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    • 2. 发明授权
    • Just-in-time activation and as-soon-as-possible deactivation or server application components
    • 即时激活和即将停用的服务器应用程序组件
    • US06631425B1
    • 2003-10-07
    • US08959139
    • 1997-10-28
    • Patrick James HellandRodney LimprechtMohsen Al-GhoseinWilfred G. RussellJan Stephen Gray
    • Patrick James HellandRodney LimprechtMohsen Al-GhoseinWilfred G. RussellJan Stephen Gray
    • G06F900
    • G06F9/44594G06F9/4493G06F9/466
    • A run-time environment implemented as system services and component integration interfaces provides scalable and robust component-based server applications by deactivating server application components between uses by a client program on separate items of work while allowing the client program to retain references to server application components when deactivated. When a server application component is deactivated, a data state of the component and any resources held by the component are released. The run-time environment activates a component on receiving a call by the client to the component while the component is deactivated, whereupon the component is instantiated with an initial data state. The client can interact with the component as if one instance of the component were in continuous existence from the time the client requests creation of the component until the client finally releases the component reference, whereas in actuality the client accesses a sequence or stream of instances using the component reference through multiple iterations of the activation and deactivation cycle.
    • 作为系统服务和组件集成接口实现的运行时环境通过在客户端程序对不同工作项目的使用之间停用服务器应用程序组件,同时允许客户端程序保留对服务器应用程序组件的引用,从而提供可扩展和强大的基于组件的服务器应用程序 停用时。 当服务器应用程序组件被禁用时,组件的数据状态和组件所保存的任何资源都被释放。 当组件被停用时,运行时环境激活组件接收客户端对组件的调用,从而组件以初始数据状态被实例化。 客户端可以与组件进行交互,就像组件的一个实例从客户端请求创建组件的时间一直持续存在,直到客户端最终释放组件引用为止,而实际上客户端访问一个或多个实例流 该组件参考通过多次迭代激活和停用循环。
    • 5. 发明授权
    • Priority registers for biasing access to shared resources
    • 偏好访问共享资源的优先级寄存器
    • US07380038B2
    • 2008-05-27
    • US11051148
    • 2005-02-04
    • Jan Stephen Gray
    • Jan Stephen Gray
    • G06F13/14G06F12/00G06F13/18G06F13/38
    • G06F13/14G06F13/1663
    • A priority register is provided for each of a multiple processor cores of a chip multiprocessor, where the priority register stores values that are used to bias resources available to the multiple processor cores. Even though such multiple processor cores have their own local resources, they must compete for shared resources. These shared resources may be stored on the chip or off the chip. The priority register biases the arbitration process that arbitrates access to or ongoing use of the shared resources based on the values stored in the priority registers. The way it accomplishes such biasing is by tagging operations issued from the multiple processor cores with the priority values, and then comparing the values within each arbiter of the shared resources.
    • 为芯片多处理器的多个处理器核心中的每一个提供优先级寄存器,优先级寄存器存储用于偏置可用于多个处理器核心的资源的值。 即使这些多个处理器核心拥有自己的本地资源,但它们必须竞争共享资源。 这些共享资源可以存储在芯片上或芯片上。 优先级寄存器根据存储在优先级寄存器中的值来偏移仲裁进程来仲裁对共享资源的访问或正在使用。 实现这种偏移的方式是通过使用优先级值标记从多个处理器核心发出的操作,然后比较共享资源的每个仲裁器内的值。