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What is a Good Buffer Cache Replacement Scheme for Mobile Flash Storage?

机译:什么是移动闪存存储的良好缓冲缓存替换方案?

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Smart-phones are becoming ubiquitous and powerful. The Achilles' heel in such devices that limits performance is the storage. Low-end flash memory is the storage technology of choice in such devices due to energy, size, and cost considerations. In this paper, we take a critical look at the performance of flash on smartphones for mobile applications. Specifically, we ask the question whether the state-of-the-art buffer cache replacement schemes proposed thus far (both flash-agnostic and flash-aware ones) are the right ones for mobile flash storage. To answer this question, we first expose the limitations of current buffer cache performance evaluation methods, and propose a novel evaluation framework that is a hybrid between trace-driven simulation and real implementation of such schemes inside an operating system. Such an evaluation reveals some unexpected and surprising insights on the performance of buffer management schemes that contradicts, conventional wisdom. Armed with this knowledge, we propose a new buffer cache replacement scheme called SpatialClock. Using our evaluation framework, we show the superior performance of SpatialClock relative to the state-of-the-art for mobile flash storage.
机译:智能手机正在变得无处不在。在这些设备中的Achilles的脚跟限制了性能的是存储。由于能量,尺寸和成本考虑,低端闪存是在此类设备中选择的存储技术。在本文中,我们对移动应用程序的智能手机上的闪光灯的性能进行了关键。具体而言,我们询问迄今为止提出的最先进的缓冲缓存替换方案(闪存 - 无人物和闪光感知的)是用于移动闪存存储的最先进的缓冲缓存替换方案。为了回答这个问题,我们首先暴露了当前缓冲区缓存性能评估方法的限制,并提出了一种新颖的评估框架,该框架是在操作系统内部的追踪模拟和实际实现之间的混合。这种评价揭示了一些关于缓冲管理计划的表现意外和令人惊讶的见解,矛盾的智慧矛盾。携带这种知识,我们提出了一种名为Spatialclock的新缓冲缓存替换方案。使用我们的评估框架,我们展示了类似于移动闪存存储的最先进的Spatialclock的卓越性能。

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