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Reducing energy requirements for instruction issue and dispatch in superscalar microprocessors

机译:减少指令问题的能量要求,并在超卡微处理器中发送

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Recent studies [MGK 98, Tiw 98] have confirmed that a significant amount of energy is dissipated iii the process of instruction dispatching and issue ii) modern superscalar microprocessors. We propose a model for the energy dissipated by instruction dispatching and issuing logic in modem superscalar microprocessors and validate them through register level simulations and SPICE-measured dissipation coefficients from 0.5 micron CMOS layouts of relevant circuits. Alternative organizations are studied for instruction window buffers that result in energy savings of about 47% over traditional designs.
机译:最近的研究[MGK 98,TIW 98]证实,显着的能量被消散III指令调度和问题II)现代超卡微处理器的过程。我们提出了一种模型,用于在调制解调器超卡微处理器中发出逻辑,通过寄存器级模拟和验证相关电路0.5微米CMOS布局的寄存器电平模拟和调味耗散系数来验证它们的模型。研究了替代组织,用于指令窗口缓冲区,从传统设计中节省约47%。

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