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@Target(value=TYPE) @Retention(value=RUNTIME) @Documented @Import(value=TransactionManagementConfigurationSelector.class) public @interface EnableTransactionManagement
Enables Spring's annotation-driven transaction management capability, similar to
the support found in Spring's <tx:*> XML namespace. To be used
on @Configuration classes
as follows:
@Configuration
@EnableTransactionManagement
public class AppConfig {
@Bean
public FooRepository fooRepository() {
// configure and return a class having @Transactional methods
return new JdbcFooRepository(dataSource());
}
@Bean
public DataSource dataSource() {
// configure and return the necessary JDBC DataSource
}
@Bean
public PlatformTransactionManager txManager() {
return new DataSourceTransactionManager(dataSource());
}
}
For reference, the example above can be compared to the following Spring XML configuration:
<beans>
<tx:annotation-driven/>
<bean id="fooRepository" class="com.foo.JdbcFooRepository">
<constructor-arg ref="dataSource"/>
</bean>
<bean id="dataSource" class="com.vendor.VendorDataSource"/>
<bean id="transactionManager" class="org.sfwk...DataSourceTransactionManager">
<constructor-arg ref="dataSource"/>
</bean>
</beans>
In both of the scenarios above, @EnableTransactionManagement and <tx:annotation-driven/> are responsible for registering the necessary Spring
components that power annotation-driven transaction management, such as the
TransactionInterceptor and the proxy- or AspectJ-based advice that weave the
interceptor into the call stack when JdbcFooRepository's @Transacational
methods are invoked.
A minor difference between the two examples lies in the naming of the PlatformTransactionManager bean: In the @Bean case, the name is
"txManager" (per the name of the method); in the XML case, the name is
"transactionManager". The <tx:annotation-driven/> is hard-wired to
look for a bean named "transactionManager" by default, however
@EnableTransactionManagement is more flexible; it will fall back to a by-type
lookup for any PlatformTransactionManager bean in the container. Thus the name
can be "txManager", "transactionManager", or "tm": it simply does not matter.
For those that wish to establish a more direct relationship between
@EnableTransactionManagement and the exact transaction manager bean to be used,
the TransactionManagementConfigurer callback interface may be implemented -
notice the implements clause and the @Override-annotated method below:
@Configuration
@EnableTransactionManagement
public class AppConfig implements TransactionManagementConfigurer {
@Bean
public FooRepository fooRepository() {
// configure and return a class having @Transactional methods
return new JdbcFooRepository(dataSource());
}
@Bean
public DataSource dataSource() {
// configure and return the necessary JDBC DataSource
}
@Bean
public PlatformTransactionManager txManager() {
return new DataSourceTransactionManager(dataSource());
}
@Override
public PlatformTransactionManager annotationDrivenTransactionManager() {
return txManager();
}
}
This approach may be desirable simply because it is more explicit, or it may be
necessary in order to distinguish between two PlatformTransactionManager beans
present in the same container. As the name suggests, the
annotationDrivenTransactionManager() will be the one used for processing
@Transactional methods. See TransactionManagementConfigurer Javadoc
for further details.
The mode() attribute controls how advice is applied; if the mode is
AdviceMode.PROXY (the default), then the other attributes control the behavior
of the proxying.
Note that if the mode() is set to AdviceMode.ASPECTJ, then
the proxyTargetClass() attribute is obsolete. Note also that in this case the
spring-aspects module JAR must be present on the classpath.
TransactionManagementConfigurer,
TransactionManagementConfigurationSelector,
ProxyTransactionManagementConfiguration,
AspectJTransactionManagementConfiguration| Optional Element Summary | |
|---|---|
AdviceMode |
mode
Indicate how transactional advice should be applied. |
int |
order
Indicate the ordering of the execution of the transaction advisor when multiple advices are applied at a specific joinpoint. |
boolean |
proxyTargetClass
Indicate whether subclass-based (CGLIB) proxies are to be created as opposed to standard Java interface-based proxies. |
public abstract boolean proxyTargetClass
false.
Applicable only if mode() is set to AdviceMode.PROXY.
Note that subclass-based proxies require the @Transactional
to be defined on the concrete class. Annotations in interfaces will
not work in that case (they will rather only work with interface-based proxies)!
public abstract AdviceMode mode
AdviceMode.PROXY.
AdviceModepublic abstract int order
Ordered.LOWEST_PRECEDENCE.
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