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The perfectly synchronized round-based model of distributed computing

机译:完全同步的基于轮次的分布式计算模型

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The perfectly synchronized round-based model provides the powerful abstraction of crash-stop failures with atomic and synchronous message delivery. This abstraction makes distributed programming very easy. We describe a technique to automatically transform protocols devised in the perfectly synchronized round-based model into protocols for the crash, send omission, general omission or Byzantine models. Our transformation is achieved using a round shifting technique with a constant time complexity overhead. The overhead depends on the target model: crashes, send omissions, general omissions or Byzantine failures. Rather surprisingly, we show that no other automatic non-uniform transformation from a weaker model, say from the traditional crash-stop model (with no atomic message delivery), onto an even stronger model than the general-omission one, say the send-omission model, can provide a better time complexity performance in a failure-free execution.
机译:完全同步的基于回合的模型通过原子和同步消息传递提供了崩溃停止故障的强大抽象。这种抽象使分布式编程非常容易。我们描述了一种技术,该技术可将在完全同步的基于回合模型中设计的协议自动转换为崩溃,发送遗漏,一般遗漏或拜占庭模型的协议。我们的变换是使用具有恒定时间复杂性开销的舍入移位技术来实现的。开销取决于目标模型:崩溃,发送遗漏,一般遗漏或拜占庭式故障。令人惊讶的是,我们发现,没有其他任何自动的非均匀转换,可以从较弱的模型(例如从传统的崩溃停止模型(没有原子消息传递))转换到比一般遗漏模型更强大的模型,例如send-遗漏模型可以在无故障执行中提供更好的时间复杂度性能。

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