认证流程分析

简介: `UsernamePasswordAuthenticationFilter` 是 Spring Security 处理表单登录的核心过滤器,拦截 `/login` 的 POST 请求,提取用户名密码并封装成 `UsernamePasswordAuthenticationToken`,交由 `AuthenticationManager` 执行认证。后者通过 `AuthenticationProvider` 链委托给

UsernamePasswordAuthenticationFilter
先看主要负责认证的过滤器UsernamePasswordAuthenticationFilter,有删减,注意注释。
public class UsernamePasswordAuthenticationFilter extends AbstractAuthenticationProcessingFilter
{
public static final String SPRING_SECURITY_FORM_USERNAME_KEY = "username";
public static final String SPRING_SECURITY_FORM_PASSWORD_KEY = "password";
private String usernameParameter = "username";
private String passwordParameter = "password";
private boolean postOnly = true;

public UsernamePasswordAuthenticationFilter() {
    super(new AntPathRequestMatcher("/login", "POST"));
}

public Authentication attemptAuthentication(HttpServletRequest request, 
                                            HttpServletResponse response) throws AuthenticationException {
    //必须为POST请求
    if (this.postOnly && !request.getMethod().equals("POST")) {
        throw new AuthenticationServiceException("Authentication method not supported: " +
                                                 request.getMethod());
    } else {

        String username = this.obtainUsername(request);
        String password = this.obtainPassword(request);

        if (username == null) {
            username = "";
        }

        if (password == null) {
            password = "";
        }

        username = username.trim();

        //将填写的用户名和密码封装到了UsernamePasswordAuthenticationToken中
        UsernamePasswordAuthenticationToken authRequest = new
        UsernamePasswordAuthenticationToken(username, password);

        this.setDetails(request, authRequest);
        //调用AuthenticationManager对象实现认证
        return this.getAuthenticationManager().authenticate(authRequest);
    }
}

}
AuthenticationManager
由上面源码得知,真正认证操作在AuthenticationManager里面!
public class ProviderManager implements AuthenticationManager, MessageSourceAware,
InitializingBean {

private static final Log logger = LogFactory.getLog(ProviderManager.class);
private AuthenticationEventPublisher eventPublisher;
private List<AuthenticationProvider> providers;
protected MessageSourceAccessor messages;
private AuthenticationManager parent;
private boolean eraseCredentialsAfterAuthentication;

//注意AuthenticationProvider这个对象,SpringSecurity针对每一种认证,什么qq登录啊,
//用户名密码登陆啊,微信登录啊都封装了一个AuthenticationProvider对象。
public ProviderManager(List<AuthenticationProvider> providers) {
    this(providers, (AuthenticationManager)null);
}

public Authentication authenticate(Authentication authentication) throws
AuthenticationException {

    Class<? extends Authentication> toTest = authentication.getClass();
    AuthenticationException lastException = null;
    AuthenticationException parentException = null;
    Authentication result = null;
    Authentication parentResult = null;
    boolean debug = logger.isDebugEnabled();
    Iterator var8 = this.getProviders().iterator();

    //循环所有AuthenticationProvider,匹配当前认证类型。
    while(var8.hasNext()) {
        AuthenticationProvider provider = (AuthenticationProvider)var8.next();
        if (provider.supports(toTest)) {
            if (debug) {
                logger.debug("Authentication attempt using " +
                             provider.getClass().getName());
            }
            try {
                //找到了对应认证类型就继续调用AuthenticationProvider对象完成认证业务。
                result = provider.authenticate(authentication);
                if (result != null) {
                    this.copyDetails(authentication, result);
                    break;
                }
            } catch (AccountStatusException var13) {
                this.prepareException(var13, authentication);
                throw var13;
            } catch (InternalAuthenticationServiceException var14) {
                this.prepareException(var14, authentication);
                throw var14;
            } catch (AuthenticationException var15) {
                lastException = var15;
            }
        }
    }

    if (result == null && this.parent != null) {
        try {
            result = parentResult = this.parent.authenticate(authentication);
        } catch (ProviderNotFoundException var11) {
        } catch (AuthenticationException var12) {
            parentException = var12;
            lastException = var12;
        }
    }

    if (result != null) {
        if (this.eraseCredentialsAfterAuthentication && result instanceof
            CredentialsContainer) {
            ((CredentialsContainer)result).eraseCredentials();
        }
        if (parentResult == null) {
            this.eventPublisher.publishAuthenticationSuccess(result);
        }
        return result;
    } else {
        if (lastException == null) {
            lastException = new
            ProviderNotFoundException(this.messages.getMessage("ProviderManager.providerNotFound", new
                                                               Object[]{toTest.getName()}, "No AuthenticationProvider found for {0}"));
        }
        if (parentException == null) {
            this.prepareException((AuthenticationException)lastException, authentication);
        }
        throw lastException;
    }
}

}
AbstractUserDetailsAuthenticationProvider
咱们继续再找到AuthenticationProvider的实现类AbstractUserDetailsAuthenticationProvider:
public class DaoAuthenticationProvider extends AbstractUserDetailsAuthenticationProvider {
private static final String USER_NOT_FOUND_PASSWORD = "userNotFoundPassword";
private PasswordEncoder passwordEncoder;
private volatile String userNotFoundEncodedPassword;
private UserDetailsService userDetailsService;
private UserDetailsPasswordService userDetailsPasswordService;
protected final UserDetails retrieveUser(String username,
UsernamePasswordAuthenticationToken authentication) throws AuthenticationException {
this.prepareTimingAttackProtection();
try {
//重点来了!主要就在这里了!
//可别忘了,咱们为什么要翻源码,是想用自己数据库中的数据实现认证操作啊!
//UserDetails就是SpringSecurity自己的用户对象。
//this.getUserDetailsService()其实就是得到UserDetailsService的一个实现类
//loadUserByUsername里面就是真正的认证逻辑
//也就是说我们可以直接编写一个UserDetailsService的实现类,告诉SpringSecurity就可以了!
//loadUserByUsername方法中只需要返回一个UserDetails对象即可
UserDetails loadedUser = this.getUserDetailsService().loadUserByUsername(username);
//若返回null,就抛出异常,认证失败。
if (loadedUser == null) {
throw new InternalAuthenticationServiceException("UserDetailsService returned
null, which is an interface contract violation");
} else {
//若有得到了UserDetails对象,返回即可。
return loadedUser;
}
} catch (UsernameNotFoundException var4) {
this.mitigateAgainstTimingAttack(authentication);
throw var4;
} catch (InternalAuthenticationServiceException var5) {
throw var5;
} catch (Exception var6) {
throw new InternalAuthenticationServiceException(var6.getMessage(), var6);
}
}
}
AbstractUserDetailsAuthenticationProvider
按理说到此已经知道自定义认证方法的怎么写了,但咱们把返回的流程也大概走一遍,上面不是说到返回了一个 UserDetails对象对象吗?
跟着它就又回到AbstractUserDetailsAuthenticationProvider对象中authenticate方法最后一行了。
public abstract class AbstractUserDetailsAuthenticationProvider implements
AuthenticationProvider, InitializingBean, MessageSourceAware {

public Authentication authenticate(Authentication authentication) throws
AuthenticationException {
    //最后一行返回值,调用了createSuccessAuthentication方法,此方法就在下面!
    return this.createSuccessAuthentication(principalToReturn, authentication, user);
}

//咿!?怎么又封装了一次UsernamePasswordAuthenticationToken,开局不是已经封装过了吗?
protected Authentication createSuccessAuthentication(Object principal, 
                                                     Authentication authentication, 
                                                     UserDetails user) {
    //那就从构造方法点进去看看,这才干啥了。
    UsernamePasswordAuthenticationToken result = new
    UsernamePasswordAuthenticationToken(principal, authentication.getCredentials(),
                                        this.authoritiesMapper.mapAuthorities(user.getAuthorities()));
    result.setDetails(authentication.getDetails());
    return result;
}

}
UsernamePasswordAuthenticationToken
来到UsernamePasswordAuthenticationToken对象发现里面有两个构造方法
public class UsernamePasswordAuthenticationToken extends AbstractAuthenticationToken {

private static final long serialVersionUID = 510L;
private final Object principal;
private Object credentials;

//认证成功前,调用的是这个带有两个参数的。
public UsernamePasswordAuthenticationToken(Object principal, 
                                           Object credentials) {
    super((Collection)null);
    this.principal = principal;
    this.credentials = credentials;
    this.setAuthenticated(false);
}

//认证成功后,调用的是这个带有三个参数的。
public UsernamePasswordAuthenticationToken(Object principal, 
                                           Object credentials,
                                           Collection<? extends GrantedAuthority> authorities) {
    //看看父类干了什么!
    super(authorities);
    this.principal = principal;
    this.credentials = credentials;
    super.setAuthenticated(true);
}

}
AbstractAuthenticationToken
再点进去super(authorities)看看:
public abstract class AbstractAuthenticationToken implements Authentication,
CredentialsContainer {

private final Collection<GrantedAuthority> authorities;
private Object details;
private boolean authenticated = false;

public AbstractAuthenticationToken(Collection<? extends GrantedAuthority> authorities) {

    //这时两个参数那个分支!
    if (authorities == null) {
        this.authorities = AuthorityUtils.NO_AUTHORITIES;
    } else {
        //三个参数的,看这里!
        Iterator var2 = authorities.iterator();
        //原来是多个了添加权限信息的步骤
        GrantedAuthority a;
        do {
            if (!var2.hasNext()) {
                ArrayList<GrantedAuthority> temp = new ArrayList(authorities.size());
                temp.addAll(authorities);
                this.authorities = Collections.unmodifiableList(temp);
                return;
            }
            a = (GrantedAuthority)var2.next();
        } while(a != null);
        //若没有权限信息,是会抛出异常的!
        throw new IllegalArgumentException("Authorities collection cannot contain any null
        elements");
    }
}

}
由此,咱们需要牢记自定义认证业务逻辑返回的UserDetails对象中一定要放置权限信息! 现在可以结束源码分析了?先不要着急! 咱们回到最初的地方UsernamePasswordAuthenticationFilter,你看好看了,这可是个过滤器,咱们分析这么 久,都没提到doFilter方法,你不觉得心里不踏实?可是这里面也没有doFilter呀?那就从父类找!
AbstractAuthenticationProcessingFilter
点开AbstractAuthenticationProcessingFilter,删掉不必要的代码!
public abstract class AbstractAuthenticationProcessingFilter
extends GenericFilterBean
implements ApplicationEventPublisherAware, MessageSourceAware {

//doFilter再次!
public void doFilter(ServletRequest req, 
                     ServletResponse res, 
                     FilterChain chain) throws IOException, ServletException {

    HttpServletRequest request = (HttpServletRequest)req;
    HttpServletResponse response = (HttpServletResponse)res;

    if (!this.requiresAuthentication(request, response)) {
        chain.doFilter(request, response);
    } else {

        if (this.logger.isDebugEnabled()) {
            this.logger.debug("Request is to process authentication");
        }

        Authentication authResult;
        try {
            authResult = this.attemptAuthentication(request, response);
            if (authResult == null) {
                return;
            }
            this.sessionStrategy.onAuthentication(authResult, request, response);
        } catch (InternalAuthenticationServiceException var8) {
            this.logger.error("An internal error occurred while trying to authenticate the
            user.", var8);
            this.unsuccessfulAuthentication(request, response, var8);
            return;
        } catch (AuthenticationException var9) {
            this.unsuccessfulAuthentication(request, response, var9);
            return;
        }
        if (this.continueChainBeforeSuccessfulAuthentication) {
            chain.doFilter(request, response);
        }
        this.successfulAuthentication(request, response, chain, authResult);
    }
}

protected boolean requiresAuthentication(HttpServletRequest request, 
                                         HttpServletResponse response) {
    return this.requiresAuthenticationRequestMatcher.matches(request);
}

//成功走successfulAuthentication
protected void successfulAuthentication(HttpServletRequest request, 
                                        HttpServletResponse response, 
                                        FilterChain chain, 
                                        Authentication authResult) throws IOException, ServletException {

    if (this.logger.isDebugEnabled()) {
        this.logger.debug("Authentication success. Updating SecurityContextHolder to
                          contain: " + authResult);
    }

    //认证成功,将认证信息存储到SecurityContext中!
    SecurityContextHolder.getContext().setAuthentication(authResult);
    //登录成功调用rememberMeServices
    this.rememberMeServices.loginSuccess(request, response, authResult);
    if (this.eventPublisher != null) {
        this.eventPublisher.publishEvent(new
                                         InteractiveAuthenticationSuccessEvent(authResult, this.getClass()));
    }
    this.successHandler.onAuthenticationSuccess(request, response, authResult);
}

//失败走unsuccessfulAuthentication
protected void unsuccessfulAuthentication(HttpServletRequest request, 
                                          HttpServletResponse response, 
                                          AuthenticationException failed) throws IOException, ServletException {
    SecurityContextHolder.clearContext();
    if (this.logger.isDebugEnabled()) {
        this.logger.debug("Authentication request failed: " + failed.toString(), failed);
        this.logger.debug("Updated SecurityContextHolder to contain null Authentication");
        this.logger.debug("Delegating to authentication failure handler " +
                          this.failureHandler);
    }
    this.rememberMeServices.loginFail(request, response);
    this.failureHandler.onAuthenticationFailure(request, response, failed);
}

}
可见AbstractAuthenticationProcessingFilter这个过滤器对于认证成功与否,做了两个分支,成功执行 successfulAuthentication,失败执行unsuccessfulAuthentication。
在successfulAuthentication内部,将认证信息存储到了SecurityContext中。并调用了loginSuccess方法,这就是常见的“记住我”功能!此功能具体应用,咱们后续再研究!

相关文章
|
安全 前端开发 Java
SpringSecurity如何放行资源
SpringSecurity如何放行资源
771 2
|
Go 开发工具 C语言
flutter项目打包.exe文件发布windows版
目录 发布windows版 1.为现有的 Flutter 应用程序添加桌面支持 2..创建main_desktop.dart文件 3.hover安装和环境配置 4.初始化,并打包 坑1
2167 0
flutter项目打包.exe文件发布windows版
|
4月前
|
前端开发 JavaScript Java
Spring Boot中使用拦截器
拦截器是Spring Boot中AOP的一种实现,用于拦截动态请求,常用于权限控制、登录验证等场景。它不拦截静态资源(如static目录下的文件),但需注意配置方式对静态资源的影响。通过实现HandlerInterceptor接口,可在请求前、后及完成后执行逻辑。自定义拦截器后,通过WebMvcConfigurer添加路径匹配规则即可生效。支持灵活配置,如排除特定方法拦截,结合注解实现可插拔控制,适用于前后端分离或传统项目中的请求过滤需求。
|
5月前
|
前端开发 Java API
Spring Boot中使用Swagger3.0.0注解案例
Spring Boot中使用Swagger3.0.0注解案例
427 3
|
4月前
|
JSON 前端开发 Java
Spring Boot中的项目属性配置
本文介绍了Spring Boot中配置管理及常用MVC注解的使用。通过`@Value`和`@ConfigurationProperties`实现不同环境下的配置分离与动态读取,结合多配置文件(如application-dev.yml、application-pro.yml)灵活切换开发与生产环境。同时详解了@RestController、@RequestMapping、@PathVariable、@RequestParam和@RequestBody等核心注解,涵盖RESTful接口设计、参数绑定、JSON数据接收等常见场景,提升开发效率与项目可维护性。
|
4月前
|
JSON 缓存 Java
Spring Boot集成 Swagger2 展现在线接口文档
Swagger是一款用于生成和管理API文档的开源工具,解决前后端分离架构中接口文档滞后问题。通过集成Swagger2,可自动生成实时在线文档,并支持在线测试接口,提升开发效率。本文详解Spring Boot中集成Swagger2的配置与常用注解,如@Api、@ApiOperation等,实现接口文档自动化,便于团队协作与维护。
|
4月前
|
Java 应用服务中间件 Maven
Spring Boot开发环境搭建和项目启动
本节讲解JDK配置、Spring Boot工程构建与启动,以及项目结构分析。涵盖IDEA中JDK、Maven、编码设置,快速创建Spring Boot项目,并介绍目录结构及简单Controller测试,助你快速上手开发。
|
4月前
|
自然语言处理 安全 Java
Spring Boot中集成Lucence
Lucene是Apache开源的全文检索库,基于Java开发,通过分词、建立索引实现高效搜索。本文详解其原理,并结合Spring Boot实现英文索引、中文分词及高亮查询,助你快速掌握全文检索技术。
|
4月前
|
缓存 JSON 前端开发
Spring Boot集成Thymeleaf模板引擎
Thymeleaf 是现代Java服务端模板引擎,支持HTML静态原型与动态数据融合,前后端可协作开发。通过 `th:*` 标签动态渲染数据,浏览器可直接预览页面,无需启动服务。Spring Boot 中集成简单,只需引入依赖并配置关闭缓存即可。支持对象、List 数据展示,常用标签如 th:value、th:each、th:if 等,便于构建动态页面。适用于错误页、表单等场景,提升开发效率。
|
4月前
|
存储 SQL Java
Spring Boot使用slf4j进行日志记录
本文介绍了在Spring Boot项目中使用SLF4J结合Logback进行日志管理的最佳实践。通过配置`application.yml`和`logback.xml`,实现日志级别、输出格式、文件滚动及存储路径的灵活控制。推荐使用SLF4J门面模式,避免直接调用具体日志实现,提升系统可维护性与扩展性。

热门文章

最新文章