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Self-stabilizing Reconfiguration

机译:自稳定重配置

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摘要

Current reconfiguration techniques depend on starting the system in a consistent configuration, in which all participating entities are in a predefined state. Starting from that state, the system must preserve consistency as long as a predefined churn rate of processors joins and leaves is not violated, and unbounded storage is available. Many systems cannot control this churn rate and lack access to unbounded storage. System designers that neglect the outcome of violating the above assumptions may doom the system to exhibit illegal behaviors. We present the first automatically recovering reconfiguration scheme that recovers from transient faults, such as temporal violations of the above assumptions. Our self-stabilizing solutions regain safety automatically by assuming temporal access to reliable failure detectors (FDs). Once safety is established, the FD reliability is no longer needed. Still, liveness is conditioned by the FD's unreliable signals. Our self-stabilizing reconfiguration techniques can serve as the basis for the implementation of several dynamic services over message passing systems. Examples include self-stabilizing reconfigurable virtual synchrony, extendable to a self-stabilizing recon-figurable state machine replication.
机译:当前的重新配置技术取决于以一致的配置启动系统,在该配置中所有参与实体都处于预定义状态。从该状态开始,只要不违反处理器加入和离开的预定义流失率,并且无限制存储可用,系统就必须保持一致性。许多系统无法控制这种流失率,并且无法访问无限制的存储。忽略违反上述假设的结果的系统设计人员可能注定该系统表现出非法行为。我们提出了第一个自动恢复重配置方案,该方案可从瞬态故障(例如上述假设的时间违背)中恢复。我们的自稳定解决方案通过假设暂时访问可靠的故障检测器(FD),可以自动恢复安全性。一旦建立安全性,就不再需要FD可靠性。尽管如此,活力仍然取决于FD的不可靠信号。我们的自稳定重配置技术可以作为在消息传递系统上实施多种动态服务的基础。示例包括自稳定的可重新配置虚拟同步,可扩展到自稳定的可重新配置状态机复制。

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