eBook – Guide Spring Cloud – NPI EA (cat=Spring Cloud)
announcement - icon

Let's get started with a Microservice Architecture with Spring Cloud:

>> Join Pro and download the eBook

eBook – Mockito – NPI EA (tag = Mockito)
announcement - icon

Mocking is an essential part of unit testing, and the Mockito library makes it easy to write clean and intuitive unit tests for your Java code.

Get started with mocking and improve your application tests using our Mockito guide:

Download the eBook

eBook – Java Concurrency – NPI EA (cat=Java Concurrency)
announcement - icon

Handling concurrency in an application can be a tricky process with many potential pitfalls. A solid grasp of the fundamentals will go a long way to help minimize these issues.

Get started with understanding multi-threaded applications with our Java Concurrency guide:

>> Download the eBook

eBook – Reactive – NPI EA (cat=Reactive)
announcement - icon

Spring 5 added support for reactive programming with the Spring WebFlux module, which has been improved upon ever since. Get started with the Reactor project basics and reactive programming in Spring Boot:

>> Join Pro and download the eBook

eBook – Java Streams – NPI EA (cat=Java Streams)
announcement - icon

Since its introduction in Java 8, the Stream API has become a staple of Java development. The basic operations like iterating, filtering, mapping sequences of elements are deceptively simple to use.

But these can also be overused and fall into some common pitfalls.

To get a better understanding on how Streams work and how to combine them with other language features, check out our guide to Java Streams:

>> Join Pro and download the eBook

eBook – Jackson – NPI EA (cat=Jackson)
announcement - icon

Do JSON right with Jackson

Download the E-book

eBook – HTTP Client – NPI EA (cat=Http Client-Side)
announcement - icon

Get the most out of the Apache HTTP Client

Download the E-book

eBook – Maven – NPI EA (cat = Maven)
announcement - icon

Get Started with Apache Maven:

Download the E-book

eBook – Persistence – NPI EA (cat=Persistence)
announcement - icon

Working on getting your persistence layer right with Spring?

Explore the eBook

eBook – RwS – NPI EA (cat=Spring MVC)
announcement - icon

Building a REST API with Spring?

Download the E-book

Course – LS – NPI EA (cat=Jackson)
announcement - icon

Get started with Spring and Spring Boot, through the Learn Spring course:

>> LEARN SPRING
Course – RWSB – NPI EA (cat=REST)
announcement - icon

Explore Spring Boot 3 and Spring 6 in-depth through building a full REST API with the framework:

>> The New “REST With Spring Boot”

Course – LSS – NPI EA (cat=Spring Security)
announcement - icon

Yes, Spring Security can be complex, from the more advanced functionality within the Core to the deep OAuth support in the framework.

I built the security material as two full courses - Core and OAuth, to get practical with these more complex scenarios. We explore when and how to use each feature and code through it on the backing project.

You can explore the course here:

>> Learn Spring Security

Course – LSD – NPI EA (tag=Spring Data JPA)
announcement - icon

Spring Data JPA is a great way to handle the complexity of JPA with the powerful simplicity of Spring Boot.

Get started with Spring Data JPA through the guided reference course:

>> CHECK OUT THE COURSE

Partner – Moderne – NPI EA (cat=Spring Boot)
announcement - icon

Refactor Java code safely — and automatically — with OpenRewrite.

Refactoring big codebases by hand is slow, risky, and easy to put off. That’s where OpenRewrite comes in. The open-source framework for large-scale, automated code transformations helps teams modernize safely and consistently.

Each month, the creators and maintainers of OpenRewrite at Moderne run live, hands-on training sessions — one for newcomers and one for experienced users. You’ll see how recipes work, how to apply them across projects, and how to modernize code with confidence.

Join the next session, bring your questions, and learn how to automate the kind of work that usually eats your sprint time.

Course – LJB – NPI EA (cat = Core Java)
announcement - icon

Code your way through and build up a solid, practical foundation of Java:

>> Learn Java Basics

Partner – LambdaTest – NPI EA (cat= Testing)
announcement - icon

Distributed systems often come with complex challenges such as service-to-service communication, state management, asynchronous messaging, security, and more.

Dapr (Distributed Application Runtime) provides a set of APIs and building blocks to address these challenges, abstracting away infrastructure so we can focus on business logic.

In this tutorial, we'll focus on Dapr's pub/sub API for message brokering. Using its Spring Boot integration, we'll simplify the creation of a loosely coupled, portable, and easily testable pub/sub messaging system:

>> Flexible Pub/Sub Messaging With Spring Boot and Dapr

eBook – Java Concurrency – NPI (cat=Java Concurrency)
announcement - icon

Handling concurrency in an application can be a tricky process with many potential pitfalls. A solid grasp of the fundamentals will go a long way to help minimize these issues.

Get started with understanding multi-threaded applications with our Java Concurrency guide:

>> Download the eBook

1. Introduction

In this tutorial, we’ll compare CyclicBarrier and CountDownLatch and try to understand the similarities and differences between the two.

2. What Are These?

When it comes to concurrency, it can be challenging to conceptualize what each is intended to accomplish.

First and foremost, both CountDownLatch and CyclicBarrier are used for managing multi-threaded applications.

And, they are both intended to express how a given thread or group of threads should wait.

2.1. CountDownLatch

CountDownLatch is a construct that a thread waits on while other threads count down on the latch until it reaches zero.

We can think of this like a dish at a restaurant that is being prepared. No matter which cook prepares however many of the items, the waiter must wait until all the items are on the plate. If a plate takes items, any cook will count down on the latch for each item she puts on the plate.

2.2. CyclicBarrier

CyclicBarrier is a reusable construct where a group of threads waits together until all of the threads arrive. At that point, the barrier is broken and an action can optionally be taken.

We can think of this like a group of friends. Every time they plan to eat at a restaurant they decide a common point where they can meet. They wait for each other there, and only when everyone arrives can they go to the restaurant to eat together.

2.3. Further Reading

And for a lot more detail on each of these individually, refer to our previous tutorials on CountDownLatch and CyclicBarrier respectively.

3. Tasks vs. Threads

Let’s take a deeper dive into some of the semantic differences between these two classes.

As stated in the definitions, CyclicBarrier allows a number of threads to wait on each other, whereas CountDownLatch allows one or more threads to wait for a number of tasks to complete.

In short, CyclicBarrier maintains a count of threads whereas CountDownLatch maintains a count of tasks.

In the following code, we define a CountDownLatch with a count of two. Next, we call countDown() twice from a single thread:

CountDownLatch countDownLatch = new CountDownLatch(2);
Thread t = new Thread(() -> {
    countDownLatch.countDown();
    countDownLatch.countDown();
});
t.start();
countDownLatch.await();

assertEquals(0, countDownLatch.getCount());

Once the latch reaches zero, the call to await returns.

Note that in this case, we were able to have the same thread decrease the count twice.

CyclicBarrier, though, is different on this point.

Similar to the above example, we create a CyclicBarrier, again with a count of two and call await() on it, this time from the same thread:

CyclicBarrier cyclicBarrier = new CyclicBarrier(2);
Thread t = new Thread(() -> {
    try {
        cyclicBarrier.await();
        cyclicBarrier.await();    
    } catch (InterruptedException | BrokenBarrierException e) {
        // error handling
    }
});
t.start();

assertEquals(1, cyclicBarrier.getNumberWaiting());
assertFalse(cyclicBarrier.isBroken());

The first difference here is that the threads that are waiting are themselves the barrier.

Second, and more importantly, the second await() is useless. A single thread can’t count down a barrier twice.

Indeed, because t must wait for another thread to call await() – to bring the count to two – t‘s second call to await() won’t actually be invoked until the barrier is already broken!

In our test, the barrier hasn’t been crossed because we only have one thread waiting and not the two threads that would be required for the barrier to be tripped. This is also evident from the cyclicBarrier.isBroken() method, which returns false.

4. Reusability

The second most evident difference between these two classes is reusability. To elaborate, when the barrier trips in CyclicBarrier, the count resets to its original value. CountDownLatch is different because the count never resets.

In the given code, we define a CountDownLatch with count 7 and count it through 20 different calls:

CountDownLatch countDownLatch = new CountDownLatch(7);
ExecutorService es = Executors.newFixedThreadPool(20);
for (int i = 0; i < 20; i++) {
    es.execute(() -> {
        long prevValue = countDownLatch.getCount();
        countDownLatch.countDown();
        if (countDownLatch.getCount() != prevValue) {
            outputScraper.add("Count Updated");
        }
    }); 
} 
es.shutdown();

assertTrue(outputScraper.size() <= 7);

We observe that even though 20 different threads call countDown(), the count doesn’t reset once it reaches zero.

Similar to the above example, we define a CyclicBarrier with count 7 and wait on it from 20 different threads:

CyclicBarrier cyclicBarrier = new CyclicBarrier(7);

ExecutorService es = Executors.newFixedThreadPool(20);
for (int i = 0; i < 20; i++) {
    es.execute(() -> {
        try {
            if (cyclicBarrier.getNumberWaiting() <= 0) {
                outputScraper.add("Count Updated");
            }
            cyclicBarrier.await();
        } catch (InterruptedException | BrokenBarrierException e) {
            // error handling
        }
    });
}
es.shutdown();

assertTrue(outputScraper.size() > 7);

In this case, we observe that the value decreases every time a new thread runs, by resetting to the original value, once it reaches zero.

5. Conclusion

All in all, CyclicBarrier and CountDownLatch are both helpful tools for synchronization between multiple threads. However, they are fundamentally different in terms of the functionality they provide. Consider each carefully when determining which is right for the job.

The code backing this article is available on GitHub. Once you're logged in as a Baeldung Pro Member, start learning and coding on the project.
Baeldung Pro – NPI EA (cat = Baeldung)
announcement - icon

Baeldung Pro comes with both absolutely No-Ads as well as finally with Dark Mode, for a clean learning experience:

>> Explore a clean Baeldung

Once the early-adopter seats are all used, the price will go up and stay at $33/year.

eBook – HTTP Client – NPI EA (cat=HTTP Client-Side)
announcement - icon

The Apache HTTP Client is a very robust library, suitable for both simple and advanced use cases when testing HTTP endpoints. Check out our guide covering basic request and response handling, as well as security, cookies, timeouts, and more:

>> Download the eBook

eBook – Java Concurrency – NPI EA (cat=Java Concurrency)
announcement - icon

Handling concurrency in an application can be a tricky process with many potential pitfalls. A solid grasp of the fundamentals will go a long way to help minimize these issues.

Get started with understanding multi-threaded applications with our Java Concurrency guide:

>> Download the eBook

eBook – Java Streams – NPI EA (cat=Java Streams)
announcement - icon

Since its introduction in Java 8, the Stream API has become a staple of Java development. The basic operations like iterating, filtering, mapping sequences of elements are deceptively simple to use.

But these can also be overused and fall into some common pitfalls.

To get a better understanding on how Streams work and how to combine them with other language features, check out our guide to Java Streams:

>> Join Pro and download the eBook

eBook – Persistence – NPI EA (cat=Persistence)
announcement - icon

Working on getting your persistence layer right with Spring?

Explore the eBook

Course – LS – NPI EA (cat=REST)

announcement - icon

Get started with Spring Boot and with core Spring, through the Learn Spring course:

>> CHECK OUT THE COURSE

Partner – Moderne – NPI EA (tag=Refactoring)
announcement - icon

Modern Java teams move fast — but codebases don’t always keep up. Frameworks change, dependencies drift, and tech debt builds until it starts to drag on delivery. OpenRewrite was built to fix that: an open-source refactoring engine that automates repetitive code changes while keeping developer intent intact.

The monthly training series, led by the creators and maintainers of OpenRewrite at Moderne, walks through real-world migrations and modernization patterns. Whether you’re new to recipes or ready to write your own, you’ll learn practical ways to refactor safely and at scale.

If you’ve ever wished refactoring felt as natural — and as fast — as writing code, this is a good place to start.

eBook – Java Concurrency – NPI (cat=Java Concurrency)
announcement - icon

Handling concurrency in an application can be a tricky process with many potential pitfalls. A solid grasp of the fundamentals will go a long way to help minimize these issues.

Get started with understanding multi-threaded applications with our Java Concurrency guide:

>> Download the eBook

eBook Jackson – NPI EA – 3 (cat = Jackson)