Title :
A unified multiple-level cache for high performance storage systems
Author :
Ou, Li ; He, Xiangning ; Kosa, Martha J. ; Scott, Stephen L.
Author_Institution :
Tennessee Technol. Univ., Cookeville, TN, USA
Abstract :
Multi-level cache hierarchies are widely used in high-performance storage systems to improve I/O performance. However, traditional cache management algorithms are not suited well for such cache organizations. Recently proposed multi-level cache replacement algorithms using aggressive exclusive caching work well with single or multiple-client, low-correlated workloads, but suffer serious performance degradation with multiple-client, high-correlated workloads. In this paper, we propose a new cache management algorithm that handles multi-level buffer caches by forming a unified cache (uCache) which uses both exclusive caching in L2 storage caches and cooperative client caching. We also propose a new local replacement algorithm, frequency based eviction-reference (FBER), based on our study of access patterns in exclusive caches. Our simulation results show that uCache increases the cumulative cache hit ratio dramatically. Compared to other popular cache algorithms, like LRU, the I/O response time is improved by up to 46% for low-correlated workloads and 53% for high-correlated workloads.
Keywords :
cache storage; client-server systems; file servers; FBER; cache management algorithm; frequency-eviction-reference; high performance storage system; multilevel cache replacement algorithm; multiple-client correlated workload; unified multiple-level cache; Aggregates; Algorithm design and analysis; Buffer storage; Cache storage; Degradation; Delay; File servers; Frequency; Helium; Laboratories;
Conference_Titel :
Modeling, Analysis, and Simulation of Computer and Telecommunication Systems, 2005. 13th IEEE International Symposium on
Print_ISBN :
0-7695-2458-3
DOI :
10.1109/MASCOTS.2005.10