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An innovative low-power high-performance programmable signal processor for digital communications

机译:用于数字通信的创新型低功耗高性能可编程信号处理器

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We describe an innovative, low-power, high-performance, programmable signal processor (DSP) for digital communications. The architecture of this processor is characterized by its explicit design for low-power implementations, its innovative ability to jointly exploit instruction-level parallelism and data-level parallelism to achieve high performance, its suitability as a target for an optimizing high-level language compiler, and its explicit replacement of hardware resources by compile-time practices. We describe the methodology used in the development of the processor, highlighting the techniques deployed to enable application/architecture/compiler/implementation co-development, and the optimization approach and metric used for power-performance evaluation and tradeoff analysis. We summarize the salient features of the architecture, provide a brief description of the hardware organization, and discuss the compiler techniques used to exercise these features. We also summarize the simulation environment and associated software development tools. Coding examples from two representative kernels in the digital communications domain are also provided. The resulting methodology, architecture, and compiler represent an advance of the state of the art in the area of low-power, domain-specific microprocessors.
机译:我们描述了一种用于数字通信的创新型,低功耗,高性能,可编程信号处理器(DSP)。该处理器的体系结构的特点在于其针对低功耗实现的显式设计,创新性的能力可以联合利用指令级并行性和数据级并行性来实现高性能,以及其作为优化高级语言编译器目标的适用性,以及通过编译时实践明确替换硬件资源。我们描述了处理器开发中使用的方法,重点介绍了用于实现应用程序/体系结构/编译器/实现共同开发的技术,以及用于功率性能评估和权衡分析的优化方法和度量。我们总结了该体系结构的显着特征,提供了对硬件组织的简短描述,并讨论了用于实现这些特征的编译器技术。我们还总结了仿真环境和相关的软件开发工具。还提供了来自数字通信领域中两个代表性内核的编码示例。最终的方法,体系结构和编译器代表了低功耗领域特定微处理器领域的最新技术。

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