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Almost every wire is removable: A modeling and solution for removing any circuit wire

机译:几乎每根电线都是可移动的:用于移除任何电路电线的建模和解决方案

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摘要

Rewiring is a flexible and useful logic transformation technique through which a target wire can be removed by adding its alternative logics without changing the circuit functionality. In today's deep sub-micron era, circuit wires have become a dominating factor in most EDA processes and there are situations where removing a certain set of (perhaps extremely unwanted) wires is very useful. However, it has been experimentally suggested that the rewiring rate (percentage of original circuit wires being removable by rewiring) is only 30 to 40% for optimized circuits in the past. In this paper, we propose a generalized error cancellation modeling and flow to show that theoretically almost every circuit wire is removable under this flow. In the Flow graph Error Cancellation based Rewiring (FECR) scheme we propose here, a rewiring rate of 95% of even optimized circuits is obtainable under this scheme, affirming the basic claim of this paper. To our knowledge, this is the first known rewiring scheme being able to achieve this near complete rewiring rate. Consequently, this wire-removal process can now be considered as a powerful atomic and universal operation for logic transformations, as virtually every circuit node can also be removed through repetitions of this rewiring process. Besides, this modeling can also serve as a general framework containing many other rewiring techniques as its special cases.
机译:重新布线是一种灵活而有用的逻辑转换技术,通过该技术可以在不更改电路功能的情况下通过添加目标逻辑来删除目标导线。在当今的深亚微米时代,电路线已成为大多数EDA工艺中的主导因素,并且在某些情况下,移除一组(可能非常不需要的)线非常有用。然而,实验已经表明,过去对于优化的电路,重新布线率(可通过重新布线移除的原始电路线的百分比)仅为30%至40%。在本文中,我们提出了一个广义的误差消除模型和流程,以证明理论上几乎每条电路线在该流程下都可移动。在这里我们提出的基于流程图的基于误差消除的重新布线(FECR)方案中,在这种方案下,即使是优化电路,其重新布线率也可达到95%,这肯定了本文的基本主张。就我们所知,这是第一个已知的能够实现几乎完全重新布线速率的重新布线方案。因此,现在可以将这种导线拆除过程视为逻辑转换的强大原子操作和通用操作,因为实际上每个电路节点也可以通过重复进行此重新布线过程来拆除。此外,该建模还可以用作包含许多其他重新布线技术(作为特殊情况)的通用框架。

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