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Linux page fault analysis in android systems

机译:Android系统中的Linux页面故障分析

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In modern smartphones, system performances are tightly related to a variety of underlying subsystems. In particular, internal storage, along the years, has become crucial because it is extensively used to access content relevant to the system and, finally, to the end user. To understand its role in a commercial Android smartphone and to evaluate its effects on the User experience, within the context of a real usage, we analyzed Linux page fault handling, a critical mechanism that puts pressure on storage devices and may cause system inefficiencies. A kernel tracing technique has been conceived for real-time measurement of Android applications and services on commercial smartphones. The experimental results presented in this work are derived from the use of this kernel tracing on a 64-bit Android smartphone, equipped with a UFS storage subsystem. The main subject of the study is major page fault handling, a kernel mechanism behind many end-user actions recognized at industry level as source of possible performance deterioration in a smartphone. The analysis shows that major page fault handling is dominated by read accesses to UFS (between 30% and 40% of the total time), and that the related storage traffic is significantly affected by the ReadAhead mechanism, which is not always efficient. (C) 2019 Elsevier B.V. All rights reserved.
机译:在现代智能手机中,系统性能与各种底层子系统紧密相关。特别地,多年来,内部存储已经变得至关重要,因为内部存储被广泛用于访问与系统相关的内容,并最终访问最终用户。为了了解其在商用Android智能手机中的作用并评估其对用户体验的影响,我们在实际使用的情况下分析了Linux页面错误处理,这是一种对存储设备施加压力并可能导致系统效率低下的关键机制。已经想到了一种内核跟踪技术,用于实时测量商用智能手机上的Android应用程序和服务。这项工作中展示的实验结果来自在配备UFS存储子系统的64位Android智能手机上使用此内核跟踪的结果。该研究的主要主题是主要的页面错误处理,这是许多最终用户行为背后的内核机制,在行业一级被认为是智能手机性能可能下降的根源。分析表明,主要的页面错误处理由对UFS的读取访问(占总时间的30%至40%)控制,并且相关的存储流量受到ReadAhead机制的显着影响,而这种机制并不总是有效的。 (C)2019 Elsevier B.V.保留所有权利。

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