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Here are the requirements for the problem:

  • java web application running in Tomcat 7
  • The initialization code needs to talk to an external database
  • The external database might not be available during start-up of the application
  • The application start-up can not fail otherwise tomcat will mark the application as not running and will not send the application any requests. Instead the application should start-up accept requests and if it finds that the app specific initialization is not complete it should try to complete it during the request processing.

I am trying to use the servlet filter below to solve the problem. and I have following questions.

  • Is this Servlet filter thread safe, will it execute the initialization code only once?
  • Is there a way to solve this problem without using a servlet filter?
  • Is there a better way to solve this problem?
 package com.exmaple;

 public class InitFilter implements Filter 
    private volatile boolean initialized = false;

    public void destroy() {

        // is this method thread safe and will only execute the init code once
        // and will cause all requests to wait until initialization code is executed
        // thread code
        public void doFilter(ServletRequest request, ServletResponse response,
                FilterChain chain) throws IOException, ServletException {

            if (initialized == false) {
                synchronized (this) {
                    // do expensive initialization work here
                    initialized = true;
            chain.doFilter(request, response);

        public void init(FilterConfig fConfig) throws ServletException {
share|improve this question
You can use an Executors.newSingleThreadPool() executing a FutureTask<Foo>; then you'll access your Foo using this Future's .get() –  fge Mar 21 at 19:45
The pattern test-synchronize-set is inherently unsafe because thread-A can test initialized==false then be suspended prior to synchronized(this) - thread-B then tests initialized, does the synchronization, then starts the init; thread-B is then suspended on I/O and thread-A tries synchronized(this) and is blocked because B still has the sync. When thread-B finishes and unlocks thread-A will continue and run the initialization again. –  Stephen P Mar 21 at 20:03
at the best least initialized = true; should be first line of code. Better to see singleton pattern and use that, even though its not the best - for academic reasons, in real life apps i have seen this kind of initialization work very well. we connect to do db by pre touching a servlet and have a singleton load resources but the check is more like stackoverflow.com/questions/70689/… and stackoverflow.com/questions/427902/… –  tgkprog Mar 23 at 8:38

2 Answers 2

I would approach it as a ServletContextListener and run the initialization in the contextInitialized method, as a separate thread, maybe using a FutureTask as @fge suggests, or a newSingleThreadExecutor rather than a pool.

Maybe something along the lines of...

public void contextInitialized(ServletContextEvent sce)
    Executors.newSingleThreadExecutor().execute(new Runnable() {

        public void run()
            // Long running initialization code, or a call to it.



This avoids problems with synchronization and only runs the initialization once. (Once per Context)

In any case, doing this or a Filter, the rest of your program has to deal with initialization being incomplete.

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So this way the app starts up successfully but how to fail requests that depend on the initialized being complete until the init is complete. –  ams Mar 21 at 21:13
@ams - to fail requests you could use a Filter, but all it would have to check would be something like an initiazationComplete flag; no sync needed or lock contention. You could use an AtomicBoolean for the flag, and have the init code set it to true when it's done. –  Stephen P Mar 21 at 22:50

I recommend you to put your long-running initialization in a thread, like:

public void init() throws ServletException {
    //Configure logging, app, pool ...
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