https://spring.io/projects/spring-boot
覆盖了:
web开发
数据访问
安全控制
分布式
消息服务
移动开发
批处理
…
基于Java8的一些新特性,如:接口默认实现。重新设计源码架构。
Spring Boot makes it easy to create stand-alone, production-grade Spring based Applications that you can “just run”.
能快速创建出生产级别的Spring应用
Create stand-alone Spring applications
Embed Tomcat, Jetty or Undertow directly (no need to deploy WAR files)
Provide opinionated ‘starter’ dependencies to simplify your build configuration
Automatically configure Spring and 3rd party libraries whenever possible
Provide production-ready features such as metrics, health checks, and externalized configuration
Absolutely no code generation and no requirement for XML configuration
SpringBoot是整合Spring技术栈的一站式框架
SpringBoot是简化Spring技术栈的快速开发脚手架
James Lewis and Martin Fowler (2014) 提出微服务完整概念。https://martinfowler.com/microservices/
In short, the microservice architectural style is an approach to developing a single application as a suite of small services, each running in its own process and communicating with lightweight mechanisms, often an HTTP resource API. These services are built around business capabilities and independently deployable by fully automated deployment machinery. There is a bare minimum of centralized management of these services, which may be written in different programming languages and use different data storage technologies.-- James Lewis and Martin Fowler (2014)
微服务是一种架构风格
一个应用拆分为一组小型服务
每个服务运行在自己的进程内,也就是可独立部署和升级
服务之间使用轻量级HTTP交互
服务围绕业务功能拆分
可以由全自动部署机制独立部署
去中心化,服务自治。服务可以使用不同的语言、不同的存储技术
远程调用
服务发现
负载均衡
服务容错
配置管理
服务监控
链路追踪
日志管理
任务调度
…
原生应用如何上云。 Cloud Native
服务自愈
弹性伸缩
服务隔离
自动化部署
灰度发布
流量治理
…
查看版本新特性;
https://github.com/spring-projects/spring-boot/wiki#release-notes
Java 8 & 兼容java14 .
Maven 3.3+
idea 2019.1.2
<mirrors>
<mirror>
<id>nexus-aliyunid>
<mirrorOf>centralmirrorOf>
<name>Nexus aliyunname>
<url>http://maven.aliyun.com/nexus/content/groups/publicurl>
mirror>
mirrors>
<profiles>
<profile>
<id>jdk-1.8id>
<activation>
<activeByDefault>trueactiveByDefault>
<jdk>1.8jdk>
activation>
<properties>
<maven.compiler.source>1.8maven.compiler.source>
<maven.compiler.target>1.8maven.compiler.target>
<maven.compiler.compilerVersion>1.8maven.compiler.compilerVersion>
properties>
profile>
profiles>
需求:浏览发送/hello请求,响应 Hello,Spring Boot 2
<parent>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-parentartifactId>
<version>2.3.4.RELEASEversion>
parent>
<dependencies>
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-webartifactId>
dependency>
dependencies>
/**
* 主程序类
* @SpringBootApplication:这是一个SpringBoot应用
*/
@SpringBootApplication
public class MainApplication {
public static void main(String[] args) {
SpringApplication.run(MainApplication.class,args);
}
}
@RestController
public class HelloController {
@RequestMapping("/hello")
public String handle01(){
return "Hello, Spring Boot 2!";
}
}
直接运行main方法
application.properties
server.port=8888
<build>
<plugins>
<plugin>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-maven-pluginartifactId>
plugin>
plugins>
build>
把项目打成jar包,直接在目标服务器执行即可。
注意点:
依赖管理
<parent>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-parentartifactId>
<version>2.3.4.RELEASEversion>
parent>
他的父项目
<parent>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-dependenciesartifactId>
<version>2.3.4.RELEASEversion>
parent>
几乎声明了所有开发中常用的依赖的版本号,自动版本仲裁机制
1、见到很多 spring-boot-starter-* : *就某种场景
2、只要引入starter,这个场景的所有常规需要的依赖我们都自动引入
3、SpringBoot所有支持的场景
https://docs.spring.io/spring-boot/docs/current/reference/html/using-spring-boot.html#using-boot-starter
4、见到的 *-spring-boot-starter: 第三方为我们提供的简化开发的场景启动器。
5、所有场景启动器最底层的依赖
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starterartifactId>
<version>2.3.4.RELEASEversion>
<scope>compilescope>
dependency>
1、引入依赖默认都可以不写版本
2、引入非版本仲裁的jar,要写版本号。
1、查看spring-boot-dependencies里面规定当前依赖的版本 用的 key。
2、在当前项目里面重写配置
<properties>
<mysql.version>5.1.43mysql.version>
properties>
自动配好Tomcat
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-tomcatartifactId>
<version>2.3.4.RELEASEversion>
<scope>compilescope>
dependency>
自动配好SpringMVC
自动配好Web常见功能,如:字符编码问题
默认的包结构
@SpringBootApplication
等同于
@SpringBootConfiguration
@EnableAutoConfiguration
@ComponentScan("com.atguigu.boot")
各种配置拥有默认值
按需加载所有自动配置项
…
基本使用
Full模式与Lite模式
#############################Configuration使用示例######################################################
/**
* 1、配置类里面使用@Bean标注在方法上给容器注册组件,默认也是单实例的
* 2、配置类本身也是组件
* 3、proxyBeanMethods:代理bean的方法
* Full(proxyBeanMethods = true)、【保证每个@Bean方法被调用多少次返回的组件都是单实例的】
* Lite(proxyBeanMethods = false)【每个@Bean方法被调用多少次返回的组件都是新创建的】
* 组件依赖必须使用Full模式默认。其他默认是否Lite模式
*
*
*
*/
@Configuration(proxyBeanMethods = false) //告诉SpringBoot这是一个配置类 == 配置文件
public class MyConfig {
/**
* Full:外部无论对配置类中的这个组件注册方法调用多少次获取的都是之前注册容器中的单实例对象
* @return
*/
@Bean //给容器中添加组件。以方法名作为组件的id。返回类型就是组件类型。返回的值,就是组件在容器中的实例
public User user01(){
User zhangsan = new User("zhangsan", 18);
//user组件依赖了Pet组件
zhangsan.setPet(tomcatPet());
return zhangsan;
}
@Bean("tom")
public Pet tomcatPet(){
return new Pet("tomcat");
}
}
################################@Configuration测试代码如下########################################
@SpringBootConfiguration
@EnableAutoConfiguration
@ComponentScan("com.atguigu.boot")
public class MainApplication {
public static void main(String[] args) {
//1、返回我们IOC容器
ConfigurableApplicationContext run = SpringApplication.run(MainApplication.class, args);
//2、查看容器里面的组件
String[] names = run.getBeanDefinitionNames();
for (String name : names) {
System.out.println(name);
}
//3、从容器中获取组件
Pet tom01 = run.getBean("tom", Pet.class);
Pet tom02 = run.getBean("tom", Pet.class);
System.out.println("组件:"+(tom01 == tom02));
//4、com.atguigu.boot.config.MyConfig$$EnhancerBySpringCGLIB$$51f1e1ca@1654a892
MyConfig bean = run.getBean(MyConfig.class);
System.out.println(bean);
//如果@Configuration(proxyBeanMethods = true)代理对象调用方法。SpringBoot总会检查这个组件是否在容器中有。
//保持组件单实例
User user = bean.user01();
User user1 = bean.user01();
System.out.println(user == user1);
User user01 = run.getBean("user01", User.class);
Pet tom = run.getBean("tom", Pet.class);
System.out.println("用户的宠物:"+(user01.getPet() == tom));
}
}
* 4、@Import({User.class, DBHelper.class})
* 给容器中自动创建出这两个类型的组件、默认组件的名字就是全类名
*
*
*
*/
@Import({User.class, DBHelper.class})
@Configuration(proxyBeanMethods = false) //告诉SpringBoot这是一个配置类 == 配置文件
public class MyConfig {
}
@Import 高级用法: https://www.bilibili.com/video/BV1gW411W7wy?p=8
条件装配:满足Conditional指定的条件,则进行组件注入
=====================测试条件装配==========================
@Configuration(proxyBeanMethods = false) //告诉SpringBoot这是一个配置类 == 配置文件
//@ConditionalOnBean(name = "tom")
@ConditionalOnMissingBean(name = "tom")
public class MyConfig {
/**
* Full:外部无论对配置类中的这个组件注册方法调用多少次获取的都是之前注册容器中的单实例对象
* @return
*/
@Bean //给容器中添加组件。以方法名作为组件的id。返回类型就是组件类型。返回的值,就是组件在容器中的实例
public User user01(){
User zhangsan = new User("zhangsan", 18);
//user组件依赖了Pet组件
zhangsan.setPet(tomcatPet());
return zhangsan;
}
@Bean("tom22")
public Pet tomcatPet(){
return new Pet("tomcat");
}
}
public static void main(String[] args) {
//1、返回我们IOC容器
ConfigurableApplicationContext run = SpringApplication.run(MainApplication.class, args);
//2、查看容器里面的组件
String[] names = run.getBeanDefinitionNames();
for (String name : names) {
System.out.println(name);
}
boolean tom = run.containsBean("tom");
System.out.println("容器中Tom组件:"+tom);
boolean user01 = run.containsBean("user01");
System.out.println("容器中user01组件:"+user01);
boolean tom22 = run.containsBean("tom22");
System.out.println("容器中tom22组件:"+tom22);
}
======================beans.xml=========================
<beans xmlns="http://www.springframework.org/schema/beans"
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
xmlns:context="http://www.springframework.org/schema/context"
xsi:schemaLocation="http://www.springframework.org/schema/beans http://www.springframework.org/schema/beans/spring-beans.xsd http://www.springframework.org/schema/context https://www.springframework.org/schema/context/spring-context.xsd">
<bean id="haha" class="com.atguigu.boot.bean.User">
<property name="name" value="zhangsan">property>
<property name="age" value="18">property>
bean>
<bean id="hehe" class="com.atguigu.boot.bean.Pet">
<property name="name" value="tomcat">property>
bean>
beans>
@ImportResource("classpath:beans.xml")
public class MyConfig {}
======================测试=================
boolean haha = run.containsBean("haha");
boolean hehe = run.containsBean("hehe");
System.out.println("haha:"+haha);//true
System.out.println("hehe:"+hehe);//true
如何使用Java读取到properties文件中的内容,并且把它封装到JavaBean中,以供随时使用;
public class getProperties {
public static void main(String[] args) throws FileNotFoundException, IOException {
Properties pps = new Properties();
pps.load(new FileInputStream("a.properties"));
Enumeration enum1 = pps.propertyNames();//得到配置文件的名字
while(enum1.hasMoreElements()) {
String strKey = (String) enum1.nextElement();
String strValue = pps.getProperty(strKey);
System.out.println(strKey + "=" + strValue);
//封装到JavaBean。
}
}
}
/**
* 只有在容器中的组件,才会拥有SpringBoot提供的强大功能
*/
@Component
@ConfigurationProperties(prefix = "mycar")
public class Car {
private String brand;
private Integer price;
public String getBrand() {
return brand;
}
public void setBrand(String brand) {
this.brand = brand;
}
public Integer getPrice() {
return price;
}
public void setPrice(Integer price) {
this.price = price;
}
@Override
public String toString() {
return "Car{" +
"brand='" + brand + '\'' +
", price=" + price +
'}';
}
}
@EnableConfigurationProperties(Car.class)
//1、开启Car配置绑定功能
//2、把这个Car这个组件自动注册到容器中
public class MyConfig {
}
@SpringBootConfiguration
@EnableAutoConfiguration
@ComponentScan(excludeFilters = { @Filter(type = FilterType.CUSTOM, classes = TypeExcludeFilter.class),
@Filter(type = FilterType.CUSTOM, classes = AutoConfigurationExcludeFilter.class) })
public @interface SpringBootApplication{}
======================
@Configuration。代表当前是一个配置类
指定扫描哪些,Spring注解;
@AutoConfigurationPackage
@Import(AutoConfigurationImportSelector.class)
public @interface EnableAutoConfiguration {}
自动配置包?指定了默认的包规则
@Import(AutoConfigurationPackages.Registrar.class) //给容器中导入一个组件
public @interface AutoConfigurationPackage {}
//利用Registrar给容器中导入一系列组件
//将指定的一个包下的所有组件导入进来?MainApplication 所在包下。
1、利用getAutoConfigurationEntry(annotationMetadata);给容器中批量导入一些组件
2、调用List<String> configurations = getCandidateConfigurations(annotationMetadata, attributes)获取到所有需要导入到容器中的配置类
3、利用工厂加载 Map<String, List<String>> loadSpringFactories(@Nullable ClassLoader classLoader);得到所有的组件
4、从META-INF/spring.factories位置来加载一个文件。
默认扫描我们当前系统里面所有META-INF/spring.factories位置的文件
spring-boot-autoconfigure-2.3.4.RELEASE.jar包里面也有META-INF/spring.factories
文件里面写死了spring-boot一启动就要给容器中加载的所有配置类
spring-boot-autoconfigure-2.3.4.RELEASE.jar/META-INF/spring.factories
# 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,\
org.springframework.boot.autoconfigure.data.cassandra.CassandraRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.couchbase.CouchbaseDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.couchbase.CouchbaseReactiveDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.couchbase.CouchbaseReactiveRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.couchbase.CouchbaseRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.elasticsearch.ElasticsearchDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.elasticsearch.ElasticsearchRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.elasticsearch.ReactiveElasticsearchRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.elasticsearch.ReactiveElasticsearchRestClientAutoConfiguration,\
org.springframework.boot.autoconfigure.data.jdbc.JdbcRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.jpa.JpaRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.ldap.LdapRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.mongo.MongoDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.mongo.MongoReactiveDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.mongo.MongoReactiveRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.mongo.MongoRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.neo4j.Neo4jDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.neo4j.Neo4jRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.solr.SolrRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.r2dbc.R2dbcDataAutoConfiguration,\
org.springframework.boot.autoconfigure.data.r2dbc.R2dbcRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.r2dbc.R2dbcTransactionManagerAutoConfiguration,\
org.springframework.boot.autoconfigure.data.redis.RedisAutoConfiguration,\
org.springframework.boot.autoconfigure.data.redis.RedisReactiveAutoConfiguration,\
org.springframework.boot.autoconfigure.data.redis.RedisRepositoriesAutoConfiguration,\
org.springframework.boot.autoconfigure.data.rest.RepositoryRestMvcAutoConfiguration,\
org.springframework.boot.autoconfigure.data.web.SpringDataWebAutoConfiguration,\
org.springframework.boot.autoconfigure.elasticsearch.ElasticsearchRestClientAutoConfiguration,\
org.springframework.boot.autoconfigure.flyway.FlywayAutoConfiguration,\
org.springframework.boot.autoconfigure.freemarker.FreeMarkerAutoConfiguration,\
org.springframework.boot.autoconfigure.groovy.template.GroovyTemplateAutoConfiguration,\
org.springframework.boot.autoconfigure.gson.GsonAutoConfiguration,\
org.springframework.boot.autoconfigure.h2.H2ConsoleAutoConfiguration,\
org.springframework.boot.autoconfigure.hateoas.HypermediaAutoConfiguration,\
org.springframework.boot.autoconfigure.hazelcast.HazelcastAutoConfiguration,\
org.springframework.boot.autoconfigure.hazelcast.HazelcastJpaDependencyAutoConfiguration,\
org.springframework.boot.autoconfigure.http.HttpMessageConvertersAutoConfiguration,\
org.springframework.boot.autoconfigure.http.codec.CodecsAutoConfiguration,\
org.springframework.boot.autoconfigure.influx.InfluxDbAutoConfiguration,\
org.springframework.boot.autoconfigure.info.ProjectInfoAutoConfiguration,\
org.springframework.boot.autoconfigure.integration.IntegrationAutoConfiguration,\
org.springframework.boot.autoconfigure.jackson.JacksonAutoConfiguration,\
org.springframework.boot.autoconfigure.jdbc.DataSourceAutoConfiguration,\
org.springframework.boot.autoconfigure.jdbc.JdbcTemplateAutoConfiguration,\
org.springframework.boot.autoconfigure.jdbc.JndiDataSourceAutoConfiguration,\
org.springframework.boot.autoconfigure.jdbc.XADataSourceAutoConfiguration,\
org.springframework.boot.autoconfigure.jdbc.DataSourceTransactionManagerAutoConfiguration,\
org.springframework.boot.autoconfigure.jms.JmsAutoConfiguration,\
org.springframework.boot.autoconfigure.jmx.JmxAutoConfiguration,\
org.springframework.boot.autoconfigure.jms.JndiConnectionFactoryAutoConfiguration,\
org.springframework.boot.autoconfigure.jms.activemq.ActiveMQAutoConfiguration,\
org.springframework.boot.autoconfigure.jms.artemis.ArtemisAutoConfiguration,\
org.springframework.boot.autoconfigure.jersey.JerseyAutoConfiguration,\
org.springframework.boot.autoconfigure.jooq.JooqAutoConfiguration,\
org.springframework.boot.autoconfigure.jsonb.JsonbAutoConfiguration,\
org.springframework.boot.autoconfigure.kafka.KafkaAutoConfiguration,\
org.springframework.boot.autoconfigure.availability.ApplicationAvailabilityAutoConfiguration,\
org.springframework.boot.autoconfigure.ldap.embedded.EmbeddedLdapAutoConfiguration,\
org.springframework.boot.autoconfigure.ldap.LdapAutoConfiguration,\
org.springframework.boot.autoconfigure.liquibase.LiquibaseAutoConfiguration,\
org.springframework.boot.autoconfigure.mail.MailSenderAutoConfiguration,\
org.springframework.boot.autoconfigure.mail.MailSenderValidatorAutoConfiguration,\
org.springframework.boot.autoconfigure.mongo.embedded.EmbeddedMongoAutoConfiguration,\
org.springframework.boot.autoconfigure.mongo.MongoAutoConfiguration,\
org.springframework.boot.autoconfigure.mongo.MongoReactiveAutoConfiguration,\
org.springframework.boot.autoconfigure.mustache.MustacheAutoConfiguration,\
org.springframework.boot.autoconfigure.orm.jpa.HibernateJpaAutoConfiguration,\
org.springframework.boot.autoconfigure.quartz.QuartzAutoConfiguration,\
org.springframework.boot.autoconfigure.r2dbc.R2dbcAutoConfiguration,\
org.springframework.boot.autoconfigure.rsocket.RSocketMessagingAutoConfiguration,\
org.springframework.boot.autoconfigure.rsocket.RSocketRequesterAutoConfiguration,\
org.springframework.boot.autoconfigure.rsocket.RSocketServerAutoConfiguration,\
org.springframework.boot.autoconfigure.rsocket.RSocketStrategiesAutoConfiguration,\
org.springframework.boot.autoconfigure.security.servlet.SecurityAutoConfiguration,\
org.springframework.boot.autoconfigure.security.servlet.UserDetailsServiceAutoConfiguration,\
org.springframework.boot.autoconfigure.security.servlet.SecurityFilterAutoConfiguration,\
org.springframework.boot.autoconfigure.security.reactive.ReactiveSecurityAutoConfiguration,\
org.springframework.boot.autoconfigure.security.reactive.ReactiveUserDetailsServiceAutoConfiguration,\
org.springframework.boot.autoconfigure.security.rsocket.RSocketSecurityAutoConfiguration,\
org.springframework.boot.autoconfigure.security.saml2.Saml2RelyingPartyAutoConfiguration,\
org.springframework.boot.autoconfigure.sendgrid.SendGridAutoConfiguration,\
org.springframework.boot.autoconfigure.session.SessionAutoConfiguration,\
org.springframework.boot.autoconfigure.security.oauth2.client.servlet.OAuth2ClientAutoConfiguration,\
org.springframework.boot.autoconfigure.security.oauth2.client.reactive.ReactiveOAuth2ClientAutoConfiguration,\
org.springframework.boot.autoconfigure.security.oauth2.resource.servlet.OAuth2ResourceServerAutoConfiguration,\
org.springframework.boot.autoconfigure.security.oauth2.resource.reactive.ReactiveOAuth2ResourceServerAutoConfiguration,\
org.springframework.boot.autoconfigure.solr.SolrAutoConfiguration,\
org.springframework.boot.autoconfigure.task.TaskExecutionAutoConfiguration,\
org.springframework.boot.autoconfigure.task.TaskSchedulingAutoConfiguration,\
org.springframework.boot.autoconfigure.thymeleaf.ThymeleafAutoConfiguration,\
org.springframework.boot.autoconfigure.transaction.TransactionAutoConfiguration,\
org.springframework.boot.autoconfigure.transaction.jta.JtaAutoConfiguration,\
org.springframework.boot.autoconfigure.validation.ValidationAutoConfiguration,\
org.springframework.boot.autoconfigure.web.client.RestTemplateAutoConfiguration,\
org.springframework.boot.autoconfigure.web.embedded.EmbeddedWebServerFactoryCustomizerAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.HttpHandlerAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.ReactiveWebServerFactoryAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.WebFluxAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.error.ErrorWebFluxAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.function.client.ClientHttpConnectorAutoConfiguration,\
org.springframework.boot.autoconfigure.web.reactive.function.client.WebClientAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.DispatcherServletAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.ServletWebServerFactoryAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.error.ErrorMvcAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.HttpEncodingAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.MultipartAutoConfiguration,\
org.springframework.boot.autoconfigure.web.servlet.WebMvcAutoConfiguration,\
org.springframework.boot.autoconfigure.websocket.reactive.WebSocketReactiveAutoConfiguration,\
org.springframework.boot.autoconfigure.websocket.servlet.WebSocketServletAutoConfiguration,\
org.springframework.boot.autoconfigure.websocket.servlet.WebSocketMessagingAutoConfiguration,\
org.springframework.boot.autoconfigure.webservices.WebServicesAutoConfiguration,\
org.springframework.boot.autoconfigure.webservices.client.WebServiceTemplateAutoConfiguration
虽然我们127个场景的所有自动配置启动的时候默认全部加载。xxxxAutoConfiguration
按照条件装配规则(@Conditional),最终会按需配置。
@Bean
@ConditionalOnBean(MultipartResolver.class) //容器中有这个类型组件
@ConditionalOnMissingBean(name = DispatcherServlet.MULTIPART_RESOLVER_BEAN_NAME) //容器中没有这个名字 multipartResolver 的组件
public MultipartResolver multipartResolver(MultipartResolver resolver) {
//给@Bean标注的方法传入了对象参数,这个参数的值就会从容器中找。
//SpringMVC multipartResolver。防止有些用户配置的文件上传解析器不符合规范
// Detect if the user has created a MultipartResolver but named it incorrectly
return resolver;
}
给容器中加入了文件上传解析器;
SpringBoot默认会在底层配好所有的组件。但是如果用户自己配置了以用户的优先
@Bean
@ConditionalOnMissingBean
public CharacterEncodingFilter characterEncodingFilter() {
}
总结:
SpringBoot先加载所有的自动配置类 xxxxxAutoConfiguration
每个自动配置类按照条件进行生效,默认都会绑定配置文件指定的值。xxxxProperties里面拿。xxxProperties和配置文件进行了绑定
生效的配置类就会给容器中装配很多组件
只要容器中有这些组件,相当于这些功能就有了
定制化配置
xxxxxAutoConfiguration —> 组件 —> xxxxProperties里面拿值 ----> application.properties
引入场景依赖
查看自动配置了哪些(选做)
是否需要修改
简化JavaBean开发
<dependency>
<groupId>org.projectlombokgroupId>
<artifactId>lombokartifactId>
dependency>
idea中搜索安装lombok插件
===============================简化JavaBean开发===================================
@NoArgsConstructor
//@AllArgsConstructor
@Data
@ToString
@EqualsAndHashCode
public class User {
private String name;
private Integer age;
private Pet pet;
public User(String name,Integer age){
this.name = name;
this.age = age;
}
}
================================简化日志开发===================================
@Slf4j
@RestController
public class HelloController {
@RequestMapping("/hello")
public String handle01(@RequestParam("name") String name){
log.info("请求进来了....");
return "Hello, Spring Boot 2!"+"你好:"+name;
}
}
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-devtoolsartifactId>
<optional>trueoptional>
dependency>
项目或者页面修改以后:Ctrl+F9;
同以前的properties用法
YAML 是 “YAML Ain’t Markup Language”(YAML 不是一种标记语言)的递归缩写。在开发的这种语言时,YAML 的意思其实是:“Yet Another Markup Language”(仍是一种标记语言)。
非常适合用来做以数据为中心的配置文件
key: value;kv之间有空格
大小写敏感
使用缩进表示层级关系
缩进不允许使用tab,只允许空格
缩进的空格数不重要,只要相同层级的元素左对齐即可
'#'表示注释
字符串无需加引号,如果要加,''与""表示字符串内容 会被 转义/不转义
k: v
行内写法: k: {k1:v1,k2:v2,k3:v3}
#或
k:
k1: v1
k2: v2
k3: v3
行内写法: k: [v1,v2,v3]
#或者
k:
- v1
- v2
- v3
@Data
public class Person {
private String userName;
private Boolean boss;
private Date birth;
private Integer age;
private Pet pet;
private String[] interests;
private List<String> animal;
private Map<String, Object> score;
private Set<Double> salarys;
private Map<String, List<Pet>> allPets;
}
@Data
public class Pet {
private String name;
private Double weight;
}
# yaml表示以上对象
person:
userName: zhangsan
boss: false
birth: 2019/12/12 20:12:33
age: 18
pet:
name: tomcat
weight: 23.4
interests: [篮球,游泳]
animal:
- jerry
- mario
score:
english:
first: 30
second: 40
third: 50
math: [131,140,148]
chinese: {first: 128,second: 136}
salarys: [3999,4999.98,5999.99]
allPets:
sick:
- {name: tom}
- {name: jerry,weight: 47}
health: [{name: mario,weight: 47}]
自定义的类和配置文件绑定一般没有提示。
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-configuration-processorartifactId>
<optional>trueoptional>
dependency>
<build>
<plugins>
<plugin>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-maven-pluginartifactId>
<configuration>
<excludes>
<exclude>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-configuration-processorartifactId>
exclude>
excludes>
configuration>
plugin>
plugins>
build>
Spring Boot provides auto-configuration for Spring MVC that works well with most applications.(大多场景我们都无需自定义配置)
The auto-configuration adds the following features on top of Spring’s defaults:
Inclusion of ContentNegotiatingViewResolver
and BeanNameViewResolver
beans.
Support for serving static resources, including support for WebJars (covered later in this document)).
Automatic registration of Converter
, GenericConverter
, and Formatter
beans.
Converter,GenericConverter,Formatter
Support for HttpMessageConverters
(covered later in this document).
HttpMessageConverters
(后来我们配合内容协商理解原理)Automatic registration of MessageCodesResolver
(covered later in this document).
MessageCodesResolver
(国际化用)Static index.html
support.
Custom Favicon
support (covered later in this document).
Favicon
Automatic use of a ConfigurableWebBindingInitializer
bean (covered later in this document).
ConfigurableWebBindingInitializer
,(DataBinder负责将请求数据绑定到JavaBean上)If you want to keep those Spring Boot MVC customizations and make more MVC customizations (interceptors, formatters, view controllers, and other features), you can add your own @Configuration
class of type WebMvcConfigurer
but without @EnableWebMvc
.
不用@EnableWebMvc注解。使用 **@Configuration**
+ **WebMvcConfigurer**
自定义规则
If you want to provide custom instances of RequestMappingHandlerMapping
, RequestMappingHandlerAdapter
, or ExceptionHandlerExceptionResolver
, and still keep the Spring Boot MVC customizations, you can declare a bean of type WebMvcRegistrations
and use it to provide custom instances of those components.
声明 **WebMvcRegistrations**
改变默认底层组件
If you want to take complete control of Spring MVC, you can add your own @Configuration
annotated with @EnableWebMvc
, or alternatively add your own @Configuration
-annotated DelegatingWebMvcConfiguration
as described in the Javadoc of @EnableWebMvc
.
使用 **@EnableWebMvc+@Configuration+DelegatingWebMvcConfiguration 全面接管SpringMVC**
只要静态资源放在类路径下: called /static
(or /public
or /resources
or /META-INF/resources
访问 : 当前项目根路径/ + 静态资源名
原理: 静态映射/**。
请求进来,先去找Controller看能不能处理。不能处理的所有请求又都交给静态资源处理器。静态资源也找不到则响应404页面
改变默认的静态资源路径
spring:
mvc:
static-path-pattern: /res/**
resources:
static-locations: [classpath:/haha/]
默认无前缀
spring:
mvc:
static-path-pattern: /res/**
当前项目 + static-path-pattern + 静态资源名 = 静态资源文件夹下找
自动映射 /webjars/**
https://www.webjars.org/
<dependency>
<groupId>org.webjarsgroupId>
<artifactId>jqueryartifactId>
<version>3.5.1version>
dependency>
访问地址:http://localhost:8080/webjars/jquery/3.5.1/jquery.js 后面地址要按照依赖里面的包路径
静态资源路径下 index.html
spring:
# mvc:
# static-path-pattern: /res/** 这个会导致welcome page功能失效
resources:
static-locations: [classpath:/haha/]
Favicon
favicon.ico 放在静态资源目录下即可。
spring:
# mvc:
# static-path-pattern: /res/** 这个会导致 Favicon 功能失效
@Configuration(proxyBeanMethods = false)
@ConditionalOnWebApplication(type = Type.SERVLET)
@ConditionalOnClass({ Servlet.class, DispatcherServlet.class, WebMvcConfigurer.class })
@ConditionalOnMissingBean(WebMvcConfigurationSupport.class)
@AutoConfigureOrder(Ordered.HIGHEST_PRECEDENCE + 10)
@AutoConfigureAfter({ DispatcherServletAutoConfiguration.class, TaskExecutionAutoConfiguration.class,
ValidationAutoConfiguration.class })
public class WebMvcAutoConfiguration {}
@Configuration(proxyBeanMethods = false)
@Import(EnableWebMvcConfiguration.class)
@EnableConfigurationProperties({ WebMvcProperties.class, ResourceProperties.class })
@Order(0)
public static class WebMvcAutoConfigurationAdapter implements WebMvcConfigurer {}
//有参构造器所有参数的值都会从容器中确定
//ResourceProperties resourceProperties;获取和spring.resources绑定的所有的值的对象
//WebMvcProperties mvcProperties 获取和spring.mvc绑定的所有的值的对象
//ListableBeanFactory beanFactory Spring的beanFactory
//HttpMessageConverters 找到所有的HttpMessageConverters
//ResourceHandlerRegistrationCustomizer 找到 资源处理器的自定义器。=========
//DispatcherServletPath
//ServletRegistrationBean 给应用注册Servlet、Filter....
public WebMvcAutoConfigurationAdapter(ResourceProperties resourceProperties, WebMvcProperties mvcProperties,
ListableBeanFactory beanFactory, ObjectProvider<HttpMessageConverters> messageConvertersProvider,
ObjectProvider<ResourceHandlerRegistrationCustomizer> resourceHandlerRegistrationCustomizerProvider,
ObjectProvider<DispatcherServletPath> dispatcherServletPath,
ObjectProvider<ServletRegistrationBean<?>> servletRegistrations) {
this.resourceProperties = resourceProperties;
this.mvcProperties = mvcProperties;
this.beanFactory = beanFactory;
this.messageConvertersProvider = messageConvertersProvider;
this.resourceHandlerRegistrationCustomizer = resourceHandlerRegistrationCustomizerProvider.getIfAvailable();
this.dispatcherServletPath = dispatcherServletPath;
this.servletRegistrations = servletRegistrations;
}
@Override
public void addResourceHandlers(ResourceHandlerRegistry registry) {
if (!this.resourceProperties.isAddMappings()) {
logger.debug("Default resource handling disabled");
return;
}
Duration cachePeriod = this.resourceProperties.getCache().getPeriod();
CacheControl cacheControl = this.resourceProperties.getCache().getCachecontrol().toHttpCacheControl();
//webjars的规则
if (!registry.hasMappingForPattern("/webjars/**")) {
customizeResourceHandlerRegistration(registry.addResourceHandler("/webjars/**")
.addResourceLocations("classpath:/META-INF/resources/webjars/")
.setCachePeriod(getSeconds(cachePeriod)).setCacheControl(cacheControl));
}
//
String staticPathPattern = this.mvcProperties.getStaticPathPattern();
if (!registry.hasMappingForPattern(staticPathPattern)) {
customizeResourceHandlerRegistration(registry.addResourceHandler(staticPathPattern)
.addResourceLocations(getResourceLocations(this.resourceProperties.getStaticLocations()))
.setCachePeriod(getSeconds(cachePeriod)).setCacheControl(cacheControl));
}
}
spring:
# mvc:
# static-path-pattern: /res/**
resources:
add-mappings: false 禁用所有静态资源规则
@ConfigurationProperties(prefix = "spring.resources", ignoreUnknownFields = false)
public class ResourceProperties {
private static final String[] CLASSPATH_RESOURCE_LOCATIONS = { "classpath:/META-INF/resources/",
"classpath:/resources/", "classpath:/static/", "classpath:/public/" };
/**
* Locations of static resources. Defaults to classpath:[/META-INF/resources/,
* /resources/, /static/, /public/].
*/
private String[] staticLocations = CLASSPATH_RESOURCE_LOCATIONS;
HandlerMapping:处理器映射。保存了每一个Handler能处理哪些请求。
@Bean
public WelcomePageHandlerMapping welcomePageHandlerMapping(ApplicationContext applicationContext,
FormattingConversionService mvcConversionService, ResourceUrlProvider mvcResourceUrlProvider) {
WelcomePageHandlerMapping welcomePageHandlerMapping = new WelcomePageHandlerMapping(
new TemplateAvailabilityProviders(applicationContext), applicationContext, getWelcomePage(),
this.mvcProperties.getStaticPathPattern());
welcomePageHandlerMapping.setInterceptors(getInterceptors(mvcConversionService, mvcResourceUrlProvider));
welcomePageHandlerMapping.setCorsConfigurations(getCorsConfigurations());
return welcomePageHandlerMapping;
}
WelcomePageHandlerMapping(TemplateAvailabilityProviders templateAvailabilityProviders,
ApplicationContext applicationContext, Optional<Resource> welcomePage, String staticPathPattern) {
if (welcomePage.isPresent() && "/**".equals(staticPathPattern)) {
//要用欢迎页功能,必须是/**
logger.info("Adding welcome page: " + welcomePage.get());
setRootViewName("forward:index.html");
}
else if (welcomeTemplateExists(templateAvailabilityProviders, applicationContext)) {
// 调用Controller /index
logger.info("Adding welcome page template: index");
setRootViewName("index");
}
}
@xxxMapping;
Rest风格支持(使用HTTP请求方式动词来表示对资源的操作)
@RequestMapping(value = "/user",method = RequestMethod.GET)
public String getUser(){
return "GET-张三";
}
@RequestMapping(value = "/user",method = RequestMethod.POST)
public String saveUser(){
return "POST-张三";
}
@RequestMapping(value = "/user",method = RequestMethod.PUT)
public String putUser(){
return "PUT-张三";
}
@RequestMapping(value = "/user",method = RequestMethod.DELETE)
public String deleteUser(){
return "DELETE-张三";
}
@Bean
@ConditionalOnMissingBean(HiddenHttpMethodFilter.class)
@ConditionalOnProperty(prefix = "spring.mvc.hiddenmethod.filter", name = "enabled", matchIfMissing = false)
public OrderedHiddenHttpMethodFilter hiddenHttpMethodFilter() {
return new OrderedHiddenHttpMethodFilter();
}
//自定义filter
@Bean
public HiddenHttpMethodFilter hiddenHttpMethodFilter(){
HiddenHttpMethodFilter methodFilter = new HiddenHttpMethodFilter();
methodFilter.setMethodParam("_m");
return methodFilter;
}
Rest原理(表单提交要使用REST的时候)
表单提交会带上**_method=PUT**
请求过来被HiddenHttpMethodFilter拦截
Rest使用客户端工具,
spring:
mvc:
hiddenmethod:
filter:
enabled: true #开启页面表单的Rest功能
SpringMVC功能分析都从 org.springframework.web.servlet.DispatcherServlet-》doDispatch()
protected void doDispatch(HttpServletRequest request, HttpServletResponse response) throws Exception {
HttpServletRequest processedRequest = request;
HandlerExecutionChain mappedHandler = null;
boolean multipartRequestParsed = false;
WebAsyncManager asyncManager = WebAsyncUtils.getAsyncManager(request);
try {
ModelAndView mv = null;
Exception dispatchException = null;
try {
processedRequest = checkMultipart(request);
multipartRequestParsed = (processedRequest != request);
// 找到当前请求使用哪个Handler(Controller的方法)处理
mappedHandler = getHandler(processedRequest);
//HandlerMapping:处理器映射。/xxx->>xxxx
RequestMappingHandlerMapping:保存了所有@RequestMapping 和handler的映射规则。
所有的请求映射都在HandlerMapping中。
SpringBoot自动配置欢迎页的 WelcomePageHandlerMapping 。访问 /能访问到index.html;
SpringBoot自动配置了默认 的 RequestMappingHandlerMapping
请求进来,挨个尝试所有的HandlerMapping看是否有请求信息。
我们需要一些自定义的映射处理,我们也可以自己给容器中放HandlerMapping。自定义 HandlerMapping
protected HandlerExecutionChain getHandler(HttpServletRequest request) throws Exception {
if (this.handlerMappings != null) {
for (HandlerMapping mapping : this.handlerMappings) {
HandlerExecutionChain handler = mapping.getHandler(request);
if (handler != null) {
return handler;
}
}
}
return null;
}
@PathVariable、@RequestHeader、@ModelAttribute、@RequestParam、@MatrixVariable、@CookieValue、@RequestBody
@RestController
public class ParameterTestController {
// car/2/owner/zhangsan
@GetMapping("/car/{id}/owner/{username}")
public Map<String,Object> getCar(@PathVariable("id") Integer id,
@PathVariable("username") String name,
@PathVariable Map<String,String> pv,
@RequestHeader("User-Agent") String userAgent,
@RequestHeader Map<String,String> header,
@RequestParam("age") Integer age,
@RequestParam("inters") List<String> inters,
@RequestParam Map<String,String> params,
@CookieValue("_ga") String _ga,
@CookieValue("_ga") Cookie cookie){
Map<String,Object> map = new HashMap<>();
// map.put("id",id);
// map.put("name",name);
// map.put("pv",pv);
// map.put("userAgent",userAgent);
// map.put("headers",header);
map.put("age",age);
map.put("inters",inters);
map.put("params",params);
map.put("_ga",_ga);
System.out.println(cookie.getName()+"===>"+cookie.getValue());
return map;
}
@PostMapping("/save")
public Map postMethod(@RequestBody String content){
Map<String,Object> map = new HashMap<>();
map.put("content",content);
return map;
}
//1、语法: 请求路径:/cars/sell;low=34;brand=byd,audi,yd
//2、SpringBoot默认是禁用了矩阵变量的功能
// 手动开启:原理。对于路径的处理。UrlPathHelper进行解析。
// removeSemicolonContent(移除分号内容)支持矩阵变量的
//3、矩阵变量必须有url路径变量才能被解析
@GetMapping("/cars/{path}")
public Map carsSell(@MatrixVariable("low") Integer low,
@MatrixVariable("brand") List<String> brand,
@PathVariable("path") String path){
Map<String,Object> map = new HashMap<>();
map.put("low",low);
map.put("brand",brand);
map.put("path",path);
return map;
}
// /boss/1;age=20/2;age=10
@GetMapping("/boss/{bossId}/{empId}")
public Map boss(@MatrixVariable(value = "age",pathVar = "bossId") Integer bossAge,
@MatrixVariable(value = "age",pathVar = "empId") Integer empAge){
Map<String,Object> map = new HashMap<>();
map.put("bossAge",bossAge);
map.put("empAge",empAge);
return map;
}
}
WebRequest、ServletRequest、MultipartRequest、 HttpSession、javax.servlet.http.PushBuilder、Principal、InputStream、Reader、HttpMethod、Locale、TimeZone、ZoneId
ServletRequestMethodArgumentResolver 以上的部分参数
@Override
public boolean supportsParameter(MethodParameter parameter) {
Class<?> paramType = parameter.getParameterType();
return (WebRequest.class.isAssignableFrom(paramType) ||
ServletRequest.class.isAssignableFrom(paramType) ||
MultipartRequest.class.isAssignableFrom(paramType) ||
HttpSession.class.isAssignableFrom(paramType) ||
(pushBuilder != null && pushBuilder.isAssignableFrom(paramType)) ||
Principal.class.isAssignableFrom(paramType) ||
InputStream.class.isAssignableFrom(paramType) ||
Reader.class.isAssignableFrom(paramType) ||
HttpMethod.class == paramType ||
Locale.class == paramType ||
TimeZone.class == paramType ||
ZoneId.class == paramType);
}
Map、**Model(map、model里面的数据会被放在request的请求域 request.setAttribute)、**Errors/BindingResult、RedirectAttributes( 重定向携带数据)、ServletResponse(response)、SessionStatus、UriComponentsBuilder、ServletUriComponentsBuilder
Map<String,Object> map, Model model, HttpServletRequest request 都是可以给request域中放数据,
request.getAttribute();
Map、Model类型的参数,会返回 mavContainer.getModel();—> BindingAwareModelMap 是Model 也是Map
mavContainer.getModel(); 获取到值的
可以自动类型转换与格式化,可以级联封装。
/**
* 姓名:
* 年龄:
* 生日:
* 宠物姓名:
* 宠物年龄:
*/
@Data
public class Person {
private String userName;
private Integer age;
private Date birth;
private Pet pet;
}
@Data
public class Pet {
private String name;
private String age;
}
result
HandlerMapping中找到能处理请求的Handler(Controller.method())
为当前Handler 找一个适配器 HandlerAdapter; RequestMappingHandlerAdapter
适配器执行目标方法并确定方法参数的每一个值
0 - 支持方法上标注@RequestMapping
1 - 支持函数式编程的
xxxxxx
// Actually invoke the handler.
//DispatcherServlet -- doDispatch
mv = ha.handle(processedRequest, response, mappedHandler.getHandler());
mav = invokeHandlerMethod(request, response, handlerMethod); //执行目标方法
//ServletInvocableHandlerMethod
Object returnValue = invokeForRequest(webRequest, mavContainer, providedArgs);
//获取方法的参数值
Object[] args = getMethodArgumentValues(request, mavContainer, providedArgs);
确定将要执行的目标方法的每一个参数的值是什么;
SpringMVC目标方法能写多少种参数类型。取决于参数解析器。
============InvocableHandlerMethod==========================
protected Object[] getMethodArgumentValues(NativeWebRequest request, @Nullable ModelAndViewContainer mavContainer,
Object... providedArgs) throws Exception {
MethodParameter[] parameters = getMethodParameters();
if (ObjectUtils.isEmpty(parameters)) {
return EMPTY_ARGS;
}
Object[] args = new Object[parameters.length];
for (int i = 0; i < parameters.length; i++) {
MethodParameter parameter = parameters[i];
parameter.initParameterNameDiscovery(this.parameterNameDiscoverer);
args[i] = findProvidedArgument(parameter, providedArgs);
if (args[i] != null) {
continue;
}
if (!this.resolvers.supportsParameter(parameter)) {
throw new IllegalStateException(formatArgumentError(parameter, "No suitable resolver"));
}
try {
args[i] = this.resolvers.resolveArgument(parameter, mavContainer, request, this.dataBinderFactory);
}
catch (Exception ex) {
// Leave stack trace for later, exception may actually be resolved and handled...
if (logger.isDebugEnabled()) {
String exMsg = ex.getMessage();
if (exMsg != null && !exMsg.contains(parameter.getExecutable().toGenericString())) {
logger.debug(formatArgumentError(parameter, exMsg));
}
}
throw ex;
}
}
return args;
}
@Nullable
private HandlerMethodArgumentResolver getArgumentResolver(MethodParameter parameter) {
HandlerMethodArgumentResolver result = this.argumentResolverCache.get(parameter);
if (result == null) {
for (HandlerMethodArgumentResolver resolver : this.argumentResolvers) {
if (resolver.supportsParameter(parameter)) {
result = resolver;
this.argumentResolverCache.put(parameter, result);
break;
}
}
}
return result;
}
调用各自 HandlerMethodArgumentResolver 的 resolveArgument 方法即可
ServletModelAttributeMethodProcessor 这个参数处理器支持
是否为简单类型。
public static boolean isSimpleValueType(Class<?> type) {
return (Void.class != type && void.class != type &&
(ClassUtils.isPrimitiveOrWrapper(type) ||
Enum.class.isAssignableFrom(type) ||
CharSequence.class.isAssignableFrom(type) ||
Number.class.isAssignableFrom(type) ||
Date.class.isAssignableFrom(type) ||
Temporal.class.isAssignableFrom(type) ||
URI.class == type ||
URL.class == type ||
Locale.class == type ||
Class.class == type));
}
@Override
@Nullable
public final Object resolveArgument(MethodParameter parameter, @Nullable ModelAndViewContainer mavContainer,
NativeWebRequest webRequest, @Nullable WebDataBinderFactory binderFactory) throws Exception {
Assert.state(mavContainer != null, "ModelAttributeMethodProcessor requires ModelAndViewContainer");
Assert.state(binderFactory != null, "ModelAttributeMethodProcessor requires WebDataBinderFactory");
String name = ModelFactory.getNameForParameter(parameter);
ModelAttribute ann = parameter.getParameterAnnotation(ModelAttribute.class);
if (ann != null) {
mavContainer.setBinding(name, ann.binding());
}
Object attribute = null;
BindingResult bindingResult = null;
if (mavContainer.containsAttribute(name)) {
attribute = mavContainer.getModel().get(name);
}
else {
// Create attribute instance
try {
attribute = createAttribute(name, parameter, binderFactory, webRequest);
}
catch (BindException ex) {
if (isBindExceptionRequired(parameter)) {
// No BindingResult parameter -> fail with BindException
throw ex;
}
// Otherwise, expose null/empty value and associated BindingResult
if (parameter.getParameterType() == Optional.class) {
attribute = Optional.empty();
}
bindingResult = ex.getBindingResult();
}
}
if (bindingResult == null) {
// Bean property binding and validation;
// skipped in case of binding failure on construction.
WebDataBinder binder = binderFactory.createBinder(webRequest, attribute, name);
if (binder.getTarget() != null) {
if (!mavContainer.isBindingDisabled(name)) {
bindRequestParameters(binder, webRequest);
}
validateIfApplicable(binder, parameter);
if (binder.getBindingResult().hasErrors() && isBindExceptionRequired(binder, parameter)) {
throw new BindException(binder.getBindingResult());
}
}
// Value type adaptation, also covering java.util.Optional
if (!parameter.getParameterType().isInstance(attribute)) {
attribute = binder.convertIfNecessary(binder.getTarget(), parameter.getParameterType(), parameter);
}
bindingResult = binder.getBindingResult();
}
// Add resolved attribute and BindingResult at the end of the model
Map<String, Object> bindingResultModel = bindingResult.getModel();
mavContainer.removeAttributes(bindingResultModel);
mavContainer.addAllAttributes(bindingResultModel);
return attribute;
}
WebDataBinder binder = binderFactory.createBinder(webRequest, attribute, name);
WebDataBinder :web数据绑定器,将请求参数的值绑定到指定的JavaBean里面
WebDataBinder 利用它里面的 Converters 将请求数据转成指定的数据类型。再次封装到JavaBean中
GenericConversionService:在设置每一个值的时候,找它里面的所有converter那个可以将这个数据类型(request带来参数的字符串)转换到指定的类型(JavaBean – Integer)
byte – > file
@FunctionalInterfacepublic interface Converter
未来我们可以给WebDataBinder里面放自己的Converter;
private static final class StringToNumber
自定义 Converter
//1、WebMvcConfigurer定制化SpringMVC的功能
@Bean
public WebMvcConfigurer webMvcConfigurer(){
return new WebMvcConfigurer() {
@Override
public void configurePathMatch(PathMatchConfigurer configurer) {
UrlPathHelper urlPathHelper = new UrlPathHelper();
// 不移除;后面的内容。矩阵变量功能就可以生效
urlPathHelper.setRemoveSemicolonContent(false);
configurer.setUrlPathHelper(urlPathHelper);
}
@Override
public void addFormatters(FormatterRegistry registry) {
registry.addConverter(new Converter<String, Pet>() {
@Override
public Pet convert(String source) {
// 啊猫,3
if(!StringUtils.isEmpty(source)){
Pet pet = new Pet();
String[] split = source.split(",");
pet.setName(split[0]);
pet.setAge(Integer.parseInt(split[1]));
return pet;
}
return null;
}
});
}
};
}
将所有的数据都放在 ModelAndViewContainer;包含要去的页面地址View。还包含Model数据。
processDispatchResult(processedRequest, response, mappedHandler, mv, dispatchException);
renderMergedOutputModel(mergedModel, getRequestToExpose(request), response);
InternalResourceView:
@Override
protected void renderMergedOutputModel(
Map<String, Object> model, HttpServletRequest request, HttpServletResponse response) throws Exception {
// Expose the model object as request attributes.
exposeModelAsRequestAttributes(model, request);
// Expose helpers as request attributes, if any.
exposeHelpers(request);
// Determine the path for the request dispatcher.
String dispatcherPath = prepareForRendering(request, response);
// Obtain a RequestDispatcher for the target resource (typically a JSP).
RequestDispatcher rd = getRequestDispatcher(request, dispatcherPath);
if (rd == null) {
throw new ServletException("Could not get RequestDispatcher for [" + getUrl() +
"]: Check that the corresponding file exists within your web application archive!");
}
// If already included or response already committed, perform include, else forward.
if (useInclude(request, response)) {
response.setContentType(getContentType());
if (logger.isDebugEnabled()) {
logger.debug("Including [" + getUrl() + "]");
}
rd.include(request, response);
}
else {
// Note: The forwarded resource is supposed to determine the content type itself.
if (logger.isDebugEnabled()) {
logger.debug("Forwarding to [" + getUrl() + "]");
}
rd.forward(request, response);
}
}
暴露模型作为请求域属性
// Expose the model object as request attributes.
exposeModelAsRequestAttributes(model, request);
protected void exposeModelAsRequestAttributes(Map<String, Object> model,
HttpServletRequest request) throws Exception {
//model中的所有数据遍历挨个放在请求域中
model.forEach((name, value) -> {
if (value != null) {
request.setAttribute(name, value);
}
else {
request.removeAttribute(name);
}
});
}
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-webartifactId>
dependency>
web场景自动引入了json场景
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-jsonartifactId>
<version>2.3.4.RELEASEversion>
<scope>compilescope>
dependency>
给前端自动返回json数据;
try {
this.returnValueHandlers.handleReturnValue(
returnValue, getReturnValueType(returnValue), mavContainer, webRequest);
}
@Override
public void handleReturnValue(@Nullable Object returnValue, MethodParameter returnType,
ModelAndViewContainer mavContainer, NativeWebRequest webRequest) throws Exception {
HandlerMethodReturnValueHandler handler = selectHandler(returnValue, returnType);
if (handler == null) {
throw new IllegalArgumentException("Unknown return value type: " + returnType.getParameterType().getName());
}
handler.handleReturnValue(returnValue, returnType, mavContainer, webRequest);
}
RequestResponseBodyMethodProcessor
@Override
public void handleReturnValue(@Nullable Object returnValue, MethodParameter returnType,
ModelAndViewContainer mavContainer, NativeWebRequest webRequest)
throws IOException, HttpMediaTypeNotAcceptableException, HttpMessageNotWritableException {
mavContainer.setRequestHandled(true);
ServletServerHttpRequest inputMessage = createInputMessage(webRequest);
ServletServerHttpResponse outputMessage = createOutputMessage(webRequest);
// Try even with null return value. ResponseBodyAdvice could get involved.
// 使用消息转换器进行写出操作
writeWithMessageConverters(returnValue, returnType, inputMessage, outputMessage);
}
1、返回值处理器判断是否支持这种类型返回值 supportsReturnType
2、返回值处理器调用 handleReturnValue 进行处理
3、RequestResponseBodyMethodProcessor 可以处理返回值标了@ResponseBody 注解的。
ModelAndView
Model
View
ResponseEntity
ResponseBodyEmitter
StreamingResponseBody
HttpEntity
HttpHeaders
Callable
DeferredResult
ListenableFuture
CompletionStage
WebAsyncTask
有 @ModelAttribute 且为对象类型的
@ResponseBody 注解 ---> RequestResponseBodyMethodProcessor;
HttpMessageConverter: 看是否支持将 此 Class类型的对象,转为MediaType类型的数据。
例子:Person对象转为JSON。或者 JSON转为Person
0 - 只支持Byte类型的
1 - String
2 - String
3 - Resource
4 - ResourceRegion
5 - DOMSource.*class * SAXSource.class) \ StAXSource.**class **StreamSource.**class **Source.class
6 - MultiValueMap
7 - true
8 - true
9 - 支持注解方式xml处理的。
最终 MappingJackson2HttpMessageConverter 把对象转为JSON(利用底层的jackson的objectMapper转换的)
根据客户端接收能力不同,返回不同媒体类型的数据。
<dependency>
<groupId>com.fasterxml.jackson.dataformatgroupId>
<artifactId>jackson-dataformat-xmlartifactId>
dependency>
只需要改变请求头中Accept字段。Http协议中规定的,告诉服务器本客户端可以接收的数据类型。
为了方便内容协商,开启基于请求参数的内容协商功能。
spring:
contentnegotiation:
favor-parameter: true #开启请求参数内容协商模式
发请求: http://localhost:8080/test/person?format=json
http://localhost:8080/test/person?format=xml
确定客户端接收什么样的内容类型;
1、Parameter策略优先确定是要返回json数据(获取请求头中的format的值)
2、最终进行内容协商返回给客户端json即可。
1、判断当前响应头中是否已经有确定的媒体类型。MediaType
2、获取客户端(PostMan、浏览器)支持接收的内容类型。(获取客户端Accept请求头字段)【application/xml】
3、遍历循环所有当前系统的 MessageConverter,看谁支持操作这个对象(Person)
4、找到支持操作Person的converter,把converter支持的媒体类型统计出来。
5、客户端需要【application/xml】。服务端能力【10种、json、xml】
6、进行内容协商的最佳匹配媒体类型
7、用 支持 将对象转为 最佳匹配媒体类型 的converter。调用它进行转化 。
导入了jackson处理xml的包,xml的converter就会自动进来
WebMvcConfigurationSupport
jackson2XmlPresent = ClassUtils.isPresent("com.fasterxml.jackson.dataformat.xml.XmlMapper", classLoader);
if (jackson2XmlPresent) {
Jackson2ObjectMapperBuilder builder = Jackson2ObjectMapperBuilder.xml();
if (this.applicationContext != null) {
builder.applicationContext(this.applicationContext);
}
messageConverters.add(new MappingJackson2XmlHttpMessageConverter(builder.build()));
}
实现多协议数据兼容。json、xml、x-guigu
0、@ResponseBody 响应数据出去 调用 RequestResponseBodyMethodProcessor 处理
1、Processor 处理方法返回值。通过 MessageConverter 处理
2、所有 MessageConverter 合起来可以支持各种媒体类型数据的操作(读、写)
3、内容协商找到最终的 messageConverter;
SpringMVC的什么功能。一个入口给容器中添加一个 WebMvcConfigurer
@Bean
public WebMvcConfigurer webMvcConfigurer(){
return new WebMvcConfigurer() {
@Override
public void extendMessageConverters(List<HttpMessageConverter<?>> converters) {
}
}
}
有可能我们添加的自定义的功能会覆盖默认很多功能,导致一些默认的功能失效。
大家考虑,上述功能除了我们完全自定义外?SpringBoot有没有为我们提供基于配置文件的快速修改媒体类型功能?怎么配置呢?【提示:参照SpringBoot官方文档web开发内容协商章节】
视图解析:SpringBoot默认不支持 JSP,需要引入第三方模板引擎技术实现页面渲染。
1、目标方法处理的过程中,所有数据都会被放在 ModelAndViewContainer 里面。包括数据和视图地址
2、方法的参数是一个自定义类型对象(从请求参数中确定的),把他重新放在 ModelAndViewContainer
3、任何目标方法执行完成以后都会返回 ModelAndView(数据和视图地址)。
**4、**processDispatchResult 处理派发结果(页面改如何响应)
1、render(mv, request, response); 进行页面渲染逻辑
视图解析:
自定义视图解析器+自定义视图; 大厂学院。
Thymeleaf is a modern server-side Java template engine for both web and standalone environments, capable of processing HTML, XML, JavaScript, CSS and even plain text.
现代化、服务端Java模板引擎
表达式名字 | 语法 | 用途 |
---|---|---|
变量取值 | ${…} | 获取请求域、session域、对象等值 |
选择变量 | *{…} | 获取上下文对象值 |
消息 | #{…} | 获取国际化等值 |
链接 | @{…} | 生成链接 |
片段表达式 | ~{…} | jsp:include 作用,引入公共页面片段 |
文本值: ‘one text’ , ‘Another one!’ **,…**数字: 0 , 34 , 3.0 , 12.3 **,…**布尔值: true , false
空值: null
变量: one,two,… 变量不能有空格
字符串拼接: +
变量替换: |The name is ${name}|
运算符: + , - , * , / , %
运算符: and , or
一元运算: ! , not
比较: > , < , >= , <= ( gt , lt , ge , le **)**等式: == , != ( eq , ne )
If-then: (if) ? (then)
If-then-else: (if) ? (then) : (else)
Default: (value) ?: (defaultvalue)
无操作: _
设置单个值
<form action="subscribe.html" th:attr="action=@{/subscribe}">
<fieldset>
<input type="text" name="email" />
<input type="submit" value="Subscribe!" th:attr="value=#{subscribe.submit}"/>
fieldset>
form>
设置多个值
<img src="../../images/gtvglogo.png" th:attr="src=@{/images/gtvglogo.png},title=#{logo},alt=#{logo}" />
以上两个的代替写法 th:xxxx
<input type="submit" value="Subscribe!" th:value="#{subscribe.submit}"/>
<form action="subscribe.html" th:action="@{/subscribe}">
所有h5兼容的标签写法
https://www.thymeleaf.org/doc/tutorials/3.0/usingthymeleaf.html#setting-value-to-specific-attributes
<tr th:each="prod : ${prods}">
<td th:text="${prod.name}">Onionstd>
<td th:text="${prod.price}">2.41td>
<td th:text="${prod.inStock}? #{true} : #{false}">yestd>
tr>
<tr th:each="prod,iterStat : ${prods}" th:class="${iterStat.odd}? 'odd'">
<td th:text="${prod.name}">Onionstd>
<td th:text="${prod.price}">2.41td>
<td th:text="${prod.inStock}? #{true} : #{false}">yestd>
tr>
<a href="comments.html"
th:href="@{/product/comments(prodId=${prod.id})}"
th:if="${not #lists.isEmpty(prod.comments)}">viewa>
<div th:switch="${user.role}">
<p th:case="'admin'">User is an administratorp>
<p th:case="#{roles.manager}">User is a managerp>
<p th:case="*">User is some other thingp>
div>
<dependency>
<groupId>org.springframework.boot</groupId>
<artifactId>spring-boot-starter-thymeleaf</artifactId>
</dependency>
@Configuration(proxyBeanMethods = false)
@EnableConfigurationProperties(ThymeleafProperties.class)
@ConditionalOnClass({ TemplateMode.class, SpringTemplateEngine.class })
@AutoConfigureAfter({ WebMvcAutoConfiguration.class, WebFluxAutoConfiguration.class })
public class ThymeleafAutoConfiguration { }
自动配好的策略
1、所有thymeleaf的配置值都在 ThymeleafProperties
2、配置好了 SpringTemplateEngine
3、配好了 ThymeleafViewResolver
4、我们只需要直接开发页面
public static final String DEFAULT_PREFIX = "classpath:/templates/";
public static final String DEFAULT_SUFFIX = ".html"; //xxx.html
<!DOCTYPE html>
<html lang="en" xmlns:th="http://www.thymeleaf.org">
<head>
<meta charset="UTF-8">
<title>Title</title>
</head>
<body>
<h1 th:text="${msg}">哈哈</h1>
<h2>
<a href="www.atguigu.com" th:href="${link}">去百度</a> <br/>
<a href="www.atguigu.com" th:href="@{link}">去百度2</a>
</h2>
</body>
</html>
thymeleaf、web-starter、devtools、lombok
自动配置好,我们只需要把所有静态资源放到 static 文件夹下
th:action=“@{/login}”
th:insert/replace/include
@PostMapping("/login")
public String main(User user, HttpSession session, Model model){
if(StringUtils.hasLength(user.getUserName()) && "123456".equals(user.getPassword())){
//把登陆成功的用户保存起来
session.setAttribute("loginUser",user);
//登录成功重定向到main.html; 重定向防止表单重复提交
return "redirect:/main.html";
}else {
model.addAttribute("msg","账号密码错误");
//回到登录页面
return "login";
}
}
@GetMapping("/dynamic_table")
public String dynamic_table(Model model){
//表格内容的遍历
List<User> users = Arrays.asList(new User("zhangsan", "123456"),
new User("lisi", "123444"),
new User("haha", "aaaaa"),
new User("hehe ", "aaddd"));
model.addAttribute("users",users);
return "table/dynamic_table";
}
<table class="display table table-bordered" id="hidden-table-info">
<thead>
<tr>
<th>#</th>
<th>用户名</th>
<th>密码</th>
</tr>
</thead>
<tbody>
<tr class="gradeX" th:each="user,stats:${users}">
<td th:text="${stats.count}">Trident</td>
<td th:text="${user.userName}">Internet</td>
<td >[[${user.password}]]</td>
</tr>
</tbody>
</table>
/**
* 登录检查
* 1、配置好拦截器要拦截哪些请求
* 2、把这些配置放在容器中
*/
@Slf4j
public class LoginInterceptor implements HandlerInterceptor {
/**
* 目标方法执行之前
* @param request
* @param response
* @param handler
* @return
* @throws Exception
*/
@Override
public boolean preHandle(HttpServletRequest request, HttpServletResponse response, Object handler) throws Exception {
String requestURI = request.getRequestURI();
log.info("preHandle拦截的请求路径是{}",requestURI);
//登录检查逻辑
HttpSession session = request.getSession();
Object loginUser = session.getAttribute("loginUser");
if(loginUser != null){
//放行
return true;
}
//拦截住。未登录。跳转到登录页
request.setAttribute("msg","请先登录");
// re.sendRedirect("/");
request.getRequestDispatcher("/").forward(request,response);
return false;
}
/**
* 目标方法执行完成以后
* @param request
* @param response
* @param handler
* @param modelAndView
* @throws Exception
*/
@Override
public void postHandle(HttpServletRequest request, HttpServletResponse response, Object handler, ModelAndView modelAndView) throws Exception {
log.info("postHandle执行{}",modelAndView);
}
/**
* 页面渲染以后
* @param request
* @param response
* @param handler
* @param ex
* @throws Exception
*/
@Override
public void afterCompletion(HttpServletRequest request, HttpServletResponse response, Object handler, Exception ex) throws Exception {
log.info("afterCompletion执行异常{}",ex);
}
}
/**
* 1、编写一个拦截器实现HandlerInterceptor接口
* 2、拦截器注册到容器中(实现WebMvcConfigurer的addInterceptors)
* 3、指定拦截规则【如果是拦截所有,静态资源也会被拦截】
*/
@Configuration
public class AdminWebConfig implements WebMvcConfigurer {
@Override
public void addInterceptors(InterceptorRegistry registry) {
registry.addInterceptor(new LoginInterceptor())
.addPathPatterns("/**") //所有请求都被拦截包括静态资源
.excludePathPatterns("/","/login","/css/**","/fonts/**","/images/**","/js/**"); //放行的请求
}
}
1、根据当前请求,找到**HandlerExecutionChain【**可以处理请求的handler以及handler的所有 拦截器】
2、先来顺序执行 所有拦截器的 preHandle方法
3、如果任何一个拦截器返回false。直接跳出不执行目标方法
4、所有拦截器都返回True。执行目标方法
5、倒序执行所有拦截器的postHandle方法。
6、前面的步骤有任何异常都会直接倒序触发 afterCompletion
7、页面成功渲染完成以后,也会倒序触发 afterCompletion
<form method="post" action="/upload" enctype="multipart/form-data">
<input type="file" name="file"><br>
<input type="submit" value="提交">
form>
/**
* MultipartFile 自动封装上传过来的文件
* @param email
* @param username
* @param headerImg
* @param photos
* @return
*/
@PostMapping("/upload")
public String upload(@RequestParam("email") String email,
@RequestParam("username") String username,
@RequestPart("headerImg") MultipartFile headerImg,
@RequestPart("photos") MultipartFile[] photos) throws IOException {
log.info("上传的信息:email={},username={},headerImg={},photos={}",
email,username,headerImg.getSize(),photos.length);
if(!headerImg.isEmpty()){
//保存到文件服务器,OSS服务器
String originalFilename = headerImg.getOriginalFilename();
headerImg.transferTo(new File("H:\\cache\\"+originalFilename));
}
if(photos.length > 0){
for (MultipartFile photo : photos) {
if(!photo.isEmpty()){
String originalFilename = photo.getOriginalFilename();
photo.transferTo(new File("H:\\cache\\"+originalFilename));
}
}
}
return "main";
}
**文件上传自动配置类-MultipartAutoConfiguration-**MultipartProperties
自动配置好了 StandardServletMultipartResolver 【文件上传解析器】
原理步骤
FileCopyUtils。实现文件流的拷贝
@PostMapping("/upload")
public String upload(@RequestParam("email") String email,
@RequestParam("username") String username,
@RequestPart("headerImg") MultipartFile headerImg,
@RequestPart("photos") MultipartFile[] photos)
默认情况下,Spring Boot提供/error
处理所有错误的映射
对于机器客户端,它将生成JSON响应,其中包含错误,HTTP状态和异常消息的详细信息。对于浏览器客户端,响应一个“ whitelabel”错误视图,以HTML格式呈现相同的数据
要对其进行自定义,添加**View**
解析为**error**``** **
要完全替换默认行为,可以实现 ErrorController
并注册该类型的Bean定义,或添加ErrorAttributes类型的组件
以使用现有机制但替换其内容。
error/下的4xx,5xx页面会被自动解析;
自定义错误页
@ControllerAdvice+@ExceptionHandler处理全局异常;底层是 ExceptionHandlerExceptionResolver 支持的
@ResponseStatus+自定义异常 ;底层是 ResponseStatusExceptionResolver ,把responsestatus注解的信息底层调用 response.sendError(statusCode, resolvedReason);tomcat发送的/error
Spring底层的异常,如 参数类型转换异常;DefaultHandlerExceptionResolver 处理框架底层的异常。
自定义实现 HandlerExceptionResolver 处理异常;可以作为默认的全局异常处理规则
ErrorViewResolver 实现自定义处理异常;
ErrorMvcAutoConfiguration 自动配置异常处理规则
如果想要返回页面;就会找error视图【StaticView】。(默认是一个白页)
1、执行目标方法,目标方法运行期间有任何异常都会被catch、而且标志当前请求结束;并且用 dispatchException
2、进入视图解析流程(页面渲染?)
processDispatchResult(processedRequest, response, mappedHandler, mv, dispatchException);
3、mv = processHandlerException;处理handler发生的异常,处理完成返回ModelAndView;
1、遍历所有的 handlerExceptionResolvers,看谁能处理当前异常【HandlerExceptionResolver处理器异常解析器】
2、系统默认的 异常解析器;
@ServletComponentScan(basePackages = “com.atguigu.admin”) :指定原生Servlet组件都放在那里
@WebServlet(urlPatterns = “/my”):效果:直接响应,没有经过Spring的拦截器?
@WebFilter(urlPatterns={“/css/*”,“/images/*”})
@WebListener
推荐可以这种方式;
扩展:DispatchServlet 如何注册进来
容器中自动配置了 DispatcherServlet 属性绑定到 WebMvcProperties;对应的配置文件配置项是 spring.mvc。
通过 ServletRegistrationBean 把 DispatcherServlet 配置进来。
默认映射的是 / 路径。
Tomcat-Servlet;
多个Servlet都能处理到同一层路径,精确优选原则
A: /my/
B: /my/1
ServletRegistrationBean`, `FilterRegistrationBean`, and `ServletListenerRegistrationBean
@Configuration
public class MyRegistConfig {
@Bean
public ServletRegistrationBean myServlet(){
MyServlet myServlet = new MyServlet();
return new ServletRegistrationBean(myServlet,"/my","/my02");
}
@Bean
public FilterRegistrationBean myFilter(){
MyFilter myFilter = new MyFilter();
// return new FilterRegistrationBean(myFilter,myServlet());
FilterRegistrationBean filterRegistrationBean = new FilterRegistrationBean(myFilter);
filterRegistrationBean.setUrlPatterns(Arrays.asList("/my","/css/*"));
return filterRegistrationBean;
}
@Bean
public ServletListenerRegistrationBean myListener(){
MySwervletContextListener mySwervletContextListener = new MySwervletContextListener();
return new ServletListenerRegistrationBean(mySwervletContextListener);
}
}
默认支持的webServer
Tomcat
, Jetty
, or Undertow
ServletWebServerApplicationContext 容器启动寻找ServletWebServerFactory 并引导创建服务器
切换服务器
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-webartifactId>
<exclusions>
<exclusion>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-tomcatartifactId>
exclusion>
exclusions>
dependency>
原理
ServletWebServerApplicationContext
ServletWebServerApplicationContext
启动的时候寻找 **ServletWebServerFactory**``(Servlet 的web服务器工厂---> Servlet 的web服务器)
TomcatServletWebServerFactory
, JettyServletWebServerFactory
, or UndertowServletWebServerFactory
底层直接会有一个自动配置类。ServletWebServerFactoryAutoConfiguration
ServletWebServerFactoryAutoConfiguration导入了ServletWebServerFactoryConfiguration(配置类)
ServletWebServerFactoryConfiguration 配置类 根据动态判断系统中到底导入了那个Web服务器的包。(默认是web-starter导入tomcat包),容器中就有 TomcatServletWebServerFactory
TomcatServletWebServerFactory 创建出Tomcat服务器并启动;TomcatWebServer 的构造器拥有初始化方法initialize---this.tomcat.start();
内嵌服务器,就是手动把启动服务器的代码调用(tomcat核心jar包存在)
``
实现 WebServerFactoryCustomizer
**ServletWebServerFactory 进行绑定**
修改配置文件 server.xxx
直接自定义 ConfigurableServletWebServerFactory
xxxxxCustomizer:定制化器,可以改变xxxx的默认规则
import org.springframework.boot.web.server.WebServerFactoryCustomizer;
import org.springframework.boot.web.servlet.server.ConfigurableServletWebServerFactory;
import org.springframework.stereotype.Component;
@Component
public class CustomizationBean implements WebServerFactoryCustomizer<ConfigurableServletWebServerFactory> {
@Override
public void customize(ConfigurableServletWebServerFactory server) {
server.setPort(9000);
}
}
修改配置文件;
xxxxxCustomizer;
编写自定义的配置类 xxxConfiguration;+ @Bean替换、增加容器中默认组件;视图解析器
Web应用 编写一个配置类实现 WebMvcConfigurer 即可定制化web功能;+ @Bean给容器中再扩展一些组件
@Configuration
public class AdminWebConfig implements WebMvcConfigurer
@EnableWebMvc + WebMvcConfigurer —— @Bean 可以全面接管SpringMVC,所有规则全部自己重新配置; 实现定制和扩展功能
… …
场景starter - xxxxAutoConfiguration - 导入xxx组件 - 绑定xxxProperties – 绑定配置文件项
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-data-jdbcartifactId>
dependency>
数据库驱动?
为什么导入JDBC场景,官方不导入驱动?官方不知道我们接下要操作什么数据库。
数据库版本和驱动版本对应
默认版本:<mysql.version>8.0.22mysql.version>
<dependency>
<groupId>mysqlgroupId>
<artifactId>mysql-connector-javaartifactId>
dependency>
想要修改版本
1、直接依赖引入具体版本(maven的就近依赖原则)
2、重新声明版本(maven的属性的就近优先原则)
<properties>
<java.version>1.8java.version>
<mysql.version>5.1.49mysql.version>
properties>
DataSourceAutoConfiguration : 数据源的自动配置
@Configuration(proxyBeanMethods = false)
@Conditional(PooledDataSourceCondition.class)
@ConditionalOnMissingBean({ DataSource.class, XADataSource.class })
@Import({ DataSourceConfiguration.Hikari.class, DataSourceConfiguration.Tomcat.class,
DataSourceConfiguration.Dbcp2.class, DataSourceConfiguration.OracleUcp.class,
DataSourceConfiguration.Generic.class, DataSourceJmxConfiguration.class })
protected static class PooledDataSourceConfiguration
DataSourceTransactionManagerAutoConfiguration: 事务管理器的自动配置
JdbcTemplateAutoConfiguration: JdbcTemplate的自动配置,可以来对数据库进行crud
JndiDataSourceAutoConfiguration: jndi的自动配置
XADataSourceAutoConfiguration: 分布式事务相关的
spring:
datasource:
url: jdbc:mysql://localhost:3306/db_account
username: root
password: 123456
driver-class-name: com.mysql.jdbc.Driver
@Slf4j
@SpringBootTest
class Boot05WebAdminApplicationTests {
@Autowired
JdbcTemplate jdbcTemplate;
@Test
void contextLoads() {
// jdbcTemplate.queryForObject("select * from account_tbl")
// jdbcTemplate.queryForList("select * from account_tbl",)
Long aLong = jdbcTemplate.queryForObject("select count(*) from account_tbl", Long.class);
log.info("记录总数:{}",aLong);
}
}
https://github.com/alibaba/druid
整合第三方技术的两种方式
<dependency>
<groupId>com.alibabagroupId>
<artifactId>druidartifactId>
<version>1.1.17version>
dependency>
<bean id="dataSource" class="com.alibaba.druid.pool.DruidDataSource"
destroy-method="close">
<property name="url" value="${jdbc.url}" />
<property name="username" value="${jdbc.username}" />
<property name="password" value="${jdbc.password}" />
<property name="maxActive" value="20" />
<property name="initialSize" value="1" />
<property name="maxWait" value="60000" />
<property name="minIdle" value="1" />
<property name="timeBetweenEvictionRunsMillis" value="60000" />
<property name="minEvictableIdleTimeMillis" value="300000" />
<property name="testWhileIdle" value="true" />
<property name="testOnBorrow" value="false" />
<property name="testOnReturn" value="false" />
<property name="poolPreparedStatements" value="true" />
<property name="maxOpenPreparedStatements" value="20" />
StatViewServlet的用途包括:
<servlet>
<servlet-name>DruidStatViewservlet-name>
<servlet-class>com.alibaba.druid.support.http.StatViewServletservlet-class>
servlet>
<servlet-mapping>
<servlet-name>DruidStatViewservlet-name>
<url-pattern>/druid/*url-pattern>
servlet-mapping>
用于统计监控信息;如SQL监控、URI监控
需要给数据源中配置如下属性;可以允许多个filter,多个用,分割;如:
<property name="filters" value="stat,slf4j" />
系统中所有filter:
别名 | Filter类名 |
---|---|
default | com.alibaba.druid.filter.stat.StatFilter |
stat | com.alibaba.druid.filter.stat.StatFilter |
mergeStat | com.alibaba.druid.filter.stat.MergeStatFilter |
encoding | com.alibaba.druid.filter.encoding.EncodingConvertFilter |
log4j | com.alibaba.druid.filter.logging.Log4jFilter |
log4j2 | com.alibaba.druid.filter.logging.Log4j2Filter |
slf4j | com.alibaba.druid.filter.logging.Slf4jLogFilter |
commonlogging | com.alibaba.druid.filter.logging.CommonsLogFilter |
慢SQL记录配置
<bean id="stat-filter" class="com.alibaba.druid.filter.stat.StatFilter">
<property name="slowSqlMillis" value="10000" />
<property name="logSlowSql" value="true" />
bean>
使用 slowSqlMillis 定义慢SQL的时长
<dependency>
<groupId>com.alibabagroupId>
<artifactId>druid-spring-boot-starterartifactId>
<version>1.1.17version>
dependency>
扩展配置项 spring.datasource.druid
DruidSpringAopConfiguration.class, 监控SpringBean的;配置项:spring.datasource.druid.aop-patterns
DruidStatViewServletConfiguration.class, 监控页的配置:spring.datasource.druid.stat-view-servlet;默认开启
DruidWebStatFilterConfiguration.class, web监控配置;spring.datasource.druid.web-stat-filter;默认开启
DruidFilterConfiguration.class}) 所有Druid自己filter的配置
private static final String FILTER_STAT_PREFIX = "spring.datasource.druid.filter.stat";
private static final String FILTER_CONFIG_PREFIX = "spring.datasource.druid.filter.config";
private static final String FILTER_ENCODING_PREFIX = "spring.datasource.druid.filter.encoding";
private static final String FILTER_SLF4J_PREFIX = "spring.datasource.druid.filter.slf4j";
private static final String FILTER_LOG4J_PREFIX = "spring.datasource.druid.filter.log4j";
private static final String FILTER_LOG4J2_PREFIX = "spring.datasource.druid.filter.log4j2";
private static final String FILTER_COMMONS_LOG_PREFIX = "spring.datasource.druid.filter.commons-log";
private static final String FILTER_WALL_PREFIX = "spring.datasource.druid.filter.wall";
spring:
datasource:
url: jdbc:mysql://localhost:3306/db_account
username: root
password: 123456
driver-class-name: com.mysql.jdbc.Driver
druid:
aop-patterns: com.atguigu.admin.* #监控SpringBean
filters: stat,wall # 底层开启功能,stat(sql监控),wall(防火墙)
stat-view-servlet: # 配置监控页功能
enabled: true
login-username: admin
login-password: admin
resetEnable: false
web-stat-filter: # 监控web
enabled: true
urlPattern: /*
exclusions: '*.js,*.gif,*.jpg,*.png,*.css,*.ico,/druid/*'
filter:
stat: # 对上面filters里面的stat的详细配置
slow-sql-millis: 1000
logSlowSql: true
enabled: true
wall:
enabled: true
config:
drop-table-allow: false
SpringBoot配置示例
https://github.com/alibaba/druid/tree/master/druid-spring-boot-starter
配置项列表https://github.com/alibaba/druid/wiki/DruidDataSource%E9%85%8D%E7%BD%AE%E5%B1%9E%E6%80%A7%E5%88%97%E8%A1%A8
https://github.com/mybatis
starter
SpringBoot官方的Starter:spring-boot-starter-*
第三方的: *-spring-boot-starter
<dependency>
<groupId>org.mybatis.spring.bootgroupId>
<artifactId>mybatis-spring-boot-starterartifactId>
<version>2.1.4version>
dependency>
全局配置文件
SqlSessionFactory: 自动配置好了
@Import(AutoConfiguredMapperScannerRegistrar.class);
Mapper: 只要我们写的操作MyBatis的接口标准了 @Mapper 就会被自动扫描进来
@EnableConfigurationProperties(MybatisProperties.class) : MyBatis配置项绑定类。
@AutoConfigureAfter({ DataSourceAutoConfiguration.class, MybatisLanguageDriverAutoConfiguration.class })
public class MybatisAutoConfiguration{}
@ConfigurationProperties(prefix = "mybatis")
public class MybatisProperties
可以修改配置文件中 mybatis 开始的所有;
# 配置mybatis规则
mybatis:
config-location: classpath:mybatis/mybatis-config.xml #全局配置文件位置
mapper-locations: classpath:mybatis/mapper/*.xml #sql映射文件位置
Mapper接口--->绑定Xml
<?xml version="1.0" encoding="UTF-8" ?>
<!DOCTYPE mapper
PUBLIC "-//mybatis.org//DTD Mapper 3.0//EN"
"http://mybatis.org/dtd/mybatis-3-mapper.dtd">
>
<!-- public Account getAcct(Long id); -->
>
配置 private Configuration configuration; mybatis.configuration下面的所有,就是相当于改mybatis全局配置文件中的值
# 配置mybatis规则
mybatis:
# config-location: classpath:mybatis/mybatis-config.xml
mapper-locations: classpath:mybatis/mapper/*.xml
configuration:
map-underscore-to-camel-case: true
可以不写全局;配置文件,所有全局配置文件的配置都放在configuration配置项中即可
导入mybatis官方starter
编写mapper接口。标准@Mapper注解
编写sql映射文件并绑定mapper接口
在application.yaml中指定Mapper配置文件的位置,以及指定全局配置文件的信息 (建议;配置在mybatis.configuration)
@Mapper
public interface CityMapper {
@Select("select * from city where id=#{id}")
public City getById(Long id);
public void insert(City city);
}
@Mapper
public interface CityMapper {
@Select("select * from city where id=#{id}")
public City getById(Long id);
public void insert(City city);
}
最佳实战:
引入mybatis-starter
配置application.yaml中,指定mapper-location位置即可
编写Mapper接口并标注@Mapper注解
简单方法直接注解方式
复杂方法编写mapper.xml进行绑定映射
@MapperScan(“com.atguigu.admin.mapper”) 简化,其他的接口就可以不用标注@Mapper注解
MyBatis-Plus(简称 MP)是一个 MyBatis 的增强工具,在 MyBatis 的基础上只做增强不做改变,为简化开发、提高效率而生。
mybatis plus 官网
建议安装 MybatisX 插件
<dependency>
<groupId>com.baomidougroupId>
<artifactId>mybatis-plus-boot-starterartifactId>
<version>3.4.1version>
dependency>
自动配置
MybatisPlusAutoConfiguration 配置类,MybatisPlusProperties 配置项绑定。mybatis-plus:xxx 就是对****mybatis-plus的定制
SqlSessionFactory 自动配置好。底层是容器中默认的数据源
**mapperLocations 自动配置好的。有默认值。*classpath*:/mapper/*/*.xml;任意包的类路径下的所有mapper文件夹下任意路径下的所有xml都是sql映射文件。 建议以后sql映射文件,放在 mapper下
容器中也自动配置好了 SqlSessionTemplate
@Mapper 标注的接口也会被自动扫描;建议直接 @MapperScan(“com.atguigu.admin.mapper”) 批量扫描就行
优点:
@GetMapping("/user/delete/{id}")
public String deleteUser(@PathVariable("id") Long id,
@RequestParam(value = "pn",defaultValue = "1")Integer pn,
RedirectAttributes ra){
userService.removeById(id);
ra.addAttribute("pn",pn);
return "redirect:/dynamic_table";
}
@GetMapping("/dynamic_table")
public String dynamic_table(@RequestParam(value="pn",defaultValue = "1") Integer pn,Model model){
//表格内容的遍历
// response.sendError
// List users = Arrays.asList(new User("zhangsan", "123456"),
// new User("lisi", "123444"),
// new User("haha", "aaaaa"),
// new User("hehe ", "aaddd"));
// model.addAttribute("users",users);
//
// if(users.size()>3){
// throw new UserTooManyException();
// }
//从数据库中查出user表中的用户进行展示
//构造分页参数
Page<User> page = new Page<>(pn, 2);
//调用page进行分页
Page<User> userPage = userService.page(page, null);
// userPage.getRecords()
// userPage.getCurrent()
// userPage.getPages()
model.addAttribute("users",userPage);
return "table/dynamic_table";
}
@Service
public class UserServiceImpl extends ServiceImpl<UserMapper,User> implements UserService {
}
public interface UserService extends IService<User> {
}
Redis 是一个开源(BSD许可)的,内存中的数据结构存储系统,它可以用作数据库、缓存和消息中间件。 它支持多种类型的数据结构,如 字符串(strings), 散列(hashes), 列表(lists), 集合(sets), 有序集合(sorted sets) 与范围查询, bitmaps, hyperloglogs 和 地理空间(geospatial) 索引半径查询。 Redis 内置了 复制(replication),LUA脚本(Lua scripting), LRU驱动事件(LRU eviction),事务(transactions) 和不同级别的 磁盘持久化(persistence), 并通过 Redis哨兵(Sentinel)和自动 分区(Cluster)提供高可用性(high availability)。
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-data-redisartifactId>
dependency>
自动配置:
RedisAutoConfiguration 自动配置类。RedisProperties 属性类 --> spring.redis.xxx是对redis的配置
连接工厂是准备好的。LettuceConnectionConfiguration、JedisConnectionConfiguration
自动注入了RedisTemplate<Object, Object> : xxxTemplate;
自动注入了StringRedisTemplate;k:v都是String
key:value
底层只要我们使用 **StringRedisTemplate、**RedisTemplate就可以操作redis
redis环境搭建
1、阿里云按量付费redis。经典网络
2、申请redis的公网连接地址
3、修改白名单 允许0.0.0.0/0 访问
@Test
void testRedis(){
ValueOperations<String, String> operations = redisTemplate.opsForValue();
operations.set("hello","world");
String hello = operations.get("hello");
System.out.println(hello);
}
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-data-redisartifactId>
dependency>
<dependency>
<groupId>redis.clientsgroupId>
<artifactId>jedisartifactId>
dependency>
spring:
redis:
host: r-bp1nc7reqesxisgxpipd.redis.rds.aliyuncs.com
port: 6379
password: lfy:Lfy123456
client-type: jedis
jedis:
pool:
max-active: 10
Spring Boot 2.2.0 版本开始引入 JUnit 5 作为单元测试默认库
作为最新版本的JUnit框架,JUnit5与之前版本的Junit框架有很大的不同。由三个不同子项目的几个不同模块组成。
JUnit 5 = JUnit Platform + JUnit Jupiter + JUnit Vintage
JUnit Platform: Junit Platform是在JVM上启动测试框架的基础,不仅支持Junit自制的测试引擎,其他测试引擎也都可以接入。
JUnit Jupiter: JUnit Jupiter提供了JUnit5的新的编程模型,是JUnit5新特性的核心。内部 包含了一个测试引擎,用于在Junit Platform上运行。
JUnit Vintage: 由于JUint已经发展多年,为了照顾老的项目,JUnit Vintage提供了兼容JUnit4.x,Junit3.x的测试引擎。
注意:
SpringBoot 2.4 以上版本移除了默认对 Vintage 的依赖。如果需要兼容junit4需要自行引入(不能使用junit4的功能 @Test**)**
JUnit 5’s Vintage Engine Removed from **spring-boot-starter-test,如果需要继续兼容junit4需要自行引入vintage**
<dependency>
<groupId>org.junit.vintagegroupId>
<artifactId>junit-vintage-engineartifactId>
<scope>testscope>
<exclusions>
<exclusion>
<groupId>org.hamcrestgroupId>
<artifactId>hamcrest-coreartifactId>
exclusion>
exclusions>
dependency>
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-testartifactId>
<scope>testscope>
dependency>
现在版本:
@SpringBootTest
class Boot05WebAdminApplicationTests {
@Test
void contextLoads() {
}
}
以前:
@SpringBootTest + @RunWith(SpringTest.class)
SpringBoot整合Junit以后。
JUnit5的注解与JUnit4的注解有所变化
https://junit.org/junit5/docs/current/user-guide/#writing-tests-annotations
**@Test *表示方法是测试方法。但是与JUnit4的@Test不同,他的职责非常单一不能声明任何属性,拓展的测试将会由Jupiter提供额外测试
**@ParameterizedTest *表示方法是参数化测试,下方会有详细介绍
**@RepeatedTest *表示方法可重复执行,下方会有详细介绍
**@DisplayName *为测试类或者测试方法设置展示名称
**@BeforeEach *表示在每个单元测试之前执行
**@AfterEach *表示在每个单元测试之后执行
**@BeforeAll *表示在所有单元测试之前执行
**@AfterAll *表示在所有单元测试之后执行
**@Tag *表示单元测试类别,类似于JUnit4中的@Categories
**@Disabled *表示测试类或测试方法不执行,类似于JUnit4中的@Ignore
**@Timeout *表示测试方法运行如果超过了指定时间将会返回错误
**@ExtendWith *为测试类或测试方法提供扩展类引用
import org.junit.jupiter.api.Test; //注意这里使用的是jupiter的Test注解!!
public class TestDemo {
@Test
@DisplayName("第一次测试")
public void firstTest() {
System.out.println("hello world");
}
断言(assertions)是测试方法中的核心部分,用来对测试需要满足的条件进行验证。这些断言方法都是 org.junit.jupiter.api.Assertions 的静态方法。JUnit 5 内置的断言可以分成如下几个类别:
检查业务逻辑返回的数据是否合理。
所有的测试运行结束以后,会有一个详细的测试报告;
用来对单个值进行简单的验证。如:
方法 | 说明 |
---|---|
assertEquals | 判断两个对象或两个原始类型是否相等 |
assertNotEquals | 判断两个对象或两个原始类型是否不相等 |
assertSame | 判断两个对象引用是否指向同一个对象 |
assertNotSame | 判断两个对象引用是否指向不同的对象 |
assertTrue | 判断给定的布尔值是否为 true |
assertFalse | 判断给定的布尔值是否为 false |
assertNull | 判断给定的对象引用是否为 null |
assertNotNull | 判断给定的对象引用是否不为 null |
@Test
@DisplayName("simple assertion")
public void simple() {
assertEquals(3, 1 + 2, "simple math");
assertNotEquals(3, 1 + 1);
assertNotSame(new Object(), new Object());
Object obj = new Object();
assertSame(obj, obj);
assertFalse(1 > 2);
assertTrue(1 < 2);
assertNull(null);
assertNotNull(new Object());
}
通过 assertArrayEquals 方法来判断两个对象或原始类型的数组是否相等
@Test
@DisplayName("array assertion")
public void array() {
assertArrayEquals(new int[]{1, 2}, new int[] {1, 2});
}
assertAll 方法接受多个 org.junit.jupiter.api.Executable 函数式接口的实例作为要验证的断言,可以通过 lambda 表达式很容易的提供这些断言
@Test
@DisplayName("assert all")
public void all() {
assertAll("Math",
() -> assertEquals(2, 1 + 1),
() -> assertTrue(1 > 0)
);
}
在JUnit4时期,想要测试方法的异常情况时,需要用**@Rule注解的ExpectedException变量还是比较麻烦的。而JUnit5提供了一种新的断言方式Assertions.assertThrows()** ,配合函数式编程就可以进行使用。
@Test
@DisplayName("异常测试")
public void exceptionTest() {
ArithmeticException exception = Assertions.assertThrows(
//扔出断言异常
ArithmeticException.class, () -> System.out.println(1 % 0));
}
Junit5还提供了Assertions.assertTimeout() 为测试方法设置了超时时间
@Test
@DisplayName("超时测试")
public void timeoutTest() {
//如果测试方法时间超过1s将会异常
Assertions.assertTimeout(Duration.ofMillis(1000), () -> Thread.sleep(500));
}
通过 fail 方法直接使得测试失败
@Test
@DisplayName("fail")
public void shouldFail() {
fail("This should fail");
}
JUnit 5 中的前置条件(assumptions【假设】)类似于断言,不同之处在于不满足的断言会使得测试方法失败,而不满足的前置条件只会使得测试方法的执行终止。前置条件可以看成是测试方法执行的前提,当该前提不满足时,就没有继续执行的必要。
@DisplayName("前置条件")
public class AssumptionsTest {
private final String environment = "DEV";
@Test
@DisplayName("simple")
public void simpleAssume() {
assumeTrue(Objects.equals(this.environment, "DEV"));
assumeFalse(() -> Objects.equals(this.environment, "PROD"));
}
@Test
@DisplayName("assume then do")
public void assumeThenDo() {
assumingThat(
Objects.equals(this.environment, "DEV"),
() -> System.out.println("In DEV")
);
}
}
assumeTrue 和 assumFalse 确保给定的条件为 true 或 false,不满足条件会使得测试执行终止。assumingThat 的参数是表示条件的布尔值和对应的 Executable 接口的实现对象。只有条件满足时,Executable 对象才会被执行;当条件不满足时,测试执行并不会终止。
JUnit 5 可以通过 Java 中的内部类和@Nested 注解实现嵌套测试,从而可以更好的把相关的测试方法组织在一起。在内部类中可以使用@BeforeEach 和@AfterEach 注解,而且嵌套的层次没有限制。
@DisplayName("A stack")
class TestingAStackDemo {
Stack<Object> stack;
@Test
@DisplayName("is instantiated with new Stack()")
void isInstantiatedWithNew() {
new Stack<>();
}
@Nested
@DisplayName("when new")
class WhenNew {
@BeforeEach
void createNewStack() {
stack = new Stack<>();
}
@Test
@DisplayName("is empty")
void isEmpty() {
assertTrue(stack.isEmpty());
}
@Test
@DisplayName("throws EmptyStackException when popped")
void throwsExceptionWhenPopped() {
assertThrows(EmptyStackException.class, stack::pop);
}
@Test
@DisplayName("throws EmptyStackException when peeked")
void throwsExceptionWhenPeeked() {
assertThrows(EmptyStackException.class, stack::peek);
}
@Nested
@DisplayName("after pushing an element")
class AfterPushing {
String anElement = "an element";
@BeforeEach
void pushAnElement() {
stack.push(anElement);
}
@Test
@DisplayName("it is no longer empty")
void isNotEmpty() {
assertFalse(stack.isEmpty());
}
@Test
@DisplayName("returns the element when popped and is empty")
void returnElementWhenPopped() {
assertEquals(anElement, stack.pop());
assertTrue(stack.isEmpty());
}
@Test
@DisplayName("returns the element when peeked but remains not empty")
void returnElementWhenPeeked() {
assertEquals(anElement, stack.peek());
assertFalse(stack.isEmpty());
}
}
}
}
参数化测试是JUnit5很重要的一个新特性,它使得用不同的参数多次运行测试成为了可能,也为我们的单元测试带来许多便利。
利用**@ValueSource**等注解,指定入参,我们将可以使用不同的参数进行多次单元测试,而不需要每新增一个参数就新增一个单元测试,省去了很多冗余代码。
@ValueSource: 为参数化测试指定入参来源,支持八大基础类以及String类型,Class类型
@NullSource: 表示为参数化测试提供一个null的入参
@EnumSource: 表示为参数化测试提供一个枚举入参
@CsvFileSource:表示读取指定CSV文件内容作为参数化测试入参
@MethodSource:表示读取指定方法的返回值作为参数化测试入参(注意方法返回需要是一个流)
当然如果参数化测试仅仅只能做到指定普通的入参还达不到让我觉得惊艳的地步。让我真正感到他的强大之处的地方在于他可以支持外部的各类入参。如:CSV,YML,JSON 文件甚至方法的返回值也可以作为入参。只需要去实现ArgumentsProvider接口,任何外部文件都可以作为它的入参。
@ParameterizedTest
@ValueSource(strings = {"one", "two", "three"})
@DisplayName("参数化测试1")
public void parameterizedTest1(String string) {
System.out.println(string);
Assertions.assertTrue(StringUtils.isNotBlank(string));
}
@ParameterizedTest
@MethodSource("method") //指定方法名
@DisplayName("方法来源参数")
public void testWithExplicitLocalMethodSource(String name) {
System.out.println(name);
Assertions.assertNotNull(name);
}
static Stream<String> method() {
return Stream.of("apple", "banana");
}
在进行迁移的时候需要注意如下的变化:
注解在 org.junit.jupiter.api 包中,断言在 org.junit.jupiter.api.Assertions 类中,前置条件在 org.junit.jupiter.api.Assumptions 类中。
把@Before 和@After 替换成@BeforeEach 和@AfterEach。
把@BeforeClass 和@AfterClass 替换成@BeforeAll 和@AfterAll。
把@Ignore 替换成@Disabled。
把@Category 替换成@Tag。
把@RunWith、@Rule 和@ClassRule 替换成@ExtendWith。
未来每一个微服务在云上部署以后,我们都需要对其进行监控、追踪、审计、控制等。SpringBoot就抽取了Actuator场景,使得我们每个微服务快速引用即可获得生产级别的应用监控、审计等功能。
<dependency>
<groupId>org.springframework.bootgroupId>
<artifactId>spring-boot-starter-actuatorartifactId>
dependency>
引入场景
访问 http://localhost:8080/actuator/**
暴露所有监控信息为HTTP
management:
endpoints:
enabled-by-default: true #暴露所有端点信息
web:
exposure:
include: '*' #以web方式暴露
http://localhost:8080/actuator/beans
http://localhost:8080/actuator/configprops
http://localhost:8080/actuator/metrics
http://localhost:8080/actuator/metrics/jvm.gc.pause
http://localhost:8080/actuator/endpointName/detailPath
。。。。。。
https://github.com/codecentric/spring-boot-admin
ID | 描述 |
---|---|
auditevents |
暴露当前应用程序的审核事件信息。需要一个AuditEventRepository组件 。 |
beans |
显示应用程序中所有Spring Bean的完整列表。 |
caches |
暴露可用的缓存。 |
conditions |
显示自动配置的所有条件信息,包括匹配或不匹配的原因。 |
configprops |
显示所有@ConfigurationProperties 。 |
env |
暴露Spring的属性ConfigurableEnvironment |
flyway |
显示已应用的所有Flyway数据库迁移。 需要一个或多个Flyway 组件。 |
health |
显示应用程序运行状况信息。 |
httptrace |
显示HTTP跟踪信息(默认情况下,最近100个HTTP请求-响应)。需要一个HttpTraceRepository 组件。 |
info |
显示应用程序信息。 |
integrationgraph |
显示Spring integrationgraph 。需要依赖spring-integration-core 。 |
loggers |
显示和修改应用程序中日志的配置。 |
liquibase |
显示已应用的所有Liquibase数据库迁移。需要一个或多个Liquibase 组件。 |
metrics |
显示当前应用程序的“指标”信息。 |
mappings |
显示所有@RequestMapping 路径列表。 |
scheduledtasks |
显示应用程序中的计划任务。 |
sessions |
允许从Spring Session支持的会话存储中检索和删除用户会话。需要使用Spring Session的基于Servlet的Web应用程序。 |
shutdown |
使应用程序正常关闭。默认禁用。 |
startup |
显示由ApplicationStartup 收集的启动步骤数据。需要使用SpringApplication 进行配置BufferingApplicationStartup 。 |
threaddump |
执行线程转储。 |
如果您的应用程序是Web应用程序(Spring MVC,Spring WebFlux或Jersey),则可以使用以下附加端点:
ID | 描述 |
---|---|
heapdump |
返回hprof 堆转储文件。 |
jolokia |
通过HTTP暴露JMX bean(需要引入Jolokia,不适用于WebFlux)。需要引入依赖jolokia-core 。 |
logfile |
返回日志文件的内容(如果已设置logging.file.name 或logging.file.path 属性)。支持使用HTTPRange 标头来检索部分日志文件的内容。 |
prometheus |
以Prometheus服务器可以抓取的格式公开指标。需要依赖micrometer-registry-prometheus 。 |
最常用的Endpoint
Health:监控状况
Metrics:运行时指标
Loggers:日志记录
健康检查端点,我们一般用于在云平台,平台会定时的检查应用的健康状况,我们就需要Health Endpoint可以为平台返回当前应用的一系列组件健康状况的集合。
重要的几点:
health endpoint返回的结果,应该是一系列健康检查后的一个汇总报告
很多的健康检查默认已经自动配置好了,比如:数据库、redis等
可以很容易的添加自定义的健康检查机制
提供详细的、层级的、空间指标信息,这些信息可以被pull(主动推送)或者push(被动获取)方式得到;
通过Metrics对接多种监控系统
简化核心Metrics开发
添加自定义Metrics或者扩展已有Metrics
management:
endpoint:
beans:
enabled: true
management:
endpoints:
enabled-by-default: false
endpoint:
beans:
enabled: true
health:
enabled: true
支持的暴露方式
HTTP:默认只暴露health和info Endpoint
JMX:默认暴露所有Endpoint
除过health和info,剩下的Endpoint都应该进行保护访问。如果引入SpringSecurity,则会默认配置安全访问规则
ID | JMX | Web |
---|---|---|
auditevents |
Yes | No |
beans |
Yes | No |
caches |
Yes | No |
conditions |
Yes | No |
configprops |
Yes | No |
env |
Yes | No |
flyway |
Yes | No |
health |
Yes | Yes |
heapdump |
N/A | No |
httptrace |
Yes | No |
info |
Yes | Yes |
integrationgraph |
Yes | No |
jolokia |
N/A | No |
logfile |
N/A | No |
loggers |
Yes | No |
liquibase |
Yes | No |
metrics |
Yes | No |
mappings |
Yes | No |
prometheus |
N/A | No |
scheduledtasks |
Yes | No |
sessions |
Yes | No |
shutdown |
Yes | No |
startup |
Yes | No |
threaddump |
Yes | No |
import org.springframework.boot.actuate.health.Health;
import org.springframework.boot.actuate.health.HealthIndicator;
import org.springframework.stereotype.Component;
@Component
public class MyHealthIndicator implements HealthIndicator {
@Override
public Health health() {
int errorCode = check(); // perform some specific health check
if (errorCode != 0) {
return Health.down().withDetail("Error Code", errorCode).build();
}
return Health.up().build();
}
}
构建Health
Health build = Health.down()
.withDetail("msg", "error service")
.withDetail("code", "500")
.withException(new RuntimeException())
.build();
management:
health:
enabled: true
show-details: always #总是显示详细信息。可显示每个模块的状态信息
@Component
public class MyComHealthIndicator extends AbstractHealthIndicator {
/**
* 真实的检查方法
* @param builder
* @throws Exception
*/
@Override
protected void doHealthCheck(Health.Builder builder) throws Exception {
//mongodb。 获取连接进行测试
Map<String,Object> map = new HashMap<>();
// 检查完成
if(1 == 2){
// builder.up(); //健康
builder.status(Status.UP);
map.put("count",1);
map.put("ms",100);
}else {
// builder.down();
builder.status(Status.OUT_OF_SERVICE);
map.put("err","连接超时");
map.put("ms",3000);
}
builder.withDetail("code",100)
.withDetails(map);
}
}
常用两种方式
info:
appName: boot-admin
version: 2.0.1
mavenProjectName: @project.artifactId@ #使用@@可以获取maven的pom文件值
mavenProjectVersion: @project.version@
import java.util.Collections;
import org.springframework.boot.actuate.info.Info;
import org.springframework.boot.actuate.info.InfoContributor;
import org.springframework.stereotype.Component;
@Component
public class ExampleInfoContributor implements InfoContributor {
@Override
public void contribute(Info.Builder builder) {
builder.withDetail("example",
Collections.singletonMap("key", "value"));
}
}
http://localhost:8080/actuator/info 会输出以上方式返回的所有info信息
JVM metrics, report utilization of:
CPU metrics
File descriptor metrics
Kafka consumer and producer metrics
Log4j2 metrics: record the number of events logged to Log4j2 at each level
Logback metrics: record the number of events logged to Logback at each level
Uptime metrics: report a gauge for uptime and a fixed gauge representing the application’s absolute start time
Tomcat metrics (server.tomcat.mbeanregistry.enabled
must be set to true
for all Tomcat metrics to be registered)
Spring Integration metrics
class MyService{
Counter counter;
public MyService(MeterRegistry meterRegistry){
counter = meterRegistry.counter("myservice.method.running.counter");
}
public void hello() {
counter.increment();
}
}
//也可以使用下面的方式
@Bean
MeterBinder queueSize(Queue queue) {
return (registry) -> Gauge.builder("queueSize", queue::size).register(registry);
}
@Component
@Endpoint(id = "container")
public class DockerEndpoint {
@ReadOperation
public Map getDockerInfo(){
return Collections.singletonMap("info","docker started...");
}
@WriteOperation
private void restartDocker(){
System.out.println("docker restarted....");
}
}
场景:开发ReadinessEndpoint来管理程序是否就绪,或者Liveness****Endpoint来管理程序是否存活;
当然,这个也可以直接使用 https://docs.spring.io/spring-boot/docs/current/reference/html/production-ready-features.html#production-ready-kubernetes-probes
为了方便多环境适配,springboot简化了profile功能。
默认配置文件 application.yaml;任何时候都会加载
指定环境配置文件 application-{env}.yaml
激活指定环境
默认配置与环境配置同时生效
同名配置项,profile配置优先
@Configuration(proxyBeanMethods = false)
@Profile("production")
public class ProductionConfiguration {
// ...
}
spring.profiles.group.production[0]=proddb
spring.profiles.group.production[1]=prodmq
使用:--spring.profiles.active=production 激活
https://docs.spring.io/spring-boot/docs/current/reference/html/spring-boot-features.html#boot-features-external-config
Default properties (specified by setting SpringApplication.setDefaultProperties
).
@PropertySource
annotations on your @Configuration
classes. Please note that such property sources are not added to the Environment
until the application context is being refreshed. This is too late to configure certain properties such as logging.*
and spring.main.*
which are read before refresh begins.
Config data (such as **application.properties**
files)
A RandomValuePropertySource
that has properties only in random.*
.
OS environment variables.
Java System properties (System.getProperties()
).
JNDI attributes from java:comp/env
.
ServletContext
init parameters.
ServletConfig
init parameters.
Properties from SPRING_APPLICATION_JSON
(inline JSON embedded in an environment variable or system property).
Command line arguments.
properties
attribute on your tests. Available on @SpringBootTest
and the test annotations for testing a particular slice of your application.
@TestPropertySource
annotations on your tests.
Devtools global settings properties in the $HOME/.config/spring-boot
directory when devtools is active.
常用:Java属性文件、YAML文件、环境变量、命令行参数;
(1) classpath 根路径
(2) classpath 根路径下config目录
(3) jar包当前目录
(4) jar包当前目录的config目录
(5) /config子目录的直接子目录
当前jar包内部的application.properties和application.yml
当前jar包内部的application-{profile}.properties 和 application-{profile}.yml
引用的外部jar包的application.properties和application.yml
引用的外部jar包的application-{profile}.properties 和 application-{profile}.yml
autoconfigure包中配置使用 META-INF/spring.factories 中 EnableAutoConfiguration 的值,使得项目启动加载指定的自动配置类
编写自动配置类 xxxAutoConfiguration -> xxxxProperties
引入starter — xxxAutoConfiguration — 容器中放入组件 ---- 绑定xxxProperties ---- 配置项
atguigu-hello-spring-boot-starter(启动器)
atguigu-hello-spring-boot-starter-autoconfigure(自动配置包)
Spring原理【Spring注解】、SpringMVC原理、自动配置原理、SpringBoot原理
创建 SpringApplication
运行 SpringApplication
public interface Bootstrapper {
/**
* Initialize the given {@link BootstrapRegistry} with any required registrations.
* @param registry the registry to initialize
*/
void intitialize(BootstrapRegistry registry);
}
@FunctionalInterface
public interface ApplicationRunner {
/**
* Callback used to run the bean.
* @param args incoming application arguments
* @throws Exception on error
*/
void run(ApplicationArguments args) throws Exception;
}
@FunctionalInterface
public interface CommandLineRunner {
/**
* Callback used to run the bean.
* @param args incoming main method arguments
* @throws Exception on error
*/
void run(String... args) throws Exception;
}
https://docs.spring.io/spring-boot/docs/current/reference/html/spring-boot-features.html#boot-features-application-events-and-listeners
ApplicationContextInitializer
ApplicationListener
SpringApplicationRunListener