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Breaking the I/O Bottleneck for High Compute Performance Processing with Xtensa LX Configurable and Extensible Processor Architecture

机译:借助Xtensa LX可配置和可扩展的处理器架构,突破了高性能计算处理的I / O瓶颈

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The challenges of new embedded applications have conflicting requirements: complex algorithms, evolving standards, shorter product cycles dictate programmable solutions, and yet. high data bandwidth, compute power and lower power consumption dictate carefully crafted hardwired functional modules. An application specific instruction set processor (ASIP) is ideally suited to provide most of the advantages of hardwired logic, while maintaining the time-to-market and programmability advantages of a general purpose processor. This paper presents the unique blend of high compute performance and i/o bandwidth of the configurable and extensible Xtensa LX ASIP architectures. Xtensa LX provides high compute performance with wide instruction words using multiple operation slots that enable superscalar performance suitable for data-intensive applications. Xtensa LX also provides high I/O bandwidth through its multiple load/store units that provide parallel low latency access or external DMA access to local memories and virtually unlimited number of ports and queues directly connected to the processor core functional units and system control registers, which remove the I/O bottleneck of traditional processors. The advantages of Xtensa LX features are proven with their impressive performance results: 171.6 ConsumerMark on out-of-the-box simulation of EEMBC consumer suite and a BDTIsimMark2000™ score of 6150 at 370MHz.
机译:新型嵌入式应用程序所面临的挑战具有相互矛盾的要求:复杂的算法,不断发展的标准,更短的产品周期决定了可编程解决方案。高数据带宽,计算能力和较低功耗要求精心制作的硬连线功能模块。专用指令集处理器(ASIP)非常适合提供硬连线逻辑的大多数优点,同时保持通用处理器的上市时间和可编程性优点。本文介绍了可配置和可扩展Xtensa LX ASIP架构的高性能计算性能和I / O带宽的独特融合。 Xtensa LX使用多个操作插槽提供了具有宽指令字的高性能计算性能,从而使超标量性能适合于数据密集型应用程序。 Xtensa LX还通过其多个加载/存储单元提供了高I / O带宽,这些单元提供对本地内存的并行低延迟访问或外部DMA访问,以及直接连接到处理器核心功能单元和系统控制寄存器的几乎无限数量的端口和队列,这消除了传统处理器的I / O瓶颈。 Xtensa LX功能的优点通过其令人印象深刻的性能结果得到了证明:在EEMBC消费者套件的开箱即用模拟中具有171.6 ConsumerMark,在370MHz时的BDTIsimMark2000™得分为6150。

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