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    • 1. 发明授权
    • Mechanism for validating the message format for message channels
    • 验证消息通道的消息格式的机制
    • US07382795B2
    • 2008-06-03
    • US10824040
    • 2004-04-14
    • Kyle G. BrownRobert Woolf
    • Kyle G. BrownRobert Woolf
    • H04L12/28H04L12/66G06F15/16
    • H04L49/90H04L69/32
    • A method for validating messages in a message queuing software environment before the messages are transmitted to the recipient programs comprising a Message Validating Program (MVP). The present invention makes the message queuing software more efficient by eliminating the transmission of invalid messages through the message channels. The MVP acquires the messages as they are originated by the sender program and analyzes the message by comparing the message header and the message body to validating criteria. The validating criteria are the properties, ranges, types, character sets, and formats of data in the message header and message body that the recipient programs will accept. If the message body and the message header meet the validating criteria, then the message is forwarded to the appropriate message queue. If the message body and/or the message header do not meet the validating criteria, then an error is indicated to the sender program.
    • 一种在将消息发送到包括消息验证程序(MVP)的接收方程序之前,在消息排队软件环境中验证消息的方法。 本发明通过消除通过消息信道的无效消息的传输,使消息排队软件更加高效。 MVP获取由发送者程序发起的消息,并通过比较消息头和消息体以验证标准来分析消息。 验证标准是接收程序将接受的消息头和消息体中的数据的属性,范围,类型,字符集和数据格式。 如果消息体和消息头满足验证条件,则将消息转发到适当的消息队列。 如果消息体和/或消息头不符合验证条件,则向发送者程序指示错误。
    • 3. 发明授权
    • Multi-protocol object distribution
    • 多协议对象分配
    • US08028303B2
    • 2011-09-27
    • US11840462
    • 2007-08-17
    • Kyle G. BrownMichael A. PerksSean M. Sundberg
    • Kyle G. BrownMichael A. PerksSean M. Sundberg
    • G06F9/44G06F15/16
    • G06F9/547H04L29/06H04L67/02H04L67/40H04L69/18
    • The present invention is a multi-protocol object distribution system. The multi-protocol object distribution system can include one or more remote procedure call (RPC) transport protocol stubs; and, a meta-stub configured to select individual ones of the RPC transport protocol stubs through which distributed object services can be provided to requesting clients in the object distribution system. The RPC transport protocol stubs can include both a default RPC transport stub, and at least one other RPC transport stub which the meta-stub can select based upon changing conditions in the object distribution system. Importantly, the meta-stub can automatically select the default RPC transport stub by default.
    • 本发明是一种多协议对象分配系统。 多协议对象分配系统可以包括一个或多个远程过程调用(RPC)传输协议存根; 以及元存根,其被配置为选择可以向对象分发系统中的请求客户端提供分布式对象服务的各个RPC传输协议存根。 RPC传输协议存根可以包括默认RPC传输存根和至少一个其他RPC传输存根,其中元存根可以基于对象分布系统中的变化条件来选择。 重要的是,元存根可以默认自动选择默认的RPC传输存根。
    • 6. 发明申请
    • Resolving Database Integration Conflicts Using Data Provenance
    • 使用数据发现解决数据库集成冲突
    • US20140025645A1
    • 2014-01-23
    • US13555559
    • 2012-07-23
    • Kyle G. BrownRada ChirkovaIoannis Viniotis
    • Kyle G. BrownRada ChirkovaIoannis Viniotis
    • G06F17/30
    • G06F17/30557G06F17/30575G06F17/30578
    • A method, a system and a computer program product for resolving conflicts between data for database integration. Data is integrated from first and second data sources to produce integrated data, and the presence of a conflict is determined between data from the first data source and data from the second data source, where one or more sets of prioritized policies for resolving conflicts is associated with data of the first and second data sources. A policy is selected from the set of prioritized policies associated with the conflicted data, where the selected policy is appropriate to resolve the conflict and includes the greatest priority. The selected policy is applied to resolve the conflict and to produce a resulting data value for the integrated data.
    • 一种用于解决数据库集成数据之间冲突的方法,系统和计算机程序产品。 从第一和第二数据源集成数据以产生集成数据,并且在来自第一数据源的数据和来自第二数据源的数据之间确定冲突的存在,其中一组或多组用于解决冲突的优先化策略相关联 具有第一和第二数据源的数据。 从与冲突数据相关联的一组优先级策略中选择策略,其中所选择的策略适合于解决冲突并且包括最大优先级。 所选策略被应用于解决冲突并产生用于集成数据的结果数据值。
    • 9. 发明授权
    • Method and apparatus for dynamic reconfiguration of web services infrastructure
    • Web服务基础设施的动态重新配置的方法和装置
    • US07822860B2
    • 2010-10-26
    • US10014106
    • 2001-12-11
    • Kyle G. BrownStephen Glen GrahamSteven M. MillerMark Douglas Weitzel
    • Kyle G. BrownStephen Glen GrahamSteven M. MillerMark Douglas Weitzel
    • G06F15/16
    • H04L67/16H04L29/06H04L67/02H04L67/34H04L69/329
    • The invention provides a software construct, herein termed a Web service container, for managing Web services at a network node and an adaptive model for the dynamic configuration of a plurality of Web service containers distributed throughout a network, such as the Internet or an intranet, in a software and hardware platform-independent manner. Containers can communicate with each other via the network to determine contextual information such as the identity of each other, the capabilities of each other, the operating system or platforms of each others, the contents of the container (i.e., the available Web services at that location), etc. By providing a container framework and the ability to exchange contextual information, the present invention allows servers as well as clients to dynamically exchange Web services software as well as contextual information, such as current workload, so that servers and clients are virtually limitlessly reconfigurable based on context.
    • 本发明提供了一种用于在网络节点处管理Web服务的软件结构(这里称为Web服务容器)和用于动态配置分布在整个网络(例如因特网或内部网)的多个Web服务容器的自适应模型, 在软件和硬件平台上独立的方式。 容器可以通过网络相互通信,以确定上下文信息,例如彼此的身份,彼此的能力,彼此的操作系统或平台,容器的内容(即,可用的Web服务 位置)等。通过提供容器框架和交换上下文信息的能力,本发明允许服务器以及客户端动态地交换Web服务软件以及诸如当前工作负载的上下文信息,使得服务器和客户端 基于上下文几乎无限可重构。