eBook – Guide Spring Cloud – NPI EA (cat=Spring Cloud)
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Let's get started with a Microservice Architecture with Spring Cloud:

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eBook – Mockito – NPI EA (tag = Mockito)
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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:

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eBook – Java Concurrency – NPI EA (cat=Java Concurrency)
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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:

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eBook – Reactive – NPI EA (cat=Reactive)
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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:

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eBook – Java Streams – NPI EA (cat=Java Streams)
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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:

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eBook – Jackson – NPI EA (cat=Jackson)
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Do JSON right with Jackson

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eBook – HTTP Client – NPI EA (cat=Http Client-Side)
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Get the most out of the Apache HTTP Client

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eBook – Maven – NPI EA (cat = Maven)
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Get Started with Apache Maven:

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eBook – Persistence – NPI EA (cat=Persistence)
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Working on getting your persistence layer right with Spring?

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eBook – RwS – NPI EA (cat=Spring MVC)
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Building a REST API with Spring?

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Course – LS – NPI EA (cat=Jackson)
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Get started with Spring and Spring Boot, through the Learn Spring course:

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Course – RWSB – NPI EA (cat=REST)
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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)
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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:

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Course – LSD – NPI EA (tag=Spring Data JPA)
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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:

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Partner – Moderne – NPI EA (cat=Spring Boot)
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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)
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Code your way through and build up a solid, practical foundation of Java:

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Partner – LambdaTest – NPI EA (cat= Testing)
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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

1. Introduction

In this article, we’ll focus on the PriorityBlockingQueue class and go over some practical examples.

Starting with the assumption that we already know what a Queue is, we will first demonstrate how elements in the PriorityBlockingQueue are ordered by priority.

Following this, we will demonstrate how this type of queue can be used to block a thread.

Finally, we will show how using these two features together can be useful when processing data across multiple threads.

2. Priority of Elements

Unlike a standard queue, you can’t just add any type of element to a PriorityBlockingQueue. There are two options:

  1. Adding elements which implement Comparable
  2. Adding elements which do not implement Comparable, on the condition that you provide a Comparator as well

By using either the Comparator or the Comparable implementations to compare elements, the PriorityBlockingQueue will always be sorted.

The aim is to implement comparison logic in a way in which the highest priority element is always ordered first. Then, when we remove an element from our queue, it will always be the one with the highest priority.

To begin with, let’s make use of our queue in a single thread, as opposed to using it across multiple ones. By doing this, it makes it easy to prove how elements are ordered in a unit test:

PriorityBlockingQueue<Integer> queue = new PriorityBlockingQueue<>();
ArrayList<Integer> polledElements = new ArrayList<>();
 
queue.add(1);
queue.add(5);
queue.add(2);
queue.add(3);
queue.add(4);

queue.drainTo(polledElements);

assertThat(polledElements).containsExactly(1, 2, 3, 4, 5);

As we can see, despite adding the elements to the queue in a random order, they will be ordered when we start polling them. This is because the Integer class implements Comparable, which will, in turn, be used to make sure we take them out from the queue in ascending order.

It’s also worth noting that when two elements are compared and are the same, there’s no guarantee of how they will be ordered.

3. Using the Queue to Block

If we were dealing with a standard queue, we would call poll() to retrieve elements. However, if the queue was empty, a call to poll() would return null.

The PriorityBlockingQueue implements the BlockingQueue interface, which gives us some extra methods that allow us to block when removing from an empty queue. Let’s try using the take() method, which should do exactly that:

PriorityBlockingQueue<Integer> queue = new PriorityBlockingQueue<>();

new Thread(() -> {
  System.out.println("Polling...");

  try {
      Integer poll = queue.take();
      System.out.println("Polled: " + poll);
  } catch (InterruptedException e) {
      e.printStackTrace();
  }
}).start();

Thread.sleep(TimeUnit.SECONDS.toMillis(5));
System.out.println("Adding to queue");
queue.add(1);

Although using sleep() is a slightly brittle way of demonstrating things, when we run this code we will see:

Polling...
Adding to queue
Polled: 1

This proves that take() blocked until an item was added:

  1. The thread will print “Polling” to prove that it’s started
  2. The test will then pause for around five seconds, to prove the thread must have called take() by this point
  3. We add to the queue, and should more or less instantly see “Polled: 1” to prove that take() returned an element as soon as it become available

It’s also worth mentioning that the BlockingQueue interface also provides us with ways of blocking when adding to full queues.

However, a PriorityBlockingQueue is unbounded. This means that it will never be full, thus it will always possible to add new elements.

4. Using Blocking and Prioritization Together

Now that we’ve explained the two key concepts of a PriorityBlockingQueue, let’s use them both together. We can simply expand on our previous example, but this time add more elements to the queue:

Thread thread = new Thread(() -> {
    System.out.println("Polling...");
    while (true) {
        try {
            Integer poll = queue.take();
            System.out.println("Polled: " + poll);
        } 
        catch (InterruptedException e) { 
            e.printStackTrace();
        }
    }
});

thread.start();

Thread.sleep(TimeUnit.SECONDS.toMillis(5));
System.out.println("Adding to queue");

queue.addAll(newArrayList(1, 5, 6, 1, 2, 6, 7));
Thread.sleep(TimeUnit.SECONDS.toMillis(1));

Again, while this is a little brittle because of the use of sleep(), it still shows us a valid use case. We now have a queue which blocks, waiting for elements to be added. We’re then adding lots of elements at once, and then showing that they will be handled in priority order. The output will look like this:

Polling...
Adding to queue
Polled: 1
Polled: 1
Polled: 2
Polled: 5
Polled: 6
Polled: 6
Polled: 7

5. Conclusion

In this guide, we’ve demonstrated how we can use a PriorityBlockingQueue in order to block a thread until some items have been added to it, and also that we are able to process those items based on their priority.

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)
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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)
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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:

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eBook – Java Concurrency – NPI EA (cat=Java Concurrency)
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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)
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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)
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Working on getting your persistence layer right with Spring?

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Course – LS – NPI EA (cat=REST)

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

>> CHECK OUT THE COURSE

Partner – Moderne – NPI EA (tag=Refactoring)
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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 Jackson – NPI EA – 3 (cat = Jackson)