Exascale Scientific Applications

- Scalability and Performance Portability

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

From the Foreword:

"The authors of the chapters in this book are the pioneers who will explore the exascale frontier. The path forward will not be easy... These authors, along with their colleagues who will produce these powerful computer systems will, with dedication and determination, overcome the scalability problem, discover the new algorithms needed to achieve exascale performance for the broad range of applications that they represent, and create the new tools needed to support the development of scalable and portable science and engineering applications. Although the focus is on exascale computers, the benefits will permeate all of science and engineering because the technologies developed for the exascale computers of tomorrow will also power the petascale servers and terascale workstations of tomorrow. These affordable computing capabilities will empower scientists and engineers everywhere."

— Thom H. Dunning, Jr., Pacific Northwest National Laboratory and University of Washington, Seattle, Washington, USA

"This comprehensive summary of applications targeting Exascale at the three DoE labs is a must read."

— Rio Yokota, Tokyo Institute of Technology, Tokyo, Japan

"Numerical simulation is now a need in many fields of science, technology, and industry. The complexity of the simulated systems coupled with the massive use of data makes HPC essential to move towards predictive simulations. Advances in computer architecture have so far permitted scientific advances, but at the cost of continually adapting algorithms and applications. The next technological breakthroughs force us to rethink the applications by taking energy consumption into account. These profound modifications require not only anticipation and sharing but also a paradigm shift in application design to ensure the sustainability of developments by guaranteeing a certain independence of the applications to the profound modifications of the architectures: it is the passage from optimal performance to the portability of performance. It is the challenge of this book to demonstrate by example the approach that one can adopt for the development of applications offering performance portability in spite of the profound changes of the computing architectures."

— Christophe Calvin, CEA, Fundamental Research Division, Saclay, France

"Three editors, one from each of the High Performance Computer Centers at Lawrence Berkeley, Argonne, and Oak Ridge National Laboratories, have compiled a very useful set of chapters aimed at describing software developments for the next generation exa-scale computers. Such a book is needed for scientists and engineers to see where the field is going and how they will be able to exploit such architectures for their own work. The book will also benefit students as it provides insights into how to develop software for such computer architectures. Overall, this book fills an important need in showing how to design and implement algorithms for exa-scale architectures which are heterogeneous and have unique memory systems. The book discusses issues with developing user codes for these architectures and how to address these issues including actual coding examples.’

— Dr. David A. Dixon, Robert Ramsay Chair, The University of Alabama, Tuscaloosa, Alabama, USA

Læs hele beskrivelsen
Detaljer
  • SprogEngelsk
  • Sidetal618
  • Udgivelsesdato09-11-2017
  • ISBN139781138197541
  • Forlag Crc Press
  • FormatHardback
Størrelse og vægt
  • Vægt1247 g
  • coffee cup img
    10 cm
    book img
    17,8 cm
    25,4 cm

    Findes i disse kategorier...

    Se andre, der handler om...

    Scalability High performance computing Programming Execution time Intel Xeon Phi Portability Scott Parker Performance analysis Dynamic load balancing Supercomputing Power consumption Mark Taylor James Smith Christopher Kerr Michael Bauer NVIDIA -GPUs Address Space Abhinav Vishnu Amrita Mathuriya Andrey Ovsyannikov Allen D. Malony Allison H. Baker Arithmetic Intensities Ankit Bhagatwala Aydin Buluc Anouar Benali Bilge Acun Alex Aiken Cameron Smith Bruce Palmer Bnt Jo Choong-Seock Chang Chris Carothers Brian Van Straalen Beverly A. Sanders Azamat Mametjanov Cray XC30 David M. Ceperley Daniel Peter Dimitri Komatitsch Dense Linear Algebra Dirk Pleiter Dong H. Ahn Daniel Rokhsar Brian Dobbins Eisung Yoon Eric J. Bylaska Exascale Systems David Trebotich Felipe H. da Jornada Eduardo D'Azevedo Distributed Hash Table Evangelos Georganas Edoardo Aprà Energy Research Scientific Computing Center Frank T. Winter Holger Brunst Daniel T. Graves Darren J. Kerbyson David DelSignore David Luet IBM Blue Gene Derek Vigil-Fowler HPC System Hybrid MPI Heike Jagode Ebru Bozdağ Dmitry I. Lyakh John M. Dennis Jaron T. Krogel Jeroen Tromp Kalyan Kumaran Kevin J. Barker James C. Phillips Jean-Luc Vay Elliott Slaughter Jianying Lang Kenneth E. Jansen KNL Node Leonid Oliker Jeff R. Hammond Jason Byrd Jed Brown Judith Hill Kevin Harms Katherine Yelick Matthew R. Norman Michel Rasquin Manish Parashar Mark Dewing Giulio Borghesi National Energy Research Scientific Computing Patrick S. McCormick Patrick Worley Philip Carns Henri Vincenti OpenMP Thread Paul R. C. Kent Ramanan Sankaran Rodney Bartlett Pic Code Ray Loy Jeongnim Kim Joseph C. Oefelein Robert G. Edwards Ronak Buch Sheri Mickelson Jacqueline Chen Lion Krischer Hemanth Kolla Ria Broer Richard Mills Strong Scaling Robert Hager Taylor Barnes Steven Hofmeyr Sameer Shende Thomas Papatheodore Karol Kowalski Scott Klasky Mark S. Shephard Markus Eisenbach Seung-Hoe Ku Thorsten Kurth Wim Nieuwpoort Jack Deslippe Laxmikant Kale Michael Klemm Miguel A. Morales Tyler McDaniel Jeff Daily Luke Shulenburger John Mellor-Crummey Jong Choi Kevin Paul Norbert Podhorszki Wibe A. de Jong O. E. Bronson Messer Yang Wang Youngsung Kim Ying Wai Li MPI Implementation MPI Task Marcel Bornemann Norm M. Tubman Mathias Jacquelin Mathieu Lobet Matthieu Lefebvre Oak Ridge Leadership Computing Facility Raghu Kumar Ralph Castain Remi Lehe MPI Rank Paul F. Baumeister Tuomas Koskela Rob Egan Rudolf Zeller Wenjie Lei William Tang Sean Treichler Youyi Ruan Zhihong Lin Stephen Abbott Ronny Tschüter Yangkang Chen Stephane Ethier Steven G. Louie Wayne Joubert Wonchan Lee Ye Luo Xeon Phi

    Velkommen til Saxo – din danske boghandel

    Hos os kan du handle som gæst, Saxo-bruger eller Saxo-medlem – du bestemmer selv. Skulle du få brug for hjælp, sidder vores kundeservice-team klar ved både telefonerne og tasterne.

    Om medlemspriser hos Saxo

    For at købe bøger til medlemspris skal du være medlem af Saxo Premium, Saxo Shopping eller Saxo Ung. De første 7 dage er gratis for nye medlemmer. Medlemskabet fornyes automatisk og kan altid opsiges. Læs mere om fordelene ved vores forskellige medlemskaber her.

    Machine Name: SAXO082