首页> 外文会议>Digital System Design, Architectures, Methods and Tools, 2009. DSD '09 >Performance-Effective Compaction of Standard-Cell Libraries for Digital Design
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Performance-Effective Compaction of Standard-Cell Libraries for Digital Design

机译:用于数字设计的标准单元库的性能有效压缩

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Currently, commercially available standard-cell libraries are often unstructured set of cells, suitable for several optimization criteria: speed, power, leakage and area consumption. Exploiting a large number of items makes the synthesis process and the library maintenance quite demanding. By smartly selecting a reduced set of cells, such efforts can be reduced, without critically affecting performance. This paper presents a library-reduction strategy which allows for selecting an arbitrarily small subset of cells, also taking into accounts for the features of the actual synthesis tool. Compaction procedure could be driven by one chief criterion (e.g., orienting compacted library at small area, low-power consumption, high speed circuitry). Library compaction is tuned by means of a large set of benchmark circuits, in order to produce results suitable for general-purpose circuit design. In this paper, the compaction strategy is illustrated, and influence of compaction on circuit synthesis and performance is discussed over a wide range of cases, including different technology nodes and silicon foundries. With respect to full-size library synthesis, performance do not appreciably degrades, and in several cases actually improves. Synthesis time decreases and library maintenance and characterization tasks can be significantly reduced. By analyzing and comparing actual contents of several reduced libraries, general criteria for the design of low cell-count libraries can also be inferred.
机译:当前,可商购的标准单元库通常是非结构化的单元集,适用于多个优化标准:速度,功率,泄漏和面积消耗。利用大量项目使合成过程和库维护要求很高。通过巧妙地选择一组减少的单元,可以减少这种工作,而不会严重影响性能。本文提出了一种减少库的策略,该策略允许选择任意小的细胞子集,同时考虑了实际合成工具的功能。压缩过程可以由一个主要标准来驱动(例如,将压缩库定向在小区域,低功耗,高速电路上)。库压缩通过大量基准电路进行调整,以产生适合于通用电路设计的结果。在本文中,阐述了压缩策略,并讨论了压缩对电路合成和性能的影响,涉及范围广泛,包括不同的技术节点和硅代工厂。关于全尺寸库综合,性能不会明显下降,在某些情况下实际上会提高。合成时间减少,并且库维护和表征任务可以大大减少。通过分析和比较几个精简库的实际内容,还可以推断出低单元数库的一般设计准则。

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