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Managing Chip Design Complexity in the Domain-Specific SoC Era

机译:在特定领域的SoC时代管理芯片设计的复杂性

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Chip designers can no longer rely on Moore's Law and Dennard scaling to make inefficient general-purpose processors faster, cheaper, and lower-power. The industry has instead been forced toward building specialized domain-specific systems on chip (SoCs) to meet next-generation product requirements. Balancing the complexity of these specialized chips with the need to improve time to market is a great challenge of the domain-specific SoC era. We argue that reuse and rapid validation are key to bringing these specialized SoCs to market faster. In this paper, we share our observations of industrial and academic attempts to vault this hurdle, and describe how SiFive, in its early days, quickly designed the Freedom Unleashed 540 SoC with a small team and a tight budget.
机译:芯片设计人员不再能够依靠摩尔定律和Dennard缩放来使效率低下的通用处理器更快,更便宜且功耗更低。相反,该行业被迫构建专门的领域特定的片上系统(SoC),以满足下一代产品的需求。在这些专用芯片的复杂性与缩短上市时间的需求之间取得平衡是特定域SoC时代的巨大挑战。我们认为重用和快速验证是将这些专用SoC更快推向市场的关键。在本文中,我们分享了我们对克服这一障碍的工业和学术尝试的观察,并描述了SiFive在早期的情况下如何以较小的团队和紧张的预算快速设计Freedom Unleashed 540 SoC。

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