弹性分页

Enoch Peserico
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引用次数: 7

摘要

我们研究了经典分页问题的一般化,其中内存容量可能随时间变化——这是许多现代计算现实(从云计算到多核和能量优化处理器)的特性。我们表明,当内存容量波动时,“经典”情况下的良好性能不能提供性能保证:粗略地说,从静态容量移动到动态容量可能意味着在空间、时间和能量方面的最优性在因子2以内,而次优性在因子任意大的范围内。令人惊讶的是,一些经典的分页算法仍然表现得非常好,即使面对对抗性的容量波动,也能保持因子2的最优性——而无需将这些波动明确考虑在内!
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Elastic paging
We study a generalization of the classic paging problem where memory capacity can vary over time - a property of many modern computing realities, from cloud computing to multi-core and energy-optimized processors. We show that good performance in the "classic" case provides no performance guarantees when memory capacity fluctuates: roughly speaking, moving from static to dynamic capacity can mean the difference between optimality within a factor 2 in space, time and energy, and suboptimality by an arbitrarily large factor. Surprisingly, several classic paging algorithms still perform remarkably well, maintaining that factor 2 optimality even if faced with adversarial capacity fluctuations - without taking those fluctuations into explicit account!
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