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Model-Driven Approach for Automatic Dynamic Partially Reconfigurable IP Customization

机译:用于自动动态部分可重新配置IP自定义的模型驱动方法

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This paper presents a framework which automates the generation of DPR capable IP cores. The approach is based in an MDE methodology, which exploits two widely used standards for Systems-on-Chip specification, UML/MARTE and IP-XACT. The approach aims at generating IPs which incorporate different functionalities by using code templates. The templates correspond to IP-XACT components that represent VHDL modules to be implemented in the IP. The IP-XACT sub-system description is generated from the MARTE description, effectively diminishing the complexity of creating this kind of systems by increasing the level of abstraction. We present the MARTE modeling concepts and how these models are mapped to IP-XACT objects, the emphasis is given to the generation of IP cores that can be used in the Xilinx EDK environment, since we aim to develop a complete flow around their Dynamic Partial Reconfiguration design flow. A model for the DPR IP is presented and a case study for a simple IP is presented. The use of our MDE approach is introduced to demonstrate how the generation from MARTE to EDK systems is performed.
机译:本文介绍了一个框架,可自动化DPR功能的IP核心。该方法基于MDE方法,利用两种广泛使用的芯片规范标准,UML / MARTE和IP-XACT。该方法旨在通过使用代码模板生成IP,该IPS结合不同功能。模板对应于IP-XACT组件,表示要在IP中实现的VHDL模块。 IP-XACT子系统描述是从MARTE描述生成的,通过提高抽象水平,有效地减少创建这种系统的复杂性。我们展示了Marte建模概念以及这些模型如何映射到IP-XACT对象,重点是可以在Xilinx EDK环境中使用的IP核心的生成,因为我们的目标是在其动态部分地区开发完整的流程重新配置设计流程。提出了DPR IP的模型,并呈现了一个简单IP的案例研究。引入了使用我们的MDE方法,以演示如何执行如何从Marte到EDK系统。

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