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Prefetching the means for document transfer: a new approach for reducing Web latency

机译:预取文档传输方式:减少Web延迟的新方法

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User-perceived latency is recognized as the central performance problem in the Web. We systematically measure factors contributing to this latency, across several locations. Our study reveals that DNS query times, TCP connection establishment, and start-of-session delays at HTTP servers, more so than transmission time, are major causes of long waits. Wait due to these factors also afflicts high-bandwidth users and has detrimental effect on perceived performance. We propose simple techniques that address these factors: (i) pre-resolving host-names (pre-performing DNS lookup); (ii) pre-connecting (prefetching TCP connections prior to issuance of HTTP request); and (iii) pre-warming (sending a "dummy" HTTP HEAD request to Web servers). Trace-based simulations demonstrate a potential to reduce perceived latency dramatically. Our techniques surpass document prefetching in performance improvement per bandwidth used and can be used with non-prefetchable URL. Deployment of these techniques at Web browsers or proxies does not require protocol modifications or the cooperation of other entities. Applicable servers can be identified, for example, by analyzing hyperlinks. Bandwidth overhead is minimal, and so is processing overhead at the user's browser. We propose scalable deployment solutions to control the potential overhead to proxies and particularly to Web servers.
机译:用户感知的延迟被认为是Web中的主要性能问题。我们在多个位置系统地测量了导致此延迟的因素。我们的研究表明,DNS查询时间,TCP连接建立以及HTTP服务器上的会话开始延迟比传输时间更重要,这是长时间等待的主要原因。由于这些因素而导致的等待也困扰着高带宽用户,并对感知性能产生不利影响。我们提出了解决这些因素的简单技术:(i)预先解析主机名(预先执行DNS查找); (ii)预连接(在发出HTTP请求之前预取TCP连接); (iii)预热(将“虚拟” HTTP HEAD请求发送到Web服务器)。基于跟踪的仿真显示了显着减少感知延迟的潜力。我们的技术在使用的每个带宽上在性能改进方面超过了文档预取,并且可以与不可预取的URL一起使用。在Web浏览器或代理中部署这些技术不需要协议修改或其他实体的合作。例如,可以通过分析超链接来标识适用的服务器。带宽开销是最小的,因此用户浏览器上的处理开销也是最小的。我们提出了可伸缩的部署解决方案,以控制代理(尤其是Web服务器)的潜在开销。

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