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A Power-Aware Hybrid RAM-CAM Renaming Mechanism for Fast Recovery

机译:用于快速恢复的动力感知混合RAM-CAM重命名机制

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Modern superscalar processors implement register renaming by using either RAM or CAM tables. The design of these structures should address their access time and misprediction recovery penalty. While direct-mapped RAMs provide faster access times, CAMs are more appropriate to avoid recovery penalties. Although they are more complex and slower, CAMs usually match the processor cycle in current designs. However, they do not scale with the number of physical registers and the pipeline width. In this paper we present a new hybrid RAM-CAM register renaming scheme, which combines the best of both approaches. In a steady state, a RAM provides the current mappings quickly; on mispeculation, a low-complexity CAM enables immediate recovery and further register renaming. Compared to an ideal CAM in a 4-way state-of-the-art superscalar microprocessor, and for almost the same performance (1% slowdown) and area (95% of the ideal CAM size), the proposed scheme consumes about 90% less dynamic energy.
机译:现代超卡处理器通过使用RAM或凸轮表来实现寄存器重命名。这些结构的设计应解决其访问时间和错误规范恢复损失。虽然直接映射的RAM提供更快的访问时间,但凸轮更适合避免恢复处罚。虽然它们更复杂,较慢,但凸轮通常与当前设计中的处理器周期匹配。但是,它们不会与物理寄存器和管道宽度的数量扩展。在本文中,我们提出了一种新的混合式RAM-CAM寄存器重命名方案,它结合了两种方法的最佳方法。在稳定状态下,RAM快速提供当前映射;在错误分析上,低复杂性凸轮使立即恢复并进一步注册重命名。与一款理想的凸轮相比,以4路最新的超级扫描器微处理器,并且对于几乎相同的性能(1%放缓)和面积(占理想凸轮尺寸的95%),所提出的方案消耗约90%不那么动态的能量。

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