Zobrazeno 1 - 10
of 50
pro vyhledávání: '"Michael K. Gschwind"'
Autor:
Peter Boyle, David L. Satterfield, Philip Heidelberger, Martin Ohmacht, Changhoan Kim, George Liang-Tai Chiu, Norman H. Chist, Alan Gara, Matthias A. Blumrich, R. A. Haring, Robert W. Wisniewski, Thomas W. Fox, Michael K. Gschwind, Paul W. Coteus, Krishnan Sugavanam
Publikováno v:
IEEE Micro. 32:48-60
Blue Gene/Q aims to build a massively parallel high-performance computing system out of power-efficient processor chips, resulting in power-efficient, cost-efficient, and floor-space- efficient systems. Focusing on reliability during design helps wit
Autor:
Brian F. Veale, Joefon Jann, Stuart Z. Jacobs, John M. Ludden, Paul Mackerras, Michael K. Gschwind, Wade B. Ouren, David Edelsohn
Publikováno v:
IBM Journal of Research and Development. 62:6:1-6:10
The IBM POWER9 architecture offers a substantial set of novel and performance-improvement features that are made available to both scale-up and scale-out applications via system software. These features provide significant performance improvements fo
Autor:
Ulrich Weigand, Michael K. Gschwind
Publikováno v:
IBM Journal of Research and Development. 62:9:1-9:13
Publikováno v:
Computer. 40:37-47
The cell broadband engine provides the first implementation of a chip multiprocessor with a significant number of general-purpose programmable cores targeting a broad set of workloads. Open source software played a critical role in the development of
Autor:
Michael K. Gschwind
Publikováno v:
International Journal of Parallel Programming. 35:233-262
As CMOS feature sizes continue to shrink and traditional microarchitectural methods for delivering high performance (e.g., deep pipelining) become too expensive and power-hungry, chip multiprocessors (CMPs) become an exciting new direction by which s
Autor:
Michael K. Gschwind
Publikováno v:
Hot Chips Symposium
This article consists of a collection of slides from the author's conference presentation. POWER8 delivers advanced virtualization for CPU and I/O. POWER8 takes the next step in exploiting system accelerators. Collaborative Innovation based on Open S
Autor:
Michael K. Gschwind, Brian Flachs, Takeshi Yamazaki, Y. Watanabe, Harm Peter Hofstee, M. Hopkin
Publikováno v:
IEEE Micro. 26:10-24
Eight synergistic processor units enable the Cell Broadband Engine's breakthrough performance. The SPU architecture implements a novel, pervasively data-parallel architecture combining scalar and SIMD processing on a wide data path. A large number of
Autor:
Alexandre E. Eichenberger, John Kevin Patrick O'Brien, Daniel A. Prener, Peng Zhao, Amy Wang, Peng Wu, R. Koo, Roch Georges Archambault, Yaoqing Gao, Tong Chen, Peter Howland Oden, Michael K. Gschwind, J. C. Shepherd, Byoungro So, Tao Zhang, Kathryn M. O'Brien, Zehra Sura
Publikováno v:
IBM Systems Journal. 45:59-84
The continuing importance of game applications and other numerically intensive workloads has generated an upsurge in novel computer architectures tailored for such functionality. Game applications feature highly parallel code for functions such as ga
Autor:
Philip N. Strenski, Michael K. Gschwind, David Brooks, Viji Srinivasan, Pradip Bose, Philip G. Emma, Victor Zyuban
Publikováno v:
IEEE Transactions on Computers. 53:1004-1016
Choosing the pipeline depth of a microprocessor is one of the most critical design decisions that an architect must make in the concept phase of a microprocessor design. To be successful in today's cost/performance marketplace, modern CPU designs mus
Publikováno v:
IBM Journal of Research and Development. 47:653-670
The PowerTimer toolset has been developed for use in early-stage, microarchitecture-level power-performance analysis of microprocessors. The key component of the toolset is a parameterized set of energy functions that can be used in conjunction with