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INTEGRA: Fast Multibit Flip-Flop Clustering for Clock Power Saving

机译:INTEGRA:用于时钟省电的快速多位触发器群集

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摘要

Clock power is the major contributor to dynamic power for modern integrated circuit design. A conventional single-bit flip-flop cell uses an inverter chain with a high drive strength to drive the clock signal. Clustering several such cells and forming a multibit flip-flop can share the drive strength, dynamic power, and area of the inverter chain, and can even save the clock network power and facilitate the skew control. Hence, in this paper, we focus on postplacement multibit flip-flop clustering to gain these benefits. Utilizing the properties of Manhattan distance and coordinate transformation, we model the problem instance by two interval graphs and use a pair of linear-sized sequences as our representation. Without enumerating all possible combinations, we identify only partial sequences that are necessary to cluster flip-flops, thus leading to an efficient clustering scheme. Moreover, our fast coordinate transformation also makes the execution of our algorithm very efficient. The experiments are conducted on industrial circuits. Our results show that concise representation delivers superior efficiency and effectiveness. Even under timing and placement density constraints, clock power saving via multibit flip-flop clustering can still be substantial at postplacement.
机译:时钟功率是现代集成电路设计中动态功率的主要贡献者。常规的单比特触发器单元使用具有高驱动强度的反相器链来驱动时钟信号。将几个这样的单元聚集在一起并形成一个多位触发器可以共享驱动强度,动态功率和逆变器链的面积,甚至可以节省时钟网络功率并促进偏斜控制。因此,在本文中,我们将重点放在后置位多位触发器群集上以获取这些好处。利用曼哈顿距离和坐标变换的属性,我们通过两个间隔图对问题实例进行建模,并使用一对线性大小的序列作为表示。在没有列举所有可能的组合的情况下,我们仅确定了群集触发器所需的部分序列,从而导致了有效的群集方案。而且,我们的快速坐标变换也使我们算法的执行效率很高。实验是在工业电路上进行的。我们的结果表明,简洁的表示方式可提供卓越的效率和效果。即使在时序和放置密度的限制下,在放置后,通过多位触发器群集节省时钟功率仍然是可观的。

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