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    • 6. 发明授权
    • On-line reorganization in object-oriented databases
    • 面向对象数据库的在线重组
    • US06343296B1
    • 2002-01-29
    • US09389337
    • 1999-09-03
    • Mohana Krishna LakhamrajuRajeev RastogiSrinivasan SeshadriSundararajarao Sudarshan
    • Mohana Krishna LakhamrajuRajeev RastogiSrinivasan SeshadriSundararajarao Sudarshan
    • G06F1730
    • G06F17/30607Y10S707/99938Y10S707/99943Y10S707/99944
    • An on-line reorganization method of an object-oriented database with physical references involves a novel fuzzy traversal of the database, or a partition thereof, to identify the approximate parents of all migrating objects. Where the entire database is traversed the process begins from its persistent root. For traversals of a partition the process begins from each object with a reference pointing to it from outside the partition. To facilitate the identification of these inter-partitional objects an External Reference Table (“ERT”) is maintained. During the fuzzy traversal all new inserted and deleted references are tracked in a Temporary Reference Table (“TRT”). After the fuzzy traversal is completed, for each migrating object, a lock is obtained on the identified approximate parents and on all new parents in which references to the object were inserted, as indicated by the TRT. Based on the information in the TRT, locks are released on all approximate parents whose references to the object have been deleted. The references to the migrating object in the remaining set of locked parents are updated, the object is relocated and the locks are released. Alternatively, each parent of a migrating object can be individually locked, updated and released.
    • 具有物理引用的面向对象数据库的在线重组方法涉及数据库或其分区的新颖的模糊遍历,以识别所有迁移对象的近似父母。 在整个数据库遍历的过程中,进程从其持久根开始。 对于遍历分区,进程从每个对象开始,引用从分区外部引用它。 为了便于识别这些跨部门对象,维护了外部参考表(“ERT”)。 在模糊遍历期间,所有新插入和删除的引用将在临时参考表(“TRT”)中进行跟踪。 模糊遍历完成后,对于每个迁移对象,在所标识的近似父母以及所有新父母上获取锁定,其中插入了对象的引用,如TRT所示。 根据TRT中的信息,在对对象的引用已被删除的所有近似父类上释放锁。 在剩余的一组锁定的父项中对迁移对象的引用被更新,对象被重新定位并且锁被释放。 或者,可以单独锁定,更新和释放迁移对象的每个父项。
    • 9. 发明授权
    • Determination of physical topology of a communication network
    • 确定通信网络的物理拓扑
    • US06697338B1
    • 2004-02-24
    • US09428419
    • 1999-10-28
    • Yuri BreitbartMinos N. GarofalakisClifford Eric MartinRajeev RastogiSrinivasan SeshadriAbraham Silberschatz
    • Yuri BreitbartMinos N. GarofalakisClifford Eric MartinRajeev RastogiSrinivasan SeshadriAbraham Silberschatz
    • H04L1228
    • H04L41/12
    • Physical connectivity is determined between elements such as switches and routers in a multiple subnet communication network. Each element has one or more interfaces each of which is physically linked with an interface of another network element. Address sets are generated for each interface of the network elements, wherein members of a given address set correspond to network elements that can be reached from the corresponding interface for which the given address set was generated. The members of first address sets generated for corresponding interfaces of a given network element, are compared with the members of second address sets generated for corresponding interfaces of network elements other than the given element. A set of candidate connections between an interface of the given network element and one or more interfaces of other network elements, are determined. If more than one candidate connection is determined, connections with network elements that are in the same subnet as the given network element are eliminated from the set.
    • 在多个子网通信网络中的诸如交换机和路由器的元件之间确定物理连接性。 每个元件具有一个或多个接口,每个接口与另一个网络元件的接口物理连接。 为网络元件的每个接口生成地址集,其中给定地址集合的成员对应于可以从生成给定地址集的相应接口到达的网络元素。 将给定网元的相应接口生成的第一地址集的成员与为给定元素以外的网元的相应接口生成的第二地址集的成员进行比较。 确定给定网络元件的接口与其他网络元件的一个或多个接口之间的一组候选连接。 如果确定了多个候选连接,则与组中与网络元素位于与给定网络元素相同的子网中的连接被消除。