超标量

  • 网络SuperScalar;Super Scalar;Superscale
超标量超标量
  1. 单执行部件结构的超标量RISC设计方案

    An approach for designing superscalar RISC with the compatibility of uniprocessor structure

  2. MPTP处理器以Trace处理器为基础,重复设置多个超标量处理单元,把指令流的多条Trace发送到处理单元同时执行。

    Based on trace processors , MPTP duplicates multiple superscalar processors as processing elements ( PE ), and executes instruction traces in PEs .

  3. 现代数字信号处理器(DSP)一般采取超长指令字或是超标量来实现指令级并行。

    Modern digit signal processor ( DSP ) achieve instruction level parallelism with superscalar or very long instruction word ( VLIW ) .

  4. X微处理器是一款采用全定制设计方法设计的微处理器,处理器中包含动态分支预测和超标量等微体系结构技术,内部结构复杂,设计规模很大,对其进行功能验证有很大难度。

    X processor uses full-custom design method , includes dynamic branch prediction and super scalar technology , and its scale is very large .

  5. 超标量、超流水线定点RISC核设计浅谈RISC技术

    The Design of RISC Core by Super-scalar and Super-pipelined Fixed-point Technique

  6. 兼容MIPS指令集的超标量微处理器ALU设计

    Design of ALU of Superscalar Microprocessor Compatible with MIPS Instruction System

  7. 过去的经验说明要达到提升40%左右性能的复杂超标量CPU,它的晶体管数量就得翻一翻。

    Considering the experience past , the number of transistors has to be doubled in order to increase about 40 percent of the complex superscalar CPU .

  8. LEAP采用简化控制逻辑、大幅提高片上有效计算单元比例的设计思想,解决或部分解决了超标量技术的本质问题,能够有效提高以循环为核心的应用程序的执行效率。

    LEAP has solved or partly conquered the inherent problems of superscalar by predigesting control logic and increasing the efficient computing units on chip .

  9. 对上海市轨道交通与地面交通换乘场站局地环境空气质量进行了调查,结果表明,万体馆站空气污染较重,大气污染达到警戒水平,PM10及NO2超标频率及超标量较高。

    To study the air quality of change station of track communication and surface communication .

  10. 在CPU的发展过程中,处理器研究人员利用超级流水线、超标量发射、乱序发射、动态转移预测等技术来实现指令级并行以提高单核心芯片的计算、处理能力。

    For a long time , processor researchers use super-pipelined 、 superscalar launch 、 out-of-order emission 、 dynamic branch prediction and other technologies to improve the calculation and processing capacity of the single-core chip .

  11. 显式并行指令计算(ExplicitlyParallelInstructionComputing,EPIC)机制结合超标量和超常指令字技术的优势,通过增强编译器和处理器之间的通信提高系统性能。

    The Explicitly Parallel Instruction Computing ( EPIC ) technology combines the advantages of the superscalar and VLIW technologies . Through the communication between the compilers and the hardware , it improves the performance of the processor .

  12. 动态可重构Cache的思想最早是罗彻斯特大学(UniversityofRochester)的学者在他们的一篇关于存储层次的论文1中提出的,当时主要是针对高性能的超标量通用处理器。

    The idea of dynamically reconfigurable cache originally appeared in a paper about memory-hierarchy , which is written by scholar of University of Rochester 1 . And they aim at high performance superscalar general-purpose processor .

  13. CMP同时运行多线程,消耗的功耗比超标量处理器的多,因此CMP中温度问题变得更为严峻。

    In CMP processor , multiple threads run concurrently and consume more power than in traditional superscalar processor . Thus the thermal issue becomes more severe then before .

  14. 该文介绍了几种有代表性的超标量同时多线程处理器取指策略,分析了这些策略在EPIC同时多线程处理器上的适用性,提出了一种新的适用于EPIC的取指策略SICOUNT。

    This paper describes several prevailing fetch policies used in superscalar SMT processors , analyses their applicability for EPIC SMT processors , and proposes a novel fetch policy called SICOUNT ( Stop ICOUNT ) suitable for EPIC SMT .

  15. 本文讨论超标量RISC结构中单周期发多条指令中周期和执行指令时间的相对关系,并分析了新型超标量RISC结构的实现方案,其中包括具有单个执行部件和多个执行部件的结构。

    This paper has discussed the relationship between the machine cycle and instruction execution time for superscalar RISC architecture , issuing multiple instructions in one machine cycle . Several new design features of superscalar RISC architecture with single execution unit and multiple function units have been analysed .

  16. 首先,在设计的嵌入式微处理ARMP的基础上进行改进,提出了一个超标量处理器模型,用于多线程处理器系统结构的研究与验证。

    Firstly , for the purpose of research and verification of multithread microprocessor , a superscalar microprocessor model ARMP-V2 is built on the basis of ARMP microprocessor ;

  17. 基于超标量指令流水模型的船舶涂装信息管理系统

    A Coating Information Management System Based on Superscalar Pipelining Model

  18. 本文对超标量的体系结构特点进行了深入分折,探讨了超标量处理器中采用的各项技术。

    This thesis anslysises the architecture and the diversified techniques of superscalar computer .

  19. 超标量嵌入式处理器关键技术设计研究

    Research on Key Techniques of Superscalar Embedded Processor Design

  20. 前瞻性执行超标量处理器的性能分析模型

    An analytical model of speculatively executed superscalar processor

  21. 讨论超标量处理机采用的技术以及结构,并举例PowerPC620。

    This paper discuss the technique and structure of superscalar and example PowerPC 620 .

  22. 超标量、超级流水线处理机的性能分析

    Analysis of Superscalar Processor and Superpipelined Processor Performance

  23. 超标量的含油污水排放造成的水域环境污染,严重地危害了人类的生存环境。

    The oily water not only pollutes water environment , also disserves human 's life .

  24. 超标量处理器中重排序缓冲器的研究

    Study of reorder buffer in superscalar processors

  25. 超标量微处理器研究与应用

    Research and Application on Superscalar Microprocessors

  26. 超级流水线超标量处理机的性能评价

    Performance evaluation of superpipelined superscalar processor

  27. 超标量技术及结构研究与应用

    Research and Application on Superscalar Processor

  28. 现代超标量体系结构的微处理器努力在流水线操作的每一步中完成三到六条命令。

    Modem superscalar microprocessors try to perform anywhere from three to six instructions in each stage .

  29. 因此一台250兆赫、四线超标量体系结构的微处理器能在一秒钟内执行十亿条命令。

    Hence , a 250 - megahertz , four-way superscalar microprocessor can execute a billion instructions per second .

  30. 可见,在传统的超标量处理器结构基础上简单地增大发射宽度需要较大的代价。

    Obviously , simply increasing the issue width of the superscalar with a traditional architecture costs too much .