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Computational resiliency for distributed applications

机译:分布式应用程序的计算弹性

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In recent years, computer network attacks have decreased overall reliability of computer systems and undermined confidence in mission-critical software. These robustness issues are magnified in distributed applications, which provide multiple points of failure and attack. The notion of resiliency is concerned with constructing applications that are able to operate through a wide variety of failures, errors, and malicious attacks. A number of approaches have been proposed in the literature based on fault tolerance achieved through replication of resources. In general, these approaches provide graceful degradation of performance to the point of failure but do not guarantee progress in the presence of multiple cascading and recurrent failures. Our approach is to dynamically replicate message-passing processes, detect inconsistencies in their behavior, and restore the level of fault tolerance as a computation proceeds. This paper describes a novel operating system technology for resilient message-passing applications that is automated, scalable, and transparent. The technology provides mechanisms for process replication, process migration, and adaptive failure detection. To quantify the performance overhead of the technology, we benchmark a distributed application exemplar to represent a broader class of applications.
机译:近年来,计算机网络攻击降低了计算机系统的整体可靠性,并破坏了对关键任务软件的信心。这些健壮性问题在分布式应用程序中得到了放大,这些应用程序提供了多个故障和攻击点。弹性概念涉及构建能够通过各种故障,错误和恶意攻击运行的应用程序。基于通过资源复制获得的容错能力,文献中已经提出了许多方法。通常,这些方法可将性能适当降低到故障点,但不能保证在存在多个级联和重复故障的情况下仍能取得进展。我们的方法是动态复制消息传递过程,检测其行为不一致,并随着计算的进行恢复容错级别。本文介绍了一种用于弹性消息传递应用程序的新颖操作系统技术,该技术具有自动化,可伸缩性和透明性。该技术提供了用于流程复制,流程迁移和自适应故障检测的机制。为了量化该技术的性能开销,我们对分布式应用程序示例进行了基准测试,以代表更广泛的应用程序类别。

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