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Table of Contents
What causes a deadlock?
How do you spot a deadlock?
How can you prevent or avoid deadlocks?
Home Java javaTutorial What is a deadlock?

What is a deadlock?

Jun 25, 2025 am 10:21 AM

A deadlock occurs when four conditions coexist: mutual exclusion, hold and wait, no preemption, and circular wait. 1. Mutual exclusion means at least one resource cannot be shared. 2. Hold and wait occurs when a process holds one resource while waiting for another. 3. No preemption means resources can’t be forcibly taken. 4. Circular wait involves a chain of processes each holding a needed resource. Deadlocks manifest as frozen applications, stuck processes, or unresponsive threads. Detection methods include resource allocation graphs and timeout monitoring. Prevention strategies include avoiding circular waits by ordering resource requests, enforcing all-or-nothing allocation, allowing preemption, and using timeouts when acquiring locks. A common practice is to always request resources in a fixed order, or use try-lock mechanisms with retries.

What is a deadlock?

A deadlock is a situation where two or more processes (or threads) are unable to proceed because each is waiting for the other to release a resource. It's like a standstill in computing — nothing moves forward because everyone’s stuck waiting on someone else.

What causes a deadlock?

For a deadlock to occur, four conditions must be true at the same time:

  • Mutual exclusion – At least one resource must be held in a non-shareable mode (only one process can use it at a time).
  • Hold and wait – A process holds at least one resource while waiting for another.
  • No preemption – Resources can’t be forcibly taken away from a process; they must be released voluntarily.
  • Circular wait – There’s a chain of processes, each holding a resource that the next one is waiting for.

These four together create a loop that prevents progress.

How do you spot a deadlock?

In real-world systems, deadlocks often show up as:

  • Applications freezing with no CPU usage
  • Processes stuck in "waiting" state indefinitely
  • Threads not progressing even though they should be active

You might notice this in software like database systems, multi-threaded apps, or operating systems if resources aren't carefully managed.

To detect a deadlock, tools like resource allocation graphs or timeout monitoring are used. Some systems also log resource usage so developers can trace back how things got stuck.

How can you prevent or avoid deadlocks?

There are several strategies:

  • Avoid circular waits by imposing an order on resource requests
  • Enforce all-or-nothing resource allocation — either get everything needed at once or none at all
  • Allow resource preemption (though this can be tricky in practice)
  • Use timeouts when trying to acquire locks

One common approach is to always request resources in the same order across all parts of a system. For example, if multiple threads need Lock A and Lock B, make sure everyone tries to grab Lock A first, then Lock B — never the reverse.

Another trick is to use try-lock mechanisms with timeouts. If a thread can't get a lock within a certain time, it releases what it has and retries later.


That’s basically how deadlocks work — it’s not complicated, but it’s easy to miss until something freezes.

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