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COMPOSE: A composite embedded software synthesis approach

机译:构成:一种复合嵌入式软件综合方法

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Modern embedded software synthesis faces two distinct challenges. One one hand embedded software complexity continues to grow steadily, and at the same time they are often targeted to heterogeneous-MPSoC platforms, which are extremely difficult to program. Distinct families of tools have evolved, which specialize in tackling the specific issues associated to these two aspects of embedded software synthesis. However, in today's competitive environment a complete design flow is needed, which can seamlessly transition a complex high level design to a multicore centric implementation. Integrated approaches suffer from added complexity and maintenance issues, for having to solve these two related but somewhat different problems simultaneously. This paper introduces a composite design technique - COMPOSE - that connects the existing high level modelling environments with multicore oriented software synthesis frameworks to handle this two-way challenge. The resulting design flow proves to be a superior alternative than both the existing integrated tools as well as the decoupled approaches, since it combines the respective strengths of both of these tool families without being unduly complex. Our experiments show that use of such a composite approach opens up new possibilities for high level performance optimization and can shorten the application development life cycle by upto 20%.
机译:现代嵌入式软件综合面临两个截然不同的挑战。一方面,嵌入式软件的复杂性持续稳定增长,与此同时,它们通常针对的是很难编程的异构MPSoC平台。已经开发出了不同的工具系列,这些工具专门用于解决与嵌入式软件综合的这两个方面相关的特定问题。但是,在当今竞争激烈的环境中,需要完整的设计流程,可以将复杂的高级设计无缝过渡到以多核为中心的实现。由于必须同时解决这两个相关但有些不同的问题,集成方法会增加复杂性和维护问题。本文介绍了一种复合设计技术-COMPOSE-该技术将现有的高级建模环境与面向多核的软件综合框架相连接,以应对这一双向挑战。事实证明,与现有的集成工具以及解耦方法相比,最终的设计流程是一种更好的选择,因为它结合了这两种工具系列各自的优势,而又不过分复杂。我们的实验表明,这种复合方法的使用为高级性能优化开辟了新的可能性,并且可以将应用程序开发生命周期缩短多达20%。

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