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High-level design space exploration for adaptive applications on multiprocessor systems-on-chip

机译:用于多处理器片上系统的自适应应用程序的高级设计空间探索

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This paper presents an abstract design and analysis framework for applications on multiprocessor systems-on-chip (MPSoCs). The aim is to allow for faster and cost-effective implementation decisions. This framework is intended as an intermediate reasoning support to deal with important design decisions in the early design stage. Our framework enables design space exploration in order to identify adequate parallelism levels for hardware/software mappings in presence of adaptive system behaviors. For this purpose, we use an activation clock-based encoding in which an application is represented according to its event occurrences with their precedence relations. Then, different mapping and scheduling scenarios of applications on MPSoC are analyzed via clock traces representing system simulations. Among properties of interest are functional behavioral correctness, temporal performance and energy consumption. A number of experiments are performed to compare with state-of-the-art techniques based on synchronous dataflow graphs. Experimental results show that our framework provides a similar level of precision and efficiency. In addition, our framework is more flexible to deal with both application and platform adaptive behaviors, while allowing customized communication and computation behavior simulations. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种用于多处理器片上系统(MPSoC)的抽象设计和分析框架。目的是允许更快,更具成本效益的实施决策。此框架旨在作为中间推理支持,以在早期设计阶段处理重要的设计决策。我们的框架能够进行设计空间探索,以便在存在自适应系统行为的情况下为硬件/软件映射确定足够的并行度。为此,我们使用基于激活时钟的编码,其中根据应用程序的事件发生及其优先级关系来表示应用程序。然后,通过代表系统仿真的时钟轨迹分析MPSoC上应用程序的不同映射和调度方案。感兴趣的属性包括功能行为正确性,时间性能和能量消耗。进行了许多实验,以与基于同步数据流图的最新技术进行比较。实验结果表明,我们的框架提供了类似水平的精度和效率。此外,我们的框架更灵活,可以处理应用程序和平台自适应行为,同时允许自定义通信和计算行为模拟。 (C)2015 Elsevier B.V.保留所有权利。

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