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Dynamic access control of instruction buses by using active bits detection for low power systems

机译:通过使用低功耗系统的活动位检测来动态访问指令总线

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External buses consume substantial power for their high capacitances of bus lines and I/O pins. In this paper, we reduce redundant dynamic power consumption on instruction buses. For expressing a small number, we need the small number of bits (the minimum bits are defined as active bits). But all bit lines on an instruction bus change their status and redundant power is consumed. Suppressing switching activity of inactive bits, we can reduce redundant power consumption. Since the active bits are different each data, we reduce power by dynamic analysis and control of the instruction buses. An instruction is constructed of several fields which indicate kinds of operations, register numbers and an immediate value. After analyzing the characteristics of active bits in each field by profiling we change opcode and register assignments by using variable length coding to reduce active bits. We achieve more efficient power reduction by using active bits with the code assignment of instruction sets. Experimental results illustrate up to 29.1% switching activity reduction for MPEG2.
机译:外部总线因总线线路和I / O引脚的高电容而消耗大量功率。在本文中,我们减少了指令总线上的冗余动态功耗。为了表示少量,我们需要少量的位(最小位定义为活动位)。但是指令总线上的所有位线都会改变其状态,并且会消耗多余的功率。通过抑制无效位的开关活动,我们可以减少冗余功耗。由于每个数据的有效位都不同,因此我们通过动态分析和控制指令总线来降低功耗。一条指令由几个字段构成,这些字段指示操作的种类,寄存器号和立即数。在通过剖析分析了每个字段中活动位的特性之后,我们通过使用可变长度编码来减少活动位来更改操作码和寄存器分配。通过使用活动位和指令集的代码分配,我们可以实现更有效的功耗降低。实验结果表明,MPEG2的切换活动降低了29.1%。

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