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Non-Blocking Synchronous Checkpointing Based on Rollback-Dependency Trackability

机译:基于回滚依赖性可跟踪性的非阻塞同步检查点

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This article proposes an original approach that applies the Rollback-Dependency Trackability (RDT) property to implement a new non-blocking synchronous checkpointing protocol, called RDT-NBS, that takes mutable checkpoints and efficiently supports concurrent initiators. Mutable checkpoints can be saved in non-stable storage and make it possible for non-blocking synchronous checkpointing protocols to save a minimal number of checkpoints in stable storage during the construction of a consistent global checkpoint. We prove that this minimality property does not hold in presence of concurrent checkpointing initiations. Even though, RDT-NBS uses mutable checkpoints to reduce the use of stable memory assuring the existence of a consistent global checkpoint in stable storage. We also present simulation results that compare RDT-NBS to quasi-synchronous RDT.
机译:本文提出了一种原始方法,该方法应用回滚依赖性可跟踪性(RDT)属性来实现一个名为RDT-NB的新的非阻塞同步检查点协议,该协议采用可变检查点并有效地支持并发的启动器。可变检查点可以保存在非稳定存储中,并使非阻塞同步检查点协议可以在构建一致的全局检查点期间保存稳定存储中的最小数量的检查点。我们证明,这种最小的属性不存在并发检查点的启动。即使,RDT-NB使用可变检查点,以减少使用稳定记忆的使用,确保在稳定存储中存在一致的全局检查点。我们还存在将RDT-NBS与准同步RDT进行比较的仿真结果。

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