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A hierarchical approach for dependability analysis of a commercial cache-based RAID storage architecture

机译:基于商业缓存RAID存储架构的可靠性分析的分层方法

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We present a hierarchical simulation approach for the dependability analysis and evaluation of a highly available commercial cache-based RAID storage system. The architecture is complex and includes several layers of overlapping error detection and recovery mechanisms. Three abstraction levels have been developed to model the cache architecture, cache operations, and error detection and recovery mechanism. The impact of faults and errors occurring 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 developed using DEPEND, a simulation-based environment for system-level dependability analysis, which provides facilities to inject faults into a functional behavior model, to simulate error detection and recovery mechanisms, and to evaluate quantitative measures. Several fault models are defined for each submodel to simulate cache component failures, disk failures, transmission errors, and data errors in the cache memory and in the disks. Some of the parameters characterizing fault injection in a given submodel correspond to probabilities evaluated from the simulation of the lower-level submodel. Based on the proposed methodology, we evaluate and analyze: the system behavior under a real workload and high error rate (focusing on error bursts); the coverage of the error detection mechanisms implemented in the system and the error latency distributions; and the accumulation of errors in the cache and in the disks.
机译:我们为高可用的商业缓存的RAID存储系统提供了一种分层模拟方法,用于对高可用的商业缓存的RAID存储系统的可靠性分析和评估。该体系结构复杂,包括多个重叠错误检测和恢复机制的层。已经开发了三个抽象级别来模拟缓存架构,缓存操作和错误检测和恢复机制。在层次结构的每个级别分析了缓存和磁盘中发生的故障和错误的影响。仿真子模型与每个抽象级别相关联。该模型已经使用依赖,基于仿真的环境进行了开发的系统级可靠性分析,它提供了将故障注入功能性能模型的设施,以模拟错误检测和恢复机制,并评估定量措施。为每个子模型定义了几种故障模型,以模拟缓存组件故障,磁盘故障,传输错误和缓存存储器中的数据错误以及磁盘中的数据错误。在给定的子模型中表征故障注射的一些参数对应于从初级子模型的仿真评估的概率。基于所提出的方法,我们评估和分析:在真实工作量和高错误率下的系统行为(专注于错误突发);在系统中实现的错误检测机制的覆盖范围和误差延迟分布;并且缓存和磁盘中的错误累积。

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