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Logic optimization and synthesis: Trends and directions in industry

机译:逻辑优化和综合:行业趋势和方向

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Logic synthesis is a key design step which optimizes abstract circuit representations and links them to technology. With CMOS technology moving into the deep nanometer regime, logic synthesis needs to be aware of physical informations early in the flow. With the rise of enhanced functionality nanodevices, research on technology needs the help of logic synthesis to capture advantageous design opportunities. This paper deals with the synergy between logic synthesis and technology, from an industrial perspective. First, we present new synthesis techniques which embed detailed physical informations at the core optimization engine. Experiments show improved Quality of Results (QoR) and better correlation between RTL synthesis and physical implementation. Second, we discuss the application of these new synthesis techniques in the early assessment of emerging nanodevices with enhanced functionality. Finally, we argue that new synthesis methods can push further the progress of electronics, as we have reached a multiforking point of technology where choices are tougher than ever.
机译:逻辑综合是关键的设计步骤,可优化抽象电路表示并将其与技术联系起来。随着CMOS技术进入深纳米技术领域,逻辑综合需要在流程的早期就意识到物理信息。随着功能增强的纳米器件的兴起,对技术的研究需要逻辑综合的帮助,以抓住有利的设计机会。本文从工业角度探讨了逻辑综合与技术之间的协同作用。首先,我们介绍了新的综合技术,这些技术在核心优化引擎中嵌入了详细的物理信息。实验表明,结果质量(QoR)有所提高,RTL合成与物理实现之间的关联更好。其次,我们讨论了这些新的合成技术在早期评估具有增强功能的新兴纳米器件中的应用。最后,我们认为,新的合成方法可以推动电子学的进一步发展,因为我们已经达到了技术的多分支点,选择比以往任何时候都更加艰难。

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