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    • 31. 发明申请
    • SYSTEM AND ARTICLE OF MANUFACTURE FOR USING HOST AND STORAGE CONTROLLER PORT INFORMATION TO CONFIGURE PATHS BETWEEN A HOST AND STORAGE CONTROLLER
    • 使用主机和存储控制器端口信息制造的系统和文章在主机和存储控制器之间配置PATHS
    • US20080301333A1
    • 2008-12-04
    • US11757902
    • 2007-06-04
    • Eric Kevin ButlerPi-Wei ChinScott J. ColbeckKaladhar Voruganti
    • Eric Kevin ButlerPi-Wei ChinScott J. ColbeckKaladhar Voruganti
    • G06F3/00
    • G06F3/0635G06F3/0607G06F3/067G06F2206/1012H04L67/1002H04L67/101H04L67/1023
    • Provided are a system and article of manufacture for using host and storage controller port information to configure paths between a host and storage controller. Information is gathered on ports on at least one host, ports on at least one storage controller managing access to storage volumes, and at least one fabric over which the at least one host and storage controller ports connect. For at least one host port and storage controller port, information is gathered on a connection metric related to a number of paths in which the port is configured and a traffic metric indicating Input/Output (I/O) traffic at the port. A determination is made of available ports for one host and storage controller that are available to provide paths between one host and storage controller. The connection and traffic metrics for the available host ports are processed to select at least one host port. The connection and traffic metrics for the available storage controller ports are processed to select at least one storage controller port. The at least one selected host and storage controller port pair are configured to provide at least one path enabling the host to communicate with the selected storage controller port to access at least one storage volume managed by the selected storage controller.
    • 提供了一种用于使用主机和存储控制器端口信息来配置主机和存储控制器之间的路径的系统和制品。 信息在至少一个主机上的端口上收集,至少一个存储控制器上的端口管理对存储卷的访问,以及至少一个结构,至少一个主机和存储控制器端口连接在该结构上。 对于至少一个主机端口和存储控制器端口,在与端口配置的路径数量相关的连接度量以及指示端口上的输入/输出(I / O)流量的流量度量上收集信息。 确定可用于在一个主机和存储控制器之间提供路径的一个主机和存储控制器的可用端口。 处理可用主机端口的连接和流量指标以至少选择一个主机端口。 处理可用存储控制器端口的连接和流量指标,以至少选择一个存储控制器端口。 所述至少一个选择的主机和存储控制器端口对被配置为提供至少一个路径,使得所述主机能够与所选择的存储控制器端口通信以访问由所选存储控制器管理的至少一个存储卷。
    • 36. 发明申请
    • System and method for self-configuring and adaptive offload card architecture for TCP/IP and specialized protocols
    • 用于TCP / IP和专用协议的自配置和自适应卸载卡架构的系统和方法
    • US20050188074A1
    • 2005-08-25
    • US10754778
    • 2004-01-09
    • Kaladhar VorugantiSandeep UttamchandaniPiyush Shivam
    • Kaladhar VorugantiSandeep UttamchandaniPiyush Shivam
    • G06F15/173H04L29/06
    • H04L69/12
    • An intelligent offload engine to configure protocol processing between a host and the intelligent offload engine in order to improve optimization of protocol processing is provided. The intelligent offload engine provides for evaluating the host and the host environment to identify system parameters associated with the host and a host bus adapter card, wherein the intelligent offload engine exists at the host bus adapter card. Also, the intelligent offload engine determines the ability of the host and the intelligent offload engine to perform protocol processing according to the identified system parameters. In addition, the intelligent offload engine determines an optimal protocol processing configuration between the host and the intelligent offload engine, according to the determined ability of the host to perform protocol processing and the intelligent offload engine ability to perform protocol processing. Moreover, the intelligent offload engine implements the determined optimal protocol processing configuration.
    • 提供了一种智能卸载引擎,用于配置主机和智能卸载引擎之间的协议处理,以提高协议处理的优化。 智能卸载引擎用于评估主机和主机环境,以识别与主机和主机总线适配卡相关的系统参数,其中智能卸载引擎存在于主机总线适配器卡上。 此外,智能卸载引擎确定主机和智能卸载引擎根据所识别的系统参数执行协议处理的能力。 另外,智能卸载引擎根据主机执行协议处理的能力和智能卸载引擎执行协议处理的能力,确定主机与智能卸载引擎之间的最优协议处理配置。 此外,智能卸载引擎执行确定的最佳协议处理配置。
    • 40. 发明授权
    • Content repository implemented in a network storage server system
    • 内容存储库在网络存储服务器系统中实现
    • US08180813B1
    • 2012-05-15
    • US12633718
    • 2009-12-08
    • Garth GoodsonShankar PasupathyThirumale NiranjanRavi KavuriKaladhar VorugantiSudhir Srinivasan
    • Garth GoodsonShankar PasupathyThirumale NiranjanRavi KavuriKaladhar VorugantiSudhir Srinivasan
    • G06F17/30
    • G06F17/30997
    • A network storage server system includes a distributed object store, a presentation layer, a metadata subsystem, and a content management subsystem. The object store has no namespace and provides location-independent addressing of data objects. The presentation layer provides multiple interfaces for accessing data stored in the object store, including a NAS interface and a Web Service interface, and provides at least one namespace for accessing data via the NAS interface or the Web Service interface. The Web Service interface allows access to stored data via the namespace or without using the namespace (“raw object” access). The metadata subsystem stores user-specified and/or system-generated metadata relating to data objects and allows data objects to be identified and retrieved by searching on the metadata. The content management subsystem autonomously manages lifecycles of data objects according to user-specified policies, based on metadata associated with the data objects and tracked by the metadata subsystem.
    • 网络存储服务器系统包括分布式对象存储,表示层,元数据子系统和内容管理子系统。 对象存储没有命名空间,并提供数据对象的位置无关寻址。 表示层提供多个接口,用于访问存储在对象存储中的数据,包括NAS接口和Web服务接口,并提供至少一个用于通过NAS接口或Web服务接口访问数据的命名空间。 Web服务界面允许通过命名空间访问存储的数据,也可以不使用命名空间(“raw object”访问))。 元数据子系统存储与数据对象相关的用户指定的和/或系统生成的元数据,并允许通过搜索元数据来识别和检索数据对象。 内容管理子系统根据用户指定的策略,根据与数据对象相关联并由元数据子系统跟踪的元数据自主地管理数据对象的生命周期。