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Membrane-based design and management methodology for parallel dynamically reconfigurable embedded systems

机译:并行动态可重配置嵌入式系统的基于膜的设计和管理方法

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Partial and dynamic reconfiguration provides a relevant new dimension to design efficient parallel embedded systems. However, due to the encasing complexity of such systems, ensuring the consistency and parallelism management at runtime is still a key challenge. So architecture models and design methodology are required to allow for efficient component reuse and hardware reconfiguration management. This paper presents a distributed persistence management model and its implementation for reconfigurable multiprocessor systems on dynamically reconfigurable circuits. The proposed approach is inspired from the well-known component based models used in software applications development. Our model is based on membranes wrapping the systems components. The objective is to improve design productivity and ensure consistency by managing context switching and storage using modular distributed hardware controllers. These membranes are distributed and optimized with the aim to design self-adaptive systems by allowing dynamic changes in parallelism degree and contexts migration. Simulation and synthesis results are given to show performances and effectiveness of our methodology.
机译:部分和动态重新配置为设计高效的并行嵌入式系统提供了一个相关的新维度。但是,由于此类系统的复杂性,确保运行时的一致性和并行性管理仍然是关键挑战。因此,需要架构模型和设计方法来实现有效的组件重用和硬件重新配置管理。本文提出了一种分布式持久性管理模型及其在动态可重配置电路上的可重配置多处理器系统的实现。所提出的方法是从软件应用程序开发中使用的众所周知的基于组件的模型中获得启发的。我们的模型基于包裹系统组件的薄膜。目的是通过使用模块化分布式硬件控制器管理上下文切换和存储来提高设计生产率并确保一致性。这些膜的分布和优化旨在通过允许并行度的动态变化和上下文迁移来设计自适应系统。仿真和综合结果显示了我们方法论的性能和有效性。

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