Improving instruction accurate simulation for parallel automotive applications

Dominik Schoenwetter, Alexander Ditter, D. Fey, Ralph Mader
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Abstract

High level simulation and modeling techniques have matured significantly over the last years and have become more and more important in practice, e.g., in the industrial hardware development and especially the automotive domain. Complex and detailed modeling requires a lot of time during preparation and execution, is quite error prone and thus, reduces the average time-to-market significantly. One popular approach to mitigate this problem is statistical modeling and simulation. In this paper, we focus on another high level simulation approach for determining accurate runtimes of applications using instruction accurate modeling and simulation. We extend the basic instruction accurate simulation technology from OVP using cache models in conjunction with a statistical cost function, which enables high precision runtime predictions with an significant improvement over the pure instruction accurate approach.
改进并行汽车应用的指令精确仿真
高级仿真和建模技术在过去几年中已经显著成熟,并在实践中变得越来越重要,例如在工业硬件开发,特别是汽车领域。复杂和详细的建模需要在准备和执行期间花费大量时间,很容易出错,因此大大缩短了平均上市时间。缓解这个问题的一个流行方法是统计建模和模拟。在本文中,我们将重点放在另一种高级仿真方法上,该方法使用指令精确建模和仿真来确定应用程序的精确运行时。我们使用缓存模型和统计成本函数从OVP扩展了基本的指令精确仿真技术,这使得高精度的运行时预测比纯指令精确的方法有了显著的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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