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    • 2. 发明申请
    • SPECIFYING DISAGGREGATED COMPUTE SYSTEM
    • 指定分散的计算系统
    • WO2017175079A1
    • 2017-10-12
    • PCT/IB2017/051383
    • 2017-03-09
    • INTERNATIONAL BUSINESS MACHINES CORPORATIONIBM UNITED KINGDOM LIMITEDIBM (CHINA) INVESTMENT COMPANY LIMITED
    • SCHENFELD, EugenSALAPURA, ValentinaMAHINDRU, RuchiBIVENS, John, AlanRAMASAMY, HariGovind, VenkatrajRUAN, YaopingLI, MinDAS, Koushik
    • G06F9/445
    • Server resources in a data center are disaggregated into shared server resource pools. Servers are constructed dynamically, on-demand and based on workload requirements, by allocating from these resource pools. A disaggregated compute system of this type keeps track of resources that are available in the shared server resource pools, and it manages those resources based on that information. Each server entity built is assigned with a unique server ID, and each resource that comprises a component thereof is tagged with the identifier. As a workload is processed by the server entity, its composition may change, e.g. by allocating more resources to the server entity, or by de-allocating resources from the server entity. Workload requests are associated with the unique server ID for the server entity. When a workload request is received at a resource, it matches its unique server ID to that of the request before servicing the request.
    • 数据中心中的服务器资源被分解为共享服务器资源池。 通过从这些资源池中进行分配,服务器可根据需求按需动态构建。 这种类型的分解计算系统跟踪共享服务器资源池中可用的资源,并根据该信息管理这些资源。 每个构建的服务器实体都分配一个唯一的服务器ID,并且包含其组件的每个资源都使用该标识符进行标记。 由于服务器实体处理工作负荷,其组成可能会改变,例如, 通过向服务器实体分配更多资源,或者通过从服务器实体取消分配资源。 工作负载请求与服务器实体的唯一服务器ID相关联。 在资源接收到工作负载请求时,它会在为请求提供服务之前将其唯一的服务器ID与请求的ID相匹配。

    • 5. 发明申请
    • METHOD AND SYSTEM FOR IMPLEMENTING A STREAM PROCESSING COMPUTER ARCHITECTURE
    • 实施流程处理计算机架构的方法和系统
    • WO2010020577A1
    • 2010-02-25
    • PCT/EP2009/060483
    • 2009-08-13
    • INTERNATIONAL BUSINESS MACHINES CORPORATIONIBM UNITED KINGDOM LIMITEDSCHENFELD, EugenSMITH III, Thomas, Basil
    • SCHENFELD, EugenSMITH III, Thomas, Basil
    • G06F15/173G06F9/50
    • G06F9/5061G06F9/5083G06F15/17343Y02D10/22Y02D10/36
    • A method for implementing a stream processing computer architecture includes creating a stream computer processing (SCP) system by forming a super node cluster of processors representing physical computation nodes ("nodes"), communicatively coupling the processors via a local interconnection means ("interconnect"), and communicatively coupling the cluster to an optical circuit switch (OCS), via optical external links ("links"). The OCS is communicatively coupled to another cluster of processors via the links. The method also includes generating a stream computation graph including kernels and data streams, and mapping the graph to the SCP system, which includes assigning the kernels to the clusters and respective nodes, assigning data stream traffic between the kernels to the interconnection when the data stream is between nodes in the same cluster, and assigning traffic between the kernels to the links when the data stream is between nodes in different clusters. The method also includes configuring the OCSs to provide connectivity between mapped clusters.
    • 一种用于实现流处理计算机体系结构的方法包括:通过形成表示物理计算节点(“节点”)的处理器的超级节点群集,经由本地互连装置(“互连”)通信地耦合处理器来创建流计算机处理(SCP) ),并且通过光学外部链路(“链路”)将集群通信地耦合到光电路交换机(OCS)。 OCS通过链路通信耦合到另一个处理器集群。 该方法还包括生成包括内核和数据流的流计算图,并将该图映射到SCP系统,该SCP系统包括将内核分配给群集和相应节点,当数据流在内核之间分配数据流业务到互连 在同一集群中的节点之间,并且当数据流在不同集群中的节点之间时,将内核之间的业务分配给链路。 该方法还包括配置OCS以提供映射的集群之间的连接。