实现DSP转换的形式化数据路径表示和操作

Peter Milder, F. Franchetti, J. Hoe, Markus Püschel
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引用次数: 54

摘要

我们提出了一种领域特定的方法来表示线性信号变换算法的硬件实现的数据路径。我们扩展了描述线性变换算法的张量结构,增加了明确描述数据路径架构的两个重要维度的能力。这种表示允许在单个公式中指定算法和数据路径,并使设计人员能够在高层次抽象上轻松考虑可能的数据路径的广泛空间。我们基于这种表示构造了一个公式操作系统,并编写了一个编译器,可以将公式转换为硬件实现。这使自动“按钮”编译流能够从高级数据路径指令和算法(以公式形式编写)生成寄存器传输级硬件描述。在我们的实验结果中,我们证明了这种方法在很大的权衡空间上产生了有效的设计。
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Formal datapath representation and manipulation for implementing DSP transforms
We present a domain-specific approach to representing datapaths for hardware implementations of linear signal transform algorithms. We extend the tensor structure for describing linear transform algorithms, adding the ability to explicitly characterize two important dimensions of datapath architecture. This representation allows both algorithm and datapath to be specified within a single formula and gives the designer the ability to easily consider a wide space of possible datapaths at a high level of abstraction. We have constructed a formula manipulation system based on this representation and have written a compiler that can translate a formula into a hardware implementation. This enables an automatic "push button" compilation flow that produces a register transfer level hardware description from high-level datapath directives and an algorithm (written as a formula). In our experimental results, we demonstrate that this approach yields efficient designs over a large tradeoff space.
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