Publication Type |
technical report |
School or College |
College of Engineering |
Department |
Computing, School of |
Creator |
Carter, John B. |
Other Author |
Kuo, Chen-Chi; Kuramkote, Ravindra; Swanson, Mark |
Title |
Design alternatives for shared memory multiprocessors |
Date |
1998 |
Description |
In this paper. we consider the design alternatives available for building the next generation DSM machine (e.g., the choice of memory architecture, network technology, and amount and location of per-node remote data cache). To investigate this design space, we have simulated six applications on a wide variety of possible DSM architectures that employ significantly different caching techniques. We also examine the impact of using a special-purpose system interconnect designed specifically to support low latency DSM operation versus using a powerful off the shelf system interconnect. We have found that two architectures have the best combination of good average performance and reasonable worst case performance: CC-NUMA employing a moderate-sized DRAM remote access cache (RAC) and a hybrid CC-NUMA/S-COMA architecture called AS-COMA or adaptable S-COMA. both pure CC-NUMA and pure S-COMA have serious performance problems for some applications, while CC-NUMA remploying an SRAM RAC does not perform as well as the two architestures that employ larger DRAM caches. The paper concludes with several recommendations to designers of next-generation DSM machines, complete with a discussion of the issues that led to each recommendation so that designers can decide which ones are relevant to them given changes in technology and corporate priorities. |
Type |
Text |
Publisher |
University of Utah |
First Page |
1 |
Last Page |
22 |
Subject |
Shared memory multiprocessors |
Subject LCSH |
Distributed shared memory |
Language |
eng |
Bibliographic Citation |
Carter, J. B., Kuo, C.-C., Kuramkote, R., & Swanson, M. (1998). Design alternatives for shared memory multiprocessors. 1-22. UUCS-98-011. |
Series |
University of Utah Computer Science Technical Report |
Relation is Part of |
ARPANET |
Rights Management |
©University of Utah |
Format Medium |
application/pdf |
Format Extent |
2,176,500 bytes |
Identifier |
ir-main,15968 |
ARK |
ark:/87278/s64j0z70 |
Setname |
ir_uspace |
ID |
702663 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s64j0z70 |