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A novel processing platform for post tape out flows

机译:一种新型的流片带输出处理平台

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As the computational requirements for post tape out (PTO) flows increase at the 7nm and below technology nodes, there is a need to increase the scalability of the computational tools in order to reduce the turn-around time (TAT) of the flows. Utilization of design hierarchy has been one proven method to provide sufficient partitioning to enable PTO processing. However, as the data is processed through the PTO flow, its effective hierarchy is reduced. The reduction is necessary to achieve the desired accuracy. Also, the sequential nature of the PTO flow is inherently non-scalable. To address these limitations, we are proposing a quasi-hierarchical solution that combines multiple levels of parallelism to increase the scalability of the entire PTO flow. In this paper, we describe the system and present experimental results demonstrating the runtime reduction through scalable processing with thousands of computational cores.
机译:随着后期磁带输出(PTO)流在7纳米及以下技术节点的计算需求增加,需要增加计算工具的可伸缩性,以减少流的周转时间(TAT)。设计层次结构的使用已成为一种行之有效的方法,可以提供足够的分区以支持PTO处理。但是,由于数据是通过PTO流程处理的,因此降低了其有效层次结构。为了实现所需的精度,必须进行减小。同样,PTO流程的顺序性质本质上是不可扩展的。为了解决这些限制,我们提出了一种准分层解决方案,该方案结合了多个并行级别,以提高整个PTO流的可伸缩性。在本文中,我们描述了该系统,并给出了实验结果,展示了通过具有数千个计算核心的可扩展处理来减少运行时间。

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