论文标题

SMSE:多媒体云系统的无服务器平台

SMSE: A Serverless Platform for Multimedia Cloud Systems

论文作者

Denninnart, Chavit, Salehi, Mohsen Amini

论文摘要

除了特定于域的计算(ASIC硬件)和特定于域的编程语言外,我们设想下一步是域特异性云平台的出现。以无服务的方式为流行应用程序开发此类平台,不仅可以为用户和提供商提供更高的效率,而且还可以加快应用程序开发周期,并使用户能够以解决方案为导向并专注于其特定的业务逻辑。将多媒体流视为IT行业中最时尚的应用之一,这项研究的目的是开发SMSE,SMSE是多媒体流的第一个特定领域的无服务器平台。 SMSE通过使内容提供商(甚至最终用户)在多媒体内容上迅速发展其所需功能,从而使多媒体服务开发民主化。在开发SMSE后,这项研究的下一个目标是应对其效率挑战,并开发一种功能容器配置方法,该方法可以有效地利用云资源并改善用户的QoS。特别是,我们开发了一种动态方法,该方法可根据函数的时空和数据依赖性特征来提供耐用或短暂的容器。评估现实世界设置下SMSE的原型实现,证明了其减少容器化开销的能力,以及在提供多媒体处理功能(最多30%)的MakePAN时间与在通用服务器无用云系统中使用的功能提供方法相比。

Along with the rise of domain-specific computing (ASICs hardware) and domain-specific programming languages, we envision that the next step is the emergence of domain-specific cloud platforms. Developing such platforms for popular applications in the serverless manner, not only can offer a higher efficiency to both users and providers, it can also expedite the application development cycles and enable users to become solution-oriented and focus on their specific business logic. Considering multimedia streaming as one of the most trendy applications in the IT industry, the goal of this study is to develop SMSE, the first domain-specific serverless platform for multimedia streaming. SMSE democratizes multimedia service development via enabling content providers (or even end-users) to rapidly develop their desired functionalities on their multimedia contents. Upon developing SMSE, the next goal of this study is to deal with its efficiency challenges and develop a function container provisioning method that can efficiently utilize cloud resources and improve the users' QoS. In particular, we develop a dynamic method that provisions durable or ephemeral containers depending on the spatiotemporal and data-dependency characteristics of the functions. Evaluating the prototype implementation of SMSE under real-world settings demonstrates its capability to reduce both the containerization overhead, and the makespan time of serving multimedia processing functions (by up to 30%) in compare to the function provision methods that are being used in the general-purpose serverless cloud systems.

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