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OSIRIS: Efficient and Consistent Recovery of Compartmentalized Operating Systems

机译:OSIRIS:高效,一致地恢复分区操作系统

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Much research has gone into making operating systems more amenable to recovery and more resilient to crashes. Traditional solutions rely on partitioning the operating system (OS) to contain the effects of crashes within compartments and facilitate modular recovery. However, state dependencies among the compartments hinder recovery that is globally consistent. Such recovery typically requires expensive runtime dependency tracking which results in high performance overhead, highcomplexity and a large Reliable Computing Base (RCB). We propose a lightweight strategy that limits recovery to cases where we can statically and conservatively prove that compartment recovery leads to a globally consistent state - trading recoverable surface for a simpler and smaller RCB with lower performance overhead and maintenance cost. We present OSIRIS, a research OS design prototype that demonstrates efficient and consistent crash recovery. Our evaluation shows that OSIRIS effectively recovers from important classes of real-world software bugs with a modest RCB and low overheads.
机译:已经进行了许多研究,以使操作系统更易于恢复并且对崩溃更具有弹性。传统解决方案依赖于对操作系统(OS)进行分区,以将崩溃的影响包含在隔离专区中,并有助于模块化恢复。但是,隔离专区之间的状态依存关系阻碍了全局一致的恢复。这种恢复通常需要昂贵的运行时相关性跟踪,这会导致高性能开销,高复杂度和庞大的可靠计算库(RCB)。我们提出了一种轻量级策略,将恢复限制在可以静态和保守地证明隔离专区恢复导致全局一致的状态的情况下-交易可恢复表面,以实现更简单,更小的RCB,并降低性能开销和维护成本。我们介绍OSIRIS,这是一个研究OS设计原型,演示了有效且一致的崩溃恢复。我们的评估表明,OSIRIS具有适度的RCB和低开销,可从重要类别的实际软件错误中有效恢复。

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