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A distributed recovery block approach to fault-tolerant execution of application tasks in hypercubes

机译:分布式恢复块方法,用于在超立方体中容错执行应用程序任务

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摘要

An approach to fault-tolerant execution of real-time application tasks in hypercubes is proposed. The approach is based on the distributed recovery block (DRB) scheme and does not require special hardware mechanisms in support of fault tolerance. Each task is assigned to a pair of processors forming a DRB computing station for execution in a dual-redundant and self-checking mode. Assignment of all tasks in an application in such a form is called the full DRB mapping. The DRB scheme was developed as an approach to uniform treatment of hardware and software faults with the effect of fast forward recovery. However, if the system developer is concerned with hardware fault possibilities only, then forming DRB stations becomes a mechanical process not burdening the application software designer in any way. A procedure for converting an efficient nonredundant task-to-processor mapping into an efficient full DRB mapping is presented.
机译:提出了一种超立方体实时应用任务的容​​错执行方法。该方法基于分布式恢复块(DRB)方案,不需要特殊的硬件机制来支持容错能力。将每个任务分配给形成DRB计算站的一对处理器,以便在双冗余和自检模式下执行。以这种形式在应用程序中分配所有任务称为完整DRB映射。 DRB方案是作为一种统一处理硬件和软件故障并具有快速正向恢复效果的方法而开发的。但是,如果系统开发人员仅关注硬件故障的可能性,那么形成DRB站就成为一种机械过程,不会以任何方式加重应用软件设计人员的负担。提出了一种将有效的非冗余任务到处理器映射转换为有效的完整DRB映射的过程。

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