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Service address routing: a network-embedded resource management layer for cluster computing

机译:服务地址路由:用于群集计算的网络嵌入式资源管理层

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Service address routing is introduced as a novel and powerful paradigm for the integration of resource management functions into the interconnection fabric of cluster computers. SAR provides a "location independent" mechanism for the distribution of computations (services) among the computational resources of the cluster. The intelligence to allocate services and, later on, invoke their instantiation is embedded into intelligent switching devices [Isaac D. Scherson, C.-K. Chien, Least common ancestor networks, VLSI Design 2(4) (1995) 353-364]. Invocation of services is effected transparently to requesting nodes by these network-embedded management functions. Thus, applications can benefit from the inherent parallelism of the cluster while being totally unaware of the specific "location" where required services are rendered. The performance of SAR's service discovery mechanism in hierarchical Least Common Ancestor Networks is studied by means of simulating two different system configurations: level-global knowledge and Level Caches. It is shown that searches using Level Caches work better than level-global knowledge for a typical scientific computing workload.
机译:服务地址路由是一种新颖而强大的范例,可用于将资源管理功能集成到群集计算机的互连结构中。 SAR提供了一种“位置无关”的机制,用于在群集的计算资源之间分配计算(服务)。用于分配服务并随后调用其实例化的智能被嵌入到智能交换设备中[Isaac D. Scherson,C.-K. Chien,最小公共祖先网络,VLSI Design 2(4)(1995)353-364]。这些网络嵌入式管理功能对请求节点透明地实现服务调用。因此,应用程序可以从群集的固有并行性中受益,同时完全不知道提供所需服务的特定“位置”。通过模拟两种不同的系统配置来研究SAR的服务发现机制在分层的最小公共祖先网络中的性能:全局级别的知识和级别高速缓存。结果表明,对于典型的科学计算工作负载,使用级别缓存进行的搜索要比全局级别的知识更好。

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