A Redundant Disk array Architecture for Efficient Small Writes

Abstract

Parity encoded redundant disk arrays provide highly reliable, cost effective secondary storage with high performance for reads and large writes. Their performance on small writes, however, is much worse than mirrored disks- the traditional, highly reliable, but expensive organization for secondary storage. Unfortunately, small writes are a substantial portion of the I/O workload of many important, demanding applications such as on-line transaction processing. This paper presents parity logging, a novel solution to the small write problem for redundant disk arrays. Parity logging applies journalling techniques to substantially reduce the cost of small writes. We provide a detailed analysis of parity logging and competing schemes-mirroring, floating storage, and RAID level 5-and verifying these models by simulation. Parity logging provides performance competitive with mirroring, the best of the alternative single failure tolerating disk array organizations. However, its overhead is close to the minimum offered by RAID level 5. Finally, parity logging can exploit data caching much more effectively than all three alternative approaches.

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Document Details

Document Type
Technical Report
Publication Date
Oct 20, 1993
Accession Number
ADA276645

Entities

People

  • Daniel Stodolsky
  • Garth A. Gibson
  • Mark Holland
  • William V. Courtright Ii

Organizations

  • Carnegie Mellon University

Tags

Communities of Interest

  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Algorithms
  • Coding
  • Computer Programming
  • Computer Science
  • Computers
  • Corporations
  • Data Transmission
  • Fault Tolerance
  • Geometry
  • Operating Systems
  • Programming Languages
  • Reliability
  • Simulations
  • Standards
  • Time Standards
  • Two Dimensional
  • Workload

Fields of Study

  • Computer science

Readers

  • Parallel and Distributed Computing.