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    • 3. 发明申请
    • Accessing and manipulating data in a data flow graph
    • 访问和操作数据流图中的数据
    • US20070198457A1
    • 2007-08-23
    • US11348388
    • 2006-02-06
    • Brad OlenickClemens SzyperskiDavid HuntGregory HughesWilliam ManisTerry Zmrhal
    • Brad OlenickClemens SzyperskiDavid HuntGregory HughesWilliam ManisTerry Zmrhal
    • G06F17/30
    • G06F17/30569Y10S707/966
    • The present invention extends to methods, systems, and computer program products for accessing and manipulating data in a data flow graph. A data flow graph includes one more transforms for transforming data from one or more data stores into different formats accessible to clients. Transforms can be configured to join and split data from the same or different data stores. A metadata tree logically represents the data flow graph including locations that provide output from transforms of the data flow graph. The locations can be referenced by clients to access transformed outputs. Clients can register dependencies on data at various locations and can request evaluation of the data in response to data changes at a corresponding data store. Clients can also request data changes be propagated back through the data flow graph to one or more data stores and implemented at the one or more data stores.
    • 本发明扩展到用于在数据流图中访问和操纵数据的方法,系统和计算机程序产品。 数据流图包括用于将数据从一个或多个数据存储转换成客户可访问的不同格式的一个变换。 可以将变换配置为从相同或不同的数据存储中加入和分割数据。 元数据树逻辑地表示数据流图,包括提供数据流图变换输出的位置。 客户端可以引用这些位置来访问变换后的输出。 客户端可以对各个位置的数据进行注册依赖关系,并且可以根据相应数据存储中的数据更改来请求对数据的评估。 客户还可以要求数据更改通过数据流图传播回一个或多个数据存储并在一个或多个数据存储区实现。
    • 7. 发明申请
    • Entity domains
    • 实体域
    • US20060070031A1
    • 2006-03-30
    • US10955693
    • 2004-09-30
    • Clemens SzyperskiBrad OlenickBalasubramanian ShyamsundarArshad AhmadArthur Watson
    • Clemens SzyperskiBrad OlenickBalasubramanian ShyamsundarArshad AhmadArthur Watson
    • G06F9/44
    • G06F9/54
    • Strategies are described for organizing the runtime components of an application into an entity domain framework. The entity domain framework includes one or more entity domains arranged in a hierarchical fashion. Each entity domain further groups one or more components together in a hierarchical fashion. Each entity domain can include one or more services that provide a policy to the components within the entity domain. Composite functionality couples the framework together, and further provides a bus-like mechanism whereby an entity can forward service requests up through the hierarchy until a domain is found that satisfies the requests. Exemplary services provided by the entity domain framework include lifetime management services, error handling services, and so forth. The hierarchical structure provides an efficient way of exposing functionality to groups of components that will share this functionality in a common context, without requiring costly and complex atomistic coupling of services to components or duplication of service instances.
    • 描述了将应用程序的运行时组件组织到实体域框架中的策略。 实体域框架包括以分层方式排列的一个或多个实体域。 每个实体域进一步以分层方式将一个或多个组件组合在一起。 每个实体域可以包括向实体域内的组件提供策略的一个或多个服务。 复合功能将框架耦合在一起,并且进一步提供总线类机制,由此实体可以通过层次结构向上转发服务请求,直到找到满足请求的域。 由实体域框架提供的示例性服务包括终身管理服务,错误处理服务等。 层次结构提供了一种有效的方法,将功能暴露给将在共同的上下文中共享该功能的组件组,而不需要昂贵且复杂的原子耦合服务到组件或服务实例的重复。