Towards an ESL design framework for adaptive and fault-tolerant MPSoCs: MADNESS or not?

E. Cannella, L. D. Gregorio, Leandro Fiorin, M. Lindwer, P. Meloni, Olaf Neugebauer, A. Pimentel
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引用次数: 10

Abstract

The MADNESS project aims at the definition of innovative system-level design methodologies for embedded MP-SoCs, extending the classic concept of design space exploration in multi-application domains to cope with high heterogeneity, technology scaling and system reliability. The main goal of the project is to provide a framework able to guide designers and researchers to the optimal composition of embedded MPSoC architectures, according to the requirements and the features of a given target application field. The proposed approach will tackle the new challenges, related to both architecture and design methodologies, arising with the technology scaling, the system reliability and the ever-growing computational needs of modern applications. The methodologies proposed with this project act at different levels of the design flow, enhancing the state-of-the art with novel features in system-level synthesis, architectural evaluation and prototyping. Support for fault resilience and efficient adaptive runtime management is introduced at hardware and middleware level, and considered by the system-level synthesis as one of the optimization factors to be taken into account. This paper presents the first stable results obtained in the MADNESS project, already demonstrating the effectiveness of the proposed methods.
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面向自适应和容错mpsoc的ESL设计框架:疯狂与否?
MADNESS项目旨在为嵌入式mp - soc定义创新的系统级设计方法,将设计空间探索的经典概念扩展到多应用领域,以应对高异质性、技术可扩展性和系统可靠性。该项目的主要目标是提供一个框架,能够指导设计人员和研究人员根据给定目标应用领域的要求和特征,优化嵌入式MPSoC架构的组成。所提出的方法将解决随着技术扩展、系统可靠性和现代应用日益增长的计算需求而产生的与架构和设计方法相关的新挑战。该项目提出的方法适用于设计流程的不同层次,在系统级综合、架构评估和原型设计方面具有新颖的功能,从而提高了最新的技术水平。在硬件和中间件级别引入了对故障恢复能力和高效自适应运行时管理的支持,并被系统级综合视为需要考虑的优化因素之一。本文介绍了在MADNESS项目中获得的第一个稳定结果,已经证明了所提出方法的有效性。
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