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Custom wide counterflow pipelines for high-performance embedded applications

机译:定制的宽逆流管道,用于高性能嵌入式应用

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Application-specific instruction set processor (ASIP) design is a promising technique to meet the performance and cost goals of high-performance systems. ASIPs are especially valuable for embedded computing applications (e.g., digital cameras, color printers, cellular phones, etc.) where a small increase in performance and decrease in cost can have a large impact on a product's viability. Sutherland, Sproull, and Molnar originally proposed a processor organization called the counterflow pipeline (CFP) as a general-purpose architecture. We observed that the CFP is appropriate for ASIP design due to its simple and regular structure, local control and communication, and high degree of modularity. We describe a new CFP architecture, called the wide counterflow pipeline (WCFP), that extends the original proposal to be better suited for custom embedded instruction-level parallel processors. This presents a novel and practical application of the CFP to automatic and quick turnaround design of ASIPs. We introduce the WCFP architecture and describe several microarchitecture capabilities needed to get good performance from custom WCFPs. We demonstrate that custom WCFPs have performance that is up to four times better than that of ASIPs based on the CFP. Using an analytic cost model, we show that custom WCFPs do not unduly increase the cost of the original counterflow pipeline architecture, yet they retain the simplicity of the CFP. We also compare custom WCFPs to custom VLIW architectures and demonstrate that the WCFP is performance competitive with traditional VLIWs without requiring complicated global interconnection of functional devices.
机译:专用指令集处理器(ASIP)设计是一种有前途的技术,可以满足高性能系统的性能和成本目标。 ASIP对于嵌入式计算应用程序(例如,数码相机,彩色打印机,蜂窝电话等)特别有价值,在这些应用程序中,性能的小幅提高和成本的下降会严重影响产品的生存能力。 Sutherland,Sproull和Molnar最初提出了一个称为反流管线(CFP)的处理器组织,作为通用体系结构。我们观察到CFP由于其简单而规则的结构,本地控制和通信以及高度的模块化而适合ASIP设计。我们描述了一种称为宽逆流管道(WCFP)的新CFP体系结构,该体系结构扩展了最初的建议,使其更适合于自定义嵌入式指令级并行处理器。这展示了CFP在ASIP的自动快速周转设计中的新颖实用的应用。我们介绍了WCFP体系结构,并描述了从定制WCFP获得良好性能所需的几种微体系结构功能。我们证明,自定义WCFP的性能比基于CFP的ASIP的性能高出四倍。使用分析成本模型,我们表明定制WCFP不会过分增加原始逆流管道体系结构的成本,但它们保留了CFP的简单性。我们还将自定义WCFP与自定义VLIW架构进行了比较,并证明了WCFP与传统VLIW相比在性能上具有竞争优势,而无需复杂的功能设备全局互连。

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