Automatic synthesis of multi-tasking implementations from real-time object-oriented models

M. Saksena, Panagiota Karvelas, Yun Wang
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引用次数: 53

Abstract

Presents an approach towards the automatic synthesis of implementations from real-time object-oriented design models. From an application design model that addresses the functional requirements of the system, and given end-to-end timing requirements, our synthesis approach generates a feasible implementation model, i.e. one that will meet the timing requirements. The synthesis process is supported by automatic code generation that can take the application design model and the synthesized implementation model, and can generate code for the target platform. The synthesis of an implementation model is facilitated through the use of a generic (application-independent) implementation architecture, thereby reducing the synthesis problem to selecting a mapping of the application design model to the artifacts of the implementation architecture. In this paper, we use a multi-threaded event handling architecture with fixed event priorities. The synthesis problem then consists of determining priorities for events and mapping events to threads. We show how, given such a mapping, the response times can be analyzed, and then how, using the analysis, a feasible implementation model can be automatically synthesized.
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从实时面向对象模型自动合成多任务实现
提出了一种从实时面向对象设计模型自动合成实现的方法。从解决系统功能需求的应用程序设计模型,以及给定的端到端定时需求,我们的综合方法生成一个可行的实现模型,即一个将满足定时需求的模型。综合过程由自动代码生成支持,自动代码生成可以采用应用程序设计模型和综合实现模型,并为目标平台生成代码。通过使用通用的(独立于应用程序的)实现体系结构,可以简化实现模型的综合,从而将综合问题减少到选择应用程序设计模型到实现体系结构构件的映射。在本文中,我们使用具有固定事件优先级的多线程事件处理体系结构。然后,合成问题包括确定事件的优先级和将事件映射到线程。我们将展示如何在给定这种映射的情况下分析响应时间,然后如何使用分析自动合成可行的实现模型。
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