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A Power-Aware Multi-Level Cache Organization Effective for Multi-Core Embedded Systems

机译:用于多核嵌入式系统的功率感知多级缓存组织

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—Recent system design trends suggest multicore architecture for all computing platforms including distributed and embedded systems running real-time applications. Multilevel caches in a multicore system pose serious challenges as cache requires huge amount of energy to be operated and cache increases unpredictability due to its dynamic behavior. Bandwidth and synchronization problems are also critical design factors for distributed and embedded systems. In this work, we propose a “miss table” based cache memory organization which is very effective for real-time distributed and embedded systems. Cache-level miss table holds information about the memory blocks that cause most level-1 cache (CL1) misses under normal execution. Proposed cache organization also includes private victim caches (VCs) to hold level-1 victim blocks and shared level-2 cache (CL2) to help synchronization. Proposed cache organization improves CL1 cache hits that decrease memory latency and total power consumption and improve predictability and bandwidth. We simulate an 4-core system with two-level caches using MPEG4, H.264/AVC, FFT, MI, and DFT workload. Experimental results show that the proposed miss table based cache organization helps reduce average memory latency and total power consumption by 31% and 38%, respectively, when compared with cache organization without miss table and victim caches.
机译:- 第一个系统设计趋势建议所有计算平台的多核架构,包括运行实时应用程序的分布式和嵌入式系统。多级系统在多核系统中的缓存构成严重挑战,因为缓存需要运行大量的能量,并且缓存由于其动态行为而增加了不可预测性。带宽和同步问题也是分布式和嵌入式系统的关键设计因素。在这项工作中,我们提出了基于“Miss Table”的高速缓冲存储器组织,这对于实时分布式和嵌入式系统非常有效。缓存级别的Miss表保存有关在正常执行下导致大多数Level-1缓存(CL1)未命中的内存块的信息。建议的缓存组织还包括私有受害者缓存(VCS),以保持级别-1受害者块和共享级别-2缓存(CL2)以帮助同步。提出的缓存组织改善了CL1缓存命中,降低内存延迟和总功耗,提高可预测性和带宽。我们使用MPEG4,H.264 / AVC,FFT,MI和DFT工作负载模拟具有两级高速缓存的4核系统。实验结果表明,当没有未命中表和受害者缓存的缓存组织相比,所提出的Miss基于表基的缓存组织有助于将平均内存延迟和总功耗降低31%和38%。

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