Hierarchical correctness verification in multiphase real-time software design

T Szmuc , P Szwed , J-J Schwarz , J Skubich
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引用次数: 0

Abstract

A hierarchical approach to correctness verification of real-time software specifications is presented. The verification is distributed into successive steps that correspond to the design phases. The three languages: Rule Charts, LACTATRE (graphical specification) and Communicating Real Time State Machines are used for specification of real-time software within corresponding abstraction levels. The correctness is defined as a coincidence of a system specified in a phase w.r.t. requirements established ing the previous phase. This correctness concept leads to an application of the relative correctness methods (developed in former works) for the verification. The approach is examined in Preliminary and Detailed Design phases for the verification of several types of properties: structure, functions and time constraints.

多阶段实时软件设计中的层次正确性验证
提出了一种实时软件规范正确性验证的分层方法。验证被分配到与设计阶段相对应的连续步骤中。三种语言:规则图、LACTATRE(图形化规范)和通信实时状态机用于在相应的抽象级别内对实时软件进行规范。正确性被定义为在一个阶段中指定的系统与在前一阶段中建立的需求的一致性。这种正确性概念导致了对验证的相对正确性方法(在以前的作品中开发的)的应用。该方法在初步设计和详细设计阶段进行检查,以验证几种类型的属性:结构,功能和时间限制。
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