Unit delay simulation with the inversion algorithm

William J. Schilp, P. Maurer
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引用次数: 7

Abstract

The Inversion Algorithm is an event driven algorithm whose performance meets or exceeds that of Levelized Compiled Code simulation, even when the activity rate is unrealistically high. Existing implementations of the Inversion Algorithm are based on the Zero Delay model. This paper extends the algorithm to more realistic timing models. The main problems discussed in this paper are avoiding scheduling conflicts, and minimizing the amount of storage space. These problems are made considerably more difficult by the deletion of NOT gates and the collapsing of various connections. These optimizations transform the simulation into a multi-delay simulation under the transport delay model. A complete solution to the scheduling problem is presented under these conditions.
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用反演算法进行单位时延仿真
反转算法是一种事件驱动算法,即使在活动率高得不切实际的情况下,其性能也能达到或超过Levelized Compiled Code模拟。现有的反演算法都是基于零延迟模型。本文将该算法扩展到更现实的时序模型。本文讨论的主要问题是避免调度冲突和最小化存储空间。由于非门的删除和各种连接的崩溃,这些问题变得相当困难。这些优化将仿真转化为传输延迟模型下的多延迟仿真。在这些条件下,给出了调度问题的完整解。
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