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Shaping the distributed end-system for global distributed applications

机译:为全球分布式应用程序塑造分布式终端系统

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Advances in optical networking technology provide the network with unique storage capabilities enabling the creation of a physical shared memory in a wide area distributed system. This has implications on the overall systems' architecture as well as on the host. From the user perspective the end-system will be shaped by the application and become a global distributed shared-memory multiprocessor. In this paper we propose a memory building block based on optical networking technology that we further use in devising a multiprocessor host architecture. A hierarchical memory architecture that ensures scalability and allows multiple copies of a shared object is adopted. The architecture favours hardware solutions for enforcing cache coherence by exploiting the intrinsic broadcast capability of the new memory module. The interprocess communication system suitable for such an environment is analysed in order to achieve functional transparency for applications ported from a multicomputer to a multiprocessor, and issues related to performance transparency when dealing with long light-propagation latency are addressed. With this processing-communication paradigm, the host-network interface simply provides a direct path between the host-memory and the external network-memory.
机译:光学联网技术的进步为网络提供了独特的存储功能,从而可以在广域分布式系统中创建物理共享内存。这对整个系统的体系结构以及主机都有影响。从用户的角度来看,最终系统将由应用程序构成,并成为全局分布式共享内存多处理器。在本文中,我们提出了一种基于光网络技术的内存构建块,我们将其进一步用于设计多处理器主机体系结构。采用了分层内存体系结构,该体系结构可确保可伸缩性并允许共享对象的多个副本。该体系结构偏爱通过利用新内存模块的固有广播功能来增强缓存一致性的硬件解决方案。分析了适合于这种环境的进程间通信系统,以实现从多计算机移植到多处理器的应用程序的功能透明性,并解决了在处理长的光传播延迟时与性能透明性相关的问题。利用这种处理通信范例,主机网络接口仅提供了主机内存和外部网络内存之间的直接路径。

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