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    • 2. 发明授权
    • Method, system, and program for remote resource management
    • 用于远程资源管理的方法,系统和程序
    • US07363629B2
    • 2008-04-22
    • US10465177
    • 2003-06-19
    • James Alan Springer, Sr.Thomas Charles JarvisGail Andrea SpearSam Clark WernerRichard Kenneth MartinezMatthew SanchezTheresa Mary Brown
    • James Alan Springer, Sr.Thomas Charles JarvisGail Andrea SpearSam Clark WernerRichard Kenneth MartinezMatthew SanchezTheresa Mary Brown
    • G06F9/46
    • G06F9/505H04L29/06H04L47/39H04L67/1097H04L67/322H04L69/329
    • Provided are a method, system, and program for managing resources in which a local processor sends remote operation requests to be executed by a remote processor having multiple resources. In the illustrated embodiment, the local processor and the remote processor each have a resource manager, each of which maintains a control set for each resource of the remote processor. Each control set of the remote processor resource manager includes a queue for queuing remote operation requests awaiting execution in connection with the resource associated with the control set. Each control set of the local processor resource manager includes a credit counter which keeps track of permissible outstanding remote operation requests. Each local processor control set credit counter is decremented for each remote operation request for the associated resource sent to the remote processor and is incremented for each acknowledgment received from the remote processor. For each remote processor control set, the remote processor resource manager sends an acknowledgment for each remote operation request initiated in connection with the associated resource. For each local processor control set, the local processor resource manager queues remote operation requests if the control set credit counter falls below a threshold after being initialized in accordance with the capacity of the associated remote processor control set queue.
    • 提供了一种用于管理资源的方法,系统和程序,其中本地处理器发送由具有多个资源的远程处理器执行的远程操作请求。 在所示实施例中,本地处理器和远程处理器各自具有资源管理器,每个资源管理器为远程处理器的每个资源维护一个控制集。 远程处理器资源管理器的每个控制集合包括用于排队等待与控制集相关联的资源执行的远程操作请求的队列。 本地处理器资源管理器的每个控制组包括信用计数器,其记录允许的未完成的远程操作请求。 对于发送到远程处理器的相关资源的每个远程操作请求,每个本地处理器控制集信用计数器递减,并且对于从远程处理器接收的每个确认递增递增。 对于每个远程处理器控制集,远程处理器资源管理器发送与相关资源相关联的每个远程操作请求的确认。 对于每个本地处理器控制集合,如果在根据相关联的远程处理器控制集队列的容量初始化之后控制集信用计数器下降到阈值以下,则本地处理器资源管理器排队远程操作请求。
    • 7. 发明授权
    • Autodiscovery of business services
    • 自动发现商业服务
    • US08069181B1
    • 2011-11-29
    • US11455957
    • 2006-06-20
    • Gopal KrishnanChaitanya LaxminarayanMatthew SanchezManoj SaxenaJoel Trunick
    • Gopal KrishnanChaitanya LaxminarayanMatthew SanchezManoj SaxenaJoel Trunick
    • G06F7/00
    • G06Q10/00
    • An autodiscovery feature with an easy-to-use interface is provided to automatically collect metadata about electronic services for use within a business enterprise and to store that metadata in a metadata repository. The autodiscovery feature is used to create autodiscovery queries that are sent to electronic services to collect from the services' digests specified metadata useful for identifying the functionality of those services and integrating the services into business processes. Digests, such as RSS feeds and Atom feeds, are typically created by services to include useful metadata, such as the title of a service, the URL link to a description of the service, a brief description of the service, the publication date of the service, and other data. Autodiscovery queries can thus collect services' relevant metadata and store it in a business enterprise's metadata repository, so that the services' functionality can be quickly identified and used for business processes.
    • 提供了具有易于使用的界面的自动发现功能,可自动收集有关电子服务的元数据,以便在企业内部使用,并将该元数据存储在元数据存储库中。 自动发现功能用于创建发送到电子服务的自动发现查询,从服务摘要指定的元数据中收集有用的信息,用于识别这些服务的功能并将服务集成到业务流程中。 摘要,例如RSS订阅源和Atom订阅源通常由服务创建,以包括有用的元数据,例如服务的标题,到服务描述的URL链接,服务的简要描述,发布日期 服务等数据。 因此,自动发现查询可以收集服务的相关元数据并将其存储在企业的元数据存储库中,从而可以快速识别服务的功能并将其用于业务流程。
    • 10. 发明授权
    • Smart nodes for Web services
    • 用于Web服务的智能节点
    • US07917626B2
    • 2011-03-29
    • US12368928
    • 2009-02-10
    • Gopal KrishnanMatthew Sanchez
    • Gopal KrishnanMatthew Sanchez
    • G06F15/173G06F15/16G06F15/177G06F11/00
    • G06Q10/06G06F11/1479
    • A smart node is integrated with each Web service in a Web service application chain to automatically supply compatible features, missing functionality, and orchestration of the processes in the application, without coordination by an orchestration engine, in an embodiment. A smart node is a software program that systematically specifies the communications dimensions, functionality, and orchestration required for interoperability among Web services. The communications parameters, backup functionality, and process orchestration required for the Web services in a Web service application may be predetermined and programmed into smart nodes. The smart nodes are subsequently integrated with the Web services in a Web service application so that communications among the Web services occur first through the smart nodes. The smart nodes can thus supply communications parameters, any missing functionality, and dynamic process orchestration based on the current event context of the Web service application. A smart node further enables a Web service to supply different functionality in different contexts.
    • 在一个实施例中,智能节点与Web服务应用链中的每个Web服务集成,以自动提供兼容的功能,缺少功能以及应用程序中的流程的编排,而不需要协调编排引擎。 智能节点是一种软件程序,系统地指定Web服务之间的互操作性所需的通信维度,功能和编排。 Web服务应用程序中的Web服务所需的通信参数,备份功能和流程编排可以预先确定并编入智能节点。 智能节点随后与Web服务应用程序中的Web服务集成,以便Web服务之间的通信首先通过智能节点进行。 因此,智能节点可以基于Web服务应用程序的当前事件上下文提供通信参数,任何缺少的功能以及动态过程编排。 智能节点进一步使Web服务能够在不同的上下文中提供不同的功能。