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    • 3. 发明授权
    • Highly available large scale network and internet systems
    • 高可用的大型网络和互联网系统
    • US08495557B2
    • 2013-07-23
    • US12061668
    • 2008-04-03
    • Anders B. VinbergDavid G. CampbellJames R. HamiltonDonald F. FergusonEmre M. Kiciman
    • Anders B. VinbergDavid G. CampbellJames R. HamiltonDonald F. FergusonEmre M. Kiciman
    • G06F17/30G06F12/00
    • G06F17/30
    • Described is a technology by which a system corresponding to a large scale application is built from subsystems that are differentiated from one another based on characteristics of each subsystem. Example characteristics include availability, reliability, redundancy, statefulness and/or performance. Subsystems are matched to known design patterns, based on each subsystem's individual characteristics. Each subsystem's characteristics are associated with that subsystem for subsequent use in operation of the system, e.g., for managing/servicing the subsystem. The known design patterns may be provided in a library, in a programming framework, in conjunction with a development tool, and/or as data associated with one or more operating system services, server systems and/or hosted services that include at least one configuration, policy and or schema. Certain design patterns and/or characteristics patterns may be blocked to prevent their usage.
    • 描述了一种基于每个子系统的特征,从与彼此不同的子系统构建与大规模应用相对应的系统的技术。 示例特性包括可用性,可靠性,冗余性,状态性和/或性能。 基于每个子系统的各个特征,子系统与已知的设计模式相匹配。 每个子系统的特征与该子系统相关联,用于随后在系统的操作中使用,例如用于管理/维护子系统。 已知的设计模式可以在库,编程框架中与开发工具一起提供,和/或作为与一个或多个操作系统服务,服务器系统和/或托管服务相关联的数据提供,其包括至少一个配置 ,策略和/或模式。 某些设计模式和/或特征模式可能被阻止以防止其使用。
    • 7. 发明授权
    • Method and system for retrieval of stored graphs
    • 存储图形检索方法和系统
    • US4852019A
    • 1989-07-25
    • US825081
    • 1986-01-31
    • Anders B. VinbergThomas J. WrightKenneth A. Lehman
    • Anders B. VinbergThomas J. WrightKenneth A. Lehman
    • G06T1/00G06F17/30
    • G06F17/30265
    • Automation of retrieval of stored graphs in a multi-user system having a central processing facility with processes that create and translate graphical representation into varying levels of readable expression. The created, translated representations are stored in system storage in the form of graph files. The invention is expressed as a method that tabularizes stored graph files by table entries, each identifying a specific graph and including a listing of the corresponding graph files produced for the graph. When a user of the system identifies a graph by table entry and specifies a machine output or modification function to be performed on the identified graph, the tabularized entries are searched to locate an entry for the identified graph. Once the correct table entry is found, the graph file listing is searched according to a user-specified representation preference ordering in the form of a priority schedule to determine whether a specified output function can be performed with any of the stored graph files stored for the identified graph. If a match is found between one of the representations stored for the graph and one of the representations in the priority schedule, the matched file is retrieved from storage and translated to the level required for the function. The translated file is then dispatched to a graphical output device for performance of the function.
    • 在具有中央处理设施的多用户系统中检索存储的图形的自动化,其具有创建和将图形表示转换成不同级别的可读表达式的过程。 创建的,翻译的表示以图形文件的形式存储在系统存储器中。 本发明表示为通过表格表格化存储的图形文件的方法,每个表格标识特定图形并且包括为图形生成的对应的图形文件的列表。 当系统的用户通过表条目识别图形并指定要在识别的图形上执行的机器输出或修改功能时,搜索表格化的条目以找到用于所识别的图形的条目。 一旦找到了正确的表格条目,就可以根据用户指定的表示优先级排序以优先级调度的形式搜索图形文件列表,以确定是否可以对任何存储的图形文件执行指定的输出功能, 识别图。 如果在为图表存储的一个表示和优先级调度中的一个表示之间找到匹配,则从存储中检索匹配的文件并将其转换为该功能所需的级别。 然后将转换的文件分派到图形输出设备以执行该功能。