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MOVAL: a framework for turning digital signal processing algorithms into custom chips

机译:MOVAL:用于将数字信号处理算法转换为定制芯片的框架

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摘要

A framework supported by a set of tools for turning digital signal processing algorithms into custom chips is proposed. The framework, called MOVAL, integrates analysis, layout synthesis and validation and is based on a structured top-down design methodology covering seven succinct abstraction levels: the behavioral, data representation, space/time, hardware, symbolic and geometric (mask) descriptions, and the chip. The top four levels efficiently cope with the implementation trade-offs and are all written in the same high level language, currently “C”. As a result, the design can be modeled using a mixture of components defined at different abstraction levels. This allows an efficient mixed-mode multi-level validation. The hardware description is unambiguous and is the key to (semi-) automatic synthesis of the layout. Furthermore, it generates test vectors for the symbolic layout, the mask and, finally, the chip. The validation is done automatically, based on back substitution. As an example of the proposed design methodology, the crucial steps of the implementation of a fast Fourier cosine transform algorithm are described.
机译:提出了一套由工具支持的框架,用于将数字信号处理算法转换为定制芯片。名为MOVAL的框架集成了分析,布局综合和验证功能,并基于一种结构化的自上而下的设计方法,涵盖了七个简洁的抽象级别:行为,数据表示,空间/时间,硬件,符号和几何(掩码)描述,和芯片。前四个级别有效地解决了实现折衷问题,并且全部以相同的高级语言(当前为“ C”)编写。结果,可以使用在不同抽象级别定义的组件混合来对设计进行建模。这样可以进行有效的混合模式多级验证。硬件描述是明确的,并且是(半)自动综合布局的关键。此外,它生成用于符号布局,掩码以及最终芯片的测试向量。验证是基于反向替换自动完成的。作为提出的设计方法的一个例子,描述了实现快速傅里叶余弦变换算法的关键步骤。

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