zoukankan      html  css  js  c++  java
  • SpringMVC的处理流程

    核心架构的具体流程步骤如下:

    1、  首先用户发送请求——>DispatcherServlet,前端控制器收到请求后自己不进行处理,而是委托给其他的解析器进行处理,作为统一访问点,进行全局的流程控制;

    2、  DispatcherServlet——>HandlerMapping, HandlerMapping将会把请求映射为HandlerExecutionChain对象(包含一个Handler处理器(页面控制器)对象、多个HandlerInterceptor拦截器)对象,通过这种策略模式,很容易添加新的映射策略;

    3、  DispatcherServlet——>HandlerAdapter,HandlerAdapter将会把处理器包装为适配器,从而支持多种类型的处理器,即适配器设计模式的应用,从而很容易支持很多类型的处理器;

    4、  HandlerAdapter——>处理器功能处理方法的调用,HandlerAdapter将会根据适配的结果调用真正的处理器的功能处理方法,完成功能处理;并返回一个ModelAndView对象(包含模型数据、逻辑视图名);

    5、  ModelAndView的逻辑视图名——> ViewResolver, ViewResolver将把逻辑视图名解析为具体的View,通过这种策略模式,很容易更换其他视图技术;

    6、  View——>渲染,View会根据传进来的Model模型数据进行渲染,此处的Model实际是一个Map数据结构,因此很容易支持其他视图技术;

    7、返回控制权给DispatcherServlet,由DispatcherServlet返回响应给用户,到此一个流程结束。

    protected void doDispatch(HttpServletRequest request, HttpServletResponse response) throws Exception {
            HttpServletRequest processedRequest = request;
            HandlerExecutionChain mappedHandler = null;
            int interceptorIndex = -1;
    
            try {
                ModelAndView mv;
                boolean errorView = false;
    
                try {
                    processedRequest = checkMultipart(request);
    
                    // 根据请求得到Handler

    mappedHandler = getHandler(processedRequest, false); if (mappedHandler == null || mappedHandler.getHandler() == null) { noHandlerFound(processedRequest, response); return; } // 把Handler保装成HandlerAdapter. HandlerAdapter ha = getHandlerAdapter(mappedHandler.getHandler()); // Process last-modified header, if supported by the handler. String method = request.getMethod(); boolean isGet = "GET".equals(method); if (isGet || "HEAD".equals(method)) { long lastModified = ha.getLastModified(request, mappedHandler.getHandler()); if (logger.isDebugEnabled()) { String requestUri = urlPathHelper.getRequestUri(request); logger.debug("Last-Modified value for [" + requestUri + "] is: " + lastModified); } if (new ServletWebRequest(request, response).checkNotModified(lastModified) && isGet) { return; } } // 执行preHandler. HandlerInterceptor[] interceptors = mappedHandler.getInterceptors(); if (interceptors != null) { for (int i = 0; i < interceptors.length; i++) { HandlerInterceptor interceptor = interceptors[i]; if (!interceptor.preHandle(processedRequest, response, mappedHandler.getHandler())) { triggerAfterCompletion(mappedHandler, interceptorIndex, processedRequest, response, null); return; } interceptorIndex = i; } } // 处理控制器逻辑并返回MV. mv = ha.handle(processedRequest, response, mappedHandler.getHandler()); // Do we need view name translation? if (mv != null && !mv.hasView()) { mv.setViewName(getDefaultViewName(request)); } // 执行POSTHandler

    if (interceptors != null) { for (int i = interceptors.length - 1; i >= 0; i--) { HandlerInterceptor interceptor = interceptors[i]; interceptor.postHandle(processedRequest, response, mappedHandler.getHandler(), mv); } } } catch (ModelAndViewDefiningException ex) { logger.debug("ModelAndViewDefiningException encountered", ex); mv = ex.getModelAndView(); } catch (Exception ex) { Object handler = (mappedHandler != null ? mappedHandler.getHandler() : null); mv = processHandlerException(processedRequest, response, handler, ex); errorView = (mv != null); } // ViewResolver根据使用 model和view来呈现 if (mv != null && !mv.wasCleared()) { render(mv, processedRequest, response); if (errorView) { WebUtils.clearErrorRequestAttributes(request); } } else { if (logger.isDebugEnabled()) { logger.debug("Null ModelAndView returned to DispatcherServlet with name '" + getServletName() + "': assuming HandlerAdapter completed request handling"); } } // Trigger after-completion for successful outcome. triggerAfterCompletion(mappedHandler, interceptorIndex, processedRequest, response, null); } catch (Exception ex) { // Trigger after-completion for thrown exception. triggerAfterCompletion(mappedHandler, interceptorIndex, processedRequest, response, ex); throw ex; } catch (Error err) { ServletException ex = new NestedServletException("Handler processing failed", err); // Trigger after-completion for thrown exception. triggerAfterCompletion(mappedHandler, interceptorIndex, processedRequest, response, ex); throw ex; } finally { // Clean up any resources used by a multipart request. if (processedRequest != request) { cleanupMultipart(processedRequest); } } }

     参考(照抄)http://jinnianshilongnian.iteye.com/blog/1594806

  • 相关阅读:
    4. 归并排序
    3. 堆排序
    2. 希尔排序
    1. 选择排序、插入排序、冒泡排序
    1. 拓扑排序
    8. 最大堆
    7. B+树
    6. B树
    5. 二叉查找树、平衡二叉树、红黑树的效率比较
    4. 红黑二叉树
  • 原文地址:https://www.cnblogs.com/javabeginer/p/6674287.html
Copyright © 2011-2022 走看看