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Considering User's Access Pattern in Multimedia File Systems

机译:考虑多媒体文件系统中的用户访问模式

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摘要

Legacy buffer cache management schemes for multimedia server are grounded at the assumption that the application sequentially accesses the multimedia file. However, user access pattern may not be sequential in some circumstances, for example, in distance learning application, where the user may exploit the VCR-like function(rewind and play) of the system and accesses the particular segments of video repeatedly in the middle of sequential playback. Such a looping reference can cause a significant performance degradation of interval-based caching algorithms. And thus an appropriate buffer cache management scheme is required in order to deliver desirable performance even under the workload that exhibits looping reference behavior. We propose Adaptive Buffer cache Management (ABM) scheme which intelligently adapts to the file access characteristics. For each opened file, ABM applies either the LRU replacement or the interval-based caching depending on the Looping Reference Indicator, which indicates that how strong temporally localized access pattern is. According to our experiment, ABM exhibits better buffer cache miss ratio than interval-based caching or LRU, especially when the workload exhibits not only sequential but also looping reference property.
机译:多媒体服务器的传统缓冲区高速缓存管理方案基于应用程序顺序访问多媒体文件的假设。但是,在某些情况下,例如在远程学习应用程序中,用户访问模式可能不是顺序的,在该应用程序中,用户可以利用类似于VCR的系统功能(倒带和播放)并在中间反复访问视频的特定片段顺序播放。这样的循环引用会导致基于间隔的缓存算法的性能显着下降。因此,即使在表现出循环参考行为的工作负载下,也需要适当的缓冲区高速缓存管理方案以提供理想的性能。我们提出了自适应缓冲区缓存管理(ABM)方案,该方案可以智能地适应文件访问特征。对于每个打开的文件,ABM都会根据“循环引用指示符”应用LRU替换或基于间隔的缓存,这表明临时本地访问模式的强度。根据我们的实验,ABM具有比基于间隔的缓存或LRU更好的缓冲区缓存未命中率,尤其是当工作负载不仅具有顺序性而且还具有循环引用属性时。

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