Seller: Bay State Book Company, North Smithfield, RI, U.S.A.
Condition: very_good.
Seller: Goodwill of Silicon Valley, SAN JOSE, CA, U.S.A.
Condition: good. Supports Goodwill of Silicon Valley job training programs. The cover and pages are in Good condition! Any other included accessories are also in Good condition showing use. Use can include some highlighting and writing, page and cover creases as well as other types visible wear.
Seller: Oblivion Books, Seattle, WA, U.S.A.
hardcover. Condition: Very Good. Hardcover. Clean text - NO writing, NO highlighting. Cover has some surface wear with a couple of very small chips at foot of front panel at foot and fore-edge foot corner. Very good- reading copy with the two chips to cover. Oversized. Clean text -- NO writing, NO highlighting to text.ÂPLEASE NOTE: Domestic US media (standard) US orders ONLY. NO international orders.
Language: English
Published by Academic Press | Elsevier, San Diego, CA, 2002
ISBN 10: 1558602860 ISBN 13: 9781558602861
Seller: Twice Sold Tales, Capitol Hill, Seattle, WA, U.S.A.
Hardcover, 790 pages. Condition: Very Good. Light scuffing to boards and rubbing to corners. Pages appear free of writing / highlighting. In nice shape.
Language: English
Published by Morgan Kaufmann 2001-10-04, 2001
ISBN 10: 1558602860 ISBN 13: 9781558602861
Seller: Chiron Media, Wallingford, United Kingdom
£ 86.95
Quantity: Over 20 available
Add to basketHardcover. Condition: New.
Condition: New. pp. xxv + 790 Illus.
Seller: Revaluation Books, Exeter, United Kingdom
Hardcover. Condition: Brand New. 1st edition. 800 pages. 9.50x7.75x1.50 inches. In Stock.
Condition: New. pp. xxv + 790 1st Edition.
Condition: New. pp. xxv + 790.
Seller: BennettBooksLtd, Los Angeles, CA, U.S.A.
Hardcover. Condition: New. In shrink wrap. Looks like an interesting title!
Paperback. Condition: Brand New. 1st edition. 790 pages. 9.25x7.38x1.84 inches. In Stock.
Seller: Mispah books, Redhill, SURRE, United Kingdom
paperback. Condition: New. NEW. SHIPS FROM MULTIPLE LOCATIONS. book.
Seller: Brook Bookstore On Demand, Napoli, NA, Italy
Condition: new. Questo è un articolo print on demand.
Language: English
Published by Elsevier Science Sep 2001, 2001
ISBN 10: 1558602860 ISBN 13: 9781558602861
Seller: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germany
Buch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Modern computer architectures designed with high-performance microprocessors offer tremendous potential gains in performance over previous designs. Yet their very complexity makes it increasingly difficult to produce efficient code and to realize their full potential. This landmark text from two leaders in the field focuses on the pivotal role that compilers can play in addressing this critical issue. The basis for all the methods presented in this book is data dependence, a fundamental compiler analysis tool for optimizing programs on high-performance microprocessors and parallel architectures. It enables compiler designers to write compilers that automatically transform simple, sequential programs into forms that can exploit special features of these modern architectures. The text provides a broad introduction to data dependence, to the many transformation strategies it supports, and to its applications to important optimization problems such as parallelization, compiler memory hierarchy management, and instruction scheduling. The authors demonstrate the importance and wide applicability of dependence-based compiler optimizations and give the compiler writer the basics needed to understand and implement them. They also offer cookbook explanations for transforming applications by hand to computational scientists and engineers who are driven to obtain the best possible performance of their complex applications.The approaches presented are based on research conducted over the past two decades, emphasizing the strategies implemented in research prototypes at Rice University and in several associated commercial systems. Randy Allen and Ken Kennedy have provided an indispensable resource for researchers, practicing professionals, and graduate students engaged in designing and optimizing compilers for modern computer architectures. 816 pp. Englisch.
Seller: AHA-BUCH GmbH, Einbeck, Germany
Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Modern computer architectures designed with high-performance microprocessors offer tremendous potential gains in performance over previous designs. Yet their very complexity makes it increasingly difficult to produce efficient code and to realize their full potential. This landmark text from two leaders in the field focuses on the pivotal role that compilers can play in addressing this critical issue. The basis for all the methods presented in this book is data dependence, a fundamental compiler analysis tool for optimizing programs on high-performance microprocessors and parallel architectures. It enables compiler designers to write compilers that automatically transform simple, sequential programs into forms that can exploit special features of these modern architectures. The text provides a broad introduction to data dependence, to the many transformation strategies it supports, and to its applications to important optimization problems such as parallelization, compiler memory hierarchy management, and instruction scheduling. The authors demonstrate the importance and wide applicability of dependence-based compiler optimizations and give the compiler writer the basics needed to understand and implement them. They also offer cookbook explanations for transforming applications by hand to computational scientists and engineers who are driven to obtain the best possible performance of their complex applications.The approaches presented are based on research conducted over the past two decades, emphasizing the strategies implemented in research prototypes at Rice University and in several associated commercial systems. Randy Allen and Ken Kennedy have provided an indispensable resource for researchers, practicing professionals, and graduate students engaged in designing and optimizing compilers for modern computer architectures.