When I start my application as Spring Boot application, ServiceEndpointConfig gets autowired properly. But when I run as Junit test, I get the following exception. I am using application.yml file and different profiles.
#RunWith(SpringJUnit4ClassRunner.class)
#ContextConfiguration(classes = MyServiceContextConfig.class,
loader = SpringApplicationContextLoader.class)
#ActiveProfiles({"unit", "statsd-none"})
public class MyServiceTest
{
}
#Configuration
public class MyServiceContextConfig {
#Bean
public MyService myServiceImpl(){
return new MyServiceImpl();
}
}
#Configuration
#Component
#EnableConfigurationProperties
#ComponentScan("com.myservice")
#Import({ServiceEndpointConfig.class})
public class MyServiceImpl implements MyService {
#Autowired
ServiceEndpointConfig serviceEndpointConfig;
}
#Configuration
#Component
#ConfigurationProperties(prefix="service")
public class ServiceEndpointConfig
{
}
Error:
org.springframework.beans.factory.UnsatisfiedDependencyException: Error creating bean with name 'myServiceImpl':
Unsatisfied dependency expressed through field 'serviceEndpointConfig': No qualifying bean of type [com.myservice.config.ServiceEndpointConfig] found
You're handling MyServiceImpl inconsistently: On the one hand, you're using scanning annotations, and on the other, you're explicitly creating an #Bean in a configuration class. The import directive is only processed when Spring picks MyServiceImpl up via scanning; otherwise, it's not treated as a configuration.
Your relationships between the classes are tangled up; the whole point of dependency injection is that MyServiceImpl should say what sort of thing it needs but not create it itself. This organization is no better than manually creating dependencies internally.
Instead,
eliminate the #Configuration and #Import directives from MyServiceImpl,
use constructor injection on MyServiceImpl, and
change your test configuration to include all the necessary configuration classes.
With constructor injection, you may be able to bypass the Spring context entirely and run this as an actual unit test by simply creating a new MyServiceImpl(testServiceConfig).
I have a SpringBoot main application, as well as a separate Maven module project that compiles as a separate Jar. The module has a Spring config class annotated with #Configuration, which I want to get loaded, when the main app loads.
Apparently, this does not happen out of the box (by just including the module to the main app). What else do I need to do, to get the module configuration class also get loaded by the main app?
The easiest way is to scan the package that the #Configuration class is in.
#ComponentScan("com.acme.otherJar.config")
or to just load it as a spring bean:
#Bean
public MyConfig myConfig() {
MyConfig myConfig = new MyConfig ();
return myConfig;
}
Where MyConfig is something like:
#Configuration
public class MyConfig {
// various #Bean definitions ...
}
See docs
#ComponentScan annotation will scan all classes with #Compoment or #Configuration annotation.
Then spring ioc will add them all to spring controlled beans.
If you want to only add specific configurations, you can use #import annotation.
example:
#Configuration
#Import(NameOfTheConfigurationYouWantToImport.class)
public class Config {
}
#Import Annotation Doc