Building Efficient Locks: Hardware and OS Concurrency Basics โ€” WalkSelf
โฑ 2 oras 54 min ๐Ÿ“š 29 aralin ๐ŸŽง Audio version

Building Efficient Locks: Hardware and OS Concurrency Basics

Learn how hardware instructions and operating system primitives work together to build efficient mutual exclusion locks for safe, high-performance concurrent programming.

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Tungkol sa kursong ito

Writing safe concurrent software requires a deep understanding of how threads coordinate and access shared resources. Without efficient locking mechanisms, applications suffer from race conditions, deadlocks, and severe performance bottlenecks. This text-only course guides you through the foundational concepts of concurrency control, explaining how low-level hardware instructions and operating system services collaborate to create highly efficient locks. You will transition from understanding basic mutual exclusion to analyzing the mechanics behind modern synchronization primitives. What you'll learn: - Understand the core concepts of race conditions, mutual exclusion, and the critical section problem. - Analyze hardware support for locking, including atomic instructions like Compare-And-Swap (CAS) and Test-And-Set. - Explore operating system primitives that manage thread waiting and waking, such as futexes and semaphores. - Evaluate the trade-offs between spinlocks, busy-waiting, and blocking locks in multi-threaded environments. - Learn about modern lock-free programming concepts and how memory barriers ensure thread safety. - Practice designing efficient synchronization strategies by analyzing structured text-based code examples and pseudocode. You will begin by learning fundamental concurrency terminology before diving into hardware-level atomic operations, eventually exploring how modern operating systems optimize thread scheduling for efficient lock acquisition. This course is designed for beginner to intermediate software developers, computer science students, and systems enthusiasts who want to understand the low-level mechanics of synchronization. No advanced systems programming experience is required. Start reading today to master the underlying mechanics of thread synchronization and build more efficient concurrent applications.

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    2 oras 54 min ng practical content

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