多媒体应用中多核缓存锁定的性能评估

A. Asaduzzaman
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引用次数: 1

摘要

由于缓存的动态特性,在多核系统上支持实时多媒体应用是一个巨大的挑战。研究表明,缓存锁定可以提高执行时间的可预测性和功率/性能比。但是,如果被锁定的指令/数据量小于缓存大小,那么在1级缓存(CL1)上进行整个锁定可能效率不高。另一种选择可能是方式锁定(即部分锁定)。对于某些处理器,单向锁定只能在2级缓存(CL2)上实现。尽管CL1缓存锁定和CL2缓存锁定都提高了可预测性,但很难证明这两种缓存锁定机制之间的性能和功耗权衡。在这项工作中,我们评估了CL1和CL2缓存锁定对使用ISO标准H.264/AVC、MPEG4和MPEG3多媒体应用程序以及FFT和DFT代码的多核系统的性能、功耗和可预测性的影响。仿真结果表明,在高速缓存层次结构中加入高速缓存锁定机制可以提高性能和可预测性,降低总功耗。结果还表明,对于所使用的应用程序,CL1缓存锁定优于CL2缓存锁定。
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Performance Evaluation of Multicore Cache Locking using Multimedia Applications
Supporting real-time multimedia applications on multicore systems is a great challenge due to cache’s dynamic behavior. Studies show that cache locking may improve execution time predictability and power/performance ratio. However, entire locking at level-1 cache (CL1) may not be efficient if smaller amount of instructions/data compared to the cache size is locked. An alternative choice may be way (i.e., partial) locking. For some processors, way locking is possible only at level-2 cache (CL2). Even though both CL1 cache locking and CL2 cache locking improve predictability, it is difficult to justify the performance and power trade-off between these two cache locking mechanisms. In this work, we assess the impact of CL1 and CL2 cache locking on the performance, power consumption, and predictability of a multicore system using ISO standard H.264/AVC, MPEG4, and MPEG3 multimedia applications and FFT and DFT codes. Simulation results show that both the performance and predictability can be increased and the total power consumption can be decreased by using a cache locking mechanism added to a cache memory hierarchy. Results also show that for the applications used, CL1 cache locking outperforms CL2 cache locking.
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