计算机科学 ›› 2012, Vol. 39 ›› Issue (8): 311-315.

• 体系结构 • 上一篇    

基于同时多线程的IFSBSMT取指策略研究

李静梅,关海洋   

  1. (哈尔滨工程大学计算机科学与技术学院 哈尔滨150001)
  • 出版日期:2018-11-16 发布日期:2018-11-16

Fetch Policy with IFSBSMT Based on Simultaneous Multithreaded Processors

  • Online:2018-11-16 Published:2018-11-16

摘要: 取指策略直接影响处理器的指令吞吐率。针对传统处理器取指策略存在取指带宽利用不均衡、指令队列冲突率高的缺点,提出基于同时多线程处理器的取指策略IFSBSMT。该策略以线程的IPC值为基础,选取优先级高的线程进行取指,并利用预取指令条数预算的方式分配取指带宽,采取线程IPC值和L2 Cache缺失率的双优先级动态资源分配机制分配处理器的系统资源。研究结果表明,IFSBSMT策略有效地解决了取指带宽、指令队列冲突及资源浪费问题,进一步提高了指令吞吐率,且具有较好的取指公平性。

关键词: 同时多线程,取指策略,IFSBSMT,取指带宽,指令队列冲突,双优先级动态资源分配

Abstract: Fetch policy influences instuction throughput rate of computer processor directly. In the view of the shortages of unbalaned utilization of fetch bandwidth and high conflict rate of instruction queue, a new fetch policy named instruction flow speed based on simultaneous multithreading(IFSBSMT for short) was proposed. This strategy fetch takes the value of instrunctions per clock(IPC) to select the high priority thread and the method of prefetch instructions number to allocate fetch width. Meanwhile, IPC value for thread and L2 Cache miss rate are taken as the dual priority dynamic resource allocation mechanism to allocate the system resource for processors. hhe result shows IFSBMT can effectively improve the instruction fetch bandwidth and overcome the problems of instruction queue and resources waste, which can improve instruction throughput and abtain a better fetch fairness.

Key words: Simultaneous multithrcading,Fetching stratcgy,IFSBSMT,Fetch bandwidth,Instruction queue conflict,Dual priority dynamic resource allocation

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