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A Model Driven Design Framework for High Performance Embedded Systems

机译:高性能嵌入式系统的模型驱动设计框架

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摘要

Modern embedded systems integrate more and more complex functionalities. At the same time, the semiconductor technology advances enable to increase the amount of hardware resources on a chip for the execution. High performance embedded systems specifically deal with the optimized usage of such hardware resources to efficiently execute their functionalities. The design of high performance embedded systems mainly relies on the following challenging issues: first, how to deal with the parallelism in order to increase the performances; second, how to abstract their implementation details in order to manage their complexity; third, how to refine these abstract representations in order to produce efficient implementations. This paper presents the Gaspard design framework for high performance embedded systems as a solution to the above issues. Gaspard uses the repetitive Model of Computation (MoC), which offers a powerful expression of the parallelism available in both system functionality and architecture. Embedded systems are designed at a high abstraction level with the MARTE (Modeling and Analysis of Real-time and Embedded systems) standard profile, in which our repetitive MoC is described by the so-called Repetitive Structure Modeling (RSM) package. Based on the Model-Driven Engineering (MDE) paradigm, MARTE models are refined towards lower abstraction levels, which make possible the design space exploration. By combining all these capabilities, Gaspard allows the designers to automatically generate code for formal verification, simulation and hardware synthesis from high level specifications of high performance embedded systems. Its effectiveness is demonstrated with the design of an embedded system for a multimedia application.
机译:现代嵌入式系统集成了越来越复杂的功能。同时,半导体技术的进步使得能够增加芯片上用于执行的硬件资源的数量。高性能嵌入式系统专门处理此类硬件资源的优化使用,以有效执行其功能。高性能嵌入式系统的设计主要依靠以下挑战性问题:第一,如何处理并行性以提高性能;其次,如何抽象化其实现细节以管理其复杂性;第三,如何完善这些抽象表示以产生有效的实现。本文介绍了用于高性能嵌入式系统的Gaspard设计框架,以解决上述问题。 Gaspard使用重复的计算模型(MoC),该模型对系统功能和体系结构中可用的并行性提供了有力的表达。嵌入式系统通过MARTE(实时和嵌入式系统的建模和分析)标准配置文件在较高的抽象级别进行设计,其中我们的重复MoC通过所谓的重复结构建模(RSM)软件包进行描述。 MARTE模型基于模型驱动工程(MDE)范式,朝着较低的抽象级别进行了改进,这使探索设计空间成为可能。通过结合所有这些功能,Gaspard允许设计人员根据高性能嵌入式系统的高级规范自动生成代码,以进行形式验证,仿真和硬件综合。多媒体应用嵌入式系统的设计证明了其有效性。

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