Rollback recovery in real-time systems with dynamic constraints

S. Upadhyaya
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引用次数: 8

Abstract

Rollback recovery is a backward error recovery technique for recovering from transient faults in computing systems. Real-time systems employing fault tolerance and reconfiguration generally have time-dependent (dynamic) constraints. The author presents a novel rollback point insertion strategy which evaluates the rollback conditions on-line. The technique minimizes both time and space overhead associated with rollback, thereby making it applicable to real-time systems with dynamic constraints. The algorithm presented attains a near-optimum solution in terms of the time spent in saving the states of the system. Details of the simulation conducted to validate the technique are also given. The simulation study has established that the degradation in performance due to using the proposed algorithms is insignificant and the precomputation time is very small for programs that can be represented by general acyclic graphs. On the other hand, for structured programs that can be represented by a simple sequence of tasks, the computation overhead is almost zero.<>
动态约束下实时系统的回滚恢复
回滚恢复是一种向后错误恢复技术,用于恢复计算系统中的瞬时故障。采用容错和重构的实时系统通常具有时间相关(动态)约束。提出了一种新的在线评估回滚条件的回滚点插入策略。该技术最大限度地减少了与回滚相关的时间和空间开销,从而使其适用于具有动态约束的实时系统。所提出的算法在保存系统状态所花费的时间方面达到了近似最优解。并给出了验证该技术的仿真细节。仿真研究表明,对于可以用一般无环图表示的程序,所提出的算法对性能的影响不大,预计算时间也非常短。另一方面,对于可以用简单的任务序列表示的结构化程序,计算开销几乎为零
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