处理动态频率变化的静态调度周期精确模拟

M. Gligor, F. Pétrot
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引用次数: 2

摘要

虽然高级仿真模型越来越多地用于数字电子系统验证,但在某些情况下仍然需要周期精度,例如硬件协议验证或准确的功率/能量估计。然而,周期精确的仿真速度很慢,加速方法假设一个恒定的时钟,随着动态电压和频率标度技术的推广,这种假设不再成立。因此需要支持多个时钟的快速周期精确模拟器,这些时钟的频率可以在运行时改变。本文介绍了我们为此目的设计的两种算法,并详细介绍了它们的特性和实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Handling dynamic frequency changes in statically scheduled cycle-accurate simulation
Although high level simulation models are being increasingly used for digital electronic system validation, cycle accuracy is still required in some cases, such as hardware protocol validation or accurate power/energy estimation. Cycle-accurate simulation is however slow and acceleration approaches make the assumption of a single constant clock, which is not true anymore with the generalization of dynamic voltage and frequency scaling techniques. Fast cycle-accurate simulators supporting several clocks whose frequencies can change at run time are thus needed. This paper presents two algorithms we designed for this purpose and details their properties and implementations.
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