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High-performance and energy-efficient mobile web browsing on big/little systems

机译:大/小系统上的高性能和节能移动网络浏览

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Internet web browsing has reached a critical tipping point. Increasingly, users rely more on mobile web browsers to access the Internet than desktop browsers. Meanwhile, webpages over the past decade have grown in complexity by more than tenfold. The fast penetration of mobile browsing and everricher webpages implies a growing need for high-performance mobile devices in the future to ensure continued end-user browsing experience. Failing to deliver webpages meeting hard cut-off constraints could directly translate to webpage abandonment or, for e-commerce websites, great revenue loss. However, mobile devices' limited battery capacity limits the degree of performance that mobile web browsing can achieve. In this paper, we demonstrate the benefits of heterogeneous systems with big/little cores each with different frequencies to achieve the ideal trade-off between high performance and energy efficiency. Through detailed characterizations of different webpage primitives based on the hottest 5,000 webpages, we build statistical inference models that estimate webpage load time and energy consumption. We show that leveraging such predictive models lets us identify and schedule webpages using the ideal core and frequency configuration that minimizes energy consumption while still meeting stringent cut-off constraints. Real hardware and software evaluations show that our scheduling scheme achieves 83.0% energy savings, while only violating the cut-off latency for 4.1% more webpages as compared with a performance-oriented hardware strategy. Against a more intelligent, OS-driven, dynamic voltage and frequency scaling scheme, it achieves 8.6% energy savings and 4.0% performance improvement simultaneously.
机译:Internet Web浏览已达到临界点。越来越多地,用户更多地依赖移动Web浏览器来访问互联网,而不是桌面浏览器。与此同时,过去十年的网页在复杂程度上长出了十多倍。移动浏览和远程网页的快速渗透意味着在将来的高性能移动设备上越来越需要,以确保持续的最终用户浏览体验。未能提供会议的网页核心截止约束可以直接转化为网页遗弃或为电子商务网站,巨大的收入损失。然而,移动设备的电池容量限制了移动网络浏览可以实现的性能程度。在本文中,我们展示了具有大/小核心的异构系统的益处,每个频率都有不同的频率,以实现高性能和能效之间的理想权衡。通过基于最热门的5,000个网页的不同网页原语的详细描述,建立估计网页负荷时间和能量消耗的统计推理模型。我们表明利用此类预测模型允许我们使用最大限度地识别和安排网页,以最小化能量消耗,同时仍会满足严格的截止约束。真实的硬件和软件评估表明,我们的调度方案能节省83.0%,同时只违反了与以性能为导向的硬件策略相比的网页的4.1%的截止延迟。针对更智能,操作系统驱动,动态电压和频率缩放方案,它同时实现了8.6%的节能和4.0%的性能改进。

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