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Performance-Driven Architectural Synthesis for Distributed Register-File Microarchitecture with Inter-Island Delay

机译:具有岛间延迟的分布式寄存器文件微体系结构的性能驱动体系结构综合

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In deep-submicron era, wire delay is becoming a bottleneck while pursuing higher system clock speed. Several distributed register (DR) architectures are proposed to cope with this problem by keeping most wires local. In this article, we propose the distributed register-file microarchitecture with inter-island delay (DRFM-IID). Though DRFM-IID is also one of the DR-based architectures, it is considered more practical than the previously proposed DRFM, in terms of delay model. With such delay consideration, the synthesis task is inherently more complicated than the one without inter-island delay concern since uncertain interconnect latency is very likely to seriously impact on the whole system performance. Therefore we also develop a performance-driven architectural synthesis framework targeting DRFM-IID. Several factors for evaluating the quality of results, such as number of inter-island transfers, timing-criticality of transfer, and resource utilization balancing, are adopted as the guidance while performing architectural synthesis for better optimization outcomes. The experimental results show that the latency and the number of inter-cluster transfers can be reduced by 26.9% and 37.5% on average; and the latter is commonly regarded as an indicator for power consumption of on-chip communication.
机译:在深亚微米时代,在追求更高的系统时钟速度的同时,布线延迟已成为瓶颈。提出了几种分布式寄存器(DR)架构,通过将大多数导线保持在本地来解决此问题。在本文中,我们提出了具有岛间延迟(DRFM-IID)的分布式寄存器文件微体系结构。尽管DRFM-IID也是基于DR的体系结构之一,但就延迟模型而言,它被认为比以前提出的DRFM更实用。考虑到这种延迟,综合任务从本质上比没有岛间延迟问题的任务要复杂得多,因为不确定的互连延迟很可能会严重影响整个系统的性能。因此,我们还针对DRFM-IID开发了一种性能驱动的体系结构综合框架。进行体系结构综合以获得更好的优化结果时,将采用评估结果质量的几个因素作为指导,例如岛间转移次数,转移时间紧迫性和资源利用平衡。实验结果表明,等待时间和集群间传输的数量平均可以减少26.9%和37.5%;后者通常被视为片上通信功耗的指标。

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