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WCET Analysis of Multi-Level Set-Associative Data Caches

机译:多层集关联数据缓存的WCET分析

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Nowadays, the presence of cache hierarchies tends to be a common trend in processor architectures, even in hardware for real-time embedded systems. Caches are used to fill the gap between the processor and the main memory, reducing access times based on spatial and temporal locality properties of tasks. Cache hierarchies are going even further however at the price of increased complexity. In this paper, we present a safe static data cache analysis method for hierarchies of non-inclusive caches. Using this method, we show that considering the cache hierarchy in the context of data caches allows tighter estimates of the worst case execution time than when considering only the first cache level. We also present considerations about the update policy for data caches.
机译:如今,即使在实时嵌入式系统的硬件中,缓存层次结构的存在也已成为处理器体系结构中的常见趋势。缓存用于填充处理器和主内存之间的间隙,从而基于任务的空间和时间局部性来减少访问时间。但是,高速缓存层次结构的发展步伐更加复杂。在本文中,我们提出了一种用于非包容性缓存层次结构的安全静态数据缓存分析方法。使用这种方法,我们表明,与仅考虑第一个缓存级别相比,在数据缓存的上下文中考虑缓存层次结构可以更严格地估计最坏情况的执行时间。我们还提出了有关数据缓存更新策略的注意事项。

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