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    Computer Organization and Design, Fifth Edition: The Hardware/Software Interface

    Posted By: roxul
    Computer Organization and Design, Fifth Edition: The Hardware/Software Interface

    David A. Patterson, John L. Hennessy, "Computer Organization and Design, Fifth Edition: The Hardware/Software Interface"
    English | 2013 | ISBN: 0124077269 | 800 pages | EPUB | 13,6 MB

    The 5th edition of Computer Organization and Design moves forward into the post-PC era with new examples, exercises, and material highlighting the emergence of mobile computing and the cloud. This generational change is emphasized and explored with updated content featuring tablet computers, cloud infrastructure, and the ARM (mobile computing devices) and x86 (cloud computing) architectures.

    Because an understanding of modern hardware is essential to achieving good performance and energy efficiency, this edition adds a new concrete example, "Going Faster," used throughout the text to demonstrate extremely effective optimization techniques. Also new to this edition is discussion of the "Eight Great Ideas" of computer architecture.

    As with previous editions, a MIPS processor is the core used to present the fundamentals of hardware technologies, assembly language, computer arithmetic, pipelining, memory hierarchies and I/O.

    Instructors looking for 4th Edition teaching materials should e-mail textbook@elsevier.com.
    Includes new examples, exercises, and material highlighting the emergence of mobile computing and the Cloud.
    Covers parallelism in depth with examples and content highlighting parallel hardware and software topics
    Features the Intel Core i7, ARM Cortex-A8 and NVIDIA Fermi GPU as real-world examples throughout the book
    Adds a new concrete example, "Going Faster," to demonstrate how understanding hardware can inspire software optimizations that improve performance by 200 times.
    Discusses and highlights the "Eight Great Ideas" of computer architecture: Performance via Parallelism; Performance via Pipelining; Performance via Prediction; Design for Moore's Law; Hierarchy of Memories; Abstraction to Simplify Design; Make the Common Case Fast; and Dependability via Redundancy.
    Includes a full set of updated and improved exercises.