Energy Efficient And Low Latency Interconnection Network For Multicast Invalidates In Shared Memory Systems

Muhammad Ridwan Madarbux, A. Laer, P. Watts, Timothy M. Jones
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Abstract

Optical network-on-chip (NoC) are being investigated to reduce the latency and power consumption of networks for multicore processors. Our previous work has shown that switched optical networks can achieve lower latency for a given power consumption and component count in shared memory processors compared with arbitration-free networks such as single writer multiple reader. We have also shown the advantage of leaving optical circuits open after being generated to capture multiple memory transactions. However invalidation processes, where numerous cores are sharing a memory block, need to establish a large number of very short lived circuits and this increases the average message latency and overall on-chip contention. In this paper, a low power broadcast architecture is proposed which deals specifically with multicast messages. Separating multicast messages from unicast ones shows an improvement in average arbitration latency of up to 88.2% for the Vips benchmark while the Swaptions benchmark shows the highest improvement in average memory access time (up to 21.1%). Vips also sees an increase of 147% in the average number of messages passing through an open optical circuit. Obtaining these advantages requires an additional broadcast network which consumes only 66.1mW power.
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节能低延迟多播互连网络在共享内存系统中失效
为了减少多核处理器网络的延迟和功耗,人们正在研究光片上网络(NoC)。我们之前的工作表明,与无仲裁的网络(如单写入器多读取器)相比,交换光网络在给定功耗和共享内存处理器中组件数量的情况下可以实现更低的延迟。我们还展示了在生成后保持光学电路打开以捕获多个存储事务的优势。然而,当多个内核共享一个内存块时,无效进程需要建立大量寿命非常短的电路,这增加了平均消息延迟和总体片上争用。本文提出了一种低功耗广播架构,专门处理组播消息。将多播消息与单播消息分离后,Vips基准测试的平均仲裁延迟提高了88.2%,而Swaptions基准测试的平均内存访问时间改善最大(提高了21.1%)。vip还看到通过开放光学电路的平均消息数量增加了147%。获得这些优势需要一个额外的广播网络,仅消耗66.1mW的功率。
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