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Distributed Shared Memory: To Relax or Not to Relax?

机译:分布式共享内存:放松或不放松吗?

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Choosing a memory consistency model is one of the main decisions in designing a Distributed Shared Memory (DSM) system. While Sequential Consistency (SC) provides a simple and intuitive programming model, relaxed consistency models allow memory accesses to be parallelized, improving runtime performance. In this article we compare the performance of two multithreaded memory coherence protocols. The first protocol implements Home-based Lazy Release Consistency (HLRC) memory semantics and the second one implements SC semantics using a MultiView (MV) memory mapping technique. This technique enables fine-grain access to shared memory while using the virtual memory hardware to track memory accesses. We perform an "apple-to-apple" comparison on the same testbed environment and benchmark suite, and investigate the effectiveness and scalability of both these protocols.
机译:选择内存一致性模型是设计分布式共享存储器(DSM)系统的主要决策之一。虽然顺序一致性(SC)提供了简单且直观的编程模型,但放宽的一致性模型允许内存访问并行化,提高运行时性能。在本文中,我们比较两个多线程内存一致性协议的性能。第一个协议实现基于家庭的延迟释放一致性(HLRC)存储器语义,第二个协议使用多视图(MV)存储器映射技术来实现SC语义。该技术在使用虚拟内存硬件跟踪内存访问时,可以在使用虚拟内存硬件时对共享存储器进行微粒访问。我们在相同的测试平台和基准套件上执行“Apple-to-Apple”比较,并调查这两种协议的有效性和可扩展性。

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