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    • 7. 发明申请
    • NAMING ALGORITHM FOR EXTENSION FIELDS IN DE-NORMALIZED VIEWS
    • 非正规化视图中扩展场的命名算法
    • US20140053133A1
    • 2014-02-20
    • US13586189
    • 2012-08-15
    • Uwe SchlarbRene DehnDaniel FigusDaniel NiehoffStefan BaeuerleGeorg Wilhelm
    • Uwe SchlarbRene DehnDaniel FigusDaniel NiehoffStefan BaeuerleGeorg Wilhelm
    • G06F9/44
    • G06F8/24
    • An extension naming approach for avoiding naming collisions in de-normalized view on a business object can include accessing a reference field bundle, which includes reference field(s) corresponding to a core business object defined in a core software platform of a software architecture, from a metadata repository. A user can define an extension to the business object based on the core business object, for example via a development environment. The reference field(s) can include a defined path from a node in a peripheral object to a corresponding node in the core business object. A unique and reproducible name for the extension field can be generated based on the reference field, and the extension field with the unique and reproducible name can be added to the business object and to a data model of the peripheral object.
    • 用于避免在业务对象的去规范化视图中命名冲突的扩展命名方法可以包括访问参考字段束,其包括对应于在软件体系结构的核心软件平台中定义的核心业务对象的引用字段, 元数据存储库。 用户可以基于核心业务对象(例如通过开发环境)定义业务对象的扩展。 参考字段可以包括从外围对象中的节点到核心业务对象中的对应节点的定义的路径。 可以基于参考字段生成扩展字段的唯一且可重现的名称,具有唯一且可重现的名称的扩展字段可以添加到业务对象和外围对象的数据模型。
    • 8. 发明申请
    • Software and method for utilizing a common database layout
    • 利用公共数据库布局的软件和方法
    • US20080162415A1
    • 2008-07-03
    • US11647909
    • 2006-12-28
    • Martin KaiserRene DehnGisella Dominguez AnzuinelliRene Gross
    • Martin KaiserRene DehnGisella Dominguez AnzuinelliRene Gross
    • G06F17/30
    • G06F17/3056
    • This disclosure provides various embodiments of software for utilizing a common database layout. In one aspect, a first database table having a first layout and a generic index is accessed using a first instance of a query, and a second database table having a second layout and the generic index is accessed using a second instance of the query. Some implementations may have a generic index that consists of a globally unique identifier. Other implementations may have a generic index that is a combination of database table fields. In some implementations, the first and second database tables may be resident in a first data repository, and the software may access a third database table having a third layout and the generic index using a third instance of the query, wherein the third database table is resident in a second data repository.
    • 本公开提供了用于利用公共数据库布局的软件的各种实施例。 在一个方面,使用查询的第一实例来访问具有第一布局和通用索引的第一数据库表,并且具有第二布局的第二数据库表和使用查询的第二实例来访问通用索引。 一些实现可以具有由全局唯一标识符组成的通用索引。 其他实现可以具有作为数据库表字段的组合的通用索引。 在一些实现中,第一和第二数据库表可以驻留在第一数据存储库中,并且软件可以使用查询的第三实例访问具有第三布局的第三数据库表和通用索引,其中第三数据库表是 驻留在第二个数据存储库中。
    • 9. 发明申请
    • Methods and systems for reducing database accesses in an object-oriented system
    • 减少面向对象系统中数据库访问的方法和系统
    • US20070005666A1
    • 2007-01-04
    • US11171196
    • 2005-07-01
    • Udo KleinRene GrossRene Dehn
    • Udo KleinRene GrossRene Dehn
    • G06F17/30
    • G06F17/30607Y10S707/99954
    • Systems and methods are disclosed for minimizing database accesses in an object-oriented system. The disclosed systems and methods may involve opening an object in a buffer, wherein the buffer is operative to store both an active version of the object comprising active content and an inactive version of the object comprising the active content modified by one or more inactive requests. An activation manager may be operative to determine whether the one or more inactive requests are consistent with an applicable object model. Because the buffer stores is operative to store both an active version and an inactive version of the object, it may implement commands to change the object between the inactive and active states without accessing the database. Upon receiving a flush command, the buffer may also be operative to make any version of the object stored in the buffer at that time—whether active, inactive, or both—persistent on the database.
    • 公开了用于最小化面向对象系统中的数据库访问的系统和方法。 所公开的系统和方法可以包括在缓冲器中打开对象,其中缓冲器可操作地存储包括活动内容的对象的活动版本和包括由一个或多个非活动请求修改的活动内容的对象的不活动版本。 激活管理器可以操作以确定一个或多个非活动请求是否与可应用对象模型一致。 因为缓冲存储器可操作地存储对象的活动版本和非活动版本,所以它可以实现在不访问数据库的情况下在非活动状态和活动状态之间改变对象的命令。 在接收到刷新命令时,缓冲器还可以用于使数据库上存储在缓冲器中的对象的任何版本 - 无论是活动的,非活动的,还是两者持久的。