Extreme Web Caching for Faster Web Browsing
Ali Raza, Yasir Zaki, Thomas Pötsch, Jay Chen, Lakshminarayanan Subramanian
Abstract
Ali Raza, Yasir Zaki, Thomas Pötsch, Jay Chen, Lakshminarayanan Subramanian
Abstract
Modern web pages are very complex; each web page consists of hundreds of objects that are linked from various servers all over the world. While mechanisms such as caching reduce the overall number of end-to-end requests saving bandwidth and loading time, there is still a large portion of content that is re-fetched -- despite not having changed. In this demo, we present Extreme Cache, a web caching architecture that enhances the web browsing experience through a smart pre-fetching engine. Our extreme cache tries to predict the rate of change of web page objects to bring cacheable content closer to the user.
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Modern web pages are very complex; each web page consists of hundreds of objects that are linked from various servers all over the world. While mechanisms such as caching reduce the overall number of end-to-end requests saving bandwidth and loading time, there is still a large portion of content that is re-fetched -- despite not having changed. In this demo, we present Extreme Cache, a web caching architecture that enhances the web browsing experience through a smart pre-fetching engine. Our extreme cache tries to predict the rate of change of web page objects to bring cacheable content closer to the user.
Key concepts: Computer science, Web page, Static web page, Cache, World Wide Web, Web navigation, Web server, Web API