A Hierarchical Approach for Dependability Analysis of a Commercial Cache-Based RAID Storage Architecture
Mohamed Kaaniche (LAAS), Luigi Romano (UIUC), Zbigniew Kalbarczyk, (UIUC), Ravishankar Iyer (UIUC), Rick Karcich (STORAGETEK)

TL;DR
This paper introduces a hierarchical simulation approach to analyze the dependability of a complex cache-based RAID storage system, focusing on fault impact, error detection, and recovery mechanisms across multiple abstraction levels.
Contribution
It develops a multi-level modeling methodology using DEPEND to evaluate fault impacts and error detection effectiveness in a commercial RAID system.
Findings
System behavior under high error rates analyzed
Error detection coverage quantified
Error accumulation in cache and disks studied
Abstract
We present a hierarchical simulation approach for the dependability analysis and evaluation of a highly available commercial cache-based RAID storage system. The archi-tecture is complex and includes several layers of overlap-ping error detection and recovery mechanisms. Three ab-straction levels have been developed to model the cache architecture, cache operations, and error detection and recovery mechanism. The impact of faults and errors oc-curring in the cache and in the disks is analyzed at each level of the hierarchy. A simulation submodel is associated with each abstraction level. The models have been devel-oped using DEPEND, a simulation-based environment for system-level dependability analysis, which provides facili-ties to inject faults into a functional behavior model, to simulate error detection and recovery mechanisms, and to evaluate quantitative measures. Several fault…
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Taxonomy
TopicsDistributed systems and fault tolerance · Advanced Data Storage Technologies · Radiation Effects in Electronics
