惰性重求的有效实现

Avinash C. Palaniswamy, S. Aji, P. Wilsey
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引用次数: 5

摘要

分布式计算的进步导致了数字系统快速模拟器的设计。采用VHDL作为硬件描述语言,开发了一个并行、乐观同步(时间扭曲)数字系统模拟器。该模拟器对时间扭曲机制进行了若干优化,包括延迟取消、流量控制、延迟回滚、延迟重求和回滚放松。本文提出了一种惰性重求的有效实现方法,这种方法在历史上由于计算成本太高而无法有效利用。本文提出的这种优化的实现结果是,在惰性重求中只识别出可能的总前跳的一个子集
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient implementation of lazy reevaluation
Advances in distributed computing have resulted in the design of fast simulators for digital systems. A parallel, optimistically synchronized (time warp) digital systems simulator using VHDL as the hardware description language has been developed. The simulator incorporates several optimizations to the time warp mechanism, including lazy cancellation, flow control, lazy rollback, lazy reevaluation, and rollback relaxation. This paper presents an efficient implementation of lazy reevaluation which has historically been too computationally expensive for effective utilization. The realization of this optimization is proposed in this paper results in an identification of only a subset of the total forward jumps that are possible in lazy reevaluation.<>
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