DocumentCode :
1499195
Title :
Location Cache Design and Performance Analysis for Chip Multiprocessors
Author :
Nemeth, Jason ; Min, Rui ; Jone, Wen-Ben ; Hu, Yiming
Author_Institution :
L-3, Cincinnati, OH, USA
Volume :
19
Issue :
1
fYear :
2011
Firstpage :
104
Lastpage :
117
Abstract :
Recent research at Intel suggests that chips with hundreds of processor cores are possible in the not-so-distant future. As the number of cores grows, so does the size of the cache systems required to allow them to operate efficiently. Caches have grown to consume a significant percentage of the power utilized by a processor. In this research, we extend the concept of location cache to support chip multiprocessors (CMPs) systems in combination with low-power L2 caches based upon the gated-ground technique. The combination of these two techniques allows for reductions in both dynamic and leakage power consumption. In this paper, we will present an analysis of the power savings provided by utilizing location caches in a CMP system. The performance of the cache system is evaluated by extending the capability of CACTI and Simics using the SPLASH-2 and ALPBench benchmark suites. These simulation results demonstrate that the utilization of location caches in CMP systems is capable of saving a significant amount of power over equivalent CMP systems that lack location caches.
Keywords :
cache storage; microprocessor chips; ALPBench benchmark suite; CACTI; Intel; L2 caches; SPLASH-2 benchmark suite; Simics; chip multiprocessors system; gated-ground technique; location cache design; performance analysis; Clocks; Energy consumption; Frequency; Microprocessors; Parallel processing; Performance analysis; Power dissipation; Power measurement; Silicon; Cache architecture; dynamic and leakage power dissipation; gated ground technique; location cache; low-power design; power analysis;
fLanguage :
English
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-8210
Type :
jour
DOI :
10.1109/TVLSI.2009.2028429
Filename :
5286241
Link To Document :
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