DocumentCode
1925690
Title
A performance evaluation of scientific I/O workloads on Flash-based SSDs
Author
Park, Stan ; Shen, Kai
Author_Institution
Dept. of Comput. Sci., Univ. of Rochester, Rochester, NY, USA
fYear
2009
fDate
Aug. 31 2009-Sept. 4 2009
Firstpage
1
Lastpage
5
Abstract
Flash-based solid state disks (SSDs) are an alternative form of storage device that promises to deliver higher performance than the traditional mechanically rotating hard drives. While SSDs have seen utilization in embedded, consumer, and server computer systems, there has been little understanding of its performance effects with scientific I/O workloads. This paper provides a trace driven performance evaluation of scientific I/O workloads on SSDs. We find that SSDs only provide modest performance gains over mechanical hard drives due to the write-intensive nature of many scientific workloads. Other workloads (like read-mostly web servers) would likely see much larger gains. Additionally, we observe that the concurrent I/O (when multiple parallel processes simultaneously access a single storage device) may significantly affect the SSD performance. However, such effects appear to be dependent on specific SSD implementation features and they are hard to predict in a general fashion. These results suggest that abundant cautions are needed when supporting high-performance scientific I/O workloads on Flash-based SSDs.
Keywords
disc storage; flash memories; multiprocessing systems; performance evaluation; concurrent I/O; flash-based SSD; flash-based solid state disks; performance evaluation; scientific I/O workloads; Computer science; Delay; Disk drives; Embedded computing; File systems; Network servers; Performance gain; Power generation economics; Solid state circuits; Web server;
fLanguage
English
Publisher
ieee
Conference_Titel
Cluster Computing and Workshops, 2009. CLUSTER '09. IEEE International Conference on
Conference_Location
New Orleans, LA
ISSN
1552-5244
Print_ISBN
978-1-4244-5011-4
Electronic_ISBN
1552-5244
Type
conf
DOI
10.1109/CLUSTR.2009.5289148
Filename
5289148
Link To Document