DocumentCode
3193506
Title
Towards sustainable exascale computing
Author
Gioiosa, Roberto
Author_Institution
Comput. Sci. Div., Barcelona Supercomput. Center, Barcelona, Spain
fYear
2010
fDate
27-29 Sept. 2010
Firstpage
270
Lastpage
275
Abstract
High Performance Computing systems have shown an impressive growth so far with a performance increase of 10x every 3.6 years. Performance predictions seem to confirm this trend for the future: Roadrunner achieved 1 petaFLOPS in 2008 and 10 petaFLOPS system are expected to be operational in the next few years. If these predictions are correct, exascale performance will be achieved by 2018. Power consumption is increasing at a faster rate than performance, which is making HPC not sustainable with current technologies. A DARPA study states that exascale systems will be limited to a total power budget of 20-25 MW: in order to achieve 1 exaFLOPS, HPC systems have to provide 40 GLOPS/W, two orders of magnitude higher than the current fastest supercomputer. It seems clear that current technologies will not provide such efficiency and that there are new research challenges and opportunities on the way to the exascale era. This paper shows how a closer hardware/software interaction can improve HPC system´s efficiency. New technologies will provide better power management but will also slow down applications. System software, on the other hand, can detect applications behavior and trigger the most effective hardware mechanisms without introducing excessive performance degradation.
Keywords
mainframes; multiprocessing systems; systems software; DARPA; HPC system efficiency; hardware-software interaction; high performance computing systems; petaFLOPS; power consumption; supercomputer; sustainable exascale computing; system software; Computer architecture; Decision support systems; Hardware; Power demand; Programming; Software; Supercomputers;
fLanguage
English
Publisher
ieee
Conference_Titel
VLSI System on Chip Conference (VLSI-SoC), 2010 18th IEEE/IFIP
Conference_Location
Madrid
Print_ISBN
978-1-4244-6469-2
Type
conf
DOI
10.1109/VLSISOC.2010.5642672
Filename
5642672
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