配置文件到底能写什么?官网其实也给我们列出来了:
配置文件属性参考官网
可是没次都需要去看官网是不是显得我们太low,就让我们来了解其原理是如何实现的
当SpringBoot启动的时候加载主配置类,开启了自动配置功能 @EnableAutoConfiguration
点击进入@SpringBootApplication @EnableAutoConfiguration #开启自动配置功能;
@Target({ElementType.TYPE})
@Retention(RetentionPolicy.RUNTIME)
@Documented
@Inherited
@SpringBootConfiguration #@SpringBootConfiguration:Spring Boot的配置类;标注在某个类上,表示这是一个Spring Boot的配置类;
@EnableAutoConfiguration #开启自动配置功能;
@ComponentScan( #它对应的是xml配置中的元素,作用就是自动扫描并加载符合条件的组件,将该组件加载到ioc容器
excludeFilters = {@Filter(
type = FilterType.CUSTOM,
classes = {TypeExcludeFilter.class}
), @Filter(
type = FilterType.CUSTOM,
classes = {AutoConfigurationExcludeFilter.class}
)}
)
public @interface SpringBootApplication {
再进入 @EnableAutoConfiguration 源码:
@Import({AutoConfigurationImportSelector.class}):给容器中导入组件,由AutoConfigurationImportSelector.class将主配置类(@SpringBootApplication标注的类)的所在包及下面所有子包里面的所有组件扫描到Spring容器
@Target({ElementType.TYPE})
@Retention(RetentionPolicy.RUNTIME)
@Documented
@Inherited
#自动配置包
@AutoConfigurationPackage
# Spring的底层注解@Import,给容器中导入一个组件;导入的组件由 AutoConfigurationPackages.Registrar.class;
@Import({AutoConfigurationImportSelector.class})
public @interface EnableAutoConfiguration {
String ENABLED_OVERRIDE_PROPERTY = "spring.boot.enableautoconfiguration";
Class<?>[] exclude() default {};
String[] excludeName() default {};
}
通过getAutoConfigurationEntry获取自动配置项
public String[] selectImports(AnnotationMetadata annotationMetadata) {
if (!this.isEnabled(annotationMetadata)) {
return NO_IMPORTS;
} else {
AutoConfigurationImportSelector.AutoConfigurationEntry autoConfigurationEntry = this.getAutoConfigurationEntry(annotationMetadata);
return StringUtils.toStringArray(autoConfigurationEntry.getConfigurations());
}
}
点击getAutoConfigurationEntry 方法,将所有的自动配置的类名放到这个List中
protected AutoConfigurationImportSelector.AutoConfigurationEntry getAutoConfigurationEntry(AnnotationMetadata annotationMetadata) {
if (!this.isEnabled(annotationMetadata)) {
return EMPTY_ENTRY;
} else {
AnnotationAttributes attributes = this.getAttributes(annotationMetadata);
// 获取一个自动配置 List ,这个 List 就包含了所有的自动配置的类名
List<String> configurations = this.getCandidateConfigurations(annotationMetadata, attributes);
configurations = this.removeDuplicates(configurations);
Set<String> exclusions = this.getExclusions(annotationMetadata, attributes);
this.checkExcludedClasses(configurations, exclusions);
configurations.removeAll(exclusions);
configurations = this.getConfigurationClassFilter().filter(configurations);
this.fireAutoConfigurationImportEvents(configurations, exclusions);
return new AutoConfigurationImportSelector.AutoConfigurationEntry(configurations, exclusions);
}
}
再来进入 getCandidateConfigurations 方法就是 获取一个自动配置 List ,这个 List 就包含了所有的自动配置的类名 。
protected List<String> getCandidateConfigurations(AnnotationMetadata metadata, AnnotationAttributes attributes) {
List<String> configurations = SpringFactoriesLoader.loadFactoryNames(this.getSpringFactoriesLoaderFactoryClass(), this.getBeanClassLoader());
Assert.notEmpty(configurations, "No auto configuration classes found in META-INF/spring.factories. If you are using a custom packaging, make sure that file is correct.");
return configurations;
}
通过该方法:
SpringFactoriesLoader.loadFactoryNames(this.getSpringFactoriesLoaderFactoryClass(), this.getBeanClassLoader());
再进入 SpringFactoriesLoader 类的 loadFactoryNames 方法,跳转到 loadSpringFactories 方法,
扫描所有jar包类路径下 META‐INF/spring.factories 把扫描到的这些文件的内容包装成properties对象 从properties中获取到EnableAutoConfiguration.class类(类名)对应的值,然后把他们添加在容器 中
private static Map<String, List<String>> loadSpringFactories(@Nullable ClassLoader classLoader) {
MultiValueMap<String, String> result = (MultiValueMap)cache.get(classLoader);
if (result != null) {
return result;
} else {
try {
// 扫描所有 jar 包类路径下 META-INF/spring.factories
Enumeration<URL> urls = classLoader != null ? classLoader.getResources("META-INF/spring.factories") : ClassLoader.getSystemResources("META-INF/spring.factories");
LinkedMultiValueMap result = new LinkedMultiValueMap();
while(urls.hasMoreElements()) {
URL url = (URL)urls.nextElement();
UrlResource resource = new UrlResource(url);
// 把扫描到的这些文件的内容包装成 properties 对象
Properties properties = PropertiesLoaderUtils.loadProperties(resource);
Iterator var6 = properties.entrySet().iterator();
while(var6.hasNext()) {
Entry<?, ?> entry = (Entry)var6.next();
String factoryTypeName = ((String)entry.getKey()).trim();
String[] var9 = StringUtils.commaDelimitedListToStringArray((String)entry.getValue());
int var10 = var9.length;
for(int var11 = 0; var11 < var10; ++var11) {
String factoryImplementationName = var9[var11];
// 从 properties 中获取到 EnableAutoConfiguration.class 类(类名)对应的值,然后把他们添加在容器中
result.add(factoryTypeName, factoryImplementationName.trim());
}
}
}
cache.put(classLoader, result);
return result;
} catch (IOException var13) {
throw new IllegalArgumentException("Unable to load factories from location [META-INF/spring.factories]", var13);
}
}
}
将 类路径下 META-INF/spring.factories 里面配置的所有EnableAutoConfiguration的值加入到了容器中;
# Auto Configure
org.springframework.boot.autoconfigure.EnableAutoConfiguration=\
org.springframework.boot.autoconfigure.admin.SpringApplicationAdminJmxAutoConfiguration,\
org.springframework.boot.autoconfigure.aop.AopAutoConfiguration,\
org.springframework.boot.autoconfigure.amqp.RabbitAutoConfiguration,\
org.springframework.boot.autoconfigure.batch.BatchAutoConfiguration,\
org.springframework.boot.autoconfigure.cache.CacheAutoConfiguration,\
org.springframework.boot.autoconfigure.cassandra.CassandraAutoConfiguration,\
org.springframework.boot.autoconfigure.context.ConfigurationPropertiesAutoConfiguration,\
org.springframework.boot.autoconfigure.context.LifecycleAutoConfiguration,\
org.springframework.boot.autoconfigure.context.MessageSourceAutoConfiguration,\
org.springframework.boot.autoconfigure.context.PropertyPlaceholderAutoConfiguration,\
org.springframework.boot.autoconfigure.couchbase.CouchbaseAutoConfiguration,\
org.springframework.boot.autoconfigure.dao.PersistenceExceptionTranslationAutoConfiguration,\
org.springframework.boot.autoconfigure.data.cassandra.CassandraDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.cassandra.CassandraReactiveDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.cassandra.CassandraReactiveRepositoriesAutoConfiguration,\
................................
每一个这样的 xxxAutoConfiguration类都是容器中的一个组件,都加入到容器中;用他们来做自动配置;
以**HttpEncodingAutoConfiguration(Http编码自动配置)**为例解释自动配置原理;
@Configuration //表示这是一个配置类,以前编写的配置文件一样,也可以给容器中添加组件
@EnableConfigurationProperties(HttpEncodingProperties.class) //启动指定类的ConfigurationProperties功能;将配置文件中对应的值和HttpEncodingProperties绑定起来;并把HttpEncodingProperties加入到ioc容器中
@ConditionalOnWebApplication //Spring底层@Conditional注解(Spring注解版),根据不同的条件,如果满足指定的条件,整个配置类里面的配置就会生效; 判断当前应用是否是web应用,如果是,当前配置类生效
@ConditionalOnClass(CharacterEncodingFilter.class) //判断当前项目有没有这个类CharacterEncodingFilter;SpringMVC中进行乱码解决的过滤器;
@ConditionalOnProperty(prefix = "spring.http.encoding", value = "enabled", matchIfMissing = true) //判断配置文件中是否存在某个配置 spring.http.encoding.enabled;如果不存在,判断也是成立的
//即使我们配置文件中不配置pring.http.encoding.enabled=true,也是默认生效的;
public class HttpEncodingAutoConfiguration {
//他已经和SpringBoot的配置文件映射了
private final HttpEncodingProperties properties;
//只有一个有参构造器的情况下,参数的值就会从容器中拿
public HttpEncodingAutoConfiguration(HttpEncodingProperties properties) {
this.properties = properties;
}
@Bean //给容器中添加一个组件,这个组件的某些值需要从properties中获取
@ConditionalOnMissingBean(CharacterEncodingFilter.class) //判断容器没有这个组件?
public CharacterEncodingFilter characterEncodingFilter() {
CharacterEncodingFilter filter = new OrderedCharacterEncodingFilter();
filter.setEncoding(this.properties.getCharset().name());
filter.setForceRequestEncoding(this.properties.shouldForce(Type.REQUEST));
filter.setForceResponseEncoding(this.properties.shouldForce(Type.RESPONSE));
return filter;
}
根据当前不同的条件判断,决定这个配置类是否生效?
一但这个配置类生效;这个配置类就会给容器中添加各种组件;这些组件的属性是从对应的properties类中获取的,这些类里面的每一个属性又是和配置文件绑定的;
所有在配置文件中能配置的属性都是在xxxxProperties类中封装者‘;配置文件能配置什么就可以参照某个功能对应的这个属性类
@ConfigurationProperties(prefix = "spring.http.encoding") //从配置文件中获取指定的值和bean的属性进行绑定
public class HttpEncodingProperties {
public static final Charset DEFAULT_CHARSET = Charset.forName("UTF-8");
精髓:
1)、SpringBoot启动会加载大量的自动配置类
2)、我们看我们需要的功能有没有SpringBoot默认写好的自动配置类;
3)、我们再来看这个自动配置类中到底配置了哪些组件;(只要我们要用的组件有,我们就不需要再来配置了)
4)、给容器中自动配置类添加组件的时候,会从properties类中获取某些属性。我们就可以在配置文件中指定这些属性的值;
xxxxAutoConfigurartion:自动配置类;
给容器中添加组件
xxxxProperties:封装配置文件中相关属性;
作用:必须是@Conditional指定的条件成立,才给容器中添加组件,配置配里面的所有内容才生效;
@Conditional扩展注解 | 作用(判断是否满足当前指定条件) |
---|---|
@ConditionalOnJava | 系统的java版本是否符合要求 |
@ConditionalOnBean | 容器中存在指定Bean; |
@ConditionalOnMissingBean | 容器中不存在指定Bean; |
@ConditionalOnExpression | 满足SpEL表达式指定 |
@ConditionalOnClass | 系统中有指定的类 |
@ConditionalOnMissingClass | 系统中没有指定的类 |
@ConditionalOnSingleCandidate | 容器中只有一个指定的Bean,或者这个Bean是首选Bean |
@ConditionalOnProperty | 系统中指定的属性是否有指定的值 |
@ConditionalOnResource | 类路径下是否存在指定资源文件 |
@ConditionalOnWebApplication | 当前是web环境 |
@ConditionalOnNotWebApplication | 当前不是web环境 |
@ConditionalOnJndi | JNDI存在指定项 |
自动配置类必须在一定的条件下才能生效;
我们怎么知道哪些自动配置类生效;
我们可以通过启用 debug=true属性;来让控制台打印自动配置报告,这样我们就可以很方便的知道哪些自动配置类生效;
=========================
AUTO-CONFIGURATION REPORT
=========================
Positive matches:(自动配置类启用的)
-----------------
DispatcherServletAutoConfiguration matched:
- @ConditionalOnClass found required class 'org.springframework.web.servlet.DispatcherServlet'; @ConditionalOnMissingClass did not find unwanted class (OnClassCondition)
- @ConditionalOnWebApplication (required) found StandardServletEnvironment (OnWebApplicationCondition)
Negative matches:(没有启动,没有匹配成功的自动配置类)
-----------------
ActiveMQAutoConfiguration:
Did not match:
- @ConditionalOnClass did not find required classes 'javax.jms.ConnectionFactory', 'org.apache.activemq.ActiveMQConnectionFactory' (OnClassCondition)
AopAutoConfiguration:
Did not match:
- @ConditionalOnClass did not find required classes 'org.aspectj.lang.annotation.Aspect', 'org.aspectj.lang.reflect.Advice' (OnClassCondition)