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Efficient memory reclaiming for mitigating sluggish response in mobile devices

机译:高效的内存回收,可减轻移动设备的响应缓慢

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Mobile devices based on flash memory have unique hardware characteristics. They have different memory management mechanisms such as no memory swapping and app cache. Android platform adopts new modules such as low memory killer (LMK), activity manager service (AMS) besides kswapd and out of memory killer (OOMK). However, these modules generate many Kernel function calls that incur sluggish responses and inefficient app cache utilization, which reduces the chances of fast app re-launching. Thus, we propose an efficient memory management module called memory orchestration system (MOS) using dynamic page cache size and killed application counts. According to the experiments with 26 applications, it reduced the number of function calls by 84%. In addition, MOS keeps efficiently the app cache compared to the original Android system by 34.1%.
机译:基于闪存的移动设备具有独特的硬件特性。它们具有不同的内存管理机制,例如没有内存交换和应用程序缓存。 Android平台除了kswapd和内存不足杀手(OOMK)之外,还采用了诸如低内存杀手(LMK),活动管理器服务(AMS)之类的新模块。但是,这些模块会生成许多内核函数调用,这些调用会导致响应缓慢和应用程序缓存利用率低下,从而降低了应用程序快速重新启动的机会。因此,我们提出了一个有效的内存管理模块,称为内存编排系统(MOS),它使用动态页面缓存大小和终止的应用程序计数。根据对26个应用程序进行的实验,它减少了84%的函数调用次数。此外,与原始Android系统相比,MOS可以有效地保持应用程序缓存34.1%。

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