经常出现启动时出现循环依赖异常

创新互联于2013年开始,先为义马等服务建站,义马等地企业,进行企业商务咨询服务。为义马企业网站制作PC+手机+微官网三网同步一站式服务解决您的所有建站问题。
Caused by: org.springframework.beans.factory.BeanCreationException: Error creating bean with name 'taskPunchEvent': Injection of resource dependencies failed; nested exception is org.
springframework.beans.factory.BeanCurrentlyInCreationException: Error creating bean with name 'playContentService': Bean with name 'playContentService' has been injected into other be
ans [toVoConvertor] in its raw version as part of a circular reference, but has eventually been wrapped. This means that said other beans do not use the final version of the bean. Thi
s is often the result of over-eager type matching - consider using 'getBeanNamesOfType' with the 'allowEagerInit' flag turned off, for example.
  at org.springframework.context.annotation.CommonAnnotationBeanPostProcessor.postProcessProperties(CommonAnnotationBeanPostProcessor.java:325)
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.populateBean(AbstractAutowireCapableBeanFactory.java:1404)
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.doCreateBean(AbstractAutowireCapableBeanFactory.java:592)
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.createBean(AbstractAutowireCapableBeanFactory.java:515)
  at org.springframework.beans.factory.support.AbstractBeanFactory.lambda$doGetBean$0(AbstractBeanFactory.java:320)
  at org.springframework.beans.factory.support.DefaultSingletonBeanRegistry.getSingleton(DefaultSingletonBeanRegistry.java:222)
  at org.springframework.beans.factory.support.AbstractBeanFactory.doGetBean(AbstractBeanFactory.java:318)
  at org.springframework.beans.factory.support.AbstractBeanFactory.getBean(AbstractBeanFactory.java:199)
  at org.springframework.beans.factory.config.DependencyDescriptor.resolveCandidate(DependencyDescriptor.java:277)
  at org.springframework.beans.factory.support.DefaultListableBeanFactory.doResolveDependency(DefaultListableBeanFactory.java:1255)
  at org.springframework.beans.factory.support.DefaultListableBeanFactory.resolveDependency(DefaultListableBeanFactory.java:1175)
  at org.springframework.beans.factory.annotation.AutowiredAnnotationBeanPostProcessor$AutowiredFieldElement.inject(AutowiredAnnotationBeanPostProcessor.java:595)
  ... 40 more
Caused by: org.springframework.beans.factory.BeanCurrentlyInCreationException: Error creating bean with name 'playContentService': Bean with name 'playContentService' has been injecte
d into other beans [toVoConvertor] in its raw version as part of a circular reference, but has eventually been wrapped. This means that said other beans do not use the final version o
f the bean. This is often the result of over-eager type matching - consider using 'getBeanNamesOfType' with the 'allowEagerInit' flag turned off, for example.
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.doCreateBean(AbstractAutowireCapableBeanFactory.java:622)
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.createBean(AbstractAutowireCapableBeanFactory.java:515)
  at org.springframework.beans.factory.support.AbstractBeanFactory.lambda$doGetBean$0(AbstractBeanFactory.java:320)
  at org.springframework.beans.factory.support.DefaultSingletonBeanRegistry.getSingleton(DefaultSingletonBeanRegistry.java:222)
  at org.springframework.beans.factory.support.AbstractBeanFactory.doGetBean(AbstractBeanFactory.java:318)
  at org.springframework.beans.factory.support.AbstractBeanFactory.getBean(AbstractBeanFactory.java:204)
  at org.springframework.beans.factory.support.AbstractAutowireCapableBeanFactory.resolveBeanByName(AbstractAutowireCapableBeanFactory.java:452)
  at org.springframework.context.annotation.CommonAnnotationBeanPostProcessor.autowireResource(CommonAnnotationBeanPostProcessor.java:527)
  at org.springframework.context.annotation.CommonAnnotationBeanPostProcessor.getResource(CommonAnnotationBeanPostProcessor.java:497)
  at org.springframework.context.annotation.CommonAnnotationBeanPostProcessor$ResourceElement.getResourceToInject(CommonAnnotationBeanPostProcessor.java:637)
  at org.springframework.beans.factory.annotation.InjectionMetadata$InjectedElement.inject(InjectionMetadata.java:180)
  at org.springframework.beans.factory.annotation.InjectionMetadata.inject(InjectionMetadata.java:90)
  at org.springframework.context.annotation.CommonAnnotationBeanPostProcessor.postProcessProperties(CommonAnnotationBeanPostProcessor.java:322)
  ... 51 more
先不关注其他不规范问题,看现象
注:Spring启动流程与Bean创建初始化流程如不熟悉,自行补习,篇幅原因此处不做介绍
首先,通过spring通过扫描各种注解 @Compoent、@Service、@Configuration等等把需要交给spring管理的bean初始化成 BeanDefinition 的列表
然后,根据 BeanDefinition 创建spring bean的实例
并非使用者手动去getBean才会加载并初始化,而是框架启动时进行加载
Spring创建Bean - #DefaultListableBeanFactory#preInstantiateSingletons
@Override
public void preInstantiateSingletons() throws BeansException {
    
    //......
    
    List beanNames = new ArrayList<>(this.beanDefinitionNames);
    // Trigger initialization of all non-lazy singleton beans...
    for (String beanName : beanNames) {
        RootBeanDefinition bd = getMergedLocalBeanDefinition(beanName);
        if (!bd.isAbstract() && bd.isSingleton() && !bd.isLazyInit()) {
            if (isFactoryBean(beanName)) {
                //FactoryBean接口处理
                ......
            }
            else {
                //正常Bean的加载入口
                getBean(beanName);
            }
        }
    }
    
    //......
} 注入的好处很明显,如果容器中不存在或者存在多个实现时,可以从容处理。
强依赖,先有鸡还是先有蛋问题暂无解,此依赖方式Spring不支持,除非自身实现代理加延迟注入,这种方式很难解决,除非实现类似于lazy生成代理方式进行解耦来实现注入,Spring没有支持可能因为此种注入场景都可以用其他方式代替且场景极少。
弱依赖,spring 4.3之后增加 ObjectProvider 来处理
//构造器循环依赖示例
public class StudentA {
 
    private StudentB studentB ; 
    public StudentA(StudentB studentB) {
        this.studentB = studentB;
    }
}
public class StudentB {
 
    private StudentA studentA ;
    
    public StudentB(StudentA studentA) {
        this.studentA = studentA;
    }
}@Override
public PropertyValues postProcessProperties(PropertyValues pvs, Object bean, String beanName) {
    InjectionMetadata metadata = findAutowiringMetadata(beanName, bean.getClass(), pvs);
    try {
        //属性注入
        metadata.inject(bean, beanName, pvs);
    }
    catch (BeanCreationException ex) {
        throw ex;
    }
    catch (Throwable ex) {
        throw new BeanCreationException(beanName, "Injection of autowired dependencies failed", ex);
    }
    return pvs;
}DefaultSingletonBeanRegistry
private final Map singletonObjects = new ConcurrentHashMap<>(256); 二级缓存(未初始化未填充属性提前暴露的Bean)
private final Map earlySingletonObjects = new HashMap<>(16); 三级缓存(Bean创建时提供代理机会的Bean工厂缓存)
private final Map> singletonFactories = new HashMap<>(16); 循环依赖产生在Bean创建时
protected Object doCreateBean(final String beanName, final RootBeanDefinition mbd, final Object[] args) {
    
    BeanWrapper instanceWrapper = null;
    if (instanceWrapper == null) {
        //创建Bean
        instanceWrapper = createBeanInstance(beanName, mbd, args);
    }
        
    .....
    
    boolean earlySingletonExposure = (mbd.isSingleton() && this.allowCircularReferences &&
                isSingletonCurrentlyInCreation(beanName));
    if (earlySingletonExposure) {
        if (logger.isTraceEnabled()) {
            logger.trace("Eagerly caching bean '" + beanName +
                    "' to allow for resolving potential circular references");
        }
        addSingletonFactory(beanName, () -> getEarlyBeanReference(beanName, mbd, bean));
    }
    //填充Bean依赖与Bean的初始化
    Object exposedObject = bean;
    try {
        //填充依赖的bean实例
        populateBean(beanName, mbd, instanceWrapper);
        //初始化---注意!注意!注意!此方法中可能调用 BeanPostProcessor
        //的applyBeanPostProcessorsAfterInitialization时可能会返回代理对象,如果代理途径与创建时代理方式不同则也会产生不同代理对象
        //从而产生循环依赖中对象不一致情况
        exposedObject = initializeBean(beanName, exposedObject, mbd);
    }
    //如果存在循环依赖,则保证最开始创建的Bean需要是循环依赖 getEarlyBeanReference触发生成的bean
    //因为getEarlyBeanReference 可能返回的是代理类,因为singleton必须全局唯一
    if (earlySingletonExposure) {
        Object earlySingletonReference = getSingleton(beanName, false);
        //只有真正存在循环依赖时,才会触发 getEarlyBeanReference调用产生EarlyBean
        //未存在循环依赖,则getEarlyBeanReference不触发,earlySingletonReference为null,返回exposedObject即可
        if (earlySingletonReference != null) {
            if (exposedObject == bean) {
                exposedObject = earlySingletonReference;
            }
            else if (!this.allowRawInjectionDespiteWrapping && hasDependentBean(beanName)) {
                ......
                if (!actualDependentBeans.isEmpty()) {
                    throw new BeanCurrentlyInCreationException(beanName,
                            "Bean with name '" + beanName + "' has been injected into other beans [" +
                            StringUtils.collectionToCommaDelimitedString(actualDependentBeans) +
                            "] in its raw version as part of a circular reference, but has eventually been " +
                            "wrapped. This means that said other beans do not use the final version of the " +
                            "bean. This is often the result of over-eager type matching - consider using " +
                            "'getBeanNamesForType' with the 'allowEagerInit' flag turned off, for example.");
                }
            }
        }
    }
    return exposedObject;
}三级缓存获取Bean
protected Object getSingleton(String beanName, boolean allowEarlyReference) {
    //一级缓存(单例池)获取Bean
    Object singletonObject = this.singletonObjects.get(beanName);
    if (singletonObject == null && isSingletonCurrentlyInCreation(beanName)) {
        synchronized (this.singletonObjects) {
            //二级缓存获取(提前暴露不完全)Bean
            singletonObject = this.earlySingletonObjects.get(beanName);
            if (singletonObject == null && allowEarlyReference) {
                ObjectFactory> singletonFactory = this.singletonFactories.get(beanName);
                if (singletonFactory != null) {
                    //三级缓存Bean的创建工厂获取bean(可提前被代理)
                    singletonObject = singletonFactory.getObject();
                    this.earlySingletonObjects.put(beanName, singletonObject);
                    this.singletonFactories.remove(beanName);
                }
            }
        }
    }
    return singletonObject;
}SmartInstantiationAwareBeanPostProcessor重点 -> APC之父
//提供提前创建并返回代理的工厂singletonFactory.getObject()执行的是个回调
//addSingletonFactory(beanName, () -> getEarlyBeanReference(beanName, mbd, bean));
protected Object getEarlyBeanReference(String beanName, RootBeanDefinition mbd, Object bean) {
    Object exposedObject = bean;
    if (!mbd.isSynthetic() && hasInstantiationAwareBeanPostProcessors()) {
        for (BeanPostProcessor bp : getBeanPostProcessors()) {
            //getEarlyBeanReference是SmartInstantiationAwareBeanPostProcessor接口定义方法,
            //此方法很关键(构造函数推断也在此定义)
            if (bp instanceof SmartInstantiationAwareBeanPostProcessor) {
                SmartInstantiationAwareBeanPostProcessor ibp = (SmartInstantiationAwareBeanPostProcessor) bp;
                exposedObject = ibp.getEarlyBeanReference(exposedObject, beanName);
            }
        }
    }
    return exposedObject;
}通俗解释(省略很多细节):A -> B -> C -> A
6.1. 最终原因就是提前暴露的已经注入到C中的A(无论是否被代理)与后来经过初始化后被代理的A(proxy2)不再是同一个Bean;
6.2. 因为Spring管理Bean默认是Singleton的,现在出现了两个bean,默认情况下无法决断,因此就抛出了异常。
spring默认保证一个容器中只能有一个Aop的APC,如过手动添加或者自定义会出现多个APC情况
三者有就按照优先级覆盖,否则就注册一个,因此始终就只会有一个APC
AopConfigUtils
static {
    APC_PRIORITY_LIST.add(InfrastructureAdvisorAutoProxyCreator.class);
    APC_PRIORITY_LIST.add(AspectJAwareAdvisorAutoProxyCreator.class);
    APC_PRIORITY_LIST.add(AnnotationAwareAspectJAutoProxyCreator.class);
}
private static BeanDefinition registerOrEscalateApcAsRequired(
            Class> cls, BeanDefinitionRegistry registry, @Nullable Object source) {
    
    if (registry.containsBeanDefinition(AUTO_PROXY_CREATOR_BEAN_NAME)) {
        BeanDefinition apcDefinition = registry.getBeanDefinition(AUTO_PROXY_CREATOR_BEAN_NAME);
        if (!cls.getName().equals(apcDefinition.getBeanClassName())) {
            //因为三个APC存在能力父子关系,按照指定注册的APC自动调整优先级,从而保证只存在一个APC
            //如未指定APC,则默认为InfrastructureAdvisorAutoProxyCreator
            int currentPriority = findPriorityForClass(apcDefinition.getBeanClassName());
            int requiredPriority = findPriorityForClass(cls);
            if (currentPriority < requiredPriority) {
                apcDefinition.setBeanClassName(cls.getName());
            }
        }
        return null;
    }
    RootBeanDefinition beanDefinition = new RootBeanDefinition(cls);
    beanDefinition.setSource(source);
    beanDefinition.getPropertyValues().add("order", Ordered.HIGHEST_PRECEDENCE);
    beanDefinition.setRole(BeanDefinition.ROLE_INFRASTRUCTURE);
    registry.registerBeanDefinition(AUTO_PROXY_CREATOR_BEAN_NAME, beanDefinition);
    return beanDefinition;
}存在多个APC时,如存在循环依赖,此时触发之前放入三级缓存逻辑
addSingletonFactory(beanName, () -> getEarlyBeanReference(beanName, mbd, bean));从而触发多个APC的 getEarlyBeanReference
protected Object getEarlyBeanReference(String beanName, RootBeanDefinition mbd, Object bean) {
    Object exposedObject = bean;
    if (!mbd.isSynthetic() && hasInstantiationAwareBeanPostProcessors()) {
        //此时如存在多个APC,则依次执行 getEarlyBeanReference 返回多层代理对象
        for (SmartInstantiationAwareBeanPostProcessor bp : getBeanPostProcessorCache().smartInstantiationAware) {
            exposedObject = bp.getEarlyBeanReference(exposedObject, beanName);
        }
    }
    return exposedObject;
}
最终proxy2会被注入到依赖的Bean中,即例如:A-proxy2 注入到 B中
存在多个多层代理情况,getEarlyBeanReference 没有问题,但是执行到初始化时
@Override
public Object postProcessAfterInitialization(@Nullable Object bean, String beanName) {
    if (bean != null) {
        //注意这个Bean可是原始对象,每个APC都缓存自身代理过的类,但是存在多个APC时,后续的APC缓存的确是代理类的代理
        //即如第二个APC是BeanNameAutoProxyCreator,其缓存的可是 proxy1的class,原始类在此APC是没被代理过的,
        //因此此时会对原始类进行二次代理,产生Proxy3
        Object cacheKey = getCacheKey(bean.getClass(), beanName);
        if (this.earlyProxyReferences.remove(cacheKey) != bean) {
            return wrapIfNecessary(bean, beanName, cacheKey);
        }
    }
    return bean;
}
//视线返回本次循环依赖最初实例化的结点:A->B->C->A,则此处为A的创建流程
//此时A 通过 getEarlyBeanReference生成A ->proxy2注入到C中,
//C直接实例创建不会触发getEarlyBeanReference,注入到B中
//B直接实例创建不会触发getEarlyBeanReference,注入到A中
//A依赖处理完毕,继续初始化 initializeBean流程 -> postProcessAfterInitialization,返回 proxy3
if (earlySingletonExposure) {
    //此时获取到的代理类是 proxy2,即已经注入到依赖类C中的代理,因此不为null
    Object earlySingletonReference = getSingleton(beanName, false);
    if (earlySingletonReference != null) {
        //多APC时,exposedObject 在之前initializeBean -> postProcessAfterInitialization作用下返回proxy3
        //proxy3 != bean 不一致,违反了singletion原则,因此会抛出循环依赖异常
        if (exposedObject == bean) {
            exposedObject = earlySingletonReference;
        }
        else if (!this.allowRawInjectionDespiteWrapping && hasDependentBean(beanName)) {
            ......
            if (!actualDependentBeans.isEmpty()) {
                throw new BeanCurrentlyInCreationException(beanName,
                                                           "Bean with name '" + beanName + "' has been injected into other beans [" +
                                                           StringUtils.collectionToCommaDelimitedString(actualDependentBeans) +
                                                           "] in its raw version as part of a circular reference, but has eventually been " +
                                                           "wrapped. This means that said other beans do not use the final version of the " +
                                                           "bean. This is often the result of over-eager type matching - consider using " +
                                                           "'getBeanNamesOfType' with the 'allowEagerInit' flag turned off, for example.");
            }
        }
    }
}SmartInstantiationAwareBeanPostProcessor
@Override
public Object getEarlyBeanReference(Object bean, String beanName) {
    Object cacheKey = getCacheKey(bean.getClass(), beanName);
    this.earlyProxyReferences.put(cacheKey, bean);
    return wrapIfNecessary(bean, beanName, cacheKey);
}
//提前通过singletonFactory.getObject()创建的代理缓存起来以后,这里如果再次判断需要代理,
//缓存中存在已被代理则直接返回原始bean,无需再次代理,后续直接获取earlySingletonReference,
//因此前后代理出来的对象是一致的
@Override
public Object postProcessAfterInitialization(@Nullable Object bean, String beanName) {
    if (bean != null) {
        Object cacheKey = getCacheKey(bean.getClass(), beanName);
        if (this.earlyProxyReferences.remove(cacheKey) != bean) {
            return wrapIfNecessary(bean, beanName, cacheKey);
        }
    }
    return bean;
}
DefaultListableBeanFactory#resolveDependency
public Object resolveDependency(DependencyDescriptor descriptor, @Nullable String requestingBeanName,
                                @Nullable Set autowiredBeanNames, @Nullable TypeConverter typeConverter) throws BeansException {
    descriptor.initParameterNameDiscovery(getParameterNameDiscoverer());
    if (Optional.class == descriptor.getDependencyType()) {
        return createOptionalDependency(descriptor, requestingBeanName);
    }
    ......
    else {
        //处理@lazy
        Object result = getAutowireCandidateResolver().getLazyResolutionProxyIfNecessary(
            descriptor, requestingBeanName);
        if (result == null) {
            result = doResolveDependency(descriptor, requestingBeanName, autowiredBeanNames, typeConverter);
        }
        return result;
    }
}
ContextAnnotationAutowireCandidateResolver#getLazyResolutionProxyIfNecessary
public Object getLazyResolutionProxyIfNecessary(DependencyDescriptor descriptor, @Nullable String beanName) {
    return (isLazy(descriptor) ? buildLazyResolutionProxy(descriptor, beanName) : null);
}
ContextAnnotationAutowireCandidateResolver#isLazy
//是否为@lazy,如果为@lazy则创建依赖代理
protected boolean isLazy(DependencyDescriptor descriptor) {
    for (Annotation ann : descriptor.getAnnotations()) {
        Lazy lazy = AnnotationUtils.getAnnotation(ann, Lazy.class);
        if (lazy != null && lazy.value()) {
            return true;
        }
    }
    .......
} import org.junit.Test;
import org.springframework.boot.autoconfigure.condition.ConditionalOnClass;
import org.springframework.boot.autoconfigure.condition.ConditionalOnMissingBean;
import org.springframework.boot.autoconfigure.condition.ConditionalOnProperty;
import org.springframework.context.annotation.AnnotationConfigApplicationContext;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.ComponentScan;
import org.springframework.context.annotation.Configuration;
import org.springframework.context.annotation.EnableAspectJAutoProxy;
import org.springframework.core.env.Environment;
import org.springframework.dao.annotation.PersistenceExceptionTranslationPostProcessor;
import org.springframework.stereotype.Component;
import org.springframework.stereotype.Repository;
import javax.annotation.Resource;
/**
 * @author: Superizer
 */
@Component
public class MainSpringCircularDependencyTester
{
    @Test
    public void springCircularDependencyTest()
    {
        AnnotationConfigApplicationContext ac = new AnnotationConfigApplicationContext(SpringCircularDependencyConfig.class);
        X x = ac.getBean(X.class);
        System.out.println("Spring bean X =" + x.getClass().getName());
        x.display();
        Y y = ac.getBean(Y.class);
        System.out.println("Spring bean Y =" + y.getClass().getName());
        y.display();
        Z z = ac.getBean(Z.class);
        System.out.println("Spring bean Z =" + z.getClass().getName());
        z.display();
        System.out.println("******************Main********************");
    }
    @Configuration
    @ComponentScan("com.myself.demo.spring.v5.circular.dependency")
//  @EnableAspectJAutoProxy
    @ConditionalOnClass(PersistenceExceptionTranslationPostProcessor.class)
    static class SpringCircularDependencyConfig{
        @Bean
        @ConditionalOnMissingBean
        @ConditionalOnProperty(prefix = "spring.dao.exceptiontranslation", name = "enabled",
                matchIfMissing = true)
        public static PersistenceExceptionTranslationPostProcessor
        persistenceExceptionTranslationPostProcessor(Environment environment) {
            PersistenceExceptionTranslationPostProcessor postProcessor = new PersistenceExceptionTranslationPostProcessor();
            boolean proxyTargetClass = environment.getProperty(
                    "spring.aop.proxy-target-class", Boolean.class, Boolean.TRUE);
            postProcessor.setProxyTargetClass(proxyTargetClass);
            return postProcessor;
        }
    }
    abstract static class A {
        public abstract A injectSources();
        public abstract A self();
        public void display(){
            System.out.println("injectSources:" + injectSources().getClass().getName());
            System.out.println("*******************************************************");
        }
    }
    //X、Y、Z 只要循环依赖中第一个类X有注解@Repository,就会出现循环依赖异常
    //执行X的singletonFactory.getObject()返回的原对象,但是后边初始化时
    //执行到PersistenceExceptionTranslationPostProcessor时单独创建代理逻辑返回的是代理类
    //exposedObject = initializeBean(beanName, exposedObject, mbd);
    @Repository
//  @Component
    static class X  extends A{
        @Resource
        private Y y;
        @Override
        public Y injectSources()
        {
            return y;
        }
        @Override
        public X self() {
            return this;
        }
    }
    @Component
//  @Repository
    static class Y extends A{
        @Resource
        private Z z;
        @Override
        public Z injectSources() {
            return z;
        }
        @Override
        public Y self()
        {
            return this;
        }
    }
    @Component
//  @Repository
    static class Z extends A{
        @Resource
        private X x;
        @Override
        public X injectSources()
        {
            return x;
        }
        @Override
        public Z self()
        {
            return this;
        }
    }
}import org.aopalliance.intercept.MethodInterceptor;
import org.aopalliance.intercept.MethodInvocation;
import org.junit.Test;
import org.springframework.aop.ClassFilter;
import org.springframework.aop.MethodMatcher;
import org.springframework.aop.Pointcut;
import org.springframework.aop.framework.autoproxy.BeanNameAutoProxyCreator;
import org.springframework.aop.support.AbstractExpressionPointcut;
import org.springframework.aop.support.DefaultPointcutAdvisor;
import org.springframework.context.annotation.AnnotationConfigApplicationContext;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.ComponentScan;
import org.springframework.context.annotation.Configuration;
import org.springframework.context.annotation.EnableAspectJAutoProxy;
import org.springframework.stereotype.Component;
import javax.annotation.Resource;
import java.util.Arrays;
/**
 * @author: Superizer
 * Copyright (C) 2021
 * All rights reserved
 */
@Component
public class MainSpringCircularDependencyV2Tester
{
    @Test
    public void circularDependencyV2Tester()
    {
        AnnotationConfigApplicationContext ac = new AnnotationConfigApplicationContext(SpringCircularDependencyConfig.class);
        A a = ac.getBean(A.class);
        System.out.println("Spring bean A =" + a.getClass().getName());
        a.display();
        B y = ac.getBean(B.class);
        System.out.println("Spring bean B =" + y.getClass().getName());
        y.display();
        C z = ac.getBean(C.class);
        System.out.println("Spring bean C =" + z.getClass().getName());
        z.display();
        System.out.println("******************Main********************");
    }
    @Configuration
    @ComponentScan("com.myself.demo.spring.v5.circular.dependency.v2")
    @EnableAspectJAutoProxy
    static class SpringCircularDependencyConfig {
        @Bean
        public DefaultPointcutAdvisor defaultPointcutAdvisor() {
            DefaultPointcutAdvisor advisor = new DefaultPointcutAdvisor();
            Pointcut pointcut = new AbstractExpressionPointcut() {
                @Override
                public ClassFilter getClassFilter() {
                    return (tmp) -> {
                        String name = tmp.getName();
                        if(name.equals(A.class.getName())) {
                            return true;
                        }
                        return false;
                    };
                }
                @Override
                public MethodMatcher getMethodMatcher() {
                    return MethodMatcher.TRUE;
                }
            };
            advisor.setPointcut(pointcut);
            advisor.setAdvice(new SpringAopAroundMethod());
            advisor.setOrder(0);
            return advisor;
        }
        @Bean
        public BeanNameAutoProxyCreator beanNameAutoProxyCreator() {
            BeanNameAutoProxyCreator apc = new BeanNameAutoProxyCreator();
            apc.setBeanNames("a");
            apc.setOrder(-1);
            apc.setProxyTargetClass(true);
            return apc;
        }
    }
    abstract static class G {
        public abstract G injectSources();
        public abstract G self();
        public void display(){
            System.out.println("injectSources:" + injectSources().getClass().getName());
            System.out.println("*******************************************************");
        }
    }
    @Component(value = "a")
    static class A  extends G {
        @Resource
        private B b;
        @Override
        public B injectSources()
        {
            return b;
        }
        @Override
        public A self() {
            return this;
        }
    }
    @Component
    static class B extends G {
        @Resource
        private C c;
        @Override
        public C injectSources() {
            return c;
        }
        @Override
        public B self()
        {
            return this;
        }
    }
    @Component
    static class C extends G {
        @Resource
        private A a;
        @Override
        public A injectSources()
        {
            return a;
        }
        @Override
        public C self()
        {
            return this;
        }
    }
    static class SpringAopAroundMethod implements MethodInterceptor {
        @Override
        public Object invoke(MethodInvocation methodInvocation) throws Throwable {
            System.out.println("Aop Before method!");
            try {
                Object result = methodInvocation.proceed();
                System.out.println("Aop after method!");
                return result;
            } catch (IllegalArgumentException e) {
                System.out.println("Aop throw exception!");
                throw e;
            }
        }
    }
}出现循环依赖其实反映代码结构设计上的问题,理论上应当将循环依赖进行分层,抽取公共部分,然后由各个功能类再去依赖公共部分。
但是在复杂代码中,各个service、manager类互相调用太多,总会一不小心出现一些类之间的循环依赖的问题。可有时候我们又发现在用Spring进行依赖注入时,虽然Bean之间有循环依赖,但是代码本身却大概率能很正常的work,似乎也没有任何bug。
很多敏感的同学心里肯定有些犯嘀咕,循环依赖这种触犯因果律的事情怎么能发生呢?没错,这一切其实都并不是那么理所当然。Spring已经为我们背负了太多,但绝不是偷懒的借口,还是应该规范设计,规范代码,尽量做到从根本上避免这种循环依赖的发生。
                分享文章:Spring循环依赖那些事儿(含Spring详细流程图)
                
                链接地址:http://www.csdahua.cn/qtweb/news41/499241.html
            
网站建设、网络推广公司-快上网,是专注品牌与效果的网站制作,网络营销seo公司;服务项目有等
声明:本网站发布的内容(图片、视频和文字)以用户投稿、用户转载内容为主,如果涉及侵权请尽快告知,我们将会在第一时间删除。文章观点不代表本网站立场,如需处理请联系客服。电话:028-86922220;邮箱:631063699@qq.com。内容未经允许不得转载,或转载时需注明来源: 快上网