安全软件升级的低成本错误控制和恢复方法

A. Tai, K. Tso, L. Alkalai, S. Chau, W. Sanders
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引用次数: 17

摘要

为了确保可靠的机载升级,我们开发了一种称为保护软件升级(GSU)的方法。我们专注于为GSU提供一种低成本的错误控制和恢复方法。为了保证较低的开发成本,我们利用系统固有的资源冗余作为容错手段。为了以较低的性能代价减轻软件故障的影响,我们在设计错误控制和恢复方法方面迈出了关键的一步,引入了置信度驱动的概念。这个概念补充了许多现有的用于容忍硬件故障的检查点协议所采用的消息驱动(或通信诱导)方法。特别是,我们根据我们对其可靠性的信心区分各个软件组件,并跟踪我们在特定过程中信心的变化(由于对潜在过程状态污染的了解)。反过来,这使得星载分布式系统中的各个进程能够在运行时本地做出决策,决定是否在消息传递时建立检查点,以及在错误恢复期间是否回滚或前滚。由此产生的消息驱动的信任驱动的方法支持经济有效的检查点和无级联回滚的恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On low-cost error containment and recovery methods for guarded software upgrading
To assure dependable onboard evolution, we have developed a methodology called guarded software upgrading (GSU). We focus on a low-cost approach to error containment and recovery for GSU. To ensure low development cost, we exploit inherent system resource redundancies as the fault tolerance means. In order to mitigate the effect of residual software faults at low performance cost, we take a crucial step in devising error containment and recovery methods by introducing the confidence-driven notion. This notion complements the message-driven (or communication-induced) approach employed by a number of existing checkpointing protocols for tolerating hardware faults. In particular, we discriminate between the individual software components with respect to our confidence in their reliability and keep track of changes of our confidence (due to knowledge about potential process state contamination) in particular processes. This, in turn, enables the individual processes in the spaceborne distributed system to make decisions locally at run-time, on whether to establish a checkpoint upon message passing and whether to roll back or roll forward during error recovery. The resulting message-driven confidence-driven approach enables cost-effective checkpointing and cascading-rollback free recovery.
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