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The Structure and Operation of a Relational Database System in a Cell-Oriented Integrated Circuit Design System

机译:面向单元的集成电路设计系统中关系数据库系统的结构和操作

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An important use for a database management system is in the storage and handling of information for engineering design, particularly integrated circuit design. However, most discussions on this topic have concentrated on the layout of shapes necessary to form the various circuit elements, or connections between user-defined cells. Equally important, but often disregarded, is the necessity to support other design tools in addition to graphics for circuit layout. These include simulators and automatic layout programs that take a description of a circuit at one level and convert it to a lower level. In addition, if cells are part of a library defined and maintained by others, operations must be included to handle the maintenance of generations or versions of a cell design. These aspects of a database management system for engineering design are discussed in light of the tools being developed at the University of Utah and an extended version of System R, developed at the IBM San Jose Research Laboratory. The Utah approach emphasizes the use of previously designed and tested cells, with interconnects at fixed locations, placed on a grid. Because it is unlikely that the designers of circuits designed all (or any) of the cells used in their circuits, special database management operations are necessary to assure that a consistent, working circuit results.
机译:数据库管理系统的重要用途是用于工程设计,尤其是集成电路设计的信息的存储和处理。然而,关于该主题的大多数讨论都集中在形成各种电路元件或用户定义的单元之间的连接所必需的形状的布局上。同样重要,但经常被忽略的是,除了用于电路布局的图形外,还必须支持其他设计工具。其中包括仿真器和自动布局程序,它们在一个级别上描述电路并将其转换为较低级别。此外,如果单元是其他人定义和维护的库的一部分,则必须包括操作来处理单元设计的世代或版本的维护。根据犹他大学正在开发的工具以及IBM San Jose研究实验室开发的System R的扩展版本,讨论了用于工程设计的数据库管理系统的这些方面。犹他州的方法强调使用先前设计和测试的单元,并在网格上的固定位置互连。因为电路的设计者不太可能设计电路中使用的所有(或任何)单元,所以必须进行特殊的数据库管理操作以确保产生一致的工作电路。

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