在崩溃恢复模型中健壮地模拟共享内存

R. Guerraoui, Ron R. Levy
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引用次数: 43

摘要

共享内存抽象可以在异步消息传递系统上健壮地模拟,在异步消息传递系统中,任何进程都可能因崩溃和可能的恢复(崩溃恢复模型)而失败,方法是让(A)进程交换消息以同步它们的读写操作,(b)将关键信息记录在它们的本地稳定存储上。本文扩展了现有的多写/多读共享内存在崩溃停止模型中的原子一致性标准,为崩溃恢复模型提供了两个新的标准。我们介绍了两种相应类型的鲁棒共享内存模拟的日志复杂度的下界。我们通过提供与下界匹配的算法来证明下界是紧密的。除了最优之外,这些算法与我们所知道的最有效的碰撞停止模型具有相同的消息和时间复杂度。
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Robust emulations of shared memory in a crash-recovery model
A shared memory abstraction can be robustly emulated over an asynchronous message passing system where any process can fail by crashing and possibly recover (crash-recovery model), by having (a) the processes exchange messages to synchronize their read and write operations and (b) log key information on their local stable storage. This paper extends the existing atomicity consistency criterion defined for multiwriter/multireader shared memory in a crash-stop model, by providing two new criteria for the crash-recovery model. We introduce lower bounds on the log-complexity for each of the two corresponding types of robust shared memory emulations. We demonstrate that our lower bounds are tight by providing algorithms that match them. Besides being optimal, these algorithms have the same message and time complexity as their most efficient counterpart we know of in the crash-stop model.
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