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SYMNET: an optical interconnection network for scalable high-performance symmetric multiprocessors

机译:SYMNET:用于可扩展的高性能对称多处理器的光学互连网络

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We address the primary limitation of the bandwidth to satisfy the demands for address transactions in future cache-coherent symmetric multiprocessors (SMPs). It is widely known that the bus speed and the coherence overhead limit the snoop/address,bandwidth needed to broadcast address transactions. to all processors. As a solution, we propose a scalable address subnetwork called symmetric multiprocessor network (SYMNET) in which address requests and snoop responses of SMPs are implemented optically. SYMNET not only has the ability to pipeline address. requests, but also multiple address requests from different processors can propagate through the address subnetwork simultaneously. This is in contrast with all electrical bus-based SMPs, where only a single request is broadcast on the physical address bus at any given point in time. The simultaneous propagation of multiple address requests in SYMNET increases the available address bandwidth and lowers the latency of the network, but the preservation of cache coherence can no longer be maintained With the usual fast snooping protocols. A modified snooping cache-coherence protocol, coherence in SYMNET (COSYM) is introduced to solve the coherence problem. We evaluated SYMNET with a subset of Splash-2 benchmarks and compared it with the electrical bus-based MOESI (modified, owned, exclusive, shared, invalid) protocol.; Our simulation studies have shown a 5-66% improvement in execution time for COSYM as compared with MOESI for various applications. Simulations have also shown that the average latency for a transaction to complete by use of COSYM protocol was 5-78% better than the MOESI protocol. SYMNET can scale up to hundreds of processors while still using fast snooping-based cache-coherence protocols, and additional performance gains may be attained with further improvement in optical device technology. (C) 2003 Optical Society of America. [References: 32]
机译:我们解决了带宽的主要限制,以满足将来的缓存一致性对称多处理器(SMP)中对地址事务的需求。众所周知,总线速度和一致性开销会限制侦听/地址,广播地址事务所需的带宽。所有处理器。作为解决方案,我们提出了一种称为对称多处理器网络(SYMNET)的可扩展地址子网,其中以光方式实现了SMP的地址请求和侦听响应。 SYMNET不仅具有流水线地址的功能。请求,但来自不同处理器的多个地址请求也可以同时通过地址子网传播。这与所有基于电气总线的SMP形成对比,后者在任何给定时间点仅在物理地址总线上广播单个请求。在SYMNET中同时传播多个地址请求增加了可用地址带宽并降低了网络的延迟,但是使用常规的快速侦听协议不再能够保持缓存一致性。引入了一种改进的侦听缓存一致性协议,即SYMNET中的一致性(COSYM),以解决一致性问题。我们用Splash-2基准测试的一个子集对SYMNET进行了评估,并将其与基于电气总线的MOESI(修改,拥有,互斥,共享,无效)协议进行了比较。我们的仿真研究表明,与MOESI相比,COSYM在各种应用中的执行时间缩短了5-66%。仿真还表明,使用COSYM协议完成事务的平均延迟比MOESI协议好5-78%。 SYMNET可以扩展到数百个处理器,同时仍使用基于快速侦听的高速缓存一致性协议,并且随着光学设备技术的进一步改进,可以获得额外的性能提升。 (C)2003年美国眼镜学会。 [参考:32]

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