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Enhancements to 4.4 BSD UNIX for efficient networked multimedia in project MARS

机译:4.4 BSD UNIX的高效网络多媒体在项目MARS中的增强功能

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Cluster based architectures that employ inexpensive personal computers (PCs) interconnected by high speed commodity interconnect have been recognized as a cost effective way of building high performance scalable multimedia-on-demand (MOD) storage servers (W. Bolosky et al., 1996; M. Buddhikot et al., 1994). Typically, the PCs in these architectures run operating systems such as UNIX that have traditionally been optimized for interactive computing and lack fast disk-to-network data paths and support for guaranteed CPU and storage access. We report design, implementation and performance measurements of innovative enhancements to 4.4 BSD UNIX carried out to rectify these limitations in the context of our Massively-parallel And Real-time Storage (MARS) project (M. Buddhikot et al., 1994). We have proposed and implemented the following enhancements to a 4.4 BSD compliant public domain NetBSD UNIX operating system: (1) a new kernel buffer management system called Multimedia M-buf (mmbuf) which shortens the data path from a storage device to network interface; (2) fair queueing within the SCSI driver for equitable resource sharing between real time and non real time streams; and (3) integration of these new OS services with a CPU scheduling mechanism called Real Time Upcall (R. Gopal, 1996) and a software disk striping driver called Concatenated Disk (CCD). Our experimental results demonstrate that these enhancements provide throughput improvements and QOS guarantees on the data path from the disk to network.
机译:采用高速商品互连互连的廉价个人计算机(PC)的基于集群架构已被识别为建立高性能可扩展多媒体按需(MOD)存储服务器的成本有效方式(W.Bolosky等,1996; M. Bevankikot等人。,1994)。通常,这些架构中的PC在传统上已经针对交互式计算进行了优化的操作系统,缺乏用于保证CPU和存储访问的快速磁盘到网络数据路径和支持。我们向4.4 BSD UNIX报告了设计,实施和绩效测量,以便在我们大规模平行和实时存储(MARS)项目的背景下纠正这些限制(M. Bevelhikot等,1994)。我们提出并实施了以下一个4.4 BSD兼容的公共域NetBSD UNIX操作系统的增强功能:(1)一个名为Multimedia M-BUF(MMBUF)的新内核缓冲区管理系统,该系统将数据路径从存储设备缩短到网络接口; (2)SCSI驱动程序内的公平排队,用于实时和非实时流之间的公平资源共享; (3)将这些新的操作系统服务与称为实时UPCALL(R.Gopal,1996)的CPU调度机制集成,以及称为连接磁盘(CCD)的软件磁盘条带化驱动程序。我们的实验结果表明,这些增强功能提供吞吐量改进和QoS保证从磁盘到网络的数据路径。

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