可扩展树协议-大规模多处理器的缓存一致性方法

H. Nilsson, P. Stenström
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引用次数: 44

摘要

利用目录模式解决了大规模共享内存多处理器中的缓存一致性问题。当处理器数量增加时,会出现两个问题:网络延迟增加,实现成本必须保持在可接受的范围内。作者提出了一种基于树的缓存一致性协议,称为可扩展树协议(STP)。他们表明,它可以以合理的实现成本实现,并且写入延迟与共享集的大小成对数关系。如何保持一个最优的树结构和如何有效地处理替换是作者为这种类型的协议解决的关键问题。他们通过考虑针对大规模并行处理的经典面向矩阵算法,将STP的性能与可扩展相干接口(SCI) (IEEE标准P1596)的性能进行了比较。他们表明STP通过减少写延迟来大大减少执行时间。
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The Scalable Tree Protocol-a cache coherence approach for large-scale multiprocessors
The problem of cache coherence in large-scale shared-memory multiprocessors has been addressed using directory-schemes. Two problems arise when the number of processors increases: the network latency increases and the implementation cost must be kept acceptable. The authors present a tree-based cache coherence protocol called the scalable tree protocol (STP). They show that it can be implemented at a reasonable implementation cost and that the write latency is logarithmic to the size of the sharing set. How to maintain an optimal tree structure and how to handle replacements efficiently are critical issues the authors address for this type of protocol. They compare the performance of the STP with that of the scalable coherent interface (SCI) (IEEE standard P1596) by considering a classical matrix-oriented algorithm targeted for large-scale parallel processing. They show that the STP manages to reduce the execution time considerably by reducing the write latency.<>
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