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Many-Core Processors Granularity Evaluation by Considering Performance, Yield, and Lifetime Reliability

机译:考虑性能,良率和终生可靠性的多核处理器粒度评估

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摘要

Network-on-chip based many-core processors break the limitations faced with single-core processors, and can bring high performance, improved yield, and high reliability. They are widely considered as the most promising platform. One of the most important questions is: what kind of granularity of cores (in other words, the number of cores and the area of each core under specific area constraint of the chip) is the best for many-core processors? Performance is widely used as the most important metric to determine the choice, but recently, reliability and yield are also becoming the first-class constraints in many application domains. This paper presents a novel performance model by considering practical program style, including pipelined and parallel program styles, as well as intercore communication, and proposes a new metric combing performance, reliability, and yield of many-core processors to choose the core granularity. According to our paper, with a given area (300 ) and certain applications, the optimal result is obtained using mesh when all three factors are considered.
机译:基于芯片网络的多核处理器打破了单核处理器面临的局限性,并可以带来高性能,更高的良率和高可靠性。它们被广泛认为是最有前途的平台。最重要的问题之一是:哪种核的粒度(换言之,在芯片的特定面积约束下,核的数量和每个核的面积)最适合于多核处理器?性能已被广泛用作确定选择的最重要指标,但是最近,可靠性和良率也成为许多应用程序领域的头等限制。本文考虑了实际的程序样式(包括流水线和并行程序样式以及内核间通信),提出了一种新颖的性能模型,并提出了一种新的度量标准,可以综合性能,可靠性和多核处理器的良率来选择内核粒度。根据我们的论文,在给定面积(300)和某些应用的情况下,考虑所有三个因素后,使用网格即可获得最佳结果。

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